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Phase Transformation of Biomedical Metastable β Titanium Alloy during Aging

机译:生物医学亚稳态β钛合金的时效相变

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摘要

A kind of metastable β type Ti-30Nb-13Zr-0.5Fe (wt.%) alloy for biomedical application was newly designed and developed. In order to exam the phase transformation during aging and its effects on the mechanical properties, the alloy was β solubilized and aged at 350°C - 550°C for 4 hours. The microstructures were observed by OM and TEM, and the phase structures were identified by XRD. The tensile tests were performed with various aged microstructures. The results show that a lot of ω phase precipitates during aging at 350°C, leading to the increase of strength and elastic modulus and drastic decrease of plasticity. Aging at 450°C, dot α phase uniformly precipitates from metastable β phase. The good combination of high strength 、 high plasticity and low elastic modulus was obtained under this aging condition. With increasing aging temperature and aging time α precipitations coarsen and precipitation free zones (PFZ) along prior β grain boundaries form, which are the main reasons to lower the strength and plasticity.
机译:新设计开发了一种用于生物医学的亚稳态β型Ti-30Nb-13Zr-0.5Fe(wt。%)合金。为了检查时效过程中的相变及其对机械性能的影响,将合金溶解并在350°C-550°C的温度下进行4小时的时效处理。通过OM和TEM观察其微观结构,并通过XRD鉴定相结构。对各种老化的微结构进行了拉伸试验。结果表明,在350°C时效过程中,大量的ω相析出,导致强度和弹性模量的增加,塑性的急剧下降。在450°C时效时,点α相从亚稳β相中均匀地析出。在这种时效条件下获得了高强度,高塑性和低弹性模量的良好组合。随着时效温度和时效时间的增加,α的沉淀会粗大,沿先前的β晶界会形成无沉淀区(PFZ),这是降低强度和塑性的主要原因。

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