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Accuracy of laser cutting and its influence on mechanical behavior of stents

机译:激光切割的准确性及其对支架力学行为的影响

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A coronary stent is a mechanical device designed to open arteries that have been occluded. The manufacturing of stents involves the laser-cutting of specific designs in stainless steel tubes. In order to determine the mechanical behaviour of stents, tensile tests are performed on straight beams. The tensile test specimens are laser-cut into the same tubes as used in the manufacturing of stents. The hardening curves obtained show that the yield stress increases when the width of the struts decreases, whereas the breaking point increases when the width increases. In order to understand this phenomenon, the role of laser-cutting is investigated. Firstly, it is shown that the heat-affected-zone, associated with laser-cut items, is very small compared to the size of the specimen. Therefore, the influence of the heat-affected-zone is considered as negligible. The inaccuracy of laser-cutting is then studied by measuring a succession of straight beams. A difference in width between the two extremities of the strut is observed. The error increases when the width of the beam decreases. An F.E.A analysis of the tensile test shows a stress concentration at the smaller extremity, explaining why the true strain at breaking point decreases with the width of the struts.
机译:冠状动脉支架是设计用于打开已被遮挡的动脉的机械装置。支架的制造涉及在不锈钢管中的特定设计的激光切割。为了确定支架的机械性能,在直梁上执行拉伸试验。拉伸试验标本激光进入与支架制造中使用的相同管子。获得的硬化曲线表明,当支柱的宽度降低时屈服应力增加,而断裂点在宽度增加时增加。为了理解这种现象,研究了激光切割的作用。首先,显示与激光切割物品相关的热影响区,与样本的尺寸相比非常小。因此,热影响区域的影响被认为是可忽略的。然后通过测量连续的直梁来研究激光切割的不准确性。观察到支柱的两个末端之间的宽度差异。光束宽度减小时误差会增加。张力试验的F.A分析显示较小末端的应力浓度,解释为什么断裂点的真实应变随着支柱的宽度而降低。

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