The vibrations in functionally graded porous Cu-Si microcantilever beams are investigated based on physical neutral plane theory, modified coupled stress theory, and scale distribution theory (MCST&SDT). Porous microcantilever beams define four pore distributions. Considering the physical neutral plane theory, the material properties of the beams are computed through four different power-law distributions. The material properties of microcantilever beams are corrected by scale effects based on modified coupled stress theory. Considering the fluid driving force, the amplitude-frequency response spectra and resonant frequencies of the porous microcantilever beam in three different fluids are obtained based on the Euler–Bernoulli beam theory. The quality factors of porous microcantilever beams in three different fluids are derived by estimating the equation. The computational analysis shows that the presence of pores in microcantilever beams leads to a decrease in Young’s modulus. Different pore distributions affect the material properties to different degrees. The gain effect of the scale effect is weakened, but the one-dimensional temperature field and amplitude-frequency response spectra show an increasing trend. The quality factor is decreased by porosity, and the degree of influence of porosity increases as the beam thickness increases. The gradient factor n has a greater effect on the resonant frequency. The effect of porosity on the resonant frequency is negatively correlated when the gradient factor is small (n1).
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机译:基于物理中性面理论、修正耦合应力理论和尺度分布理论 (MCST&SDT) 研究了功能梯度多孔 Cu-Si 微悬臂梁的振动。多孔微悬臂梁定义了四个孔分布。考虑到物理中性平面理论,梁的材料属性是通过四种不同的幂律分布来计算的。微悬臂梁的材料属性通过基于改进的耦合应力理论的尺度效应进行校正。考虑流体驱动力,基于欧拉-伯努利梁理论,得到了多孔微悬臂梁在三种不同流体中的幅频响应谱和谐振频率。通过估计方程式,可以得出三种不同流体中多孔微悬臂梁的质量因子。计算分析表明,微悬臂梁中存在孔隙会导致杨氏模量降低。不同的孔分布在不同程度上影响材料性能。尺度效应的增益效应减弱,但一维温度场和幅频响应谱呈增大趋势。品质因数会因孔隙率而降低,而孔隙率的影响程度会随着梁厚度的增加而增加。梯度因子 n 对谐振频率的影响更大。当梯度因子较小 (n1) 时,孔隙率呈正相关。
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