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Changeable Young's modulus with large elongation-to-failure in P-type titanium alloys for spinal fixation applications

机译:用于脊柱固定应用的P型钛合金中具有大断裂伸长率的可变杨氏模量

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摘要

Materials used for implant rods in spinal fixation systems must show changeable Young's moduli, high strength and large elongation-to-failure. A d-electron design method was used to determine the chemical composition of Ti-10Cr, which showed all these properties and significant work-hardening characteristics owing to multiple plastic deformation mechanisms, such as deformation-induced co-phase transformation, {332}<113> mechanical twinning and dislocation gliding. Therefore, Ti-10Cr exhibits great potential for use in spinal fixation applications.
机译:脊柱固定系统中用于植入棒的材料必须显示出可变的杨氏模量,高强度和较大的断裂伸长率。 d电子设计方法用于确定Ti-10Cr的化学成分,该化学成分由于多种塑性变形机制(如变形诱导的同相转变,{332} < 113>机械孪晶和位错滑行。因此,Ti-10Cr在脊柱固定应用中显示出巨大的潜力。

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