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Free vibration analysis of nano-tubes consisted of functionally graded bi-semi-tubes by a two-steps perturbation method

机译:通过两步摄动法对功能梯度双半管组成的纳米管进行自由振动分析

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Free vibration of a bimaterial circular nano-tube is investigated. The tube is formed by bonding together a Si 3 N 4 /SUS304 functionally graded upper semi tube and a ZrO 2 /Ti-6Al-4V functionally graded lower semi tube. The material properties of the tube are assumed to vary along the radius according to power law with the power index of upper semi tube differing from that of lower semi tube. Based on non-local elasticity theory and Hamilton’s principle, a refined beam model considering the effect of transverse shear deformation is used to derive the governing equations, then analytical solution is obtained by using a two-steps perturbation method. Our results were compared with the existing ones. The effects on tube’s linear and non-linear frequency are analyzed of the factors, including small scale parameter, temperature, the double volume fraction indexes, slenderness ratio and different types of beam model. A new approach is suggested in this article to change the natural frequency of the tubes by adjusting constituent materials. In contrast to conventional approach, the new one can result in more accurate frequency control in the same dimensionless size of tubes.
机译:研究了双材料圆形纳米管的自由振动。该管是通过将Si 3 N 4 / SUS304功能分级的上半管和ZrO 2 / Ti-6Al-4V功能分级的下半管粘结在一起而形成的。假定管的材料特性根据幂定律沿半径变化,上半管的功率指数与下半管的功率指数不同。基于非局部弹性理论和汉密尔顿原理,利用考虑横向剪切变形影响的细化梁模型推导控制方程,然后采用两步摄动法求解析解。我们的结果与现有结果进行了比较。分析了影响管的线性和非线性频率的因素,包括小比例参数,温度,双体积分数指数,细长比和不同类型的梁模型。本文提出了一种新方法,通过调整组成材料来改变管子的固有频率。与传统方法相比,新方法可以在相同的无量纲尺寸的管子中实现更精确的频率控制。

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