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A variational method for post-buckling analysis of end-supported nanorods under self-weight with surface stress effect

机译:具有表面应力效应的自重下终支撑纳米棒后屈曲分析的变分方法

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In this paper, the formulation of post-buckling of end-supported nanorods under self-weight was developed by the variational method. The surface stress effect was considered following the surface elasticity theory of Gurtin-Murdoch. The variational formulation involving the strain energy in the bulk material, the strain energy of the surface layer, and the potential energy due to self-weight was expressed in terms of the intrinsic coordinates. The variational formulation was accomplished by introducing the Lagrange multiplier technique to impose the boundary conditions. The finite element method was used to derive a system of nonlinear equations resulting from the stationary of the total potential energy, and then, Newton-Raphson iterative procedure was applied to solve this system of equations. The post-buckled configurations of nanorods under self-weight due to various boundary conditions were presented and demonstrated that the variational formulation expressed in terms of intrinsic coordinate is highly recommended for post-buckling analysis of end-supported nanorods. In addition, the surface stress effect significantly influenced the post-buckling response of nanorods and exhibited higher stiffness in comparison with nanorods without surface stress. The model formulation presented in this study is of special interest in the design and application of advanced technological devices.
机译:本文通过分析方法开发了自重的自重下末端支撑纳米棒后屈曲的制剂。在Gurtin-Murdoch的表面弹性理论之后考虑了表面应力效应。在本型坐标方面表达了涉及散装材料中的块材料中的应变能,表面层的应变能的变分制剂,以及由于自重引起的势能。通过引入拉伸倍增器技术来实现变形制剂来施加边界条件。有限元方法用于导出由总电位能量的静止产生的非线性方程系统,然后应用牛顿 - 拉文迭代程序来解决该方程系统。提出并证明了由于各种边界条件引起的自身重量下的纳米棒的后弯曲配置并强烈推荐在内在坐标方面表达的变分制剂用于终止的纳米棒的后屈曲分析。此外,表面应力效应显着影响了纳米棒的后屈曲响应,并与没有表面应力的纳米棒相比表现出更高的刚度。本研究中提出的模型制剂对先进技术设备的设计和应用特别感兴趣。

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