Claims
- 1. The process for producing a zirconium-based alloy comprising the steps of:
- heating a zirconium-based alloy at a temperature allowing the .alpha. and .beta. phases thereof to coexist or the .beta. phase thereof alone to exist as a single phase and quenching the heated alloy to effect a solid solution treatment;
- heating the treated alloy to a high temperature of 400.degree.-640.degree. C., and hot plastic working the heated alloy; and
- subjecting the resulting alloy to a combination of cold plastic working, and annealing at a high temperature of 400.degree.-640.degree. C., at least once,
- wherein the alloy is not subjected to a solid-solution treatment after the hot plastic working performed on the treated alloy heated to 400.degree.-640.degree. C., whereby, since said hot plastic working and said annealing are performed after the solid solution treatment, reduction of corrosion resistance due to the high temperature processing of the alloy can be prevented without any solid solution treatment after the hot plastic working.
- 2. The process for producing a zirconium-based alloy as defined in claim 1, wherein the cold plastic working includes a final cold plastic working, and the annealing following the final cold plastic working is effected at about 580.degree. C.
- 3. The process for producing a zirconium-based alloy as defined in claim 1, wherein the cold plastic working includes a final cold plastic working, and the annealing following the final cold plastic working is effected at 400.degree. to 550.degree. C.
- 4. The process for producing a zirconium-based alloy as defined in claim 1, wherein the hot plastic working includes a final hot plastic working, which process further comprises the step of annealing the alloy at 400.degree.-640.degree. C. after the final hot plastic working and before the cold plastic working.
- 5. The process for producing a zirconium-based alloy as defined in claim 1, wherein the solid solution treatment includes a final solid solution treatment, which process futher comprises the step of annealing the alloy at 400.degree.-640.degree. C. after the final solid solution treatment.
- 6. The process for producing a zirconium-based alloy as defined in claim 1, including the further step of forming said alloy into at least one member of the group consisting of a nuclear fuel cladding, a fuel rod spacer, a fuel channel box and a fuel bundle.
- 7. The process for producing a zirconium-based alloy as defined in claim 1, including the further step of forming said alloy into a nuclear reactor structural member.
- 8. Product formed by the process of claim 1.
- 9. The process for producing a zirconium-based alloy comprising the steps of:
- heating a zirconium-based alloy at a temperature allowing the .beta. phase thereof to exist as a single phase and quenching the heated alloy to effect a solid solution treatment;
- subjecting the treated alloy to hot plastic working at a temperature within a temperature range of the single .alpha. phase;
- heating the resulting alloy at a temperature allowing the .alpha. and .beta. phases thereof to coexist and quenching the heated alloy to effect another solid solution treatment;
- heating said another solid solution treated alloy to a high temperature of 400.degree.-640.degree. C., and hot plastic working the heated alloy; and
- subjecting the resulting alloy to a combination of cold plastic working, and annealing at a high temperature of 400.degree.-640.degree. C., at least once,
- whereby, since the alloy is heated for hot plastic working, and annealing is performed, at a temperature in the range of 400.degree.-640.degree. C. after said another solid solution treatment, reduction of corrosion resistance due to high temperature processing of the alloy can be prevented without any solid solution treatment after the hot plastic working.
- 10. The process for producing a zirconium-based alloy as defined in claim 9, wherein the cold plastic working includes a final cold plastic working, and the annealing following the final cold plastic working is effected at about 580.degree. C.
- 11. The process for producing a zirconium-based alloy as defined in claim 9, wherein the cold plastic working includes a final cold plastic working, and the annealing following the final cold plastic working is effected at 400.degree. to 550.degree. C.
- 12. The process for producing a zirconium-based alloy as defined in claim 9, wherein said hot plastic working includes a final hot plastic working, which process further comprises the step of annealing the alloy at 400.degree.-640.degree. C. after the final hot plastic working and before the cold plastic working.
- 13. The process for producing a zirconium-based alloy as defined in claim 9, wherein said solid solution treatment includes a final solid solution treatment, which process further comprises the step of annealing the alloy at 400.degree.-640.degree. C. after the final solid solution treatment.
- 14. The process for producing a zirconium-based alloy as defined in claim 9, including the further step of forming said alloy into at least one member of the group consisting of a nuclear fuel cladding, a fuel rod spacer, a fuel channel box and a fuel bundle.
- 15. The process for producing a zirconium-based alloy as defined in claim 9, including the further step of forming said alloy into a nuclear reactor structural member.
- 16. Product formed by the process of claim 9.
- 17. The process for producing a zirconium-based alloy as defined in claim 9, wherein the alloy is not subjected to a solid solution treatment after the hot plastic working at a high temperature of 400.degree.-640.degree. C.
- 18. The process for producing a zirconium-based alloy as defined in claim 1, said process consisting essentially of said heating and quenching, said subjecting the treated alloy to said hot plastic working, and said subjecting the resulting alloy to a combination of cold plastic working and said annealing at least once.
- 19. The process for producing a zirconium-based alloy as defined in claim 9, said process consisting essentially of said heating and quenching to effect a solid solution treatment, said subjecting the treated alloy to said hot plastic working, said heating the resulting alloy and quenching to effect another solid solution treatment, said subjecting the treated alloy to said hot plastic working, and said subjecting the resulting alloy to a combination of cold plastic working and said annealing at least once.
Priority Claims (2)
Number |
Date |
Country |
Kind |
56-119739 |
Jul 1981 |
JPX |
|
59-119740 |
Jul 1981 |
JPX |
|
Parent Case Info
This is a continuation of application Ser. No. 400,252, filed July 21, 1982, now abandoned.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
3865635 |
Hofvenstan |
Feb 1975 |
|
4450016 |
Vesterlund |
May 1984 |
|
Continuations (1)
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Number |
Date |
Country |
Parent |
400252 |
Jul 1982 |
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