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首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Heat Treatment Processes and Mechanical Properties of New #beta#-type Biomedical Ti-29Nb-13Ta-4.6Zr Alloy
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Heat Treatment Processes and Mechanical Properties of New #beta#-type Biomedical Ti-29Nb-13Ta-4.6Zr Alloy

机译:热处理工艺和新#β-型生物医学TI-29NB-13TA-4.6ZR合金的机械性能

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摘要

Practical size ingot of new #beta#-type titanium alloy, Ti 29Nb-13Ta-4.6Zr, which was composed of non-toxic elements of Nb, Ta and Zr, with lower modulus of elasticity, high strength and excellent biocompatibility was tried to be fabricated. Then the heat treatment processes of the alloy, which gave a good balance of strength, ductility and modulus of elasticity. were investigated in this study.Practical size ingot of Ti-29Nb-13Ta-4.6Zr with a weight of 17kg has been successfully fabricated. The distribution of alloying elements was homogeneous through the ingot. The practical size ingot can be easily hot forged and cold rolled by a total reduction of 98 percent.Ti 29Nb-13Ta-4.6Zr which was aged after cold rolling indicates higher strength and lower elongation as compared with those of the alloy aged after solution treatment. In the aging temperature range between 598K and 648K, the alloy indicates relatively higher strength and lower elongation. The precipitation of #omega# phase increases tensile strength and decreases elongation in the alloy aged between 598K and 643K after solution treatment. In the aging temperature above 673K, the precipitation of a phase increases tensile strength and elongation in the alloy aged after solution treatment. New alloy has excellent strength ductility relationship when aging temperature was above 673K.
机译:New#β#-Type钛合金的实用尺寸锭,TI 29NB-13TA-4.6ZR,由Nb,Ta和Zr的无毒元素组成,试图较低的弹性模量,高强度和优异的生物相容性制作。然后是合金的热处理方法,其产生了良好的强度,延展性和弹性模量的平衡。在本研究中研究。成功制造了重量为17kg的Ti-29NB-13TA-4.6ZR的折射率范围。合金元素的分布通过铸锭均匀。实用尺寸的铸锭可以很容易地热锻造和冷轧辊,总减少98%。冷轧后老化的Ti 29nB-13TA-4.6ZR表示与溶液处理后老化的合金相比的强度和更低的伸长率。在598K和648K之间的老化温度范围内,合金表示相对较高的强度和更低的伸长率。 #Omega#相的沉淀增加了抗拉强度并降低了溶液处理后598K和643K之间的合金的伸长率。在673K高于673K的衰老温度中,液相沉淀增加了溶液处理后老化的抗拉强度和伸长率。当老化温度高于673K时,新合金具有优异的强度延展性关系。

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