Method and apparatus for closely coupling machines used for can making
Abstract
A system for performing sequential operations on a can body, such as necking the open end of the can body, in which two or more machines, such as die necking machines are, are coupled by a transfer module. The transfer module comprises a multi-pocket wheel that receives can bodies from a multi-pocket discharge wheel of the first necking machine and discharges them to a multi-pocket input wheel of the second die necking machine. The drive motor of one of the necking machines is eliminated, while the drive motor on the other machine is enlarged. A gear on the transfer module couples the gear trains on the first and second necking machines into a common gear train. Thus, the transfer module gear train transfers power from the necking machine having the enlarged drive motor to the necking machine for which the drive motor was eliminated. This enables a single drive motor to entire drive train for both machines.
Claims
exact text as granted — not AI-modifiedWhat is claimed:
1 . A necking system for successively reducing the diameter of the end of a can in a plurality of discrete steps, comprising:
a) a first necking machine, said first necking machine comprising (i) a first input feed wheel for receiving a can having an end having a diameter, (ii) first necking means for reducing said diameter of said can end so as to produce a partially necked can, (iii) a first discharge wheel for discharging said partially necked can, and (iv) a first gear train, said first gear train comprising a first gear, said first discharge wheel driven by said first gear; b) a second necking machine, said second necking machine comprising (i) a second input feed wheel for receiving said partially necked can, (ii) second necking means for further reducing said diameter of said partially necked can end so as to produce a further necked can, (iii) a second discharge wheel for discharging said further necked can, and (iv) a second gear train, said second gear train comprising a second gear, said second input feed wheel driven by said second gear; and c) a transfer module coupling said first and second necking machines, said transfer module comprising (i) a transfer wheel located to receive said partially necked can from said first discharge wheel of said first necking machine and to deliver said partially necked can to said second input feed wheel of said second necking machine, and (ii) a third gear, said transfer wheel driven by said third gear, said third gear driving one of said first and second gears and driven by the other one of said first and second gears.
2 . The necking system according to claim 1 , wherein said third gear drives said second gear and is driven by said first gear, and further comprising a motor driving said first gear train of said first necking machine.
3 . The necking system according to claim 1 , wherein said third gear drives said first gear and is driven by said second gear, and further comprising a motor driving said second gear train of said second necking machine.
4 . The necking system according to claim 1 , wherein said first and second input feed wheels and said first and second discharge wheels turn in a first direction, and wherein said transfer wheel turns in an opposite direction.
5 . The necking system according to claim 1 , wherein said first and second necking means each comprises a sequential array of necking modules, an intermediate module disposed between each of said necking modules for carrying said can body from one of said modules in said array to the next module in said array.
6 . The necking system according to claim 5 , wherein said first and second gear trains each comprise a plurality of fourth gears driving said necking modules and said intermediate modules, and wherein said first and second gear trains and said third gear of said transfer module and said plurality of fourth gears form a common gear train for said necking system.
7 . The necking system according to claim 1 , wherein said first discharge wheel and said second input feed wheel are driven in a first direction by said first and second gears, respectively, and wherein said third gear drives said transfer wheel in a second direction opposite to said first direction.
8 . The necking system according to claim 7 , further comprising:
d) means for applying a suction to first portions of the circumference of said first discharge wheel and said second input feed wheel, and for releasing said suction from second portions of the circumference of said first discharge wheel and said second input feed wheel; e) means for applying a suction to a first portion of the circumference of said transfer wheel that is disposed opposite to said first portions of said circumference of said discharge wheel and said second input feed wheel and for releasing said suction from a second portion of said circumference of said transfer wheel that is disposed opposite to said second portions of said circumference of said first discharge wheel and said second input feed wheel.
9 . The necking system according to claim 8 , wherein said first portions of said circumference of said first discharge wheel and said second input feed wheel comprise lower portions thereof, and wherein said first portion of said circumference of said transfer wheel comprises an upper portion thereof.
10 . The necking system according to claim 1 , wherein said transfer wheel forms a plurality of can body retaining pockets thereon, and further comprising means for applying and then releasing suction over a portion of said pockets, said suction applying and releasing means comprising: (i) first and second annular passages disposed under said pockets, (ii) a port in each of said pockets, each of said ports placing its respective pocket into flow communication with said first annular passage, (iii) an opening placing said first and second annular passage in flow communication with each other, and (iv) a second opening placing said second annular passage in flow communication with a vacuum source.
11 . A system for successively performing operations on a can in a plurality of discrete steps, comprising:
a) a first machine for performing a portion of said operations on said can, said first machine comprising (i) first rotating means for performing at least one of said operations on said can so as to produce a partially operated upon can, and (ii) a first gear train driving said first rotating operation performing means; b) a second machine for performing a portion of said operations on said can, said second machine comprising (i) second rotating means for performing at least a second of said operations on said can so as to produce a further operated upon can, (ii) a second gear train driving said second rotating operation performing means; and c) transfer means for (i) transferring said partially operated upon can from said first machine to said second machine, (ii) transferring power between said first and second gear trains, and (iii) synchronizing the operation of said first and second rotating operating performing means.
12 . The system according to claim 11 , wherein said first machine further comprises a discharge wheel for discharging said partially operated upon can, and wherein said second machine further comprises an input feed wheel for receiving said partially operated upon can from said first machine, and wherein said transfer means comprises a transfer wheel located between said discharge wheel of said first machine and said input feed wheel of said second machine so as to transfer said partially operated upon can bodies from discharge wheel to said input feed wheel.
13 . The system according to claim 12 , wherein said transfer means further comprises a gear, said gear meshing with said first and second gear trains.
14 . A method for directly coupling first and second necking machines for successively reducing the diameter of the end of a can in a plurality of discrete operations, said first necking machine comprising (i) at least a first necking module for partially reducing said diameter of said can end, (ii) a discharge wheel for discharging said partially necked can, and (iii) a first gear train, sadi first gear train comprising a first gear driving said discharge wheel, said second necking machine comprising (i) an input feed wheel for receiving said partially necked can, (ii) at least a second necking module for further reducing said diameter of said can end, and (iii) a second gear train, said second gear train comprising a second gear driving said input feed wheel, said coupling method comprising the steps of:
a) installing a transfer wheel between said discharge wheel of said first necking machine and said input feed wheel of said second necking machine so that said transfer wheel receives said partially necked cans from said discharge wheel and delivers said cans to said input feed wheel; and b) installing a third gear so as to mesh with said first and second gears, said third gear driving said transfer wheel.
15 . The method according to claim 14 , wherein said first and second necking machines each have a motor, said motor of said first necking machine driving said first gear train, said motor of said second necking machine driving said second gear train, and wherein said coupling method comprises the further step of eliminating one of said motors so that the other of said motors drives both said first and second gear trains as well as said third gear.
16 . A method for directly coupling first and second machines for successively performing operations on a can in a plurality of discrete operations, said first machine comprising (i) at least a first module for performing at least a first operation on said can so as to produce a partially operated upon can, (ii) a discharge wheel for discharging said partially operated upon can, and (iii) a first gear train, said first gear train comprising a first gear driving said discharge wheel, said second machine comprising (i) an input feed wheel for receiving said partially operated upon can, (ii) at least a second module for performing at least a second operation on said can, and (iii) a second gear train, said second gear train comprising a second gear driving said input feed wheel, said coupling method comprising the steps of:
a) installing a transfer wheel between said discharge wheel of said first machine and said input feed wheel of said second machine so that said transfer wheel receives said partially operated upon cans from said discharge wheel and delivers said cans to said input feed wheel; and b) installing a third gear so as to mesh with said first and second gears, said third gear driving said transfer wheel.
17 . The method according to claim 16 , wherein said first and second machines each have a motor, said motor of said first machine driving said first gear train, said motor of said second machine driving said second gear train, and wherein said coupling method comprises the further step of eliminating one of said motors so that the other of said motors drives both said first and second gear trains as well as said third gear.
18 . A method for directly coupling a first necking module to a necking machine, said necking machine comprising (i) at least a second necking module, said necking module having means for partially reducing the diameter of a can end, (ii) a discharge wheel for discharging said partially necked can, and (iii) a first gear train, said first gear train comprising a first gear driving said discharge wheel, said first necking module comprising (i) an input feed wheel for receiving said partially necked can, (ii) means for further reducing said diameter of said can end, and (iii) a second gear driving said input feed wheel, said coupling method comprising the steps of:
a) installing a transfer wheel between said discharge wheel of said necking machine and said input feed wheel of said first necking module so that said transfer wheel receives said partially necked cans from said discharge wheel and delivers said cans to said input feed wheel; and b) installing a third gear so as to mesh with said first and second gears, said third gear driving said transfer wheel.
19 . The method according to claim 18 , wherein said necking machine has a motor, said motor driving said first gear train, said first gear train driving said third gear.Join the waitlist — get patent alerts
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