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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >An Overview of Mechanical Properties and Material Modeling of Polylactide (PLA) for Medical Applications
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An Overview of Mechanical Properties and Material Modeling of Polylactide (PLA) for Medical Applications

机译:医用聚乳酸(PLA)的力学性能和材料建模概述

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This article provides an overview of the connection between the microstructural state and the mechanical response of various bioresorbable polylactide (PLA) devices for medical applications. PLLA is currently the most commonly used material for bioresorbable stents and sutures, and its use is increasing in many other medical applications. The non-linear mechanical response of PLLA, due in part to its low glass transition temperature (T-g approximate to 60 degrees C), is highly sensitive to the molecular weight and molecular orientation field, the degree of crystallinity, and the physical aging time. These microstructural parameters can be tailored for specific applications using different resin formulations and processing conditions. The stress-strain, deformation, and degradation response of a bioresorbable medical device is also strongly dependent on the time history of applied loads and boundary conditions. All of these factors can be incorporated into a suitable constitutive model that captures the multiple physics that are involved in the device response. Currently developed constitutive models already provide powerful computations simulation tools, and more progress in this area is expected to occur in the coming years.
机译:本文概述了医疗应用中各种生物可吸收性聚乳酸(PLA)装置的微观结构状态与机械响应之间的联系。 PLLA是目前用于生物可吸收支架和缝合线的最常用材料,并且在许多其他医疗应用中的使用正在增加。部分由于其低的玻璃化转变温度(T-g约60摄氏度),PLLA的非线性机械响应对分子量和分子取向场,结晶度和物理老化时间高度敏感。这些微结构参数可以使用不同的树脂配方和加工条件针对特定应用进行定制。生物可吸收医疗器械的应力应变,变形和降解响应也强烈取决于所施加载荷和边界条件的时间历程。所有这些因素都可以合并到一个合适的本构模型中,该模型可以捕获设备响应中涉及的多种物理现象。当前开发的本构模型已经提供了强大的计算仿真工具,并且在未来几年中有望在此领域取得更大的进步。

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