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A Mechanical Analysis of Chemically Stimulated Linear Shape Memory Polymer Actuation

机译:化学刺激线性形状记忆聚合物致动的力学分析

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摘要

In the present work, we study the role of programming strain (50% and 100%), end loads (0, 0.5, 1.0, and 1.5 MPa), and chemical environments (acetone, ethanol, and water) on the exploitable stroke of linear shape memory polymer (SMP) actuators made from ESTANE ETE 75DT3 (SMP-E). Dynamic mechanical thermal analysis (DMTA) shows how the uptake of solvents results in a decrease in the glass temperature of the molecular switch component of SMP-E. A novel in situ technique allows studying chemically triggered shape recovery as a function of time. It is found that the velocity of actuation decreases in the order acetone > ethanol > water, while the exploitable strokes show the inverse tendency and increases in the order water > ethanol > acetone. The results are interpreted on the basis of the underlying chemical (how solvents affect thermophysical properties) and micromechanical processes (the phenomenological spring dashpot model of Lethersich type rationalizes the behavior). The study provides initial data which can be used for micromechanical modeling of chemically triggered actuation of SMPs. The results are discussed in the light of underlying chemical and mechanical elementary processes, and areas in need of further work are highlighted.
机译:在目前的工作中,我们研究了编程菌株(50%和100%)的作用,结束载荷(0,0.5,1.0和1.5MPa),以及化学环境(丙酮,乙醇和水)在可利用的行程中线性形状记忆聚合物(SMP)致动器由Estane Eete 75DT3(SMP-E)制成。动态机械热分析(DMTA)显示了溶剂的摄取方式如何降低SMP-E的分子开关组分的玻璃温度。一种新颖的原位技术允许在时间的函数中研究化学触发的形状恢复。发现致动的速度在丙酮丙酮序列中的速度降低,而可利用的中风显示出逆趋势并增加乙醇>丙酮的乙醇>丙酮。结果是根据潜在的化学物质(溶剂如何影响热物理性质)和微机械过程(Lethersich型的现象春天Dashpot模型合理化行为)的解释。该研究提供了可用于化学触发SMPS的微机械建模的初始数据。根据潜在的化学和机械基础工艺讨论结果,突出了需要进一步工作的区域。

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