IP Library Granted Patent US 11,577,311
Granted Patent B2
US 11,577,311 · App. 15/760,767 · Granted Feb 14, 2023

Punching tool of a sintering press and method therefor

Inventors: Rainer Schmitt (Wachtberg, DE); Robert Maassen (Witten, DE); Eberhard Ernst (Eichenzell, DE); Hasim Tekines (Wachtberg, DE)
Assignee: GKN Sinter Metals Engineering GmbH
B22F3/03B22F3/003B30B11/005B30B11/027B30B15/026B22F2003/033
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Quick Facts
Patent No.
US 11,577,311
App. No.
15/760,767
Granted
Feb 14, 2023
Kind
B2
Abstract

The present invention relates to a punching tool of a sintering press, comprising at least one lower punch and an upper punch, a first punch of the upper punch and/or lower punch having a top piece that is asymmetric with respect to an axial axis of the punch press. The first punch has a geometry which widens from the top piece towards a base and is also asymmetric with respect to the axial axis of the punch press. The invention further relates to a method for pressing at least one powdery material to a green body in a sintering press.

Claims (18)

1. A punch tool of a sintering press, the punch tool comprising at least one lower punch and one upper punch, wherein a first punch of the at least one upper punch and/or at least one lower punch has a head piece that is a portion of the first punch that is receivable into a die cavity to form a surface of a powder metal part therein and in which the head piece is asymmetrical with respect to a central axis along a pressing direction of the sintering press so that, within the first punch, an axial force acting during pressing acts spaced apart from the central axis along the pressing direction of the sintering press initiates a bending moment in the first punch, wherein the first punch has a geometry which conically widens from the head piece to a foot piece and which is also asymmetrical with respect to the central axis along the pressing direction of the sintering press and which asymmetrical widening is utilizable to compensate a lateral offset of the first punch with respect to the central axis along the pressing direction of the sintering press during pressing wherein the geometry of the first punch includes a conical section having a conical ring shape providing the asymmetrical widening and further includes a straight section having a cylindrical ring shape.

2. The punch tool as claimed in claim 1 , wherein the asymmetrical geometry between the head piece and the foot piece stiffens the first punch, which, in a manner adapted to the asymmetry of the head piece, serves for accommodating a tilting moment on the first punch.

3. The punch tool as claimed in claim 1 , wherein the first punch has, between the head piece and the foot piece, a widening hollow structure which has a varying material thickness at a constant height along a cross section perpendicular to the central axis along the pressing direction of the sintering press.

4. The punch tool as claimed in claim 1 , wherein the first punch is an assembled punch with the head piece, a middle part, a lower part and the foot piece.

5. The punch tool as claimed in claim 1 , wherein the first punch is rotationally movable for play compensation purposes.

6. The punch tool as claimed in claim 1 , wherein the first punch and a second punch are movable one inside the other, wherein the first punch and the second punch each have a respective head piece which are asymmetrical with respect to the central axis along the pressing direction of the sintering press, wherein the first punch and the second punch each have a geometry which widens from the respective head piece to the respective foot piece, which geometries are also asymmetrical with respect to the central axis along the pressing direction of the sintering press.

7. A punch of a punch tool as claimed in claim 1 in which the punch is one of the at least one lower punch or one upper punch, wherein the punch serves for use in a sintering press, wherein the punch has, from the head piece toward the foot piece, a widening which is asymmetrical with respect to a longitudinal axis of the punch, in which the head piece is the portion of the punch that is receivable into a die cavity to form a surface of a powder metal part therein, wherein the geometry of the punch includes a conical section having a conical ring shape providing the asymmetrical widening and further includes a straight section having a cylindrical ring shape.

8. The punch tool of claim 1 , wherein the first punch includes an oblique transition between the conical section and the straight section.

9. The punch tool of claim 2 , wherein a green product is producible in the punch tool by compressing a powder material therewith and wherein the head piece of the first punch is configured to act on a face surface of the green product by providing the axial force.

10. The punch tool of claim 8 , wherein the oblique transition between the conical section and the straight section has a narrowing oviform or non-circular elliptical ring shape.

11. The punch tool of claim 8 , wherein the oblique transition from the conical section and the straight section runs along a circumference obliquely situated in relation to the central axis along the pressing direction of the sintering press.

12. A method for compressing at least one powder material in a sintering press to form a green product by a movement of upper punches and lower punches in a die, the method comprising filling of the die with the powder material, and compressing the powder material to form the green product, the green product having a geometry asymmetrical with respect to a central axis along a pressing direction of the sintering press imparted to it by a punch tool, wherein an asymmetrical conical widening from a head piece toward a foot piece of a punch of the punch tool is utilized to compensate a lateral offset of the punch with respect to the central axis along the pressing direction of the sintering press during the compressing the powder material, in which the head piece is the portion of the punch that is receivable into a die cavity to form a surface of a powder metal part therein wherein a geometry of the punch includes a conical section having a conical ring shape providing the asymmetrical conical widening and further includes a straight section having a cylindrical ring shape.

13. The method as claimed in claim 12 , wherein the punch tool includes more than one punch and a coordinated release of stress from the punches of the punch tool in an inter-coordinated manner without open-loop equalization control or closed-loop equalization control being used on the sintering press for the equalization of differences between individual stress release processes during a movement of the punches away from the green product.

14. The method as claimed in claim 12 , wherein before the compressing the powder material, at least the punch of the punch tool which extends asymmetrically with respect to the central axis along the pressing direction of the sintering press is assembled from multiple individual pieces and installed into the sintering press.

15. The method of claim 12 , wherein the punch includes an oblique transition between the conical section and the straight section in which the oblique transition between the conical section and the straight section has a narrowing oviform or non-circular elliptical ring shape and runs along a circumference obliquely situated in relation to the central axis along the pressing direction of the sintering press.

16. A punch tool of a sintering press, the punch tool comprising at least one lower punch and one upper punch, wherein a first punch of the at least one upper punch and/or at least one lower punch has a head piece that is a portion of the first punch that is receivable into a die cavity to form a surface of a powder metal part therein and in which the head piece is asymmetrical with respect to a central axis along a pressing direction of the sintering press so that, within the first punch, an axial force acting during pressing acts spaced apart from the central axis along the pressing direction of the sintering press initiates a bending moment in the first punch, wherein the first punch has a geometry which conically widens from the head piece to a foot piece and which is also asymmetrical with respect to the central axis along the pressing direction of the sintering press and which asymmetrical widening is utilizable to compensate a lateral offset of the first punch with respect to the central axis along the pressing direction of the sintering press during pressing wherein the asymmetrical shape between the head piece and the foot piece is realized by material openings extending through a wall of the first punch.

17. A punch tool of a sintering press, the punch tool comprising at least one lower punch and one upper punch, wherein a first punch of the at least one upper punch and/or at least one lower punch has a head piece that is a portion of the first punch that is receivable into a die cavity to form a surface of a powder metal part therein and in which the head piece is asymmetrical with respect to a central axis along a pressing direction of the sintering press so that, within the first punch, an axial force acting during pressing acts spaced apart from the central axis along the pressing direction of the sintering press initiates a bending moment in the first punch, wherein the first punch has a geometry which conically widens from the head piece to a foot piece and which is also asymmetrical with respect to the central axis along the pressing direction of the sintering press and which asymmetrical widening is utilizable to compensate a lateral offset of the first punch with respect to the central axis along the pressing direction of the sintering press during pressing wherein the foot piece of the first punch is symmetrical about the central axis along the pressing direction of the sintering press, but the head piece is asymmetrical about the central axis along the pressing direction of the sintering press.

18. A method for compressing at least one powder material in a sintering press to form a green product by a movement of upper punches and lower punches in a die, the method comprising filling of the die with the powder material, and compressing the powder material to form a green product, the green product having a geometry asymmetrical with respect to a central axis along a pressing direction of the sintering press imparted to it by a punch tool, wherein an asymmetrical conical widening from a head piece toward a foot piece of a punch of the punch tool is utilized to compensate a lateral offset of the punch with respect to the central axis along the pressing direction of the sintering press during the compressing the powder material, in which the head piece is the portion of the punch that is receivable into a die cavity to form a surface of a powder metal part therein wherein the foot piece of the first punch is symmetrical about the central axis along the pressing direction of the sintering press, but the head piece is asymmetrical about the central axis along the pressing direction of the sintering press.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 1, 2018
From: SCHMITT, RAINER; MAASSEN, ROBERT; ERNST, EBERHARD; TEKINES, HASIM
To: GKN SINTER METALS ENGINEERING GMBH
Reel/Frame 047024/0376 →
Priority Claims (1)
DE 10 2015 012 005.0 · Sep 18, 2015 · national
Continuity (1)
Related Publication 20180281063A1 · Oct 4, 2018