首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Characterisation and constitutive modelling of biaxially stretched poly(L-lactic acid) sheet for application in coronary stents
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Characterisation and constitutive modelling of biaxially stretched poly(L-lactic acid) sheet for application in coronary stents

机译:双轴拉伸聚(L-乳酸)片材在冠状动脉支架中的表征及本构型建模

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摘要

A poly(L-lactic acid) stent is exposed to a variety of processing techniques, temperatures and environmental conditions during its lifecycle, from the manufacturing process, to crimping through to deployment within the body. The effect of the biaxial stretching procedure and the effects of temperature and extension rate (post-processing) on the mechanical response of poly(L-lactic acid) are hereby investigated, and a constitutive model calibrated against experimental data is proposed. Dumb-bell specimens were punched from biaxially stretched sheets subjected to different processing histories, and tested under uniaxial tension at various temperatures (20, 37 and 55 degrees C) and extension rates (1, 5 and 10 mm/min). A Design of Experiments methodology was employed to identify the parameters that had the most significant effect on the mechanical response of the polymer. Results show that the elastic modulus and yield strength of the stretched sheets are strongly dependent on the aspect ratio of the biaxial deformation, along with the temperature during uniaxial deformation (post-processing). In contrast, these mechanical properties were not heavily dependent on extension rate (post-processing). A transversely isotropic, elastic-plastic constitutive model for finite element implementation is proposed, with the intention that it may be used as a design tool for developing high stiffness, thin-strut polymeric stents that contend with the performance of their metallic counterparts.
机译:聚(L-乳酸)支架在其生命周期中暴露于各种加工技术,温度和环境条件,从制造过程中卷绕到体内的部署。特此研究了双轴拉伸程序和温度和延伸速率(后处理)对聚(L-乳酸)机械响应的影响,提出了针对实验数据校准的本组成型模型。从经过不同的加工历史的双轴拉伸纸张冲压哑铃样本,并在各种温度(20,37和55℃)和延伸速率(1,5和10mm / min)下在单轴张力下进行测试。使用实验方法的设计方法来鉴定对聚合物的机械响应具有最显着影响的参数。结果表明,拉伸板的弹性模量和屈服强度强烈取决于双轴变形的纵横比,以及单轴变形期间的温度(后处理)。相反,这些机械性能并不严重依赖于延伸速率(后处理)。提出了一种用于有限元实施的横向各向同性,弹性塑性本构型模型,其目的是它可以用作显影高刚度的设计工具,薄型聚合物支架与金属对应物的性能相悖。

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