Claims
- 1. A cast metal article of manufacture comprising a first portion of low carbon cast iron, a second portion of high carbon stainless steel, and a layer of ceramic material separating the first portion from the second portion;
- said layer of ceramic material comprising hollow ceramic particles uniformly distributed throughout a resin binder material;
- said hollow ceramic particles individually being in intimate surface contact with adjacent individual hollow ceramic particles throughout said layer;
- whereby the heat of the casting will be conducted efficiently through said layer and the amount of resin binder may be maintained at a minimum to reduce the amount of gas generated by the resin binder as it is exposed to the heat of the metal being cast;
- said hollow ceramic particles being generally spherical and ranging in diameter from about 10 microns to about 2.5 millimeters; and
- said hollow ceramic particles comprising about 99.0 to about 96.5% by weight of said layer and the resin binder being organic and comprising about 1.0 to 3.5% by weight, respectively, of said layer prior to said layer being cured.
- 2. The cast metal article as defined in claim 1 wherein said hollow ceramic particles range in diameter from about 10 microns to about 450 microns.
- 3. The cast metal article as defined in claim 2 wherein said hollow ceramic particles range in diameter from about 200 microns to about 450 microns and have a mean diameter of about 325 microns.
- 4. The cast metal article as defined in claim 1 wherein the hollow ceramic particles comprise about 97.5% and binder about 2.5%.
- 5. The cast metal article as defined in claim 1 wherein said second portion and said layer of ceramic material are made up as a composite core about which the first portion is cast whereby the second portion and layer of ceramic material are cast in place relative to the first portion.
- 6. A cast metal article of manufacture comprising a first portion of a first metal, a second portion of a second metal, and a layer of hollow ceramic particles separating the first portion from the second portion;
- said ceramic particles being uniformly distributed throughout a resin binder material;
- said hollow ceramic particles individually being in intimate surface contact with adjacent individual hollow ceramic particles throughout said layer, whereby the heat of the casting will be conducted efficiently through said layer and the amount of resin binder may be maintained at a minimum to reduce the amount of gas generated by the resin binder as it is exposed to the heat of the metal being cast;
- said hollow ceramic particles being generally spherical and ranging in diameter from about 10 microns to about 2.5 millimeters;
- said hollow ceramic particles comprising about 99.0 to about 96.5% by weight of said layer and the resin binder being organic and comprising about 1.0 to 3.5% by weight, respectively, of said layer prior to said layer being cured; and
- said second portion and said layer of hollow ceramic particles being made up as a composite core about which the first portion is cast whereby the second portion and said layer of hollow ceramic particles are cast in place relative to the first portion.
- 7. The cast metal article as defined in claim 6 wherein said hollow ceramic particles range in diameter from about 10 microns to about 450 microns.
- 8. The cast metal article as defined in claim 7 wherein said hollow ceramic particles range in diameter from about 200 microns to about 450 microns and have a mean diameter of about 325 microns.
- 9. The cast metal article as defined in claim 8 wherein the said hollow ceramic particles are about 66 percent silica and about 33 percent aluminum oxide with the remainder being trace materials.
- 10. The cast metal article as defined in claim 6 wherein the hollow ceramic particles comprise about 97.5% and binder about 2.5%.
- 11. The cast metal article as defined in claim 9 wherein the hollow ceramic particles comprise about 97.5% and binder about 2.5%.
- 12. The cast metal article as defined in claim 1 wherein the said hollow ceramic particles are about 66 percent silica and about 33 percent aluminum oxide with the remainder being trace materials.
Parent Case Info
This is a divisional of co-pending application Ser. No. 07/711,917 filed on Jun. 7, 1991, now U.S. Pat. No. 5,239,956.
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Divisions (1)
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Number |
Date |
Country |
Parent |
711917 |
Jun 1991 |
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