US3583557A - Plastic binding and apparatus for dispensing same - Google Patents

Plastic binding and apparatus for dispensing same Download PDF

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US3583557A
US3583557A US851528A US3583557DA US3583557A US 3583557 A US3583557 A US 3583557A US 851528 A US851528 A US 851528A US 3583557D A US3583557D A US 3583557DA US 3583557 A US3583557 A US 3583557A
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binding
machine
fingers
elements
bindings
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US851528A
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Henry N Staats
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General Binding Corp
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General Binding Corp
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42BPERMANENTLY ATTACHING TOGETHER SHEETS, QUIRES OR SIGNATURES OR PERMANENTLY ATTACHING OBJECTS THERETO
    • B42B5/00Permanently attaching together sheets, quires or signatures otherwise than by stitching
    • B42B5/08Permanently attaching together sheets, quires or signatures otherwise than by stitching by finger, claw or ring-like elements passing through the sheets, quires or signatures
    • B42B5/10Permanently attaching together sheets, quires or signatures otherwise than by stitching by finger, claw or ring-like elements passing through the sheets, quires or signatures the elements being of castellated or comb-like form
    • B42B5/103Devices for assembling the elements with the stack of sheets

Definitions

  • a novel binding component providing a combined supply package, or unit, of binding elements and improved dispensing means for cooperation with an improved binding machine to provide a high speed binding system.
  • Conventional binding elements of the type having a backbone carrying a plurality of transverse curled fingers are releasably attached by their backbone to one or more flexible tapes and coiled or rolled up as thus attached with the axes of the binding elements parallel. This coil may be cut to a standard length, or number of bindings, and shipped as a coil to the ultimate user.
  • a novel binding machine incorporates sequential detaping apparatus providing for the manual or semiautomatic sequential use of the coiled bindings, and their release from the tape one at a time in a properly aligned fashion in binding position on the machine.
  • binding machines have been constructed capable of assembling plastic binding elements to paper being bound at a rate in excess of 500 bound booklets per hour.
  • binding machines have been developed capable of electrically cycling the binding mechanism at the command of an operator, nevertheless, the actual functional steps of inserting a binding element into the machine, opening the binding by way of the machine, inserting a book to be bound onto the open binding, operating the binding machine to close the plastic binding, and removal of the book thus bound, have comprised essentially manual steps necessarily performed by an operator.
  • increases in speed have been accomplished by reducing the delays inherent in manual operation of a binding machine by providing power operation of the binding machine to thereby minimize the amount of handwork required of an operator during the binding operation.
  • the present operation provides a very substantial improvement in total machine and operator output with a minimal additional cost.
  • individual bindings are serially mounted upon one or more tapes in a manner positively positioning the binding on the tape but permitting removal of the binding from the tape by the application of nominal pressure, much in the same manner as the removal of adhesive tape from an article to which it has been applied by means of pressure.
  • the plastic ring binding elements are placed on such tape and are fed serially by passing the tape through a binding machine.
  • the binding machine may be a manually operated one, or an exceptionally satisfactory power-operated binding machine is provided.
  • the power-operated binding machine be cyclically operable continuously from a position in which a plastic binding element is placed upon the machine in a position with the binding fingers opened, through a binding cycle in which the book is placed uponthe binding, the binding element fingers are released to curl into binding engagement'with the book, the book is removed from the machine, a sequential insertion of the next adjacent binding is made, and the fingers thereof are opened to receive a book during the subsequent cycle.
  • the operator may spend his entire time adjusting the book into position for binding and disposing of the bound book. Energization of the binding machine to operate it through its bind ing cycle may readily be accomplished through the operation of a single electrical switch by the foot of the operator.
  • a novel binding component comprises a plurality of binding elements each secured by a pressure-sensitive adhesive or the like to a tape preferably spirally wound in a coil.
  • all of the binding elements are longitudinally mounted upon the supply drum of a binding machine with their axes substantially parallel to the axis of rotation of the supply drum and transverse to the mounting tape.
  • This roll of binding is preferably constructed with a large number of binding elements thereon, for example, in rolls of 1000 binding elements. In such a roll, all of the elements are arranged with a backbone stuck to the outer peripheral surface of the tape and with their individual book binding fingers projecting upwardly away from the tape.
  • the machine individually strips the binding elements one by one from the tape backing material, opens the plastic fingers of the binding element for the reception of a plurality of pages to be bound, releases the fingers to permit their closure through the perforations of the book pages, and initiates a cycle in which the next subsequent binding is dropped into position and opened.
  • the operator may manipulate the book pages to place them in the opening of the binding element but need make only one additional motion, that of actuating the cycling switch of the apparatus. This may, of course, be accomplished by the operator's knee or foot without interfering with the manipulation of the paper being bound.
  • an object of the present invention to provide a novel binding supply component for the automatic feed of a book-binding machine.
  • Another object of the present invention is to provide a book-binding machine capable of utilizing automatically fed bindings mounted upon a pressure-sensitive tape or the like.
  • a feature of the invention resides in the provision of a plurality of bindings all sequentially mounted in precisely the same position along a strippable backing member.
  • Still a further feature of the invention resides in the provision of power-operated binding means means for automatically and sequentially feeding binding elements from a storage drum by means of a strippable backing member and of rolling the backing member up for subsequent disposal.
  • Another object of the present invention is to provide a high speed semiautomatic binding machine capable of extremely rapid binding of perforated sheets and readily operable on a short run basis as well so that the apparatus may be employed equally as efficiently for small office operations as high speed installations.
  • FIG. 1 is a side-elevational view of an electric motor-driven binding apparatus constructed in accordance with the provision of the present invention
  • FIG. 2a is an enlarged partial view of the binding apparatus fingers and binding element showing them in their range of v
  • FIG. 4 is a side view of a binding component comprising a folded-over tape carrying binding elements releasably secured thereto;
  • HO. 5 is a plan view of a plurality of binding elements secured to a tape
  • FIG. 6 is an elevational view of a component of bindings such as illustrated in FlG. 5, folded to form a coil for dispensing purposes;
  • FIG. 7 is an elevational view in partial cross section illustrating a further embodiment of the binding apparatus shown in FIG. 1;
  • FIG. 8 is a schematic electrical diagram of an illustrative control circuit according to the invention.
  • an automatic coil of binding elements may be dispensed in a semiautomatic manner by means of an apparatus illustrated in FlGS. ll, 2a, and 2b.
  • a binding apparatus of a configuration generally known in the prior art is indicated at 10.
  • the apparatus 10 is provided with a work surface 11, a backbone comb member 12 and uncurling fingers 13.
  • a reversible motor 14 is provided for oscillating yoke 15 carrying the fingers 13 in a forward and backward direction.
  • a cam member carried by the shaft 16 of the yoke 15 simultaneously reciprocates the comb 12 to initially shift the comb l2 slightly along its length, and along the axis of the binding elements 17 to thereby engage the hook portions 13a of the hooks 13 with the fingers 17a of the binding elements 17 so that upon continued oscillation of the yoke 15 the fingers 13 will spring open the fingers 17a, thereby opening the binding into the position shown in the left-hand portion of FIG. 2a for ready insertion of the open fingers 17a into perforations found in the edge of the stack of sheets to be bound, as at 20.
  • Apparatus of the type providing an initial shift of the comb 12 with subsequent oscillation of the fingers 13, in the manner illustrated in FIG. 1 may be seen in the previous US. Pat. No. 2,603,80l to Charles E. Emmer, and it will be understood that the specific structural features of the binding machine comb and finger shift are unimportant to the present invention so long as the apparatus is capable of supporting the backbone member 1712 of the binding elements and uncurling the fingers 17a thereof into the general configuration shown in the open condition shown in FIG. 20.
  • General Binding Corporation, or Northbrook, Illinois has for many years marketed a commercial machine under the designation 3l6HB Electro-Binder" which is motorized in the manner illustrated in FIG.
  • the normal semiautomatic operation of the device contemplates an initial position as shown in the dotted lines of FIGS. 1 and 2a in which the fingers 13 are in their left-handmost position wherein the fingers 17a of the binding element are spread for impaling of a sheaf of papers to be bound.
  • Energization of a footswitch or other manual switch 22 energizes reversible motor 14 in a clockwise direction, as viewed in FIG. 1 causing oscillation of the crank 14a in the clockwise direction which in turn pulls link 14b and yoke 15 to the right. Movement of the yoke 15 carries with it the fingers into the right-hand position shown in full lines in FIGS. 1 and 2a in which the binding is closed.
  • the sheaf of papers to be bound is impaled upon the fingers 17a, as at 20 and upon movement of the yoke 15 and fingers toward the right, the book is bound and may be stripped off the binding machine by vertical movement upwardly parallel to the backbone 12.
  • movement of the fingers 13a toward the right will simultaneously, at the end of their movement, be accompanied by a transverse movement of the fingers 13a relative to the comb 12 so that in the position designed for booklet removal, the fingers 13a are positioned immediately opposite the comb fingers 12, and, accordingly, the fingers 13 do not constitute any impediment to vertical removal of the booklet from the binding machine.
  • switch 21 Upon removal of the booklet 20' from the machine, switch 21 energizes unidirectional motor 24 to rotate one full causing link 25 to pull adjustable crank 26 downward in a clockwise direction to move binding tapes 27 in the direction of arrow 28 a predetermined amount, namely the centerline distance between adjacent bindings 17.
  • the binding 17 next adjacent the comb 12 is peeled off the tape by the sharp corner bend of tapes 27, at 27a, and spaced supports 63a for downward movement into the comb 12 for opening by the fingers 13. It will be seen that the timing of the system is such as to initiate movement of the motor 24 upon energization of the manually actuated switch 21 and the circuit of motor 24 is broken by the completion of one revolution of the motor 24.
  • the cam surface 29 actuates switch 30 at the end of its one revolution with the next element 17 in the comb 12, to energize motor 14 to move the fingers 13 into the dotted line position above described.
  • the binding operation moves sequentially from an initial position in which a binding is open to receive the book for binding, through the binding operation through book removal, through the binding element loading operation,
  • the binding element is always positioned in readiness for impaling of the perforated sheets to be bound before the operator has completed the task of stacking the previously bound book, jogging or otherwise aligning sheets for the next book to be bound, and positioning the sheets for the next book to be bound immediately adjacent the position of the spread fingers.
  • the movement of the binding element into position on the comb 12, with its subsequent manipulation has proven more than twice as fast as any semiautomatic binding operation heretofore known. It will be appreciated, in accordance with this invention and sequence of operational steps, that the operator has not, in any way handled the binding element 17 itself.
  • the machine may be sequentially operated without in any way manually manipulating the individual binding element. Further, it has been observed that the average untrained operator is able to perform well on the present machine with a much lower level of manual and mental dexterity than was the case with the prior systems in which the binding element had to be manipulated manually, at least occasionally, and in which the operator first had to open the binding, insert the paper, and then close the binding, a sequence requiring at least one more manual switching and at least some additional handling of the binding elements.
  • FIG. 8 One manner of accomplishing the sequential operation is schematically illustrated in FIG. 8.
  • a source of electricity 40 is provided for energization of the motors 14 and 24.
  • a central control switching element 31 is provided with a central bar 32 electrically connected to the main conduit 33.
  • the bar 32 is pivoted or spring-mounted about point 34 and is actuatable upwardly by pushbutton switch actuator 22, or the like, for contact with contactor 35.
  • a junction bar 38 is carried by the bar 32 and insulated therefrom, and is arranged so that when bar 32 is in contact with contact 35, bar 38 joins contacts 39a and 39b. Alternatively, when bar 32 contacts contact 36, the junction bar 38 joins contact 41:: and 41b.
  • Holding solenoids 42 and 43 are provided for maintaining the bar 32 in its upward or downward position and maintain the bar 32 in its selected position through oscillation of the motor 14 throughout its desired arc of movement which is limited by cam projection 44 carried by cam link 45 or Me driven by the motor 14 through a shaft connection 46, or the like.
  • cam 55 similarly driven by motor 24 will momentarily close switch 30 by way of cam projection 29 to energize sole-' noid actuator 37 which will, in turn, initiate rotation of the motor 24 in the clockwise direction, as above described so that immediately upon feeding of the binding elements 17 onto the comb by the motor 24, the comb will be oscillated to the Ieft-handmost position shown in FIGS. 1 and 2a.
  • This position is the initial" position and when the motor 14 has moved the projection 44 to its terminal point, the switch 49 is open and the motors are both stopped until such .time as the operator actuates switch 22 to bind another book.
  • the bindings themselves are mounted, as can be clearly seen from a consideration of FIG. 1, in the form of a helical coil, generally indicated at 60 rotatably carried on a loading sleeve 61 carried by extension 62 rigidly mounted on the frame lOQ
  • the elements 17 are, as above indicated, mounted upon one or more tapes 27 by a pressure sensitive cement.
  • a pair of tapes 27 are spaced axially of the bindings 17.
  • the pair of tapes pass over the support board 63, are turned thereunder and returned over drums 64, pass downwardly over idler pulleys 65 and then to a collecting spool 66 which is preferably a discardable tube.
  • the drums 64 are separately'carried upon the supporting shaft 67 via one-way spray type clutches 68.
  • the crank 26 operated by motor 24 in an oscillatable manner drives shaft 67 in an oscillatory fashion which, in turn, drives one-way clutch hub 69. Oscillation of hub 69 provides intermittent unidirectional motion to the drum 64 in a clockwise direction as viewed in FIG. 1 by way of the conventional oneway sprag 68.
  • the drum 64 may at any time be advanced in a clockwise direction relative to the shaft 67 by means of a manual friction knob 70 which projects through the support 63 via a slot 71.
  • the pair of elements 70 on opposite sides of the machine may individually be selectively advanced to take up any slight misalignment that may occasionally develop between the tapes 27, thereby permitting the operator to maintain the binding element 17 parallel at all times to the comb 12.
  • the movement of the given binding element 17 upon oscillation of the crank 26 is determined by the distance the pivot 25a of link 25 is from the center of shaft 67. This distance is adjustable, by way of a slot 26a in which the pin 25a is adjustable in any convenient manner.
  • the tapes 27 are wound upon drum 66 which is maintained under tension by a friction belt 660 driven by a friction pulley 66b driven by the motor 24. Manual adjustment of it at any time is available by way of a knurled external knob 66b. Although only a single collection roll 66 is illustrated, it will be observed that the roll 66 may be split into as many segments as there are tapes. It has been found that by employing a silicone rubber material on the roller 64, pressure-sensitive tape materials conventionally provided on the market will have a tackiness relative thereto but will strip completely clean therefrom by the tension continuously provided via the collection drum 66.
  • the binding elements or bindings 17, as best illustrated in FIGS. 3 and 4, have a plurality of curved fingers 17a extending from a backbone 17b and spaced therealong. Each of the fingers 17a has a curved configuration with a curl axis extending substantially parallel to the longitudinal axis of the backbone.
  • each of the binding elements 17 is releasably secured to one or more tapes 27 with the curl axes of the fingers extending at relative to the longitudinal axis of the tapes, as best illustrated in FIG. 5.
  • the bindings may readily be packaged in double layers as shown in FIG. 4, in which the tape or tapes 27 are folded back upon themselves to provide a double layer package.
  • the bindings, mounted upon tapes 27, may be rolled, with or without the benefit of a central positioning arbor into a generally helically coiled package.
  • the packages either flat such as in FIGS. 4 or 5 or coiled as in FIG.
  • a hopper such as 80 attached to a conventional binding apparatus 81 (not provided with automatic detaping mechanisms such as shown in FIG. I).
  • the tapes 27 are then coiled about a manually operated takeup spool 82 which may readily be operated by a knurled or otherwise configurated knob 83.
  • the knob 83 may be moved in a clockwise direction, causing a binding element 17 to be positioned on the comb l2 and stripped from the tape 27. Movement of the binding fingers, not illustrated in FIG. 7, by any conventional means, either manual or power, will cause binding of a book, and upon subsequent removal of the book, a subsequent book may be bound after a further movement of the takeup roll 82 to position a new binding element 17 upon the comb 12.
  • the novel coil package of binding elements herein disclosed provides an extremely efficient way of transporting the individual binding elements as a unitized package and the employment of the taped bindings with the apparatus of the present invention provides an unusually, and remarkably efficient overall binding machine capable of satisfactory operation by ordinary machine operators at a continuous production rate remarkably greater than that heretofore possible.
  • the binding component comprising a group of bindings consecutively pressure-releasably, or strippably, mounted on a tape provides a convenient number base, such as bindings, for example, I have successfully used commercially purchased pressure-sensitive tape with binding elements constructed of vinyl chloride and polyvinyl chloride, but other materials will be obvious to those in the art. In this respect, it is noted that the pressuretsensitive tape should be chosen to be chemically inert relative to the binding element.
  • a binding component comprising tape means having pressure releasable securing means on a surface of said tape means, and a plurality of binding elements each comprising a plurality of curled fingers projecting therefrom, said binding elements being stuck to said tape in evenly spaced sequential relation with their longitudinal curl axes at substantially relative to the longitudinal axis of said tape means.

Abstract

A novel binding component providing a combined supply package, or unit, of binding elements and improved dispensing means for cooperation with an improved binding machine to provide a high speed binding system. Conventional binding elements of the type having a backbone carrying a plurality of transverse curled fingers are releasably attached by their backbone to one or more flexible tapes and coiled or rolled up as thus attached with the axes of the binding elements parallel. This coil may be cut to a standard length, or number of bindings, and shipped as a coil to the ultimate user. A novel binding machine incorporates sequential detaping apparatus providing for the manual or semiautomatic sequential use of the coiled bindings, and their release from the tape one at a time in a properly aligned fashion in binding position on the machine.

Description

United States Patent [72] inventor Henry N. Stats Deerfleld, Ill.
2| 1 Appl. No. 851,528
[ 22] Filed July 7, I969 [45] Patented June 8, I97] [73] Assignee General Binding Corporation Northbrook, Ill.
Division of Ser. No. 624,317, Mar. 20, 1967, Pat. No. 3,475,775.
[54] PLASTIC BINDING AND APPARATUS FOR DISPENSING SAME 4 Claims, 9 Drawing Figs.
[52] US. Cl 206/56 [51] 865d 83/00 [50] 206/56 A, 56 A3 155T iierreies Cited UNITED STATES PATENTS 2,862,6l2 l2/l958 Brown 200/56A w13,5s3,ss7
Primary Examiner-Joseph R. Leclair Assistant Examiner.lohn M. Caskie AltomeyHill, Shennan, Meroni, Gross & Simpson ABSTRACT: A novel binding component providing a combined supply package, or unit, of binding elements and improved dispensing means for cooperation with an improved binding machine to provide a high speed binding system. Conventional binding elements of the type having a backbone carrying a plurality of transverse curled fingers are releasably attached by their backbone to one or more flexible tapes and coiled or rolled up as thus attached with the axes of the binding elements parallel. This coil may be cut to a standard length, or number of bindings, and shipped as a coil to the ultimate user. A novel binding machine incorporates sequential detaping apparatus providing for the manual or semiautomatic sequential use of the coiled bindings, and their release from the tape one at a time in a properly aligned fashion in binding position on the machine.
a gaa- PATENTED JUN 8 1971 SHEET 1 BF 4 PATENTEU JUN s IEYI SHEET 2 OF 4 I N VEN TOR wmmzs Pmmwm m 3583557 SHEET [1F 4 IN VENTOR.
1522223 Mfiaas ATTORNEYS PLASTIC BINDING AND APPARATUS FOR DISPENSING SAME CROSS REFERENCE TO RELATED APPLICATION This application is a division of my application entitled Plastic Binding and Apparatus for Dispensing Same," Ser. No. 624,317, filed Mar. 20, I967, which application issued on Nov. 4, 1969 as US. Pat. No. 3,475,775,
BACKGROUND OF THE INVENTION As those skilled in the art of the manufacture and utilization of coiled plastic binding elements are aware, a large proportion of modern binding needs, particularly in the pamphlet field, have been resolved through the utilization of a plastic binding element comprising a backbone having a plurality of curled plastic fingers for cooperation with perforations along one edge of a stack of paper. Utilization of such plastic binding elements has become widespread and, in fact, commercial book materials are increasingly being bound with such plastic binding materials.
Since the introduction many years ago of the toothed plastic binding elements, much attention has been given to apparatus for effectively binding books or the like with such plastic binding elements at a high rate of speed. To date, however, no
machine has been constructed capable of assembling plastic binding elements to paper being bound at a rate in excess of 500 bound booklets per hour. Although binding machines have been developed capable of electrically cycling the binding mechanism at the command of an operator, nevertheless, the actual functional steps of inserting a binding element into the machine, opening the binding by way of the machine, inserting a book to be bound onto the open binding, operating the binding machine to close the plastic binding, and removal of the book thus bound, have comprised essentially manual steps necessarily performed by an operator. In the past, increases in speed have been accomplished by reducing the delays inherent in manual operation of a binding machine by providing power operation of the binding machine to thereby minimize the amount of handwork required of an operator during the binding operation. The present operation, however, provides a very substantial improvement in total machine and operator output with a minimal additional cost.
SUMMARY OF THE INVENTION According to the present invention, individual bindings are serially mounted upon one or more tapes in a manner positively positioning the binding on the tape but permitting removal of the binding from the tape by the application of nominal pressure, much in the same manner as the removal of adhesive tape from an article to which it has been applied by means of pressure. The plastic ring binding elements are placed on such tape and are fed serially by passing the tape through a binding machine. The binding machine may be a manually operated one, or an exceptionally satisfactory power-operated binding machine is provided. Further, with the present invention, it is preferred that the power-operated binding machine be cyclically operable continuously from a position in which a plastic binding element is placed upon the machine in a position with the binding fingers opened, through a binding cycle in which the book is placed uponthe binding, the binding element fingers are released to curl into binding engagement'with the book, the book is removed from the machine, a sequential insertion of the next adjacent binding is made, and the fingers thereof are opened to receive a book during the subsequent cycle. In the preferred embodiment of the present invention, the operator may spend his entire time adjusting the book into position for binding and disposing of the bound book. Energization of the binding machine to operate it through its bind ing cycle may readily be accomplished through the operation of a single electrical switch by the foot of the operator. As a result, it has been found through actual experimental operation of such an improved binding machine that operator capabilities have immediately increased 50 percent to a binding capability in excess of 750 bindings per hour on the basis of substantially unskilled operators. With training, the output is more than doubled, exceeding I000 bindings per hour.
In accordance with the present invention, a novel binding component is provided. That component comprises a plurality of binding elements each secured by a pressure-sensitive adhesive or the like to a tape preferably spirally wound in a coil. With this arrangement, all of the binding elements are longitudinally mounted upon the supply drum of a binding machine with their axes substantially parallel to the axis of rotation of the supply drum and transverse to the mounting tape. This roll of binding is preferably constructed with a large number of binding elements thereon, for example, in rolls of 1000 binding elements. In such a roll, all of the elements are arranged with a backbone stuck to the outer peripheral surface of the tape and with their individual book binding fingers projecting upwardly away from the tape. Once the novel binding component is applied to a binding machine in a manner hereinafter more fully set forth, the machine individually strips the binding elements one by one from the tape backing material, opens the plastic fingers of the binding element for the reception of a plurality of pages to be bound, releases the fingers to permit their closure through the perforations of the book pages, and initiates a cycle in which the next subsequent binding is dropped into position and opened. In this operation, the operator may manipulate the book pages to place them in the opening of the binding element but need make only one additional motion, that of actuating the cycling switch of the apparatus. This may, of course, be accomplished by the operator's knee or foot without interfering with the manipulation of the paper being bound. As a result of the present invention, it has been found possible to bind books with the equipment of the present invention at a rate in excess of 1000 books per hour.
It is, accordingly, an object of the present invention to provide a novel binding supply component for the automatic feed of a book-binding machine.
Another object of the present invention is to provide a book-binding machine capable of utilizing automatically fed bindings mounted upon a pressure-sensitive tape or the like.
A feature of the invention resides in the provision of a plurality of bindings all sequentially mounted in precisely the same position along a strippable backing member.
Still a further feature of the invention resides in the provision of power-operated binding means means for automatically and sequentially feeding binding elements from a storage drum by means of a strippable backing member and of rolling the backing member up for subsequent disposal.
Another object of the present invention is to provide a high speed semiautomatic binding machine capable of extremely rapid binding of perforated sheets and readily operable on a short run basis as well so that the apparatus may be employed equally as efficiently for small office operations as high speed installations.
Still other and further objects and features of the invention will be immediately apparent to those skilled in the art from a consideration of the attached specification and drawings wherein a preferred embodiment of the invention is shown by way of illustration only.
BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a side-elevational view of an electric motor-driven binding apparatus constructed in accordance with the provision of the present invention;
'FIG. 2a is an enlarged partial view of the binding apparatus fingers and binding element showing them in their range of v FIG. 4 is a side view of a binding component comprising a folded-over tape carrying binding elements releasably secured thereto;
HO. 5 is a plan view of a plurality of binding elements secured to a tape;
FIG. 6 is an elevational view of a component of bindings such as illustrated in FlG. 5, folded to form a coil for dispensing purposes;
FIG. 7 is an elevational view in partial cross section illustrating a further embodiment of the binding apparatus shown in FIG. 1; and
FIG. 8 is a schematic electrical diagram of an illustrative control circuit according to the invention.
DESCRIPTION OF THE PREFERRED EMBODIMENT ln accordance with a preferred arrangement of the present invention, an automatic coil of binding elements may be dispensed in a semiautomatic manner by means of an apparatus illustrated in FlGS. ll, 2a, and 2b. As may be seen from a consideration of FIG. 1, a binding apparatus of a configuration generally known in the prior art is indicated at 10. The apparatus 10 is provided with a work surface 11, a backbone comb member 12 and uncurling fingers 13. A reversible motor 14 is provided for oscillating yoke 15 carrying the fingers 13 in a forward and backward direction. A cam member carried by the shaft 16 of the yoke 15 simultaneously reciprocates the comb 12 to initially shift the comb l2 slightly along its length, and along the axis of the binding elements 17 to thereby engage the hook portions 13a of the hooks 13 with the fingers 17a of the binding elements 17 so that upon continued oscillation of the yoke 15 the fingers 13 will spring open the fingers 17a, thereby opening the binding into the position shown in the left-hand portion of FIG. 2a for ready insertion of the open fingers 17a into perforations found in the edge of the stack of sheets to be bound, as at 20.
Apparatus of the type providing an initial shift of the comb 12 with subsequent oscillation of the fingers 13, in the manner illustrated in FIG. 1 may be seen in the previous US. Pat. No. 2,603,80l to Charles E. Emmer, and it will be understood that the specific structural features of the binding machine comb and finger shift are unimportant to the present invention so long as the apparatus is capable of supporting the backbone member 1712 of the binding elements and uncurling the fingers 17a thereof into the general configuration shown in the open condition shown in FIG. 20. As is further well known in the art, General Binding Corporation, or Northbrook, Illinois, has for many years marketed a commercial machine under the designation 3l6HB Electro-Binder" which is motorized in the manner illustrated in FIG. 1 to provide oscillation of the yoke 15 with an interrelated cam actuation of the comb 12 to provide the bindingopening and binding-closing actuation above described. In such prior devices, however, the normal sequence of operation started with the fingers 13 adjacent the comb 12 in a "neutral" condition wherein the bindings 17 could drop onto the comb freely from behind and above. ln these and other prior devices a cycle of operation thus initially started in neutral and ended in neutral.
In accordance with the present invention, the normal semiautomatic operation of the device contemplates an initial position as shown in the dotted lines of FIGS. 1 and 2a in which the fingers 13 are in their left-handmost position wherein the fingers 17a of the binding element are spread for impaling of a sheaf of papers to be bound. Energization of a footswitch or other manual switch 22 energizes reversible motor 14 in a clockwise direction, as viewed in FIG. 1 causing oscillation of the crank 14a in the clockwise direction which in turn pulls link 14b and yoke 15 to the right. Movement of the yoke 15 carries with it the fingers into the right-hand position shown in full lines in FIGS. 1 and 2a in which the binding is closed. immediately prior to energization of the switch, the sheaf of papers to be bound is impaled upon the fingers 17a, as at 20 and upon movement of the yoke 15 and fingers toward the right, the book is bound and may be stripped off the binding machine by vertical movement upwardly parallel to the backbone 12. In view of the cam action described above, movement of the fingers 13a toward the right will simultaneously, at the end of their movement, be accompanied by a transverse movement of the fingers 13a relative to the comb 12 so that in the position designed for booklet removal, the fingers 13a are positioned immediately opposite the comb fingers 12, and, accordingly, the fingers 13 do not constitute any impediment to vertical removal of the booklet from the binding machine. Upon removal of the booklet 20' from the machine, switch 21 energizes unidirectional motor 24 to rotate one full causing link 25 to pull adjustable crank 26 downward in a clockwise direction to move binding tapes 27 in the direction of arrow 28 a predetermined amount, namely the centerline distance between adjacent bindings 17. Upon this movement of tapes 27, the binding 17 next adjacent the comb 12 is peeled off the tape by the sharp corner bend of tapes 27, at 27a, and spaced supports 63a for downward movement into the comb 12 for opening by the fingers 13. It will be seen that the timing of the system is such as to initiate movement of the motor 24 upon energization of the manually actuated switch 21 and the circuit of motor 24 is broken by the completion of one revolution of the motor 24. The cam surface 29 actuates switch 30 at the end of its one revolution with the next element 17 in the comb 12, to energize motor 14 to move the fingers 13 into the dotted line position above described. Thus, the binding operation moves sequentially from an initial position in which a binding is open to receive the book for binding, through the binding operation through book removal, through the binding element loading operation,
and lastly, through the binding opening or stretching operation to the initial position for receipt of the next book.
lt has been my experience in the field with experimental structures constructed in accordance with the present invention, that the optimum timing is such that even skilled operators lag slightly behind the electrical motors 24 and 14. Thus in operation, the binding element is always positioned in readiness for impaling of the perforated sheets to be bound before the operator has completed the task of stacking the previously bound book, jogging or otherwise aligning sheets for the next book to be bound, and positioning the sheets for the next book to be bound immediately adjacent the position of the spread fingers. The movement of the binding element into position on the comb 12, with its subsequent manipulation has proven more than twice as fast as any semiautomatic binding operation heretofore known. It will be appreciated, in accordance with this invention and sequence of operational steps, that the operator has not, in any way handled the binding element 17 itself. Once this coil of bindings has been loaded into the machine, as set forth more fully below, the machine may be sequentially operated without in any way manually manipulating the individual binding element. Further, it has been observed that the average untrained operator is able to perform well on the present machine with a much lower level of manual and mental dexterity than was the case with the prior systems in which the binding element had to be manipulated manually, at least occasionally, and in which the operator first had to open the binding, insert the paper, and then close the binding, a sequence requiring at least one more manual switching and at least some additional handling of the binding elements.
The specific interrelationship between the electrical and mechanical components may readily be accomplished in various ways through the employment of time delay switches and so forth. One manner of accomplishing the sequential operation is schematically illustrated in FIG. 8. As there shown, a source of electricity 40 is provided for energization of the motors 14 and 24. A central control switching element 31 is provided with a central bar 32 electrically connected to the main conduit 33. The bar 32 is pivoted or spring-mounted about point 34 and is actuatable upwardly by pushbutton switch actuator 22, or the like, for contact with contactor 35. Al
ternately, movement downwardly of the bar 32 by energization of a solenoid actuator 37, will cause contact of the bar 32 with the contactor 36. A junction bar 38 is carried by the bar 32 and insulated therefrom, and is arranged so that when bar 32 is in contact with contact 35, bar 38 joins contacts 39a and 39b. Alternatively, when bar 32 contacts contact 36, the junction bar 38 joins contact 41:: and 41b. Holding solenoids 42 and 43 are provided for maintaining the bar 32 in its upward or downward position and maintain the bar 32 in its selected position through oscillation of the motor 14 throughout its desired arc of movement which is limited by cam projection 44 carried by cam link 45 or Me driven by the motor 14 through a shaft connection 46, or the like. Thus, when pushbutton 22 is actuated manually, the bar 32 is moved upwardly to cause current to flow via conduit 33 from source 40 through contact 35, through the motor 14, through contacts 39a, 39b, and junction bar 38, through holding coil 42, and via limit switch 47 to ground, as at 48. As motor 14 rotates, it will rotate in the cam plate 45 in a clockwise direction as viewed in FIG. 8 until the projection 44 opens switch 49 at which time power through the motor is cut off and holding coil 42 is deenergized causing switch bar 32 to return to its neutral condition. At this point, the fingers 13 will have returned from the dotted line condition shown in FIGS. 1 and 2a to the full line, right-handmost position, shown in these figures. At this junction, the pages 20 will be securely bound in the binding element.
Upon binding of the pages 20, as above described, upward movement of the bound pages will cause actuation of switch 21 momentarily. This will close the circuit from source 40 through motor 24 via contact 50, 51, causing rotation of the motor through one revolution. One revolution power stop control is provided by the holding coil 52 which maintains switch 21 in its closed condition until such time as the cam 53 driven by motor 24 opens the holding circuit by way of actuation of the switch 54. Immediately upon completion of the cycle, cam 55 similarly driven by motor 24 will momentarily close switch 30 by way of cam projection 29 to energize sole-' noid actuator 37 which will, in turn, initiate rotation of the motor 24 in the clockwise direction, as above described so that immediately upon feeding of the binding elements 17 onto the comb by the motor 24, the comb will be oscillated to the Ieft-handmost position shown in FIGS. 1 and 2a. This position is the initial" position and when the motor 14 has moved the projection 44 to its terminal point, the switch 49 is open and the motors are both stopped until such .time as the operator actuates switch 22 to bind another book.
semiautomatic operation is thus above described. The bindings themselves, an important aspect of invention, are mounted, as can be clearly seen from a consideration of FIG. 1, in the form of a helical coil, generally indicated at 60 rotatably carried on a loading sleeve 61 carried by extension 62 rigidly mounted on the frame lOQThe elements 17 are, as above indicated, mounted upon one or more tapes 27 by a pressure sensitive cement. In the preferred embodiment, which I have satisfactorily constructed and operated, a pair of tapes 27 are spaced axially of the bindings 17. With this arrangement, the pair of tapes pass over the support board 63, are turned thereunder and returned over drums 64, pass downwardly over idler pulleys 65 and then to a collecting spool 66 which is preferably a discardable tube. In view of the use of two tapes, the drums 64 are separately'carried upon the supporting shaft 67 via one-way spray type clutches 68. Thus, the crank 26 operated by motor 24 in an oscillatable manner, drives shaft 67 in an oscillatory fashion which, in turn, drives one-way clutch hub 69. Oscillation of hub 69 provides intermittent unidirectional motion to the drum 64 in a clockwise direction as viewed in FIG. 1 by way of the conventional oneway sprag 68. At the same time, the drum 64 may at any time be advanced in a clockwise direction relative to the shaft 67 by means of a manual friction knob 70 which projects through the support 63 via a slot 71. As a result of this arrangement, the pair of elements 70 on opposite sides of the machine may individually be selectively advanced to take up any slight misalignment that may occasionally develop between the tapes 27, thereby permitting the operator to maintain the binding element 17 parallel at all times to the comb 12. The movement of the given binding element 17 upon oscillation of the crank 26 is determined by the distance the pivot 25a of link 25 is from the center of shaft 67. This distance is adjustable, by way of a slot 26a in which the pin 25a is adjustable in any convenient manner. The tapes 27 are wound upon drum 66 which is maintained under tension by a friction belt 660 driven by a friction pulley 66b driven by the motor 24. Manual adjustment of it at any time is available by way of a knurled external knob 66b. Although only a single collection roll 66 is illustrated, it will be observed that the roll 66 may be split into as many segments as there are tapes. It has been found that by employing a silicone rubber material on the roller 64, pressure-sensitive tape materials conventionally provided on the market will have a tackiness relative thereto but will strip completely clean therefrom by the tension continuously provided via the collection drum 66.
It will be apparent to those skilled in the art that although the semiautomatic machinery above described cooperates with a binding component comprising a coil of bindings mounted upon a tape, to detape the bindings and bind books in a particularly efficient way, nevertheless, the binding component or taped bindings provide an excellent product in and of themselves for use with manual machines. This may readily be seen from a consideration of FIGS. 3 through 7. The binding elements or bindings 17, as best illustrated in FIGS. 3 and 4, have a plurality of curved fingers 17a extending from a backbone 17b and spaced therealong. Each of the fingers 17a has a curved configuration with a curl axis extending substantially parallel to the longitudinal axis of the backbone. Preferably the backbone 17b of each of the binding elements 17 is releasably secured to one or more tapes 27 with the curl axes of the fingers extending at relative to the longitudinal axis of the tapes, as best illustrated in FIG. 5. The bindings may readily be packaged in double layers as shown in FIG. 4, in which the tape or tapes 27 are folded back upon themselves to provide a double layer package. Alternatively, as illustrated in FIG. 6, the bindings, mounted upon tapes 27, may be rolled, with or without the benefit of a central positioning arbor into a generally helically coiled package. At the site of use, the packages, either flat such as in FIGS. 4 or 5 or coiled as in FIG. 6 may be stored in a hopper such as 80 attached to a conventional binding apparatus 81 (not provided with automatic detaping mechanisms such as shown in FIG. I). The tapes 27 are then coiled about a manually operated takeup spool 82 which may readily be operated by a knurled or otherwise configurated knob 83. With this arrangement, the knob 83 may be moved in a clockwise direction, causing a binding element 17 to be positioned on the comb l2 and stripped from the tape 27. Movement of the binding fingers, not illustrated in FIG. 7, by any conventional means, either manual or power, will cause binding of a book, and upon subsequent removal of the book, a subsequent book may be bound after a further movement of the takeup roll 82 to position a new binding element 17 upon the comb 12.
I have found as a result of a test program that the novel coil package of binding elements herein disclosed provides an extremely efficient way of transporting the individual binding elements as a unitized package and the employment of the taped bindings with the apparatus of the present invention provides an unusually, and remarkably efficient overall binding machine capable of satisfactory operation by ordinary machine operators at a continuous production rate remarkably greater than that heretofore possible. Further, the binding component comprising a group of bindings consecutively pressure-releasably, or strippably, mounted on a tape provides a convenient number base, such as bindings, for example, I have successfully used commercially purchased pressure-sensitive tape with binding elements constructed of vinyl chloride and polyvinyl chloride, but other materials will be obvious to those in the art. In this respect, it is noted that the pressuretsensitive tape should be chosen to be chemically inert relative to the binding element.
In practice, I have observed that when binding operations cease for an extended period of the semiautomatic binder of FIG. 1, and the apparatus is in its initial" position, the binding should be released to its closed condition to prevent a permanent set in its fingers. Shutdown of the machine may be accomplished by pushing switch 22, and subsequent reactivation of the system is accomplished by manual momentary operation of actuator 37.
It will be apparent to those skilled in the art that other variations in the apparatus, method of binding, and binding component hereinabove set forth may be made without departing from the scope of the invention concepts described. It is, accordingly, my intent that the scope of the present invention be limited solely by that of the hereinafter appended claims.
l claim as my invention:
1. A binding component comprising tape means having pressure releasable securing means on a surface of said tape means, and a plurality of binding elements each comprising a plurality of curled fingers projecting therefrom, said binding elements being stuck to said tape in evenly spaced sequential relation with their longitudinal curl axes at substantially relative to the longitudinal axis of said tape means.
2. A binding component set forth in claim 1 wherein a plurality of tapes are provided and are spaced relative to each other for pressure releasable securement to said binding elements at points spaced longitudinally of said curl axis.
3. a binding component set forth in claim 1 wherein said pressure releasable securing means comprises pressure-sensitive cement.
4. A binding component set forth in claim 1 wherein the curled fingers of said binding elements are secured to a single backbone and the binding elements are each secured to said tape means at points on the backbone of said binding elements.

Claims (3)

  1. 2. A binding component set forth in claim 1 wherein a plurality of tapes are provided and are spaced relative to each other for pressure releasable securement to said binding elements at points spaced longitudinally of said curl axis.
  2. 3. a binding component set forth in claim 1 wherein said pressure releasable securing means comprises pressure-sensitive cement.
  3. 4. A binding component set forth in claim 1 wherein the curled fingers of said binding elements are secured to a single backbone and the binding elements are each secured to said tape means at points on the backbone of said binding elements.
US851528A 1969-07-07 1969-07-07 Plastic binding and apparatus for dispensing same Expired - Lifetime US3583557A (en)

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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5464312A (en) * 1994-05-10 1995-11-07 General Binding Corporation Automatic binder
WO1995030549A1 (en) * 1994-05-10 1995-11-16 General Binding Corporation Binder element conveying mechanism
US20040018041A1 (en) * 2001-11-20 2004-01-29 Samuel Amdahl Plurality of binding elements for automated processes
US20040037671A1 (en) * 2002-08-22 2004-02-26 Frank Vercillo Semi-automatic tube clip fastener applicator machine
US20060010563A1 (en) * 2004-05-26 2006-01-19 Michel David S Disposable glove dispensing apparatus
US20080222604A1 (en) * 2005-03-07 2008-09-11 Network Engines, Inc. Methods and apparatus for life-cycle management
US20090089871A1 (en) * 2005-03-07 2009-04-02 Network Engines, Inc. Methods and apparatus for digital data processor instantiation
US8332962B1 (en) * 2007-07-02 2012-12-18 The Grid, Inc. Multi-layered polychloroprene taping material and method of manufacturing and applying such material

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2862612A (en) * 1957-01-29 1958-12-02 Novelty Tool Company Inc C-ring strip package

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2862612A (en) * 1957-01-29 1958-12-02 Novelty Tool Company Inc C-ring strip package

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5464312A (en) * 1994-05-10 1995-11-07 General Binding Corporation Automatic binder
WO1995030549A1 (en) * 1994-05-10 1995-11-16 General Binding Corporation Binder element conveying mechanism
WO1995030548A1 (en) * 1994-05-10 1995-11-16 General Binding Corporation Automatic binder
US5584633A (en) * 1994-05-10 1996-12-17 General Binding Corporation Binder element conveying mechanism
US20040018041A1 (en) * 2001-11-20 2004-01-29 Samuel Amdahl Plurality of binding elements for automated processes
US20040037671A1 (en) * 2002-08-22 2004-02-26 Frank Vercillo Semi-automatic tube clip fastener applicator machine
US20060010563A1 (en) * 2004-05-26 2006-01-19 Michel David S Disposable glove dispensing apparatus
US20080222604A1 (en) * 2005-03-07 2008-09-11 Network Engines, Inc. Methods and apparatus for life-cycle management
US20090089871A1 (en) * 2005-03-07 2009-04-02 Network Engines, Inc. Methods and apparatus for digital data processor instantiation
US8332962B1 (en) * 2007-07-02 2012-12-18 The Grid, Inc. Multi-layered polychloroprene taping material and method of manufacturing and applying such material

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