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首页> 外文期刊>Journal of intelligent material systems and structures >Bending theory for laminated composite cantilever beams with multiple embedded shape memory alloy layers
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Bending theory for laminated composite cantilever beams with multiple embedded shape memory alloy layers

机译:多层埋入式形状记忆合金层合的复合悬臂梁的弯曲理论

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摘要

In this article, a new analytical model is proposed for laminated composite cantilever beams consisting of multiple alternating superelastic shape memory alloy and elastic layers. The model is based on the Zaki-Moumni model for shape memory alloys combined with Timoshenko's beam theory. The Zaki-Moumni model accounts for solid phase transformation as well as detwinning and reorientation of martensite under multiaxial thermomechanical loading conditions. Mathematical formulas are first derived to characterize the evolution of the solid phase structure within the beam with a prescribed load at the tip during loading and unloading. Analytical moment-curvature and shear force-shear strain relations are then obtained following the strength of materials approach. The present work is the first to fully develop the nonlinear expressions of the axial stress in terms of the distance from the neutral plane and to allow the description of the phase distribution in both the longitudinal and the transverse directions in the beam as the load evolves. The proposed model is validated against finite element analysis and high-accuracy numerical solutions. The influence of temperature and the number of shape memory alloy layers on the superelastic behavior of the laminate is also investigated.
机译:本文提出了一种由多层交替的超弹性形状记忆合金和弹性层组成的层合复合悬臂梁的新分析模型。该模型基于形状记忆合金的Zaki-Moumni模型并结合了Timoshenko的梁理论。 Zaki-Moumni模型考虑了在多轴热机械载荷条件下的固相转变以及马氏体的解缠和重新取向。首先推导数学公式,以表征在加载和卸载期间尖端处有指定载荷的情况下梁内固相结构的演变。然后,根据材料强度的方法,获得了解析的弯矩曲率和剪切力-剪切应变关系。目前的工作是第一个充分开发轴向应力的非线性表达式(从中性面到中性面的距离),并允许描述随着载荷的变化在梁的纵向和横向方向上的相位分布。针对有限元分析和高精度数值解验证了该模型的有效性。还研究了温度和形状记忆合金层数对层压板超弹性行为的影响。

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