Claims
- 1. A method of superplastic forming rolled magnesium base metal alloy sheet, comprising the steps of:
- a compacting a rapidly solidified magnesium based alloy powder to produce a billet, said alloy being defined by the formula Mg.sub.bal Al.sub.a Zn.sub.b X.sub.c, wherein X is at least one element selected from the group consisting of manganese, cerium, neodymium, praseodymium, and yttrium, "a" ranges from about 0 to 15 atom percent, "b" ranges from about 0 to 4 atom percent, "c" ranges from about 0.2 to 3 atom percent, the balance being magnesium and incidental impurities, with the proviso that the sum of aluminum and zinc present ranges from about 2 to 15 atom percent, and having a microstructure comprised of a uniform cellular network solid solution phase of a size ranging from 0.2-1.0 .mu.m together with precipitates of magnesium and aluminum containing intermetallic phases of a size less than 0.1 .mu.m;
- b forming said billet into a rolling stock; and
- c rolling said rolling stock into sheets, said rolling step further comprising the steps of:
- (i) preheating said rolling stock to a temperature ranging from 200.degree. C. to 300.degree. C.;
- (ii) rolling said preheated rolling stock at a rate ranging from 25 to 100 rpm;
- (iii) adjusting the roll gaps to produce a reduction of 2 to 25% per pass;
- (iv) repeating steps (i) to (iii) at least once to produce said sheet with required thickness; and
- d forming said sheet into a complex shape at a strain rate ranging from 10.sup.-1 to 10.sup.-2 /S, and at a temperature ranging from 275.degree. C. to 300.degree. C.
- 2. A method of superplastic forming rolled magnesium base metal alloy sheet as recited in claim 1, wherein said sheet, during forming, undergoes an elongation of >300%.
- 3. A method of superplastic forming rolled magnesium base metal alloy sheet as recited in claim 2, wherein said sheet, during forming, undergoes uniform deformation.
- 4. A method of superplastic forming rolled magnesium base metal alloy sheet as recited in claim 1, said sheet after forming having a grain structure <5 .mu.m.
CROSS REFERENCE TO RELATED APPLICATIONS
This invention is a continuation-in-part of U.S. application Ser. No. 586,179, filed Sep. 21, 1990 now U.S. Pat. No. 5,078,807.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
4675157 |
Das et al. |
Jun 1987 |
|
4765954 |
Das et al. |
Aug 1988 |
|
4938809 |
Das et al. |
Jul 1990 |
|
Non-Patent Literature Citations (3)
Entry |
Table 18, Metals Handbook, vol. 2, 10th Edition, 1990, p. 473. |
Busk et al., "The Extrusion of Powdered Magnesium Alloys", Trans. AIME 188, (2) (1950), pp. 297-306. |
Isserow et al., "Microquenched Magnesium ZK60A Alloy", Intl. J. of Powder Met. and Powder Tech., 10, (3) (1974), pp. 217-227. |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
586179 |
Sep 1990 |
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