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Dynamic buckling response of temperature-dependent functionally graded-carbon nanotubes-reinforced sandwich microplates considering structural damping

机译:考虑结构阻尼的温度依赖性功能梯度碳纳米管增强三明治微板的动态屈曲响应

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This research deals with the nonlocal temperature-dependent dynamic buckling analysis of embedded sandwich micro plates reinforced by functionally graded carbon nanotubes (FG-CNTs). The material properties of structure are assumed viscoelastic based on Kelvin-Voigt model. The effective material properties of structure are considered based on mixture rule. The elastic medium is simulated by orthotropic visco-Pasternak medium. The motion equations are derived applying Sinusoidal shear deformation theory (SSDT) in which the size effects are considered using Eringen's nonlocal theory. The differential quadrature (DQ) method in conjunction with the Bolotin's methods is applied for calculating resonance frequency and dynamic instability region (DIR) of structure. The effects of different parameters such as volume percent of CNTs, distribution type of CNTs, temperature, nonlocal parameter and structural damping on the dynamic instability of visco-system are shown. The results are compared with other published works in the literature. Results indicate that the CNTs have an important role in dynamic stability of structure and FGX distribution type is the better choice.
机译:这项研究涉及功能梯度碳纳米管(FG-CNTs)增强的嵌入式三明治微板的非局部温度依赖性动态屈曲分析。基于Kelvin-Voigt模型,假定结构的材料特性为粘弹性。根据混合规则来考虑结构的有效材料特性。弹性介质是通过正交各向异性的粘滞-帕斯滕纳克介质模拟的。使用正弦剪切变形理论(SSDT)导出了运动方程,其中使用Eringen的非局部理论考虑了尺寸效应。差分正交(DQ)方法与Bolotin方法相结合被用于计算结构的共振频率和动态不稳定性区域(DIR)。给出了碳纳米管的体积百分比,碳纳米管的分布类型,温度,非局部参数和结构阻尼等不同参数对粘滞体系动态不稳定性的影响。将结果与文献中其他已发表的作品进行比较。结果表明,碳纳米管在结构的动态稳定性中具有重要作用,而FGX分布类型是更好的选择。

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