Claims
- 1. A process for producing an alloy-base composite material comprising a light alloy matrix and potassium hexatitanate whiskers having a tunnel structure, said whiskers containing aluminum and niobium impurities in such amounts that the Al.sub.2 O.sub.3 /Nb.sub.2 O.sub.5 molar ratio is at least 0.6, which comprises:
- (1) preparing a sintered preform of potassium hexatitanate whiskers having a tunnel structure by blending potassium hexatitanate fibers with an organic binder and heating the resulting blend of fibers and binder at a temperature of 800.degree.-1100.degree. C. until the fibers are sintered, thereby yielding a consolidated preform,
- (2) placing the melt casting preform in a mold, and
- (3) pouring molten alloy into the preform in the mold, applying an elevated pressure to the mold and then rapidly cooling the mold to obtain the alloy-base composite material as a product of the process.
- 2. A process according to claim 1 wherein the molten alloy is an aluminum based light alloy.
- 3. A process according to claim 1 wherein the volume fraction of potassium hexatitanate fibers and alloy used is in the range of 5-40%.
- 4. A process for producing an alloy-base composite material comprising a light alloy matrix and potassium hexatitanate whiskers having a tunnel structure, said whiskers containing aluminum and niobium impurities in such amounts that the Al.sub.2 O.sub.3 /Nb.sub.2 O.sub.5 molar ratio is at least 0.6 and containing 1% or less in total of impurities other than aluminum and niobium, which comprises:
- (1) preparing a sintered preform of potassium hexatitanate whiskers having a tunnel structure by blending potassium titanate fibers with an organic binder and heating the resulting blend of fibers and binder at a temperature of 800.degree.-1100.degree. C. until the fibers are sintered, thereby yielding a melt casting preform,
- (2) placing the melt casting preform in a mold, and
- (3) pouring molten alloy into the preform in the mold, applying an elevated pressure to the mold and then rapidly cooling the mold to obtain the alloy-base composite material as a product of the process.
- 5. A process according to claim 5 wherein the molten alloy is an aluminum based light alloy.
- 6. A process according to claim 5 wherein the volume fraction of potassium hexatitanate fibers and alloy used is in the range of 5-40%.
Priority Claims (2)
Number |
Date |
Country |
Kind |
3-148836 |
Jun 1991 |
JPX |
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4-21281 |
Feb 1992 |
JPX |
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Parent Case Info
This is a division of application Ser. No. 07/901,232, filed Jun. 19, 1992, now U.S. Pat. No. 5,366,816.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
4810439 |
Fujiki et al. |
Mar 1989 |
|
5084422 |
Harada et al. |
Jan 1992 |
|
5366816 |
Harada et al. |
Nov 1994 |
|
Foreign Referenced Citations (4)
Number |
Date |
Country |
241198 |
Oct 1987 |
EPX |
323012 |
Jul 1989 |
EPX |
73031 |
Mar 1989 |
JPX |
74527 |
Mar 1990 |
JPX |
Non-Patent Literature Citations (4)
Entry |
Suganuma et al, "AA6061 composite reinforced with potassium titanate whisker", J. of Mat. Science Letter 8 (1989) 808-810. |
Shimizu et al, Synthesis of Potassium Titanate Fibers by Melt Reaction Between . . . |
Linsen et al, New Inorganic Fibers For Plastic Reinforcement, 27thy Annual Technical Conference, 1972 Reinforced Plastics/ Composites Institute The Society of the Plastics Industry, Inc., sectuib 11-D, pp. 1-10. |
Sugamona et al, "AA6061 composite whisker", J. of Nat. Science, Letter 8 (1989) 808-810. |
Divisions (1)
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Number |
Date |
Country |
Parent |
901232 |
Jun 1992 |
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