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首页> 外文期刊>Microelectromechanical Systems, Journal of >Extraction Method for the Residual Stress in Multilayer Microplates Under Large Deflection Based on Static Deflection Analysis
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Extraction Method for the Residual Stress in Multilayer Microplates Under Large Deflection Based on Static Deflection Analysis

机译:基于静态挠度分析的多层微板大挠度残余应力提取方法

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摘要

This investigation presents a method of extraction of the built-in stress in films grown by thin-film deposition or growing in microplate structures. Although thin-film deposition processes are well controlled, the stress values might significantly vary, reaching ±40% of the projected value. The assumption of variance yields more accurate solutions for the deflection than the values obtained by assuming the exact interlaminar stress yielded by the deposition process. The extraction method was used in conjunction with a gradient-based optimization method to evaluate the effective stress based on the response of the microplate to distributed load. The estimation of the deflection in the model versus the experimental method is based on static deflection matching. The estimation of root-mean-square error based on the proposed model was reduced to 0.38% versus the experimental evaluation, while the deflection resulting from the assumption of the nominal interlaminar stress yield errors of up to 40% versus experiments. [2014-0220]
机译:这项研究提出了一种提取内在应力的方法,该应力是通过薄膜沉积或微板结构生长而形成的。尽管薄膜沉积过程得到了很好的控制,但是应力值可能会发生很大变化,达到投影值的±40%。与假设沉积过程产生的层间应力的精确值相比,变化的假设能更准确地解决挠度问题。提取方法与基于梯度的优化方法结合使用,可根据微孔板对分布载荷的响应来评估有效应力。与实验方法相比,模型中挠度的估算基于静态挠度匹配。与实验评估相比,基于所提出模型的均方根误差估计降低至0.38%,而由名义层间应力屈服误差假设导致的挠度与实验相比则高达40%。 [2014-0220]

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