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Bio-inspired micro-to-nanoporous polymers with tunable stiffness

机译:具有可调节刚度的受生物启发的微纳孔聚合物

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摘要

>Background: Inspired by structural hierarchies and the related excellent mechanical properties of biological materials, we created a smoothly graded micro- to nanoporous structure from a thermoplastic polymer. >Results: The viscoelastic properties for the different pore sizes were investigated in the glassy regime by dynamic flat-punch indentation. Interestingly, the storage modulus was observed to increase with increasing pore-area fraction. >Conclusion: This outcome appears counterintuitive at first sight, but can be rationalized by an increase of the pore wall thickness as determined by our quantitative analysis of the pore structure. Therefore, our approach represents a non-chemical way to tune the elastic properties and their local variation for a broad range of polymers by adjusting the pore size gradient.
机译:>背景:受结构层次结构和生物材料相关的出色机械性能的启发,我们从热塑性聚合物中创建了平滑分级的微孔至纳米孔结构。 >结果:在玻璃态下,通过动态平冲压痕研究了不同孔径的粘弹性。有趣的是,观察到储能模量随着孔面积分数的增加而增加。 >结论:这种结果乍看起来似乎违反直觉,但是可以通过增加孔隙壁厚来合理化,这是由我们对孔隙结构的定量分析确定的。因此,我们的方法代表了一种非化学方法,可通过调节孔径梯度来调节多种聚合物的弹性特性及其局部变化。

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