首页> 外文期刊>Journal of thermal stresses >Comprehensive effect of in-plane load and nonlinear thermal field on dynamic response of embedded bi-directional functionally graded tapered thick nanobeams
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Comprehensive effect of in-plane load and nonlinear thermal field on dynamic response of embedded bi-directional functionally graded tapered thick nanobeams

机译:面内载荷和非线性热场对嵌入式双向功能渐变锥形厚纳波型动态响应的综合作用

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摘要

This article presents a numerical model based on shear deformation theory in conjunction with Eringen's nonlocal theory to investigate the thermo-elastic vibration behavior of bi-directional functionally graded nonuniform thick nanobeams supported on Pasternak's foundation. These beams are subjected to nonlinear temperature field along the thickness and uniform in-plane loading. Two directional variations in material properties are described by a power-law model across the thickness and as per the exponential function along the length. Employing Hamilton's energy principle, the governing equations are derived and then solved for frequency parameter via the generalized differential quadrature method for clamped, simply-supported, and combination of both the boundary conditions. A parametric study is carried out for understanding the vibration characteristic of considered beams, which shows that the combination of in-plane and thermal loadings with the foundation parameter is the most critical combination for bi-directional functionally graded nanobeams. Results are compared with the published work and found in good accordance. The results will be of great use in designing aerospace shuttles and scanning probe microscopes where nonuniform embedded nanobeams are subjected to compression in the thermal environment.
机译:本文介绍了一种基于剪切变形理论的数值模型,与eringen的非局部理论一起研究了Pasternak基础上支持的双向功能渐变的非均匀纳米芯片的热弹性振动行为。这些光束沿着厚度和均匀的面内载荷进行非线性温度场。材料特性的两个定向变化由厚度横跨厚度和沿着长度的指数函数来描述。采用汉密尔顿的能量原理,通过广义差分正交方法来衍生,控制管理方程,并通过用于夹紧,简单地支持的夹紧,简单地支持和边界条件的组合来解决频率参数。进行参数研究以理解所考虑的梁的振动特性,这表明与基础参数的平面内和热载荷的组合是对双向功能梯度纳米束的最关键的组合。结果与已发表的工作进行比较,并以良好的方式发现。在设计航空航天班车和扫描探针显微镜时,结果将很好地使用,其中不均匀的嵌入式纳米射游在热环境中受到压缩。

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