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Mechanical properties of a Gum-type Ti–Nb–Zr–Fe–O alloy

Mechanical properties of a Gum-type Ti–Nb–Zr–Fe–O alloy
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摘要 A new Gum-type alloy(Ti–Nb–Zr–Fe–O) in which Fe is used instead of Ta was subjected to a particular thermomechanical processing scheme to assess whether its mechanical characteristics(fine ?-grains with high strength and low modulus) render it suitable as a biomedical implant material. After a homogenization treatment followed by cold-rolling with 50% reduction, the specimens were subjected to one of three different recrystallization treatments at 1073, 1173, and 1273 K. The structural and mechanical properties of all of the treated specimens were analyzed. The mechanical characterization included tensile tests, microhardness determinations, and fractography by scanning electron microscopy. The possible deformation mechanisms were discussed using the Bo – Md diagram. By correlating all of the experimental results, we concluded that the most promising processing variant corresponds to recrystallization at 1073 K, which can provide suitable mechanical characteristics for this type of alloys: high yield and ultimate tensile strengths(1038 and 1083 MPa, respectively), a low modulus of elasticity(62 GPa), and fine crystalline grain size(approximately 50 ?m). A new Gum-type alloy(Ti–Nb–Zr–Fe–O) in which Fe is used instead of Ta was subjected to a particular thermomechanical processing scheme to assess whether its mechanical characteristics(fine ?-grains with high strength and low modulus) render it suitable as a biomedical implant material. After a homogenization treatment followed by cold-rolling with 50% reduction, the specimens were subjected to one of three different recrystallization treatments at 1073, 1173, and 1273 K. The structural and mechanical properties of all of the treated specimens were analyzed. The mechanical characterization included tensile tests, microhardness determinations, and fractography by scanning electron microscopy. The possible deformation mechanisms were discussed using the Bo – Md diagram. By correlating all of the experimental results, we concluded that the most promising processing variant corresponds to recrystallization at 1073 K, which can provide suitable mechanical characteristics for this type of alloys: high yield and ultimate tensile strengths(1038 and 1083 MPa, respectively), a low modulus of elasticity(62 GPa), and fine crystalline grain size(approximately 50 ?m).
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2017年第8期909-917,共9页 矿物冶金与材料学报(英文版)
基金 supported by a grant of the Romanian National Authority for Scientific Research, Executive Unity for Higher Education Financing, Research, Development and Innovation, Collaborative Project (2014–2016) (No.213/ 2014)
关键词 BIOMATERIALS MECHANICAL properties Gum-type ALLOY THERMOMECHANICAL processing TENSILE test biomaterials mechanical properties Gum-type alloy thermomechanical processing tensile test
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  • 1周宇,杨贤金,崔振铎.新型医用β-钛合金的研究现状及发展趋势[J].金属热处理,2005,30(1):47-50. 被引量:40
  • 2毛彭龄.两相钛合金的相变特征和热处理规范[J].上海钢研,1995(3):50-58. 被引量:16
  • 3查树银,崔振铎,刘彦军,朱胜利,杨贤金.新型医用β-Ti28Nb24.5Zr合金组织和力学性能的研究[J].稀有金属材料与工程,2007,36(1):20-22. 被引量:4
  • 4Niinomi M. Fatigue performance and cyto -toxicity of low rigidity titanium alloy,Ti - 29Nb - 13Ta - 4.6Zr[ J ]. Biomaterials, 2003, 24:2673 - 2683.
  • 5Eisenbarth E , Velten D. Biocompatibility of β- stabilizing elements of titanium alloys [ J]. Biomatefials, 2004, 25:5705 -5713.
  • 6Niinomi M. Recent metallic materials for biomedical applications [ J ]. Metal Mater Trans A, 2002, 33A: 477 - 486.
  • 7Niinomi M. Mechanical properties of biomedical titanium alloys [ J]. Materials Science and Engineering A, 1998, 243 : 231 - 236.
  • 8Gunawarman B, Niinomi Mitsuo, Akahor. Toshikazu, et al. Mechanical properties and microstructures of low cost titanium alloys for healthcare applications [ J ]. Materials Science and Engineering C,2005 ,25:304 - 311.
  • 9Kim Han- Sol , Kim Won - Yong , Lim Sung - Hwan. Micmstrueture and elastic modulus of Ti - Nb - Si ternary alloys for biomedical applications [ J ]. Scripta Materialia, 2006,54:887 - 891.
  • 10Qazi J I, Marquardt B, Allard L F, et al. Phase transformations inTi-35Nb-7Zr-5Ta- (0.06 - 0.68)O alloys[J]. Materials Science and Engineering C, 2005,25:389 -397.

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