初始应力作用下与正交各向异性半空间不完美结合的不规则微极层上正常移动载荷的数学方面

IF 2.3 3区 工程技术 Q2 MECHANICS
Pooja Singh, Brijendra Paswan, Sonali Mondal
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引用次数: 0

摘要

在本文中,我们研究了在初始应力作用下,正常载荷穿过不规则微极层所引起的应力分布。该分析考虑了层表面的抛物线形不规则性和层与半空间之间的不完全界面。利用适当的边界条件和微扰技术,导出了法向、切向和偶向应力的封闭数学表达式。通过数值计算和图形分析,说明了摩擦系数、不规则深度、不规则因子、耦合因子、键合参数和初始应力等无量纲参数对法向、切向和偶向应力的显著影响。结果表明,这些特征对不规则上层和下伏半空间内的应力分布都有显著影响。这些发现在各个领域具有实际意义,包括高速公路和机场跑道建设、重型运输、土木工程和地震工程,在这些领域,准确的应力建模对基础设施的稳定性和安全性至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mathematical aspect of normal moving load on an irregular micropolar layer imperfectly bonded to an orthotropic half-space under initial stress

In this paper, we have investigated the stress distribution induced by a normal load moving across an irregular micropolar layer imperfectly bonded to an orthotropic half-space under initial stress. The analysis considers a parabolic surface irregularity on the layer and an imperfect interface between the layer and half-space. Using appropriate boundary conditions and a perturbation technique closed-form mathematical expressions are derived for normal, tangential, and couple stresses. Numerical computations and graphical analyses have been conducted to illustrate the significant effects of dimensionless parameters such as frictional coefficient, irregularity depth, irregularity factor, coupling factor, bonding parameters, and initial stresses on the normal, tangential, and couple stresses. The results reveal that these characteristics significantly influence the stress distribution within both the irregular upper layer and the underlying half-space. These findings have practical implications across various fields, including highway and airport runway construction, heavy haulage, civil engineering, and earthquake engineering, where accurate stress modeling is essential for infrastructure stability and safety.

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来源期刊
Acta Mechanica
Acta Mechanica 物理-力学
CiteScore
4.30
自引率
14.80%
发文量
292
审稿时长
6.9 months
期刊介绍: Since 1965, the international journal Acta Mechanica has been among the leading journals in the field of theoretical and applied mechanics. In addition to the classical fields such as elasticity, plasticity, vibrations, rigid body dynamics, hydrodynamics, and gasdynamics, it also gives special attention to recently developed areas such as non-Newtonian fluid dynamics, micro/nano mechanics, smart materials and structures, and issues at the interface of mechanics and materials. The journal further publishes papers in such related fields as rheology, thermodynamics, and electromagnetic interactions with fluids and solids. In addition, articles in applied mathematics dealing with significant mechanics problems are also welcome.
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