US3709355A - Stack height control using cutoff knives - Google Patents

Stack height control using cutoff knives Download PDF

Info

Publication number
US3709355A
US3709355A US00179924A US3709355DA US3709355A US 3709355 A US3709355 A US 3709355A US 00179924 A US00179924 A US 00179924A US 3709355D A US3709355D A US 3709355DA US 3709355 A US3709355 A US 3709355A
Authority
US
United States
Prior art keywords
closures
stack
feed
machine
cutoff
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.)
Expired - Lifetime
Application number
US00179924A
Inventor
W Harrison
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.)
WR Grace and Co Conn
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
Application granted granted Critical
Publication of US3709355A publication Critical patent/US3709355A/en
Assigned to W. R. GRACE & CO.-CONN. reassignment W. R. GRACE & CO.-CONN. MERGER (SEE DOCUMENT FOR DETAILS). Assignors: GRACE MERGER CORP. A CT CORP. (MERGED INTO), W. R. GRACE & CO. A CT. CORP.
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D51/00Making hollow objects
    • B21D51/16Making hollow objects characterised by the use of the objects
    • B21D51/38Making inlet or outlet arrangements of cans, tins, baths, bottles, or other vessels; Making can ends; Making closures
    • B21D51/44Making closures, e.g. caps
    • B21D51/46Placing sealings or sealing material

Definitions

  • ABSTRACT In the usual machine which applies sealing compound to a container closure, a special attachment prevents the feeding of the last few container covers remaining in a feed stack, and permits the feed of closures as soon as the stack of closures to be fed is rebuilt to its proper height.
  • the present machine eliminates this entire mechanism, and supports the few remaining clo sures in the feed stack on the cutoff knives which themselves become disabled when the closures in the feed stack reach the selected low number. Stack bounce and disarranged closures are eliminated by this device.
  • STACK HEIGHT CONTROL USING CUTOFF KNIVES This invention relates to container closure lining machines, and particularly to that type of machine in which the feed of the closures is accomplished by a reciprocating slide.
  • the device is particularly designed for operation in association with can ends, it will become obvious that its mode of operation adapts it to the feeding of other types of closures, particularly, press-on caps.
  • This apparatus has been a separate attachment which, operated either by an air-driven piston or by a solenoid, projected a support beneath the stack of ends when the sensing apparatus, often a photo-electric cell, was activated.
  • a principal object of the present invention is to simplify the stack height control mechanism and to eliminate any special slide or support.
  • the knives themselves by remaining in position which interferes with the downward drop of the can end will support the entire stack until a signal is given which reactivates the inand-out motion of the knives.
  • the result is a considerable simplification of the machine, and some elimination of parts. This, in a machine from which high rates of production are demanded, is a distinct economic advantage, for more parts become accessible, and jams may be cleared more easily.
  • FIG. 1 is a top view of the slide feed mechanism of a container closure lining machine
  • FIG. 2 is a vertical section of the slide bars, knifeoperating lever, and the lockout pin portions of the bounce control mechanism
  • FIG. 3 is a side view of the table portion of a lining machine showing the filled feed stack and the height control sensor switch.
  • the machine as is conventional, is provided with two reciprocating feed bars, 11 and 12, driven by a conventional cross-head, and which slide in ways, 13- 13, which are formed in the hopper or bridge, 14, overlying the bars, 11 and 12.
  • Each of the feed bars, 11 and 12, bears a cam track, 15 and 16, milled into the top surface, 17.
  • the distinctive feature of the cam track is that its entire outside wall has been cut away so that when necessary the cam roller can pass outside of the normal confines of the track.
  • Two cutoff knife levers, 18 and 19, are pivoted at 21-21 on the hopper, l4, and overlie the reciprocating feed bars, 11 and 12.
  • Cutoff knives, 22 and 23 are fastened adjacent one end, 24-24, of the bars, 11 and 12, and so positioned that they may swing into an interference position with the path of the descending container closure.
  • Cam rollers, 25 and 26, are fastened in carriers, 27- 27, which are bolted to the bars, 11 and 12.
  • the free ends, 28-28, of the levers, 18 and 19, project rearwardly beyond the cam rollers, 25 and 26, and into an interference path, with the lockout pins, 33-33.
  • Pins, 33-33, are normally raised by compression springs, 31-31.
  • the lockout pins, 33-33 which prevent the knife levers, l8 and 19, from moving, are suspended from a small bridge, 34, which in turn is depressed by the plunger, 29, of a small electropneumatic cylinder, 35.
  • the pins are returned to released position by the springs, 31-31. Accordingly, when the electropneumatic cylinder, 35, is energized, bridge, 34, and the two lockout pins, 33-33, are depressed, and immobilize the knife'l evers, l8 and 19.
  • Electropneumatic cylinders are dependable and conventional units, but electrically operated solenoids which push a plunger downwardly are satisfactory.
  • the sensor mechanism may be any of various commercial types, one of the simplest being merely a micro switch operated by a contact arm, 36.
  • Movement of arm, 36, which is hinged to the switch, 37, will cause an electropneumatic valve to open, push the lockout pins, 33-33, dowardly, and lock the knife lever arms, 18 and 19, into inoperative position when the level of the closures drops below the sensor.
  • a container closure lining machine having a rotating chuck, a hopper member, reciprocating slide feed means including spaced parallel feed bars, means to remove container closures from a feed stack and place closures successively on said rotating chuck, the same machine being characterized by a. one-sided cam tracks formed in each of the said parallel feed bars,
  • cam rollers affixed to the arms and bearing against said cam track
  • a stack height sensor arranged to activate said pins whenever the height of the stack of closures reaches pre-determined low limits

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • De-Stacking Of Articles (AREA)

Abstract

In the usual machine which applies sealing compound to a container closure, a special attachment prevents the feeding of the last few container covers remaining in a feed stack, and permits the feed of closures as soon as the stack of closures to be fed is rebuilt to its proper height. The present machine eliminates this entire mechanism, and supports the few remaining closures in the feed stack on the cutoff knives which themselves become disabled when the closures in the feed stack reach the selected low number. Stack bounce and disarranged closures are eliminated by this device.

Description

United States Patent 1 Harrison 11 3,709,355 [451 Jan. 9, 1973 [76] Inventor: William B. Harrison, 8 Ridley Road,
Dedham, Mass. 02026 [22] Filed: Sept. 13, 1971 [211 App]. No.: 179,924
Primary Examiner-Evon C. Blunk Assistant Examiner-James Miller Attorney-C. E. Parker et a1.
[57] ABSTRACT In the usual machine which applies sealing compound to a container closure, a special attachment prevents the feeding of the last few container covers remaining in a feed stack, and permits the feed of closures as soon as the stack of closures to be fed is rebuilt to its proper height. The present machine eliminates this entire mechanism, and supports the few remaining clo sures in the feed stack on the cutoff knives which themselves become disabled when the closures in the feed stack reach the selected low number. Stack bounce and disarranged closures are eliminated by this device.
4 Claims, 3 Drawing Figures PATENTEU JAN 9 I975 SHEET 1 BF 3 INVENTOR.
WILLIAM B. HARRISON PATENTEUJA! ems 3.709.355
SHEET 2 UF 3 FIG. 2
INVENTOR. WILLIAM B. HARRISON PATENTED JAN 9 I975 SHEET 3 BF 3 FIG. ,3
WILLIAM B. HARRISON INV EN TOR.
STACK HEIGHT CONTROL USING CUTOFF KNIVES This invention relates to container closure lining machines, and particularly to that type of machine in which the feed of the closures is accomplished by a reciprocating slide. Although the device is particularly designed for operation in association with can ends, it will become obvious that its mode of operation adapts it to the feeding of other types of closures, particularly, press-on caps.
In application Ser. No. 1,209, filed Jan. 7, 1970, by William B. Harrison and Edwin E. Keene, a lining machine was shown in which the cutoff mechanism which separates the lowermost closure of the infeed stack and delivers it to a pushing member which pushes it onto a rotating chuck, disclosed knives which, in contrast to conventional cutoffs attached to the reciprocating slide were attached to cam-driven arms which moved inwardly, transverse to the motion of the slide The movement of those arms was controlled by a cam roller which fitted into an elongated cam track cut in the upper face of the feed bars. That application and the present invention have been assigned to the same assignee. The entire disclosure of the said Harrison and Keene application is incorporated by reference.
The advent of aluminum can ends, particularly the light aluminum end used on fruit juice cans, has exaggerated certain difficulties encountered in the operation of prior machines. When the ends were cut off by knives which were attached to the feed bar, a certain amount of bounce called stack bounce took place as the knives engaged the lowermost ends. Stack bounce progressively worsened as the number of ends in the infeed stack became fewer and fewer. When but few ends were left on the infeed, the bounce became so violent that ends were thrown upward and misfed. This occurred with steel ends. Aluminum made matters worse.
To prevent this, it has become customary to put a stack height control on the machine which prevents the feeding of ends to the chuck whenever the number of ends remaining in the stack reaches a predetermined low number. This apparatus has been a separate attachment which, operated either by an air-driven piston or by a solenoid, projected a support beneath the stack of ends when the sensing apparatus, often a photo-electric cell, was activated.
A principal object of the present invention is to simplify the stack height control mechanism and to eliminate any special slide or support. I have found that if means are provided to stop the in-and-out motion of the knives on signal, that the side-operating knives which characterize the said Harrison and Keene invention can act as effective stack supports, and will hold the remaining ends suspended whenever the sensor signals low stack. As a result, the knives themselves, by remaining in position which interferes with the downward drop of the can end will support the entire stack until a signal is given which reactivates the inand-out motion of the knives. The result is a considerable simplification of the machine, and some elimination of parts. This, in a machine from which high rates of production are demanded, is a distinct economic advantage, for more parts become accessible, and jams may be cleared more easily.
When the cutoff knives are locked in the in or no feed position, the slide continues to move back and forth, but as soon as the stack of can ends or closures is replenished and the sensor signals a full stack, the machine recommences its normal operation.
Operation of the device will become apparent from the figures, and as the description proceeds. in the accompanying figures,
FIG. 1 is a top view of the slide feed mechanism of a container closure lining machine,
FIG. 2 is a vertical section of the slide bars, knifeoperating lever, and the lockout pin portions of the bounce control mechanism,
FIG. 3 is a side view of the table portion of a lining machine showing the filled feed stack and the height control sensor switch.
The machine, as is conventional, is provided with two reciprocating feed bars, 11 and 12, driven by a conventional cross-head, and which slide in ways, 13- 13, which are formed in the hopper or bridge, 14, overlying the bars, 11 and 12. Each of the feed bars, 11 and 12, bears a cam track, 15 and 16, milled into the top surface, 17. The distinctive feature of the cam track is that its entire outside wall has been cut away so that when necessary the cam roller can pass outside of the normal confines of the track. a
Two cutoff knife levers, 18 and 19, are pivoted at 21-21 on the hopper, l4, and overlie the reciprocating feed bars, 11 and 12.
Cutoff knives, 22 and 23, are fastened adjacent one end, 24-24, of the bars, 11 and 12, and so positioned that they may swing into an interference position with the path of the descending container closure.
Cam rollers, 25 and 26, are fastened in carriers, 27- 27, which are bolted to the bars, 11 and 12. The free ends, 28-28, of the levers, 18 and 19, project rearwardly beyond the cam rollers, 25 and 26, and into an interference path, with the lockout pins, 33-33. Pins, 33-33, are normally raised by compression springs, 31-31.
Since one wall of both cam tracks, 15 and 16, has
been cut away, the levers, l8 and 19, carrying the knives, 22 and 23, are pushed into contact with the inner cam track wall by the push springs, 32-32, which push the knife levers into the cutoff and closure support position. Essentially, both knives move inward, and interfere with the downward free fall of a closure.
The lockout pins, 33-33, which prevent the knife levers, l8 and 19, from moving, are suspended from a small bridge, 34, which in turn is depressed by the plunger, 29, of a small electropneumatic cylinder, 35. The pins are returned to released position by the springs, 31-31. Accordingly, when the electropneumatic cylinder, 35, is energized, bridge, 34, and the two lockout pins, 33-33, are depressed, and immobilize the knife'l evers, l8 and 19. Electropneumatic cylinders are dependable and conventional units, but electrically operated solenoids which push a plunger downwardly are satisfactory. The sensor mechanism may be any of various commercial types, one of the simplest being merely a micro switch operated by a contact arm, 36.
Movement of arm, 36, which is hinged to the switch, 37, will cause an electropneumatic valve to open, push the lockout pins, 33-33, dowardly, and lock the knife lever arms, 18 and 19, into inoperative position when the level of the closures drops below the sensor.
As a result, the present improvement on the Harrison and Keene mode of cutoff can, with the modification of the cam track, not only achieve nondestructive low velocity separation of the ends, but the entire special mechanism which was necessary to prevent stack bounce in prior slide-feed type lining machines is no longer necessary. A simple lockout arrangement accomplishes the stack bounce control with much fewer parts and with greater simplicity.
lclaim:
l. A container closure lining machine having a rotating chuck, a hopper member, reciprocating slide feed means including spaced parallel feed bars, means to remove container closures from a feed stack and place closures successively on said rotating chuck, the same machine being characterized by a. one-sided cam tracks formed in each of the said parallel feed bars,
b. spring pressed arms pivoted on the said hopper member,
0. cam rollers affixed to the arms and bearing against said cam track,
d. inwardly facing closure cutoff knives attached adjacent the ends of each arm,
e. pins adapted to be projected into the path of each cutoff arm adjacent its remote end,
f. a stack height sensor arranged to activate said pins whenever the height of the stack of closures reaches pre-determined low limits,
whereby with each reciprocation of the machine a clo- 7 sure is cut off and fed to the chuck until a pre-determined low number of closures remains in the said feed stack, whereupon the remaining closures are supported by the knives which then remain motionless.
2. A container closure lining machine as claimed in

Claims (4)

1. A container closure lining machine having a rotating chuck, a hopper member, reciprocating slide feed means including spaced parallel feed bars, means to remove container closures from a feed stack and place closures successively on said rotating chuck, the same machine being characterized by a. one-sided cam tracks formed in each of the said parallel feed bars, b. spring pressed arms pivoted on the said hopper member, c. cam rollers affixed to the arms and bearing against said cam track, d. inwardly facing closure cutoff knives attached adjacent the ends of each arm, e. pins adapted to be projected into the path of each cutoff arm adjacent its remote end, f. a stack height sensor arranged to activate said pins whenever the height of the stack of closures reaches pre-determined low limits, whereby with each reciprocation of the machine a closure is cut off and fed to the chuck until a pre-determined low number of closures remains in the said feed stack, whereupon the remaining closures are supported by the knives which then remain motionless.
2. A container closure lining machine as claimed in claim 1, wherein the sensor controlling the operation of the said cutoff mechanism has a contact arm bearing on the stack of closures.
3. A container closure lining machine as claimed in claim 1, wherein the means to project the lockout pins which disable the knife levers is a solenoid.
4. A container closure lining machine as claimed in claim 1, wherein the means to project the lockout pins which disable the knife levers is an electropneumatic mechanism.
US00179924A 1971-09-13 1971-09-13 Stack height control using cutoff knives Expired - Lifetime US3709355A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US17992471A 1971-09-13 1971-09-13

Publications (1)

Publication Number Publication Date
US3709355A true US3709355A (en) 1973-01-09

Family

ID=22658544

Family Applications (1)

Application Number Title Priority Date Filing Date
US00179924A Expired - Lifetime US3709355A (en) 1971-09-13 1971-09-13 Stack height control using cutoff knives

Country Status (4)

Country Link
US (1) US3709355A (en)
CA (1) CA965117A (en)
DE (1) DE2244669A1 (en)
IT (1) IT1007526B (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4331260A (en) * 1980-06-06 1982-05-25 Pako Corporation Slide mounter with slide separator/out-of-slide inhibitor

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2384052A (en) * 1941-08-29 1945-09-04 Crown Cork & Seal Co Cap feeding apparatus
US2645366A (en) * 1952-05-20 1953-07-14 Pacific Can Company Interrupted can end feed mechanism

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2384052A (en) * 1941-08-29 1945-09-04 Crown Cork & Seal Co Cap feeding apparatus
US2645366A (en) * 1952-05-20 1953-07-14 Pacific Can Company Interrupted can end feed mechanism

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4331260A (en) * 1980-06-06 1982-05-25 Pako Corporation Slide mounter with slide separator/out-of-slide inhibitor

Also Published As

Publication number Publication date
IT1007526B (en) 1976-10-30
DE2244669A1 (en) 1973-04-26
CA965117A (en) 1975-03-25

Similar Documents

Publication Publication Date Title
US3561189A (en) Shifting grid
US1989039A (en) Capping mechanism
US2386797A (en) Jar capping apparatus
US3940077A (en) Apparatus for and a method of yarn doffing
US1964078A (en) Cap feeding machine
US3301399A (en) Detection mechanism for cocked caps
US3709355A (en) Stack height control using cutoff knives
US2952955A (en) Bottle packing machine
US2042734A (en) Preselecting device for sheet-feeding mechanisms of stenciling machines and the like
US2725992A (en) Container stacking machine
US2963837A (en) Combined fitment applying and capping machine
US3479791A (en) Stop means for packing equipment
US1984962A (en) Device for reversing cigarettes and similarly-shaped articles of manufacture when packing same
US1422229A (en) Feeding mechanism
US1859372A (en) Feeding apparatus
US1834723A (en) Apparatus for distributing cigarettes from containers
US1750419A (en) Capping mechanism
US3579953A (en) Cigarette packers
US2313828A (en) Cap marking mechanism for container capping machines
US3302768A (en) Article inverting apparatus
US3121984A (en) Cap brake for sealing machine
US3460312A (en) Closure cap feeding means
US2077647A (en) Filling and closing machine
US2433619A (en) Fruit-feeding mechanism for fruit juice machines
US2295078A (en) Automatic press stop

Legal Events

Date Code Title Description
AS Assignment

Owner name: W. R. GRACE & CO.-CONN., MASSACHUSETTS

Free format text: MERGER;ASSIGNORS:GRACE MERGER CORP. A CT CORP. (MERGED INTO);W. R. GRACE & CO. A CT. CORP.;REEL/FRAME:005206/0001

Effective date: 19880525