US3811454A - Structural membrane attachment to an arch - Google Patents

Structural membrane attachment to an arch Download PDF

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US3811454A
US3811454A US00317509A US31750972A US3811454A US 3811454 A US3811454 A US 3811454A US 00317509 A US00317509 A US 00317509A US 31750972 A US31750972 A US 31750972A US 3811454 A US3811454 A US 3811454A
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membrane
arch
arches
slot
continuous
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C Huddle
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HOTTEL Corp A CORP OF
TENSION STRUCTURES Co
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TENSION STRUCTURES Co
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Assigned to HOTTEL CORPORATION, A CORP. OF DE reassignment HOTTEL CORPORATION, A CORP. OF DE ASSIGNMENT OF ASSIGNORS INTEREST. Assignors: TENSION STRUCTURES CO., BY CARL F. HUDDLE, GENERAL MANAGER
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H15/00Tents or canopies, in general
    • E04H15/32Parts, components, construction details, accessories, interior equipment, specially adapted for tents, e.g. guy-line equipment, skirts, thresholds
    • E04H15/34Supporting means, e.g. frames
    • E04H15/42Supporting means, e.g. frames external type, e.g. frame outside cover
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H15/00Tents or canopies, in general
    • E04H15/32Parts, components, construction details, accessories, interior equipment, specially adapted for tents, e.g. guy-line equipment, skirts, thresholds
    • E04H15/64Tent or canopy cover fastenings
    • E04H15/642Tent or canopy cover fastenings with covers held by elongated fixing members locking in longitudinal recesses of a frame
    • E04H15/646Tent or canopy cover fastenings with covers held by elongated fixing members locking in longitudinal recesses of a frame the fixing members being locked by an additional locking member
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S135/00Tent, canopy, umbrella, or cane
    • Y10S135/906Arched structure

Definitions

  • a lock strip that is inserted into the arch slot to prevent the beaded membrane edge from emerging from the recess when the membrane is tensioned and a retainer at the edge of the slot, or a wedged shape lock strip, to prevent the lock strip from working out of the arch slot.
  • All of these structures have tensioned membranes of compound curvature for the roof and the end walls, if end walls are used, to partially or fully enclose the structure.
  • This invention is particularly related to a labor saving and cost reducing means by which the membrane can be safely attached to the supporting arches with a weathertight continuous seal. More importantly, by the use of this quick and easy attachment, the membrane serves as a rigid structural component when the arch is curved and the membrane is tensioned sufficiently. This aids in stabilizing the arch to which it is attached and, in some instances, it opposes arch deflections due to the loads imposed on the arch. When end walls that have a double curvature are also used to fully enclose an area, the stability of the structure is a very important characteristic.
  • the locking strip can be installed on the inside or outside of the structure; it can be used on vertical center or intermediate arches as well as inclined arches; the membrane can be installed when the arches are reclined on the base before erection. By moving the arches closer together after erection. the membrane edge can be unlocked" from the arch and a new membrane can be fastened and locked to the arch without disassembling the remainder of the structure.
  • the lock that prohibits the beaded edge of the membrane from escaping from the continuous arch recess or cavity can be made of a variety of materials as long as they do not compress sufficiently to permit the beaded edge from pulling out" of the arch slot when the membrane is under tension.
  • Hard rubber-like compositions of plastics or even metal or wood can be used especially when the slot is straight or has a large radius and the lock itself is relatively small in proportion; and- /or the lock is being bent in the plane of its smaller dimension.
  • Some designs can have this characteristic and some require the lock to be bent in its opposite plane or the lock, of course, can be formed to fit the contour of the arch slot. It also can be extruded or formed to fit various retainer arrangements that keep it from working out of the slot under uneven forces such as produced by variable wind action.
  • the beaded edge can be easily fabricated by sewing, heat welding or otherwise securing a hard rope or cable in the edge.
  • the size of the beaded edge can be varied for different tensions exerted on the membrane or to insure that the edge will be safely trapped within the continuous cavity.
  • the size of the beaded edge and the compressibility, if any, of the lock strip are factors in each design.
  • the principal object of this invention is to provide a means by which a tensioned membrane can be continuously and individually attached to an arch, and more importantly, a curved arch without wrinkles or complicated changes in radii to enclose the arch and provide a weathertight seal.
  • Further objects of this invention are to greatly decrease the labor to attach and detach the membrane from the, arch by providing a removable lockthat is easy to install and remove, is economical to fabricate and will not work loose due to changes in the stress imposed on the attachment means. No particular skill is needed to attach or detach the membrane, no threaded fasteners are required as the attachment means is incorporated in the arch and the only other component required is the locking strip.
  • Still another object of this invention is to be able to replace a membrane, without disassembly of the structure that has been damaged, or for any other reason. dr
  • FIG. 1 is a perspective view of an inclined arch structure that is illustrated in a number of my patents and applications that has at least one intermediate or center arch as an added support for the roof membrane.
  • FIG. 2 is a cross-sectional view of a curved wooden arch in a vertical arch structure shown in this and my parent application.
  • FIG. 3 has a different position of the fasteners in a wooden arch to produce more friction between the arch and the membrane.
  • FIG. 4 is a cross-sectional view of an extruded arch that has the membrane attachment extruded in the arch side or perifery that faces the structure.
  • FIG. 5 is a cross-sectional view with a different arrangement of the removable locks.
  • FIG. 6 illustrates a rectangular arch cross-section with the membrane attachment near the neutral'x axis or on the sides of the arch.
  • FIG. 7 is a modified cross-section of the FIG. 6 arch, locating the fastener near the lower or upper side of the arch.
  • the fastener on the top or bottom of the arch.
  • FIG. 9 illustrates an arch cross-section having a recess where two membrane edges can be locked to the arch with one lock.
  • FIG. 10, FIG. 11, and FIG. 12 extruded fasteners attached to arches independently.
  • FIG. 13 illustrates a cross-section that provides for safety cable attachments and at the same time enables the high tensioned membrane to be attached near the center line of the arch.
  • FIG. 1 The architectural structure shown in FIG. 1 is commonly referred to in this field as a lightweight arch supported tension structure that has, by its inherent design, great stability that is attained by the curved inclined arches and curved center arch (orarches) that are continuously fastened to membranes of double curvature and are tensioned after erection to the degree that the membranes act as rigid structural components.
  • Flexible membranes are now available at reasonable cost that have a tensile strength of 1,500 lbs. per inch. Post tensioning of such strong membranes at to percent of their ultimate strength is possible and practical to give these structures great stability and decrease vibration in their membranes.
  • the inclined end arches ('1) and the center arch (2) which can also be two arches fastened to each other to act as one arch, are pivotably attached to the base (3).
  • Each end membrane (4a) and roof membrane (4b) on each side of the center support is continuously attached to the arches by a form of this fastening device which will be illustrated in later Figures.
  • These membrane to arch attachments are also applied to structures having a series of vertical or upright arches that also support a tensioned roof that has a double curvature as illustrated in other patent applications.
  • these membranes can be strong coated fabrics or weather-tight fabrics alone of fibres or filaments such as glass, wire, polyesters, etc. or flexible membranes of clear plastic,plastic with a scrim reinforcement or other flexible material to suitdesign conditions and having the quality by which a beaded edge can be formed that is sufficiently large enough to use in this attachment device.
  • This improved attachment feature is so simple and rugged, it offers a great labor saving advantage in the assembly and as a structural component itself, with these particular structures.
  • FIGS. 2 through 13 cross-sections of different arch configurations are shown to illustrate some of the many ways that this attachment can be located in the arch construction or attached to an arch.
  • each arrangement has a continuous slot (5) and an offset recess or cavity (6) in the arch into which the beaded edge (7) of the membrane is inserted and then continuously trapped into this cavity (6) by the practically non-compressible, stiff rubber or plastic type material, lock (8) that is prevented from working out of the lock position by a retainer (9). extruded or otherwise formed in the wal' towards which the lock presses when the beaded edge attempts to escape from the cavity (6), or recess, in which it is confined.
  • the lock (8) has a wedge shape whereby the most inward part (10) of the lock body (8) is thicker than the outer portion (11) to prevent the lock body from creeping outward when assembled as shown.
  • This tapered lock body can be made wide'enough at the inward edge to cause such a tight fit that it needs to be forced into position with its inward edge 10) back of the beaded membrane edge (7) so that it will not work out when tension is exerted by the membrane 12) on the beaded edge 7).
  • I Location of the membrane attachment can be a matter of design choice However, if a composite material, such as epoxy resin and fibreglass filaments, are used for the arch in such a configuration as FIG. 6 or 7 whereby the arch (12) is exposed to both the interior of the structure and to the exterior, condensation on the inner surface will not occur as readily as when the arch (12) is made of a highly heat conductive metal such as aluminum.
  • the surface exposed to the interior of the structure can be used for interior attachments if provision is made in design to'do so. While this is more difficult in designs such as FIG. 5 but connections can be made by deleting a small length of the beaded retainer (13) and devising a clamp to attach to the center member (14).
  • the lock (8) is omitted in the small length where the safety cable is attached to the arch
  • the center extruded fastener (14) is fastened to an arch (15) made of any chosen material by quick fasteners (16) and (17) or studs, bolts or by welding it to the arch.
  • Interior fasteners can be included in this construction by designing the center fastener (17) strong enough to take the load imposed on it.
  • FIG. 13 is a typical extruded arch design whereby the maximum tension stresses at the crown of an inclined arch can be imposed near the center of the arch, in the plane of the arch, to decrease the torque that would be imposed on the arch if these large tension forces'were imposed on the-edge or side of the arch.
  • This design also provides a space between the roof and end wall fasteners for interior attachments of safety cables between the arches and other attachments.
  • This design is also adaptable for vertical arches. It also has an advantage of having a space between the fasteners that can be filled with thermal insulation (18) to prevent condensation, when the bare metal (of the arch) between the fasteners reaches the dew point of the interior air. This happens when the exterior part of the arch is cooled, causing the temperature to decrease on the part of the arch exposed to the interior and the interior relative humidity is high enough for the portion of the arch exposed to the interior to reach the dew point.
  • the membranes can be attached to the arches before they are erected.
  • the arches When the arches are in a reclined position it is easier in some designs such as FIG. 5 to attach the lower membrane first.
  • FIG. 4 In other designs, such as FIG. 4, it is necessary to work under the membrane to make the lower attachment. In this case it is usually better to raise the arch high enough to gain a good working level to facilitate the attachment of the membrane.
  • FIGS. 4, 5, 8, 9, 10, l1 and 12 are preferred to get the arch on the outside of the structure, as a safety precaution in case ofa configuration, so the arches could be cooled by water spray to prevent buckling.
  • the arches can be filled with water or act as water mains for a sprinkler or deluge system witout interfering with the sealed off membrane attachments described herein.
  • a vaulted membrane structure comprised of a multiplicity of arches with curved bights pivotably mounted on a base; a flexible membrane supported by and extending between said arches that is depressed inwardly between the bights of said arches to form a roof of double curvature; said arches being separable, to tension said membrane, and having a mechanical means to hold said arches apart to maintain tension in said membrane, means for attaching said membrane to said arches that includes a continuous slot in the body of said arch, parallel with the length of said arch, a continuous recessed cavity connected to and adjacent to one side of said slot, a beaded edge of said membrane installed in said recessed cavity, and a continuous locking strip installed in said slot that is retained in said slot by means provided in the configuration of said slot and said locking strip.
  • the means for attaching said membrane to said arches includes a continuous recessed cavity adjacent to and on each side of said slot, a beaded membrane edge installed in each of said recessed cavities, a wedge shaped continuous strip lock installed in said slot between said beaded edges; the arrangement being such that when each beaded edge is placedin each continuous cavity, the wedge shaped strip lock is inserted between beaded edges of said membranes with the widest part of said wedge strip deepest in said slot and the two opposite faces of said wedge strip facing each of the said beaded edges so that when the membranes are tensioned the wedge strip prevents the beaded edges from emerging from said cavities and the wedge shape of the continuous locking strip prevents the locking strip from working out of said arch slot when tension varies in said membrane.

Abstract

A lightweight tension structure having a multiplicity of arches, strong tensioned membranes attached to and supported by the arches which are anchored to and supported by a common base in such a manner to maintain tension in the membranes and on the attachment of the membranes to the arches. A continuous, structural, weather-tight attachment that can safely transfer the tension forces created in the membranes to the arches, is accomplished by providing a hard beaded membrane edge that is pushed through a continuous arch slot into a recess or cavity adjacent to, and connected to, the arch slot; a lock strip that is inserted into the arch slot to prevent the beaded membrane edge from emerging from the recess when the membrane is tensioned and a retainer at the edge of the slot, or a wedged shape lock strip, to prevent the lock strip from working out of the arch slot.

Description

United States Patent [191 Huddle [111 3,811,454 May 21, 1974 STRUCTURAL MEMBRANE ATTACHMENT TO AN ARCH [75] Inventor: Carl F. Huddle, Pleasant Ridge,
Mich.
[73] Assignee: Tension Structures C0., Royal Oak,
Mich.
[22] Filed: .Dec. 22, 1972 [21] Appl. No.: 317,509
[52] US. Cl 135/1 R, 52/63, 160/395 [51] 'Int. Cl E04b U347 [58] Field of Search 135/1, 3, 4; 52/63;
[56] References Cited UNITED STATES PATENTS 2,914,776 12/1959 Hotz 160/392 3,187,801 6/1965 Saling 3,240,217 3/1966 Bird et a1. 3,483,879 12/1969 Oehmsen 135/1 R FOREIGN PATENTS OR APPLICATIONS 2,021,074 11/1970 Germany 52/222 Primary Examiner-Kenneth Downey [5 7 ABSTRACT A lightweight tension structure having a multiplicity of arches, strong tensioned membranes attached to and supported by the arches which are anchored to and supported by a common base in such a manner to maintain tension in the membranes and on the attachment of the membranes to the arches. A continuous, structural, weather-tight attachment that can safely transfer the tension forces created in the membranes to the arches, is accomplished by providing a hard beaded membrane edge that is pushed through a continuous arch slot into a recess or cavity adjacent to,
and connected to, the arch slot; a lock strip that is inserted into the arch slot to prevent the beaded membrane edge from emerging from the recess when the membrane is tensioned and a retainer at the edge of the slot, or a wedged shape lock strip, to prevent the lock strip from working out of the arch slot.
5 Claims, 13 Drawing Figures PATENTEDMAY 21 m4 318 1 L454 SHEET 1 OF. 2
I PATENTEUMYZI 1914 3.811454 SHEET 2 0F 2 ,I'I'n' STRUCTURAL MEMBRANE ATTACHMENT TO AN ARCH BACKGROUND OF INVENTION This invention relates to tension structures such as disclosed in my U.S. Pat. No. 3,215,133 dated Nov. 2, 1965; U.S. Pat. No. 3,388,7l 1 dated June I8, 1968 and copending application Ser. No. 93293 dated Nov. 27, 1970. All of these patents and applications are for arch supported lightweight tension shelters having inclined or vertical arches or a combination of both. All of these structures have tensioned membranes of compound curvature for the roof and the end walls, if end walls are used, to partially or fully enclose the structure. This invention is particularly related to a labor saving and cost reducing means by which the membrane can be safely attached to the supporting arches with a weathertight continuous seal. More importantly, by the use of this quick and easy attachment, the membrane serves as a rigid structural component when the arch is curved and the membrane is tensioned sufficiently. This aids in stabilizing the arch to which it is attached and, in some instances, it opposes arch deflections due to the loads imposed on the arch. When end walls that have a double curvature are also used to fully enclose an area, the stability of the structure is a very important characteristic. By this arrangement of continuous attachment, concentrated point stresses are avoided and usually smaller supports can be used. The same effect can be accomplished by a tedious, meticulous lacing system that encloses or captures the arch by this method but fabricating such an enclosure is especially difficult for curved arches and lacing during the assembly period is time consuming and difficult to do without producing wrinkles and an uneven attachment. Also, it is difficult to continuously attach an end wall after or before the roof membrane is attached to an arch. Finally, a weather cap or other means usually must be provided to seal between the roof and end wall membranes. This all adds to the cost of the structure.
By this attachment means, the locking strip can be installed on the inside or outside of the structure; it can be used on vertical center or intermediate arches as well as inclined arches; the membrane can be installed when the arches are reclined on the base before erection. By moving the arches closer together after erection. the membrane edge can be unlocked" from the arch and a new membrane can be fastened and locked to the arch without disassembling the remainder of the structure.
The lock that prohibits the beaded edge of the membrane from escaping from the continuous arch recess or cavity can be made of a variety of materials as long as they do not compress sufficiently to permit the beaded edge from pulling out" of the arch slot when the membrane is under tension. Hard rubber-like compositions of plastics or even metal or wood can be used especially when the slot is straight or has a large radius and the lock itself is relatively small in proportion; and- /or the lock is being bent in the plane of its smaller dimension. Some designs can have this characteristic and some require the lock to be bent in its opposite plane or the lock, of course, can be formed to fit the contour of the arch slot. It also can be extruded or formed to fit various retainer arrangements that keep it from working out of the slot under uneven forces such as produced by variable wind action.
The beaded edge can be easily fabricated by sewing, heat welding or otherwise securing a hard rope or cable in the edge. The size of the beaded edge can be varied for different tensions exerted on the membrane or to insure that the edge will be safely trapped within the continuous cavity. The size of the beaded edge and the compressibility, if any, of the lock strip are factors in each design.
The importance of being able to attach these membranes continuously cannot be over emphasized. When the membranes are tensioned with such an attachment, not only are the forces ideally distributed to the arch with the components of the forces acting somewhat like a continuous Webb of a beam, or similar to a plywood truss, the tensioned membranes give great stability to the arch and to the structure.
SUMMARY OF INVENTION The principal object of this invention is to provide a means by which a tensioned membrane can be continuously and individually attached to an arch, and more importantly, a curved arch without wrinkles or complicated changes in radii to enclose the arch and provide a weathertight seal.
Further objects of this invention are to greatly decrease the labor to attach and detach the membrane from the, arch by providing a removable lockthat is easy to install and remove, is economical to fabricate and will not work loose due to changes in the stress imposed on the attachment means. No particular skill is needed to attach or detach the membrane, no threaded fasteners are required as the attachment means is incorporated in the arch and the only other component required is the locking strip.
Still another object of this invention is to be able to replace a membrane, without disassembly of the structure that has been damaged, or for any other reason. dr
For a better explanation of the components of this invention, their functions and relationship as well as the objects of this invention, the following specifications, accompanying drawings are described along with the preferred embodiments:
BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a perspective view of an inclined arch structure that is illustrated in a number of my patents and applications that has at least one intermediate or center arch as an added support for the roof membrane.
FIG. 2 is a cross-sectional view of a curved wooden arch in a vertical arch structure shown in this and my parent application.
FIG. 3 has a different position of the fasteners in a wooden arch to produce more friction between the arch and the membrane.
FIG. 4 is a cross-sectional view of an extruded arch that has the membrane attachment extruded in the arch side or perifery that faces the structure.
FIG. 5 is a cross-sectional view with a different arrangement of the removable locks.
FIG. 6 illustrates a rectangular arch cross-section with the membrane attachment near the neutral'x axis or on the sides of the arch.
FIG. 7 is a modified cross-section of the FIG. 6 arch, locating the fastener near the lower or upper side of the arch.
the fastener on the top or bottom of the arch.
FIG. 9 illustrates an arch cross-section having a recess where two membrane edges can be locked to the arch with one lock.
FIG. 10, FIG. 11, and FIG. 12 extruded fasteners attached to arches independently.
FIG. 13 illustrates a cross-section that provides for safety cable attachments and at the same time enables the high tensioned membrane to be attached near the center line of the arch.
DESCRIPTION OF THE PREFERRED EMBODIMENT The architectural structure shown in FIG. 1 is commonly referred to in this field as a lightweight arch supported tension structure that has, by its inherent design, great stability that is attained by the curved inclined arches and curved center arch (orarches) that are continuously fastened to membranes of double curvature and are tensioned after erection to the degree that the membranes act as rigid structural components. Flexible membranes are now available at reasonable cost that have a tensile strength of 1,500 lbs. per inch. Post tensioning of such strong membranes at to percent of their ultimate strength is possible and practical to give these structures great stability and decrease vibration in their membranes.
The inclined end arches ('1) and the center arch (2), which can also be two arches fastened to each other to act as one arch, are pivotably attached to the base (3). Each end membrane (4a) and roof membrane (4b) on each side of the center support is continuously attached to the arches by a form of this fastening device which will be illustrated in later Figures. These membrane to arch attachments are also applied to structures having a series of vertical or upright arches that also support a tensioned roof that has a double curvature as illustrated in other patent applications.
As in my other patents, these membranes can be strong coated fabrics or weather-tight fabrics alone of fibres or filaments such as glass, wire, polyesters, etc. or flexible membranes of clear plastic,plastic with a scrim reinforcement or other flexible material to suitdesign conditions and having the quality by which a beaded edge can be formed that is sufficiently large enough to use in this attachment device.
This improved attachment feature is so simple and rugged, it offers a great labor saving advantage in the assembly and as a structural component itself, with these particular structures.
In FIGS. 2 through 13, cross-sections of different arch configurations are shown to illustrate some of the many ways that this attachment can be located in the arch construction or attached to an arch.
In all of theseFIGS. 2 through 13, each arrangement has a continuous slot (5) and an offset recess or cavity (6) in the arch into which the beaded edge (7) of the membrane is inserted and then continuously trapped into this cavity (6) by the practically non-compressible, stiff rubber or plastic type material, lock (8) that is prevented from working out of the lock position by a retainer (9). extruded or otherwise formed in the wal' towards which the lock presses when the beaded edge attempts to escape from the cavity (6), or recess, in which it is confined.
Where two membrane beaded edges (7) are confined by one lock (8) into a double recess cavity (FIG. 9), the lock (8) has a wedge shape whereby the most inward part (10) of the lock body (8) is thicker than the outer portion (11) to prevent the lock body from creeping outward when assembled as shown. This tapered lock body can be made wide'enough at the inward edge to cause such a tight fit that it needs to be forced into position with its inward edge 10) back of the beaded membrane edge (7) so that it will not work out when tension is exerted by the membrane 12) on the beaded edge 7).
I Location of the membrane attachment can be a matter of design choice However, if a composite material, such as epoxy resin and fibreglass filaments, are used for the arch in such a configuration as FIG. 6 or 7 whereby the arch (12) is exposed to both the interior of the structure and to the exterior, condensation on the inner surface will not occur as readily as when the arch (12) is made of a highly heat conductive metal such as aluminum.
The surface exposed to the interior of the structure can be used for interior attachments if provision is made in design to'do so. While this is more difficult in designs such as FIG. 5 but connections can be made by deleting a small length of the beaded retainer (13) and devising a clamp to attach to the center member (14).
In laminated arch designs such as shown in FIGS. 2 and 3 and in other designs such as FIGS. 6 and 7, interior fasteners are merely. a matter of design. Safety cables to hold the arches in position, in the event of a total membrane failure, when the membrane is used without a cable net, other additional supports such 'as cables, webbing, metal bands, etc, can be attached to and extend between the arches above or below the membrane attachments, if the. arches are segmented with slip joints, it is advisible to. attach such safety cables at such joints where the inner sleeve aids in distrib utingthe point stress imposed-on the arch at the safety cable attachment. Such an arrangement is shown in FIG. 9. In this construction the lock (8) is omitted in the small length where the safety cable is attached to the arch In FIGS. 10, 11 and 12, the center extruded fastener (14) is fastened to an arch (15) made of any chosen material by quick fasteners (16) and (17) or studs, bolts or by welding it to the arch. Interior fasteners can be included in this construction by designing the center fastener (17) strong enough to take the load imposed on it.
FIG. 13 is a typical extruded arch design whereby the maximum tension stresses at the crown of an inclined arch can be imposed near the center of the arch, in the plane of the arch, to decrease the torque that would be imposed on the arch if these large tension forces'were imposed on the-edge or side of the arch. This design also provides a space between the roof and end wall fasteners for interior attachments of safety cables between the arches and other attachments. This design is also adaptable for vertical arches. It also has an advantage of having a space between the fasteners that can be filled with thermal insulation (18) to prevent condensation, when the bare metal (of the arch) between the fasteners reaches the dew point of the interior air. This happens when the exterior part of the arch is cooled, causing the temperature to decrease on the part of the arch exposed to the interior and the interior relative humidity is high enough for the portion of the arch exposed to the interior to reach the dew point.
In all these membrane fastener arrangements, the membranes can be attached to the arches before they are erected. When the arches are in a reclined position it is easier in some designs such as FIG. 5 to attach the lower membrane first. In other designs, such as FIG. 4, it is necessary to work under the membrane to make the lower attachment. In this case it is usually better to raise the arch high enough to gain a good working level to facilitate the attachment of the membrane. These decisions become very important when assembling large structures such as aircraft shelters.
For inclined arches, such as described in some of my patents, membrane attachments similar to 4.5.8,9,l0 and 11 cause less torque stress in the arch, while arches such as FIGS. 2, 6 and 7 are better adapted for vertical arches than they are for inclined arches because of torque stresses they would induce in the arch.
Arches such as shown in FIGS. 4, 5, 8, 9, 10, l1 and 12 are preferred to get the arch on the outside of the structure, as a safety precaution in case ofa configuration, so the arches could be cooled by water spray to prevent buckling. In all cases except the wooden arches FIGS. 2 and 3 and the structural H-shape arch in FIG. 8, the arches can be filled with water or act as water mains for a sprinkler or deluge system witout interfering with the sealed off membrane attachments described herein.
Other variations and modifications may be possible and practical within the basic idea of the individual, continuous and dependable membrane attachment to a structural arch such as described herein; however, when strong membranes such as are available today are used as a highly tensioned structural members to form stable roofs and end walls in structures for public occupancy, it is almost imperative to use a dependable, continuous membrane attachment to prevent concentrated or point stresses in both the membraneand the arch support to utmost safety in adverse weather conditions.
I claim:
I. A vaulted membrane structure comprised of a multiplicity of arches with curved bights pivotably mounted on a base; a flexible membrane supported by and extending between said arches that is depressed inwardly between the bights of said arches to form a roof of double curvature; said arches being separable, to tension said membrane, and having a mechanical means to hold said arches apart to maintain tension in said membrane, means for attaching said membrane to said arches that includes a continuous slot in the body of said arch, parallel with the length of said arch, a continuous recessed cavity connected to and adjacent to one side of said slot, a beaded edge of said membrane installed in said recessed cavity, and a continuous locking strip installed in said slot that is retained in said slot by means provided in the configuration of said slot and said locking strip.
2. The structure described in claim 1 wherein the configuration on the continuous locking strip comprises a projection along one longitudinal edge thereof.
3. The vaulted structure described in claim 1 except that the means for attaching said membrane to said arches includes a continuous recessed cavity adjacent to and on each side of said slot, a beaded membrane edge installed in each of said recessed cavities, a wedge shaped continuous strip lock installed in said slot between said beaded edges; the arrangement being such that when each beaded edge is placedin each continuous cavity, the wedge shaped strip lock is inserted between beaded edges of said membranes with the widest part of said wedge strip deepest in said slot and the two opposite faces of said wedge strip facing each of the said beaded edges so that when the membranes are tensioned the wedge strip prevents the beaded edges from emerging from said cavities and the wedge shape of the continuous locking strip prevents the locking strip from working out of said arch slot when tension varies in said membrane.
4. The structure described in claim 1 except that sufficient space is provided between multiple membrane attachments to the arch to install mechanical attachments such as safety cables that extend between said arches and other components of these structures.
5. The structure described in claim 4 except that the space between multiple membrane attachments is thermally insulated to prevent the formation of condensatron.

Claims (5)

1. A vaulted membrane structure comprised of a multiplicity of arches with curved bights pivotably mounted on a base; a flexible membrane supported by and extending between said arches that is depressed inwardly between the bights of said arches to form a roof of double curvature; said arches being separable, to tension said membrane, and having a mechanical means to hold said arches apart to maintain tension in said membrane, means for attaching said membrane to said arches that includes a continuous slot in the body of said arch, parallel with the length of said arch, a continuous recessed cavity connected to and adjacent to one side of said slot, a beaded edge of said membrane installed in said recessed cavity, and a continuous locking strip installed in said slot that is retained in said slot by means provided in the configuration of said slot and said locking strip.
2. The structure described in claim 1 wherein the configuration on the continuous locking strip comprises a projection along one longitudinal edge thereof.
3. The vaulted structure described in claim 1 except that the means for attaching said membrane to said arches includes a continuous recessed cavity adjacent to and on each side of said slot, a beaded membrane edge installed in each of said recessed cavities, a wedge shaped continuous strip lock installed in said slot between said beaded edges; the arrangement being such that when each beaded edge is placed in each continuous cavity, the wedge shaped strip lock is inserted between beaded edges of said membranes with the widest part of said wedge strip deepest in said slot and the two opposite faces of said wedge strip facing each of the said beaded edges so that when the membranes are tensioned the wedge strip prevents the beaded edges from emerging from said cavities and the wedge shape of the continuous locking strip prevents the locking strip from working out of said arch slot when tension varies in said membrane.
4. The structure described in claim 1 except that sufficient space is provided between multiple membrane attachments to the arch to install mechanical attachments such as safety cables that extend between said arches and other components of these structures.
5. The structure described in claim 4 except that the space between multiple membrane attachments is thermally insulated to prevent the formation of condensation.
US00317509A 1972-12-22 1972-12-22 Structural membrane attachment to an arch Expired - Lifetime US3811454A (en)

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FR2349694A1 (en) * 1976-04-28 1977-11-25 Losberger Kg ROOF FORMING TIP
DE2750561A1 (en) * 1976-11-15 1978-05-18 Skega Ab DEVICE FOR FASTENING A CLOTH
US4091485A (en) * 1976-10-22 1978-05-30 Dohet Pierre E Collapsible structure
US4092992A (en) * 1976-02-23 1978-06-06 Tension Structures Co. Laminated arch members and method of constructing them
US4112643A (en) * 1977-05-09 1978-09-12 Harter Corporation Snub assembly for securing covering material to a wall panel module
US4118904A (en) * 1977-06-28 1978-10-10 Sprung Philip D Building structure
US4137157A (en) * 1976-10-12 1979-01-30 Deister Machine Company, Inc. Screen tension assembly for vibratory screening apparatus
US4137687A (en) * 1977-06-28 1979-02-06 Sprung Philip D Stressed membrane space enclosure
US4150516A (en) * 1976-11-12 1979-04-24 Wemyss George A Framework and sheet material building structure
US4170810A (en) * 1977-02-17 1979-10-16 Alexander Peleg Fastening devices for flexible sheets
DE2844152A1 (en) * 1978-10-10 1980-04-24 Philip D Sprung Building stressed membrane enclosing structure - by power jack tensioning fabric strips on transverse arch frames with slide pads
DE2844151A1 (en) * 1978-10-10 1980-04-24 Philip D Sprung Building structure including frame members and stressed membrane cover - has frame members of I=beam section extruded aluminium alloy with attached fabric capturing device
FR2438715A1 (en) * 1978-10-09 1980-05-09 Sprung Philip Building stressed membrane enclosing structure - by power jack tensioning fabric strips on transverse arch frames with slide pads
US4274234A (en) * 1979-02-22 1981-06-23 Hartwig-Hartoglass, Inc. Double-wall greenhouse with flexible film walls
US4381629A (en) * 1980-11-28 1983-05-03 Ahn Min H Greenhouse
US4430814A (en) * 1981-10-30 1984-02-14 Stretch Devices, Inc. Fabric tensioning roller
US4649947A (en) * 1983-08-19 1987-03-17 Brunswick Corporation Expandable soft side shelter
US4726411A (en) * 1983-01-31 1988-02-23 Conley John L Sheet gripping assembly for single and dual sheet material
EP0277073A2 (en) * 1987-01-30 1988-08-03 Jean Dalo Fixation device for the edge of a tensile sheet, especially for the fixation of the lower edge of a tent fabric, and light shelter provided with such a device
US4817655A (en) * 1986-12-16 1989-04-04 Abc Extrusion Company Canopy assembly
US4838294A (en) * 1988-02-04 1989-06-13 Hunt Rowland D Openable enclosures and structures incorporating such enclosures
US4865066A (en) * 1986-12-16 1989-09-12 Abc Extrusion Company, Inc. Canopy assembly
US4888921A (en) * 1985-11-04 1989-12-26 Markham Gaynor P Header bar for awning structure
EP0470024A1 (en) * 1990-08-03 1992-02-05 Etablissements Lucien WALTER Société Anonyme dite, Device for canvas fixing on collapsible structures such as cornices, hangars or similar
WO1992019873A1 (en) * 1991-04-26 1992-11-12 Viktor Lohausen Device for the releasable connection of flexible webs or like to grooved sections
US5345962A (en) * 1992-07-27 1994-09-13 Moss C William Arch supported fabric structure
US5487242A (en) * 1994-04-26 1996-01-30 Stafford; Robert M. Method and apparatus for uniformly tensioning fabric panels of portable buildings
US5511348A (en) 1990-02-14 1996-04-30 Steelcase Inc. Furniture system
WO1996021072A1 (en) * 1995-01-03 1996-07-11 Koch Konstruktive Membranen Gmbh & Co. Kg Retaining device for anchoring single or multi-layer webs on a fixed component
US5690133A (en) * 1996-10-23 1997-11-25 Capwell; Bruce Floating sun shield
US5758196A (en) * 1995-10-23 1998-05-26 Laing; Ruth F. Outdoor studio utilizing apparatus for diffusing direct sunlight
US6003275A (en) * 1990-02-14 1999-12-21 Steelcase Development Inc. Furniture system
US6134844A (en) 1990-02-14 2000-10-24 Steelcase Inc. Method and apparatus for displaying information
US6170200B1 (en) 1990-02-14 2001-01-09 Steelcase Development Inc. Furniture system
FR2831582A1 (en) * 2001-10-26 2003-05-02 Jacques Barbier Panel for fencing or advertising is constituted by two posts between which are two horizontal rails between which flexible wall is held by section introduced in sheath inside rail
US20030163966A1 (en) * 2002-03-01 2003-09-04 Reynolds Glenn A. Method and apparatus for cladding elongated structural members
US20050076589A1 (en) * 2003-10-10 2005-04-14 Layfield Geosynthetics & Industrial Fabrics Ltd. Apparatus for connecting and anchoring tarpaulins
US6991403B1 (en) * 2004-09-15 2006-01-31 Hendee Charles C System for anchoring fabric panels
US20060201104A1 (en) * 2005-03-11 2006-09-14 Hallett Canvas And Sails, Inc. Tube with internal channel
US20070062567A1 (en) * 2005-09-21 2007-03-22 Tentnology Limited Modular pole tent and joining means
US20070278840A1 (en) * 2006-06-01 2007-12-06 Oliver Wang System and method for mounting wicker
US20070295380A1 (en) * 2004-08-26 2007-12-27 Willi Glaeser Pavilion
US20080314901A1 (en) * 2007-06-21 2008-12-25 Macqueen Jason Jeffery Robert Method of securing elongated objects to a floating cover
US20090008045A1 (en) * 2006-02-22 2009-01-08 Webasto Ag Shading Device for a Light-Permeable Window, In Particular for Motor Vehicles
US20090007394A1 (en) * 2007-07-04 2009-01-08 James Andrew Mills Method of and apparatus for connecting floating covers
WO2010003515A2 (en) * 2008-06-16 2010-01-14 Michael Stephen Patrick Brady Portable enclosure
WO2011051331A1 (en) * 2009-10-27 2011-05-05 Zencube - Fulland, Schneider, Overschmidt Gbr Tent system
US20110197940A1 (en) * 2010-02-12 2011-08-18 Gerhard Allan Warner Saddle shaped tent with portico
CN101408076B (en) * 2007-10-09 2012-07-04 太阳工业株式会社 Cover cloth fixing structure
US20130014794A1 (en) * 2011-07-12 2013-01-17 Ki Ho Jin Foldable tent
US9301624B2 (en) 2012-08-07 2016-04-05 Thorley Industries Llc Foldable play yard apparatus including a clamp and a method of attaching a flexible sheet to the clamp
US9453369B1 (en) * 2016-02-11 2016-09-27 Marhaygue, Llc Lineal retainer porch screening apparatus
US9926026B2 (en) 2011-11-03 2018-03-27 Awol Outdoors, Inc. Fold-out trailer having roof and/or walls formed with a plurality of fabrics
USD833558S1 (en) * 2017-07-14 2018-11-13 Kids Ii, Inc. Play gym
USD834129S1 (en) * 2017-09-12 2018-11-20 Hai Tong Foldable head tent
CN109372845A (en) * 2018-10-19 2019-02-22 广东科技学院 A kind of fixed device of soft thin material
USD841872S1 (en) * 2017-02-08 2019-02-26 T. Dashon Howard Light unit modular block
USD881487S1 (en) * 2017-12-20 2020-04-14 Robyn Davis Small dog pool float
CN112424690A (en) * 2018-07-13 2021-02-26 巴科股份有限公司 Tensioned projection screen
US11202508B2 (en) 2017-08-28 2021-12-21 Agio International Co., Ltd Q-shaped wicker furniture
US11345270B2 (en) 2016-03-20 2022-05-31 Awol Outdoors, Inc. Fold-out transportable partial or complete enclosure
USD958012S1 (en) * 2021-06-28 2022-07-19 Shanxi Hejing Qingji Trading Co., ltd. Mosquito netting for stroller
GB2608200A (en) * 2021-10-01 2022-12-28 Tenthouse Structures Pty Ltd Tensile membrane structure building system
US11554709B2 (en) 2017-05-08 2023-01-17 Awol Outdoors, Inc. Folding enclosure

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Cited By (90)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4034772A (en) * 1973-05-08 1977-07-12 Tension Structures Co. Vaulted membrane shelter
US3895468A (en) * 1974-01-14 1975-07-22 Joseph D Bernstein Mounting strip for flexible sheet material
US4092992A (en) * 1976-02-23 1978-06-06 Tension Structures Co. Laminated arch members and method of constructing them
FR2349694A1 (en) * 1976-04-28 1977-11-25 Losberger Kg ROOF FORMING TIP
US4137157A (en) * 1976-10-12 1979-01-30 Deister Machine Company, Inc. Screen tension assembly for vibratory screening apparatus
US4091485A (en) * 1976-10-22 1978-05-30 Dohet Pierre E Collapsible structure
US4150516A (en) * 1976-11-12 1979-04-24 Wemyss George A Framework and sheet material building structure
DE2750561A1 (en) * 1976-11-15 1978-05-18 Skega Ab DEVICE FOR FASTENING A CLOTH
FR2370880A1 (en) * 1976-11-15 1978-06-09 Skega Ab DEVICE FOR SECURING A FABRIC
US4337815A (en) * 1976-11-15 1982-07-06 Skega Ab Device for attaching a cloth
US4170810A (en) * 1977-02-17 1979-10-16 Alexander Peleg Fastening devices for flexible sheets
US4112643A (en) * 1977-05-09 1978-09-12 Harter Corporation Snub assembly for securing covering material to a wall panel module
US4118904A (en) * 1977-06-28 1978-10-10 Sprung Philip D Building structure
US4137687A (en) * 1977-06-28 1979-02-06 Sprung Philip D Stressed membrane space enclosure
FR2438715A1 (en) * 1978-10-09 1980-05-09 Sprung Philip Building stressed membrane enclosing structure - by power jack tensioning fabric strips on transverse arch frames with slide pads
DE2844151A1 (en) * 1978-10-10 1980-04-24 Philip D Sprung Building structure including frame members and stressed membrane cover - has frame members of I=beam section extruded aluminium alloy with attached fabric capturing device
DE2844152A1 (en) * 1978-10-10 1980-04-24 Philip D Sprung Building stressed membrane enclosing structure - by power jack tensioning fabric strips on transverse arch frames with slide pads
US4274234A (en) * 1979-02-22 1981-06-23 Hartwig-Hartoglass, Inc. Double-wall greenhouse with flexible film walls
US4381629A (en) * 1980-11-28 1983-05-03 Ahn Min H Greenhouse
US4430814A (en) * 1981-10-30 1984-02-14 Stretch Devices, Inc. Fabric tensioning roller
US4726411A (en) * 1983-01-31 1988-02-23 Conley John L Sheet gripping assembly for single and dual sheet material
US4649947A (en) * 1983-08-19 1987-03-17 Brunswick Corporation Expandable soft side shelter
US4888921A (en) * 1985-11-04 1989-12-26 Markham Gaynor P Header bar for awning structure
US4817655A (en) * 1986-12-16 1989-04-04 Abc Extrusion Company Canopy assembly
US4865066A (en) * 1986-12-16 1989-09-12 Abc Extrusion Company, Inc. Canopy assembly
EP0277073A3 (en) * 1987-01-30 1989-03-15 Jean Dalo Fixation device for the edge of a tensile sheet, especially for the fixation of the lower edge of a tent fabric, and light shelter provided with such a device
FR2610374A1 (en) * 1987-01-30 1988-08-05 Dalo Jean DEVICE FOR FASTENING THE EDGE OF A TENDED TABLECLOTH, APPLICABLE IN PARTICULAR TO THE FIXING OF THE LOWER EDGE OF A TENT CANVAS AND LIGHT SHELTER PROVIDED WITH SUCH A DEVICE
US4887626A (en) * 1987-01-30 1989-12-19 Pierre Dalo Stretched cloth fixing device
EP0277073A2 (en) * 1987-01-30 1988-08-03 Jean Dalo Fixation device for the edge of a tensile sheet, especially for the fixation of the lower edge of a tent fabric, and light shelter provided with such a device
AU595978B2 (en) * 1987-01-30 1990-04-12 Jean Dalo A stretched cloth fixing device
US4838294A (en) * 1988-02-04 1989-06-13 Hunt Rowland D Openable enclosures and structures incorporating such enclosures
US6170200B1 (en) 1990-02-14 2001-01-09 Steelcase Development Inc. Furniture system
US6003275A (en) * 1990-02-14 1999-12-21 Steelcase Development Inc. Furniture system
US6629386B1 (en) 1990-02-14 2003-10-07 Steelcase Development Corporation Furniture system
US5511348A (en) 1990-02-14 1996-04-30 Steelcase Inc. Furniture system
US5724778A (en) 1990-02-14 1998-03-10 Steelcase Inc. Furniture system
US6134844A (en) 1990-02-14 2000-10-24 Steelcase Inc. Method and apparatus for displaying information
EP0470024A1 (en) * 1990-08-03 1992-02-05 Etablissements Lucien WALTER Société Anonyme dite, Device for canvas fixing on collapsible structures such as cornices, hangars or similar
FR2665474A1 (en) * 1990-08-03 1992-02-07 Walter Ets Lucien DEVICE FOR FASTENING COVERS ON DISASSEMBLED STRUCTURES, IN PARTICULAR CHAPITels, HALLS OR THE LIKE.
WO1992019873A1 (en) * 1991-04-26 1992-11-12 Viktor Lohausen Device for the releasable connection of flexible webs or like to grooved sections
US5345962A (en) * 1992-07-27 1994-09-13 Moss C William Arch supported fabric structure
US5487242A (en) * 1994-04-26 1996-01-30 Stafford; Robert M. Method and apparatus for uniformly tensioning fabric panels of portable buildings
US5823704A (en) * 1995-01-03 1998-10-20 Koch Konstruktive Membranen Gmbh & Co., K.G. Holding device for the anchorage of single- or multilayer webs to a stationary structural member
WO1996021072A1 (en) * 1995-01-03 1996-07-11 Koch Konstruktive Membranen Gmbh & Co. Kg Retaining device for anchoring single or multi-layer webs on a fixed component
US5758196A (en) * 1995-10-23 1998-05-26 Laing; Ruth F. Outdoor studio utilizing apparatus for diffusing direct sunlight
US5690133A (en) * 1996-10-23 1997-11-25 Capwell; Bruce Floating sun shield
FR2831582A1 (en) * 2001-10-26 2003-05-02 Jacques Barbier Panel for fencing or advertising is constituted by two posts between which are two horizontal rails between which flexible wall is held by section introduced in sheath inside rail
US20030163966A1 (en) * 2002-03-01 2003-09-04 Reynolds Glenn A. Method and apparatus for cladding elongated structural members
US20050076589A1 (en) * 2003-10-10 2005-04-14 Layfield Geosynthetics & Industrial Fabrics Ltd. Apparatus for connecting and anchoring tarpaulins
US20070295380A1 (en) * 2004-08-26 2007-12-27 Willi Glaeser Pavilion
US6991403B1 (en) * 2004-09-15 2006-01-31 Hendee Charles C System for anchoring fabric panels
US20060201104A1 (en) * 2005-03-11 2006-09-14 Hallett Canvas And Sails, Inc. Tube with internal channel
US7650724B2 (en) * 2005-03-11 2010-01-26 Hallett Canvas & Sails, Inc. Tube with external channel
US20070062567A1 (en) * 2005-09-21 2007-03-22 Tentnology Limited Modular pole tent and joining means
US7987863B2 (en) * 2005-09-21 2011-08-02 Tentnology Limited Modular pole tent and joining means
US20090008045A1 (en) * 2006-02-22 2009-01-08 Webasto Ag Shading Device for a Light-Permeable Window, In Particular for Motor Vehicles
US7481495B2 (en) * 2006-06-01 2009-01-27 Agio International Company, Limited System and method for mounting wicker
US20070278840A1 (en) * 2006-06-01 2007-12-06 Oliver Wang System and method for mounting wicker
US20080314901A1 (en) * 2007-06-21 2008-12-25 Macqueen Jason Jeffery Robert Method of securing elongated objects to a floating cover
US7793390B2 (en) 2007-07-04 2010-09-14 Layfield Geosynthetics & Industrial Fabrics Ltd. Method of and apparatus for connecting floating covers
US20090007394A1 (en) * 2007-07-04 2009-01-08 James Andrew Mills Method of and apparatus for connecting floating covers
CN101408076B (en) * 2007-10-09 2012-07-04 太阳工业株式会社 Cover cloth fixing structure
WO2010003515A3 (en) * 2008-06-16 2014-08-07 Michael Stephen Patrick Brady Portable enclosure
WO2010003515A2 (en) * 2008-06-16 2010-01-14 Michael Stephen Patrick Brady Portable enclosure
WO2011051331A1 (en) * 2009-10-27 2011-05-05 Zencube - Fulland, Schneider, Overschmidt Gbr Tent system
US8701689B2 (en) 2010-02-12 2014-04-22 0798555 B.C. Ltd. Saddle shaped tent with portico
US20110197940A1 (en) * 2010-02-12 2011-08-18 Gerhard Allan Warner Saddle shaped tent with portico
US20130014794A1 (en) * 2011-07-12 2013-01-17 Ki Ho Jin Foldable tent
US10501133B2 (en) 2011-11-03 2019-12-10 Awol Outdoors, Inc. Stabilizing structure for a recreational vehicle
USD865572S1 (en) 2011-11-03 2019-11-05 Awol Outdoors, Inc. Side-panel
USD865642S1 (en) 2011-11-03 2019-11-05 Awol Outdoors, Inc. Wall assembly and canopy
US9926026B2 (en) 2011-11-03 2018-03-27 Awol Outdoors, Inc. Fold-out trailer having roof and/or walls formed with a plurality of fabrics
US11738815B2 (en) 2011-11-03 2023-08-29 Awol Outdoors, Inc. Fold-out trailer with retractable wheel assembly
US9301624B2 (en) 2012-08-07 2016-04-05 Thorley Industries Llc Foldable play yard apparatus including a clamp and a method of attaching a flexible sheet to the clamp
US9453369B1 (en) * 2016-02-11 2016-09-27 Marhaygue, Llc Lineal retainer porch screening apparatus
US11345270B2 (en) 2016-03-20 2022-05-31 Awol Outdoors, Inc. Fold-out transportable partial or complete enclosure
USD841872S1 (en) * 2017-02-08 2019-02-26 T. Dashon Howard Light unit modular block
US11554709B2 (en) 2017-05-08 2023-01-17 Awol Outdoors, Inc. Folding enclosure
USD833558S1 (en) * 2017-07-14 2018-11-13 Kids Ii, Inc. Play gym
US11202508B2 (en) 2017-08-28 2021-12-21 Agio International Co., Ltd Q-shaped wicker furniture
USD834129S1 (en) * 2017-09-12 2018-11-20 Hai Tong Foldable head tent
USD881487S1 (en) * 2017-12-20 2020-04-14 Robyn Davis Small dog pool float
CN112424690B (en) * 2018-07-13 2023-04-04 巴科股份有限公司 Tensioned projection screen
US20210294197A1 (en) * 2018-07-13 2021-09-23 Barco N.V. Tensioned projection screen
US11635677B2 (en) * 2018-07-13 2023-04-25 Barco N.V. Tensioned projection screen
CN112424690A (en) * 2018-07-13 2021-02-26 巴科股份有限公司 Tensioned projection screen
CN109372845A (en) * 2018-10-19 2019-02-22 广东科技学院 A kind of fixed device of soft thin material
USD958012S1 (en) * 2021-06-28 2022-07-19 Shanxi Hejing Qingji Trading Co., ltd. Mosquito netting for stroller
GB2608200A (en) * 2021-10-01 2022-12-28 Tenthouse Structures Pty Ltd Tensile membrane structure building system
WO2023056489A1 (en) * 2021-10-01 2023-04-06 Tenthouse Structures (pty) Ltd Tensile membrane structure building system

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AS Assignment

Owner name: HOTTEL CORPORATION, A CORP. OF DE

Free format text: ASSIGNMENT OF ASSIGNORS INTEREST.;ASSIGNOR:TENSION STRUCTURES CO., BY CARL F. HUDDLE, GENERAL MANAGER;REEL/FRAME:003832/0885

Effective date: 19810302

Owner name: HOTTEL CORPORATION, A CORP. OF DE, DELAWARE

Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:TENSION STRUCTURES CO., BY CARL F. HUDDLE, GENERAL MANAGER;REEL/FRAME:003832/0885

Effective date: 19810302