US994153A - Barrel-heading-up machine. - Google Patents

Barrel-heading-up machine. Download PDF

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US994153A
US994153A US52793209A US1909527932A US994153A US 994153 A US994153 A US 994153A US 52793209 A US52793209 A US 52793209A US 1909527932 A US1909527932 A US 1909527932A US 994153 A US994153 A US 994153A
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head
barrel
members
machine
frame
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Charles Grotnes
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27HBENDING WOOD OR SIMILAR MATERIAL; COOPERAGE; MAKING WHEELS FROM WOOD OR SIMILAR MATERIAL
    • B27H5/00Manufacture of tubes, coops, or barrels
    • B27H5/08Finishing barrels, e.g. cutting grooves
    • B27H5/10Trussing or hooping barrels

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  • Barrel heading-up machines as heretofore constructed have been large and heavy and the parts thereof have been so arranged that it was necessary to form an opening in the floor and support the machine with a portion thereof below the floor level, a special foundation generally being required.
  • the travel of the head also has been considerable.
  • the means for moving the head heretofore employed has been a vertical screw shaft supported upon a step hearing.
  • the speed obtainable with the screw shaft has necessarily been relatively low, and the wear upon the step hearing has been very great owing to the great weight of the driving head and cross head supported by said shaft.
  • My invention contemplates a barrel heading-up machine which is very compact and relatively small, much lighter than those of the prior art, one which can be installed upon any ordinary floor without cutting an opening therethrough, and wherein the head not only has a shorter travel but also moves ata higher speed than in the machines heretofore produced.
  • the invention also relates to other improvements in apparatus of this class hereinafter set forth.
  • Figure 1 is a front elevation of a barrel heading-up machine embodying the features of my invention.
  • Fig. 2 is a top plan view of the machine.
  • Fig. 3 is a section on line 3 3 of Figs. 1 and 2.
  • Fig. 4 is a detail illustrating a means for stopping the machine when the head has reached either limit of its movement.
  • Figs. 5, 6 and 7 are views illustrating the operation of the machine, Fig. 5 showing the barrel staves as having been gathered together and the end hoop placed thereover.
  • Figs. 6 and 7 illustrate the operation of driving the end hoop.
  • the frame of the machine comprises two side members 1 and the cross beams 2 and 3.
  • a barrel-supporting platen 4 is fixed by means of a set screw 5 upon the upper end of a screw 6, which screw is mounted within a screw-threaded bushing 7 fixed within an Specification of Letters Patent.
  • the screw 6 may be held from rotation after the platen has been adjusted to the desired height by means of a locking screw 8.
  • a head 9 in the form of a ring having a wedging or tapered inner peripheral surface 10 is removably secured by means of screws 11 to castings 12.
  • Each of said castings comprises a sleeve 13 which is slidable upon a guide rod 1 1 rigidly attached to each of the side frame members 1.
  • the lower end of each of said rods extends through two perforated lugs 15 on one of the side frame members 1 and is secured against movement therein by set screws 16.
  • a rack bar 19 Fixed to each of the castings 12 by means herein shown as plates 17 and bolts 18 is a rack bar 19 which is vertically slidable within a guide 20 formed upon each side frame member 1.
  • a horizontal shaft 21 mounted in bearings in the side frame members has fixed thereto pinions 22 meshing with the rack bars 19.
  • pinions 22 meshing with the rack bars 19.
  • Upon one end of the shaft 21 is a spur gear wheel 23 which meshes with a pinion 24 upon one end of the shaft 25 carried in bearings upon the side frame members.
  • a spur gear wheel 26 On the opposite end of the shaft 25 is rigidly mounted a spur gear wheel 26 which meshes with a pinion 27 fixed upon the drive shaft 28 carried in bearings upon the side members.
  • Two drive pulleys 29 and 30 are in this instance rotatably and slidably'mounted upon the ends of the drive shaft 28 and are arranged to be driven in opposite directions by belts (not shown).
  • the drive pulleys 29 and 30 are arranged to be alternately coupled to the drive shaft 28 by means of friction clutch members 31 and 32 fixed upon the drive shaft, said pulleys being slidable into and out of clutch connection with said clutch members by means of a rod 33, the ends of said rod being secured to rings 31 which lie in grooves in the hubs of the pulleys.
  • the rod 33 is arranged to be slid to place the clutch face 35 of either of the drive pulleys 29 and 30 in operative relation to its clutch member and to place both of said drive pulleys in the intermediate or idle position by means herein shown as comprising a rock shaft 36 having fixed to its rear end an arm 37 which is operatively connected to a collar 38 fixed upon the rod 33.
  • a rock shaft 36 having fixed to its rear end an arm 37 which is operatively connected to a collar 38 fixed upon the rod 33.
  • an operating lever 39 Upon the forward end of the rock shaft 36 is adjustably fixed an operating lever 39.
  • acasting 40 is fixed to the rock shaft, and the'lever 39 is clamped to said casting by means of clips 41 and screws 42, whereby the height of said lever may be adjusted to suit the convenience of the workman.
  • the upper end of the lever is provided with a yoke 48 which is arranged at a suitable height to embrace the operators leg at or near the knee, so that the operator may tilt said lever by the
  • counterweights 44 and 45 formed upon the lower end of the arm 37 and the casting 40, respectively.
  • a vertical rod' 51 is rigidly fixed toeach side of the frame of the machine rearwardly of a line drawn through the axis of a barrel placed in operative position upon the platen 4.
  • a sleeve 52 is vertically slidable upon each of said rods and may be fixed in position by means of a set screw 53.
  • Each of said'sleeves supports a horizontal andlongitudinally adjustable bar 54' which projects toward the barrel and may be fixed in adjusted position by means of a set screw 55.
  • the bars 54 are rearwardly of the space occupied by a barrel placedupon the platen or, in other words, said bars are rearwardly of the center of a barrel placed in operative position upon the platen, and consequently offer no obstruction to the placing of barrels upon the platen or their removal therefrom.
  • Saidbars are arranged at a suitable height to engage the ring a (Fig. 5) which is placed upon the assembled staves before said staves reach the machine herein shown.
  • Hoop-engaging members 56 are pivotally mounted upon the upper side of thehead 9; said members having pivots 57 (Fig. 7') which lie within openings formed in said head and in a ring 58 overlying said head and secured therto by means of bolts 59:
  • the members 56 are arranged to be swung into and out of position-to enagage a hoop by means of a ring 60 mounted upon the head 9 for limited rotation, said ring having recesses 61 therein into which extend projections 62 formed upon the rear end of each of said hoop-engaging members.
  • the ring 60 may be oscillated to swing the members 56 into and out of operative position by means of a handle 63.
  • the operation is as follows: The barrel body is placed upon the platen 4 by the operator and pushed rearwardly until it stops against the bars 54, the forward ends of said barsoverlying the stave-retaining ring a hereinbefore referred to.- The operator then takes a barrel head and holds it in proper relation to the upper ends of the staves and sets the machine in operation by throwing the pulley 32 into clutch with the drive shaft. As the head 9 descends over the staves it compresses them around the barrel head, the downward movement of the head 9 being automatically stopped at the proper point by the engagement of the collar 49 with the forkedarm 48.
  • said head may be removed from the castings12 by removingthe screws 11, and-a head of the proper size substituted;
  • a low frame comprising two elongated side members extending from front to rear; two cross beams connecting the forward and rear ends of said side members; a platen mounted in the forward one of said cross beams; head-guiding means extending upwardly from the forward portions of said side members; a head slidably mounted on said guiding means above said platen; a drive shaft rotatably mounted on said side members rearwardly of the platen; and connections between said drive shaft and said head for sliding said head.
  • a low frame comprising two elongated side members extending from front to rear; two cross beams con necting the forward and rear ends of said side members; a platen mounted in the forward one of said cross beams; guideways in said side members at the ends of said forward cross beam; a rack bar slidably mounted in each of said guideways; a shaft mounted on said side members rearwardly of the platen; pinions on said shaft meshing with said rack bars; and means upon the rear ends of said side members for rotating said pinions.
  • a frame mounted in said frame; two members slidably mounted in said frame at opposite sides of said platen; means for sliding said members toward and away from said platen; a relatively light ring-shaped head resting upon and supported by the upper ends of said members; and fastening means removably securing the head to said slidable members, said head being removable so that a head of another size may be substituted when it is desired to operate on another size of barrels, said head resting on said slidable members when the fastening members are removed.
  • a low frame adapted to be set upon a floor, said frame being of greater length, from front to rear, than height; a platen mounted in said frame at the forward side thereof, vertical rods fixed in said frame at opposite sides of said platen; members slidably mounted on said vertical rods; a head secured to and resting upon said members; rack bars vertically slidable in said frame and having their upper ends fixed to said members; pinions rotatably mounted in said frame and meshing with said rack bars; and means upon the rear end of said frame for rotating said pinions.
  • a barrel heading-up machine of the low type in combination, a substantial horizontal base frame supporting vertical guide standards; bars guided in said standards, their lower portions rack-toothed and a head supported at their upper ends; a stationary platen at the forward side of the frame; a drive shaft at the rear side of the frame; connections between said shaft and said bars for moving the head; means for driving said shaft; clutch means for connecting and disconnecting said shaft and driving means; a horizontal rock shaft extending from front to rear in the frame and having an arm arranged to operate said clutch means; and means moving with said head and arranged to rock said shaft at the ends of the travel of said head.
  • a barrel heading machine comprising a substantial horizontal base frame supporting vertical guide standards, bars guided in said standards, their lower portions racktoothed and a head supported at their upper ends, a driving shaft, transmitting gearing and a platen all mounted on said base frame, said gearing including a shaft with pinions engaging said rack bars, substantially as described.
  • a frame in combination, a frame; a platen carried by the forward portion of said frame; a head slidable toward and away from said platen; a drive shaft journaled in the rear portion of said frame; connections between said drive shaft and said head for sliding said head; two pulleys mounted on said drive shaft to rotate in opposite directions; two clutch members non-rotatable on said shaft; a rod for bringing said clutch members and said pulleys into clutch connection; a horizontal rock shaft journaled in and extending from front to rear in said frame; an arm fixed on the rear end of said shaft and connected with said rod; a lever adjustably secured to the forward end of said rock shaft; and counterweights attached to the lower end of said arm and said lever.
  • a head for barrel heading-up machines comprising an annular member having a flaring inner periphery, a plurality of hoopengaging members pivoted on said annular member, a ring rotatable on said annular member, said ring having recesses therem, and projections on said hoop-engaging members lying in said recesses.
  • a barrel heading-up machine in combination, a frame; a platen carried by said frame; a head slidable in said frame toward and away from said platen; rods secured to said frame at opposite sides of said platen; sleeves adjustably fixed on said rods; and transverse bars located at the rear side of the barrel and adjustably secured to said sleeves for horizontal movement, said bars serving as stops in positioning the barrel on said platen and holding the barrel against movement When saidhead is being Withdrawn therefrom.
  • a frame a platen carried by said members serving as stops for the barrel when the barrel 1s bemgpositioned on said platen, and said members engaging and.
  • annular head a plurality of: hoopengaging members pivoted; on said head intermediate their ends, and a ring'rotat-able on said head and engaging theouter. ends of said members for swinging the latter, the innor ends of said members beingmovable by saidringinto and outof positionto project beyond the inner periphery of?said;l1ead;

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Manufacturing & Machinery (AREA)
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Description

G. GROTNES.
BARREL READING-UP MACHINE,
APPLICATION FILED NOV. 13, 1909. 994,153, Patented June 6,1911.
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C. GROTNES.
BARREL HEADING-UP MACHINE.
APPLICATION FILED Nov. 13, 1909.
Patanted June 6, 1911.
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G. GRDTNES.
BARREL HEADING-UP MACHINE.
APPLIOATIOH FILED NOV. 13, 1909v mm "mm MW m MM n a w 7 4 0 4 2 WW I h cc l 0 W t 6 7 v 4 4 w 4 5 l, 4. 9 9 w 9 THE. NORRIS Pawns cm, WASHINGYON n, c.
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BARREL-HEADING-UP MACHINE.
Application filed November 13. 1909.
To all whom it may concern:
Be it known that I, CHARLES GRoTNEs, a citizen of the United States, residing at Chicago, in the county of Cook and State of Illinois, have invented certain new and useful Improvement-s in Barrel-Heading-Up Machines, of which the following is a specification.
Barrel heading-up machines as heretofore constructed have been large and heavy and the parts thereof have been so arranged that it was necessary to form an opening in the floor and support the machine with a portion thereof below the floor level, a special foundation generally being required. The travel of the head also has been considerable. The means for moving the head heretofore employed has been a vertical screw shaft supported upon a step hearing. The speed obtainable with the screw shaft has necessarily been relatively low, and the wear upon the step hearing has been very great owing to the great weight of the driving head and cross head supported by said shaft.
My invention contemplates a barrel heading-up machine which is very compact and relatively small, much lighter than those of the prior art, one which can be installed upon any ordinary floor without cutting an opening therethrough, and wherein the head not only has a shorter travel but also moves ata higher speed than in the machines heretofore produced.
The invention also relates to other improvements in apparatus of this class hereinafter set forth.
In the accompanying drawings, Figure 1 is a front elevation of a barrel heading-up machine embodying the features of my invention. Fig. 2 is a top plan view of the machine. Fig. 3 is a section on line 3 3 of Figs. 1 and 2. Fig. 4 is a detail illustrating a means for stopping the machine when the head has reached either limit of its movement. Figs. 5, 6 and 7 are views illustrating the operation of the machine, Fig. 5 showing the barrel staves as having been gathered together and the end hoop placed thereover. Figs. 6 and 7 illustrate the operation of driving the end hoop.
The frame of the machine comprises two side members 1 and the cross beams 2 and 3. A barrel-supporting platen 4 is fixed by means of a set screw 5 upon the upper end of a screw 6, which screw is mounted within a screw-threaded bushing 7 fixed within an Specification of Letters Patent.
Patented June 6, 1911.
Serial No. 527,932.
opening in the cross beam 2. The screw 6 may be held from rotation after the platen has been adjusted to the desired height by means of a locking screw 8.
A head 9 in the form of a ring having a wedging or tapered inner peripheral surface 10 is removably secured by means of screws 11 to castings 12. Each of said castings comprises a sleeve 13 which is slidable upon a guide rod 1 1 rigidly attached to each of the side frame members 1. The lower end of each of said rods extends through two perforated lugs 15 on one of the side frame members 1 and is secured against movement therein by set screws 16.
Fixed to each of the castings 12 by means herein shown as plates 17 and bolts 18 is a rack bar 19 which is vertically slidable within a guide 20 formed upon each side frame member 1. A horizontal shaft 21 mounted in bearings in the side frame members has fixed thereto pinions 22 meshing with the rack bars 19. Upon one end of the shaft 21 is a spur gear wheel 23 which meshes with a pinion 24 upon one end of the shaft 25 carried in bearings upon the side frame members. On the opposite end of the shaft 25 is rigidly mounted a spur gear wheel 26 which meshes with a pinion 27 fixed upon the drive shaft 28 carried in bearings upon the side members. Two drive pulleys 29 and 30 are in this instance rotatably and slidably'mounted upon the ends of the drive shaft 28 and are arranged to be driven in opposite directions by belts (not shown). The drive pulleys 29 and 30 are arranged to be alternately coupled to the drive shaft 28 by means of friction clutch members 31 and 32 fixed upon the drive shaft, said pulleys being slidable into and out of clutch connection with said clutch members by means of a rod 33, the ends of said rod being secured to rings 31 which lie in grooves in the hubs of the pulleys. The rod 33 is arranged to be slid to place the clutch face 35 of either of the drive pulleys 29 and 30 in operative relation to its clutch member and to place both of said drive pulleys in the intermediate or idle position by means herein shown as comprising a rock shaft 36 having fixed to its rear end an arm 37 which is operatively connected to a collar 38 fixed upon the rod 33. Upon the forward end of the rock shaft 36 is adjustably fixed an operating lever 39. As herein shown, acasting 40 is fixed to the rock shaft, and the'lever 39 is clamped to said casting by means of clips 41 and screws 42, whereby the height of said lever may be adjusted to suit the convenience of the workman. Preferably the upper end of the lever is provided with a yoke 48 which is arranged at a suitable height to embrace the operators leg at or near the knee, so that the operator may tilt said lever by the movement of his body and have the full use of both hands.
Preferably means is provided to maintain the lever 39 normally in upright position, that is to say, in position to place the clutch members 31 and 32 in their intermediate or idle position. I have herein shown counterweights 44 and 45 formed upon the lower end of the arm 37 and the casting 40, respectively.
In order that the machine may be automatically stopped. at the upper and lower limits of travel of the head, I' attach to one of the rack bars 19 an arm 46 to which is fixed a vertical rod 47, said rod extending through the forked end of an arm 48 fixed upon the rock shaft 36 (Fig. 4'). Collars 49 and 50 fixed upon the rod 47 at opposite sides of the forked arm 48 are arranged to engage and rock said arm as the head reaches the limits of its movementand thereby stop the travel of the head. In the present embodiment, the leverage afforded by the gearing is such that the headwill remain in the position it occupies when the machine stops, but if desired, any suitable brake device may be employed to frictionally prevent gravitating movement of the head when the clutches are in their intermediate position.
A vertical rod' 51 is rigidly fixed toeach side of the frame of the machine rearwardly of a line drawn through the axis of a barrel placed in operative position upon the platen 4. A sleeve 52 is vertically slidable upon each of said rods and may be fixed in position by means of a set screw 53. Each of said'sleeves supports a horizontal andlongitudinally adjustable bar 54' which projects toward the barrel and may be fixed in adjusted position by means of a set screw 55. As will be seen from Figs. 2 and 3, the bars 54 are rearwardly of the space occupied by a barrel placedupon the platen or, in other words, said bars are rearwardly of the center of a barrel placed in operative position upon the platen, and consequently offer no obstruction to the placing of barrels upon the platen or their removal therefrom.
Saidbars are arranged at a suitable height to engage the ring a (Fig. 5) which is placed upon the assembled staves before said staves reach the machine herein shown.
Hoop-engaging members 56 are pivotally mounted upon the upper side of thehead 9; said members having pivots 57 (Fig. 7') which lie within openings formed in said head and in a ring 58 overlying said head and secured therto by means of bolts 59:
The members 56 are arranged to be swung into and out of position-to enagage a hoop by means of a ring 60 mounted upon the head 9 for limited rotation, said ring having recesses 61 therein into which extend projections 62 formed upon the rear end of each of said hoop-engaging members. The ring 60 may be oscillated to swing the members 56 into and out of operative position by means of a handle 63.
Assuming the head 9 to be in the elevated position and the machine to be raised as shown in Fig. 3, the operation is as follows: The barrel body is placed upon the platen 4 by the operator and pushed rearwardly until it stops against the bars 54, the forward ends of said barsoverlying the stave-retaining ring a hereinbefore referred to.- The operator then takes a barrel head and holds it in proper relation to the upper ends of the staves and sets the machine in operation by throwing the pulley 32 into clutch with the drive shaft. As the head 9 descends over the staves it compresses them around the barrel head, the downward movement of the head 9 being automatically stopped at the proper point by the engagement of the collar 49 with the forkedarm 48. The opera tor now takes a hoop b and places it upon the ends of the gathered staves and again places the machine in operationiby throwing in clutch the pulley 29. As the-head 9 rises the barrel is prevented by the bars54 from rising with the head on account of'the fric tion between said head and barrel. hen the head has cleared the barrel the operator rotates the ring 60 in the direction to throw the hoop-engaging members into the position shown in Fig. 7 andreverses the direc tion of movement of the head. In the descent of the head the hoop-engaging members 56 strike the upper edge offthehoop b and drive said hoop into the position it is shown to occupy in. Fig. 7.
hoop has been driven home. The machine then comes to rest' inthe position illustrated in Fig. 3. The operator now inverts the barrel and heads up the other end'in: the-manner just described.
If'it' be desired'to operate upon barrels of alarger or smaller size than that for which the head 9 is suited, said head may be removed from the castings12 by removingthe screws 11, and-a head of the proper size substituted;
It will'be seenthat the operation of the machine isvery simple and rapid. The machine is much simpler than those of the prior art and may be installed on an ordinary floor, the height ofthe platen above the base being such that it is unnecessary toplace the base of the machine below the'floor level. The gear drive, as distinguished from a screw-shaft drive, permits of more rapid The operator reverses the movement of the head whenthe operation and obviates the use of a step bearing.
I claim as my invention:
1. In a barrel heading-up machine of the low type, in combination, a low frame comprising two elongated side members extending from front to rear; two cross beams connecting the forward and rear ends of said side members; a platen mounted in the forward one of said cross beams; head-guiding means extending upwardly from the forward portions of said side members; a head slidably mounted on said guiding means above said platen; a drive shaft rotatably mounted on said side members rearwardly of the platen; and connections between said drive shaft and said head for sliding said head.
2. In a barrel heading-up machine of the low type, in combination, a low frame comprising two elongated side members extending from front to rear; two cross beams con necting the forward and rear ends of said side members; a platen mounted in the forward one of said cross beams; guideways in said side members at the ends of said forward cross beam; a rack bar slidably mounted in each of said guideways; a shaft mounted on said side members rearwardly of the platen; pinions on said shaft meshing with said rack bars; and means upon the rear ends of said side members for rotating said pinions.
3. In a barrel heading-up machine, in combination, a frame; a platen mounted in said frame; two members slidably mounted in said frame at opposite sides of said platen; means for sliding said members toward and away from said platen; a relatively light ring-shaped head resting upon and supported by the upper ends of said members; and fastening means removably securing the head to said slidable members, said head being removable so that a head of another size may be substituted when it is desired to operate on another size of barrels, said head resting on said slidable members when the fastening members are removed.
4. In a barrel heading-up machine of the low type, in combination, a low frame adapted to be set upon a floor, said frame being of greater length, from front to rear, than height; a platen mounted in said frame at the forward side thereof, vertical rods fixed in said frame at opposite sides of said platen; members slidably mounted on said vertical rods; a head secured to and resting upon said members; rack bars vertically slidable in said frame and having their upper ends fixed to said members; pinions rotatably mounted in said frame and meshing with said rack bars; and means upon the rear end of said frame for rotating said pinions.
5. In a barrel heading-up machine of the low type, in combination, a substantial horizontal base frame supporting vertical guide standards; bars guided in said standards, their lower portions rack-toothed and a head supported at their upper ends; a stationary platen at the forward side of the frame; a drive shaft at the rear side of the frame; connections between said shaft and said bars for moving the head; means for driving said shaft; clutch means for connecting and disconnecting said shaft and driving means; a horizontal rock shaft extending from front to rear in the frame and having an arm arranged to operate said clutch means; and means moving with said head and arranged to rock said shaft at the ends of the travel of said head.
6. A barrel heading machine comprising a substantial horizontal base frame supporting vertical guide standards, bars guided in said standards, their lower portions racktoothed and a head supported at their upper ends, a driving shaft, transmitting gearing and a platen all mounted on said base frame, said gearing including a shaft with pinions engaging said rack bars, substantially as described.
7. In a barrel heading-up machine of the low type, in combination, a frame; a platen carried by the forward portion of said frame; a head slidable toward and away from said platen; a drive shaft journaled in the rear portion of said frame; connections between said drive shaft and said head for sliding said head; two pulleys mounted on said drive shaft to rotate in opposite directions; two clutch members non-rotatable on said shaft; a rod for bringing said clutch members and said pulleys into clutch connection; a horizontal rock shaft journaled in and extending from front to rear in said frame; an arm fixed on the rear end of said shaft and connected with said rod; a lever adjustably secured to the forward end of said rock shaft; and counterweights attached to the lower end of said arm and said lever.
8. A head for barrel heading-up machines comprising an annular member having a flaring inner periphery, a plurality of hoopengaging members pivoted on said annular member, a ring rotatable on said annular member, said ring having recesses therem, and projections on said hoop-engaging members lying in said recesses.
9. In a barrel heading-up machine, in combination, a frame; a platen carried by said frame; a head slidable in said frame toward and away from said platen; rods secured to said frame at opposite sides of said platen; sleeves adjustably fixed on said rods; and transverse bars located at the rear side of the barrel and adjustably secured to said sleeves for horizontal movement, said bars serving as stops in positioning the barrel on said platen and holding the barrel against movement When saidhead is being Withdrawn therefrom.
10. Ina: barrel heading-up machine in;
'combination, a frame; a platen carried by said members serving as stops for the barrel when the barrel 1s bemgpositioned on said platen, and said members engaging and.
holding the barrel Whenvsaid head is being Withdrawn from the barrel.
11. In barrel heading-up andsimilar machines, an annular head, a plurality of: hoopengaging members pivoted; on said head intermediate their ends, and a ring'rotat-able on said head and engaging theouter. ends of said members for swinging the latter, the innor ends of said members beingmovable by saidringinto and outof positionto project beyond the inner periphery of?said;l1ead;
CHARLES GROTNES; Witnesses:
C. PAUL PARKER, GEORGE L. CHINDAHL.
Copies of this patent may be obtainedffor five cents each, by addressing the Commissioner of Patents Washington, D C1,
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