IP Library › Granted Patent US 12,381,459
Granted Patent B2
US 12,381,459 · App. 18/829,489 · Granted Aug 5, 2025

Machine for producing an insulator

Inventor: Hubert Halder (Horgenzell, DE)
Assignee: Risomat GmbH & Co. Kg
H02K15/10H02K2215/00
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Quick Facts
Patent No.
US 12,381,459
App. No.
18/829,489
Granted
Aug 5, 2025
Kind
B2
Abstract

Shaping strip for forming an insulator, wherein the shaping strip has a main body having an upper side, and the shaping strip has first and second deflection elements projecting from the upper side of the main body. In a forming procedure of the insulator, in which the insulator is pushed in a thrust direction over the first and the second deflection elements, a first end of a first side of the insulator is pushed in the thrust direction along a second external side of the first deflection element, wherein the first deflection element folds over the first side of the insulator on a first target line, and subsequently one end of a second side of the insulator is pushed in the thrust direction along a second external side of the second deflection element and the second deflection element folds over the second side on a second target line.

Claims (9)

1. A shaping tool having a shaping strip for forming an insulator, wherein the shaping tool has a thrust strip, wherein the thrust strip is designed to be cuboid and extends along a longitudinal axis, wherein thrust strip external sides of the thrust strip that extend along the longitudinal axis are present on a first end of the thrust strip so as to be inwardly offset in such a way that the insulator can be pushed over the inwardly offset thrust strip external sides, wherein the insulator can be disposed so as to bear on the inwardly offset thrust strip external sides, wherein a detent, on which the insulator rests by way of an end side of the insulator in the disposed state, is formed in a transition from the inwardly offset thrust strip external sides to remaining thrust strip external sides in such a way that the insulator by way of the thrust strip is movable along the shaping strip in a thrust direction of the insulator and in a direction of an extent of the longitudinal axis of the thrust strip so as to form the insulator by the shaping strip, wherein the shaping strip has a cuboid main body, wherein the main body has an upper side, wherein the shaping strip has a first and a second deflection element, wherein the first and the second deflection element are present on the upper side of the main body so as to project from the upper side of the main body, wherein the first deflection element by way of a lower side of the first deflection element is connected to the upper side of the main body, wherein the second deflection element by way of a lower side of the second deflection element is connected to the upper side of the main body, wherein the second deflection element is designed to be offset from the first deflection element on the main body, wherein the first deflection element has a first external side, wherein the first deflection element has a second external side, wherein the second external side of the first deflection element is present so as to be opposite the first external side of the first deflection element, wherein the first and the second external sides of the first deflection element converge on a front side of the first deflection element in such a way that the first deflection element has an edge on the front side of the first deflection element, wherein the second external side of the first deflection element, when viewed proceeding from the front side of the first deflection element in the thrust direction of the insulator, extends away from the first external side of the first deflection element in such a way that the first deflection element widens proceeding from the front side of the first deflection element, wherein the second deflection element has a first external side, wherein the second deflection element has a second external side, wherein the second external side of the second deflection element is present so as to be opposite the first external side of the second deflection element, wherein the first and the second external side of the second deflection element converge on a front side of the second deflection element in such a way that the second deflection element has an edge on the front side of the second deflection element, wherein the second external side of the second deflection element, when viewed proceeding from the front side of the second deflection element in the thrust direction of the insulator, extends away from the first external side of the second deflection element in such a way that the second deflection element widens when viewed proceeding from the front side of the second deflection element in the thrust direction, wherein the shaping strip is present in such a manner that in a forming procedure of the insulator, in which the insulator is pushed in the thrust direction over the first and the second deflection element, first one end of a first side of the insulator is pushed in the thrust direction along the second external side of the first deflection element, wherein the first deflection element folds over the first side of the insulator herein on a first target line of the insulator, and subsequently one end of a second side of the insulator is pushed in the thrust direction along the second external side of the second deflection element, wherein the second deflection element herein folds over the second side on a second target line of the insulator.

2. The shaping tool as claimed in claim 1 , wherein the first deflection element on an upper side of the first deflection element has a first spring member which is present so as to project from the upper side of the first deflection element, wherein the first spring member on the first deflection element extends in the thrust direction of the insulator, wherein a front side of the first spring member is present so as to be spaced apart from the edge of the first deflection element, wherein a spring member upper side of the first spring member, when viewed in the thrust direction, proceeding from the upper side of the first deflection element, runs away from the upper side of the first deflection element in such a way that in the forming procedure of the insulator an external edge of the folded-over end of the first side of the insulator bears on a first spring member external side of the first spring member.

3. The shaping tool as claimed in claim 1 , wherein the shaping strip has a fastening element on the main body so as to establish the shaping strip on the shaping tool.

4. The shaping tool as claimed in claim 1 , wherein the thrust strip extends in a length, in a width and in a height, wherein the length is greater than the height and the height is greater than the width, wherein the thrust strip external sides include two large thrust strip external sides which extend in the height and in the length, wherein the thrust strip external sides include a first and a second small thrust strip external side which extend in the width and in the length, wherein the first small thrust strip external side on a first small thrust strip end has a depression which extends along the longitudinal axis of the thrust strip in such a way that in the forming procedure of the insulator the folded-over ends of the first and of the second side of the insulator can engage in the depression.

5. A transfer tool having the shaping tool as claimed in claim 1 , wherein the transfer tool has a transfer magazine, wherein the transfer magazine extends in a longitudinal direction of the transfer magazine, wherein the transfer magazine has a cavity in which the insulator is able to be introduced in the longitudinal direction of the transfer magazine by means of the thrust strip, wherein the cavity is designed to taper conically in the longitudinal direction of the transfer magazine.

6. The transfer tool as claimed in claim 5 , wherein the cavity of the transfer magazine has a first and a second narrow cavity side, wherein the cavity has a first and a second wide cavity side, wherein a first spring element is present on a first internal side of the first wide cavity side of the cavity so as to project from the first internal side, wherein the first spring element extends over a longitudinal extent of the cavity in such a way that in an insertion procedure of the insulator into the cavity a first side of the insulator is deformed into a cavity interior by the first spring element.

7. The transfer tool as claimed in claim 5 , further comprising a third spring element on an end portion of the cavity on a first narrow cavity side so as to project from an internal side of the first narrow cavity side, wherein a fourth spring element is present on the end portion of the cavity on a second narrow cavity side so as to project from an internal side of the second narrow cavity side, wherein the third and the fourth spring element extend in a longitudinal extent of the cavity in such a way that a third side of the insulator is deformed into the cavity interior by the third spring element, and a fourth side of the insulator is deformed into the cavity interior by the fourth spring element.

8. A machine for producing an insulator, having a transfer tool as claimed in claim 5 .

9. The machine as claimed in claim 8 , further comprising a material magazine, an embossing device, a blanking device, a flanging device, a transport device and/or a forming device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2024
From: HALDER, HUBERT
To: RISOMAT GMBH & CO. KG
Reel/Frame 068538/0474 →
Priority Claims (1)
DE 10 2022 107 549.4 · Mar 30, 2022 · national
Continuity (2)
Continuation PCTEP2023057085 · Mar 20, 2023
Related Publication 20240429796A1 · Dec 26, 2024
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