Microstructural adjustments and mechanical properties of a cold-rolled biomedical near β−Ti alloy sheet

被引:0
作者
Xi-Qun Ma
Hong-Zhi Niu
Zhen-Tao Yu
Sen Yu
Chang Wang
机构
[1] Northwest Institute for Nonferrous Metal Research,School of Materials Science and Engineering
[2] Northeastern University,undefined
来源
Rare Metals | 2018年 / 37卷
关键词
Near β-Ti alloy; Microstructures; Phase transformation; Mechanical properties;
D O I
暂无
中图分类号
学科分类号
摘要
In this study, microstructural adjustments and mechanical properties of a cold-rolled near β-type alloy Ti−25Nb−3Zr−3Mo−2Sn (wt%) sheet were investigated. Microstructures and phase transformation products strongly depended on aging temperatures. Solution treatments within single β-phase field removed the stress-induced α″ martensites and produced a few new lath-shaped ones, but metastable β phase still dominated. This is exactly the reason why current alloy exhibits the lowest modulus (54 GPa) and best elongation to fracture (39 %), but the worst yield strength of only 340 MPa, at solution-treated state. A fairly large number of ellipsoidal ω phase nanoparticles precipitated throughout parent β phase during aging at 380 °C. These ω nanoparticles possess remarkable strengthening effect, but deteriorate ductility seriously. A novel post-aging process was proposed to remove brittle ω phase. By contrast, aging at 450 °C resulted in sufficient precipitation of fine needle-like α phase. This brought about the best combination of high yield strength (770 MPa) and moderate elastic modulus (75 GPa) and good elongation (15 %) for biomedical implants.
引用
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页码:846 / 851
页数:5
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