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Free vibration of imperfect sigmoid and power law functionally graded beams

机译:无瑕疵振动和动力法功能分级梁的自由振动

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摘要

In the present work, free vibration of beams made of imperfect functionally graded materials (FGMs) including porosities is investigated. Because of faults during process of manufacture, micro voids or porosities may arise in the FGMs, and this situation causes imperfection in the structure. Therefore, material properties of the beams are assumed to vary continuously through the thickness direction according to the volume fraction of constituents described with the modified rule of mixture including porosity volume fraction which covers two types of porosity distribution over the cross section, i.e., even and uneven distributions. The governing equations of power law FGM (P-FGM) and sigmoid law FGM (S-FGM) beams are derived within the frame works of classical beam theory (CBT) and first order shear deformation beam theory (FSDBT). The resulting equations are solved using separation of variables technique and assuming FG beams are simply supported at both ends. To validate the results numerous comparisons are carried out with available results of open literature. The effects of types of volume fraction function, beam theory and porosity volume fraction, as well as the variations of volume fraction index, span to depth ratio and porosity volume fraction, on the first three non-dimensional frequencies are examined in detail.
机译:在本作的工作中,研究了由包括孔隙率的不完美功能分级材料(FGM)制成的梁的自由振动。由于在制造过程中的故障,在FGM中可能出现微空隙或孔隙率,并且这种情况导致结构中的不完美。因此,假设梁的材料特性根据通过包括孔隙体积分数的改性混合物的修改规则的成分的体积分数连续地通过厚度方向而变化,其覆盖横截面上的两种类型的孔隙率分布,即均匀和分布不均匀。电力法FGM(P-FGM)和S形法律FGM(S-FGM)梁的控制方程在经典光束理论(CBT)和一阶剪切变形光束理论(FSDBT)的框架作品内得出。使用变量的分离解决所得到的方程,并且假设在两端都被简单地支撑FG梁。为了验证结果,可以使用公开文献的可用结果进行了许多比较。详细地研究了体积分数,光束理论和孔隙率分数,以及体积分数指数的变化,跨度与深度比和孔隙体积分数的效果进行了详细研究。

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