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Vibration response of stepped FGM beams with elastically end constraints using differential transformation method

机译:采用差分变换法的具有弹性端部约束的阶梯式FGM梁的振动响应

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摘要

In this paper, free vibration response of stepped beams made from functionally graded materials (FCMs) is investigated. The beams are supported by various types of elastically end constraints. The differential transformation method (DTM) is employed to solve the governing differential equations of such beams in order to obtain natural frequencies and mode shapes. The power law distribution is used and modified to describe material compositions across the thickness of the beams made of FGMs. Two main types of the stepped FGM beams in which their material compositions can be described by using the modified power law distribution are selected to investigate their vibration behaviour. The significant parametric studies such as step ratio, step location, boundary conditions, spring constants and material volume fraction are taken into investigation.
机译:本文研究了功能梯度材料(FCM)制成的阶梯梁的自由振动响应。横梁由各种类型的弹性端部约束支撑。为了获得固有频率和振型,采用了微分变换法(DTM)来求解这类光束的控制微分方程。使用并修改了幂定律分布,以描述FGM制成的梁的整个厚度范围内的材料成分。选择了两种主要类型的阶梯式FGM梁,其中可以通过使用修正的幂律分布来描述其材料成分,以研究其振动行为。对重要的参数研究进行了研究,例如台阶比,台阶位置,边界条件,弹簧常数和材料体积分数。

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