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首页> 外文期刊>International Journal of Solids and Structures >Stretch-induced stress patterns and wrinkles in hyperelastic thin sheets
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Stretch-induced stress patterns and wrinkles in hyperelastic thin sheets

机译:拉伸引起的应力模式和超弹性薄板中的皱纹

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Wrinkles are commonly observed in stretched thin sheets and membranes. This paper presents a numerical study on stretch-induced wrinkling of hyperelastic thin sheets based on nonlinear finite element analyses. The model problem is set up for uniaxial stretching of a rectangular sheet with two clamped ends and two free edges. A two-dimensional stress analysis is performed first under the plane-stress condition to determine stretch-induced stress distribution patterns in the elastic sheets, assuming no wrinkles. As a prerequisite for wrinkling, development of compressive stresses in the transverse direction is found to depend on both the length-to-width aspect ratio of the sheet and the applied tensile strain in the longitudinal direction. A phase diagram is constructed with four different distribution patterns of the stretch-induced compressive stresses, spanning a wide range of aspect ratio and tensile strain. Next, an eigenvalue analysis is performed to find the potential buckling modes of the elastic sheet under the prescribed boundary conditions. Finally, a nonlinear post-buckling analysis is performed to show evolution of stretch-induced wrinkles. In addition to the aspect ratio and tensile strain, it is found that the critical condition for wrinkling and the post-buckling behavior both depend sensitively on the sheet thickness. In general, wrinkles form only when both the magnitude and the distribution area of the compressive stresses are sufficiently large. The wrinkle wavelength decreases with increasing strain, in good agreement with the prediction by a scaling analysis. However, as the tensile strain increases, the wrinkle amplitude first increases and then decreases, eventually flattened beyond a moderately large critical strain, in contrast to the scaling analysis.
机译:通常在拉伸的薄片和膜中观察到皱纹。本文基于非线性有限元分析,对超弹性薄板的拉伸引起的皱纹进行了数值研究。对于具有两个夹紧端和两个自由边缘的矩形薄板的单轴拉伸,设置了模型问题。假设没有褶皱,首先在平面应力条件下进行二维应力分析,以确定弹性片中拉伸引起的应力分布模式。作为起皱的先决条件,发现在横向方向上的压缩应力的产生取决于片材的长宽比和纵向上施加的拉伸应变。相图是由拉伸引起的压应力的四种不同分布模式构成的,其分布在宽高比和拉伸应变的广泛范围内。接下来,进行特征值分析以找到在规定的边界条件下弹性片的潜在屈曲模式。最后,进行非线性屈曲后分析以显示拉伸引起的皱纹的演变。除了长宽比和拉伸应变之外,还发现起皱的临界条件和屈曲后的行为都敏感地取决于片材的厚度。通常,仅当压应力的大小和分布面积都足够大时才形成皱纹。皱纹波长随着应变的增加而减小,这与缩放分析的预测非常吻合。但是,与拉伸分析相比,随着拉伸应变的增加,皱纹幅度先增大然后减小,最终趋于平坦,直到超过中等大的临界应变。

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