Fabrication of polymer-based stents: Impact of test specimen manufacturing protocol

Q4 Engineering
Daniela Koper, Sebastian Kaule, Klaus-Peter Schmitz, Niels Grabow, Stefan Oschatz
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Abstract

Abstract Various manufacturing techniques are available for polymer stent fabrication. Polymer semi-finished products can be prepared using solvent based methods, e.g. dip coating, as well as thermal processes, e.g. extrusion. These different methods may lead to an altered polymer crystal structure, resulting in a different deformation mechanism during mechanical stress. For the material property characterization needed for implant development, the test specimens usually are prepared using laser-cut or die-cut methods. Due to these different preparation protocols, a change in polymer microstructure, causing a material property variation, may also result. For this purpose, comparison of laser-cut versus die-cut of PLLA films has been performed. PLLA films have been prepared by dip-coating and were evaluated with respect to structural, thermal, and mechanical properties. In this study, a combination of uniaxial tensile tests, SEM and DSC studies was used. The results of the mechanical tests showed drastic differences in the elongations at break of die-cut specimens compared to laser-cut ones. The results point out formation of complex crystal structures during the manufacturing process. By the use of SEM imaging and DSC measurements, we were able to attribute these changes to the different plastic deformation mechanisms.
聚合物基支架的制造:试样制造方案的影响
聚合物支架的制造技术多种多样。聚合物半成品可以用溶剂为基础的方法来制备,例如浸涂,也可以用热工艺来制备,例如挤出。这些不同的方法可能导致聚合物晶体结构的改变,从而导致机械应力时不同的变形机制。对于植入物开发所需的材料特性表征,测试样品通常使用激光切割或模切方法制备。由于这些不同的制备方案,聚合物微观结构的变化,导致材料性质的变化,也可能导致。为此,对PLLA薄膜的激光切割与模切进行了比较。PLLA薄膜是通过浸涂法制备的,并对其结构、热学和机械性能进行了评价。在这项研究中,结合单轴拉伸试验,扫描电镜和DSC研究。力学试验结果表明,模切试样的断裂伸长率与激光切割试样的断裂伸长率存在显著差异。结果表明,在制造过程中形成了复杂的晶体结构。通过使用SEM成像和DSC测量,我们能够将这些变化归因于不同的塑性变形机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Current Directions in Biomedical Engineering
Current Directions in Biomedical Engineering Engineering-Biomedical Engineering
CiteScore
0.90
自引率
0.00%
发文量
239
审稿时长
14 weeks
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