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生物医用Ti-29Nb-13Ta-5Zr合金的超塑性行为
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南京航空航天大学人才引进基金(S0565)


Superplasticity Behavior of Ti-29Nb-13Ta-5Zr for Biomedical Application
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    摘要:

    采用拉伸速率突变法,研究Ti-29Nb-13Ta-5Zr(Ti-29-13)合金冷轧后在700~800 ℃和5′10-4~1′10-2 s-1应变速率范围内的高温变形行为和变形机制,并与典型β钛合金Ti-15V-3Cr-3Sn-3Al(Ti-15-3)进行比较。结果显示两种合金中均出现了非连续屈服现象,Ti-29-13合金的亚晶行为不同于Ti-15-3合金。Ti-29-13合金的延伸率低于Ti-15-3合金,应力指数n几乎恒定为3.3,变形激活能为152~161 kJ/mol;Ti-15-3合金在730 ℃以上的n值为2.3~2.5,变形激活能为173~176 kJ/mol。

    Abstract:

    Incremental step strain-rate test in the temperature range of 700-800 oC and the strain rate range of 5′10-4–1′10-2 s-1 were conducted for investigation of high temperature deformation behavior of Ti-29Nb-13Ta-5Zr (Ti-29-13), as well as another typical β titanium alloy Ti-15V-3Cr-3Sn-3Al (Ti-15-3). Results show there exist discontinuous yielding phenomenon in both alloys and the subgrain behavior is different between them. The strain to failure of Ti-29-13 is lower than that of Ti-15-3. In the deformation of Ti-29-13, the stress exponent is near 3.3, which is almost constant, and the deformation activation energy is 152-161 kJ/mol; while in the deformation of Ti-15-3, the stress exponent at the temperatures higher than 730 oC is 2.3-2.5, and the deformation activation energy is 173-176 kJ/mol.

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张方哲,周 清,童国权,陈明和,陶克梅.生物医用Ti-29Nb-13Ta-5Zr合金的超塑性行为[J].稀有金属材料与工程,2011,40(2):231~235.[Zhang Fangzhe, Zhou Qing, Tong Guoquan, Chen Minghe, Tao Kemei. Superplasticity Behavior of Ti-29Nb-13Ta-5Zr for Biomedical Application[J]. Rare Metal Materials and Engineering,2011,40(2):231~235.]
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  • 收稿日期:2010-03-01
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