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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Stiffness Contrast and Separation Influence Wrinkling of Adjacent Layers in a Homogeneous Matrix
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Stiffness Contrast and Separation Influence Wrinkling of Adjacent Layers in a Homogeneous Matrix

机译:刚度对比度和分离在均相矩阵中的相邻层的皱折

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摘要

In this paper, we study the wrinkling instability of two layers embedded in a homogeneous matrix of infinite size. Using a linear stability analysis, we characterize the wrinkling of the two layers as a function of the layer spacing and the shear moduli ratio between the two materials. When the layers are stiffer than the surrounding matrix, stiffness contrast largely determines the stability behavior of the system. When the layers are softer than the surrounding matrix, stiffness contrast and layer spacing interact to determine critical threshold strain and wavelength, and result in striking discontinuities in wavelength between regimes. When the layers are close to each other, the system has a strong preference for the symmetric wrinkling mode, but as the distance between the two layers increases, the anti-symmetric mode may emerge.
机译:在本文中,我们研究了嵌入嵌入无限尺寸的均匀矩阵的两层的皱纹不稳定性。 使用线性稳定性分析,我们表征了两层的皱纹,作为层间距的函数和两种材料之间的剪切模量。 当层比周围矩阵更硬时,刚度对比度在很大程度上决定了系统的稳定性行为。 当这些层比周围矩阵更软,刚度对比度和层间距相互作用以确定临界阈值应变和波长,并导致在制度之间的波长中撞击不连续性。 当层彼此接近时,系统对对称皱纹模式具有很强的偏好,而是随着两层之间的距离增加,可以出现反对称模式。

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