Female die for a joining tool
11090707 · 2021-08-17
Assignee
Inventors
Cpc classification
B21D39/031
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A female die for a joining tool having an anvil and a shoulder which coaxially surrounds the anvil and which is configured on a main body of the anvil or by an end of a bush, and a sleeve which surrounds the main body or the bush, respectively, and which across the circumference thereof has radial slots penetrating the wall of said sleeve, in each case one sliding piece being guided in said slots so as to be movable in the radial direction (R), said sliding piece in the axial direction (A) being supported at least on the shoulder, is distinguished in that the wall of the sleeve on that end that surrounds the shoulder in the region between the slots has regions which widen in a radially inward manner and which extend in each case between two neighboring sliding pieces and in the radial direction (R) at least in part protrude beyond the shoulder.
Claims
1. A female die for a joining tool comprising an anvil and a shoulder which coaxially surrounds the anvil and which is configured on a main body of the anvil or by an end of a bush, and a sleeve which surrounds the main body or the bush, respectively, and which across a circumference thereof has radial slots penetrating a wall of said sleeve, in each case one sliding piece being guided in said radial slots so as to be movable in a radial direction (R), said sliding piece in an axial direction (A) being supported at least on the shoulder, wherein the wall of the sleeve has regions which widen in a radially inward manner that cover the shoulder in the axial direction in the region between the slots and which extend in each case between two neighboring sliding pieces and in the radial direction (R) at least in part protrude beyond the shoulder.
2. The female die according to claim 1, wherein the sliding pieces in the cross section are configured so as to be L-shaped having a foot and a head, and the slots in the axial direction (A) have an upper wall and a lower wall.
3. The female die according to claim 2, wherein the feet of the sliding pieces in the radial direction (R) have a groove, and the wall of the sleeve level in height with the slots has a circumferential groove, and a spring element that encompasses all sliding pieces is placed in the grooves.
4. The female die according to claim 2, wherein the widened regions begin at a height level of the lower walls of the slots.
5. The female die according to claim 1, wherein the sliding pieces are guided in the slots.
6. The female die according to claim 5, wherein at least one of the upper and lower walls the slots has a guide element, and the associated sliding piece in a manner congruent thereto has a counter guide.
7. The female die according to claim 1, wherein the wall of the sleeve in the axial direction (A) terminates conjointly with the sliding pieces or protrudes beyond the latter, and in the region above slots has continuous axial milled grooves.
8. The female die according to claim 3, wherein the spring element is a steel annular spring or a polymer spring.
9. The female die according to claim 1, wherein the anvil is composed of a harder material than the sleeve.
10. The female die according to one claim 1, wherein at least three sliding pieces are provided.
11. The female die according to claim 1, wherein the anvil is configured to be driven so as to be displaceable in the vertical direction (V).
12. The female die according to one claim 1, wherein four sliding pieces are provided.
13. The female die according to one claim 1, wherein the joining tool is configured for clinching.
14. The female die of claim 1, wherein the shoulder is an upper encircling shoulder which is coaxially adjoined by the anvil, and of the sleeve having the sliding piece disposed thereon.
15. The female die of claim 1, wherein the radial slots correspond to a number of the sliding piece.
16. The female die of claim 1, wherein the wall of the sleeve is provided with an external circumferential groove into which the radial slots open out.
17. The female die of claim 16, wherein the wall of the sleeve in a region of an upper end thereof between the radial slots is widened in the radially inward manner.
18. The female die of claim 1, further comprising grooves in an upper wall and lower wall of the radial slots and protrusions provided on feet of the sliding piece guided in a sliding manner in the grooves.
19. The female die of claim 1, wherein the main body is fixedly assembled in the sleeve or be driven so as to be displaceable in the axial direction A.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Exemplary embodiments of the invention are to be described in more detail hereunder with the aid of a drawing in which:
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DETAILED DESCRIPTION
(10) The joining tool is composed substantially of the female die 1 and the tool carrier 2 disposed thereabove and serves for connecting the two metal sheets 3, 4 to another by forming. A die which is coaxially surrounded by the downholder 5 is disposed in the tool carrier 2 (not illustrated here). The downholder 5 when joining is supported on the upper metal sheet 3, while the die effects the deformation of the two metal sheets 3, 4 and connects the metal sheets 3, 4 to one another in punctiform manner.
(11) The female die 1 is composed of the main body 10 on which an upper encircling shoulder 11 which is coaxially adjoined by an anvil 12 is configured, and of the sleeve 20 having sliding pieces 30 disposed thereon. The main body 10 can be fixedly assembled in the sleeve 20 or be driven so as to be displaceable in the axial direction A. When the anvil 12 is disposed so as to be displaceable in the axial direction A, said anvil 12 is surrounded by an additional bush 50 (
(12) In the case of the embodiment having a stationary anvil 12, the task of the shoulder 11 is assumed by the bush 50, or the upper end 51 thereof, on which the sliding pieces 30 slide.
(13) The wall 21 of the sleeve 20 in the region of the upper end 20.1 thereof between the slots 22 is widened in a radially inward manner such that widened regions 23 result which extend in each case between two neighboring sliding pieces 30 and in the radial direction R protrude beyond the shoulder 11 of the main body 10, or the shoulder 51 configured by the upper end of the bush 50, respectively. The downholder 5 which acts on the metal sheets 3, 4 is supported in these widened regions 23 of the sleeve 20 of the female die 1. When the die further deforms the metal sheets 3, 4 in the axial direction, said die is supported on the anvil 12 and the material displaced from the metal sheets 3, 4 forces the main body 10 downward in the axial direction A and the sliding pieces 30 outward in the radial direction R, counter to the force of the spring element 40. The spring elements 30 herein slide in the slots 22 and are supported on the shoulder 11 of the main body 10.
(14) Grooves 22.3, 22.4 are provided in the upper wall 22.1 and the lower wall 22.2 of the slots 22, protrusions 33.1, 33.2 provided on the feet 31 of the sliding pieces 30 being guided in a sliding manner in said grooves 22.3, 22.4.
(15) The sleeve 20 above the slots 22 is provided with axial milled grooves 24 which are embodied so as to be continuous, on account of which the widened regions 33 protrude upward. It is thus ensured that the female die 1, or the sleeve 20, respectively, always bears on the lower side of the metal sheet 4 by way of the widened regions 23 even when the female die 1 is not aligned so as to be exactly plane-parallel to the metal sheet 4. Overloading of the wall 21 in the region of the slots 22 is reliably avoided on account thereof, because no force by way of the downholder 5 can act on said wall 21.