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Investigation of Interfacial Shear Stresses, Shape Fixity, and Actuation Strain in Composites Incorporating Shape Memory Polymers and Shape Memory Alloys

机译:结合了形状记忆聚合物和形状记忆合金的复合材料的界面剪切应力,形状固定性和致动应变的研究

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Shape memory composites (SMCs) based on shape memory alloys (SMAs) and shape memory polymers (SMPs) allow many design possibilities due to their controllable temperature-dependent mechanical properties. The complementary characteristics of SMAs and SMPs can be utilized in systems with shape recovery created by the SMA and shape fixity provided by the SMP. In this research, three SMC operating regimes are identified and the behavior of SMC structures is analyzed by focusing on composite shape fixity and interfacial stresses. Analytical models show that SMPs can be used to adequately fix the shape of SMA actuators and springs. COMSOL finite element simulations are in agreement with analytical expressions for shape fixity and interfacial stresses. Analytical models are developed for an end-coupled linear SMP-SMA two-way actuator and the predicted strain is shown to be in good agreement with experimental test results.
机译:基于形状记忆合金(SMA)和形状记忆聚合物(SMP)的形状记忆复合材料(SMC)由于具有可控的与温度相关的机械性能,因此具有许多设计可能性。 SMA和SMP的互补特性可用于由SMA创建的形状恢复和SMP提供的形状固定性的系统。在这项研究中,确定了三种SMC操作方式,并通过关注复合形状固定性和界面应力来分析SMC结构的行为。分析模型表明,SMP可用于充分固定SMA执行器和弹簧的形状。 COMSOL有限元模拟与形状固定性和界面应力的解析表达式一致。针对端部耦合线性SMP-SMA双向执行器开发了分析模型,并且预测的应变与实验测试结果非常吻合。

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