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A new isogeometric Timoshenko beam model incorporating microstructures and surface energy effects

机译:一种新的ISogeometric Timoshenko光束模型,包括微观结构和表面能效应

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A new isogeometric Timoshenko beam model is developed using a modified couple stress theory (MCST) and a surface elasticity theory. The MCST is wildly used to capture microstructure effects that includes only one material length scale parameter, while the Gurtin-Murdoch surface elasticity theory containing three surface elasticity constants is employed to approximate the nature of surface energy effects. A new effective computational approach is presented for the current nonclassical Timoshenko beam model based on isogeometric analysis with high-order continuity basis functions of non-uniform rational B-splines, which effectively fulfills the higher continuity requirements in MCST. To validate the new approach and quantitatively illustrate both the microstructure and surface energy effects, the numerical results obtained from the developed approach for static deflection and natural frequencies of beams are compared with the analytical results available in the literature. Numerical results reveal that both the microstructure effect and surface energy effect should be considered in very thin beams, which also explains the size-dependent behavior.
机译:使用改进的耦合应力理论(MCST)和表面弹性理论,开发了一种新的ISogeometric Timoshenko光束模型。 MCST是野蛮的,用于捕获仅包括一种材料长度参数的微观结构效应,而含有三个表面弹性常数的Gurtin-Murdoch表面弹性理论用于近似表面能量效应的性质。基于异诊法分析的基于非均匀Rational B样条的高阶连续性基础函数的I异步分析,提出了一种新的有效计算方法,其有效地满足MCST中较高的连续性要求。为了验证新方法并定量地说明微结构和表面能效应,与文献中可用的分析结果进行比较了从发发的静态偏转方法和梁的自然频率获得的数值结果。数值结果表明,在非常薄的光束中应考虑微结构效果和表面能效应,这也解释了尺寸依赖性的行为。

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