Claims
- 1. A manufacturing method for coated abrasive grains, wherein said coated abrasive grains are selected from the group consisting of diamond grains and BN grains, and whose surfaces are coated using an immersion method with a coating comprising at least one substance selected from carbides, borides, and nitrides of a metal, comprising:
- preparing an immersion bath comprising a molten salt bath containing said metal; and
- immersing abrasive grains selected from the group consisting of diamond and Boron nitride grains selected from the group consisting of diamond and Boron nitride grains to be treated in said immersion bath for a suitable length of time.
- 2. A manufacturing method for coated abrasive grains as defined in claim 1, wherein said molten salt bath is a fluoride-containing molten chloride bath, and said immersion bath is prepared by adding at least one substance selected from oxides of said metal, halides of said metal, said metal in elemental form and alloys of said metal to said molten salt bath.
- 3. A manufacturing method for coated abrasive grains as defined in claim 1, wherein said molten salt bath is a fluoride-containing molten chloride bath, and said immersion bath is prepared by adding an oxide and/or halide of said metal and either said metal in elemental form or an alloy of said metal to said molten salt bath.
- 4. A manufacturing method for coated abrasive grains as defined in claim 2, wherein said molten chloride bath is formed from at least one substance selected from chlorides of an alkali metal and chlorides of an alkaline earth metal.
- 5. A manufacturing method for coated abrasive grains as defined in claim 2, wherein said fluoride is at least one substance selected from fluorides of an alkali metal and fluorides of an alkaline earth metal.
- 6. A manufacturing method for coated abrasive grains as defined in claim 1, wherein said molten salt bath is a fluoride-containing molten bromide bath, and said immersion bath is prepared by adding at least one substance selected from oxides of said metal, halides of said metal, said metal in elemental form, and alloys of said metal to said molten salt bath.
- 7. A manufacturing method for coated abrasive grains as defined in claim 6, wherein said immersion bath is prepared by adding an oxide and/or a halide of said metal, and either said metal in elemental form, or an alloy of said metal to said molten salt bath.
- 8. A manufacturing method for coated abrasive grains as defined in claim 6, wherein said molten bromide bath is formed from at least one substance selected from bromides of an alkali metal and bromides of an alkaline earth metal.
- 9. A manufacturing method for coated abrasive grains as defined in claim 6, wherein said fluoride is at least one substance selected from, fluorides of an alkali metal and fluorides of an alkaline earth metal.
- 10. A manufacturing method for coated abrasive grains as defined in claim 1, wherein said molten salt bath is a fluoride-containing molten iodide bath, and said immersion bath is prepared by adding at least one substance selected from oxides of said metal, halides of said metal, said metal in elemental form, and alloys of said metal to said molten salt bath.
- 11. A manufacturing method for coated abrasive grains as defined in claim 10, wherein said immersion bath is prepared by adding an oxide and/or a halide of said metal, and either said metal in elemental form, or alloys of said metal to said molten salt bath.
- 12. A manufacturing method for coated abrasive grains as defined in claim 10, wherein said molten iodide bath is formed from at least one substance selected from iodides of an alkali metal and iodides of an alkaline earth metal.
- 13. A manufacturing method for coated abrasive grains as defined in claim 10, wherein said fluoride is at least one substance selected from fluorides of an alkali metal and fluorides of an alkaline earth metal.
- 14. A manufacturing method for coated abrasive grains as defined in claim 11, wherein said molten salt bath is a fluoride-containing molten halide bath, said immersion bath is prepared by adding an oxide of boron and either a boron-containing alloy or a boron-containing carbide (B.sub.4 C) to said molten salt bath, and uncoated abrasive grains or abrasive grains which are previously coated with a metal selected from Ti, Cr, V, W, Mo, Zr, Hf, Nb, Ta, Ni, and alloys or metallic compounds thereof are immersed in said immersion bath for a suitable length of time to form a boron compound layer on the surface of said abrasive grains.
- 15. A manufacturing method for coated abrasive grains as defined in claim 11, wherein said molten salt bath is a fluoride-containing molten fluoride bath, and said immersion bath is prepared by adding at least one substance selected from oxides of said metal, halides of said metal, said metal in elemental form, and alloys of said metal to said molten salt bath.
- 16. A manufacturing method for coated abrasive grains as defined in claim 15, wherein said immersion bath is prepared by adding an oxide and/or a halide of said metal, and either said metal in elemental form, or an alloy of said metal to said molten salt bath.
- 17. A manufacturing method for coated abrasive grains as defined in claim 15, wherein said molten fluoride bath is formed from at least one substance selected, from fluorides of an alkali metal and fluorides of an alkaline earth metal.
- 18. A manufacturing method for coated abrasive grains as defined in claim 15, wherein said fluoride is at least one substance selected from fluorides of an alkali metal and fluorides of an alkaline earth metal.
Priority Claims (2)
Number |
Date |
Country |
Kind |
62-265952 |
Oct 1987 |
JPX |
|
63-057642 |
Mar 1988 |
JPX |
|
Parent Case Info
This is a Continuation of application No. 07/260,752, filed Oct. 21, 1988, abandoned.
US Referenced Citations (18)
Foreign Referenced Citations (4)
Number |
Date |
Country |
55-162499 |
Dec 1980 |
JPX |
62-027577 |
Feb 1987 |
JPX |
1478510 |
Jul 1977 |
GBX |
1558599 |
Jan 1980 |
GBX |
Non-Patent Literature Citations (2)
Entry |
World Patents Index (WPI) English Abstract of JP 55162499. |
World Patents Index (WPI) English Abstract of JP 62027577. |
Continuations (1)
|
Number |
Date |
Country |
Parent |
260752 |
Oct 1988 |
|