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β 型 Ti-29Nb-13Ta-4.6Zr 合金单晶各向同性塑性用于开发单晶β-Ti 植入物。

Isotropic plasticity of β-type Ti-29Nb-13Ta-4.6Zr alloy single crystals for the development of single crystalline β-Ti implants.

机构信息

Department of Adaptive Machine Systems, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.

Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

Sci Rep. 2016 Jul 15;6:29779. doi: 10.1038/srep29779.

Abstract

β-type Ti-29Nb-13Ta-4.6Zr alloy is a promising novel material for biomedical applications. We have proposed a 'single crystalline β-Ti implant' as new hard tissue replacements for suppressing the stress shielding by achieving a drastic reduction in the Young's modulus. To develop this, the orientation dependence of the plastic deformation behavior of the Ti-29Nb-13Ta-4.6Zr single crystal was first clarified. Dislocation slip with a Burgers vector parallel to <111> was the predominant deformation mode in the wide loading orientation. The orientation dependence of the yield stress due to <111> dislocations was small, in contrast to other β-Ti alloys. In addition, {332} twin was found to be operative at the loading orientation around [001]. The asymmetric features of the {332} twin formation depending on the loading orientation could be roughly anticipated by their Schmid factors. However, the critical resolved shear stress for the {332} twins appeared to show orientation dependence. The simultaneous operation of <111> slip and {332} twin were found to be the origin of the good mechanical properties with excellent strength and ductility. It was clarified that the Ti-29Nb-13Ta-4.6Zr alloy single crystal shows the "plastically almost-isotropic and elastically highly-anisotropic" nature, that is desirable for the development of 'single crystalline β-Ti implant'.

摘要

β 型 Ti-29Nb-13Ta-4.6Zr 合金是一种有前途的新型生物医学应用材料。我们提出了一种“单晶β-Ti 植入物”作为新的硬组织替代物,通过大幅降低杨氏模量来抑制应力屏蔽。为了开发这种材料,首先要阐明 Ti-29Nb-13Ta-4.6Zr 单晶的塑性变形行为的各向异性。具有平行于<111>的柏氏矢量的位错滑移是在较宽的加载方向上的主要变形模式。与其他β-Ti 合金相比,由于<111>位错引起的屈服应力的各向异性很小。此外,在接近[001]的加载方向上发现{332}孪晶起作用。{332}孪晶形成的不对称特征取决于加载方向上的施密特因子,可以大致预测。然而,{332}孪晶的临界分切应力似乎表现出各向异性。<111>滑移和{332}孪晶的同时作用是具有优异强度和延展性的良好力学性能的起源。阐明了 Ti-29Nb-13Ta-4.6Zr 合金单晶具有“塑性几乎各向同性和弹性高度各向异性”的性质,这是开发“单晶β-Ti 植入物”所需要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/612c/4945923/94485aece007/srep29779-f1.jpg

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