US154450A - Improvement in machines for perforating paper - Google Patents

Improvement in machines for perforating paper Download PDF

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US154450A
US154450A US154450DA US154450A US 154450 A US154450 A US 154450A US 154450D A US154450D A US 154450DA US 154450 A US154450 A US 154450A
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Prior art keywords
cutter
shaft
feed
wheels
wheel
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23DPLANING; SLOTTING; SHEARING; BROACHING; SAWING; FILING; SCRAPING; LIKE OPERATIONS FOR WORKING METAL BY REMOVING MATERIAL, NOT OTHERWISE PROVIDED FOR
    • B23D25/00Machines or arrangements for shearing stock while the latter is travelling otherwise than in the direction of the cut
    • B23D25/12Shearing machines with blades on coacting rotating drums
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T83/00Cutting
    • Y10T83/465Cutting motion of tool has component in direction of moving work
    • Y10T83/4708With means to render cutter pass[es] ineffective
    • Y10T83/4711With means to produce "mis-cut"
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T83/00Cutting
    • Y10T83/465Cutting motion of tool has component in direction of moving work
    • Y10T83/4766Orbital motion of cutting blade
    • Y10T83/4795Rotary tool
    • Y10T83/483With cooperating rotary cutter or backup
    • Y10T83/4836With radial overlap of the cutting members

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Perforating, Stamping-Out Or Severing By Means Other Than Cutting (AREA)

Description

W. BRAIDWOUD. Machines'for'P'erforati'ng' Pa 'per Flo-154,450. v I Patented Aug.25,1874.
V THE GRAPHIC CO. PHOTO-H7139! 4| PARK PLAOEJLY.
UNITED STATES PATENT QFFIGE.
WILLIAM BRAIDWOOD, OF MOUNT VERNON, NEW YORK, ASSIGNOR "TO HIMSELF AND FRANCIS & LQUTREIJ, OF NEW YORK CITY.
IMPROVEMENT INf'MA C HI'NES FOR PERFOR'ATING PAPER.
Specification forming m of Letters Patent No. 154,450, dated August 25, 1874; application filed November 13,1873. 1
To all whom it may concern:
of Mount Vernon, in the county of Westchester and State of New York, have invented a new and useful Improvement in Machinery for Perforating Paper and other articles; and I do hereby declare .the following to be a full, 5
clear, and exact description thereof, which will enable'those skilled in the art to make and use a the same, reference being had to the accompan'ying drawing, forming part of this specification, in which drawing- 7 Figure 1 is a front elevation, partly in section, of a machine containing my improvements. Fig. 2 is a section taken in the line a: m of Fig. 1, looking in the direction of the arrow. Fig. 3 is a section taken in the line y 3 Fig. 1, looking in the same'direction. Fig. 4 is a section taken in the line 2 2, Fig. 1, looking .in the same direction.
This invention relates to machinery for perforating paperthat is to say, for producing in paper or other articles lines of perforations, by means of which the paper can be readily severed along the perforated lines.
The invention consists, in combination with a grooved wheel, of a punch or cutter provided with Mshaped teeth for perforating the pa per, so that, in making a perforation, the ends of a toothwill cut across the paper at the ends of 'the' perforation to be made previous to; punching out the intermediate portion. With this object in view, I make the ends of each studs on the frame, and thereby cause the cutter and feed shaft tobe raised in its bearings until the cam had passed the stud. My device for lifting the cutter-shaft consists of a cam-wheel mounted on the countcr shaft; or,
p if preferred, it may be placed on the cutter- Be it known that I, WILLIAM BRAIDWOOD,
shaft; and on the other shaft, and opposite to it, is fixed a wheel with a wide face, against which the camruns. The cam-wheels are provided with a stationary cam on one side, and
onthe opposite side with an adjustable campiece, so arranged that it can be moved to the right or left, in order, in connection with the edge of the paper shall rest when it is introduced into the machine, in order that it may be evenly and automatically adjusted under the feed-wheel and cutter, in readiness to be perforated when the cams have passed off the anti-friction wheels and allowed the cuttershaft to fall. This gage-rest consists of two or more vertical pieces mounted adjustably under the cutter-shaft on-a rising-'and-falling frame, in such a manner that, when the frame is in its higher position they come opposite the feed-table, so as to intercept the paper, which can be pushed into the-machine under the cutter and feed-wheels until its edge meets the gage, and when the frame is in its lower position they sinkbelow the level of the feed-table, and allow the paper to pass over them. The: frame. on
- which these gage-pieces are mounted extends across the machine, and its ends are turned down and slide in guides placed along the in-- rying the frame with them, by cams on the shaft, the cams being so timed as to come; round and strike the arms and depress the gages just before the cutter and feed-wheels come into operation on the paper.- The ends of the arms are lifted by springs to their former-position after the cams have passed over them.
A The letter A designates the frame of the machine, those portions of the machinery being represented which are necessary to ex-y plain the invention. The cutter-shaft B is supported in the upper part of the frame, being journaled in risin g-and-falling boxes 0, arranged, as shown, at one end of theframe in Fig. 1, and below the cutter-shaft is a counter: shaft, running in stationary bearings in the frame. The cutter-shaft carries the cutterwheel D and one of the feed-wheels, and also the anti-friction wheels,which',run' against the cams, by which the cutter-shaft is lifted. The cutter-wheel D is provided with double or M-shaped teeth, separated from each other by recesses, Whose sides are straight, or as nearly so as the radial arrangement of the teeth will permit, and each tooth has an angular depression or notch in its face, so that at the ends of the teeth are formed pointed prongs F F, whose outer edges are straight, and whose inner edges are inclined toward and face each other. The sharp prongs F enter the paper and hold it from slipping whilethe tooth is punching out the paper, making the cross cuts of the perforation previous to the parallel out which completes it. Below the cutter-wheel, and on the counter-shaft D, is a grooved wheel, Gr, whose groove H is arranged to receive the teeth of the cutter-wheel, the face of the wheel G on each side of the groove being made wide enough to give proper support to the paper or other material to be perforated on each side of the perforations. The
cutter-shaft is provided at a suitable point.
with a feed-wheel, I, whose surface is yielding, and which operates in conjunction with a supportingwheel, J, opposite to it on the countor-shaft, to feed the material through the machine. The feed-wheel I is provided on its periphery with an elastic surface, consisting of an india-rubber ring, I, placed on a hub, K, of the wheel I, where it is confined against the side of the wheel by a clamp composed of a metal ring, L, placed outside of the rubber, so,
as to compress it by means of set-screws, as at M, against the side of the wheel. The outer edge of the rubber ring is tapered to reduce its width at the periphery where it acts on the paper or other material to be perforated. The set-screws M pass inside or through the rubber and into the wheel, and as the ring L is tightened or drawn against the wheel by the screws, the rubber ring is compressed and expanded in the direction of itscircumference,
and thereby the wear of the feed-wheels is compensated, and the feed adapted to changes of material or to different thicknesses of material to be fed. The cutter and feed-wheels are raised by means of cam-wheels, whose cams consist of stationary and adjustable enlargements, arranged on the opposite sides of the wheels, and which act against anti-friction wheelsfixed on the cutter-shaft.
By the old plan the cam acted by striking against a stationary stud, so that the stud or other parts of the machine were liable to greater or less derangement or injury, according to the velocity of the cam-wheel. These defects are removed by my device for raising the cutter-shaft. I provide on one of the shafts (inthis example on the lower shaft, D) cam-wheels N, on one side of which is fixed the stationary cam;piece or enlargement O,
and on the other the movable piece P, the latter being provided with concentric slots Q Q,'.through which pass set-screws R, which screw into thewheel' and secure these cam-w pieces at any position desired, toward the right or left as far as the length of the slots will permit with reference to the stationary cam-pieces, thereby enabling me to lengthen or shorten. the cam-surfaces of the Wheels and prolong or diminish their action upon the cutter and feed shaft. The cam-wheels effect the raising of that shaft by means of counter or anti-friction wheels S S, fixed on the cuttershaft in such positions that the cam-pieces come around into contact with the faces-of the wheels S S, and thereby, without a shock, lift their shaft B, so as to raise the cutter and feedwheels off from the material which is being perforated. The shafts B and D are geared together to move with equal speed by means of toothed wheels T T, whose teeth are long enough to permit the rising and falling of the cutter-shaft B, the campieces and the teeth of the gear-wheels being made ,of such proportions that the gear-wheels shall not'become disconnected. The paper or material to be perforated is delivered to the feed-rollers upon a feed-table, U. Shown partly broken away in Fig. 1, and shown in Figs. 2, 3, and 4.) The letter V designates gage-rests, which consist of vertical pieces, against which the edge of the paper strikes when it is pushed in by the operator over the feed-table U. They are arranged under the cutter-shaft, and
are connected, by slotted arms W and screws X, with a frame, Y, which extends along the back part of the machine, its ends extending down through slides Z Z on the ends of frame A, and provided below the slides with arms 1, which project beneath the shaft D in such a manner as to be depressed by cams 2, mounted on that shaft. The arms 2 push down the arms 1, and consequently force down the frame Y with its gage-rests, so as to take the latter below the level of the feed-table, and allow the paper to pass under the cutter and feed-wheels. After the cams 2 have passed the arms 1 the frame is' immediately pushed up to its former position by springs 3 3, arranged beneath the arms 1, and the gagerests are thereby restored to their place in line with the feed-table.
In the machine here shown only one cuttor-Wheel is shown on the cutter-shaft, but more than one cutter and the necessary feed-wheels can be employed in the same machine.
My improved cutter-teeth are applicable to reciprocating cutters as .Well as to rotating cutters or wheels.
' WhatI claim as new, anddesifeto secune by Lettei sPatent; is-- V 1. Th (combination, with the grooved Wheel G, of thc ciitter or'punch D, prqvided with notched. teeth, fsubstantially as described.
{2. The movable cam-piece? won the cam- Wheel' N, in combination with the stationary cam-piece O andtheanti-friction Wheel,
- against which the cams act, substantially as described.
.3. The gage-rest V, operated automatically fromene of the shafts of the machine, in combination with the feed and. cutting devices, substantially as set forth. v
WM 11mm WOOD.
Witnesses:
W. HAUFF,
E. F. KASTENHUBER.
US154450D Improvement in machines for perforating paper Expired - Lifetime US154450A (en)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2482118A (en) * 1944-10-10 1949-09-20 Robert J Matthews Paper cutter
US2676657A (en) * 1949-09-06 1954-04-27 H G Weber & Company Inc Cutting apparatus for paper bag machinery
US2748863A (en) * 1953-03-02 1956-06-05 Harold Z Benton Perforating machine for thermoplastic films
US2781095A (en) * 1951-08-18 1957-02-12 Spinner Isidore Roller perforating device
US3084931A (en) * 1961-06-22 1963-04-09 Pitney Bowes Inc Document misregistration-correcting means
US20100275754A1 (en) * 2007-12-05 2010-11-04 Daido Kogyo Co Ltd Punching unit

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2482118A (en) * 1944-10-10 1949-09-20 Robert J Matthews Paper cutter
US2676657A (en) * 1949-09-06 1954-04-27 H G Weber & Company Inc Cutting apparatus for paper bag machinery
US2781095A (en) * 1951-08-18 1957-02-12 Spinner Isidore Roller perforating device
US2748863A (en) * 1953-03-02 1956-06-05 Harold Z Benton Perforating machine for thermoplastic films
US3084931A (en) * 1961-06-22 1963-04-09 Pitney Bowes Inc Document misregistration-correcting means
US20100275754A1 (en) * 2007-12-05 2010-11-04 Daido Kogyo Co Ltd Punching unit

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