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首页> 外文期刊>Journal of Sandwich Structures and Materials >Investigation of electric field effect on size-dependent bending analysis of functionally graded porous shear and normal deformable sandwich nanoplate on silica Aerogel foundation
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Investigation of electric field effect on size-dependent bending analysis of functionally graded porous shear and normal deformable sandwich nanoplate on silica Aerogel foundation

机译:硅气凝土基础上用型多孔多孔剪切和正常可变形夹心纳孔板尺寸依赖性弯曲分析的电场影响

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摘要

In the present research electro-mechanical bending behavior of sandwich nanoplate with functionally graded porous core and piezoelectric face sheets is carried out. Vlasov's model foundation is utilized to model the silica Aerogel foundation. Two functions are considered for nonuniform variation of material properties of the core layer along the thickness direction such as Young's modulus, shear modulus, and density. The governing equations are deduced from Hamilton's principle based on sinusoidal shear and normal deformation theory. In order to solve seven governing equations, an iterative technique is accomplished. After all, deflection and stresses are verified with corresponding literatures. Eventually, the numerical results reveal that applied voltage, plate aspect ratio, thickness ratio, nonlocal parameter, porosity index, Young's modulus, and height of silica Aerogel foundation have substantial effects on the electro-mechanical bending response of functionally graded porous sandwich nanoplate.
机译:在本研究中,进行了用功能梯度多孔芯和压电面片的夹层纳米板的电动机械弯曲行为。 Vlasov的模型基础用于模拟二氧化硅气凝土基础。考虑两个功能用于沿着厚度方向的芯层的材料特性的非均匀变化,例如杨氏模量,剪切模量和密度。基于正弦剪切和正常变形理论,从汉密尔顿原则推导出管理方程。为了解决七个控制方程,实现了一种迭代技术。毕竟,通过相应的文献验证了偏转和压力。最终,数值结果表明,施加的电压,板纵横比,厚度比,非局部参数,孔隙率指数,杨氏模量和二氧化硅气体基础的高度对功能梯度多孔夹心纳米板的电动机械弯曲响应具有显着影响。

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