IP Library Granted Patent US 9,718,265
Granted Patent B2
US 9,718,265 · App. 14/282,830 · Granted Aug 1, 2017

Method for producing a composite sheet metal part having a metallic region, and corresponding molding tool

Inventor: Azeddine Chergui (Dortmund, DE)
Assignee: ThyssenKrupp Steel Europe AG
B32B38/0012B21D22/022B21D22/203B23K11/0026B23K11/087B23K11/16B23K11/312B32B15/08B32B37/30B23K2201/185B23K2203/172Y10T156/1044
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Quick Facts
Patent No.
US 9,718,265
App. No.
14/282,830
Granted
Aug 1, 2017
Kind
B2
Abstract

The invention relates to a method for producing a composite sheet metal part having at least one metallic region from a composite sheet metal blank which has two outer cover sheets of metal and at least one layer which is arranged between the cover sheets and consists of plastics material. The invention provides an apparatus and method by which complex formed composite sheet metal parts can easily be produced in a few steps and which still have metallic regions which can be used for joining to further parts.

Claims (21)

1. Method for producing a composite sheet metal part having at least one metallic region from a composite sheet metal blank which has two outer cover sheets of metal and at least one layer which is arranged between the cover sheets and consists of a plastics material, the method comprising:

introducing a composite sheet metal blank into a forming tool;

heating, in the forming tool or before the composite sheet metal blank is introduced into the forming tool, at least one selected region of said blank such that the plastics layer arranged between the outer cover layers softens;

pressing, using the forming tool by applying a force to at least one outer cover layer of the composite sheet metal blank, the cover sheets against each other at certain points or in certain areas in the at least one selected region so that the plastics layer issues out of the at least one region subjected to a force and a metallic region is produced,

subsequently to the application of force or at the same time as the application of force, both cover sheets are joined together at least in certain areas or at certain points in a squeezed region, and

wherein heating elements which regulate the temperature of the composite sheet metal blank at least in the selected region are arranged in the forming tool as means for locally regulating the temperature of the blank.

2. Method according to claim 1 , wherein shaping means provided in the forming tool shape, deep-draw, cut and/or emboss the composite sheet metal blank during or after the production of the metallic regions.

3. Method for producing a composite sheet metal part having at least one metallic region from a composite sheet metal blank which has two outer cover sheets of metal and at least one layer which is arranged between the cover sheets and consists of a plastics material, the method comprising:

introducing a composite sheet metal blank into a forming tool;

heating, in the forming tool or before the composite sheet metal blank is introduced into the forming tool, at least one selected region of said blank such that the plastics layer arranged between the outer cover layers softens;

pressing, using the forming tool by applying a force to at least one outer cover layer of the composite sheet metal blank, the cover sheets against each other at certain points or in certain areas in the at least one selected region so that the plastics layer issues out of the at least one region subjected to a force and a metallic region is produced,

subsequently to the application of force or at the same time as the application of force, both cover sheets are joined together at least in certain areas or at certain points in a squeezed region, and

wherein during the production of the metallic regions of the composite sheet metal part, the plastics material flows between the cover sheets into cavities provided in the forming tool.

4. Method according to claim 3 , wherein shaping means provided in the forming tool shape, deep-draw, cut and/or emboss the composite sheet metal blank during or after the production of the metallic regions.

5. Method for producing a composite sheet metal part having at least one metallic region from a composite sheet metal blank which has two outer cover sheets of metal and at least one layer which is arranged between the cover sheets and consists of a plastics material, the method comprising:

introducing a composite sheet metal blank into a forming tool;

heating, in the forming tool or before the composite sheet metal blank is introduced into the forming tool, at least one selected region of said blank such that the plastics layer arranged between the outer cover layers softens;

pressing, using the forming tool by applying a force to at least one outer cover layer of the composite sheet metal blank, the cover sheets against each other at certain points or in certain areas in the at least one selected region so that the plastics layer issues out of the at least one region subjected to a force and a metallic region is produced,

subsequently to the application of force or at the same time as the application of force, both cover sheets are joined together at least in certain areas or at certain points in a squeezed region, and

wherein the composite sheet metal blank is trimmed by cutting means provided in the forming tool after the introduction of the metallic regions.

6. Method according to claim 5 , wherein shaping means provided in the forming tool shape, deep-draw, cut and/or emboss the composite sheet metal blank during or after the production of the metallic regions.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2014
From: CHERGUI, AZEDDINE
To: THYSSENKRUPP STEEL EUROPE AG
Reel/Frame 033170/0128 →
Priority Claims (1)
DE 10 2011 055 654 · Nov 23, 2011 · national
Continuity (2)
Continuation PCTEP2012073178 · Nov 21, 2012
Related Publication 20140251531A1 · Sep 11, 2014