WO1996010526A1 - Vacuum-actuated conformal packing nest - Google Patents

Vacuum-actuated conformal packing nest Download PDF

Info

Publication number
WO1996010526A1
WO1996010526A1 PCT/US1994/011202 US9411202W WO9610526A1 WO 1996010526 A1 WO1996010526 A1 WO 1996010526A1 US 9411202 W US9411202 W US 9411202W WO 9610526 A1 WO9610526 A1 WO 9610526A1
Authority
WO
WIPO (PCT)
Prior art keywords
particles
container
nest
bag
inches
Prior art date
Application number
PCT/US1994/011202
Other languages
French (fr)
Inventor
Stephen Bender
Douglas Jay Montgomery
Original Assignee
Recoton, Corp.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Recoton, Corp. filed Critical Recoton, Corp.
Priority to PCT/US1994/011202 priority Critical patent/WO1996010526A1/en
Priority to AU10388/95A priority patent/AU1038895A/en
Publication of WO1996010526A1 publication Critical patent/WO1996010526A1/en

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D81/00Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents
    • B65D81/02Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents specially adapted to protect contents from mechanical damage
    • B65D81/05Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents specially adapted to protect contents from mechanical damage maintaining contents at spaced relation from package walls, or from other contents
    • B65D81/051Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents specially adapted to protect contents from mechanical damage maintaining contents at spaced relation from package walls, or from other contents using pillow-like elements filled with cushioning material, e.g. elastic foam, fabric

Definitions

  • This invention relates to vacuum-actuated conformal packing nests. More particularly, it relates to reconfigurable conformal packing nests and a method of using the same.
  • the nests have particular application to cases for cameras and accessories, and electronics, and for other delicate objects, as well as to re- useable shipping containers.
  • a packing nest according to the invention generally com ⁇ prises a sealed container formed of material substantially imper ⁇ vious to air. At least the upper surface of the nest is pliable so that it may be deformed to encompass the lower portion of an object to be nested.
  • the container contains rounded surface particles which are deformable under a pressure of less than about 1/2 atmospheres, and preferably less than about 0.2 atmo ⁇ spheres.
  • a passageway for air into and out of the container is provided as well as means for closing and opening the passageway.
  • the sealed container is placed in the bottom of a container such as a camera bag or packing case and the objects to be nested therein are depressed into the upper surface of the sealed con ⁇ tainer containing the particles until about a single layer is underneath the object and the rest of the particles are heaped up around the objects to be nested.
  • a hand operated air pump is provided with the packing nest which is connected to the passage, which may convenientlyly be a tube, and air is evacuated to decrease the pressure in the bag and cause the particles to be compressed together to form a rigid nest.
  • the passageway is then closed by clamp or other suitable means and a semi-permenant nest is formed.
  • the passageway is opened letting air into the nest and the process is repeated to form a new nest configuration.
  • Another object of the invention is to provide a vacuum- actuated conformal packing nest.
  • a further object of the invention is to provide such a packing nest which provides resilient protection for the objects nested.
  • a still further object of the invention is to provide such a packing nest which is inexpensive to manufacture and conveniently to use.
  • the invention accordingly comprises an article of manufac ⁇ ture possessing the features, properties, and the relation of elements which will be exemplified in the articles herein de ⁇ scribed; and a method comprising the several steps and the rela ⁇ tion of one or more of such steps with respect to each of the others which will be exemplified in the method herein described.
  • the scope of the invention will be indicated in the claims.
  • FIGURE 1 is a top view of a packing nest and associated pump according to the invention
  • FIGURE 2 is a top view of the associated pump of Figure 1;
  • FIGURE 3 is a perspective view of the packing nest of Figure 1 with the pump of Figure 1 attached in place in the bottom of a camera case;
  • FIGURE 4 is a perspective view similar to Figure 3 showing a camera pushed down into the packing nest of Figure 1 before it has been evacuated;
  • FIGURE 5 is a perspective view similar to Figure 4 after the packing nest has been evacuated
  • FIGURE 6 is a perspective view of the camera and packing nest after evacuation, and sealing of the evacuated nest and after removal of the pump showing how the packing nest becomes rigid holding its conforming shape about the camera;
  • FIGURE 7 is a perspective view of the packing nest of Figure 1 after it has been evacuated and configured around a flash unit in a camera case smaller than that shown in Figures 3, 4, and 5;
  • FIGURE 8 is a cut-away diagrammatic view illustrating use of the packing nest of Figure 1;
  • FIGURE 9 is a perspective view of two particles deformed under the influence of the vacuum created in the packing nest of Figure 1.
  • a packing nest according to the invention, is generally indicated at 12. It comprises a sheet of pliable plastic material 14 folded over at the bottom and heat sealed at 16 along its periphery.
  • a hollow tube 18 passes through the heat seal and allows for the entrance and exit of air into the sealed nest 12.
  • the nest when flattened, as shown in Figure 1 is filled to about 1/2 inch in thickness with foam plas ⁇ tic spheres 20.
  • the plastic tube 18 may be opened or closed by clamp 22.
  • a hand operated air pump is generally indicated at 24. It comprises a bulb 26 and tube 28, the inner diameter of which fits snugly over the outer diameter of tube 18, so that when the bulb 24 is operated, air may be evacuated from the nest 12.
  • the tube 28 may be attached to the bulb pump 26 at the end 30, as shown for evacuating the nest 12 of Figure 1 or may be attached at the other end 32 for pumping air into the nest 12.
  • the nest 12 is shown placed in the bottom of a 5 inch by 12 inch camera case generally indicated at 34.
  • the particles now fill the camera case to a depth of about 1 inch.
  • the clamp 22 is open and the tube 28 is fitted over the tube 18.
  • a camera, generally indicated at 36, is now pushed down into the nest 12 deforming the upper surface of the plastic film 14 and causing the particles 20 to heap up around the camera 36.
  • the camera 36 may be pushed down until there is a single layer of particles 20 underneath it and no farther because of the action of the particles 20 within the nest 12.
  • the pump 24 is then actuated to evacuate the nest 12 causing the particles 20 to rigidize in their conformation about the camera 36, as shown in Figure 5.
  • the camera 36 is held so tightly that by lifting the camera 36, the entire nest 12 may be pulled out of the camera case 24 still conforming to the camera 36, as shown in Figure 6.
  • the clamp 22 has been closed, sealing off the tube 18 so that the nest 12 maintains its shape which it will do for many months until the clamp 22 is opened.
  • the user wishes to reconfigure the nest 12, he opens the clamp 22 allowing air into the nest 12 which then assumes its original limp shape.
  • Figure 7 is a diagrammatic view of a package or case 40, ac ⁇ cording to the invention which comprises an outer casing 42.
  • the outer case 42 may termi ⁇ nate at a top 44.
  • the termination between the top and the bottom portions may be along the dotted line indicated at 46.
  • a lower pad 50 be included in the case 40.
  • the pad which is provided in most camera cases, may be of foam material or stuffed like a pillow.
  • the rigidized nest 52 sits on the pad 50.
  • the object 48 being nested in the conforming opening 54 in the nest 52.
  • another top pad 56 may be employed between the object 48 and the top surface 44 of the case 40. This may be a foam piece or may be inflatable as may be lower pad 50.
  • the vacuum-actuated conformal packing nest of the invention relates six key elements:
  • the object to be contained or nested
  • a nest container in the form of a bag, pouch, or tray having a pliable upper surface to contain the filler material and to maintain a chosen reduced internal air pressure;
  • valves and fittings on the nest container for controlling the passage of air into and out of it and to seal the air path;
  • the objects to be nested are predetermined by the User.
  • Item 4 the carrying case or container also is pre-determined by the User as is the environment in which the packing nest must work.
  • Items 2 and 3 are the key elements of the invention and its practicality. Each has certain basic requirements and proper ⁇ ties. In addition, for effective operation there are a number of relationships between the sizes and shapes of the nest containers and pellet fillers which are determined by the sizes and shapes of the objects to be contained and on the size and shape of the case or container. Successful application of these concepts is dependent on understanding and maintaining these relationships.
  • the material used for the nest container for the pel ⁇ lets must have a number of properties:
  • Non-Permeability Since the objective is to keep air from leaking or seeping into it, its material and sealing methods must inhibit the passage of air for extended periods.
  • the material chosen for the camera carrying case application is a special. heat-sealable, laminated plastic film produced by Dow Chemical Company under the Trademark SARANEX. This is a barrier film comprising 5 layers. The outer and middle layers are polyethylene and the other 2 layers are SARAN.
  • pliability ie, the upper surface of the nest container must be conformable in relation to the external objects:
  • a 2 mil "SARANEX 14" film is strong, tear resistant and wraps easily around the relatively complex contours of cameras and accessories. A heavier, stronger material would be needed for large, heavy objects.
  • the nominal size of the nest container in the bag con ⁇ figuration shown in the drawings must be larger than the floor-plan of the case or container.
  • the total girth of the bag on each axis must be great enough to follow the depression contours of the object when nested to the depth desired.
  • the open bag dimensions have ranged from 1.15 to 1.3 times the long dimension and from 1.25 to 1.5 times the short dimension of the desired case floor plan dimensions.
  • Shapes The general ideal properties of the pellets or beads used as filler change as the loose filler is molded into the contours imposed by the external object and then are compacted into a firm mass nesting the objects as the air is removed from the nest container. In the loose, positioning state, the particles must slip and slide easily to find new positions. Rounded, i.e. acutely convex smooth shapes most readily satisfy this requirement.
  • the pellets can be hard or soft, dry or slippery. Geometric forms such as flakes, cubes and other shapes with corners or interlocking textures do not perform well. Particle sizes and shapes such as sand or coffee grounds which can be readily packed and hold their form naturally without the addition of the vacuum film constraint are surprisingly difficult to shape by purely external manipulation of the object to be nested.
  • the ideal particle should lose its slippery, hard proper ⁇ ties and stay where it is. This can be achieved if the particle, while smooth, has a high coefficient of fric ⁇ tion or is deformable, so as to form minute inter ⁇ locking impressions as it is squeezed into place.
  • rigid polyethylene balls would not be as de ⁇ sirable as soft rubber balls.
  • Foam polystyrene balls work quite well since they are not slippery and are compressible.
  • the particles should be of very low density, i.e., have specific gravity very much less than that of water, so they will be easy to move up around the object to be nested.
  • Polystyrene beans obtainable from Gold Metal Furniture Company, identified as bean refill 39009-0001X which are used to fill bean bag chairs work very well for this purpose and are shown in the drawings. These beans are generally spheroidal and are formed of a close cell gas filled foam with a smooth gas sealing outer surface, such that they pop when deformed and cut with a knife. These balls, not only have a high coef ⁇ ficient of friction, they also become statically charged and tend to stick together from static elec ⁇ tricity when they interact with the different plastic (polyethylene) of the inner wall of the nest container. Sizes: Pellets that are too large do not migrate eas ⁇ ily and cannot nest properly to conform to the object contours. Pellets that are too small inhibit bulk migration during the seating process and can act as if pre-packed in an undesired shape. " The best particle size is related also to the overall bag size, container size and object size.
  • Ping Pong balls are appropriate for objects 10-12 feet long.
  • the size of the bag is designed to permit the desired filling depth with the typical displacement due to the object load.
  • the typical projected area of the object in plan view falls between 50% and 75% of the case area.
  • a typical ratio of filled thickness outside and under the objects is from 4:1 to 6:1. This results in a typical pellet volume of approximately 40% of a vol ⁇ ume equal to the internal plan view area times the boundary fill height desired.
  • Minimum ball size Relative to shortest width dimension (L) of objects.
  • APPROXIMATE BAG SIZES Includes .375/side for sealing
  • the particles 20 range in size from about 1/8 to about 3/16 inches in diameter.
  • the particle diam ⁇ eter can be related to the bags largest linear dimensions to range from about .0022 to about .0066 times the length of the bag 13.
  • the bag 13 is filled with the particles 20, such that when it is uniformly flattened, it is about 1/3 the height when the objects are nested in the camera bag. This means when the bag 13 is placed in the camera bag of the size for which it is designed, the particles rise to a height preferably about 1 inch, but this height may vary from about 1/2 inch to about 1.5 inches and still operate.
  • the height of the beads when flattened uniformly in the bag 13 outside of a camera case ranges from about a quarter of an inch to three-quarters of an inch preferably about 1/2 inch.

Abstract

A sealed bag of a pliable multi-layered barrier film (14) substantially impervious to air is partially filled with generally spherical closed cell foam plastic particles (20) deformable under a pressure of less than about 0.2 atmospheres. A bag used in a typical camera is typically 2 to 3 inches wider and longer than the inside of the case and filled with particles from about 1/16 to 1/4 of an inch in diameter. When flattened uniformly, the particle-filled bag is about one-half inch in thickness. The bag is placed inside a smaller camera case. Object(s) (36) is/are depressed into the upper surface of the bag which deforms about them until about a single layer of particles is underneath the object. The particles surround the objects up to about an inch or an inch and a half in depth. A hand operated pump (24) is provided to evacuate air from the bag to a pressure of somewhat more than 0.8 atmospheres. The bag and particles become rigid in the shape formed about the object. The tube is then sealed by a clamp (22) and the nest remains rigid for many months.

Description

VACUUM-ACTUATED CONFORMAL PACKING NEST
TECHNICAL FIELD
This invention relates to vacuum-actuated conformal packing nests. More particularly, it relates to reconfigurable conformal packing nests and a method of using the same. The nests have particular application to cases for cameras and accessories, and electronics, and for other delicate objects, as well as to re- useable shipping containers.
BACKGROϋND ART
For many years, users of photographic and video camera equipment and accessories and other delicate objects have created "nests" to hold and protect the objects in portable carrying cases by cutting holes or recesses in sheets or blocks of foam elastomers or plastics to fit the particular objects to be stored and protected.
These methods have two serious shortcomings:
1. The manual skills required to achieve a satisfac¬ tory fit to the sometimes complex shapes.
2. The needs and configurations desired may fre¬ quently change, requiring the purchase of new materials and re-cutting and re-fitting for the new use.
In recent years it has been a common practice to ship deli¬ cate articles in "nests" of resilient or crushable material such as plastic foam either premolded to conform to the shape of the object or using "foam-in-place" methods. These methods have served well when used for production quantities of fixed product configurations or for one-time shipment of objects of quite vari¬ able shape.
There has long been a need to create a new packing method which can be used with little user skill and training to produce a nesting system which conforms easily to the shape of the ob¬ jects to be stored or shipped and which can be readily re-formed and configured to fit a different combination of objects and shapes. DISCLOSURE OF THE INVENTION
A packing nest according to the invention generally com¬ prises a sealed container formed of material substantially imper¬ vious to air. At least the upper surface of the nest is pliable so that it may be deformed to encompass the lower portion of an object to be nested. The container contains rounded surface particles which are deformable under a pressure of less than about 1/2 atmospheres, and preferably less than about 0.2 atmo¬ spheres. A passageway for air into and out of the container is provided as well as means for closing and opening the passageway.
The sealed container is placed in the bottom of a container such as a camera bag or packing case and the objects to be nested therein are depressed into the upper surface of the sealed con¬ tainer containing the particles until about a single layer is underneath the object and the rest of the particles are heaped up around the objects to be nested. A hand operated air pump is provided with the packing nest which is connected to the passage, which may conviently be a tube, and air is evacuated to decrease the pressure in the bag and cause the particles to be compressed together to form a rigid nest. The passageway is then closed by clamp or other suitable means and a semi-permenant nest is formed.
When it is desired to change the configuration of the object or objects to be nested, the passageway is opened letting air into the nest and the process is repeated to form a new nest configuration.
OBJECTS OF THE INVENTION
It is therefore an object of the invention to provide a reconfigurable conformal nest and packaging method using the same.
Another object of the invention is to provide a vacuum- actuated conformal packing nest.
A further object of the invention is to provide such a packing nest which provides resilient protection for the objects nested.
A still further object of the invention is to provide such a packing nest which is inexpensive to manufacture and convient to use.
Other objects of the invention will in part be obvious and will in part appear hereinafter.
The invention accordingly comprises an article of manufac¬ ture possessing the features, properties, and the relation of elements which will be exemplified in the articles herein de¬ scribed; and a method comprising the several steps and the rela¬ tion of one or more of such steps with respect to each of the others which will be exemplified in the method herein described. The scope of the invention will be indicated in the claims.
BR EF DESCRIPTION OF THE DRAWINGS
For a fuller understanding of the nature and objects of the invention, reference should be had to the following detailed description taken in connection with the accompanying drawings in which:
FIGURE 1 is a top view of a packing nest and associated pump according to the invention;
FIGURE 2 is a top view of the associated pump of Figure 1;
FIGURE 3 is a perspective view of the packing nest of Figure 1 with the pump of Figure 1 attached in place in the bottom of a camera case;
FIGURE 4 is a perspective view similar to Figure 3 showing a camera pushed down into the packing nest of Figure 1 before it has been evacuated;
FIGURE 5 is a perspective view similar to Figure 4 after the packing nest has been evacuated;
FIGURE 6 is a perspective view of the camera and packing nest after evacuation, and sealing of the evacuated nest and after removal of the pump showing how the packing nest becomes rigid holding its conforming shape about the camera;
FIGURE 7 is a perspective view of the packing nest of Figure 1 after it has been evacuated and configured around a flash unit in a camera case smaller than that shown in Figures 3, 4, and 5;
FIGURE 8 is a cut-away diagrammatic view illustrating use of the packing nest of Figure 1; and
FIGURE 9 is a perspective view of two particles deformed under the influence of the vacuum created in the packing nest of Figure 1.
The same reference characters refer to the same elements throughout the several views of the drawings. BEST MODE FOR CARRYING OUT THE INVENTION
Now referring to Figure 1, a packing nest according to the invention, is generally indicated at 12. It comprises a sheet of pliable plastic material 14 folded over at the bottom and heat sealed at 16 along its periphery. A hollow tube 18 passes through the heat seal and allows for the entrance and exit of air into the sealed nest 12. The nest, when flattened, as shown in Figure 1 is filled to about 1/2 inch in thickness with foam plas¬ tic spheres 20. The plastic tube 18 may be opened or closed by clamp 22. A hand operated air pump is generally indicated at 24. It comprises a bulb 26 and tube 28, the inner diameter of which fits snugly over the outer diameter of tube 18, so that when the bulb 24 is operated, air may be evacuated from the nest 12.
Now referring to Figure 2, the tube 28 may be attached to the bulb pump 26 at the end 30, as shown for evacuating the nest 12 of Figure 1 or may be attached at the other end 32 for pumping air into the nest 12.
In Figure 3, the nest 12 is shown placed in the bottom of a 5 inch by 12 inch camera case generally indicated at 34. The particles now fill the camera case to a depth of about 1 inch. The clamp 22 is open and the tube 28 is fitted over the tube 18.
A camera, generally indicated at 36, is now pushed down into the nest 12 deforming the upper surface of the plastic film 14 and causing the particles 20 to heap up around the camera 36. The camera 36 may be pushed down until there is a single layer of particles 20 underneath it and no farther because of the action of the particles 20 within the nest 12. The pump 24 is then actuated to evacuate the nest 12 causing the particles 20 to rigidize in their conformation about the camera 36, as shown in Figure 5. The camera 36 is held so tightly that by lifting the camera 36, the entire nest 12 may be pulled out of the camera case 24 still conforming to the camera 36, as shown in Figure 6. Also as shown in Figure 6, the clamp 22 has been closed, sealing off the tube 18 so that the nest 12 maintains its shape which it will do for many months until the clamp 22 is opened. When the user wishes to reconfigure the nest 12, he opens the clamp 22 allowing air into the nest 12 which then assumes its original limp shape.
In Figure 7, the nest 12 has been reconfigured in a smaller camera bag, about 6 inches by 10 inches, around a flash unit 38. Figure 8 is a diagrammatic view of a package or case 40, ac¬ cording to the invention which comprises an outer casing 42. In the case of a camera bag or carton, the outer case 42 may termi¬ nate at a top 44. In the case of an attache case or the like, the termination between the top and the bottom portions may be along the dotted line indicated at 46. If the object 48 within the case 40 is to be subjected to rough handling, it is desirable that a lower pad 50 be included in the case 40. The pad, which is provided in most camera cases, may be of foam material or stuffed like a pillow. The rigidized nest 52, according to the invention, sits on the pad 50. The object 48 being nested in the conforming opening 54 in the nest 52. Optionally, another top pad 56 may be employed between the object 48 and the top surface 44 of the case 40. This may be a foam piece or may be inflatable as may be lower pad 50.
Referring to Figure 9, the fact that the particles 20 are deformable under low pressure, aids in rigidizing the nest 52, shown in Figure 8, without the use of high vacuum which would be hard to achieve in a consumer product and which would require the use of very expensive barrier film to prevent leakage of air into the nest 52.
Key Parameters and Relationships
The vacuum-actuated conformal packing nest of the invention relates six key elements:
1. The object to be contained or nested;
2. A nest container in the form of a bag, pouch, or tray having a pliable upper surface to contain the filler material and to maintain a chosen reduced internal air pressure;
3. A quantity of particles, pellets, or beads as the shapable filler in the container; 4. The carrying case or other container in which the objects are to be nested;
5. The valves and fittings on the nest container for controlling the passage of air into and out of it and to seal the air path;
6. External means to pump air into and out of the nest container.
The choice of the design and components for Items 5 and 6 will vary widely based on the application, but their technical requirements are similar for most uses. That is to reduce the pressure in the bag to rigidize the nest, to seal the nest, and not to leak.
The objects to be nested are predetermined by the User. Item 4, the carrying case or container also is pre-determined by the User as is the environment in which the packing nest must work.
Items 2 and 3 are the key elements of the invention and its practicality. Each has certain basic requirements and proper¬ ties. In addition, for effective operation there are a number of relationships between the sizes and shapes of the nest containers and pellet fillers which are determined by the sizes and shapes of the objects to be contained and on the size and shape of the case or container. Successful application of these concepts is dependent on understanding and maintaining these relationships.
THE NEST CONTAINER:
The material used for the nest container for the pel¬ lets must have a number of properties:
Non-Permeability: Since the objective is to keep air from leaking or seeping into it, its material and sealing methods must inhibit the passage of air for extended periods. The material chosen for the camera carrying case application is a special. heat-sealable, laminated plastic film produced by Dow Chemical Company under the Trademark SARANEX. This is a barrier film comprising 5 layers. The outer and middle layers are polyethylene and the other 2 layers are SARAN.
Flexibility and limpness, herein called pliability: ie, the upper surface of the nest container must be conformable in relation to the external objects: A 2 mil "SARANEX 14" film is strong, tear resistant and wraps easily around the relatively complex contours of cameras and accessories. A heavier, stronger material would be needed for large, heavy objects.
The nominal size of the nest container in the bag con¬ figuration shown in the drawings must be larger than the floor-plan of the case or container. The total girth of the bag on each axis must be great enough to follow the depression contours of the object when nested to the depth desired. For the initial applica¬ tion, the open bag dimensions have ranged from 1.15 to 1.3 times the long dimension and from 1.25 to 1.5 times the short dimension of the desired case floor plan dimensions.
FILLER PELLETS:
Shapes: The general ideal properties of the pellets or beads used as filler change as the loose filler is molded into the contours imposed by the external object and then are compacted into a firm mass nesting the objects as the air is removed from the nest container. In the loose, positioning state, the particles must slip and slide easily to find new positions. Rounded, i.e. acutely convex smooth shapes most readily satisfy this requirement. The pellets can be hard or soft, dry or slippery. Geometric forms such as flakes, cubes and other shapes with corners or interlocking textures do not perform well. Particle sizes and shapes such as sand or coffee grounds which can be readily packed and hold their form naturally without the addition of the vacuum film constraint are surprisingly difficult to shape by purely external manipulation of the object to be nested.
As the air is removed from the nest container, the ideal particle should lose its slippery, hard proper¬ ties and stay where it is. This can be achieved if the particle, while smooth, has a high coefficient of fric¬ tion or is deformable, so as to form minute inter¬ locking impressions as it is squeezed into place. For example, rigid polyethylene balls would not be as de¬ sirable as soft rubber balls. Foam polystyrene balls work quite well since they are not slippery and are compressible.
The particles should be of very low density, i.e., have specific gravity very much less than that of water, so they will be easy to move up around the object to be nested.
Polystyrene beans, obtainable from Gold Metal Furniture Company, identified as bean refill 39009-0001X which are used to fill bean bag chairs work very well for this purpose and are shown in the drawings. These beans are generally spheroidal and are formed of a close cell gas filled foam with a smooth gas sealing outer surface, such that they pop when deformed and cut with a knife. These balls, not only have a high coef¬ ficient of friction, they also become statically charged and tend to stick together from static elec¬ tricity when they interact with the different plastic (polyethylene) of the inner wall of the nest container. Sizes: Pellets that are too large do not migrate eas¬ ily and cannot nest properly to conform to the object contours. Pellets that are too small inhibit bulk migration during the seating process and can act as if pre-packed in an undesired shape. " The best particle size is related also to the overall bag size, container size and object size.
It has been found that, for objects whose dimensions are in the range of 1" to 8" and nested to depths of 1" to 1.5", the best range of ball pellet sizes is from .06" to .25" diameter. This relationship can be ap¬ proximated as particles whose projected area is equal to about .006 square inches per inch of object size range. For an object, say, 12" x 36"., the target diam¬ eters would range from .300" to .525". Intuitively this is reasonable, although smaller pellets may be desirable if the object has complex contours or detail. A range of sizes appears to work best.
Ping Pong balls are appropriate for objects 10-12 feet long.
CASE/NEST CONTAINER/PELLET VOLUME RELATIONSHIPS:
The size of the bag is designed to permit the desired filling depth with the typical displacement due to the object load. The typical projected area of the object in plan view falls between 50% and 75% of the case area. A typical ratio of filled thickness outside and under the objects is from 4:1 to 6:1. This results in a typical pellet volume of approximately 40% of a vol¬ ume equal to the internal plan view area times the boundary fill height desired. APPROXIMATE BALL/PELLET SIZES:
Minimum ball size: Relative to shortest width dimension (L) of objects.
Maximum ball size: Relative to largest longitudinal dimension
(L) .
2 Constant: 0.006 in /in (L)
L in inches Diameter inches
0.5 0.062
1 0.087
2 0.124
4 0.175
8 0.247
16 0.350
32 0.494
64 0.699
128 0.989
APPROXIMATE BAG SIZES: Includes .375/side for sealing
Case Dimension Bag Dimensions in Inches in Inches Min Max
5 7.0 7.8
6 8.3 9.2
7 9.5 10.5
8 10.8 12.0
9 11.1 12.5
10 12.3 13.8
12 14.5 16.4
13 15.7 17.7
14 16.8 19.0
15 18.0 20.3
16 19.2 21.6
17 20.3 22.9
18 21.5 24.2 APPROXIMATE FILL VOLUME: (Based on 1.25 inch fill height)
Volume in
Case Area Cubic Inches in square inches Min Max
50 25.0 31.3
75 37.5 46.9
100 50.0 62.5
125 62.5 78.1
150 75.0 93.8
175 87.5 109.4
200 100.0 125.0
250 125.0 156.3
300 150.0 187.5
We have found that it is desirable to use a range of sizes of pellets so as to conform to both small and large objects. Thus, for the typical camera case application illustrated in Figures 1 through 7, the particles 20 range in size from about 1/8 to about 3/16 inches in diameter. Thus, the particle diam¬ eter can be related to the bags largest linear dimensions to range from about .0022 to about .0066 times the length of the bag 13.
The bag 13 is filled with the particles 20, such that when it is uniformly flattened, it is about 1/3 the height when the objects are nested in the camera bag. This means when the bag 13 is placed in the camera bag of the size for which it is designed, the particles rise to a height preferably about 1 inch, but this height may vary from about 1/2 inch to about 1.5 inches and still operate. The height of the beads when flattened uniformly in the bag 13 outside of a camera case ranges from about a quarter of an inch to three-quarters of an inch preferably about 1/2 inch.
It will thus be seen that the objects set forth above among those made apparent from the preceding description, are effi¬ ciently attained and, since certain changes may be made in the above article and in carrying out the above method without de¬ parting from the scope of the invention, it is intended that all matter contained in the above description or shown in the accom- panying drawings shall be interpreted as illustrative and not in a limiting sense.
It is also to be understood that the following claims are intended to cover all of the generic and specific features of the invention herein described, and all statements of the scope of the invention which, as a matter of language, might be said to fall therebetween.
Having described our invention, what we claimed as new and desire to secure by Letters Patent is:

Claims

1. A vacuum actuated conformable packing nest adapted for location at the bottom of a case comprising generally vertical side walls and a bottom attached thereto comprising:
A) a sealed container of substantially the same size and shape as the bottom of said case formed of material substantially impervious to air at least the upper surface of said container being pliable and of dimensions substantially within the range of 1.15 to 1.5 times the dimensions of said bot¬ tom;
B) closed cell particles of a range of sizes con¬ tained within said container being deformable under a pressure of less than- about 1/2 atmo¬ sphere;
C) a passageway for air out of said container;
D) means for closing said passageway whereby the upper surface of said container may be deformed by an object to surround the lower portion of said object with said particles in said container and said particles made rigid by allowing air to leave said container through said passageway and closing said passageway prevent air from entering said container; and
E) pump means for expelling air from said container to form a rigid packing nest conformed to the object; characterized by said sealed container being of substan¬ tially the same size and shape as the bottom of said case at least the upper surface of said container being pliable and of dimensions substantially within the range of 1.15 to 1.5 times the dimensions of said bottom.
2. A package comprising:
A. a case comprising generally vertical side walls and a bottom attached thereto;
B. a vacuum actuated conformable packing nest located at the bottom of said case comprising: a. a sealed container formed of material substan¬ tially impervious to air, at least the upper sur¬ face of said container being pliable and of dimensions substantially within the range of 1.15 to 1.5 times the dimensions of said bottom; b. closed cell particles of a range of sizes con¬ tained within said container being deformable under a pressure of less than about 1/2 atmo¬ sphere; c. a passageway for air into and -out of said con¬ tainer; and d. means for closing said passageway whereby the upper surface of said container may be deformed by an object to surround the lower portion of said object with said particles in said container and said particles made rigid by evacuating said container through said passageway and closing said passageway to form a rigid packing nest conformed to the object.
3. A package as defined in claim 2 wherein a sealed bag formed of a pliable barrier film substan¬ tially impervious to air; said particles are generally spheroidal closed cell foam plastic particles deformable under a pressure of at least about 0.2 atmospheres; and
C. a tube forming the sole passage for air into an out of said container; and
D. means for sealing said tube.
4. A package as defined in claim 2 wherein the inner surface of said plastic barrier film inside of said bag and the outer surfaces of said particles are different plastic materials. 5. A package as defined in claim 2 wherein said plastic particles form a depth of about 0.
5 inches when said container is flattened.
6. A package as defined in claim 2 wherein said bag is rectangular and pillow shaped with outer dimensions less than about 20 inches by 15 inches and said particles vary in size from about 0.062 inches to about 0.350 inches.
7. A package as defined in claim 6 wherein said particles vary in diameter from about 1/8 inch to about 3/16 inches.
8. A package as defined in claim 2 wherein the inner surface of said plastic film in the outer surfaces of said particles are of different plastics; said particles range in size from a diameter of about 1/8 inch to a diameter of about 3/16 inch and are of varying sizes; said bag is rectangular and pillow shaped with outer dimensions less than about 20 inches by about 15 inches; and said plastic particles form a depth of about 0.5 inches when said bag is flattened.
9. A packing nest as defined in claim 2 wherein the inner surface of the pliable barrier film forming said plastic bag is polyethylene and said particles are formed polystyrene.
10. A packing nest as defined in claim 2 wherein the outer surfaces of said particles are substantially entirely convex.
11. A packing nest as defined in claim 2 wherein said particles contain at least one gas filled, sealed cell.
12. A packing nest as defined in claim 2 wherein said particles are closed cell foam plastic.
13. A packing nest as defined in claim 2 wherein said particles are of a density substantially less than that of water.
14. A packing nest as defined in claim 2 wherein said particles tend to stick together due to a static electric charge.
15. A packing nest as defined in claim 2 wherein said container has a thinnest dimension and two substantially larger dimensions and wherein the diameter of the particles is about 0.014 to 0.016 times the largest outer dimension of said con¬ tainer.
16. A package as defined in claim 2, and:
C. a lower resilient pad below said nest; and,
D. a upper resilient pad above said nest
17. A package as defined in claim 16 wherein said particles have convex outer surfaces.
18. A package as defined in claim 16 wherein said particles are deformable.
19. A package as defined in claim 16 wherein said particles are closed cell, generally spheroidal, and deformable at least at about 0.2 atmospheres and range in size from about .062 to about 0.350 inches.
PCT/US1994/011202 1994-10-03 1994-10-03 Vacuum-actuated conformal packing nest WO1996010526A1 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
PCT/US1994/011202 WO1996010526A1 (en) 1994-10-03 1994-10-03 Vacuum-actuated conformal packing nest
AU10388/95A AU1038895A (en) 1994-10-03 1994-10-03 Vacuum-actuated conformal packing nest

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/US1994/011202 WO1996010526A1 (en) 1994-10-03 1994-10-03 Vacuum-actuated conformal packing nest

Publications (1)

Publication Number Publication Date
WO1996010526A1 true WO1996010526A1 (en) 1996-04-11

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ID=22243066

Family Applications (1)

Application Number Title Priority Date Filing Date
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Country Status (2)

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AU (1) AU1038895A (en)
WO (1) WO1996010526A1 (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19635931A1 (en) * 1996-09-04 1998-03-05 Metzeler Schaum Gmbh Product packaging e.g. for irregularly-shaped product
DE19923529A1 (en) * 1999-02-12 2000-08-17 Rts Recycling Technologie Schl Plastic filling material, is produced by forming a packaging cushion composed of an air tight sleeve with filling material inside, and then evacuating the sleeve and pressing the contents with a stamper.
GB2416348A (en) * 2004-07-17 2006-01-25 Hardcase Internat Ltd Carrying case having cushioning means

Citations (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2488922A (en) * 1944-09-20 1949-11-22 Warren J Mead Method for making impressions of objects
US2638263A (en) * 1949-05-20 1953-05-12 Duo Vent Vacuum Closure Compan Flexible bag for vacuum sealing
US3338237A (en) * 1964-10-20 1967-08-29 Sconce Jerry Wayne Pneumatic splint
US3419134A (en) * 1966-07-08 1968-12-31 Martin E. Fitts Foamable package and method for forming cellular foam
US3515267A (en) * 1968-02-05 1970-06-02 Parke Davis & Co Package comprising space stuffer means comprising free flowing bodies in flexible bag means
US3690903A (en) * 1970-01-06 1972-09-12 Dow Chemical Co Pre-formed meat package
US3745998A (en) * 1971-01-06 1973-07-17 Bio Medical Syst Inc Vacuum formed support structures and immobilizer devices
US3811434A (en) * 1972-10-26 1974-05-21 Jacobson S Mfg Inflatable splint
US4157713A (en) * 1977-05-11 1979-06-12 Clarey Michael T Air-pressure splint
US4306549A (en) * 1979-02-01 1981-12-22 Canie Joseph G Splint-cast
US4640080A (en) * 1985-11-29 1987-02-03 The Dow Chemical Company Process to form generally rigid cushion packages from loose fill dunnage
US5080155A (en) * 1990-12-28 1992-01-14 Hooleon Corporation Keyboard enclosure

Patent Citations (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2488922A (en) * 1944-09-20 1949-11-22 Warren J Mead Method for making impressions of objects
US2638263A (en) * 1949-05-20 1953-05-12 Duo Vent Vacuum Closure Compan Flexible bag for vacuum sealing
US3338237A (en) * 1964-10-20 1967-08-29 Sconce Jerry Wayne Pneumatic splint
US3419134A (en) * 1966-07-08 1968-12-31 Martin E. Fitts Foamable package and method for forming cellular foam
US3515267A (en) * 1968-02-05 1970-06-02 Parke Davis & Co Package comprising space stuffer means comprising free flowing bodies in flexible bag means
US3690903A (en) * 1970-01-06 1972-09-12 Dow Chemical Co Pre-formed meat package
US3745998A (en) * 1971-01-06 1973-07-17 Bio Medical Syst Inc Vacuum formed support structures and immobilizer devices
US3811434A (en) * 1972-10-26 1974-05-21 Jacobson S Mfg Inflatable splint
US4157713A (en) * 1977-05-11 1979-06-12 Clarey Michael T Air-pressure splint
US4306549A (en) * 1979-02-01 1981-12-22 Canie Joseph G Splint-cast
US4640080A (en) * 1985-11-29 1987-02-03 The Dow Chemical Company Process to form generally rigid cushion packages from loose fill dunnage
US5080155A (en) * 1990-12-28 1992-01-14 Hooleon Corporation Keyboard enclosure

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19635931A1 (en) * 1996-09-04 1998-03-05 Metzeler Schaum Gmbh Product packaging e.g. for irregularly-shaped product
DE19635931B4 (en) * 1996-09-04 2004-10-07 Metzeler Schaum Gmbh Packaging element and such a packaging
DE19923529A1 (en) * 1999-02-12 2000-08-17 Rts Recycling Technologie Schl Plastic filling material, is produced by forming a packaging cushion composed of an air tight sleeve with filling material inside, and then evacuating the sleeve and pressing the contents with a stamper.
GB2416348A (en) * 2004-07-17 2006-01-25 Hardcase Internat Ltd Carrying case having cushioning means
GB2416348B (en) * 2004-07-17 2008-03-19 Hardcase Internat Ltd Carrying case

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