US3291282A - Mail feeding equipment - Google Patents

Mail feeding equipment Download PDF

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US3291282A
US3291282A US462975A US46297565A US3291282A US 3291282 A US3291282 A US 3291282A US 462975 A US462975 A US 462975A US 46297565 A US46297565 A US 46297565A US 3291282 A US3291282 A US 3291282A
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belt
mail
endless belt
trough
transverse
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US462975A
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Antonio D Pedagno
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07CPOSTAL SORTING; SORTING INDIVIDUAL ARTICLES, OR BULK MATERIAL FIT TO BE SORTED PIECE-MEAL, e.g. BY PICKING
    • B07C1/00Measures preceding sorting according to destination
    • B07C1/02Forming articles into a stream; Arranging articles in a stream, e.g. spacing, orientating
    • B07C1/04Forming a stream from a bulk; Controlling the stream, e.g. spacing the articles

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  • a typical mail feeding and culling procedure involves the constant movement of personnel between the receiving and cancelling and bundling stations, and because of this movement of personnel the work has been carried out on one floor level necessitating the provision of a great amount of floor space and large loss of time and in turn of the work of the mail sorters.
  • An object of the invention is to arrange the culling and cancelling stations at different levels whereby gravity feed of the mail from station to station may be utilized.
  • Another object of the invention is to provide mechanical mail feeding and culling equipment which is simple in design and has a minimum of working parts resulting in avoidance of mechanical failure and less cost of maintenance.
  • FIGURE 1 is a view, part sectional, part elevational and part diagrammatical, of mail feeding equipment ernbodying the invention and suitable for sorting large volumes of mail, parts being shown broken away, a bag of mail being shown dumped into the equipment for culling.
  • FIG. 2 is a top plan view thereof, the mail being omitted.
  • FIG. 3 is an enlarged cross sectional view taken on the line 33 of FIG. 2, mail being shown on the endless belt.
  • FIG. 4 is a sectional view taken on the line 4-4 of FIG. 2, mail being shown.
  • FIG. 5 is a view similar to FIG. 2 of mail feeding equipment embodying a modified form of the invention.
  • FIG. 6 is a side elevational view thereof, parts being shown broken away, mail being shown transported.
  • FIG. 7 is a similar view of mail feeding equipment embodying another modified form of the invention.
  • FIG. 8 is a top plan view as seen along the line 8-3 of FIG. 7.
  • FIG. 9 is a top perspective detail view of the suction chamber and manifold of FIG. 7.
  • FIG. 10 is a side elevational view of mail feeding equipment embodying yet another modified form of the invention, parts being shown broken away, mail being shown transported.
  • FIG. 11 is a detail perspective view of modified form of suction chamber, parts being shown broken away.
  • FIGS. 12, 13 and 14 are detail perspective views of mod fi d forms of slide chutes.
  • mail feeding and culling equipment embodying a preferred embodiment of the invention is shown and indicated generally at Ill.
  • the equipment in is shown diagrammatically mounted on a mezzanine floor 12. and on the main floor 14 of the structure, such as a post office.
  • a chute 16 On the mezzanine floor 12, at one end, there is shown a chute 16 having an inwardly slanting outer end wall 18 and inwardly slanting side wall 2d, 2th with rectangular 3,291,282 Patented Dec. 13, 1966 shaped inwardly projecting extensions 24, 24.
  • the chute is supported by spaced vertical posts 26.
  • a perforated endless belt 23 extends from the outer end of the chute to the inner end thereof.
  • the belt 28 is trained around a shaft 3r) at the outer end thereof, a shaft 34- at the inner end thereof and a shaft 36 intermediate the ends thereof, and over a guide shaft 38 intermediate the ends of the belt.
  • the outer shaft 3t? is disposed in a plane below the plane of the other shaft so that the belt is provided with a slanting uphill portion 4-0 onto which mail in the form of letters 42 is dumped from a mail bag 44 as seen in FIG. 1.
  • Shaft 34 is operatively connected to an electric motor 35.
  • Another perforated endless belt 48 is provided closely spaced from the inner end of belt 28.
  • Belt 48 is trained around a shaft 5% ⁇ at one end thereof, the left hand end as viewed in FIG. 1, a shaft 52 at the other end, and a shaft 54 intermediate the ends.
  • Shafts 52 and 54 are on the same plane as the shafts 34 and 36 of belt 28.
  • the shaft St ⁇ is disposed on a lower plane than the plane of the shaft 5% ⁇ and 52 and is disposed in an opening 56 in the mezzanine floor 12.
  • the belt 48 is also trained around a guide shaft 53 disposed slightly below the shafts 52 and 5 1.
  • the shafts are suitably journalled in side supports and shaft 2 is operatively connected to a motor 53.
  • the upper reach of the belt 48 extends along elongated strips 66 supported by vertical posts 62 to prevent mail from falling off of the belt.
  • the belt 48 in following the shafts is provided with an uphill slanting portion 64.
  • a chute es similar in shape to the body of chute 16 is suitably mounted on the mezzanine floor I12 above the opening 56 in the mezzanine floor underneath the inner end of the belt 218 so that letters are adapted to fall by gravity into the chute 66 as seen in FIG. 1.
  • the slanting uphill portion 64 of belt 48 extends downwardly into the chute 65 below the bottom thereof and through an opening 62; in the bottom thereof to the rear of the chute.
  • the casing is formed with an enlargement 8% adjacent its top end '73 to provide clearance for the cross shaft 54 which extends out through holes in the side walls 7d.
  • the belt 28 moves over the open top of the casing '70 forming the closure for the top, thebelt riding over and guided by an inwardly extending flange 82 on the end wall 76 and an outwardly extending flange 84 on the end wall 78.
  • a vacuum pump 36 is mounted on the mezzanine floor 12 adjacent the casing 79, which pump is connected to the interior of the casing 7% by a pipe 88 leading to an inlet )9 in the base wall 72 of the casing.
  • the casing '70 and belt 28 thus define a suction chamber 92.
  • Mail such as the letters 93 that has been left remaining after the culling operation, falls by gravity into the chute 66 and is sucked by the pump 86 flat against the outer surface of the slanted uphill portion 64 of belt 48 and carried upwardly to the topmost reach of the belt and then carried forwardly or toward the right as viewed in FIG. 1 in the direction of the arrow.
  • a number of perforated spaced endless belts are suitably mounted on the elongated strips 60 and extend over and across the belt 43 closely spaced thereabove.
  • Three belts, 94, 6 and 98 are shown and each is trained around rollers fixed on shafts Hi2 extending along both sides of the belt 48.
  • Vertically disposed tubular drop or gravity chutes 1% are suitably supported in openings 106 formed in the mezzanine floor 12 adjacent one side of the belt.
  • Each gravity or drop chute 104 continues into an integral slide chute 1% slanting downwardly and laterally from the drop chute 104.
  • Each slide chute 198 has one side 110 slanting inwardly toward the other opposite side 1112 thereby forming a guide for the letters to guide the letters to one side of the chute, toward the side 112, and into a narrow extension 114, open at its free end, and leading to an endless belt 116 mounted in an elongated casing 118 supported on the main floor 14 therebelow.
  • the belt 116 brings the culled letters in proper position to the cancelling and bundling stations.
  • a rectangular inverted pan-shaped shallow casing 118 is suitably mounted on the side strips 69 and positioned inside each endless belt 94, 96 and 98 with the lower reach of the belt closing the bottom open end of the casing as viewed in FIG. 4.
  • the casing 118 and endless belt 94 constitute a suction chamber 120 suitably and operatively connected to a manifold 122 including a pipe 124 operatively connected to the vacuum pump 86.
  • the suction chambers of all of the endless belts are operatively connected to the vacuum pump by means of the manifold 122.
  • a bag 44 of mail in the form of letters of all classes is dumped into the trough 16 onto the upwardly moving endless belt portion 40 of belt 28.
  • a mail sorter is stationed on each side of the belt 28 and manually culls out the letters it is not desired to process.
  • the letters that are left are carried by the endless belt 28 to the end thereof where they drop by gravity down into the trough 66 and during their fall they are sucked onto the surface of the uphill slanting portion 64 of the belt 48 by means of the suction pump 86 and suction chamber 92 therebehind.
  • the letters are carried along the top reach of belt 48 until they reach the first transverse belt, such as belt 94, whereupon the vacuum pump 86 and manifold 122 suck the letters off of belt 48 onto the bottom reach of belt 94 as shown in FIG. 4 and carry such letters to the outer end of the belt 94 where they drop by gravity into the drop chute 104 therebelow and from chute 104, the letters slide down through slide chute 108 into the narrow extension 114 thereof and off of extension 114 onto the endless belt 116 that carries them to the cancellation and bundling stations (not shown).
  • FIGS. 5 and 6 mail feeding and culling equipment embodying a modified form of the invention is shown.
  • the equipment 10 differs from the equipment 10 of FIG. 1 in that a pair of endless belts 48, 48' receive the culled letters 93' from the endless belt 28. This necessitates a wider chute 66, extending from side to sides of the belts 48, 48. Midway its ends, the chute 66 is formed with a transverse partition 130 so that when the letters fall off the end of belt 28, they strike the partition 130 and fall on both sides of the partition, some falling on one of the belts 48 and other letters falling on the other of said belts 48', thereby dividing the load.
  • each drop chute continues into an integral slide chute 108'.
  • the slide chute 108' as seen in FIG. 13 consists of a flaring portion 132 joined to the end of the drop chute which flaring portion continues into a narrow channel-shaped portion 134.
  • a central partition wall 136 extends centrally of the body of the chute from end to end thereof dividing the body of the chute into two compartments 138, 138 leading to the cancelling and bundling stations.
  • FIGS. 7 to 9, inclusive Another modified form of mail feeding and culling equipment 10" is shown in FIGS. 7 to 9, inclusive.
  • the equipment 10 includes only a single long endless belt 28 that receives the mail in the form of letters 42" and carries them initially uphill where they are manually culled at portion 40 and then along the top reach of the belt.
  • a plurality of spaced transverse belts 94", 96", 98" and 100 similar in arrangement end construction to the belts 96, 97 and 98 FIG. 1 terminate at one end over drop chutes 104" extending through openings 106" in the mezzanine floor 12" where they continue into downsuch as the pump 86 in FIG. 1.
  • the modified form of mail feeding and culling equipment 10a shown in FIG. 10 is installed on the main floor 140.
  • the perforated receiving endless belt 48a has a very short horizontal portion, the end of which is received in the top end of the slide chute 108a, which chute leads directly to the endless belt 116a in casing 118a.
  • Belt 1161 leads to the cancellation and bundling stations.
  • the slide chute 108a may be similar in construction to the slide chute 103' shown in FIG. 13.
  • the equipment 10a is similar to the equipment 10 and similar reference numerals are used to indicate similar par-ts.
  • FIG. 11 a modified form of suction chamber 92x is shown wherein the open top of the channel-shaped casing 70x is spanned by a wire grill or mesh 126 over which the perforated endless belt 48x moves carrying the letters 93x.
  • a reinforcing bar 123 may be fastened to the side walls 74x of the chamber.
  • the grill or mesh 126 adds rigidity to the chamber and gives body to the endless belt 48x.
  • Equipment for effecting a first culling followed b delivery to final collection receptacles of flat articles such as pieces of mail or cards comprising: a first trough receiving mail promiscuously; a first receiving movable endless belt for carrying said mail forwardly in position to be manually culled; a second trough at the inner end of said endless belt disposed in a plane below the end of the belt; a second movable receiving perforated endless belt having one end movable through said second trough and adapted to carry mail from said second trough; air suction means in said second trough for sucking mail from the second trough onto said one end of the perforated belt; means for moving said second endless belt; a series of space transverse movable perforated endless belts disposed across the top of the second endless belt and closely spaced therefrom; air suction means associated with said transverse belts for sucking mail off of the second endless belt onto said transverse belts; means for moving said transverse belt, a gravity chute at
  • the air suction means in said second trough includes an air suction chamber associated with the end of the endless belt in said second trough and a suction pump operatively connected to said suction chamber.
  • each transverse endless belt includes a suction chamber associated with the respective transverse endless belt, a suction pump, and a manifold operatively interposed between the pump and suction chamber.
  • the air suction means in said second trough includes an air suction chamber associated with the end of the endless belt in said second trough and a suction pump operatively connected to said suction chamber, and wherein the suction means associated with each transverse endless belt includes a suction chamber associated with the respective transverse endless belt, a suction pump, and a manifold operatively interposed between the pump and suction chamber.
  • the slide chutes each includes an elongated channel-shaped body, with one side of the body tapering toward the other side thereby producing a restricted end of the body leading to the adjacent endless belt.
  • first trough has an opening in the bottom thereof and wherein the adjacent end of the first endless belt extends through said opening and extends upwardly to the top of said trough, and wherein the second trough has an opening in the bottom thereof and the adjacent end of the second endless belt extends through said latter opening, and extends upwardly to the top of said second trough.
  • the suction chamber includes a base wall, side walls and end walls and being open at the top, and a wire mesh spanning the open top.
  • the suction chamber includes a base Wall, side walls and end walls and being open at the top, a wire mesh spanning the open top and a bar extending across the space between the side walls for reinforcing the chamber.
  • Equipment for effecting a first culling followed by delivery to final collection receptacles of flat articles such as pieces of mail or cards comprising: trough for receiving mail promiscuously; an elongated movable endless belt, one end of the belt extending to the bottom of said trough, the mail on said extension adapted to be culled manually, said belt extending forwardly of said trough carrying the culled mail, means for moving said endless belt, a series of space transverse movable perforated endless belts disposed across the top of said endless belt and closely spaced therefrom, air suction means associated with said transverse belts for sucking mail off of the first named endless belt onto said transverse belts, means for moving said transverse belts, a gravity chute at the end of each transverse belt adapted to receive the mail carried by said adjacent transverse belt and a slide chute operatively connected to each gravity chute for guiding mail to a movable endless belt, said latter endless belt leading to a collection receptacle.

Description

Dec. 13, 1966 A. D. PEDAGNO MAIL FEEDING EQUIPMENT 5 Shee ts-Sheet 1 Filed June 10, 1965 INVENTOR Z Pedy/m Dec. 13, 1966 A. D. PEDAGNO 3,291,232
MAIL FEEDING EQUIPMENT 5 Sheets-Sheet 3 Filed June 10, 1965 fl/ggfa/vio j) Paddy/70 Dec. 13, 1966 A. D. PEDAGNO 3,291,282
MAIL FEEDING EQUIPMENT Filed June 10, 1,965 5 Sheets-5heet 4 QQ N b 0 Q o a w ."VILNTOR. 0 a
Dec. 13, 1966 A. D. PEDAGNO $291 22 MAIL FEEDING EQUIPMENT 5 Sheets-Sheet 5 Filed June 10, 1.965
IN ENTOR,
United States Patent 3,291,232 MAIL FEEDENG EQUHPMENT Antonio 1). Pedagno, 588 Henry St, Brooklyn, NIY. Filed June Ill, 1965, Ser. No. 462,975 12 (Ilaims. (Cl. 198-66) This invention relates generally to mail feeding equipment and more particularly to mail feeding equipment by the use of which the necessary procedure of feeding culled mail is greatly facilitated and space economized.
A typical mail feeding and culling procedure involves the constant movement of personnel between the receiving and cancelling and bundling stations, and because of this movement of personnel the work has been carried out on one floor level necessitating the provision of a great amount of floor space and large loss of time and in turn of the work of the mail sorters.
An object of the invention is to arrange the culling and cancelling stations at different levels whereby gravity feed of the mail from station to station may be utilized.
Another object of the invention is to provide mechanical mail feeding and culling equipment which is simple in design and has a minimum of working parts resulting in avoidance of mechanical failure and less cost of maintenance.
For further comprehension of the invention and of the objects and advantages thereof, reference will be had to the following description and accompanying drawings and to the appended claims in which the various novel features of the invention are more particularly set forth.
In the accompanying drawings forming a material part of this disclosure:
FIGURE 1 is a view, part sectional, part elevational and part diagrammatical, of mail feeding equipment ernbodying the invention and suitable for sorting large volumes of mail, parts being shown broken away, a bag of mail being shown dumped into the equipment for culling.
FIG. 2 is a top plan view thereof, the mail being omitted.
FIG. 3 is an enlarged cross sectional view taken on the line 33 of FIG. 2, mail being shown on the endless belt.
FIG. 4 is a sectional view taken on the line 4-4 of FIG. 2, mail being shown.
FIG. 5 is a view similar to FIG. 2 of mail feeding equipment embodying a modified form of the invention.
FIG. 6 is a side elevational view thereof, parts being shown broken away, mail being shown transported.
FIG. 7 is a similar view of mail feeding equipment embodying another modified form of the invention.
FIG. 8 is a top plan view as seen along the line 8-3 of FIG. 7.
FIG. 9 is a top perspective detail view of the suction chamber and manifold of FIG. 7.
FIG. 10 is a side elevational view of mail feeding equipment embodying yet another modified form of the invention, parts being shown broken away, mail being shown transported.
FIG. 11 is a detail perspective view of modified form of suction chamber, parts being shown broken away.
FIGS. 12, 13 and 14 are detail perspective views of mod fi d forms of slide chutes.
Referring more in detail to the drawings and particularly to FIG. 1, mail feeding and culling equipment embodying a preferred embodiment of the invention is shown and indicated generally at Ill. The equipment in is shown diagrammatically mounted on a mezzanine floor 12. and on the main floor 14 of the structure, such as a post office. On the mezzanine floor 12, at one end, there is shown a chute 16 having an inwardly slanting outer end wall 18 and inwardly slanting side wall 2d, 2th with rectangular 3,291,282 Patented Dec. 13, 1966 shaped inwardly projecting extensions 24, 24. The chute is supported by spaced vertical posts 26.
A perforated endless belt 23 extends from the outer end of the chute to the inner end thereof. The belt 28 is trained around a shaft 3r) at the outer end thereof, a shaft 34- at the inner end thereof and a shaft 36 intermediate the ends thereof, and over a guide shaft 38 intermediate the ends of the belt. The outer shaft 3t? is disposed in a plane below the plane of the other shaft so that the belt is provided with a slanting uphill portion 4-0 onto which mail in the form of letters 42 is dumped from a mail bag 44 as seen in FIG. 1. Shaft 34 is operatively connected to an electric motor 35.
Another perforated endless belt 48 is provided closely spaced from the inner end of belt 28. Belt 48 is trained around a shaft 5%} at one end thereof, the left hand end as viewed in FIG. 1, a shaft 52 at the other end, and a shaft 54 intermediate the ends. Shafts 52 and 54 are on the same plane as the shafts 34 and 36 of belt 28. The shaft St} is disposed on a lower plane than the plane of the shaft 5%} and 52 and is disposed in an opening 56 in the mezzanine floor 12. The belt 48 is also trained around a guide shaft 53 disposed slightly below the shafts 52 and 5 1. The shafts are suitably journalled in side supports and shaft 2 is operatively connected to a motor 53. The upper reach of the belt 48 extends along elongated strips 66 supported by vertical posts 62 to prevent mail from falling off of the belt. The belt 48 in following the shafts is provided with an uphill slanting portion 64. A chute es similar in shape to the body of chute 16 is suitably mounted on the mezzanine floor I12 above the opening 56 in the mezzanine floor underneath the inner end of the belt 218 so that letters are adapted to fall by gravity into the chute 66 as seen in FIG. 1. The slanting uphill portion 64 of belt 48 extends downwardly into the chute 65 below the bottom thereof and through an opening 62; in the bottom thereof to the rear of the chute. A metal channel-shaped casing 7% having a base wall 72, opposed side walls 74, and end walls 76 and 73 is suitably mounted on the chute as below the slanted uphill portion 64. The casing is formed with an enlargement 8% adjacent its top end '73 to provide clearance for the cross shaft 54 which extends out through holes in the side walls 7d. The belt 28 moves over the open top of the casing '70 forming the closure for the top, thebelt riding over and guided by an inwardly extending flange 82 on the end wall 76 and an outwardly extending flange 84 on the end wall 78. A vacuum pump 36 is mounted on the mezzanine floor 12 adjacent the casing 79, which pump is connected to the interior of the casing 7% by a pipe 88 leading to an inlet )9 in the base wall 72 of the casing. The casing '70 and belt 28 thus define a suction chamber 92.
Mail, such as the letters 93 that has been left remaining after the culling operation, falls by gravity into the chute 66 and is sucked by the pump 86 flat against the outer surface of the slanted uphill portion 64 of belt 48 and carried upwardly to the topmost reach of the belt and then carried forwardly or toward the right as viewed in FIG. 1 in the direction of the arrow.
Referring particularly to FIG. 2, a number of perforated spaced endless belts are suitably mounted on the elongated strips 60 and extend over and across the belt 43 closely spaced thereabove. Three belts, 94, 6 and 98 are shown and each is trained around rollers fixed on shafts Hi2 extending along both sides of the belt 48. Vertically disposed tubular drop or gravity chutes 1% are suitably supported in openings 106 formed in the mezzanine floor 12 adjacent one side of the belt. Each gravity or drop chute 104 continues into an integral slide chute 1% slanting downwardly and laterally from the drop chute 104. Each slide chute 198 has one side 110 slanting inwardly toward the other opposite side 1112 thereby forming a guide for the letters to guide the letters to one side of the chute, toward the side 112, and into a narrow extension 114, open at its free end, and leading to an endless belt 116 mounted in an elongated casing 118 supported on the main floor 14 therebelow. The belt 116 brings the culled letters in proper position to the cancelling and bundling stations.
With particular reference to FIG. 4, in accordance with the invention, a rectangular inverted pan-shaped shallow casing 118 is suitably mounted on the side strips 69 and positioned inside each endless belt 94, 96 and 98 with the lower reach of the belt closing the bottom open end of the casing as viewed in FIG. 4. The casing 118 and endless belt 94 constitute a suction chamber 120 suitably and operatively connected to a manifold 122 including a pipe 124 operatively connected to the vacuum pump 86. The suction chambers of all of the endless belts are operatively connected to the vacuum pump by means of the manifold 122.
In operation, a bag 44 of mail in the form of letters of all classes is dumped into the trough 16 onto the upwardly moving endless belt portion 40 of belt 28. A mail sorter is stationed on each side of the belt 28 and manually culls out the letters it is not desired to process. The letters that are left are carried by the endless belt 28 to the end thereof where they drop by gravity down into the trough 66 and during their fall they are sucked onto the surface of the uphill slanting portion 64 of the belt 48 by means of the suction pump 86 and suction chamber 92 therebehind. The letters are carried along the top reach of belt 48 until they reach the first transverse belt, such as belt 94, whereupon the vacuum pump 86 and manifold 122 suck the letters off of belt 48 onto the bottom reach of belt 94 as shown in FIG. 4 and carry such letters to the outer end of the belt 94 where they drop by gravity into the drop chute 104 therebelow and from chute 104, the letters slide down through slide chute 108 into the narrow extension 114 thereof and off of extension 114 onto the endless belt 116 that carries them to the cancellation and bundling stations (not shown).
In FIGS. 5 and 6, mail feeding and culling equipment embodying a modified form of the invention is shown. The equipment 10 differs from the equipment 10 of FIG. 1 in that a pair of endless belts 48, 48' receive the culled letters 93' from the endless belt 28. This necessitates a wider chute 66, extending from side to sides of the belts 48, 48. Midway its ends, the chute 66 is formed with a transverse partition 130 so that when the letters fall off the end of belt 28, they strike the partition 130 and fall on both sides of the partition, some falling on one of the belts 48 and other letters falling on the other of said belts 48', thereby dividing the load. At the exit end of each belt 48', two drop or gravity chutes 104 are provided, each drop chute continuing into an integral slide chute 108'. The slide chute 108' as seen in FIG. 13 consists of a flaring portion 132 joined to the end of the drop chute which flaring portion continues into a narrow channel-shaped portion 134. A central partition wall 136 extends centrally of the body of the chute from end to end thereof dividing the body of the chute into two compartments 138, 138 leading to the cancelling and bundling stations.
Another modified form of mail feeding and culling equipment 10" is shown in FIGS. 7 to 9, inclusive. The equipment 10 includes only a single long endless belt 28 that receives the mail in the form of letters 42" and carries them initially uphill where they are manually culled at portion 40 and then along the top reach of the belt. A plurality of spaced transverse belts 94", 96", 98" and 100 similar in arrangement end construction to the belts 96, 97 and 98 FIG. 1 terminate at one end over drop chutes 104" extending through openings 106" in the mezzanine floor 12" where they continue into downsuch as the pump 86 in FIG. 1.
The modified form of mail feeding and culling equipment 10a shown in FIG. 10 is installed on the main floor 140. The perforated receiving endless belt 48a has a very short horizontal portion, the end of which is received in the top end of the slide chute 108a, which chute leads directly to the endless belt 116a in casing 118a. Belt 1161: leads to the cancellation and bundling stations. The slide chute 108a may be similar in construction to the slide chute 103' shown in FIG. 13.
In all other respects, the equipment 10a is similar to the equipment 10 and similar reference numerals are used to indicate similar par-ts.
In FIG. 11, a modified form of suction chamber 92x is shown wherein the open top of the channel-shaped casing 70x is spanned by a wire grill or mesh 126 over which the perforated endless belt 48x moves carrying the letters 93x. A reinforcing bar 123 may be fastened to the side walls 74x of the chamber. The grill or mesh 126 adds rigidity to the chamber and gives body to the endless belt 48x.
While I have illustrated and described the preferred embodiments of the invention, it is to be understood that I do not limit myself to the precise constructions herein disclosed and that various'changes and modifications may be made within the scope of the invention as defined in the appended claims.
What is claimed is: 1. Equipment for effecting a first culling followed b delivery to final collection receptacles of flat articles such as pieces of mail or cards, comprising: a first trough receiving mail promiscuously; a first receiving movable endless belt for carrying said mail forwardly in position to be manually culled; a second trough at the inner end of said endless belt disposed in a plane below the end of the belt; a second movable receiving perforated endless belt having one end movable through said second trough and adapted to carry mail from said second trough; air suction means in said second trough for sucking mail from the second trough onto said one end of the perforated belt; means for moving said second endless belt; a series of space transverse movable perforated endless belts disposed across the top of the second endless belt and closely spaced therefrom; air suction means associated with said transverse belts for sucking mail off of the second endless belt onto said transverse belts; means for moving said transverse belt, a gravity chute at the end of each transverse belt adapted to receive the mail carried by said adjacent transverse belt; and a slide chute operatively connected to each gravity chute for guiding mail to a movable endless belt, said latter belt leading to a collection receptacle.
2. Equipment as defined in claim 1 wherein the air suction means in said second trough includes an air suction chamber associated with the end of the endless belt in said second trough and a suction pump operatively connected to said suction chamber.
3. Equipment as defined in claim 1 wherein the air suction means associated with each transverse endless belt includes a suction chamber associated with the respective transverse endless belt, a suction pump, and a manifold operatively interposed between the pump and suction chamber.
4. Equipment as defined in claim 1 wherein the air suction means in said second trough includes an air suction chamber associated with the end of the endless belt in said second trough and a suction pump operatively connected to said suction chamber, and wherein the suction means associated with each transverse endless belt includes a suction chamber associated with the respective transverse endless belt, a suction pump, and a manifold operatively interposed between the pump and suction chamber.
5. Equipment as defined in claim 1 wherein the slide chutes each includes an elongated channel-shaped body, with one side of the body tapering toward the other side thereby producing a restricted end of the body leading to the adjacent endless belt.
6. Equipment as defined in claim 1 wherein the first trough has an opening in the bottom thereof and wherein the adjacent end of the first endless belt extends through said opening and extends upwardly to the top of said trough, and wherein the second trough has an opening in the bottom thereof and the adjacent end of the second endless belt extends through said latter opening, and extends upwardly to the top of said second trough.
7. Equipment as defined in claim 1 wherein the troughs and endless belts are supported on a mezzanine floor and wherein the mezzanine floor has openings to receive the gravity chutes, and wherein the slide chutes lead to a main floor on a lower level than the mezzanine floor.
8. Equipment as defined in claim 1 wherein the suction chamber includes a base wall, side walls and end walls and being open at the top, and a wire mesh spanning the open top.
9. Equipment as defined in claim 1 wherein the suction chamber includes a base Wall, side walls and end walls and being open at the top, a wire mesh spanning the open top and a bar extending across the space between the side walls for reinforcing the chamber.
10. Equipment for effecting a first culling followed by delivery to final collection receptacles of flat articles such as pieces of mail or cards, comprising: trough for receiving mail promiscuously; an elongated movable endless belt, one end of the belt extending to the bottom of said trough, the mail on said extension adapted to be culled manually, said belt extending forwardly of said trough carrying the culled mail, means for moving said endless belt, a series of space transverse movable perforated endless belts disposed across the top of said endless belt and closely spaced therefrom, air suction means associated with said transverse belts for sucking mail off of the first named endless belt onto said transverse belts, means for moving said transverse belts, a gravity chute at the end of each transverse belt adapted to receive the mail carried by said adjacent transverse belt and a slide chute operatively connected to each gravity chute for guiding mail to a movable endless belt, said latter endless belt leading to a collection receptacle.
11. Equipment as defined in claim 10 wherein the slide chutes each has a channel-shaped body.
12. Equipment as defined in claim 10 wherein the slide chutes terminate at different horizontal planes thereby conserving space.
References Cited by the Examiner UNITED STATES PATENTS 2,609,912 9/ 1952 Engel 19848 2,941,653 6/ 1960 Kniemelmeyer 198--31 2,961,085 11/1960 Stovall 19830 MARVIN A. CHAMPION, Primary Examiner.
RICHARD E. AEGERTER, Examiner.

Claims (1)

1. EQUIPMENT FOR EFFECTING A FIRST CULLING FOLLOWED BY DELIVERY TO FINAL COLLECTION RECEPTACLES OF FLAT ARTICLES SUCH AS PIECES OF MAIL OR CARDS, COMPRISING; A FIRST TROUGH RECEIVING MAIL PROMISCUOUSLY; A FIRST RECEIVING MOVABLE ENDLESS BELT FOR CARRYING SAID MAIL FORWARDLY IN POSITION TO BE MANUALLY CULLED; A SECOND TROUGH AT THE INNER END OF SAID ENDLES BELT DISPOSED IN A PLANE BELOW THE END OF THE BELT; A SECOND MOVABLE RECEIVING PERFORATED ENDLESS BELT HAVING ONE END MOVABLE THROUGH SAID SECONDTROUGH AND ADAPTED TO CARRY MAIL FROM SAID SECOND TROUGH; AIR SUCTION MEANS IN SAID SECOND TROUGH FOR SUCKING MAIL FROM THE SECOND TROUGH ONTO SAID ONE END OF THE PERFORATED BELT; MEANS FOR MOVING SAID SECOND ENDLESS BELT; A SERIES OF SPACE TRANSVERSE MOVABLE PERFORATED ENDLESS BELTS DISPOSED ACROSS THE TOP OF THE SECOND ENDLESS BELT AND CLOSELY SPACED THEREFROM; AIR SUCTION MEANS ASSOCIATED WITH SAID TRANSVERSE BELTS FOR SUCKING MAIL OFF OF THE SECOND ENDLESS BELT ONTO SAID TRANSVERSE BELTS; MEANS FOR MOVING SAID TRANSVERSE BELT, A GRAVITY CHUTE AT THE END OF EACH TRANSVERSE BELT ADAPTED TO RECEIVE THE MAIL CARRIED BY SAID ADJACENT TRANSVERSE BELT; AND A SLIDE CHUTE OPERATIVELY CONNECTED TO EACH GRAVITY CHUTE FOR GUIDING MAIL TO A MOVABLE ENDLESS BELT, SAID LATTER BELT LEADING TO A COLLECTION RECEPTACLE.
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Cited By (25)

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US3352404A (en) * 1965-12-20 1967-11-14 Settembrini Antoine Di Devices for stabilizing light objects on conveyor belts
US3358831A (en) * 1965-09-03 1967-12-19 Le Roy E Cothrell Apparatus for and method of sorting sheet material
US3399587A (en) * 1965-10-26 1968-09-03 Int Paper Canada Sheet handling method and apparatus
US3517925A (en) * 1967-10-25 1970-06-30 Siempelkamp Gmbh & Co Conveyor system for fiber mats
US3529713A (en) * 1966-10-05 1970-09-22 Seita Method and device for conveying rod-shaped objects,and especially cigarettes,between two levels
US3592329A (en) * 1966-10-27 1971-07-13 Gen Logistics Differential pressure conveyors
US3613883A (en) * 1969-08-19 1971-10-19 Speizman Ind Inc Apparatus and method for transferring flaccid articles
US3861121A (en) * 1973-08-01 1975-01-21 Wright Machinery Company Inc Article packaging apparatus
US4304508A (en) * 1979-02-14 1981-12-08 Bellaplast Gmbh Transfer apparatus for transferring articles in succession
US4316565A (en) * 1978-02-20 1982-02-23 Pilkington Brothers Limited Sheet transfer apparatus
US4702471A (en) * 1985-12-23 1987-10-27 The Dow Chemical Company Article transport arrangement
US5295586A (en) * 1991-12-16 1994-03-22 E. I. Du Pont De Nemours And Company Apparatus for separating a sheet from an array of sheets
US20030188616A1 (en) * 2002-04-03 2003-10-09 Behymer Lance E. Compliant cutting die apparatus for cutting fuel cell material layers
US20030191021A1 (en) * 2002-04-03 2003-10-09 3M Innovative Properties Company Lamination apparatus and methods
US20040047656A1 (en) * 2001-08-21 2004-03-11 Satoshi Sakai Liquid development electrophotographic device
US20050076722A1 (en) * 2002-05-31 2005-04-14 Strohmeyer James J. Systems and methods for residue collection with improved letter handling capability
US20050199039A1 (en) * 2002-05-31 2005-09-15 Strohmeyer James J. Systems and methods for residue collection
US20050217980A1 (en) * 2002-04-03 2005-10-06 3M Innovative Properties Company Angled product transfer conveyor
US20060102281A1 (en) * 2002-04-03 2006-05-18 3M Innovative Properties Company Method and apparatus for peeling a thin film from a liner
US7195690B2 (en) 2003-05-28 2007-03-27 3M Innovative Properties Company Roll-good fuel cell fabrication processes, equipment, and articles produced from same
WO2009059586A1 (en) * 2007-11-05 2009-05-14 Hennecke Systementwicklung Single-plate conveyor, endless single-plate conveyor and arrangement comprising at least two endless single-plate conveyors
US7569081B2 (en) 2002-04-03 2009-08-04 3M Innovative Properties Company Method for converting a fuel cell membrane web to precisely positioned membrane sheets
US8047053B2 (en) * 2007-05-09 2011-11-01 Icx Technologies, Inc. Mail parcel screening using multiple detection technologies
US9776796B2 (en) * 2013-06-27 2017-10-03 Siemens Aktiengesellschaft System and method for destacking and conveying articles arranged in stacks
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US2941653A (en) * 1957-12-02 1960-06-21 Emerson Radio & Phonograph Cor Mail handling apparatus

Cited By (45)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3358831A (en) * 1965-09-03 1967-12-19 Le Roy E Cothrell Apparatus for and method of sorting sheet material
US3399587A (en) * 1965-10-26 1968-09-03 Int Paper Canada Sheet handling method and apparatus
US3352404A (en) * 1965-12-20 1967-11-14 Settembrini Antoine Di Devices for stabilizing light objects on conveyor belts
US3529713A (en) * 1966-10-05 1970-09-22 Seita Method and device for conveying rod-shaped objects,and especially cigarettes,between two levels
US3592329A (en) * 1966-10-27 1971-07-13 Gen Logistics Differential pressure conveyors
US3517925A (en) * 1967-10-25 1970-06-30 Siempelkamp Gmbh & Co Conveyor system for fiber mats
US3613883A (en) * 1969-08-19 1971-10-19 Speizman Ind Inc Apparatus and method for transferring flaccid articles
US3861121A (en) * 1973-08-01 1975-01-21 Wright Machinery Company Inc Article packaging apparatus
US4316565A (en) * 1978-02-20 1982-02-23 Pilkington Brothers Limited Sheet transfer apparatus
US4304508A (en) * 1979-02-14 1981-12-08 Bellaplast Gmbh Transfer apparatus for transferring articles in succession
US4702471A (en) * 1985-12-23 1987-10-27 The Dow Chemical Company Article transport arrangement
US5295586A (en) * 1991-12-16 1994-03-22 E. I. Du Pont De Nemours And Company Apparatus for separating a sheet from an array of sheets
US5441252A (en) * 1991-12-16 1995-08-15 E. I. Du Pont De Nemours And Company Method for separating and stacking lanes of sheets
US20040047656A1 (en) * 2001-08-21 2004-03-11 Satoshi Sakai Liquid development electrophotographic device
US20030188616A1 (en) * 2002-04-03 2003-10-09 Behymer Lance E. Compliant cutting die apparatus for cutting fuel cell material layers
US20030191021A1 (en) * 2002-04-03 2003-10-09 3M Innovative Properties Company Lamination apparatus and methods
US8480838B2 (en) 2002-04-03 2013-07-09 3M Innovative Properties Company Lamination apparatus and methods
US8309218B2 (en) 2002-04-03 2012-11-13 3M Innovative Properties Company Lamination apparatus and methods
US20050217980A1 (en) * 2002-04-03 2005-10-06 3M Innovative Properties Company Angled product transfer conveyor
US20060102281A1 (en) * 2002-04-03 2006-05-18 3M Innovative Properties Company Method and apparatus for peeling a thin film from a liner
US7569081B2 (en) 2002-04-03 2009-08-04 3M Innovative Properties Company Method for converting a fuel cell membrane web to precisely positioned membrane sheets
US7432009B2 (en) 2002-04-03 2008-10-07 3M Innovative Properties Company Lamination apparatus and methods
US7171881B2 (en) * 2002-04-03 2007-02-06 3M Innovative Properties Company Angled product transfer conveyor
US7114369B2 (en) * 2002-05-31 2006-10-03 Drs Sustainment Systems, Inc. Systems and methods for residue collection
US7073371B2 (en) * 2002-05-31 2006-07-11 Drs Sustainment Systems, Inc. Systems and methods for residue collection
US20050076722A1 (en) * 2002-05-31 2005-04-14 Strohmeyer James J. Systems and methods for residue collection with improved letter handling capability
US20080087109A1 (en) * 2002-05-31 2008-04-17 Strohmeyer James J Systems and Methods for Residue Collection
US7100422B2 (en) * 2002-05-31 2006-09-05 Drs Sustainment Systems, Inc. Systems and methods for residue collection with improved letter handling capability
US7503204B2 (en) * 2002-05-31 2009-03-17 Drs Sustainment Systems, Inc. Systems and methods for residue collection
US20050199039A1 (en) * 2002-05-31 2005-09-15 Strohmeyer James J. Systems and methods for residue collection
US8033158B2 (en) * 2002-05-31 2011-10-11 Drs Sustainment Systems, Inc. Systems and methods for residue collection with improved letter handling capability
US20110214483A1 (en) * 2002-05-31 2011-09-08 Strohmeyer James J Systems and methods for residue collection with improved letter handling capability
US7722684B2 (en) 2003-05-28 2010-05-25 3M Innovative Properties Company Roll-good fuel cell fabrication processes, equipment, and articles produced from same
US8828620B2 (en) 2003-05-28 2014-09-09 3M Innovative Properties Company Roll-good fuel cell fabrication processes, equipment, and articles produced from same
US8268511B2 (en) 2003-05-28 2012-09-18 3M Innovative Properties Company Roll-good fuel cell fabrication processes, equipment, and articles produced from same
US7195690B2 (en) 2003-05-28 2007-03-27 3M Innovative Properties Company Roll-good fuel cell fabrication processes, equipment, and articles produced from same
US20070141436A1 (en) * 2003-05-28 2007-06-21 3M Innovative Properties Company Roll-good fuel cell fabrication processes, equipment, and articles produced from same
US8047053B2 (en) * 2007-05-09 2011-11-01 Icx Technologies, Inc. Mail parcel screening using multiple detection technologies
WO2009059586A1 (en) * 2007-11-05 2009-05-14 Hennecke Systementwicklung Single-plate conveyor, endless single-plate conveyor and arrangement comprising at least two endless single-plate conveyors
US9776796B2 (en) * 2013-06-27 2017-10-03 Siemens Aktiengesellschaft System and method for destacking and conveying articles arranged in stacks
IT201800007630A1 (en) * 2018-07-30 2020-01-30 Fives Intralogistics Spa Con Socio Unico Singularizing apparatus.
EP3604181A1 (en) * 2018-07-30 2020-02-05 Fives Intralogistics S.p.A. Con Socio Unico A destacker apparatus
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US10865056B2 (en) 2018-07-30 2020-12-15 Fives Intralogistics S.P.A. Con Socio Unico Inclined air conveyor destacking apparatus
CN110775669B (en) * 2018-07-30 2022-08-05 菲韦斯内部物流单一股东股份公司 Unstacking equipment

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