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Elastic Bending Analysis Of Bilayered Beams By An Alternative Two-variable Method

机译:双层梁的弹性弯曲分析的二变量方法

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An alternative two-variable method is used to reanalyze thermoelastic bending problems of bilayered beams subjected to external moments and internal stresses. The differences among zero-stress axis, zero-strain axis (i.e. neutral axis), bending axis, centroidal axis, and the parameter conditions for null/single/dual zero-stress axes are investigated analytically and numerically. Comparisons of thermoelastic stress predictions by the present model with Stoney's model and Hsueh's model are discussed in a representative case of GaAs top coat/Si substrate wafers. Results showed that the neutral axis does not coincide with the zero-stress axis in the general case, and the numbers and the locations of zero-strain or zero-stress axes depend on not only elastic modulus, thickness and/or thermal expansion coefficient ratios between the film and the substrate but also mechanical/thermal loading ratio.
机译:另一种可选的两变量方法用于重新分析双层梁承受外部弯矩和内部应力的热弹性弯曲问题。对零应力轴,零应变轴(即中性轴),弯曲轴,质心轴以及零,单,双零应力轴的参数条件进行了分析和数值研究。在具有代表性的GaAs表面涂层/ Si衬底晶片的情况下,讨论了本模型与Stoney模型和Hsueh模型对热弹性应力预测的比较。结果表明,中性轴通常与零应力轴不一致,并且零应变或零应力轴的数目和位置不仅取决于弹性模量,厚度和/或热膨胀系数比膜与基材之间的比值以及机械/热负载比。

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