IP Library Granted Patent US 12,521,783
Granted Patent B2
US 12,521,783 · App. 18/485,723 · Granted Jan 13, 2026

System for dynamically adjusting positioning of a toolpack of a can bodymaker and can bodymaker including same

Inventors: Joseph John Allen Maurer (Aurora, CO); Stephen Dane Christensen (Highlands Ranch, CO); Ian Kenneth Scholey (Tankersley, GB)
Assignee: Stolle Machinery Company, LLC
B21D51/26B21D22/28B21D22/283B21D51/2692B21D51/2653
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Quick Facts
Patent No.
US 12,521,783
App. No.
18/485,723
Granted
Jan 13, 2026
Kind
B2
Abstract

A toolpack arrangement for a can bodymaker having a frame. The toolpack includes a toolpack having a number of forming dies and an adjustment arrangement. The adjustment includes a number of adjustment mechanisms coupled between the toolpack and the frame, each adjustment mechanism being dynamically adjustable so as to selectively adjust the positioning of the toolpack with regard to the frame and/or a ram body of the can bodymaker as the ram body passes within the toolpack during normal can body making operations of the can bodymaker.

Claims (22)

1 . A toolpack arrangement for a can bodymaker having a frame, the toolpack arrangement comprising:

a toolpack having a number of forming dies; and

an adjustment arrangement comprising a number of adjustment mechanisms structured to be coupled between the toolpack and the frame, each adjustment mechanism being structured to dynamically selectively adjust the positioning of the toolpack with regard to the frame and/or a ram body of the can bodymaker as the ram body passes within the toolpack during normal can body making operations of the can bodymaker.

2 . The toolpack arrangement of claim 1 , wherein the adjustment arrangement further comprises a controller in communication with each adjustment mechanism of the number of adjustment mechanisms, wherein the controller is structured to selectively control each adjustment carried out by the number of adjustment mechanisms.

3 . The toolpack arrangement of claim 2 , further comprising a sensing arrangement in communication with the controller, wherein the sensing arrangement includes a number of sensors structured to detect the position of a number of components of the bodymaker, and wherein the controller is structured to selectively control each adjustment of the adjustment arrangements based at least in part from input received from the number of sensors.

4 . The toolpack arrangement of claim 1 , wherein the number of adjustment mechanisms comprises a plurality of adjustment mechanisms.

5 . The toolpack arrangement of claim 1 , further comprising a cradle supporting the toolpack, wherein the number of adjustment mechanisms are coupled to the toolpack via the cradle.

6 . The toolpack arrangement of claim 1 , wherein the number of adjustment mechanisms are driven by one or more of a mechanical, pneumatic, electrical and/or a hydraulic means.

7 . The toolpack arrangement of claim 4 , wherein each adjustment mechanism of the plurality of adjustment mechanisms are driven by one or more of a mechanical, pneumatic, electrical and/or a hydraulic means.

8 . A can bodymaker for forming a plurality of can bodies, the can bodymaker comprising:

a frame;

a ram;

an operating mechanism structured to provide a reciprocating motion to the ram; and

a toolpack arrangement comprising:

a toolpack having a number of forming dies positioned such that the ram passes therewithin when provided with the reciprocating motion by the operating mechanism; and

an adjustment arrangement comprising a number of adjustment mechanisms coupled between the toolpack and the frame, each adjustment mechanism being dynamically adjustable so as to selectively adjust the positioning of the toolpack with regard to the frame and/or the ram as the ram passes within the toolpack during normal can body making operations of the can bodymaker.

9 . The can bodymaker of claim 8 , wherein the adjustment arrangement further comprises a controller in communication with each adjustment mechanism of the number of adjustment mechanisms, wherein the controller is structured to selectively control each adjustment carried out by the number of adjustment mechanisms.

10 . The can bodymaker of claim 9 , wherein the adjustment arrangement further comprises a sensing arrangement in communication with the controller, wherein the sensing arrangement includes a number of sensors structured to detect the position of a number of components of the bodymaker, and wherein the controller is structured to selectively control each adjustment carried out by the number of adjustment mechanisms based at least in part from input received from the number of sensors.

11 . The can bodymaker of claim 8 , wherein the number of adjustment mechanisms comprises a plurality of adjustment mechanisms.

12 . The can bodymaker of claim 8 , further comprising a cradle supporting the toolpack, wherein the number of adjustment mechanisms are coupled to the toolpack via the cradle.

13 . The can bodymaker of claim 8 , wherein the number of adjustment mechanisms are driven by one or more of a mechanical, pneumatic, electrical and/or a hydraulic means.

14 . The can bodymaker of claim 11 , wherein each adjustment mechanism of the plurality of adjustment mechanisms are driven by one or more of a mechanical, pneumatic, electrical and/or a hydraulic means.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 12, 2023
From: MAURER, JOSEPH JOHN ALLEN; CHRISTENSEN, STEPHEN DANE; SCHOLEY, IAN KENNETH
To: STOLLE MACHINERY COMPANY, LLC
Reel/Frame 065222/0208 →
Continuity (3)
Provisional Application 63420355 · Oct 28, 2022
Provisional Application 63416190 · Oct 14, 2022
Related Publication 20240123488A1 · Apr 18, 2024
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