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首页> 外文期刊>Journal of intelligent material systems and structures >Light-induced vibration control of parabolic cylindrical shell panels
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Light-induced vibration control of parabolic cylindrical shell panels

机译:抛物线形圆柱壳面板的光致振动控制

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摘要

Parabolic cylindrical shell panel is useful in the aerospace. Light-activated shape memory polymer is a novel kind of smart materials. It is capable of offering a non-contact control way at the room temperature. In this study, the parabolic cylindrical shell panel laminated with light-activated shape memory polymer actuators is analyzed. First, the dynamic equations of the parabolic cylindrical shell panel coupled with light-activated shape memory polymer actuators are established; the modal control force of light-activated shape memory polymer actuators is derived with the modal expansion method. Then, the strain variation of light-activated shape memory polymer actuators is modeled based on the chemical kinetics. Furthermore, Young's modulus of light-activated shape memory polymer actuators is measured through the biaxial tension experiments. The strain variation of light-activated shape memory polymer actuator with initial strain is also measured. The established strain model is validated by the experimental data of strain variation. In this case study, the snap-back control effects of the first four modes, that is, the (1,3), (1,4), (2,4), and (2,5) modes are evaluated. The study shows light-activated shape memory polymer actuators are effective to control the vibration of parabolic cylindrical shell panels. Light-activated shape memory polymer actuators have potential applications for the vibration control of double-curvature shells.
机译:抛物线形圆柱壳面板在航空航天中很有用。光活化形状记忆聚合物是一种新型的智能材料。它能够在室温下提供非接触式控制方式。在这项研究中,抛物线形圆柱壳面板与光激活的形状记忆聚合物致动器层压在一起。首先,建立抛物线形圆柱壳面板与光激活形状记忆聚合物致动器耦合的动力学方程。利用模态展开法推导了光活化形状记忆聚合物致动器的模态控制力。然后,基于化学动力学对光活化形状记忆聚合物致动器的应变变化进行建模。此外,通过双轴拉伸实验测量了光活化形状记忆聚合物致动器的杨氏模量。还测量了光活化形状记忆聚合物致动器在初始应变下的应变变化。通过应变变化的实验数据验证了建立的应变模型。在此案例研究中,评估了前四个模式(即(1,3),(1,4),(2,4)和(2,5)模式)的快速控制效果。研究表明,光激活形状记忆聚合物致动器可有效控制抛物线形圆柱壳面板的振动。光活化形状记忆聚合物致动器在控制双曲率壳体的振动方面具有潜在的应用。

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