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Quantifying the shape-memory effect of polymers by cyclic thermomechanical tests

机译:通过循环热机械测试量化聚合物的形状记忆效应

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Shape-memory polymers (SMPs) can be deformed and fixed in defined temporary shapes, which significantly differ from their original shape and remain unchanged until exposed to heat or other stimuli. The shape-memory effect (SME) of polymers is generally quantified in cyclic thermomechanical experiments, which allow to simultaneously control stress or strain and temperature during programming and recovery. Characteristic shape-memory quantities such as the shape-fixity ratio R_f and shape-recovery ratio R_r as well as the specific response temperatures can be determined from the obtained stress-temperature-strain curves. This review reports on the most common cyclic testing methods utilizing tensile, bending, and compression experiments for examination of dual-shape polymers. Furthermore, recently developed testing protocols for triple- and multi-shape polymers as well as materials that exhibit a temperature-memory effect or can show a two-way SME under constant stress are discussed.
机译:形状记忆聚合物 (SMP) 可以变形并固定在定义的临时形状中,这些形状与其原始形状显着不同,并且在暴露于热或其他刺激之前保持不变。聚合物的形状记忆效应(SME)通常在循环热机械实验中量化,这允许在编程和恢复过程中同时控制应力或应变和温度。从获得的应力-温度-应变曲线中可以确定特征形状记忆量,例如形状-固定比R_f和形状恢复比R_r以及特定的响应温度。这篇综述报告了利用拉伸、弯曲和压缩实验来检查双形聚合物的最常见循环测试方法。此外,还讨论了最近开发的三重和多形状聚合物以及表现出温度记忆效应或可以在恒定应力下显示双向 SME 的材料的测试协议。

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