首页> 外文会议>Proceedings of the 3rd Pan American materials congress >Analysis of Biomimetic Surgical Clip Using Finite Element Modeling for Geometry Improvement and Biomaterials Selection
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Analysis of Biomimetic Surgical Clip Using Finite Element Modeling for Geometry Improvement and Biomaterials Selection

机译:使用有限元建模对仿生手术夹进行分析,以改善几何形状和选择生物材料

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An absorbable suture clip (MU9102934-1) for surgical applications was designed based on the bite mechanism of ant Atta laevigata. In order to emulate the behavior of the ant mandible, the clip was designed to naturally fall after some time, relieving the inconvenience of the clip removal process. The structure consists of a metallic handle and an absorbable polymeric tip. This study aims to optimize its geometry and select the best biomaterials to the handle structure, by analyzing its mechanical performance using the finite element method (FEM). The biomaterials selected for the simulations of the handle were AISI 316L and AISI 420 stainless steels. FEM analysis was performed using ANSYS FE software. The stress and strain distributions for each material and geometry changes were analyzed. From the analysis performed, the clip was optimized in order to be applied in a less traumatic form.
机译:基于蚂蚁Atta laevigata的咬合机制,设计了一种用于外科手术的可吸收缝合夹(MU9102934-1)。为了模拟蚂蚁下颌的行为,夹子经过一段时间后会自然掉落,从而减轻了夹子去除过程的不便。该结构由金属手柄和可吸收的聚合物尖端组成。这项研究旨在通过使用有限元方法(FEM)分析其机械性能来优化其几何形状,并为手柄结构选择最佳的生物材料。选择用于模拟手柄的生物材料是AISI 316L和AISI 420不锈钢。使用ANSYS FE软件进行FEM分析。分析每种材料和几何形状变化的应力和应变分布。从进行的分析中,对夹子进行了优化,以便以较少的创伤形式使用。

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