首页> 外文期刊>Journal of teoretical and applied mechanics >THERMOELASTIC STRONGLY NONLINEAR VIBRATION OF ROTATING FUNCTIONALLY GRADED RING PLATE
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THERMOELASTIC STRONGLY NONLINEAR VIBRATION OF ROTATING FUNCTIONALLY GRADED RING PLATE

机译:热弹性强烈非线性振动旋转功能分级环板

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摘要

For a metal ceramic functionally graded (FGM) ring plate, considering variations in physical properties with temperature and a power-law distribution of material components along the thickness direction, thermoelastic coupled nonlinear vibration equation in thermal environment is derived by means of Kirchhoff's thin plate theory and the Hamiltonian principle. The transverse nonlinear vibration differential equation of the inner and outside-clamped ring plate under static load is obtained by using the Galerkin method; moreover, perturbation solution of static deflection is carried out. An improved L-P method is employed to solve the strongly nonlinear vibration equation. The vibration response and nonlinear natural frequency expression are developed. Through numerical examples, natural frequency characteristic curves of the rotating FGM ring plate are plotted. The Runge-Kutta method is applied to obtain vibration response, phase and power spectrum diagrams. The influence of different parameters on natural vibration characteristics is analyzed. The results show that analytical solutions are consistent with numerical solutions, and the natural frequency decreases with an increase in the metal content and surface temperature, but grows with an increase in the rotational speed.
机译:对于金属陶瓷功能梯度(FGM)环板,考虑到具有温度的物理性质的变化和沿厚度方向的材料部件的动力法分布,热环境中的热弹性耦合非线性振动方程是通过Kirchhoff的薄板理论来源的和哈密顿的原则。通过使用Galerkin方法获得内部和外夹紧的环板的横向非线性振动差分方程;此外,进行静态偏转的扰动解。采用改进的L-P方法来解决强烈的非线性振动方程。开发了振动响应和非线性自然频率表达。通过数值示例,绘制旋转FGM环形板的固有频率特性曲线。应用Runge-Kutta方法来获得振动响应,相位和功率谱图。分析了不同参数对自然振动特性的影响。结果表明,分析解决方案与数值溶液一致,并且自然频率随金属含量和表面温度的增加而降低,但随着转速的增加而增长。

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