IP Library Granted Patent US 10,888,914
Granted Patent B2
US 10,888,914 · App. 15/884,722 · Granted Jan 12, 2021

Adjustment assembly for a press apparatus

Inventors: Ryan Ellerbrock (Continental, OH); Bob Laipply (Spring Arbor, MI)
Assignee: Eaton Corporation
B21D39/048B21D39/046
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Quick Facts
Patent No.
US 10,888,914
App. No.
15/884,722
Granted
Jan 12, 2021
Kind
B2
Abstract

A variable crimp machine includes an actuator adjustment assembly including a dial that rotates about an actuation axis and a barrel positioned along the actuation axis within the dial. The barrel includes a first set of axially spaced markings corresponding to a first hose and a second set of axially spaced markings correspond to a second hose. The dial includes a first set of circumferentially spaced markings corresponding to the first hose and a second set of circumferentially spaced markings corresponding to the second hose. The first set of circumferentially spaced markings are used in concert with the first set of axially spaced markings to adjust an actuator for use with the first hose, and the second set of circumferentially spaced markings are used in concert with the second set of axially spaced markings to adjust the actuator for use with the second hose.

Claims (37)

1. A variable crimp machine for crimping fittings on hoses, the variable crimp machine comprising:

a first frame including an upper actuator mount and a lower crimp ring;

an actuator that mounts at the upper actuator mount, the actuator including a driven component that reciprocates linearly along an actuation axis which extends between the upper actuator mount and the lower crimp ring, the driven component including a lower end positioned below the upper actuator mount;

a second frame that attaches to the lower end of the driven component, the second frame defining a crimp die set mounting location;

an actuator adjustment assembly including a dial rotatably coupled to the driven component and that rotates about the actuation axis, the actuator adjustment assembly also including a barrel rotatably coupled to the driven component about the actuation axis and positioned along the actuation axis at least partially within the dial, wherein both the dial and the barrel are mounted directly on the driven component, the dial being configured to move axially relative to the barrel along the actuation axis as the dial is rotated about the actuation axis, and wherein the barrel is independently rotatable from the dial;

the barrel including a first set of axially spaced-apart hose size markings corresponding to a first type of hose and a second set of axially spaced-apart hose size markings correspond to a second type of hose;

the dial including a first set of circumferentially spaced-apart hose size markings corresponding to the first type of hose and a second set of circumferentially spaced-apart hose size markings corresponding to the second type of hose, wherein the first set of circumferentially spaced-apart hose size markings are used in concert with the first set of axially spaced-apart hose size markings to adjust the actuator for use with the first type of hose, and wherein the second set of circumferentially spaced-apart hose size markings are used in concert with the second set of axially spaced-apart hose size markings to adjust the actuator for use with the second type of hose.

2. The variable crimp machine of claim 1 , wherein the first set of circumferentially spaced-apart hose size markings are coded with respect to the first set of axially spaced-apart hose size markings, and wherein the second set of circumferentially spaced-apart hose size markings are coded with respect to the second set of axially spaced-apart hose size markings.

3. The variable crimp machine of claim 1 , wherein the first set of circumferentially spaced-apart hose size markings are color coded with respect to the first set of axially spaced-apart hose size markings, and wherein the second set of circumferentially spaced-apart hose size markings are color coded with respect to the second set of axially spaced-apart hose size markings.

4. The variable crimp machine of claim 1 , further comprising a generic set of measurement scale markings spaced circumferentially on the dial and a corresponding generic set of measurement scale markings spaced axially on the barrel.

5. The variable crimp machine of claim 4 , wherein the generic set of measurement scale markings are interspersed with the first set of circumferentially spaced-apart hose size markings and the second set of circumferentially spaced-apart hose size markings.

6. The variable crimp machine of claim 1 , further comprising a plurality of crimp die sets that can be mounted at the crimp die set mounting location, the crimp die sets correspond to different hose sizes.

7. The variable crimp machine of claim 6 , further comprising a set of crimp die set markings, the crimp die set markings relate crimp die sets to hose sizes.

8. The variable crimp machine of claim 7 , wherein the first set of circumferentially spaced-apart hose size markings are coded with respect to the first set of axially spaced-apart hose size markings and to the crimp die set markings, and wherein the second set of circumferentially spaced-apart hose size markings are coded with respect to the second set of axially spaced-apart hose size markings and to the crimp die set markings.

9. The variable crimp machine of claim 6 , further comprising a set of crimp die set markings, the crimp die set markings relate crimp die sets to hose sizes and to fitting assemblies.

10. The variable crimp machine of claim 1 , wherein the first and second sets of axially spaced-apart hose size markings are circumferentially offset from one another, and wherein the barrel can be rotated about the actuation axis to selectively face either the first or second set of axially spaced-apart hose size markings at a front side of the variable crimp machine.

11. The variable crimp machine of claim 1 , wherein the dial is threadably coupled to the driven component so as to drive axial movement of the dial when rotated about the actuation axis.

12. The variable crimp machine of claim 1 , wherein the dial comprises an oblique section proximate an upper end, the first set of circumferentially spaced-apart hose size markings and the second side of circumferentially spaced-apart hose size markings interspersed on the oblique section.

13. The variable crimp machine of claim 1 , wherein the dial is rotatable in relation to both the driven component and the barrel.

14. The variable crimp machine of claim 1 , further comprising a pinch point hat coupled to the second frame and at least partially surrounding the dial thereby restricting access to a lower end of the dial.

15. An actuator adjustment assembly for a variable crimp machine, the actuator adjustment assembly comprising:

a dial that is rotatable about an actuation axis, the dial threadably engageable with a driven component of the variable crimp machine that reciprocates linearly along the actuation axis; and

a barrel rotatably couplable to the driven component and disposed at least partially between the dial and the driven component, wherein as the dial is rotated about the actuation axis, the dial moves axially relative to the barrel along the actuation axis, and wherein the barrel is rotatable about the actuation axis independently from the dial;

the dial comprising a plurality of circumferentially spaced-apart hose size markings corresponding to a plurality of hose types;

the barrel comprising a plurality of axially spaced-apart hose size markings corresponding to the plurality of hose types, wherein the plurality of circumferentially spaced-apart hose size markings are used in concert with the plurality of axially spaced-apart hose size markings to adjust an extension length of the driven component.

16. The actuator adjustment assembly of claim 15 , wherein the plurality of circumferentially spaced-apart hose size markings comprises two or more marking sets and the plurality of axially spaced-apart hose size markings comprises two or more marking sets, and wherein corresponding markings sets between the plurality of circumferentially spaced-apart hose size markings and the plurality of axially spaced-apart hose size markings are coded.

17. The actuator adjustment assembly of claim 16 , wherein corresponding marking sets between the plurality of circumferentially spaced-apart hose size markings and the plurality of axially spaced-apart hose size markings are color coded.

18. The actuator adjustment assembly of claim 15 , further comprising a set of crimp die set markings that relate crimp die sets to hose sizes and fitting assemblies.

19. The actuator adjustment assembly of claim 18 , wherein the plurality of circumferentially spaced-apart hose size markings comprises two or more marking sets and the plurality of axially spaced-apart hose size markings comprises two or more marking sets, and wherein the set of crimp die set markings are coded to corresponding marking sets between the plurality of circumferentially spaced-apart hose size markings and the plurality of axially spaced-apart hose size markings.

20. A variable crimp machine for crimping fittings on hoses, the variable crimp machine comprising:

a first frame including an upper actuator mount and a lower crimp ring;

an actuator that mounts at the upper actuator mount, the actuator including a driven component that reciprocates linearly along an actuation axis which extends between the upper actuator mount and the lower crimp ring, the driven component including a lower end positioned below the upper actuator mount;

a second frame that attaches to the lower end of the driven component, the second frame defining a crimp die set mounting location;

an actuator adjustment assembly including a dial rotatably coupled to the driven component and that rotates about the actuation axis, the actuator adjustment assembly also including a barrel coupled to the driven component and positioned along the actuation axis within the dial, the dial being configured to move axially relative to the barrel along the actuation axis as the dial is rotated about the actuation axis;

the barrel including a first set of axially spaced-apart hose size markings corresponding to a first type of hose and a second set of axially spaced-apart hose size markings correspond to a second type of hose;

the dial including a first set of circumferentially spaced-apart hose size markings corresponding to the first type of hose and a second set of circumferentially spaced-apart hose size markings corresponding to the second type of hose, wherein the first set of circumferentially spaced-apart hose size markings are used in concert with the first set of axially spaced-apart hose size markings to adjust the actuator for use with the first type of hose, and wherein the second set of circumferentially spaced-apart hose size markings are used in concert with the second set of axially spaced-apart hose size markings to adjust the actuator for use with the second type of hose; and

a pinch point hat coupled to the second frame and at least partially surrounding the dial thereby restricting access to a lower end of the dial.

Assignments (2)
MERGER Recorded Aug 27, 2023
From: DANFOSS POWER SOLUTIONS II TECHNOLOGY A/S
To: DANFOSS A/S
Reel/Frame 064730/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 20, 2022
From: EATON CORPORATION
To: DANFOSS POWER SOLUTIONS II TECHNOLOGY A/S
Reel/Frame 060248/0077 →
Continuity (2)
Provisional Application 62453364 · Feb 1, 2017
Related Publication 20180214926A1 · Aug 2, 2018