EP0038848A1 - A portable decollating machine - Google Patents

A portable decollating machine

Info

Publication number
EP0038848A1
EP0038848A1 EP19800902328 EP80902328A EP0038848A1 EP 0038848 A1 EP0038848 A1 EP 0038848A1 EP 19800902328 EP19800902328 EP 19800902328 EP 80902328 A EP80902328 A EP 80902328A EP 0038848 A1 EP0038848 A1 EP 0038848A1
Authority
EP
European Patent Office
Prior art keywords
carbon
rollers
carbon sheet
disposed
axle
Prior art date
Legal status (The legal status 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 status listed.)
Withdrawn
Application number
EP19800902328
Other languages
German (de)
French (fr)
Inventor
James E. Burns
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Publication of EP0038848A1 publication Critical patent/EP0038848A1/en
Withdrawn legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H41/00Machines for separating superposed webs

Definitions

  • This invention relates to a portable, motorized, or manually operated decollating or deleaving machine which allows for a carbon or carbonless multiple layered continuous business form to be separated into separate stacks, with simultaneous removal of a carbon ply (if present) initially disposed there ⁇ between.
  • the device includes an attachable unit, that provides efficient separation of carbonless multiple ply business forms.
  • a machine for decollating a multiple layered continuous business form while simultaneously removing the carbon sheet therefrom comprising a supporting housing, a pair of paper separating rollers disposed laterally across an upper opening in said housing, a first carbon paper guide bar parallel to and disposed adjacent one of said rollers, and a second carbon paper guide bar dis- posed in a plane vertically separating the first and second paper rollers, a carbon winding reel disposed parallel to said rollers, and a driving means for said carbon paper winding reel, such as a hand crank or motor.
  • the housing may have a pair of protruding exterior trays on each side for collecting the separated individual plies into individual stacks or the stacks may form on the supporting surface (table top or the like) .
  • the housing includes an inner hollow chamber for stacking the business form prior to its separation, the chamber terminat ⁇ ing vertically in an upper opening defined by the pair of separating rollers.
  • a separate floor stand may be employed upon which the machine is mounted that includes exterior stacking trays.
  • the loading of the machine and the resultant path of the multiple ply form during separation is as follows.
  • the multi-ply form to be separated is initially stacked in the interior chamber of the housing.
  • One end is manually fed vertically up through the opening defined by the pair of separating rollers.
  • one of the plies is forced in one direction, around the upper surface Of one roller while the other ply (with carbon paper attached) is forced in an opposite direction and positioned around the top of the opposite roller such that both plies are traveling in opposite, horizontal directions.
  • the ply (which has the carbon still affixed) is then positioned vertically in a downward direction toward its receiving tray, traversing past the first carbon guide bar.
  • the carbon paper is separated from the ply around the first carbon guide bar (approximately 180 degree turn around) and directed back toward the rollers, passing beneath a second carbon guide bar which is disposed substantially in a plane (vertically) between the first and second rollers.
  • the carbon continues on to a winding reel which is connected by a pulley and belt to a rotatable drive unit (hand crank or motor), mounted on the side of the housing.
  • the second carbon guide bar is strategically located to position the moving carbon paper to effect some slight pressure on the ply on the first roller without disturbing the ply and carbon on the second roller.
  • the carbon winding reel that collects the carbon to be discarded has a removable end which allows the reel shafts to be removed from the housing.
  • the carbon is free to slide off the reel shafts into a wastebasket or the like.
  • the device including the housing, is quite lightweight, sized to be easily moved about an office and takes up very little storage space.
  • the device described above is also suitable using an accessory for separating carbonless multiple ply business forms into two separate single ply stacks.
  • the attachable accessory includes a drive shaft having a pulley mounted thereon which is mounted by movable supporting arms parallelly disposed to a roller drive shaft having a pair of wheels connected thereto at each end.
  • the roller drive shaft includes a pulley that is linked to the main drive shaft by suitable belts.
  • the carbonless drive shaft is inserted in the machine, replacing the carbon winding reel which is affixed to the system driving means.
  • the wheels which rest on at least one roller under the weight of gravity in effect provide the upward driving force on one ply of the business form be ⁇ jng separated which is disposed over one roller, while the other ply is directed over the opposite roller and falls by gravity into an appropriate stack
  • the unseparated carbonless form is directed vertically up through the system rollers and over the top of the roller closest to the first carbon guide bar.
  • the plies are separated such that the upper ply is disposed around the bottom and back side of the first carbon guide bar and directed back across the top of the guide rollers and disposed between one of the rollers and the wheels of the attachable accessory.
  • the other ply (the lower ply) is directed downwardly to its separated stacked position.
  • Rotation of the system drive causes the wheels resting on the roller and the upper ply disposed therebetween to pull the upper ply around the first carbon guide bar (even though * -this " play is not a carbon) pulling upward on the unseparated plies. This provides sufficient force to separate the two plies into two separate single ply stacks.
  • the accessory drive shaft has one pulley
  • the first pair of wheels shaft has two pulleys
  • the second pair of wheels shaft has .a single pulley.
  • Belts are disposed between the pulleys.
  • the pulley belt between the first and second pair of wheels is doubled over to provide direction on the second pair of wheels opposite to that of the first pair of wheels.
  • the two ply sheet is disposed up between the system guide rollers with each sheet being separated and disposed over a separate roller.
  • Yet another object of this invention is to separate carbonless, multiple ply business forms into single ply stacks.
  • Figure 1 shows a top plan view of the present invention.
  • Figure 2 shows a front elevational view of the present invention.
  • Figure 3 shows a side elevational view of the present invention.
  • Figure 4 shows a side elevational view o£ the present invention from the side opposite that shown in Figure 3.
  • Figure 5 shows the carbon winding reel utilized with the present invention.
  • Figure 6 shows a side elevational view of the carbon tension bar utilized in the present invention.
  • FIGS 7, 8, and 9 show a schematic diagram of the paper feed utilized with the embodiment shown in Figures 1 through 6.
  • Figure 10 shows a top plan view of the present invention with a carbonless separating attachment connected thereto.
  • Figure 11 shows a schematic side elevational view of the alternate embodiment of Figure 10.
  • Figure 12 shows an enlarged side elevational schematic view of the paper path used in the embodiment shown in Figure 10.
  • Figure 13 shows yet another alternate embodiment of the carbonless separator attachment.
  • Figure 14 shows a side elevational view of the alternate embodiment of Figure 13.
  • Figure 15 shows a schematic view of the paper path used with the embodiment of Figure 13.
  • Figure 16 shows a top plan view of the attachment used in the embodiment shown in Figure 13.
  • a manually operated embodiment of the present in ⁇ vention is shown generally at 10 comprised of a thin, rigid housing 12 having a horizontal base portion 12a which forms the bottom of the device and the base of a chamber for receiving the continuous multi-ply form to be decollated.
  • the housing 12 includes vertical side walls 12b having upper angled portions 12c which serve as guide surfaces for individual plies as described below.
  • Vertical, parallel, side panels 14 and 16 are mounted on each side of the housing 12.
  • a pair of guide rollers 18a and 18b and shafts 42 and 44 respectively, are connected at each shaft end on each side to panels 14 and 16. The rollers freely rotate in the direction in ⁇ dicated by the arrows.
  • the second carbon paper guide bar 22 Positioned strategically in the space between the rollers, which define the upper opening of the housing, is the second carbon paper guide bar 22.
  • the carbon paper winding reel 24 is shown also mounted between panels 14 and 16 on a first shaft 26 at one end and a second shaft 28 which has a pulley 32 connected on the end outside panel 16.
  • the first carbon guide roller 20 is disposed horizontally away from roller 18b and the intermediate separation between rollers 18a and 18b.
  • a handle 40 is connected to shaft 38 which has a pulley 36 connected at its opposite end with a belt 34 connecting pulleys 32 and 36.
  • the shaft 38 is free to rotate and is mounted between panels 14 and 16.
  • Figures 7 through 9 show the paper path beginning with a stacked continuous multi-ply form 48 which is disposed on housing panel 12a in the bottom of the intermediate chamber in the housing.
  • the form moves vertically upward, fed between rollers 18a and 18b such that one ply constituting either the original or a copy is received over the top of roller 18a and proceeds down on the outside of the housing 12b where it forms a single ply stack, the ply being indicated as 48a.
  • the remaining plies which include a carbon 48b and single ply form 48c, are disposed over the top of roller 18b. Separation of the carbon 48b is achieved through the first carbon guide bar 20 around which the carbon paper does approximately a 180 degree turn.
  • OMPI is pulled vertically upward, providing sufficient force to achieve separation of the plies while pulling the carbon around the first guide bar 20 and beneath the second guide bar 22.
  • the operation is continuous such that once the plies to be separated into individual stacks are past around the upper most points of rollers 18a and 18b, they are pulled by gravity into the storage position on each side in separated stacked arrays.
  • the carbon which is wrapped around the carbon reel 24 may be disposed by first removing the carbon reel from the machine. This is achieved by pressing reel end 24 toward spring 30 which allows for shafts 24b to be separated from end 24c. This frees reel mount 26 from panel 14.
  • the winding reel 24 is such that shafts 24b can be separated from the reel end 24c with the carbon still upon it. Once the shafts 24b are removed, then the reel and carbon will slide off into the basket. The shaft and reel end are then remounted back into the machine.
  • FIGs 7 through 9 show the vertical and horizontal relationships between the rollers 18a and 18b and carbon guide bars 22 and 20.
  • Carbon guide bar 22 is disposed between the rollers and the lower edge of the carbon guide bar 22 is disposed below the top edges defined by a horizontal plane between the guide rollers. This provides additional pressure on the ply on roller 18a to aid in the separation and to prevent jamming.
  • the first carbon guide bar 20, which is laterally disposed away from roller 18b, is. positioned such that its lower most edge is below the upper edge of roller 18b, while the upper edge has a free path to the lower edge of bar 22.
  • FIG. 6 shows the second guide bar 22 that pivots at one end from block 22a upwardly out of the way for initially threading the machine. Normally it is held in a groove 54 in block 22b.
  • the supporting surface 46 also acts as the collecting tray on each side for the forms.
  • a floor stand (not shown) may be employed, including trays protruding out on each side of the housing for receiving the stacked individual piles of the single ply.
  • FIGS 10, 11, and 12 show a first alternate embodiment of the present invention which includes an attachment to make the device suitable for separating carbonless, multiple ply business forms.
  • the attachment includes a rigid drive shaft 52 having an end bracket 66 with two prongs that mount within and replace the carbon reel shown previously.
  • the attachment, drive shaft 52 includes a pulley 58 rigidly fixed near the central portion.
  • a pair of guide bars 62 and 64 are moveably connected to drive shaft 52 such that the drive shaft 52 can rotate freely while being connected to guide bars 62 and 64.
  • the other end of the guide bars 62 and 64 are connected to a wheel mounting shaft 56 having a pair of wheels 70 and 72 attached at each end.
  • the central portion of shaft 56 includes a pulley 60 that is connected by a belt 68 to pulley 58.
  • the wheels 70 and 72 rest firmly on roller 18a, due to the weight of the wheels and the wheel shaft.
  • the form to be separated 74 is directed upwardly between rollers 18a and 18b.
  • the unseparated form is then disposed over the top of the roller 18b and separated such that the upper ply 74b is wrapped around the carbon guide bar (described above) 20 and directed back toward roller 18a being positioned between the wheels 70 and 72 and the roller 18a.
  • the other ply 74a is directed downwardly from roller 18b.
  • Rotation of the hand crank 38a causes member 24c to rotate and through the action of belt 68, causes wheels 70 and 72 to rotate in the direction of the arrow.
  • Figures 13, 14, 15, and 16 show the drive shaft 78 having a pulley 1Q0 and an attaching member 114 used as the driving member and attached replacing the carbon reel.
  • a first pair of wheels 92 and 94 are connected to shaft 80 which has two pulleys 102 and 104 affixed thereto.
  • Guide bars 84 and 86 attach shaft 80 to shaft 78.
  • a second set of wheels 96 and 98 are attached to shaft 82 which includes a pulley 106 affixed thereto.
  • a belt 108 attached pulley 100 to pulley 102, by an inverted belt 110 attaching pulley 104 to pulley 106.
  • Guide bars 88 and 90 sttach shaft 80 to shaft 82.
  • the wheels 92 and 94 are positioned such that they rest on roller 18a while wheels 96 and 98 rest on rollers 18b.
  • Belt 110 is inverted or formed in a figure eight. Rotation of shaft 78 ( Figure 16) causes shaft 80 to rotate in one direction and shaft 82 to rotate in the opposite direction.
  • a carbonless, multiple ply form 112 is received vertically upward between rollers 18a and 18b.
  • the form is separated into two plies 112a and 112b between the respective roller and the pairs of wheels disposed above each roller.
  • the force of the rotating pairs of wheels provides a force on each ply 112a and 112b in the direction indicated, effecting separation of the ⁇

Landscapes

  • Winding Of Webs (AREA)

Abstract

Une machine portative manuelle ou a moteur electrique de separation de formulaires administratifs continus a plusieurs volets en piles individuelles, ayant chacun un seul papier a jeter. Le dispositif comprend un boitier (12), une paire de rouleaux de separation (18), une bobine d'enroulement de papier carbone (24) qui est actionnee manuellement ou a l'aide d'un moteur, et des barres de guidage des feuilles de carbone positionnees de maniere strategique par rapport aux rouleaux qui permettent une separation efficace et rapide des imprimes administratifs continus. Un accessoire adaptable permet la separation des imprimes administratifs a volets multiples sans carbone en deux piles de copies simples. L'arbre d'entrainement (78) de l'accessoire separateur sans carbone remplace la bobine d'enroulement de papier carbone, et comprend une ou deux paires de roues entrainees par une courroie (24 et 28) qui reposent sur les rouleaux de separation. La machine peut etre montee independamment sur une table, ou elle peut etre utilisee conjointement avec un pied de support d'accouplement.A portable manual machine or an electric motor for separating continuous administrative forms with several flaps in individual stacks, each having a single paper to throw away. The device comprises a housing (12), a pair of separation rollers (18), a carbon paper winding reel (24) which is operated manually or by means of a motor, and guide bars for the carbon sheets strategically positioned relative to the rollers which allow efficient and rapid separation of continuous administrative printouts. An adaptable accessory allows the separation of carbon-free multi-part administrative prints into two stacks of single copies. The drive shaft (78) of the carbonless separator accessory replaces the carbon paper winding reel, and includes one or two pairs of wheels driven by a belt (24 and 28) which rest on the separation rollers . The machine can be mounted independently on a table, or it can be used in conjunction with a coupling support leg.

Description

A PORTABLE DECOLLATING MACHINE
Background Of The Invention
This invention relates to a portable, motorized, or manually operated decollating or deleaving machine which allows for a carbon or carbonless multiple layered continuous business form to be separated into separate stacks, with simultaneous removal of a carbon ply (if present) initially disposed there¬ between.
With the present usage of continuous business forms, such as computer printouts and the like, which provides an original and layered multiple duplicate forms, it becomes necessary to separate the original, the carbon sheet and the copy or copies. Manual separation is cumbersome, time consuming, and oftentimes soils the hands of the operator because of contact with the carbon paper. For extremely large scale operations, elaborate complex machines have been devised for automatically separating numerous layers of continuous forms. However, such machines are completely unsuitable for utilization in a small office due to cost and size limitations. The present invention is operated by a small electric motor or by hand, occupies little storage space, is portable, and eliminates manual separation of a carbon paper during the decollating operation.
The device includes an attachable unit, that provides efficient separation of carbonless multiple ply business forms. Brief Description Of The Invention
A machine for decollating a multiple layered continuous business form while simultaneously removing the carbon sheet therefrom, comprising a supporting housing, a pair of paper separating rollers disposed laterally across an upper opening in said housing, a first carbon paper guide bar parallel to and disposed adjacent one of said rollers, and a second carbon paper guide bar dis- posed in a plane vertically separating the first and second paper rollers, a carbon winding reel disposed parallel to said rollers, and a driving means for said carbon paper winding reel, such as a hand crank or motor. The housing may have a pair of protruding exterior trays on each side for collecting the separated individual plies into individual stacks or the stacks may form on the supporting surface (table top or the like) . The housing includes an inner hollow chamber for stacking the business form prior to its separation, the chamber terminat¬ ing vertically in an upper opening defined by the pair of separating rollers.
A separate floor stand may be employed upon which the machine is mounted that includes exterior stacking trays. The loading of the machine and the resultant path of the multiple ply form during separation is as follows. The multi-ply form to be separated is initially stacked in the interior chamber of the housing. One end is manually fed vertically up through the opening defined by the pair of separating rollers. At this point, one of the plies is forced in one direction, around the upper surface Of one roller while the other ply (with carbon paper attached) is forced in an opposite direction and positioned around the top of the opposite roller such that both plies are traveling in opposite, horizontal directions. The ply (which has the carbon still affixed) is then positioned vertically in a downward direction toward its receiving tray, traversing past the first carbon guide bar. The carbon paper is separated from the ply around the first carbon guide bar (approximately 180 degree turn around) and directed back toward the rollers, passing beneath a second carbon guide bar which is disposed substantially in a plane (vertically) between the first and second rollers. The carbon continues on to a winding reel which is connected by a pulley and belt to a rotatable drive unit (hand crank or motor), mounted on the side of the housing.
It is the force on the carbon sheet which drives all of the plies and carbon during the separation. As tension force is applied on the carbon ply (by rotation of the winding reel) , the multi. ply form moves around the rollers, and after separation each ply is collected on each side of the housing.
The second carbon guide bar is strategically located to position the moving carbon paper to effect some slight pressure on the ply on the first roller without disturbing the ply and carbon on the second roller.
The carbon winding reel that collects the carbon to be discarded has a removable end which allows the reel shafts to be removed from the housing. The carbon is free to slide off the reel shafts into a wastebasket or the like.
The device, including the housing, is quite lightweight, sized to be easily moved about an office and takes up very little storage space. The device described above is also suitable using an accessory for separating carbonless multiple ply business forms into two separate single ply stacks. The attachable accessory includes a drive shaft having a pulley mounted thereon which is mounted by movable supporting arms parallelly disposed to a roller drive shaft having a pair of wheels connected thereto at each end. The roller drive shaft includes a pulley that is linked to the main drive shaft by suitable belts. The carbonless drive shaft is inserted in the machine, replacing the carbon winding reel which is affixed to the system driving means. The wheels which rest on at least one roller under the weight of gravity in effect provide the upward driving force on one ply of the business form beάjng separated which is disposed over one roller, while the other ply is directed over the opposite roller and falls by gravity into an appropriate stack, In this embodiment of the attachable accessory, the unseparated carbonless form is directed vertically up through the system rollers and over the top of the roller closest to the first carbon guide bar. At this point, the plies are separated such that the upper ply is disposed around the bottom and back side of the first carbon guide bar and directed back across the top of the guide rollers and disposed between one of the rollers and the wheels of the attachable accessory. The other ply (the lower ply) is directed downwardly to its separated stacked position. Rotation of the system drive, either manually or by electric motor, causes the wheels resting on the roller and the upper ply disposed therebetween to pull the upper ply around the first carbon guide bar (even though*-this" play is not a carbon) pulling upward on the unseparated plies. This provides sufficient force to separate the two plies into two separate single ply stacks.
And yet another alternate embodiment of the attachable accessory, two pairs of wheels are utilized, each of which are mounted on shafts having pulleys directly connected to the accessory drive shaft. Thus, the accessory drive shaft has one pulley, the first pair of wheels shaft has two pulleys, and the second pair of wheels shaft has .a single pulley. Belts are disposed between the pulleys. The pulley belt between the first and second pair of wheels is doubled over to provide direction on the second pair of wheels opposite to that of the first pair of wheels. In this embodiment, the two ply sheet is disposed up between the system guide rollers with each sheet being separated and disposed over a separate roller. When the accessory drive shaft is rotated by manual or motor power to the system, both sets of wheels rotate in opposite directions, forcing the ply disposed between the wheels and the guide rollers to separate into single ply stacks on each side of the machine.
It is an object of this invention to provide a portable, manually or motor powered decollating maching for separating a multiple layered continuous business form into separate stacks of a single ply and for simultaneously removing the carbon sheet disposed therebetween. And yet another object of this invention is to provide a manually-powered device for separating multiple ply, continuous business forms which reduces clogging or jamming along the paper path during separation, and which provides for separation and disposal of a carbon sheet with¬ out requiring operator contact with the carbon.
And yet another object of this invention is to separate carbonless, multiple ply business forms into single ply stacks. In accordance with these and other objects which will be apparent hereinafter, the instant invention will now be described with particular reference to the accompanying drawings.
OM Brief Description Of The Drawings
Figure 1 shows a top plan view of the present invention.
Figure 2 shows a front elevational view of the present invention.
Figure 3 shows a side elevational view of the present invention.
Figure 4 shows a side elevational view o£ the present invention from the side opposite that shown in Figure 3.
Figure 5 shows the carbon winding reel utilized with the present invention.
Figure 6 shows a side elevational view of the carbon tension bar utilized in the present invention.
Figures 7, 8, and 9 show a schematic diagram of the paper feed utilized with the embodiment shown in Figures 1 through 6.
Figure 10 shows a top plan view of the present invention with a carbonless separating attachment connected thereto.
Figure 11 shows a schematic side elevational view of the alternate embodiment of Figure 10.
Figure 12 shows an enlarged side elevational schematic view of the paper path used in the embodiment shown in Figure 10.
Figure 13 shows yet another alternate embodiment of the carbonless separator attachment.
Figure 14 shows a side elevational view of the alternate embodiment of Figure 13. Figure 15 shows a schematic view of the paper path used with the embodiment of Figure 13.
Figure 16 shows a top plan view of the attachment used in the embodiment shown in Figure 13.
Preferred Embodiment Of The Invention
Referring now to Figures 1 through 9, a manually operated embodiment of the present in¬ vention is shown generally at 10 comprised of a thin, rigid housing 12 having a horizontal base portion 12a which forms the bottom of the device and the base of a chamber for receiving the continuous multi-ply form to be decollated. The housing 12 includes vertical side walls 12b having upper angled portions 12c which serve as guide surfaces for individual plies as described below. Vertical, parallel, side panels 14 and 16 are mounted on each side of the housing 12. A pair of guide rollers 18a and 18b and shafts 42 and 44 respectively, are connected at each shaft end on each side to panels 14 and 16. The rollers freely rotate in the direction in¬ dicated by the arrows. Positioned strategically in the space between the rollers, which define the upper opening of the housing, is the second carbon paper guide bar 22. The carbon paper winding reel 24 is shown also mounted between panels 14 and 16 on a first shaft 26 at one end and a second shaft 28 which has a pulley 32 connected on the end outside panel 16. The first carbon guide roller 20 is disposed horizontally away from roller 18b and the intermediate separation between rollers 18a and 18b. A handle 40 is connected to shaft 38 which has a pulley 36 connected at its opposite end with a belt 34 connecting pulleys 32 and 36. The shaft 38 is free to rotate and is mounted between panels 14 and 16.
Figures 7 through 9 show the paper path beginning with a stacked continuous multi-ply form 48 which is disposed on housing panel 12a in the bottom of the intermediate chamber in the housing. The form moves vertically upward, fed between rollers 18a and 18b such that one ply constituting either the original or a copy is received over the top of roller 18a and proceeds down on the outside of the housing 12b where it forms a single ply stack, the ply being indicated as 48a. The remaining plies which include a carbon 48b and single ply form 48c, are disposed over the top of roller 18b. Separation of the carbon 48b is achieved through the first carbon guide bar 20 around which the carbon paper does approximately a 180 degree turn. It is then threaded back beneath a second carbon paper guide bar 22 disposed in the opening between rollers 18a and 18b. The carbon is connected to the carbon winding reel 24. The single ply form 48c traverses vertically downwardly to surface 46 which represents a table or the top of a storage cabinet upon which the entire device is mounted. Whenever the hand-crank 38a is rotated, putting tension on the carbon 48b, the multiple ply form
OMPI is pulled vertically upward, providing sufficient force to achieve separation of the plies while pulling the carbon around the first guide bar 20 and beneath the second guide bar 22. The operation is continuous such that once the plies to be separated into individual stacks are past around the upper most points of rollers 18a and 18b, they are pulled by gravity into the storage position on each side in separated stacked arrays. Once the operation is complete, the carbon which is wrapped around the carbon reel 24 may be disposed by first removing the carbon reel from the machine. This is achieved by pressing reel end 24 toward spring 30 which allows for shafts 24b to be separated from end 24c. This frees reel mount 26 from panel 14. The winding reel 24 is such that shafts 24b can be separated from the reel end 24c with the carbon still upon it. Once the shafts 24b are removed, then the reel and carbon will slide off into the basket. The shaft and reel end are then remounted back into the machine.
Figures 7 through 9 show the vertical and horizontal relationships between the rollers 18a and 18b and carbon guide bars 22 and 20. Carbon guide bar 22 is disposed between the rollers and the lower edge of the carbon guide bar 22 is disposed below the top edges defined by a horizontal plane between the guide rollers. This provides additional pressure on the ply on roller 18a to aid in the separation and to prevent jamming. The first carbon guide bar 20, which is laterally disposed away from roller 18b, is. positioned such that its lower most edge is below the upper edge of roller 18b, while the upper edge has a free path to the lower edge of bar 22. The carbon after it passes under, around and over roller 20, moves back to guide bar 22 without contacting the ply and carbon moving over roller 18b, unless they are out of position by jamming or buckling. Figure 6 shows the second guide bar 22 that pivots at one end from block 22a upwardly out of the way for initially threading the machine. Normally it is held in a groove 54 in block 22b. As shown in Figure 2, the supporting surface 46 also acts as the collecting tray on each side for the forms. A floor stand (not shown) may be employed, including trays protruding out on each side of the housing for receiving the stacked individual piles of the single ply. Figures 10, 11, and 12 show a first alternate embodiment of the present invention which includes an attachment to make the device suitable for separating carbonless, multiple ply business forms. The attachment includes a rigid drive shaft 52 having an end bracket 66 with two prongs that mount within and replace the carbon reel shown previously. The attachment, drive shaft 52 includes a pulley 58 rigidly fixed near the central portion. A pair of guide bars 62 and 64 are moveably connected to drive shaft 52 such that the drive shaft 52 can rotate freely while being connected to guide bars 62 and 64. The other end of the guide bars 62 and 64 are connected to a wheel mounting shaft 56 having a pair of wheels 70 and 72 attached at each end. The central portion of shaft 56 includes a pulley 60 that is connected by a belt 68 to pulley 58. The wheels 70 and 72 rest firmly on roller 18a, due to the weight of the wheels and the wheel shaft.
To operate this embodiment for separating carbonless multi-ply business forms (Figure 12) , the form to be separated 74 is directed upwardly between rollers 18a and 18b. The unseparated form is then disposed over the top of the roller 18b and separated such that the upper ply 74b is wrapped around the carbon guide bar (described above) 20 and directed back toward roller 18a being positioned between the wheels 70 and 72 and the roller 18a. The other ply 74a is directed downwardly from roller 18b. Rotation of the hand crank 38a causes member 24c to rotate and through the action of belt 68, causes wheels 70 and 72 to rotate in the direction of the arrow. This pulls on ply 74b, forcing the multiple ply 74 upward between the rollers 18a and 18b and the ply 74b back through rollers 18a and the wheels. The other ply 74a is forced by gravity, thus in effect the wheels 70 and 72 are pulling on ply 74 effect separation of the two plies into separate single ply stacks.
And yet another alternate embodiment of the attachment for use with carbonless paper, Figures 13, 14, 15, and 16 show the drive shaft 78 having a pulley 1Q0 and an attaching member 114 used as the driving member and attached replacing the carbon reel. A first pair of wheels 92 and 94 are connected to shaft 80 which has two pulleys 102 and 104 affixed thereto. Guide bars 84 and 86 attach shaft 80 to shaft 78. A second set of wheels 96 and 98 are attached to shaft 82 which includes a pulley 106 affixed thereto. A belt 108 attached pulley 100 to pulley 102, by an inverted belt 110 attaching pulley 104 to pulley 106. Guide bars 88 and 90 sttach shaft 80 to shaft 82. In this embodiment, the wheels 92 and 94 are positioned such that they rest on roller 18a while wheels 96 and 98 rest on rollers 18b. Belt 110 is inverted or formed in a figure eight. Rotation of shaft 78 (Figure 16) causes shaft 80 to rotate in one direction and shaft 82 to rotate in the opposite direction.
As shown in Figure 15,. a carbonless, multiple ply form 112 is received vertically upward between rollers 18a and 18b. The form is separated into two plies 112a and 112b between the respective roller and the pairs of wheels disposed above each roller. The force of the rotating pairs of wheels provides a force on each ply 112a and 112b in the direction indicated, effecting separation of the
Ply- Thus, using either alternate embodiment showing the attachment to the device, carbonless paper may be readily separated into separate stacked plys. The instant invention has been shown and described herein in what is considered to be the most practical and preferred embodiment. It is recognized, however, that departures may be made therefrom within the scope of the invention and that obvious modifications will occur to a person skilled in the art.
What I Claim Is :
OMP

Claims

Claims
1. A device for rapidly' separating multiple layer continuous business forms into separate stacks, said forms to be separated including a carbon sheet, the device comprising: a housing, said housing including a pair of inwardly tapered substantially vertical walls; a pair of rigid side panels each connected to the opposite side of said vertically disposed housing walls, said vertical walls having an opening disposed between them along the top upper edges; first and second guide rollers disposed side by side covering a portion of the opening formed between the upper edges of said vertical walls, said rollers in a substantially horizontal plane through their central axes, each of said rollers being connected at opposite ends rotatably to said side panels; a first carbon paper guide bart-having an axis parallel to said rollers, said guide bar being disposed on one side of one of said rollers, said first carbon paper guide bar being connected at each end to said side panels; a carbon sheet reel movably connected to said guide panels and disposed on the opposite side of said rollers away from said first carbon sheet guide bar; a means for turning said carbon sheet reel; and a second carbon sheet guide bar disposed between said rollers, the second guide bar having its lower edge disposed below a plane between the upper edges of said rollers.
OMPI
2. A device as in Claim 1, whrein: said carbon sheet reel turning means includes an electric motor having a drive shaft connected to said carbon sheet reel.
3. A decollating device as in Claim 1, wherein: said means for rotating said carbon sheet reel includes a hand cranking means, a pair of pulleys, one of said pulleys attached to said reel, and one of said pulleys attached to said hand crank, and a belt connecting said first and second pulleys together.
4. A device as in Claim 3, wherein: said carbon sheet reel has a first removable end portion, a longitudinal shaft removably connectable to said ends whereby said carbon sheet is removable from said housing.
5. A device as in Claim 1, which includes a carbon guide bar.
6. A device as in Claim 1 for separating carbon- less multiple ply business forms into two separate single ply stacks, comprising: a drive shaft means for replacing said carbon sheet reel; an axle; a pair of wheels each connected at opposite ends of said axle; a pulley attached to said drive shaft means; a second pulley attached to said axle; first and second guide bars moveably connected
O between said drive shaft and said axle; and a pulley belt connected between said first and second pulleys whereby said means for turning said drive shaft effects rotation of said wheel.
7. A device as in Claim 6, including: a second axle; a second pair of wheels mounted on said axle; a third pulley mounted on said first axle; a fourth pulley mounted on said second axle; a second belt inverted, coupled between said third and fourth pulleys; third and fourth guide bars connected between said first and second axles moveably.
EA O Pl_
EP19800902328 1979-10-26 1981-05-04 A portable decollating machine Withdrawn EP0038848A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US88596 1979-10-26
US8859679A 1979-12-26 1979-12-26

Publications (1)

Publication Number Publication Date
EP0038848A1 true EP0038848A1 (en) 1981-11-04

Family

ID=22212293

Family Applications (1)

Application Number Title Priority Date Filing Date
EP19800902328 Withdrawn EP0038848A1 (en) 1979-10-26 1981-05-04 A portable decollating machine

Country Status (2)

Country Link
EP (1) EP0038848A1 (en)
WO (1) WO1981001135A1 (en)

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2440302A (en) * 1935-04-05 1948-04-27 Katherine M Sherman Separating machine
US3386729A (en) * 1965-07-16 1968-06-04 Uarco Inc Deleaver
US3857557A (en) * 1972-10-18 1974-12-31 Moore Business Forms Inc Web handling apparatus
US4133520A (en) * 1977-09-19 1979-01-09 Moore Business Forms, Inc. Decollator

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO8101135A1 *

Also Published As

Publication number Publication date
WO1981001135A1 (en) 1981-04-30

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