Claims
- 1. A process for manufacturing a multi-stream thin edge orifice disk comprising the steps of:
- procuring a piece of thin stock;
- punching in the stock the nominal size of at least two thin edge orifices;
- coining one surface surrounding each of the thin edge orifices
- punching the outside diameter of the disk; and then
- removing the completed disk from the stock.
- 2. A process for manufacturing a multi-stream thin edge orifice disk comprising the steps of:
- procuring a piece of thin stock;
- punching in the stock the nominal size of at least two thin edge orifices;
- coining one surface surrounding each of the thin edge orifices
- forming an embossment including said at least two thin edge orifices such that each of said orifices is positioned along the surface of the embossment.
- punching the outside diameter of the disk; and then
- removing the completed disk from the stock.
- 3. A process for manufacturing a multi-stream thin edge orifice disk according to claim 2 additionally where in the step of forming an embossment, said embossment is a conically-shaped embossment including said two thin edge orifices such that each of said orifices is positioned along the surface of the embossment between the base and the apex of the embossment.
- 4. A process for manufacturing a multi-stream thin edge orifice disk according to claim 3 wherein the step for forming a conically-shaped boss the apex angle of the conically-shaped boss is substantially the complementary angle of the included angle between the centerlines of the two orifices.
- 5. A process for manufacturing a multi-stream thin edge orifice disk according to claim 4 wherein the step for forming a conically-shaped boss the apex angle of the conically-shaped boss is substantially 156.degree..
- 6. A process for manufacturing a multi-stream thin edge orifice disk comprising the steps of:
- procuring a piece of thin stock;
- punching in the stock the nominal size of at least two thin edge orifices;
- forming an embossment including said at least two thin edge orifices such that each of said orifices is positioned along the surface of the embossment.
- coining one surface surrounding each of the thin edge orifices
- punching the outside diameter of the disk; and then
- removing the completed disk from the stock.
- 7. A process for manufacturing a multi-stream thin edge orifice disk according to claim 6 additionally where in the step of forming an embossment, said embossment is a conically-shaped embossment including said two thin edge orifices such that each of said orifices is positioned along the surface of the embossment between the base and the apex of the embossment.
- 8. A process for manufacturing a multi-stream thin edge orifice disk according to claim 7 wherein the step for forming a conically-shaped boss the apex angle of the conically-shaped boss is substantially the complementary angle of the included angle between the centerlines of the two orifices.
- 9. A process for manufacturing a multi-stream thin edge orifice disk according to claim 8 wherein the step for forming a conically-shaped boss the apex angle of the conically-shaped boss is substantially 156.degree..
Parent Case Info
This application is a continuation-in-part application of U.S. Ser. No. 937,658 entitled "Manufacturing Process for Manufacturing Thin Edge Orifice Disks for Fuel Injectors" filed on Dec. 4, 1986 by Grieb et al. which is now abandoned.
US Referenced Citations (4)
Foreign Referenced Citations (2)
Number |
Date |
Country |
613137 |
Sep 1979 |
CHX |
602273 |
Apr 1978 |
SUX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
937658 |
Dec 1986 |
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