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Calculation of guided wave interaction with nonlinearities and generation of harmonics in composite structures through a wave finite element method

机译:波动有限元法计算复合结构中导波与非线性的相互作用及谐波的产生

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The extensive usage of composite materials in modern industrial applications implies a great range of possible structural failure modes for which the structure has to be frequently and thoroughly inspected. Nonlinear guided wave inspection techniques have been continuously gaining attention during the last decade. This is primarily due to their sensitivity to very small sizes of localised damage. A number of complex transformation phenomena take place when an elastic wave impinges on a nonlinear segment, including the generation of higher and sub-harmonics. Moreover, the transmission and reflection coefficients of each wave type become amplitude dependent. In this work, a generic Finite Element (FE) based computational scheme is presented for quantifying guided wave interaction effects with Localised Structural Nonlinearities (LSN) within complex composite structures. Amplitude dependent guided wave reflection, transmission and conversion is computed through a Wave and Finite Element (WFE) method. The scheme couples wave propagation properties within linear structural waveguides to a LSN and is able to compute the generation of higher and sub-harmonics through a harmonic balance projection. A Newton-like iteration scheme is employed for solving the system of nonlinear differential equations. Numerical case studies are presented for waveguides coupled through a joint exhibiting nonlinear mechanical behaviour.
机译:复合材料在现代工业应用中的广泛使用意味着需要对各种结构进行频繁而彻底的检查的可能的结构破坏模式。在过去的十年中,非线性导波检查技术一直在不断受到关注。这主要是由于它们对非常小的局部损坏敏感。当弹性波撞击非线性部分时,会发生许多复杂的转换现象,包括高次谐波的产生。此外,每种波类型的透射系数和反射系数都取决于振幅。在这项工作中,提出了一种基于通用有限元(FE)的计算方案,用于量化复杂复合结构内局部结构非线性(LSN)的导波相互作用效应。通过波和有限元(WFE)方法计算与振幅有关的导波反射,透射和转换。该方案将线性结构波导内的波传播特性耦合到LSN,并且能够通过谐波平衡投影来计算更高次谐波的产生。采用牛顿式迭代方案求解非线性微分方程组。数值案例研究被提出通过表现出非线性机械行为的关节耦合的波导。

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