IP Library › Granted Patent US 11,534,817
Granted Patent B2
US 11,534,817 · App. 16/407,325 · Granted Dec 27, 2022

Infeed assembly full inspection assembly

Inventors: Richard James Edward Mercer (North Yorkshire, GB); Ian Kenneth Scholey (Barnsley, GB); Seth Daniel Holdmeyer (Cincinnati, OH)
Assignee: Stolle Machinery Company, LLC
B21D51/2638G01N21/95
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Quick Facts
Patent No.
US 11,534,817
App. No.
16/407,325
Granted
Dec 27, 2022
Kind
B2
Abstract

An infeed assembly for a necker machine includes a full inspection assembly wherein the full inspection assembly is structured to be coupled to a necker machine frame assembly.

Claims (68)

1. An infeed assembly for a necker machine, said necker machine including a frame assembly, said necker machine frame assembly having an upstream end and a downstream end, said necker machine defining a work path having an upstream end and a downstream end, said infeed assembly comprising:

a full inspection assembly having a plurality of inspection devices, a first starwheel, and a second starwheel adjacent to the first starwheel, each inspection device positioned at one of the first and second starwheels;

said full inspection assembly including a number of starwheel guide assemblies, each starwheel guide assembly associated with one of the first and second starwheels;

each starwheel guide assembly including a starwheel guide assembly mounting assembly, a starwheel guide assembly support assembly, a number of starwheel guide assembly guiderails, and a starwheel guide assembly can body height adjustment assembly;

said starwheel guide assembly mounting assembly coupled to said starwheel guide assembly support assembly;

said number of starwheel guide assembly guiderails coupled to a said starwheel guide assembly mounting assembly;

said starwheel guide assembly can body height adjustment mounting assembly coupled to at least one said starwheel guide assembly guiderail;

wherein at least one of said starwheel guide assembly mounting assembly or said can body height adjustment assembly is a quick-change assembly;

each starwheel guide assembly mounting assembly includes a body;

each starwheel guide assembly mounting assembly body defines a single active coupling passage; and

each starwheel guide assembly mounting assembly body single active coupling passage coupled to a single starwheel guide assembly mounting base retained coupling.

2. The infeed assembly of claim 1 wherein said full inspection assembly is an upstream inspection assembly.

3. The infeed assembly of claim 1 wherein:

said full inspection assembly includes a mounting assembly structured to couple the full inspection assembly to said necker machine frame assembly.

4. A necker machine comprising:

a frame assembly having an upstream end and a downstream end;

a work path defined by necking components, the work path having an upstream end and a downstream end;

an infeed assembly including a full inspection assembly having a plurality of inspection devices, a first starwheel, and a second starwheel adjacent to the first starwheel, the full inspection assembly positioned along a limited portion of the workpath such that each inspection device of the plurality of inspection devices is positioned at one of the first and second starwheels,

said full inspection assembly including a number of starwheel guide assemblies, each starwheel guide assembly associated with one of the first and second starwheels;

each starwheel guide assembly including a starwheel guide assembly mounting assembly, a starwheel guide assembly support assembly, a number of starwheel guide assembly guiderails, and a starwheel guide assembly can body height adjustment assembly;

said starwheel guide assembly mounting assembly coupled to said starwheel guide assembly support assembly;

said number of starwheel guide assembly guiderails coupled to a said starwheel guide assembly mounting assembly;

said starwheel guide assembly can body height adjustment mounting assembly coupled to at least one said starwheel guide assembly guiderail;

wherein at least one of said starwheel guide assembly mounting assembly or said can body height adjustment assembly is a quick-change assembly;

each starwheel guide assembly mounting assembly includes a body;

each starwheel guide assembly mounting assembly body defines a single active coupling passage; and

each starwheel guide assembly mounting assembly body single active coupling passage coupled to a single starwheel guide assembly mounting base retained coupling,

wherein said full inspection assembly is coupled to the upstream end of said frame assembly.

5. The necker machine of claim 4 wherein:

said full inspection assembly includes a mounting assembly structured to couple the full inspection assembly to said necker machine frame assembly.

6. A necker machine comprising:

a frame assembly having an upstream end and a downstream end;

a plurality of processing stations coupled to the frame assembly defining a work path having an upstream end and a downstream end; and

an infeed assembly including an inspection assembly directly coupled to the upstream end of the frame assembly, the inspection assembly including a first starwheel and second starwheel adjacent to the first starwheel,

wherein the inspection assembly comprises a plurality of inspection devices positioned, each positioned at one of the first and second starwheels;

said inspection assembly including a number of starwheel guide assemblies, each starwheel guide assembly associated with one of the first and second starwheels;

each starwheel guide assembly including a starwheel guide assembly mounting assembly, a starwheel guide assembly support assembly, a number of starwheel guide assembly guiderails, and a starwheel guide assembly can body height adjustment assembly;

said starwheel guide assembly mounting assembly coupled to said starwheel guide assembly support assembly;

said number of starwheel guide assembly guiderails coupled to a said starwheel guide assembly mounting assembly;

said starwheel guide assembly can body height adjustment mounting assembly coupled to at least one said starwheel guide assembly guiderail;

wherein at least one of said starwheel guide assembly mounting assembly or said can body height adjustment assembly is a quick-change assembly;

each starwheel guide assembly mounting assembly includes a body;

each starwheel guide assembly mounting assembly body defines a single active coupling passage; and

each starwheel guide assembly mounting assembly body single active coupling passage coupled to a single starwheel guide assembly mounting base retained coupling.

7. The necker machine of claim 6 wherein:

said plurality of inspection devices includes a sidewall damage inspection assembly and a cut edge damage inspection assembly;

said sidewall damage inspection assembly includes a camera;

said cut edge damage inspection assembly includes a camera;

said mounting assembly includes a dual-camera mount;

said dual-camera mount disposed adjacent said work path; and

said dual-camera mount structured to position said sidewall damage inspection assembly camera to focus on a can body sidewall, and, position said cut edge damage inspection assembly camera to focus on a can body first end.

8. The necker machine of claim 7 , wherein said cut edge damage inspection assembly camera is coupled to said dual-camera mount with sufficient spacing between said cut edge damage inspection assembly camera and said work path to provide a cut edge damage inspection assembly camera focal length.

9. The necker machine of claim 7 wherein:

said sidewall damage inspection assembly camera is a dual-purpose camera; and

said cut edge damage inspection assembly camera is a dual-purpose camera.

10. The necker machine of claim 6 , wherein:

said plurality of inspection devices includes a label verification assembly and an un-printed can inspection assembly; and

said inspection assembly includes a mounting assembly structured to couple each inspection device to said frame assembly.

11. The necker machine of claim 10 , wherein:

said mounting assembly includes a 360° mounting;

said label verification assembly coupled to said mounting assembly 360° mounting; and

said un-printed can inspection assembly coupled to said mounting assembly 360° mounting.

12. The necker machine of claim 11 wherein:

said mounting assembly 360° mounting is disposed adjacent said work path;

said label verification assembly is structured to inspect a can body as the can body moves along the work path; and

said un-printed can inspection assembly structured to inspect 360° about a can body as the can body moves along the work path.

13. The necker machine of claim 6 , wherein said inspection assembly includes an ejection assembly structured to eject a deficient can body from said work path.

14. The necker machine of claim 13 wherein said ejection assembly is positioned along the work path upstream of the processing stations.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2019
From: MERCER, RICHARD JAMES EDWARD; SCHOLEY, IAN KENNETH
To: STOLLE MACHINERY COMPANY, LLC
Reel/Frame 049125/0892 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2019
From: HOLDMEYER, SETH DANIEL
To: STOLLE MACHINERY COMPANY, LLC
Reel/Frame 049125/0954 →
Continuity (2)
Provisional Application 62670196 · May 11, 2018
Related Publication 20190344327A1 · Nov 14, 2019
Cited By (1)
US 12,662,279