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Injection Molding Micro‐ and Nanostructures in Thermoplastic Elastomers

机译:热塑性弹性体的注塑微结构和纳米结构

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摘要

Flexible polymers such as poly dimethyl siloxane (PDMS) can be patterned at the micro‐ and nanoscale by casting, for a variety of applications. This replication‐based fabrication process is relatively cheap and fast, yet injection molding offers an even faster and cheaper alternative to PDMS casting, provided thermoplastic polymers with similar mechanical properties can be used. In this paper, a thermoplastic polyurethane is evaluated for its patterning ability with an aim to forming the type of flexible structures used to measure and modulate the contractile forces of cells in tissue engineering experiments. The successful replication of grating structures is demonstrated with feature sizes as low as 100 nm and an analysis of certain processing conditions that facilitate and enhance the accuracy of this replication is presented. The results are benchmarked against an optical storage media grade polycarbonate.
机译:诸如聚二甲基硅氧烷(PDMS)之类的柔性聚合物可以通过铸造在微米和纳米级上进行图案化,以用于各种应用。这种基于复制的制造过程相对便宜且快速,但是如果可以使用具有类似机械性能的热塑性聚合物,则注模可以提供比PDMS铸造更快甚至更便宜的替代方法。在本文中,对热塑性聚氨酯的图案化能力进行了评估,目的是形成用于测量和调节组织工程实验中细胞收缩力的柔性结构类型。光栅结构的成功复制已被证明具有低至100 nm的特征尺寸,并介绍了有助于并提高复制精度的某些加工条件。该结果以光存储介质级聚碳酸酯为基准。

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