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Experimental Studies of NiTi Self-Expanding Stent Designs

机译:NiTi自扩张支架设计的实验研究

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摘要

Preliminary investigations to apply thermoelastic stress analysis (TSA) to Nitinol self-expanding stents are described. Tests conducted at high resolution indicated that a viable thermoelastic signal can be obtained from the fine stent structure. It is shown that it is possible to digitally compensate for errors arising from motion at this high resolution. High variability in Nitinol's material properties with stress and temperature result in a complex thermoelastic response. Correction strategies are proposed to account for variation in material properties and to minimize errors due to thermal variations in order to derive calibration factors for the austenite and martensite material phases. The greatest challenge is identified as calibrating the thermoelastic response from the radially loaded stent structure where it is likely the material is highly inhomogeneous.
机译:描述了将热弹性应力分析(TSA)应用于镍钛诺自膨胀支架的初步研究。在高分辨率下进行的测试表明,可以从精细的支架结构获得可行的热弹性信号。结果表明,可以在这种高分辨率下以数字方式补偿由运动引起的误差。镍钛诺材料特性随应力和温度的高度变化会导致复杂的热弹性响应。提出校正策略以考虑材料特性的变化并使由于热变化引起的误差最小化,以便得出奥氏体和马氏体材料相的校准因子。最大的挑战被确定为校准来自径向加载的支架结构的热弹性响应,在这种情况下材料可能高度不均匀。

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