On the well-posedness of Eringen’s non-local elasticity for harmonic plane wave problems

IF 2.9 3区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Chi Vinh Pham, Thi Ngoc Anh Vu
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Abstract

In this paper, we establish a criterion for well-posedness of Eringen’s non-local elasticity theory for problems of harmonic plane waves in domains with non-empty boundaries, and introduce a novel method for solving well-posed problems. The criterion for well-posedness says that for problems of harmonic plane waves, Eringen’s non-local elasticity theory is well-posed when the constitutive boundary conditions contain all equilibrium boundary conditions, otherwise it is ill-posed in the sense of no solutions. With this well-posedness criterion, it is easy to check whether a non-local harmonic plane wave problem is well-posed or not. If it is a well-posed problem, its solution will be found by employing the novel method. It has been shown that Eringen’s method, which has been used widely to solve problems of non-local harmonic plane waves, does not give their correct solutions. Therefore, it must be replaced by the novel method. As an application of the criterion for well-posedness and the novel method, two well-posed problems of harmonic plane waves are considered including Rayleigh waves and SH waves propagating in traction-free non-local isotropic elastic half-spaces. Exact solutions of these problems have been obtained including explicit expressions of displacements, local and non-local stresses and dispersion equations.
关于埃林根非局部弹性对谐波平面波问题的良好拟合性
本文针对非空边界域中的谐波平面波问题,建立了艾林根非局域弹性理论的良好求解准则,并介绍了一种求解良好求解问题的新方法。好摆性准则指出,对于谐波平面波问题,当构成边界条件包含所有平衡边界条件时,艾林根的非局部弹性理论是好摆的,否则就是无解意义上的不好摆。有了这个假设良好性准则,就很容易检查非局部谐波平面波问题是否假设良好。如果它是一个摆好问题,那么就可以通过新方法找到它的解。研究表明,被广泛用于解决非局部谐波平面波问题的 Eringen 方法并不能给出正确的解。因此,必须用新方法取而代之。为了应用好求解准则和新方法,我们考虑了两个好求解的谐波平面波问题,包括在无牵引非局部各向同性弹性半空间中传播的瑞利波和 SH 波。获得了这些问题的精确解,包括位移、局部和非局部应力以及频散方程的明确表达式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.40
自引率
5.70%
发文量
227
审稿时长
3.0 months
期刊介绍: Proceedings A has an illustrious history of publishing pioneering and influential research articles across the entire range of the physical and mathematical sciences. These have included Maxwell"s electromagnetic theory, the Braggs" first account of X-ray crystallography, Dirac"s relativistic theory of the electron, and Watson and Crick"s detailed description of the structure of DNA.
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