US371912A - Can-heading mechanism - Google Patents

Can-heading mechanism Download PDF

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US371912A
US371912A US371912DA US371912A US 371912 A US371912 A US 371912A US 371912D A US371912D A US 371912DA US 371912 A US371912 A US 371912A
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head
jaws
casting
guide
plunger
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    • 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
    • B21D51/26Making hollow objects characterised by the use of the objects cans or tins; Closing same in a permanent manner
    • B21D51/30Folding the circumferential seam
    • B21D51/32Folding the circumferential seam by rolling

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  • This invention relates to a can heading to mechanism adapted to be used in that class of can-making machines such as is shown by our application,No. 247,149, filed August 17,1887, in which the can-bodies are carried by an intermittingl y rotating carrier, and the heads are placed on the can-bodies by two headers arranged in line with each other and reciprocating toward and from. the can-bodies and the carrier which feeds the latter forward.
  • Figure 1 is a sectional elevation of part of our machine, showing one of the guide-channels and the relation ofthejaws and the plunger thereto.
  • Fig. 2 shows the series ofjaws, the ring which operates them, and the guide-channel.
  • Fig. 3 is a transverse section showing the outer face of the jaws, with the cain-slots through them and the actuating-pins therein.
  • Fig. 4 is an enlarged detail in section illustrating the relation of the clamp-jaws to the can-head.
  • ⁇ Ve have herein shown an apparatus for setting a head on one end of a can; but it will be understood that a similar apparatus is em-' 0 ployed for the other end of the can, as shown in our applicatiomNo. 247 ,149, hereinbefore referred to.
  • The. plunger B is carried by a shaft, C, which reciprocates endwise in bearings afforded by the supports X.
  • the can- 5 body (not here shown) is held in suitable position ready to receive upon it the heads J, which are introduced edgewise through the guiding-chute A. WVhen aheadis to be introduced through the chute A, the plunger 13 is drawn back, so as to leave a free passage for the said head into the head-casting K.
  • the jaws D are closed in such a manner as to protect the flange of the can-head while the latter is being applied to the end of the can body.
  • the forward movement of the shaft C first moves the plunger 13 forward, so as to force the flange of the can-head into the annular groove F, formed in the jaws D,the said jaws being at this moment closed. continues its forward movement, pushing against the can-head, the latter forces the headcasting K forward over the can-body, the beveled guide G centering the latter, so that the can-head is forced thereon.
  • the jaws D are then released by the mechanism to be hereinafter described, so that they will slidelooscly over the carrhead, and the backward move ment of the shaft G withdraws the l1ead-casting from the can, leaving the head on the lat 7o ter.
  • the jawsD are again closed for the next operation, the backward movement of the head-casting K being limited by the adjustable set-screw 0 in the support X, and the spring L yielding somewhat to permit the plunger B to be withdrawn into the head-casting far enough to leave a free passage for the next can-head into the said head-casting through the chute A.
  • the jaws are formed with a marginal lip or guide, G, beveled 011 the face which is toward the can body to slightly crimp the ends of said body as the heads approach it when the header is being operatcd,as above described, and have 8 5 an annular groove or recess, F, just outside of said lip, into which the projecting edge of the annular flange on the can-head J enters.
  • the depth of this recess is but slightly greater than the thickness of the tin of which the can-hcad go is made, so that the lip orguide G extends inwardly but a trifle beyond the edge of the flange of the can-head when the jaws are closed in.
  • FIG. 3 The drawings represent in Fig. 3 the jaws D as three in number, and each jaw or section as formed with a cam-shaped enlargement, D, near each end, and (with oblique slots, into which studs or pins e project from a ring,
  • the ring E may be oscillated in a very short are by means of the arm H, extending rigidly from it. This movement alternately opens and closes the jaws to the extent required in applying the heads to the canthat is, the lips E move far enough over the cam-shaped enlargements D to bring the jaws into close contact with the periphery of the can-head and to lock the jaws in their closed position.
  • the beveled faces G of the jaws then serve to guide the can-body within the flange of the head.
  • the pins 6 in slots d carry the jaws outwardly on the reverse stroke.
  • Guide-pins 1? project from the cap M of the head-casting K through short parallel slots in each jaw, to permit a bodily movement of the jaw toward the axis of the can-headJ. (See Fig. 3.
  • the head-casting K is shown in Fig. 1 as a cupshaped cylindrical shell, within which the shaft 0 and plunger B work.
  • A. spring, L is introduced in rear of the plunger to keep the latter pressed up closely against the outer face of the camhead, the parts being shaped to fit upon each other.
  • the headcasting K has screwed upon it an annular portion or cap, M, which incloses the jaws D and the ring and pins by which they are actuate-d.
  • This cap M is slotted circumferentially, as in Figs. 1 and 3, to admit the can-heads from the guidechannels A, the walls of which project laterally therefrom, forming a guide-trough, as in Fig. 1.
  • An adjusting-screw, O passing through a portion of the frame X, with a check-nut, N, serves to regulate and fix the position of the head-casting K, so that the relation of all the parts borne upon it to the can-body and its supporting mechanism may be readily adjusted.
  • the headcasting K with its ring M, and the inclosed clampingjaws D, having each a beveled guidelip and groove adjacent thereto, and formed with oblique slots (1, in combination with the ring E, having pins 6 working in the slots of the jaws, substantially as and for the purpose set forth.
  • the head-casting K having a lateral opening to admit the can-heads, and a guidechannel, A, leading theretO and. cap M, in combination with radially-moving jaws having the annular recess F, to receive the flange of the can-head, and the projecting guide-lip G, to protect the edge of said flange and guide the can-body, and means for operating the jaws, substantially as and for the purpose set forth.
  • the head-casting K provided with the lateral guide-channel A, to admit the canheads, and the frame or support X, having an adj ustablc stopscrew, O, in combination with the plunger B and spring L, working within the casting K, substantially as and for the purpose set forth.

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Description

(No Model.) -2 Sheets-heet 1; E. E. ANGELL & 0. B. KENDALL.
CAN HEADING MECHANISM. No. 371,912. Patented Oct. 25, 1887.
llNiTEn STATES FFMIIEQ PATENT EDWIN E. ANGELL, OF MALDEN, AND CHARLES B. KENDALL, OF NEWTON, MASSACHUSETTS, ASSIGNOR-S TO THE AUTOMATIC CAN MACHINE COM- PANY, or saco, MAINE.
CAN-=HEADING MECHANISM.
SPECIFICATION forming part of Letters Patent No. 371,912, dated October 25, 1887.
Application filed August 15, 1887. Serial No. 246,925. (No model.)
.To aZZ whom, it may concern.-
Be it known that we, EDWIN E. ANGELL,Of Malden, lliiassachusetts, and CHARLES E. KEN- DALL, of Newton, Massachusetts, have invented, jointly, new and useful Improvements in Can-Heading Mechanism, of which the following, taken in' connection with the accompanying drawings,is a specification.
This" invention relates to a can heading to mechanism adapted to be used in that class of can-making machines such as is shown by our application,No. 247,149, filed August 17,1887, in which the can-bodies are carried by an intermittingl y rotating carrier, and the heads are placed on the can-bodies by two headers arranged in line with each other and reciprocating toward and from. the can-bodies and the carrier which feeds the latter forward. Reference may be had to our said application for the general features of our machine and for description and illustration of the mechanism for operating ourimproved header.
Our invention is embodied in the apparatus described and shown, as particularly set forth 2 5 in the appended claims.
In the drawings, Figure 1 is a sectional elevation of part of our machine, showing one of the guide-channels and the relation ofthejaws and the plunger thereto. Fig. 2 shows the series ofjaws, the ring which operates them, and the guide-channel. Fig. 3 is a transverse section showing the outer face of the jaws, with the cain-slots through them and the actuating-pins therein. Fig. 4 is an enlarged detail in section illustrating the relation of the clamp-jaws to the can-head.
\Ve have herein shown an apparatus for setting a head on one end of a can; but it will be understood that a similar apparatus is em-' 0 ployed for the other end of the can, as shown in our applicatiomNo. 247 ,149, hereinbefore referred to. The. plunger B is carried by a shaft, C, which reciprocates endwise in bearings afforded by the supports X. The can- 5 body (not here shown) is held in suitable position ready to receive upon it the heads J, which are introduced edgewise through the guiding-chute A. WVhen aheadis to be introduced through the chute A, the plunger 13 is drawn back, so as to leave a free passage for the said head into the head-casting K. At the moment of introduction of the can-head the jaws D are closed in such a manner as to protect the flange of the can-head while the latter is being applied to the end of the can body. The forward movement of the shaft C first moves the plunger 13 forward, so as to force the flange of the can-head into the annular groove F, formed in the jaws D,the said jaws being at this moment closed. continues its forward movement, pushing against the can-head, the latter forces the headcasting K forward over the can-body, the beveled guide G centering the latter, so that the can-head is forced thereon. The jaws D are then released by the mechanism to be hereinafter described, so that they will slidelooscly over the carrhead, and the backward move ment of the shaft G withdraws the l1ead-casting from the can, leaving the head on the lat 7o ter. \Vheu the cap M of the head-casting K has cleared the end of the can, the jawsD are again closed for the next operation, the backward movement of the head-casting K being limited by the adjustable set-screw 0 in the support X, and the spring L yielding somewhat to permit the plunger B to be withdrawn into the head-casting far enough to leave a free passage for the next can-head into the said head-casting through the chute A.
' The jaws are formed with a marginal lip or guide, G, beveled 011 the face which is toward the can body to slightly crimp the ends of said body as the heads approach it when the header is being operatcd,as above described, and have 8 5 an annular groove or recess, F, just outside of said lip, into which the projecting edge of the annular flange on the can-head J enters. The depth of this recess is but slightly greater than the thickness of the tin of which the can-hcad go is made, so that the lip orguide G extends inwardly but a trifle beyond the edge of the flange of the can-head when the jaws are closed in. This distance is, however, suiiicient to make of the lip G a guide to slightly crimp 95 and to positively direct the ends of the canbody at all points within the annular flanges of the can-heads. This relative position of the As the plunger 60 parts will be readily understood from the general section in Fig. 1 and from the enlarged detail, Fig. 4.
The drawings represent in Fig. 3 the jaws D as three in number, and each jaw or section as formed with a cam-shaped enlargement, D, near each end, and (with oblique slots, into which studs or pins e project from a ring,
- E, having projecting lips E, to act upon the cams D. The ring E may be oscillated in a very short are by means of the arm H, extending rigidly from it. This movement alternately opens and closes the jaws to the extent required in applying the heads to the canthat is, the lips E move far enough over the cam-shaped enlargements D to bring the jaws into close contact with the periphery of the can-head and to lock the jaws in their closed position. The beveled faces G of the jaws then serve to guide the can-body within the flange of the head. The pins 6 in slots d carry the jaws outwardly on the reverse stroke.
Guide-pins 1? project from the cap M of the head-casting K through short parallel slots in each jaw, to permit a bodily movement of the jaw toward the axis of the can-headJ. (See Fig. 3.
. more properly a part of the can-making apparatus, and need not be explained in detail here.
The head-casting K is shown in Fig. 1 as a cupshaped cylindrical shell, within which the shaft 0 and plunger B work. A. spring, L, is introduced in rear of the plunger to keep the latter pressed up closely against the outer face of the camhead, the parts being shaped to fit upon each other. The headcasting K has screwed upon it an annular portion or cap, M, which incloses the jaws D and the ring and pins by which they are actuate-d. This cap M is slotted circumferentially, as in Figs. 1 and 3, to admit the can-heads from the guidechannels A, the walls of which project laterally therefrom, forming a guide-trough, as in Fig. 1. An adjusting-screw, O, passing through a portion of the frame X, with a check-nut, N, serves to regulate and fix the position of the head-casting K, so that the relation of all the parts borne upon it to the can-body and its supporting mechanism may be readily adjusted.
We claim as our joint invention- 1. In a can-heading apparatus, the combination, with a suitable frame and means for holding the can-body, of a recessed annular head provided with radially-moving sectional jaws D, formed with extensions D, and the actuating-ring E, provided with lips E, engaging therewith, substantially as and for the purpose set forth.
2. In a can-heading apparatus, the headcasting K, with its ring M, and the inclosed clampingjaws D, having each a beveled guidelip and groove adjacent thereto, and formed with oblique slots (1, in combination with the ring E, having pins 6 working in the slots of the jaws, substantially as and for the purpose set forth. p
3. The head-casting K, having a lateral opening to admit the can-heads, and a guidechannel, A, leading theretO and. cap M, in combination with radially-moving jaws having the annular recess F, to receive the flange of the can-head, and the projecting guide-lip G, to protect the edge of said flange and guide the can-body, and means for operating the jaws, substantially as and for the purpose set forth.
4. The head-casting K, provided with the lateral guide-channel A, to admit the canheads, and the frame or support X, having an adj ustablc stopscrew, O, in combination with the plunger B and spring L, working within the casting K, substantially as and for the purpose set forth.
. In testimony whereof we have signed our names to this specification, in the presence of two subscribing witnesses, on this 13th day of August, A. D. 1887.
EDWIN E. ANGELL. cumulus B. KENDALL.
WVitnesses:
A. H. Srnnonn, FRANK T. BENNER.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3209072A1 (en) * 1981-03-13 1982-09-23 Borskaja proektno-konstruktorskaja organisazija "Orgsteklo", Bor, Gorkovskaja oblast' Process for accommodating glass panels in a packaging means and device for carrying out the process

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3209072A1 (en) * 1981-03-13 1982-09-23 Borskaja proektno-konstruktorskaja organisazija "Orgsteklo", Bor, Gorkovskaja oblast' Process for accommodating glass panels in a packaging means and device for carrying out the process

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