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基于d-电子合金设计理论和JMatPro软件新型生物医用钛合金的设计
引用本文:戴世娟,王煜,陈锋,余新泉,张友法.基于d-电子合金设计理论和JMatPro软件新型生物医用钛合金的设计[J].中国有色金属学会会刊,2013,23(10):3027-3032.
作者姓名:戴世娟  王煜  陈锋  余新泉  张友法
作者单位:东南大学 江苏省先进金属材料重点实验室,南京,211189
基金项目:Project (BE2011778) supported by Science and Technology Support Program of Jiangsu Province, China; Project (20133069014) supported by Aeronautical Science Foundation of China
摘    要:基于d-电子合金设计理论和JMatPro软件,运用正交试验,设计了具有较低弹性模量和较高强度且含有无毒元素Nb、Mo、Zr和Sn的新型生物医用∥钛合金Ti-35Nb-4Sn-6Mo-9Zr,并对该合金的显微组织和力学性能进行分析。结果表明,Ti-35Nb-4Sn-6Mo-9Zr合金在800。C下固溶处理后,由单一的β等轴晶构成。与Ti-6Al-4V相比,该合金具有较优越的力学性能:E=65GPa,σb=834MPa,σ0.2=802MPa,6=11%,有望成为新型种植材料。该方法可以有效地降低实验次数,并得到理想的实验结果。

关 键 词:钛合金  d-电子合金设计理论  JMatPro软件  弹性模量  强度
收稿时间:3 September 2012

Design of new biomedical titanium alloy based on d-electron alloy design theory and JMatPro software
Shi-juan DAI,Yu WANG,Feng CHEN,Xin-quan YU,You-fa ZHANG.Design of new biomedical titanium alloy based on d-electron alloy design theory and JMatPro software[J].Transactions of Nonferrous Metals Society of China,2013,23(10):3027-3032.
Authors:Shi-juan DAI  Yu WANG  Feng CHEN  Xin-quan YU  You-fa ZHANG
Affiliation:(Jiangsu Key Laboratory of Advanced Metallic Materials, Southeast University, Nanjing 211189, China Received 3 September 2012; accepted 4 May 2013)
Abstract:A new kind offl biomedical titanium alloy, Ti-35Nb-4Sn-6Mo-9Zr, composed of non-toxic elements Nb, Mo, Zr and Sn with lower elastic modulus and higher strength was designed based on d-electron alloy design theory and JMatPro software using orthogonal experiment. The microstructure and basic mechanical properties of designed alloy were investigated. The results show that the alloy is composed of single fl equiaxed grains after solution treatment at 800 ~C. Compared with Ti-6A1-4V, the mechanical properties of the designed alloy are more excellent: E=65 GPa, σb=834 MPa, σ0.2=802 MPa, and σ=11%, which is expected to become a promising new type implanted material. The research approach adopted can reduce the experimental time and cost effectively, and get the ideal experimental results.
Keywords:titanium alloy  d-electron alloy design theory  JMatPro software  elastic modulus  strength
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