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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Analytical investigation of composite sandwich beams filled with shape memory polymer corrugated core
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Analytical investigation of composite sandwich beams filled with shape memory polymer corrugated core

机译:填充形状记忆聚合物波纹芯的复合夹层梁的分析研究

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摘要

Shape memory polymers (SMPs) are a class of smart materials which can recover their shape even after many shape changes in application of an external stimulus. In this paper, flexural behavior of a composite beam, constructed of a corrugated part filled with SMPs, is studied. This composite beam is applicable in sensor and actuator applications. Since the corrugated profiles display higher stiffness-to-mass ratio in the transverse to the corrugation direction, the beams with a corrugated part along the transverse direction are stiffer than ones with a corrugated part along the length. Employing a developed constitutive model for SMPs and the Euler-Bernoulli beam theory, the behavior of the composite beam is studied. Since the utilized constitutive model is in the integral form, the finite-difference-method is used for discretizing the equations. It is shown that load capacity is increased in both composite beams compared to a pure SMP beam. This bigger load capacity is obtained by a low decrease in shape fixity. In addition, for different corrugated shapes (trapezoidal, pseudo-sinusoidal and triangular) with the same SMP content, the beam response is obtained. Finally, the results of the constrained stress-recovery are obtained and the effects of mechanical properties on its behavior, are studied.
机译:形状记忆聚合物(SMPS)是一类智能材料,即使在应用外部刺激的许多形状变化之后,也可以恢复它们的形状。本文研究了由填充有SMPS的波纹部分构成的复合梁的弯曲行为。该复合梁适用于传感器和执行器应用。由于波纹型材在横向于波纹方向上显示较高的刚度质量比,因此沿着横向的波纹部分的梁比沿着长度的波纹部件更硬。采用SMPS和Euler-Bernoulli光束理论的开发的本构体模型,研究了复合梁的行为。由于利用的本构模型处于整体形式,因此使用有限差分方法用于离散化方程。结果表明,与纯SMP光束相比,两个复合光束中的负载容量增加。这种更大的负载能力是通过形状固定性的低降低而获得的。另外,对于具有相同SMP含量的不同波纹形状(梯形,伪窦和三角形),获得光束响应。最后,研究了受约束应力回收的结果,研究了机械性能对其行为的影响。

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