US151935A - Improvement in box and can machines - Google Patents
Improvement in box and can machines Download PDFInfo
- Publication number
- US151935A US151935A US151935DA US151935A US 151935 A US151935 A US 151935A US 151935D A US151935D A US 151935DA US 151935 A US151935 A US 151935A
- Authority
- US
- United States
- Prior art keywords
- rollers
- shaft
- heads
- collars
- pins
- 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
Links
- 230000000875 corresponding effect Effects 0.000 description 3
- 238000004826 seaming Methods 0.000 description 2
- 229940000425 combination drug Drugs 0.000 description 1
- 230000001276 controlling effect Effects 0.000 description 1
- 230000000881 depressing effect Effects 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 229910052751 metal Inorganic materials 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21D—WORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21D51/00—Making hollow objects
- B21D51/16—Making hollow objects characterised by the use of the objects
- B21D51/26—Making hollow objects characterised by the use of the objects cans or tins; Closing same in a permanent manner
- B21D51/30—Folding the circumferential seam
- B21D51/32—Folding the circumferential seam by rolling
Definitions
- This invention consists, essentially, of a novel system of rollers, whereby the joints between the two heads of a can and its body may both be pinned down at the same time, and their seams may be closed, and whereby, also, the swagin g may be done, if desirable, without removing the can during the several operations.
- Figure 1 is a side view of the machine.
- Fig. 2 is a transverse section of the same, taken at the dotted line 00 w in Fig.1.
- Fig. 3 is a longitudinal section of the controlling series of rollers; and
- Figs. 4, 5, 6, and 7 are diagrams illustrative of the several stages of the operation.
- A is the frame of the machine. It consists, mainly, of two horizontallyextending arms, one of which, a, supports a lower series of rollers that carry the can while being operated upon by an upper series adjustably supported in the other arm I). These arms extend from a box'lihe upright portion that contains one set of bearings for the shafts that carry the two sets of rollers.
- the whole frame is secured to a suitable base by means of a single standard or post, 0.
- the two series of rollers are arranged on two shafts, B and O, situate one above the other.
- the lower shaft, B is supported in a bearing, d, at the outer end of the lower arm a of the frame, and is likewise supported in a bearing, 0, arranged in the bottom of a housing in the box-like portion of the frame before described.
- this shaft is supported in a bearing, g, that isv suspended by two spiral springs, h h, from the outer end of the upper arm I) of the frame, and is confined laterally by rods (1 q, sliding in guides on the fore end of this arm. It is held down in the position that it is desired to maintain by a screw, D, that is furnished at the upper end with a crank, to provide for its manipulation.
- This shaft has to be raised in order to place in the machine the body and heads of the can to be united, and it is for this reason arranged in its bearings after the manner just described.
- the motion of said shaft is derived from the lower shaft, B, through the medium of gearwheels 1? i, with which they are both furnished, near their bearings, in the housings of the frame. Motion is imparted to the shaft B by means of a large gear-wheel, E, which is arranged on its outer end, and has working into it a pinion, G, on the driving-shaft H of the machine. Power may be transmitted to this shaft by means of a crank, belt and pulleys, or other suitable means.
- rollers I will 110w describe the rollers, which, in deed, are the essential part of the machine.
- the two end rollers I I of the series on the shaft haveplain peripheries, and the inner one is made adjustable relatively to the other, in order to enable it to be arranged at such distance from the other that they both will fit against the heads of a can placed upon them for the purpose of having its heads se cured to its body. They are much smaller in diameter than the body of the can, so that the head of the can, which usually has an opening in it, designed to be closed by a cover soldered to it, may easily pass over them, to permit the placing of the can thereon.
- These rollers are secured in place by means of set screws carried by long hubs, with which they are provided.
- rollers J J of the same size, having the trans verse profile of their peripheries curved after the manner of an ogee.
- the upper series of rollers are somewhat different.
- the rollers K K at the ends of the series of the heads, as they might very properlybe termed, are larger in diameter than those, I I, on the lower series, but are quite narrow, and have their inner opposite faces inclined slightly, to approach each other as they near their hubs.
- rollers I I They lap over the outer sides of the rollers I I somewhat, and the inner of the two is secured adjustably on its shaft, in order that it maybe shifted to maintain its relative position to the adjacent roller Iwhenever that is adjusted.
- These heads have long hubs, extending one toward the other.
- rollers L L corresponding in size and peripherical shape to the rollers I l', are arranged in such manner that they are capable of sliding laterally back and forth ashort distance.
- These also, have hubs on their opposite sides, and pins or studs p1), passing through slots w it, provided in them to lock them to the hubs of the heads K K, as regards circumferential motion, but do notinterfere with their independent longitudinal movements.
- the outer sides or faces of these rollers are shaped to correspond with the adjacent portions of the heads K K, and in the middle are hollowed out, to receive springs j j, which press against the heads, and thereby force the rollers away therefrom as far as permitted by the pins 1) 1).
- springs j j which press against the heads, and thereby force the rollers away therefrom as far as permitted by the pins 1) 1).
- a spring, Q holds the bar 0 as far away from the collars P I as possible, so that pins '0 r 011 its ends will not come in contact with the pins I Z on the collars N N, except when the bar is pressed toward the shaft by means of the le ver M, in the hands of the operator.
- Arms 9 y project from the sides of the collars P P, to hold a short shaft, furnished with small swaging-rollers 1t R, corresponding in peripherical profile to the swaging-rollers J J, previously described, and also in situation.
- the body and heads of the can to be united are first prepared as shown in Fig. 4, the body having right-angled laterally-extendin g flanges m m on it, and the heads verticallyextending flanges a a. They are fitted together as shown in that figure, and the edges of the heads flanges are turned over the flanges on the can body by barring or a hand-tool, as shown in Fi 5.
- the can is then ready to be placed in the machine.
- the shaft 0 is now raised, and the can, with the open head foremost, is placed 011 the lower series of rollers, as illustrated in Fig. 1.
- the shaft 0 is then lowered, and the bent-over flanges of the can enter between the inner faces of the heads K K and the adjacent faces of the rollers L L.
- the bar 0 is pressed toward the shaft 0, so that, as the pins 1 Z on the collars N N come round, the collars will be stopped, and their ca-nrfaces will, by acting against the pins 7t 70, force the rollers L L toward the heads K K, and thereby clamp the flanges of the can tightly, and close or pin down the joint.
- a slight incline rearward is given to the flanges, as shown in Fig. 6, so that the turning-over rollers will bend them down in the proper direction.
- the lever M is pulled over to bring the upper swaging-rollers, It It, down, to act in connection with the lower ones, J J, and their profile will, by the continued rotation of the rollers, be imparted to the can.
- This machine is an exceedingly good one, as not only does it secure both heads at once, but also it affords a means of swaging the body of the can while still in the machine. If desirable for any reason, the machine could be made to act on one end only of the can at a time.
- MiGI-IAEL RYAN FRED. HAYNES.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Press Drives And Press Lines (AREA)
Description
2 Sheets--Sheet1.
l. STUART.
Box and Can Machines.
Patented June 9,1874.
a M 3 4 8. w W w M W? WM NI Wm m m i a mu M u 1 w H K 4 H. HHHHI 1F w a @A w y w x wvfl m 2 Sheets--Sheet 2 -D. STUART.
Box and Can Machines.
N0 15l,935, Patentedjune9,l874.
U ITED STATES PATENT OFFICE.
DAVID J. STUART, OF WILLIAMSBURG, NEW YORK, ASSIGNOR OF TWO- THIBDS HIS RIGHT TO JOSEPH MOKEE, OF SAME PLACE.
IMPROVEMENT IN BOX AND CAN MACHINES.
Specification forming part of Letters Patent No. 15 [,935, dated June 9, 1874 application filed September 2, 1873.
To all whom it may concern:
Be it known that I, DAVID JAMES STUART, of VVilliamsburg, in the county of Kings and State of New York, have invented Improvements in Machine for Pinning Down and Double-Seaming the Heads of Sheet-Metal Cans and other vessels and swaging them, of which the following is a specification:
This invention consists, essentially, of a novel system of rollers, whereby the joints between the two heads of a can and its body may both be pinned down at the same time, and their seams may be closed, and whereby, also, the swagin g may be done, if desirable, without removing the can during the several operations.
In the accompanying drawing, Figure 1 is a side view of the machine. Fig. 2 is a transverse section of the same, taken at the dotted line 00 w in Fig.1. Fig. 3 is a longitudinal section of the controlling series of rollers; and Figs. 4, 5, 6, and 7 are diagrams illustrative of the several stages of the operation.
Similar letters of reference indicate corre sponding parts in all the figures.
Ais the frame of the machine. It consists, mainly, of two horizontallyextending arms, one of which, a, supports a lower series of rollers that carry the can while being operated upon by an upper series adjustably supported in the other arm I). These arms extend from a box'lihe upright portion that contains one set of bearings for the shafts that carry the two sets of rollers. The whole frame is secured to a suitable base by means of a single standard or post, 0. The two series of rollers are arranged on two shafts, B and O, situate one above the other. The lower shaft, B, is supported in a bearing, d, at the outer end of the lower arm a of the frame, and is likewise supported in a bearing, 0, arranged in the bottom of a housing in the box-like portion of the frame before described. The other shaft, 0,
near one end, is supported in a bearing,f, which is arranged within the same housin It is separated from that supporting the adjacent end (f the shaft B by springs, which hold it up as far as permitted by screws 8 s, which regulate its position. This adjustment is afforded to enable the series of rollers that this shaft carries to act uniformly on their re spective fellows on the lower shaft, BA The hearing which the shaft has. here is of the ball-and-socket kind, and enables its other end to be tipped without causing binding in this hearing. The other end of this shaft is supported in a bearing, g, that isv suspended by two spiral springs, h h, from the outer end of the upper arm I) of the frame, and is confined laterally by rods (1 q, sliding in guides on the fore end of this arm. It is held down in the position that it is desired to maintain by a screw, D, that is furnished at the upper end with a crank, to provide for its manipulation. This shaft has to be raised in order to place in the machine the body and heads of the can to be united, and it is for this reason arranged in its bearings after the manner just described.
Instead of the screw 1), there may be used for raising and depressing the shaft a treadle motion, which would expedite the operation of the machine very materially.
The motion of said shaft is derived from the lower shaft, B, through the medium of gearwheels 1? i, with which they are both furnished, near their bearings, in the housings of the frame. Motion is imparted to the shaft B by means of a large gear-wheel, E, which is arranged on its outer end, and has working into it a pinion, G, on the driving-shaft H of the machine. Power may be transmitted to this shaft by means of a crank, belt and pulleys, or other suitable means.
I will 110w describe the rollers, which, in deed, are the essential part of the machine. The two end rollers I I of the series on the shaft haveplain peripheries, and the inner one is made adjustable relatively to the other, in order to enable it to be arranged at such distance from the other that they both will fit against the heads of a can placed upon them for the purpose of having its heads se cured to its body. They are much smaller in diameter than the body of the can, so that the head of the can, which usually has an opening in it, designed to be closed by a cover soldered to it, may easily pass over them, to permit the placing of the can thereon. These rollers are secured in place by means of set screws carried by long hubs, with which they are provided. Between these rollers are others, J J, of the same size, having the trans verse profile of their peripheries curved after the manner of an ogee. These are the lower set of swaging-rollers. They are both secured adjustably on the shaft, in the same manner as the inner roller I, previously described, in order that the swaging may be done on any part of the can-body that may be preferred, and likewise to adapt the machine to different-sized cans. The upper series of rollers are somewhat different. The rollers K K at the ends of the series of the heads, as they might very properlybe termed, are larger in diameter than those, I I, on the lower series, but are quite narrow, and have their inner opposite faces inclined slightly, to approach each other as they near their hubs. They lap over the outer sides of the rollers I I somewhat, and the inner of the two is secured adjustably on its shaft, in order that it maybe shifted to maintain its relative position to the adjacent roller Iwhenever that is adjusted. These heads have long hubs, extending one toward the other. On these hubs rollers L L, corresponding in size and peripherical shape to the rollers I l', are arranged in such manner that they are capable of sliding laterally back and forth ashort distance. These, also, have hubs on their opposite sides, and pins or studs p1), passing through slots w it, provided in them to lock them to the hubs of the heads K K, as regards circumferential motion, but do notinterfere with their independent longitudinal movements. The outer sides or faces of these rollers are shaped to correspond with the adjacent portions of the heads K K, and in the middle are hollowed out, to receive springs j j, which press against the heads, and thereby force the rollers away therefrom as far as permitted by the pins 1) 1). On the hubs of the heads K K, just inward of the hubs of the rollers L L, there are loose collars N N, which have on their adjacentsides cam-like surfaces that somewhat resemble ratchet-teeth. They work against pins 7; 7., that project from the hubs of the heads K K. From the collars themselves project other pins, 1 I, which afford a means of locking them to a lever, M, by which they may be turned so that their cam-faces will act against the pins, and by this means the collars will force the rollers L L over toward the heads K K. The lever .\I, by which this is effected, is secured to a yoke or bar, 0, that is fitted to two pins or rods, 1' 1', on collars I I, which are loose on the shaft 0, between the hubs of the heads K K. A spring, Q, holds the bar 0 as far away from the collars P I as possible, so that pins '0 r 011 its ends will not come in contact with the pins I Z on the collars N N, except when the bar is pressed toward the shaft by means of the le ver M, in the hands of the operator. Arms 9 y project from the sides of the collars P P, to hold a short shaft, furnished with small swaging-rollers 1t R, corresponding in peripherical profile to the swaging-rollers J J, previously described, and also in situation.
The body and heads of the can to be united are first prepared as shown in Fig. 4, the body having right-angled laterally-extendin g flanges m m on it, and the heads verticallyextending flanges a a. They are fitted together as shown in that figure, and the edges of the heads flanges are turned over the flanges on the can body by barring or a hand-tool, as shown in Fi 5. The can is then ready to be placed in the machine. The shaft 0 is now raised, and the can, with the open head foremost, is placed 011 the lower series of rollers, as illustrated in Fig. 1. The shaft 0 is then lowered, and the bent-over flanges of the can enter between the inner faces of the heads K K and the adjacent faces of the rollers L L. The bar 0 is pressed toward the shaft 0, so that, as the pins 1 Z on the collars N N come round, the collars will be stopped, and their ca-nrfaces will, by acting against the pins 7t 70, force the rollers L L toward the heads K K, and thereby clamp the flanges of the can tightly, and close or pin down the joint. Owing to the incline of the adjacent faces of the heads and rollers, a slight incline rearward is given to the flanges, as shown in Fig. 6, so that the turning-over rollers will bend them down in the proper direction. Next, the collars N N are freed, and the shaft 0 is raised again slightly, to withdraw the rollers from the flanges of the can, and then the rollers L L are, by means of the lever M, forced tightly against the heads K K, and afterward the shaft is lowered, and the rollers L L, coming then on the bent'in flanges of the can, fold them down and complete the double-seaming.
If it be desirable to swage the can, also, the lever M is pulled over to bring the upper swaging-rollers, It It, down, to act in connection with the lower ones, J J, and their profile will, by the continued rotation of the rollers, be imparted to the can.
This machine is an exceedingly good one, as not only does it secure both heads at once, but also it affords a means of swaging the body of the can while still in the machine. If desirable for any reason, the machine could be made to act on one end only of the can at a time.
What I claim as my invention is- 1. The combination of the rollers L with the rollers or heads K on the same shaft, sub stantially as and for the purpose herein set forth. 1
2. The combination, with the heads K and rollers L, of the cam-like collars N, the pins It, against which they operate, the pins Z on said. collars, and the operating-lever M, substantially as and for the purpose herein set forth.
3. The inwardly-inclined or rounded inner faces of the heads or rollers K, in combina tion with the eorrespondingly-shaped adjacent faces of their fellow rollers L on the same 5. The combination of the revolving swaging-rollers J J on the shaft B, the yoke O, supported on the shaft 0, the lugs y y, and the loose swaging-rollers R R appended thereto, substantially as herein set forth, whereby the can may be swaged without shifting it in the machine.
. DAVID J. STUART.
Witnesses:
MiGI-IAEL RYAN, FRED. HAYNES.
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US151935A true US151935A (en) | 1874-06-09 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US151935D Expired - Lifetime US151935A (en) | Improvement in box and can machines |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US151935A (en) |
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- US US151935D patent/US151935A/en not_active Expired - Lifetime
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