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首页> 外文期刊>Journal of biomedical materials research, Part A >A Fracture-Mechanics-Based Approach to Fracture Control in Biomedical Devices Manufactured From Superelastic Nitinol Tube
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A Fracture-Mechanics-Based Approach to Fracture Control in Biomedical Devices Manufactured From Superelastic Nitinol Tube

机译:基于断裂力学的生物医学器械中超弹性镍钛诺管断裂控制方法

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摘要

Several key fracture-mechanics parameters associated with the onset of subcritical and critical cracking, specifically the fracture toughness, crack-resistance curve, and fatigue threshold, have recently been reported for the superelastic alloy Nitinol, in the product form of the thin-walled tube that is used to manufacture several biomedical devices, most notably endovascular stents. In this study, we use these critical parameters to construct simple decision criteria for assessing the quantitative effect of crack-like defects in such Nitinol devices with respect to their resistance to failure by deformation or fracture. The criteria are based on the (equivalent) crack-initiation fracture toughness and fatigue threshold stress-intensity range, together with the general yield strength and fatigue endurance strength, and are used to construct a basis for design against single-event (overload) failures as well as for time-/cycle-delayed failures associated with fatigue.
机译:最近已经报道了以薄壁管形式生产的超弹性合金镍钛诺的一些与次临界和临界裂纹的发生有关的关键断裂力学参数,特别是断裂韧性,抗裂曲线和疲劳阈值。用于制造几种生物医学设备,最著名的是血管内支架。在这项研究中,我们使用这些关键参数来构建简单的决策标准,以评估此类镍钛诺器件中的裂纹状缺陷对变形或断裂破坏的抵抗力的定量效果。该标准基于(等效)裂纹萌生断裂韧性和疲劳阈值应力强度范围,以及一般的屈服强度和疲劳承受强度,并为构造针对单事件(过载)失效的设计基础以及与疲劳相关的时间/周期延迟故障。

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