IP Library Granted Patent US 10,441,997
Granted Patent B2
US 10,441,997 · App. 15/300,832 · Granted Oct 15, 2019

Casting mold, insert for a casting mold, a cast part and a casting method therefor

Inventors: Michael Stumpf (Bielefeld, DE); Francisco Tovar (Bielefeld, DE); Marco Haesche (Osterholz-Scharmbeck, DE); Franz-Josef Wöstmann (Münster, DE); Christoph Pille (Bremen, DE); Michael Heuser (Bremen, DE); Tobias Beyer (Paderborn, DE)
Assignees: Böllhoff Verbindungstechnik GmbH; Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V.
B22D17/2227B22C9/101B22C9/108B22C9/22B22D17/24B22D19/00B22D19/0081B22D19/04B22D19/06B29C45/14065B29C45/14418B29L2001/00F16B37/048F16B37/12
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Quick Facts
Patent No.
US 10,441,997
App. No.
15/300,832
Granted
Oct 15, 2019
Kind
B2
Abstract

A metal casting method and a plastic injection molding method in which an insert is molded in molten material such that no molten material enters the interior of the insert. The usage of a wire thread insert as insert has the advantage that for example in an aluminum cast part thread holes can be produced already as part of the casting process. For this purpose, the casting mold, the insert, as well as the casting method are described.

Claims (66)

1. A metal casting method by which at least one insert is fastenable in a cast part, and which comprises the following steps:

a. providing a casting mold having a mold cavity,

b. providing at least one insert,

c. positioning the at least one insert within the mold cavity with a positioning device,

d. arranging a sealing element between the at least one insert and an inner wall of the mold cavity by which the at least one insert is at least partly sealable against an entering of molten metal,

e. casting molten metal into the mold cavity and

f. demolding the cast part, in which the positioning device consists of a holding core which is fastened releasably in an opening of the inner wall of the mold cavity, wherein the holding core is made of metal, plastic or ceramic, and the method comprises the further step of

g1. fastening the holding core with the at least one insert being plugged on or screwed on the holding core with a one-sided front-end circumferential collar as the sealing element in the mold cavity, or

g2. fastening the holding core with the at least one insert being plugged on or screwed on the holding core in the mold cavity, wherein a separate sealing element is arranged between the at least one insert and the inner wall of the mold cavity.

2. The casting method according to claim 1 , in which the at least one insert comprises the following features:

an at least partly open outer wall and an inner cavity,

an inner wall of the inner cavity being at least partly coated with plastic or the inner cavity being at least partly provided with plastic so that

the inner cavity is sealed against an entering of molten metal from the exterior.

3. The casting method according to claim 2 , in which the at least one insert has on the face on one side a plastic collar which forms in operative connection with the wall of the casting mold a sealing element against molten metal.

4. The casting method according to claim 2 , in which the inner cavity of the at least one insert is completely filled with plastic, wherein the plastic protrudes in the shape of a pin and on one side beyond the insert at least one.

5. The casting method according to claim 2 , in which the inner cavity of the at least one insert is formed at least partly conically by means of the plastic at least partly coating the inner wall of the inner cavity.

6. The casting method according to claim 2 , in which the at least one insert is a wound wire thread insert.

7. The casting method according to claim 2 , in which the at least one insert comprises a plastic sleeve which coats an interior of the at least one insert, wherein a plastic of the plastic sleeve has an approximately heat-independent strength or a heat-dependent strength which decreases with increasing thermal load.

8. The casting method according to claim 2 , in which the at least one insert comprises a plastic sleeve which coats an interior of the at least one insert, wherein the plastic sleeve has at least one predetermined breaking point ensuring a failure of the plastic sleeve transversely to a longitudinal direction of the plastic sleeve.

9. The casting method according to claim 1 , which is a pressure-supported metal casting method.

10. The casting method of claim 1 wherein a cast part of metal is formed with an integrated insert which has an inner cavity being at least partly free from hardened molten material and has at least one-sided on the face an entrance opening without hardened molten material.

11. A metal casting method by which at least one insert is fastenable in a cast part, and which comprises the following steps:

a. providing a casting mold having a mold cavity,

b. providing at least one insert,

c. positioning the at least one insert within the mold cavity with a positioning device,

d. arranging a sealing element between the at least one insert and an inner wall of the mold cavity by which the at least one insert is at least partly sealable against an entering of molten metal,

e. casting molten metal into the mold cavity and

f. demolding the cast part, in which the positioning device consists of a holding core which is fastened permanently at the inner wall of the mold cavity, wherein the holding core is made of metal, plastic or ceramic, and the method comprises the further step of

g1. plugging or screwing the at least one insert with a one-sided front-end circumferential collar as the sealing element onto the holding core in the mold cavity or

g2. plugging or screwing the at least one insert onto the holding core in the mold cavity wherein a separate sealing element is arranged between the at least one insert and the inner wall of the mold cavity.

12. The casting method according to claim 11 , which is a pressure-supported metal casting method.

13. The casting method according to claim 11 , in which the at least one insert comprises the following features:

an at least partly open outer wall and an inner cavity,

an inner wall of the inner cavity being at least partly coated with plastic or the inner cavity being at least partly provided with plastic so that

the inner cavity is sealed against an entering of molten metal from the exterior.

14. The casting method according to claim 13 , in which the at least one insert has on the face on one side a plastic collar which forms in operative connection with the wall of the casting mold a sealing element against molten metal.

15. The casting method according to claim 13 , in which the inner cavity of the at least one insert is completely filled with plastic, wherein the plastic protrudes in the shape of a pin and on one side beyond the at least one insert.

16. The casting method according to claim 13 , in which the inner cavity of the at least one insert is formed at least partly conically by the plastic at least partly coating the inner wall of the inner cavity.

17. The casting method according to claim 13 , in which the at least one insert is a wound wire thread insert.

18. The casting method according to claim 13 , in which the at least one insert comprises a plastic sleeve which coats an interior of the at least one insert, wherein a plastic of the plastic sleeve has an approximately heat-independent strength or a heat-dependent strength which decreases with increasing thermal load.

19. The casting method according to claim 13 , in which the at least one insert comprises a plastic sleeve which coats an interior of the at least one insert, wherein the plastic sleeve has at least one predetermined breaking point ensuring a failure of the plastic sleeve transversely to a longitudinal direction of the plastic sleeve.

20. The casting method of claim 11 wherein a cast part of metal is formed with an integrated insert which has an inner cavity being at least partly free from hardened molten material and has at least one-sided on the face an entrance opening without hardened molten material.

21. A metal casting method by which at least one insert is fastenable in a cast part, and which comprises the following steps:

a. providing a casting mold having a mold cavity,

b. providing at least one insert,

c. positioning the at least one insert within the mold cavity with a positioning device,

d. arranging a sealing element between the at least one insert and an inner wall of the mold cavity by which the at least one insert is at least partly sealable against an entering of molten metal,

e. casting molten metal into the mold cavity and

f. demolding the cast part, in which the positioning device consists of a holding core which is arranged movably in the inner wall of the mold cavity, wherein the holding core is made of metal, plastic or ceramic, and the method comprises the further step of

g1. plugging the at least one insert onto the holding core without thread in the mold cavity or screwing the at least one insert onto the holding core with thread in the mold cavity, wherein the at least one insert comprises a one-sided front-end circumferential collar as the sealing element, or

g2. plugging the at least one insert onto the holding core without thread in the mold cavity or screwing the at least one insert onto the holding core with thread in the mold cavity, wherein a separate sealing element is arranged between the at least one insert and the inner wall of the mold cavity.

22. The casting method according to claim 21 , comprising the further step of:

removing the holding core with or without thread from the at least one insert after casting of the mold cavity and prior to the demolding of the cast part from the mold cavity.

23. The casting method according to claim 22 , in which for demolding, at least two mold halves of the mold cavity are moved irrespective of an orientation of the holding core.

24. The casting method according to claim 21 , which is a pressure-supported metal casting method.

25. The casting method according to claim 21 , in which the at least one insert comprises the following features:

an at least partly open outer wall and an inner cavity,

an inner wall of the inner cavity being at least partly coated with plastic or the inner cavity being at least partly provided with plastic so that

the inner cavity is sealed against an entering of molten metal from the exterior.

26. The casting method according to 25 , in which the at least one insert has on the face on one side a plastic collar which forms in operative connection with the wall of the casting mold a sealing element against molten metal.

27. The casting method according to 25 , in which the inner cavity of the at least one insert is completely filled with plastic, wherein the plastic protrudes in the shape of a pin and on one side beyond the at least one insert.

28. The casting method according to 25 , in which the inner cavity of the at least one insert is formed at least partly conically by the plastic at least partly coating the inner wall of the inner cavity.

29. The casting method according to 25 , in which the at least one insert is a wound wire thread insert.

30. The casting method according to 25 , in which the at least one insert comprises a plastic sleeve which coats an interior of the at least one insert, wherein a plastic of the plastic sleeve has an approximately heat-independent strength or a heat-dependent strength which decreases with increasing thermal load.

31. The casting method according to 25 , in which the at least one insert comprises a plastic sleeve which coats an interior of the at least one insert, wherein the plastic sleeve has at least one predetermined breaking point ensuring a failure of the plastic sleeve transversely to a longitudinal direction of the plastic sleeve.

32. The casting method of claim 21 wherein a cast part of metal is formed with an integrated insert which has an inner cavity being at least partly free from hardened molten material and has at least one-sided on the face an entrance opening without hardened molten material.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2017
From: STUMPF, MICHAEL; TOVAR, FRANCISCO; HAESCHE, MARCO; WÖSTMANN, FRANZ-JOSEF; PILLE, CHRISTOPH; HEUSER, MICHAEL; BEYER, TOBIAS
To: BÖLLHOFF VERBINDUNGSTECHNIK GMBH; FRAUNHOFER-GESELLSCHAFT ZUR FÖRDERUNG DER ANGEWANDTEN FORSCHUNG E.V.
Reel/Frame 041614/0048 →
Priority Claims (2)
DE 10 2014 206 088 · Mar 31, 2014 · national
DE 10 2014 222 908 · Nov 10, 2014 · national
Continuity (1)
Related Publication 20170021410A1 · Jan 26, 2017
Cited By (1)
US 12,508,743