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首页> 外文期刊>Journal of intelligent material systems and structures >An analytic investigation on behavior of smart devices consisting of reinforced shape memory polymer beams
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An analytic investigation on behavior of smart devices consisting of reinforced shape memory polymer beams

机译:包含形状记忆聚合物梁的智能设备的行为分析研究

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摘要

In this paper, structural behavior of a shape memory polymer (SMP) actuator is analytically studied. This system consists of a reinforced SMP beam and a spring which will be attached to the beam in a part of thermomechanical shape memory effect (SME) cycle. The 3D phenomenological constitutive model for SMP composites, recently proposed by Baghani et al. (2012b), is used as the basis for the beam model employing the Euler-Bernoulli beam theory. We implement and study this model for a reinforced SMP beam undergoing different external transverse loadings, and also under different recovery conditions during heating, e.g., partial stress-strain recovery through utilizing a spring in the heating process. Consequently, the proposed analytical solution can be used as an efficient tool for studying the effects of changing any of the material or geometrical parameters on smart structures consisting of SMP composite beams and actuators for their design and optimization where a large number of simulations is involved.
机译:在本文中,对形状记忆聚合物(SMP)执行器的结构行为进行了分析研究。该系统由一个增强的SMP梁和一个弹簧组成,该弹簧将在热机械形状记忆效应(SME)循环的一部分中连接到该梁。 Baghani等人最近提出了SMP复合材料的3D现象学本构模型。 (2012b)被用作采用欧拉-伯努利光束理论的光束模型的基础。我们针对承受不同外部横向载荷以及在加热过程中处于不同恢复条件下的增强SMP梁实施和研究此模型,例如在加热过程中利用弹簧来恢复部分应力应变。因此,所提出的分析解决方案可以用作研究更改任何材料或几何参数对由SMP复合梁和执行器组成的智能结构的影响的有效工具,以进行涉及大量模拟的设计和优化。

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