Claims
- 1. Diecasting machine for production of mouldings from thixotropic metal billets, which comprises: a sprue system which connects a cylindrical casting chamber cavity with a moulding cavity, where the sprue system has a cylindrical sprue cavity immediately adjacent to the casting chamber cavity and contains at least one sprue, and said at least one sprue leads laterally away from a generated surface of the sprue cavity and wherein each sprue has a concentric center line and at its end facing towards the moulding cavity has an inlet opening for introduction of the thixotropic metal alloy into the moulding cavity; wherein the sprue system is connected to the casting chamber cavity by a passage opening having a surface normal and perpendicular in relation to a concentric longitudinal axis of the cylindrical casting chamber cavity, and the inlet openings are arranged in relation to the passage opening such that surface normals of the inlet openings do not coincide with the longitudinal axis of the cylindrical casting chamber cavity; and wherein each sprue has a circular or elliptical cross section with a substantially constant cross sectional area over its entire length, and immediately next to the sprue cavity has a manifold, where a part of the sprue between the manifold and the inlet opening describes a straight tubular channel section and the manifold is formed such that its center line has a constant bending radius continued to the passage opening and a tangent to the center line at the passage opening runs parallel to the longitudinal axis of the cylindrical casting chamber cavity, and a tangent to the center line at the end of the manifold facing towards the inlet opening coincides with the center line of the straight tubular channel section.
- 2. Diecasting machine according to claim 1, wherein at least one sprue at its end facing towards the moulding cavity has a chamfer area which ends in the corresponding inlet opening and the sprue between the sprue cavity and chamfer area is described by a tubular channel section with a circular cross section and constant diameter.
- 3. Diecasting machine according to claim 2, wherein the chamfer area describes a channel section which on the side next to the straight tubular channel section of the at least one sprue has a circular cross section, and the cross section of the chamfer area starting from this circular cross section transforms continuously and constantly into a cross sectional form of the inlet opening of the corresponding sprue.
- 4. Diecasting machine according to claim 3, wherein a cross sectional area of the chamfer area of a sprue remains substantially constant along its center line and nowhere varies by more than ±30% of the cross section of the straight tubular channel section next to the chamfer area of the corresponding sprue.
- 5. Diecasting machine according to claim 1, wherein a surface normal the inlet opening of at least one sprue is arranged perpendicular to the center line of the straight tubular channel section of the corresponding sprue.
- 6. Diecasting machine according to claim 1, wherein the center lines of the straight tubular channel section of the sprues enclose a right angle with the longitudinal axis of the casting chamber cavity.
- 7. Diecasting machine according to claim 6, wherein the bending radius of the center lines in the manifold of a sprue corresponds to a distance of the passage opening from a straight line containing the center line of the straight tubular channel section of the corresponding sprue.
- 8. Diecasting machine according to claim 1, wherein the longitudinal axis of the casting chamber cavity lies horizontal.
- 9. Diecasting machine according to claim 1, wherein between the casting chamber cavity and the passage opening is arranged a transition area with a constantly tapering cross section starting from the casting chamber cavity.
- 10. Diecasting machine according to claim 1, wherein a sum of the cross sectional areas of the individual sprues substantially corresponds to a cross sectional area of the passage opening.
- 11. Diecasting machine according to claim 10, wherein the sum of the cross sectional areas of the individual sprues lying at the sprue cavity deviates by no more than 10% from the cross sectional area of the passage opening.
- 12. Diecasting machine according to claim 1, wherein a longitudinal axis of the cylindrical sprue cavity runs parallel to the longitudinal axis of the casting chamber cavity, and the cross sectional area of the sprue cavity substantially corresponds to the cross sectional area of the passage opening.
- 13. Diecasting machine according to claim 1, wherein the length of the sprue cavity is selected such that between the manifolds is formed a catchment pocket for holding the surface oxide of the thixotropic metal billet.
- 14. Diecasting machine according to claim 1, wherein the inlet openings have an elliptical cross section.
Priority Claims (1)
Number |
Date |
Country |
Kind |
98810732 |
Jul 1998 |
EP |
|
CROSS-REFERENCE TO RELATED APPLICATION
This application is a 371 of PCT/EP99/04862, filed on Jul. 10, 1999.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/EP99/04862 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO00/06323 |
2/10/2000 |
WO |
A |
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
5730201 |
Rollin et al. |
Mar 1998 |
A |
Foreign Referenced Citations (3)
Number |
Date |
Country |
40 15 174 |
Nov 1991 |
DE |
196 06806 |
Aug 1997 |
DE |
0 718 059 |
Jun 1996 |
EP |
Non-Patent Literature Citations (2)
Entry |
Patent Abstracts of Japan, vol. 098, No. 011, Sep. 30, 1998 & JP 10 175054 (Nissan Motor Co Ltd.) Jun. 30, 1998. |
Patent Abstracts of Japan, vol. 095, No. 006, Jul. 31, 1995 & JP 07 068363 (Leotec:KK) Mar. 14, 1995. |