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通过采用Gleeble-1500D热模拟试验机进行超塑性变形试验,研究变形温度和应变速率对置氢TC4合金超塑变形性能的影响,利用XRD,SEM和TEM分析热氢处理改善钛合金超塑性能的机制.结果表明:置氢可降低超塑成形流变应力、变形温度,提高应变速率和m值;但只有适量的氢才有利于改善钛合金超塑性,即存在一个最佳置氢量;置氢0.35%H(质量分数)的TC4合金在800℃和3×10-3 s-1条件下仍有一定超塑性.分析表明,置氢钛合金超塑变形过程除晶粒转动和滑动机制外,位错滑移和孪生也作为辅助超塑变形机制.

参考文献

[1] Eliaz N.;Olson DL.;Eliezer D. .Hydrogen-assisted processing of materials [Review][J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2000(1/2):41-53.
[2] Froes F H;Eliezer D;Senkov O N;Dazj I.Beneficial Effects of Hydrogen as a Temporary Alloying Element in Titanium Alloys:An Overview[M].Moran,WY,USA:TMS,2003:301.
[3] Kolaehev B A;Ilyin A A;Nosov V K.Hydrogen Technology as New Perspective Type of Titanium Alloy Processing[M].Anaheim,CA,USA:TMS,1996:331.
[4] Senkov O.N.;Jonas J.J. .Recent Advances in the Thermo hydrogen Processing of Titanium Alloys[J].JOM,1996(7):42-47.
[5] 张浩;许嘉龙;王世洪.氢对Ti-6Al-4V显微组织及超塑性变形的影响[J].上海钢研,1991(01):12-19,49.
[6] Fang T Y;Wang W H .The influence of temporary alloying of hydrogen on the microstructure and superplasticity of Ti-6Al-4V alloy[J].Proceedings of the National Science Council Part A (Physical Science and Engineering),1998,22:116.
[7] 杜忠权,王高潮,陈玉秀.渗氢处理细化Ti-10V-2Fe-3Al合金组织及改善其超塑性性能的效果[J].航空学报,1994(07):882.
[8] Zhang S;Zhao L .Effect of hydrogen on the superplasticity and mierostructure of Ti-6Al-4V alloy[J].Journal of Alloys and Compounds,1995,218:233.
[9] Bai B Z;Sun X J;Gu J L;Yang L Y.Superplastic behavior of a Ti-Alloy with ultrafine grain size[A].Orlando(USA),2001:105.
[10] 冯端;王业宁;沈惠敏;吴希俊 孔庆平.金属物理学第三卷金属力学性质[M].北京:科学出版社,1999:343.
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