Claims
- 1. A vertical die casting press for producing a die cast metal part, said press comprising a non-cylindrical shot sleeve defining a non-cylindrical shot chamber for receiving molten metal and having a generally vertical axis, a non-cylindrical shot piston within said shot sleeve and supported for generally vertical axial movement, said non-cylindrical shot chamber and said non-cylindrical shot piston having substantially the same cross-sectional configuration, and a lower die member above said shot sleeve and defining at least one gate opening for receiving the molten metal forced upwardly by said shot piston.
- 2. A press as defined in claim 1 wherein said lower die member defines an annular entrapment recess adjacent said shot sleeve for entrapping a shell of pre-solidified metal adjacent said shot sleeve and to prevent pre-solidified metal particles from flowing inwardly and entering said gate opening.
- 3. A press as defined in claim 1 wherein said shot chamber and said shot piston are oval in cross-sectional configuration.
- 4. A press as defined in claim 1 wherein said shot chamber and said shot piston have a length substantially greater than their width in horizontal cross-section.
- 5. A press as defined in claim 4 wherein said lower die member has a plurality of said gate opening spaced along said length of said shot chamber.
- 6. A method of die casting a fiber reinforced metal part having no significant solid metal particles or porosity, comprising the steps of forming upper and lower die members defining a cavity corresponding to the shape of the part, defining at least one gate opening within the lower die member and extending from a non-cylindrical shot chamber defined by a non-cylindrical shot sleeve and a non-cylindrical shot piston within the sleeve, inserting a porous preform having reinforcing fibers within the cavity, inserting molten metal into the shot chamber, and moving the shot piston upwardly to force the molten metal within the shot chamber upwardly through the gate opening and into the die cavity to infiltrate the preform and fill the die cavity.
- 7. A method as defined in claim 6 and including the step of forming an annular entrapment recess within the lower die member at the upper end of the shot sleeve, and capturing a shell of pre-solidified metal adjacent the shot sleeve within the entrapment recess to prevent the pre-solidified metal from flowing radially inwardly and entering the gate opening extending from the shot chamber.
- 8. A method as defined in claim 7 and including the step of venting air from the entrapment recess through vent slots extending laterally outwardly within said lower die member to minimize the flow of air into the die cavity.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a CIP of Ser. No. 09/860,088, filed on May 17, 2001 and now issued as U.S. Pat. No. 6,467,528.
US Referenced Citations (8)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09/860088 |
May 2001 |
US |
Child |
10/274688 |
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US |