US3724687A - Panel board feeding apparatus - Google Patents

Panel board feeding apparatus Download PDF

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US3724687A
US3724687A US00128359A US3724687DA US3724687A US 3724687 A US3724687 A US 3724687A US 00128359 A US00128359 A US 00128359A US 3724687D A US3724687D A US 3724687DA US 3724687 A US3724687 A US 3724687A
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board
stack
head
boards
vacuum
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US00128359A
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C Marschke
R Thomas
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Marquip Inc
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Marquip Inc
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G47/00Article or material-handling devices associated with conveyors; Methods employing such devices
    • B65G47/74Feeding, transfer, or discharging devices of particular kinds or types
    • B65G47/90Devices for picking-up and depositing articles or materials
    • B65G47/907Devices for picking-up and depositing articles or materials with at least two picking-up heads
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H3/00Separating articles from piles
    • B65H3/08Separating articles from piles using pneumatic force
    • B65H3/0808Suction grippers
    • B65H3/0883Construction of suction grippers or their holding devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H7/00Controlling article feeding, separating, pile-advancing, or associated apparatus, to take account of incorrect feeding, absence of articles, or presence of faulty articles
    • B65H7/02Controlling article feeding, separating, pile-advancing, or associated apparatus, to take account of incorrect feeding, absence of articles, or presence of faulty articles by feelers or detectors
    • B65H7/06Controlling article feeding, separating, pile-advancing, or associated apparatus, to take account of incorrect feeding, absence of articles, or presence of faulty articles by feelers or detectors responsive to presence of faulty articles or incorrect separation or feed
    • B65H7/12Controlling article feeding, separating, pile-advancing, or associated apparatus, to take account of incorrect feeding, absence of articles, or presence of faulty articles by feelers or detectors responsive to presence of faulty articles or incorrect separation or feed responsive to double feed or separation

Definitions

  • ABSTRACT A panel board feeding apparatus wherein a vacuum head having a convex board-engaging surface picks up the top board in a stack, causing the board to flex convexly so that it does not stick to the next adjacent board.
  • the head is supplied with pressurized air as well as vacuum, which breaks any residual vacuum below the top when porous boards are used, and also sets up vibrations in the stack.
  • the head feeds a board into a nip and, if more than one board is fed, the board drive automatically reverses and kicks them rearwardl-y where they engage a stop with high impact.
  • the stop also includes anair jet which impinges on the stack edges.
  • Prior automatic panel board feeding devices have been subject to serious deficiencies in that from time to time they would feed more than one board into the processing line. Even if double panel feeding occurs only occasionally, extensive and costly damage can result to down-line equipment, and substantial production time can be lost.
  • the present invention is based on the discovery of some of the causes of double-board feeding, and solves this and other problems in a unique manner.
  • the board When the top flexible panel board is lifted vertically from a stack by a centrally positioned lifting device, the board tends to flex in a convex direction, when viewed from the top. It has been discovered that this tends to create a vacuum between the top and next adjacent board. Furthermore, it has been discovered that when a conventional vacuum pick-up device is used in conjunction withslightly porous boards, the effect of the vacuum applied to the top board" extends downwardly through adjacent boards.
  • means are provided to pick up the top board in a stack by a centrally positioned lifting device in such a manner that at least a portion of the board tends to flex in a concave, rather than convex, direction as viewed from the top.
  • an oscillatory or vibratory force is created which tends to breakany other vacuum created in the stack.
  • the inventive concept utilizes a pick-up means comprising a single or multi-unit vacuum head having a convex central board support portion. Furthermore, means are provided to inject air into the vacuum head, which causes 'a vibratory oscillation of the top board. When slightly porous boards are handled, the injected air penetrates downwardly through several boards.
  • the pick-up means feeds the panel into the discharge nip.
  • sensing means are provided to automatically reverse the board drive and return the multiple boards to the stack. Upon return, they are subjected to an impact and high pressure air stream.
  • FIG. 1 is a schematic side elevation of the board feeding apparatus, and showing the control circuitry therefor;
  • FIG. 2 is a vertical section through the board pick-up head
  • FIG. 3 is a bottom plan view of the pick-up head
  • FIG. 4 is a schematic showing of the reverse drive mechanism when a double board is fed to the nip.
  • FIG. 5 is a schematic showing of a second embodiment of pick-up head.
  • the apparatus of the invention is adapted to feed single successive flat flexible panel boards from the top of a stack 1, and wherein the uppermost boards have been given reference numerals 2, 3 and 4.
  • Stack 1 may be supported in any suitable manner, as by machine frame 5. As the stack diminishes, the stack is raised to maintain the level of the top board by any suitable mechanism, not shown.
  • a vacuum head 7 is suitably connected to a carriage 8 and is vertically movable, as by a pneumatic cylinder and piston assembly 9 mounted on the carriage. Head 7 is also horizontally movable toward and away from nip 6, as by a second pnuematic cylinder and piston assembly 10 connected between frame 5 and carriage 8. The latter moves on horizontal tracks 1 1.
  • top board 2 means are provided to pick up top board 2 centrally so that it flexes into a concave shape, thus substantially preventing the formation of a vacuum between boards 2 and3. Dual board pick-up is thus substantially avoided.
  • head 7 is cup-like and comprises a circular base 12 of metal or the like, having an annular rim 13 of relatively firm hard rubber or the like extending therefrom.
  • a generally planular circular support 14 of similar rubber-like material is disposed centrally of base 12 and, together with rim 13, from which it is spaced, forms a vacuum cap.
  • a soft flexible rubber annular lip 15 disposed about rim 13 forms a seal when the head engages board 2.
  • the outer face portion 16 of support 14 is at approximately the same height as the bottom edge 17 of rim l3, and tapers to a central face portion 18 which extends beyond or below the level of edge 17.
  • the cup is thus generally convex surfaced.
  • head 7 is supplied with vacuum through a line 19 between a vacuum source 20 and the periphery or lowest portion of the vacuum cup.
  • the vacuum applied to top board 2 may also have a residual effect below it.
  • high pressure air is injected into the center of the vacuum cup at its highest portion, i.e., the center of support 14.
  • the air is supplied from a suitable source 21, through line 22 and hence through a central port 23 in support 14.
  • a portion of this air which is supplied simultaneously and continuously with the vacuum action, passes through porous board 2 and forms an air bearing between boards 2 and 3, and possible even beyond. The tendency of adjacent boards to stick together is thus reduced.
  • FIG. 5 A second embodiment of head 7 is shown in FIG. 5, I
  • a plurality of conventional suction type vacuum cups 24 are mounted in generally convex fashion to form a central board support lower than the outer edge support. Vacuum and pressurized air may also be provided in this embodiment.
  • pick-up head 7 may be controlled by fore and aft limit switches 25, 26 disposed at the extreme ends of travel of carriage 8. Actuation of limit switches 25, 26 feeds signals to an electrical control box 27 which, in turn, actuates suitable valves 28, 29 to move head 7 vertically and horizontally for board pick-up, feeding and board release. Control box 27 also operates air and vacuum sources 20, 21 in response to engagement of limit switches 25, 26 to provide vacuum and air for board pick-up and feeding and to cut them off at the time of board release.
  • nip 6 which feeds the board through.
  • lower and upper rubber covered nip rolls 30 and 31 respectively are provided.
  • Lower roll 30 is driven, such as via belt 32 and reversible motor 33, and is on a fixed axis.
  • Upper roll 31 constitutes an idler.
  • idler roll 31 is mounted on a movable axis 34, and one arm 35 of a lever 36 is also mounted on the axis.
  • Lever 36 is mounted on the fixed pivot 37, and the other lever arm 38 is biased, as by a spring 39, against the limit switch 40.
  • Switch 40 is connected to motor 33 via a suitable control circuit 41 of any well-known type, which, upon actuation of switch 40, reverses the motor.
  • limit switch 40 will cause motor 33 to drive roll 30 so that the board passes through.
  • lever 36 will pivot and switch 40 will be activated to cause reversal of drive roll 30. This will kick the boards back to the closely adjacent stack.
  • a vertical bar 42 is fixedly mounted on the machine frame closely adjacent the rear edge of stack 1. Bar 42 is positioned at the top of the stack so that, as the boards are kicked back, their rear edges will engage the bar with a shocklike impact.
  • bar 42 may incorporate a port 43 at its lower end which is connected to a source 44 of high pressure air. Air passing through port 43 at high velocity will impinge on the rear edge of the stack, causing individual boards to flutter and thus separate.
  • the concepts of the invention provide a substantially improved system for feeding single sheet-like panel boards disposed in a stack, and wherein there is substantially no chance that more than one board at a time will be discharged from the device.
  • An apparatus for feeding flat flexible panel boards successively from the top of a stack of boards comprising in combination:
  • pick-up means for engaging and lifting the top board from the stack in a manner so that said top board flexes concavely, said pick-up means comprising:
  • a vacuum head forming a cup having a firm convex-surfaced board-support portion spaced from a rim
  • a nip including reversible drive means for feeding a board therethrough
  • sensing means at said nip for reversing said drive means if more than one board is fed into said nip so that said boards will be kicked back onto the stack
  • stop means disposed adjacent the rear stack edge for impact-like engagement by said kicked-back boards
  • said lastnarned means comprising:
  • pick-up means for centrally engaging and lifting the top board from the stack in a manner so that said top board flexes concavely to thereby separate said top board from the next adjacent board, said pick-up means comprising:
  • a vacuum head forming a cup having a firm convex-surfaced board-support portion spaced from a rim
  • said lastnarned means comprising:
  • a vacuum had engageable with the top board in a manner to form a sealed space therebetween
  • a vacuum head having a rubber-like member engageable with the said top board to form an interface therebetween
  • c. means to provide a vacuum within said space so that when the top board is engaged by said head, the board will become secured thereto and flexingly separate from the next adjacent board in the stack,

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Abstract

A panel board feeding apparatus wherein a vacuum head having a convex board-engaging surface picks up the top board in a stack, causing the board to flex convexly so that it does not stick to the next adjacent board. The head is supplied with pressurized air as well as vacuum, which breaks any residual vacuum below the top when porous boards are used, and also sets up vibrations in the stack. The head feeds a board into a nip and, if more than one board is fed, the board drive automatically reverses and kicks them rearwardly where they engage a stop with high impact. The stop also includes an air jet which impinges on the stack edges.

Description

United States Patent 91 Marschke et al.
[ 51 Apr. 3, 1973 [54] PANEL BOARD FEEDING APPARATUS [75] Inventors: Carl R. Marschke; Richard H.
Thomas, both of Phillips, Wis.
[73] Assignee: Margulp, lnc., Phillips, Wis.
[22] Filed: Mar. 26, 1971 [21] Appl. No.: 128,359
[52] 11.8. CI. ..214/8.5 D, 271/11, 271/26 R,
[51] Int. Cl ..B65g 59/04 [58] Field of Search...214/8.5 D, 6 FS; 271/11, 26 R, 271/57; 294/64 R [56] References Cited UNITED STATES PATENTS 3,482,833 12/1969 Schleiden ..27l/26 R 3,108,801 10/1963 Van Dalen ..271/34 X 3,194,554 7/1965 Hildman et al. ..27l/57 3,314,676 4/1967 Fromm, Jr. ....271/26 R 3,275,317 9/1966 Fromm, Jr. ..271/26 R AIR SOURCE I A l R SOURCE Watter ..27l/57 X Primary Examiner-Robert J. Spar Attorney-Andrus, Sceales, Starke & Sawall [57] ABSTRACT A panel board feeding apparatus wherein a vacuum head having a convex board-engaging surface picks up the top board in a stack, causing the board to flex convexly so that it does not stick to the next adjacent board. The head is supplied with pressurized air as well as vacuum, which breaks any residual vacuum below the top when porous boards are used, and also sets up vibrations in the stack. The head feeds a board into a nip and, if more than one board is fed, the board drive automatically reverses and kicks them rearwardl-y where they engage a stop with high impact. The stop also includes anair jet which impinges on the stack edges.
7 Claims, 5 Drawing Figures PATENTEDAPRB I973 3,724,687
SHEET 2 OF 2 r- VACUUM PV/jy SOURCE FIG] INVENTORS CARL R. MARSCHKE RICHARD H. THOMAS Plus I25 aw 14 Attorneys BACKGROUND OF THE INVENTION This invention relates to a panel board feeding apparatus, and more particularly to a device for feeding panel boards or the like from a stack to other apparatus for further processing. The device of the invention could be used as an input for the machine disclosed in US. application Ser. No. 830,466, Filed June 4, 1969 by Carl R. Marschke, entitled Automatic Panel Wrapping Machine, now U.S. Pat. No. 3,590,552, Issued July 6, I97 1 and assigned to a common assignee.
Prior automatic panel board feeding devices have been subject to serious deficiencies in that from time to time they would feed more than one board into the processing line. Even if double panel feeding occurs only occasionally, extensive and costly damage can result to down-line equipment, and substantial production time can be lost.
SUMMARY. OF THE INVENTION The present invention is based on the discovery of some of the causes of double-board feeding, and solves this and other problems in a unique manner.
When the top flexible panel board is lifted vertically from a stack by a centrally positioned lifting device, the board tends to flex in a convex direction, when viewed from the top. It has been discovered that this tends to create a vacuum between the top and next adjacent board. Furthermore, it has been discovered that when a conventional vacuum pick-up device is used in conjunction withslightly porous boards, the effect of the vacuum applied to the top board" extends downwardly through adjacent boards.
Generally in accordance-with the invention, means are provided to pick up the top board in a stack by a centrally positioned lifting device in such a manner that at least a portion of the board tends to flex in a concave, rather than convex, direction as viewed from the top. In addition, an oscillatory or vibratory force is created which tends to breakany other vacuum created in the stack.
More specifically, the inventive concept utilizes a pick-up means comprising a single or multi-unit vacuum head having a convex central board support portion. Furthermore, means are provided to inject air into the vacuum head, which causes 'a vibratory oscillation of the top board. When slightly porous boards are handled, the injected air penetrates downwardly through several boards.
The pick-up means feeds the panel into the discharge nip. In the remote event that more than one board is fed to the nip, sensing means are provided to automatically reverse the board drive and return the multiple boards to the stack. Upon return, they are subjected to an impact and high pressure air stream.
DESCRIPTION OF THE DRAWINGS The accompanying drawings illustrate the best mode presently contemplated by the inventors for carrying out the invention.
In the drawings:
FIG. 1 is a schematic side elevation of the board feeding apparatus, and showing the control circuitry therefor;
FIG. 2 is a vertical section through the board pick-up head;
FIG. 3 is a bottom plan view of the pick-up head;
FIG. 4 is a schematic showing of the reverse drive mechanism when a double board is fed to the nip; and
FIG. 5 is a schematic showing of a second embodiment of pick-up head.
DESCRIPTION OF THE PREFERRED EMBODIMENT As shown schematically in the drawings, the apparatus of the invention is adapted to feed single successive flat flexible panel boards from the top of a stack 1, and wherein the uppermost boards have been given reference numerals 2, 3 and 4. Stack 1 may be supported in any suitable manner, as by machine frame 5. As the stack diminishes, the stack is raised to maintain the level of the top board by any suitable mechanism, not shown.
Means are providedto lift top board 2 from stack 1 and deliver it to a discharge nip 6. For this purpose, a vacuum head 7 is suitably connected to a carriage 8 and is vertically movable, as by a pneumatic cylinder and piston assembly 9 mounted on the carriage. Head 7 is also horizontally movable toward and away from nip 6, as by a second pnuematic cylinder and piston assembly 10 connected between frame 5 and carriage 8. The latter moves on horizontal tracks 1 1.
In accordance with the invention, means are provided to pick up top board 2 centrally so that it flexes into a concave shape, thus substantially preventing the formation of a vacuum between boards 2 and3. Dual board pick-up is thus substantially avoided. This is accomplished with vacuum head 7, and in the embodiment shown in FIGS. 1-3, head 7 is cup-like and comprises a circular base 12 of metal or the like, having an annular rim 13 of relatively firm hard rubber or the like extending therefrom. A generally planular circular support 14 of similar rubber-like material is disposed centrally of base 12 and, together with rim 13, from which it is spaced, forms a vacuum cap. A soft flexible rubber annular lip 15 disposed about rim 13 forms a seal when the head engages board 2.
The outer face portion 16 of support 14 is at approximately the same height as the bottom edge 17 of rim l3, and tapers to a central face portion 18 which extends beyond or below the level of edge 17. The cup is thus generally convex surfaced.
As shown in FIG. 2, engagement of head 7 with board 2 will cause the portion of the board beneath the head center to engage face portion 18, with a resultant rise of the board outwardly thereof into engagement with edge 17. The board thus flexes into a concave shape, when viewed from the top, which tends to break it away from board 3.
For purposes of picking up board 2, head 7 is supplied with vacuum through a line 19 between a vacuum source 20 and the periphery or lowest portion of the vacuum cup. When slightly porous boards are used, the vacuum applied to top board 2 may also have a residual effect below it. To overcome this efiect, high pressure air is injected into the center of the vacuum cup at its highest portion, i.e., the center of support 14. The air is supplied from a suitable source 21, through line 22 and hence through a central port 23 in support 14. A portion of this air, which is supplied simultaneously and continuously with the vacuum action, passes through porous board 2 and forms an air bearing between boards 2 and 3, and possible even beyond. The tendency of adjacent boards to stick together is thus reduced.
In addition, it has been found that a portion of the pressurized air injected through port 22 escapes outwardly in spurts through the interface between the board and support 14 and into the vacuum existing between portion 16 and edge 17, and hence travels thru line 19 to vaccuum source 20. This is due to the buildup of air pressure within cavity 23, which is released by the spurts. A pneumatic oscillatory physical vibration is thereby set up in the top of stack 1, which also tends to break apart any stubbornly sticking adjacent boards.
A second embodiment of head 7 is shown in FIG. 5, I
wherein a plurality of conventional suction type vacuum cups 24 are mounted in generally convex fashion to form a central board support lower than the outer edge support. Vacuum and pressurized air may also be provided in this embodiment.
As shown in FIG. 1, the operation of pick-up head 7 may be controlled by fore and aft limit switches 25, 26 disposed at the extreme ends of travel of carriage 8. Actuation of limit switches 25, 26 feeds signals to an electrical control box 27 which, in turn, actuates suitable valves 28, 29 to move head 7 vertically and horizontally for board pick-up, feeding and board release. Control box 27 also operates air and vacuum sources 20, 21 in response to engagement of limit switches 25, 26 to provide vacuum and air for board pick-up and feeding and to cut them off at the time of board release.
After top board 2 has been lifted by head 7, carriage 8 is moved horizontally to carry the head and attached board forwardly to nip 6, which feeds the board through. For this purpose, lower and upper rubber covered nip rolls 30 and 31 respectively are provided. Lower roll 30 is driven, such as via belt 32 and reversible motor 33, and is on a fixed axis. Upper roll 31 constitutes an idler.
Although to the inventors knowledge, vacuum head 7 has never failed to separate adjacent boards, a backup system is contemplated in the event that more than one board is fed to nip 6. This might occur if two boards were glued together with paint. For this purpose, idler roll 31 is mounted on a movable axis 34, and one arm 35 of a lever 36 is also mounted on the axis. Lever 36 is mounted on the fixed pivot 37, and the other lever arm 38 is biased, as by a spring 39, against the limit switch 40. Switch 40 is connected to motor 33 via a suitable control circuit 41 of any well-known type, which, upon actuation of switch 40, reverses the motor.
In the normal situation shown in FIG. 1, wherein a single board 2 is fed into nip 6, limit switch 40 will cause motor 33 to drive roll 30 so that the board passes through. As shown in FIG. 4, if more than one board, such as boards 2 and 3, are fed to the nip, lever 36 will pivot and switch 40 will be activated to cause reversal of drive roll 30. This will kick the boards back to the closely adjacent stack.
If a plurality of boards are fed to nip 6, it is apparent that extreme measures may be necessary to separate them before attempting the next feed-through. For this purpose, means are provided to apply an impact to the boards when they are kicked back from the nip. In the present embodiment, and as shown in FIG. 1, a vertical bar 42 is fixedly mounted on the machine frame closely adjacent the rear edge of stack 1. Bar 42 is positioned at the top of the stack so that, as the boards are kicked back, their rear edges will engage the bar with a shocklike impact.
If desired, bar 42 may incorporate a port 43 at its lower end which is connected to a source 44 of high pressure air. Air passing through port 43 at high velocity will impinge on the rear edge of the stack, causing individual boards to flutter and thus separate.
The concepts of the invention provide a substantially improved system for feeding single sheet-like panel boards disposed in a stack, and wherein there is substantially no chance that more than one board at a time will be discharged from the device.
Various modes of carrying out the invention are contemplated as being within the scope of the following claims particularly pointing out and distinctly claiming the subject matter which is regarded as the invention.
We Claim:
1. An apparatus for feeding flat flexible panel boards successively from the top of a stack of boards, comprising in combination:
a. pick-up means for engaging and lifting the top board from the stack in a manner so that said top board flexes concavely, said pick-up means comprising:
l. a vacuum head forming a cup having a firm convex-surfaced board-support portion spaced from a rim,
2. and means to provide a vacuum to said cup so that when the top board is engaged thereby, the board will become secured thereto and flex concavely to separate the board from the next adjacent board in the stack,
b. a nip including reversible drive means for feeding a board therethrough,
c. means to move said pick-up means and attached board horizontally to feed said board forwardly into said nip,
d. sensing means at said nip for reversing said drive means if more than one board is fed into said nip so that said boards will be kicked back onto the stack,
e. stop means disposed adjacent the rear stack edge for impact-like engagement by said kicked-back boards,
f. and means to create vibrations between said head and the board attached thereto to assist in separating said board from the next adjacent board in the stack, said lastnarned means comprising:
1. a flexible lip disposed about said rim and positioned to sealingly engage the said board,
2. and means to supply continuous pressurized air to within said cup so that spurts of air escaping through the interface between said head and the said board will create said vibrations.
2. The apparatus of claim 1 which is for use with slightly porous panel boards, and wherein said air supply means provides means to form a pressurized air bearing at least between the said top board and the next adjacent board in the stack.
3. In an apparatus for feeding flat flexible panel boards in succession from the top of a stack of boards through a nip:
a. pick-up means for centrally engaging and lifting the top board from the stack in a manner so that said top board flexes concavely to thereby separate said top board from the next adjacent board, said pick-up means comprising:
1. a vacuum head forming a cup having a firm convex-surfaced board-support portion spaced from a rim,
2. and means to provide a vacuum to said cup so that when the top board is engaged thereby, the board will become secured thereto and flex concavely to separate the board from the next adjacent board in the stack,
b. and means to create vibrations between said head and the board attached thereto to assist in separating said board from the next adjacent board in the stack, said lastnarned means comprising:
1. a flexible lip disposed about said rim and positioned to sealingly engage the said board,
2. and means to supply continuous pressurized air to within said cup so that spurts of air escaping through the interface between said head and the said board will create said vibrations.
4. The apparatus of claim 3 which is for use with slightly porous panel boards, and wherein said air supply means provides means to form a pressurized air bearing at least between the said top board and the next adjacent board in the stack.
5. In an apparatus for feeding flat flexible panel boards in succession from the top of a stack of boards:
a. a vacuum had engageable with the top board in a manner to form a sealed space therebetween,
boards in succession from the top of a stack of boards:
a. a vacuum head having a rubber-like member engageable with the said top board to form an interface therebetween,
b. means for forming a sealed space between said head and said top board when they are in engagement,
c. means to provide a vacuum within said space so that when the top board is engaged by said head, the board will become secured thereto and flexingly separate from the next adjacent board in the stack,
d. and means to supply continuous pressurized air through said rubber-like member to said interface so that spurts of air escaping through said interface to said space will create vibrations between said head and top board to assist in separating the latter from the next adjacent board in the stack.
7. The apparatus of claim 6: a. wherem a board-engaging nm spacmgly surrounds UNITED STATES PATENT OFFICE CERTIFICATE OF CORRECTEGN Patent No. 3 724 ,687 Dated p l 3 1973 Carl R. Marschke et a1. Inventor-(s) It is certified that error appears in the above-identified patent and that said Letters Patent are hereby corrected as shown below:
On the cover sheet "[73] "Marguip, Inc." should read Marquip, Inc.
Signed and sealed this 8th day of January 1974.
(SEAL) Attest:
EDWARD M.FLETCHER,JR..
Acting Commissioner of Patents F ORM PO-I 050 10-69) USCOMM-DC BO376-P69 fi ILS. GOVERNMENT PRINTING OFFICE I99 0368-33fl.

Claims (11)

1. An apparatus for feeding flat flexible panel boards successively from the top of a stack of boards, comprising in combination: a. pick-up means for engaging and lifting the top board from the stack in a manner so that said top board flexes concavely, said pick-up means comprising: 1. a vacuum head forming a cup having a firm convex-surfaced board-support portion spaced from a rim, 2. and means to provide a vacuum to said cup so that when the top board is engaged thereby, the board will become secured thereto and flex concavely to separate the board from the next adjacent board in the stack, b. a nip including reversible drive means for feeding a board therethrough, c. means to move said pick-up means and attached board horizontally to feed said board forwardly into said nip, d. sensing means at said nip for reversing said drive means if more than one board is fed into said nip so that said boards will be kicked back onto the stack, e. stop means disposed adjacent the rear stack edge for impactlike engagement by said kicked-back boards, f. and means to create vibrations between said head and the board attached thereto to assist in separating said board from the next adjacent board in the stack, said lastnamed means comprising: 1. a flexible lip disposed about said rim and positioned to sealingly engage the said board, 2. and means to supply continuous pressurized air to within said cup so that spurts of air escaping through the interface between said head and the said board will create said vibrations.
2. and means to supply continuous pressurized air to within said cup so that spurts of air escaping through the interface between said head and the said board will create said vibrations.
2. and means to provide a vacuum to said cup so that when the top board is engaged thereby, the board will become secured thereto and flex concavely to separate the board from the next adjacent board in the stack, b. and means to create vibrations between said head and the board attached thereto to assist in separating said board from the next adjacent board in the stack, said lastnamed means comprising:
2. The apparatus of claim 1 which is for use with slightly porous panel boards, and wherein said air supply means provides means to form a pressurized air bearing at least between the said top board and the next adjacent board in the stack.
2. and means to supply continuous pressurized air to within said cup so that spurts of air escaping through the interface between said head and the said board will create said vibrations.
2. and means to provide a vacuum to said cup so that when the top board is engaged thereby, the board will become secured thereto and flex concavely to separate the board from the next adjacent board in the stack, b. a nip including reversible drive means for feeding a board therethrough, c. means to move said pick-up means and attached board horizontally to feed said board forwardly into said nip, d. sensing means at said nip for reversing said drive means if more than one board is fed into said nip so that said boards will be kicked back onto the stack, e. stop means disposed adjacent the rear stack edge for impact-like engagement by said kicked-back boards, f. and means to create vibrations between said head and the board attached thereto to assist in separating said board from the next adjacent board in the stack, said lastnamed means comprising:
3. In an apparatus for feeding flat flexible panel boards in succession from the top of a stack of boards through a nip: a. pick-up means for centrally engaging and lifting the top board from the stack in a manner so that said top board flexes concavely to thereby separate said top board from the next adjacent board, said pick-up means comprising:
4. The apparatus of claim 3 which is for use with slightly porous panel boards, and wherein said air supply means provides means to form a pressurized air bearing at least between the said top board and the next adjacent board in the stack.
5. In an apparatus for feeding flat flexible panel boards in succession from the top of a stack of boards: a. a vacuum had engageable with the top board in a manner to form a sealed space therebetween, b. means to provide a vacuum within said space so that when the top board is engaged by said head, the board will become secured thereto and flexingly separate from the next adjacent board in the stack, c. and means to supply pressurized air to within said space in spurts to thereby create vibrations between said head and top board to assist in separating the latter from The next adjacent board in the stack.
6. In an apparatus for feeding flat flexible panel boards in succession from the top of a stack of boards: a. a vacuum head having a rubber-like member engageable with the said top board to form an interface therebetween, b. means for forming a sealed space between said head and said top board when they are in engagement, c. means to provide a vacuum within said space so that when the top board is engaged by said head, the board will become secured thereto and flexingly separate from the next adjacent board in the stack, d. and means to supply continuous pressurized air through said rubber-like member to said interface so that spurts of air escaping through said interface to said space will create vibrations between said head and top board to assist in separating the latter from the next adjacent board in the stack.
7. The apparatus of claim 6: a. wherein a board-engaging rim spacingly surrounds said rubber-like member, b. and wherein said member is convex-surfaced so that the said top board flexes concavely when engaged thereby.
US00128359A 1971-03-26 1971-03-26 Panel board feeding apparatus Expired - Lifetime US3724687A (en)

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Cited By (35)

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US3937453A (en) * 1974-08-02 1976-02-10 Docutel Corporation Single document transport
US3993303A (en) * 1973-11-19 1976-11-23 Veb Polygraph Leipzig Kombinat Fur Polygraphische Maschinen Und Ausrustungen Method and apparatus for controlled feeding of sheets to printing machines or the like
US4065118A (en) * 1972-11-29 1977-12-27 Dudley George M Mono-page paper distributor
US4175676A (en) * 1977-09-29 1979-11-27 Goins Jerry D Apparatus for automatically feeding collar stays
US4466764A (en) * 1982-04-29 1984-08-21 Physical Systems, Inc. Apparatus for separating and lifting units from a stack
US4506875A (en) * 1982-02-19 1985-03-26 S. A. Martin Suction-box feed device
US4701094A (en) * 1985-01-30 1987-10-20 Compagnie Generale D'automatisme Cga-Hbs Separator for heterogenous flat objects
US4720227A (en) * 1984-04-09 1988-01-19 Eberle William J Methods of and apparatus for stacking battery plates and the like
US4767143A (en) * 1987-02-24 1988-08-30 The Boeing Company Robot hand
EP0212865A3 (en) * 1985-07-29 1988-10-05 Bell & Howell Company Method and device for deflecting a sheet prior to feeding
US4776577A (en) * 1987-03-10 1988-10-11 Marquip, Inc. Shingling of delicate conveyed sheet material
EP0295686A1 (en) * 1987-06-18 1988-12-21 Compagnie Generale D'automatisme Cga-Hbs Device for unloading flat objects from piles
US4958824A (en) * 1988-11-09 1990-09-25 Spartanics, Ltd. Automatic strip and sheet loader system
US4979729A (en) * 1985-02-02 1990-12-25 Agfa-Gevaert Aktiengesellschaft Suction device for removing film sheets
EP0396960A3 (en) * 1989-05-09 1991-02-06 Focke & Co. (GmbH & Co.) Method and installation for rearranging objects palletized in classes in to groups of definite sorting composition
US5076565A (en) * 1990-02-17 1991-12-31 Georg Spiess Gmbh Sheet feeder
US5219432A (en) * 1987-06-18 1993-06-15 Compagnie Generale D'automatisme Cga Hgs Device for unstacking flat objects
US5263699A (en) * 1992-06-03 1993-11-23 Selak Martin M Sheet feeder aligning apparatus
US5269646A (en) * 1989-05-09 1993-12-14 Focke & Co. (Gmbh & Co.) Process and installation for the rearrangement of articles palletised according to sorts to form groups of specific sort composition
US5395103A (en) * 1992-05-25 1995-03-07 Elpatronic Ag Process for removing individual metal sheets from a stack and device for carrying out the process
WO1995019312A1 (en) * 1994-01-12 1995-07-20 Globe-Union, Inc. Vacuum turret
EP0716993A1 (en) * 1994-12-16 1996-06-19 Umformtechnik ERFURT GmbH Method for destacking non ferromagnetical plates and installation for carrying out the method
US5540377A (en) * 1994-07-15 1996-07-30 Ito; Carl T. Solder ball placement machine
US5695183A (en) * 1995-06-29 1997-12-09 Nutec Manufacturing, Inc. Paper interleaver
US5803447A (en) * 1996-09-25 1998-09-08 D&K Custom Machine Design, Inc. Method and apparatus for feeding sheets
US6345818B1 (en) 1998-10-26 2002-02-12 Fanuc Robotics North America Inc. Robotic manipulator having a gripping tool assembly
US6468025B1 (en) * 1999-05-13 2002-10-22 Abb Inc. Blank separation method and apparatus
US20040112233A1 (en) * 2002-12-10 2004-06-17 Fuji Photo Film Co., Ltd. Printing plate sucker
EP1580158A1 (en) 2004-03-22 2005-09-28 J. Schmalz GmbH Suction gripper
EP1864922A3 (en) * 2006-05-18 2008-11-26 ILLIG Maschinenbau GmbH & Co. KG Method for removing the top plastic board from a stack and device for removing the top plastic board
US20090261072A1 (en) * 2008-04-17 2009-10-22 Soudronic Ag De-stacker with a lifter table and welding device for container bodies including a de-stacker
US20100143088A1 (en) * 2006-12-11 2010-06-10 Klaus Stoppel Handling tools for components, in particular eletronic components
DE102009021538A1 (en) * 2009-05-15 2010-11-18 Bargstedt Handlingsysteme Gmbh Handling device for lifting plate-shaped workpiece made of wood, wood material or plastic, has lifting unit for lifting workpiece and presetting unit for presetting target-handling parameter at lifting unit
JP2016519620A (en) * 2013-04-03 2016-07-07 サノフィ−アベンティス・ドイチュラント・ゲゼルシャフト・ミット・ベシュレンクテル・ハフツング Device and method for separating an article from stacked articles
US10239709B2 (en) * 2017-06-09 2019-03-26 Sweed Machinery Inc. Veneer feeder head

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Cited By (43)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4065118A (en) * 1972-11-29 1977-12-27 Dudley George M Mono-page paper distributor
US3993303A (en) * 1973-11-19 1976-11-23 Veb Polygraph Leipzig Kombinat Fur Polygraphische Maschinen Und Ausrustungen Method and apparatus for controlled feeding of sheets to printing machines or the like
DE2533972A1 (en) * 1974-08-02 1976-02-19 Docutel Corp DEVICE FOR TRANSPORTING DOCUMENTS
FR2280575A1 (en) * 1974-08-02 1976-02-27 Docutel Corp INDIVIDUAL DOCUMENT TRAINING MECHANISM
US3937453A (en) * 1974-08-02 1976-02-10 Docutel Corporation Single document transport
US4175676A (en) * 1977-09-29 1979-11-27 Goins Jerry D Apparatus for automatically feeding collar stays
US4506875A (en) * 1982-02-19 1985-03-26 S. A. Martin Suction-box feed device
US4466764A (en) * 1982-04-29 1984-08-21 Physical Systems, Inc. Apparatus for separating and lifting units from a stack
US4720227A (en) * 1984-04-09 1988-01-19 Eberle William J Methods of and apparatus for stacking battery plates and the like
US4701094A (en) * 1985-01-30 1987-10-20 Compagnie Generale D'automatisme Cga-Hbs Separator for heterogenous flat objects
US4979729A (en) * 1985-02-02 1990-12-25 Agfa-Gevaert Aktiengesellschaft Suction device for removing film sheets
EP0212865A3 (en) * 1985-07-29 1988-10-05 Bell & Howell Company Method and device for deflecting a sheet prior to feeding
US4767143A (en) * 1987-02-24 1988-08-30 The Boeing Company Robot hand
US4776577A (en) * 1987-03-10 1988-10-11 Marquip, Inc. Shingling of delicate conveyed sheet material
US5219432A (en) * 1987-06-18 1993-06-15 Compagnie Generale D'automatisme Cga Hgs Device for unstacking flat objects
FR2616762A1 (en) * 1987-06-18 1988-12-23 Cga Hbs DEVICE FOR DEPILING FLAT OBJECTS
AU615915B2 (en) * 1987-06-18 1991-10-17 Alcatel Postal Automation Systems A device for unstacking flat objects
EP0295686A1 (en) * 1987-06-18 1988-12-21 Compagnie Generale D'automatisme Cga-Hbs Device for unloading flat objects from piles
US4958824A (en) * 1988-11-09 1990-09-25 Spartanics, Ltd. Automatic strip and sheet loader system
EP0396960A3 (en) * 1989-05-09 1991-02-06 Focke & Co. (GmbH & Co.) Method and installation for rearranging objects palletized in classes in to groups of definite sorting composition
US5269646A (en) * 1989-05-09 1993-12-14 Focke & Co. (Gmbh & Co.) Process and installation for the rearrangement of articles palletised according to sorts to form groups of specific sort composition
US5076565A (en) * 1990-02-17 1991-12-31 Georg Spiess Gmbh Sheet feeder
US5395103A (en) * 1992-05-25 1995-03-07 Elpatronic Ag Process for removing individual metal sheets from a stack and device for carrying out the process
US5263699A (en) * 1992-06-03 1993-11-23 Selak Martin M Sheet feeder aligning apparatus
WO1995019312A1 (en) * 1994-01-12 1995-07-20 Globe-Union, Inc. Vacuum turret
US5470195A (en) * 1994-01-12 1995-11-28 Globe-Union, Inc. Vacuum turret
US5540377A (en) * 1994-07-15 1996-07-30 Ito; Carl T. Solder ball placement machine
EP0716993A1 (en) * 1994-12-16 1996-06-19 Umformtechnik ERFURT GmbH Method for destacking non ferromagnetical plates and installation for carrying out the method
US5695183A (en) * 1995-06-29 1997-12-09 Nutec Manufacturing, Inc. Paper interleaver
US5803447A (en) * 1996-09-25 1998-09-08 D&K Custom Machine Design, Inc. Method and apparatus for feeding sheets
US6345818B1 (en) 1998-10-26 2002-02-12 Fanuc Robotics North America Inc. Robotic manipulator having a gripping tool assembly
US6468025B1 (en) * 1999-05-13 2002-10-22 Abb Inc. Blank separation method and apparatus
US20040112233A1 (en) * 2002-12-10 2004-06-17 Fuji Photo Film Co., Ltd. Printing plate sucker
US7028617B2 (en) * 2002-12-10 2006-04-18 Fuji Photo Film Co., Ltd. Printing plate sucker
EP1580158A1 (en) 2004-03-22 2005-09-28 J. Schmalz GmbH Suction gripper
EP1864922A3 (en) * 2006-05-18 2008-11-26 ILLIG Maschinenbau GmbH & Co. KG Method for removing the top plastic board from a stack and device for removing the top plastic board
US8262146B2 (en) * 2006-12-11 2012-09-11 Robert Bosch Gmbh Handling tools for components, in particular eletronic components
US20100143088A1 (en) * 2006-12-11 2010-06-10 Klaus Stoppel Handling tools for components, in particular eletronic components
US20090261072A1 (en) * 2008-04-17 2009-10-22 Soudronic Ag De-stacker with a lifter table and welding device for container bodies including a de-stacker
US8530776B2 (en) * 2008-04-17 2013-09-10 Soudronic Ag De-stacker with a lifter table and welding device for container bodies including a de-stacker
DE102009021538A1 (en) * 2009-05-15 2010-11-18 Bargstedt Handlingsysteme Gmbh Handling device for lifting plate-shaped workpiece made of wood, wood material or plastic, has lifting unit for lifting workpiece and presetting unit for presetting target-handling parameter at lifting unit
JP2016519620A (en) * 2013-04-03 2016-07-07 サノフィ−アベンティス・ドイチュラント・ゲゼルシャフト・ミット・ベシュレンクテル・ハフツング Device and method for separating an article from stacked articles
US10239709B2 (en) * 2017-06-09 2019-03-26 Sweed Machinery Inc. Veneer feeder head

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