IP Library › Granted Patent US 11,878,398
Granted Patent B2
US 11,878,398 · App. 17/274,511 · Granted Jan 23, 2024

Pressing tool

Inventor: Egbert Frenken (Heinsberg, DE)
Assignee: GUSTAV KLAUKE GMBH
B25B27/026H01R43/0427H01R43/058
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Quick Facts
Patent No.
US 11,878,398
App. No.
17/274,511
Granted
Jan 23, 2024
Kind
B2
Abstract

A pressing tool performs a pressing operation for the press fitting of parts. One part can have different outer dimensions within a specified range. A tool part acts on the part, is a part of a pivoting jaw which has an action surface, and can be pivoted about a pivot axis from a starting position having a greatest opening width to a pressing position having a smaller opening width. A hydraulic piston movable in a hydraulic cylinder applies a piston force, depending on a hydraulic pressure in the hydraulic cylinder. A higher pressing force is in effect when a greater opening width of the pivoting jaw is provided and when the maximum piston force is reached. When any opening width that is smaller than the greater opening width is provided, a pressing force lower than the higher pressing force is in effect when the maximum piston force is reached.

Claims (28)

1. A pressing tool for performing a pressing operation for the press-fitting of parts, wherein one part can have different outer dimensions within a specified range, the pressing tool comprising:

a tool part for acting on the part, the tool part is part of a pivoting jaw having an action surface, the pivoting jaw being pivotable around a pivot axis from a starting position having a greatest opening width into a pressing position having a smaller opening width;

a hydraulic cylinder; and

a hydraulic piston movable in the hydraulic cylinder, which applies a piston force depending on a hydraulic pressure in the hydraulic cylinder, wherein each time the hydraulic piston is moved, the pressing operation automatically ends once a same maximum piston force has been reached, the hydraulic piston having a roller forming an interactive surface connected with the hydraulic piston for a force-transmitting interaction of the hydraulic piston with the action surface, wherein the piston force can be converted into a deviating pressing force due to a geometry of the action surface, wherein the action surface provides a higher pressing force to a larger opening width of the pivoting jaw once a maximum piston force has been reached, and the action surface provides a smaller pressing force in comparison to the higher pressing force to each smaller opening width of the pivoting jaw in comparison to the larger opening width once the maximum piston force has been reached.

2. The pressing tool according to claim 1 , wherein the tool part is a mandrel directed tangentially relative to a pivot circle, through whose midpoint the pivot axis runs.

3. The pressing tool according to claim 2 , wherein the mandrel is a stepped mandrel.

4. The pressing tool according to claim 3 , wherein two pivoting jaws are provided.

5. The pressing tool according to claim 1 , wherein a receptacle is formed on the pivoting jaw.

6. The pressing tool according to claim 5 , wherein two pivoting jaws are provided, and each pivoting jaw has a tool part.

7. The pressing tool according to claim 6 , wherein each tool part has a plurality of ribs arranged one after the other in a direction of the pivot axis, and the ribs of the tool parts mesh into each other during a pressing operation.

8. The pressing tool according to claim 7 , wherein the ribs of at least one of the tools parts are provided by first ribs and second ribs, which are staggered relative to each other in the direction of the pivot axis.

9. The pressing tool according to claim 8 , wherein, in relation to a press opening between the tool parts which is generally rectangular in the direction of the pivot axis, the first ribs form a first, generally straight peripheral edge of the press opening, and the second ribs form a second peripheral edge running generally perpendicular to the first peripheral edge.

10. The pressing tool according to claim 1 , wherein the tool part is movably arranged on the pivoting jaw.

11. The pressing tool according to claim 10 , wherein the tool part is pivotably arranged on the pivoting jaw.

12. The pressing tool according to claim 1 , wherein two pivoting jaws are provided.

13. The pressing tool according to claim 12 , wherein each pivoting jaw has a tool part movably arranged thereon.

14. The pressing tool according to claim 13 , wherein the tool part is pivotably arranged on each pivoting jaw.

15. The pressing tool according to claim 2 , wherein two pivoting jaws are provided.

16. A pressing tool for performing a pressing operation for the press-fitting of parts, wherein one part can have different outer dimensions within a specified range, the pressing tool comprising:

first and second pivoting jaws, each jaw having an action surface, the jaws being pivotable around a pivot axis from a starting position having a greatest opening width into a pressing position having a smaller opening width;

a tool part on each pivoting jaw and provided for acting on the part, the tool part is part of a hydraulic cylinder;

a hydraulic piston movable in the hydraulic cylinder, which applies a piston force depending on a hydraulic pressure in the hydraulic cylinder, wherein each time the hydraulic piston is moved, the pressing operation automatically ends once a same maximum piston force has been reached, the hydraulic piston having a roller forming an interactive surface connected with the hydraulic piston for a force-transmitting interaction of the hydraulic piston with the action surface, wherein the piston force can be converted into a deviating pressing force due to a geometry of the action surface, wherein the action surface provides a higher pressing force to a larger opening width of the pivoting jaw once a maximum piston force has been reached, and the action surface provides a smaller pressing force in comparison to the higher pressing force to each smaller opening width of the pivoting jaw in comparison to the larger opening width once the maximum piston force has been reached, wherein the tool part is a mandrel directed tangentially relative to a pivot circle, through whose midpoint the pivot axis runs; and

a receptacle provided on each pivoting jaw,

wherein each of the tool parts has a plurality of ribs arranged one after the other in a direction of the pivot axis, and the ribs of the tool parts mesh into each other during a pressing operation.

17. The pressing tool according to claim 16 , wherein each tool part is movably arranged on the pivoting jaw.

18. The pressing tool according to claim 17 , wherein the tool part is pivotably arranged on the pivoting jaw.

19. The pressing tool according to claim 16 , wherein the ribs of one of the tool parts are divided into first ribs and second ribs which are staggered relative to each other in the direction of the pivot axis.

20. The pressing tool according to claim 19 , wherein in relation to a press opening that remains between the tool parts and has an essentially rectangular appearance in the direction of the pivot axis, the first ribs form a first, essentially straight peripheral edge of the press opening, and the second ribs form a second peripheral edge running essentially perpendicular to the first peripheral edge.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2021
From: FRENKEN, EGBERT
To: GUSTAV KLAUKE GMBH
Reel/Frame 055761/0160 →
Priority Claims (1)
DE 10 2018 121 971.7 · Sep 10, 2018 · national
Continuity (1)
Related Publication 20210339367A1 · Nov 4, 2021
Cited By (1)
US 12,646,898