IP Library Granted Patent US 9,987,676
Granted Patent B2
US 9,987,676 · App. 14/767,522 · Granted Jun 5, 2018

Feeder insert and method for arranging same in a casting mold

Inventors: Lars Zumbusch (Langenfeld, DE); Guido Brieger (Bochum, DE); Michael Biemel (Wuerzburg, DE)
Assignee: CHEMEX GMBH
B22C9/088B22C21/14B22C23/00
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Quick Facts
Patent No.
US 9,987,676
App. No.
14/767,522
Granted
Jun 5, 2018
Kind
B2
Abstract

A feeder insert for use for the casting of metals into casting molds, having a mold body ( 6 ) and a supply element ( 4 ) which delimit the feeder cavity ( 10 ) for receiving liquid metal, wherein the supply element ( 4 ) has a passage opening ( 26 ) for the liquid metal, and wherein the mold body ( 6 ) is movable in a feeder longitudinal direction relative to at least one part of the supply element ( 4 ), characterized in that the supply element ( 4 ) has a deformation region which is designed to trim in at least in sections in at least a first phase of a relative movement of the mold body ( 6 ) in the feeder longitudinal direction and in the direction of the supply element ( 4 ).

Claims (31)

1. A feeder insert for use for the casting of metals into casting molds, having a mold body ( 6 ) and a supply element ( 4 ) which delimit the feeder cavity ( 10 ) for receiving liquid metal,

wherein the supply element ( 4 ) has a passage opening ( 26 ) for the liquid metal, and wherein the mold body ( 6 ) is movable in a feeder longitudinal direction relative to at least one part of the supply element ( 4 ),

wherein the supply element ( 4 ) has a deformation region ( 22 ) which is designed to invert at least in sections in at least a first phase of a relative movement of the mold body ( 6 ) in the feeder longitudinal direction and in the direction of the supply element ( 4 ),

wherein a wall part of an inverted section ( 36 ) of the deformation region ( 22 ) is configured so as to be supported against an inner wall of the mold body ( 6 ).

2. The feeder insert as claimed in claim 1 , wherein the deformation region ( 22 ) is designed to invert in the direction of the interior of the mold body ( 6 ).

3. The feeder insert as claimed in claim 1 , wherein as a result of a movement of the mold body ( 6 ) in the feeder longitudinal direction relative to at least one part of the supply element ( 4 ), it is achieved that at least one section ( 36 ) of the deformation region ( 22 ) of the supply element ( 4 ) projects at least over a predetermined distance into a region, corresponding to the supply element, of the mold body ( 6 ) for the liquid metal.

4. The feeder insert as claimed claim 1 , wherein the deformation region ( 22 ) of the supply element ( 4 ) is designed or configured such that, after at least a first phase of the relative movement between the mold body ( 6 ) and supply element ( 4 ), it has two wall sections running approximately parallel in the feeder longitudinal direction.

5. The feeder insert as claimed in claim 1 , wherein the deformation region ( 22 ) is designed to invert in the direction of the mold body ( 6 ) without a dead space.

6. The feeder insert as claimed in claim 1 , wherein the deformation region ( 22 ) is designed such that, during a second phase, which follows the first phase, of the relative movement between the mold body ( 6 ) and supply element ( 4 ), said deformation region kinks inward along a part.

7. The feeder insert as claimed claim 1 , wherein the supply element ( 4 ) is connected to the mold body ( 6 ) via a coupling region which ensures a connection between supply element ( 4 ) and mold body ( 6 ) during the inverting process.

8. The feeder insert as claimed in claim 1 , wherein the supply element ( 4 ) has a support region ( 34 ) which engages on the mold body ( 6 ) and which serves to form a coupling region between the supply element ( 4 ) and mold body ( 6 ).

9. The feeder insert as claimed in claim 1 , wherein the feeder insert ( 2 ) has a feeder longitudinal axis ( 8 ), wherein the support region ( 34 ) is a collar which is in contact with the underside ( 12 ) of the mold body ( 6 ) and which extends substantially radially with respect to the feeder longitudinal axis ( 6 ).

10. The feeder insert as claimed in claim 1 , wherein the deformation region ( 22 ) has a cylindrical sleeve which, before the relative movement, has a depression ( 32 ), which projects outward in the manner of a bent flange, in the transition to the support region ( 34 ).

11. The feeder insert as claimed in claim 1 , wherein the supply element ( 4 ) has an extension region ( 24 ) which tapers conically below the deformation region ( 22 ).

12. The feeder insert as claimed in claim 1 , wherein the extension region ( 24 ) is equipped with a breaking edge ( 50 ).

13. The feeder insert as claimed in claim 1 , wherein the extension region ( 24 ′) of the supply element ( 4 ′) has beads ( 42 , 42 ′).

14. The feeder insert as claimed in claim 1 , wherein the mold body ( 6 ) and/or the supply element ( 4 ) have guide surfaces for guiding a centering core ( 44 ).

15. The feeder insert as claimed in claim 1 , wherein the material for the supply element ( 4 ) is formed from or comprises a metallic material.

16. The feeder insert as claimed in claim 1 , wherein the material for the mold body ( 6 ) is or comprises a material which has exothermic and/or insulating properties.

17. A casting mold having a feeder insert ( 2 ) as claimed in claim 1 .

18. A method for arranging a feeder insert ( 2 ) in a casting mold, having the following steps:

providing a feeder insert ( 2 ) as claimed in claim 1 ,

arranging the feeder insert ( 2 ) in a molding machine such that the mold body ( 6 ) and the supply element ( 4 ) are present in an arrangement proceeding from which the mold body ( 6 ) can be moved relative to at least one part of the supply element ( 4 ),

filling molding material into the molding machines such that the outer wall of the feeder insert ( 2 ) is placed in contact with the molding material,

compressing the molding sand such that the mold body ( 6 ) is displaced relative to the supply element ( 4 ), and at least one portion of the deformation region ( 22 ) of the supply element ( 4 ) is inverted,

wherein a portion of the deformation region ( 22 ) is inverted into at least one portion of the feeder cavity of the mold body ( 6 ) when the mold body ( 6 ) is moved along the feeder longitudinal axis in the direction of the supply element ( 4 ).

19. The method as claimed in claim 18 , wherein the molding machine has a pattern plate ( 30 ) and the supply element ( 4 ) is inserted into the molding machine such that it is placed in direct contact with the pattern plate ( 30 ) and/or with a centering core ( 44 ).

20. A feeder insert for use for the casting of metals into casting molds, having a mold body ( 6 ) and a supply element ( 4 ) which delimit the feeder cavity ( 10 ) for receiving liquid metal,

wherein the supply element ( 4 ) has a passage opening ( 26 ) for the liquid metal, and wherein the mold body ( 6 ) is movable in a feeder longitudinal direction relative to at least one part of the supply element ( 4 ),

wherein the supply element ( 4 ) has a deformation region ( 22 ) which is designed to invert at least in sections in at least a first phase of a relative movement of the mold body ( 6 ) in the feeder longitudinal direction and in the direction of the supply element ( 4 ),

wherein the deformation region is designed so that at least a portion of the deformation region ( 22 ) is inverted into at least one portion of the feeder cavity of the mold body ( 6 ) when the mold body ( 6 ) is moved along the feeder longitudinal axis in the direction of the supply element ( 4 ).

Assignments (2)
MERGER Recorded Mar 7, 2019
From: CHEMEX GMBH
To: CHEMEX FOUNDRY SOLUTIONS GMBH
Reel/Frame 049355/0010 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 12, 2015
From: ZUMBUSCH, LARS; BRIEGER, GUIDO; BIEMEL, MICHAEL
To: CHEMEX GMBH
Reel/Frame 036312/0197 →
Priority Claims (3)
DE 20 2013 001 418 U · Feb 15, 2013 · national
DE 20 2013 001 932 U · Mar 1, 2013 · national
DE 20 2013 001 933 U · Mar 1, 2013 · national
Continuity (1)
Related Publication 20160030999A1 · Feb 4, 2016