Claims
- 1. A method for fine grain milling, wherein a workpiece is covered with a mask having therethrough a hole pattern for a desired shape and is processed to the desired shape by powder mixed with a fluid and injected at said workpiece through said mask, said method comprising the steps of:
- injecting said powder mixed with said fluid from a first nozzle through said mask to a surface of said workpiece while said workpiece is disposed on a workpiece holder that is rotated around a spindle, to process said surface to the desired shape;
- detecting the quantity and speed of flow of said powder mixed with fluid and injected at the surface of said workpiece;
- controlling relative motion of said workpiece holder and said first nozzle based on the result of the detecting step so that the quantity and speed of flow within a unit area of the processed surface of said workpiece in a unit time are maintained uniform;
- injecting a high-pressure fluid from a second nozzle in an inclined direction through said mask to said surface of said workpiece to remove powder and chips adhered to edges of said hole pattern and on said processed surface of said workpiece as the processed surface is processed by the powder mixed with fluid, so as to process said processed surface of said workpiece with a desired precision; and
- collecting removed powder and said chips.
- 2. An apparatus for fine grain milling, wherein a workpiece is covered with a mask having therethrough a hole pattern for a desired shape and is processed to the desired shape by powder mixed with a fluid and injected at the workpiece through the mask, said apparatus comprising:
- a workpiece holder for mounting a workpiece, said workpiece holder being rotatable around a main spindle;
- first injecting means, having a first nozzle, for injecting the powder mixed with the fluid through the mask and at a surface of the workpiece to process the surface of the workpiece to the desired shape;
- control means responsive to the quantity and speed of flow of the powder mixed with fluid and injected at the surface of said workpiece for controlling relative motion of said workpiece holder and said first nozzle so that the quantity and speed of flow of the powder mixed with fluid contacting a unit area of the processed surface of the workpiece in a unit time are maintained uniform;
- second injecting means, having a second nozzle, for injecting a high-pressure fluid in an inclined direction through the mask and at the surface of the workpiece to remove powder adhered to edges of the hole pattern and on the processed surface of the workpiece as the processed surface is processed by the powder mixed with fluid, so as to process the processed surface of the workpiece with a desired precision;
- sealing means for sealing said workpiece holder and said first injecting means; and
- dust collecting means for collecting powder and chips out of said sealing means.
- 3. An apparatus according to claim 2, further comprising third injecting means for injecting a clean gas, having a pressure higher than the interior pressure of said sealing means, from outside of said sealing means into gaps provided between a bearing of said main spindle of said workpiece holder and said main spindle.
- 4. An apparatus according to claim 2, further comprising means for rotating said workpiece holder around the main spindle; and means for reciprocating said first nozzle in a radial direction to and from the center of said workpiece holder and at a predetermined distance from the surface of the workpiece mounted on said workpiece holder .
- 5. An apparatus according to claim 2, further comprising means for rotating said workpiece holder around said main spindle; and means for reciprocating said first nozzle in a radial direction to and from the center of the main spindle, with an end of said first nozzle maintained a predetermined distance from the workpiece mounted on said workpiece holder.
- 6. An apparatus according to claim 5, wherein said control means controls the rotational speed of said workpiece holder based on the distance from the center of said main spindle to the position of said nozzle end.
- 7. An apparatus for fine grain milling, wherein a workpiece is covered with a mask having therethrough a hole pattern for a desired shape and is processed to the desired shape by powder mixed with a fluid and injected at the workpiece through the mask, said apparatus comprising:
- a support table having a main spindle, said support table being rotatable around said main spindle;
- a workpiece holder for mounting the workpiece, said workpiece holder being rotatable around an axis parallel to said main spindle;
- first injecting means, having a first nozzle, for injecting the powder mixed with the fluid through the mask and at a surface of the workpiece to process the surface of the workpiece to the desired shape;
- means responsive to the quantity and speed of flow of the powder mixed with fluid and injected at the surface of said workpiece for controlling relative motion of said workpiece holder and said first nozzle so that the quantity and speed of flow of the powder mixed with fluid contacting a unit area of the processed surface of the workpiece in a unit time are maintained uniform;
- second injecting means, having a second nozzle, for injecting a high-pressure fluid in an inclined direction through the mask and at the surface of the workpiece to remove powder adhered to edges of the hole pattern and on the processed surface of the workpiece as the processed surface is processed by the powder mixed with fluid, so as to process the processed surface of the workpiece with a desired precision;
- sealing means for sealing said workpiece holder and said first injecting means; and
- dust collecting means for collecting powder and chips out of said sealing means.
- 8. An apparatus according to claim 7, further comprising third injecting means for injecting a clean gas, having pressure higher than the interior pressure of said sealing means, from outside of said sealing means into gaps between a bearing of said main spindle of said workpiece holder and said main spindle.
- 9. An apparatus according to claim 7, further comprising means for rotating said workpiece holder around said axis parallel to said main spindle; means for rotating said support table around said main spindle; and means for reciprocating said first nozzle in a radial direction to and from the center of said workpiece holder and at a predetermined distance from the surface of the workpiece mounted on said workpiece holder.
- 10. An apparatus according to claim 7, further comprising means for rotating said workpiece holder around said axis parallel to said main spindle; means for rotating said support table around said main spindle; and means for reciprocating said first nozzle in a radial direction to and from the center of said workpiece holder and at a predetermined distance from the surface of the workpiece mounted on said workpiece holder.
- 11. An apparatus according to claim 10, wherein said control means controls the rotational speed of said workpiece holder based on the position of said first nozzle.
- 12. A method as claimed in claim 1, wherein said powder mixed with fluid is injected in an inclined direction.
- 13. An apparatus as claimed in claim 2, wherein said first injecting means injects the powder mixed with fluid in an inclined direction.
- 14. An apparatus as claimed in claim 7, wherein said first injecting means injects the powder mixed with fluid in an inclined direction.
Priority Claims (1)
Number |
Date |
Country |
Kind |
4-048229 |
Mar 1992 |
JPX |
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Parent Case Info
This application is a Continuation of application Ser. No. 08/026,770, filed Mar. 5, 1993, now U.S. Pat. No. 5,560,743.
US Referenced Citations (7)
Continuations (1)
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Number |
Date |
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Parent |
026770 |
Mar 1993 |
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