瑞利波在多层薄涂层覆盖的弹性半空间上的传播

IF 0.6 4区 工程技术 Q4 MECHANICS
Ali M. Mubaraki, Maha M. Helmi, Rahmatullah Ibrahim Nuruddeen, Mounirah Areshi
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引用次数: 0

摘要

目前的手稿用著名的渐近逼近方法模拟表面波在机械负载的薄多层涂层半空间上的传播。除了沿底层半空间深度的有界性条件外,复合介质的多层之间还施加了完美的界面条件。利用介质多界面的有效边界数据,在长波近似极限下,导出了瑞利波在控制层基底上传播的平面运动近似方程和长期方程。获得了一个近似的椭圆-双曲运动方程,该方程具有伪微分算子,并以脉冲点加载为特征,从而观察到纵向位移和势函数相对于尺度时空变量χ的振荡波行为。最后,一些数值说明,考虑到原型高对比度涂层和硬基材,显示缓慢振荡的前进和后退锋。相反,当在坚硬的多层涂层下放置柔软的底层基材时,会出现相反的趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Propagation of Rayleigh-Type Waves on an Elastic Half-Space Covered by a Thin Multi-Layered Coating

Propagation of Rayleigh-Type Waves on an Elastic Half-Space Covered by a Thin Multi-Layered Coating

The current manuscript models the propagation of surface waves on a mechanically loaded, thin, multi-layered coating half-space using the renowned asymptotic approximation method. Perfect interfacial conditions are imposed between the composite medium’s multiple layers, in addition to boundedness conditions along the depth of the underlying half-space. Approximate equations of plane motion and the secular equation for the propagation of Rayleigh-type waves on the governing multi-layered coating substrate have been derived, utilizing the effective boundary data on the multi-interface of the medium under the long-wave approximation limit. The acquisition of an approximate elliptic-hyperbolic equation of motion, featuring a pseudo-differential operator and characterized by impulsive point loading, led to the observation of oscillatory wave behaviors in both the longitudinal displacement and potential functions with respect to the scaled spatial-temporal variable χ. Finally, some numerical illustrations, considering prototypical high-contrast coatings and stiff substrates, exhibit slow oscillations of the progressing and receding fronts. Conversely, an opposite trend is noted when a soft underlying substrate is placed beneath a stiff multi-layered coating.

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来源期刊
Mechanics of Solids
Mechanics of Solids 医学-力学
CiteScore
1.20
自引率
42.90%
发文量
112
审稿时长
6-12 weeks
期刊介绍: Mechanics of Solids publishes articles in the general areas of dynamics of particles and rigid bodies and the mechanics of deformable solids. The journal has a goal of being a comprehensive record of up-to-the-minute research results. The journal coverage is vibration of discrete and continuous systems; stability and optimization of mechanical systems; automatic control theory; dynamics of multiple body systems; elasticity, viscoelasticity and plasticity; mechanics of composite materials; theory of structures and structural stability; wave propagation and impact of solids; fracture mechanics; micromechanics of solids; mechanics of granular and geological materials; structure-fluid interaction; mechanical behavior of materials; gyroscopes and navigation systems; and nanomechanics. Most of the articles in the journal are theoretical and analytical. They present a blend of basic mechanics theory with analysis of contemporary technological problems.
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