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Dynamic mechanical analysis for rapid assessment of the time-dependent recovery behavior of shape memory polymers

机译:动态力学分析可快速评估形状记忆聚合物随时间变化的恢复行为

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Thermally activated shape memory polymers (SMPs) recover from a secondary shape induced by mechanical deformation to a primary equilibrium shape when they are heated to their actuation temperature. In certain applications, for example in the biomedical field, it may be necessary to control the rate of shape recovery under isothermal conditions, which requires knowledge of the time-dependent response of the SMP. In the present work, the time dependence of isothermal shape recovery has been investigated for polyurethane-based SMPs with two different molecular architectures. The results are discussed in terms of a linear thermo-viscoelastic model for the time and temperature dependence of the shape memory response at small strains, using data from single constant frequency dynamic mechanical analysis (DMA) temperature sweeps. This approach is based on the establishment of an approximate relationship between the storage modulus, the loss modulus and the shift factor, aT(t), usually derived from time-temperature superposition of isothermal data obtained at different temperatures. The DMA data are thus shown to provide an approximate measure of the relaxation and retardation time spectra, which may in turn be used to predict the shape memory response to a simple programming-isothermal shape recovery sequence. This procedure is argued to permit rapid quantitative comparison of the shape memory performance of different materials, with minimal experimental characterization, and is hence potentially a useful tool for designing materials for specific applications.
机译:当将热活化的形状记忆聚合物(SMP)加热到其致动温度时,它们会从由机械变形引起的次级形状恢复为初级平衡形状。在某些应用中,例如在生物医学领域,可能需要控制等温条件下形状恢复的速率,这需要了解SMP的时间依赖性响应。在本工作中,已经研究了具有两种不同分子结构的聚氨酯基SMP的等温形状恢复的时间依赖性。使用来自单个恒定频率动态力学分析(DMA)温度扫描的数据,以线性热粘弹性模型讨论了小应变下形状记忆响应的时间和温度依赖性的结果。该方法基于在存储模量,损耗模量和移动因子aT(t)之间建立近似关系,通常从不同温度下获得的等温数据的时间-温度叠加得出。因此,显示的DMA数据可提供弛豫和延迟时间谱的近似度量,进而可用于预测对简单编程-等温形状恢复序列的形状记忆响应。该程序被认为可以在最小化实验特征的情况下,对不同材料的形状记忆性能进行快速定量比较,因此是潜在地为特定应用设计材料的有用工具。

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