非高斯粗糙表面的接触行为研究

IF 0.6 4区 工程技术 Q4 MECHANICS Mechanics of Solids Pub Date : 2024-11-01 DOI:10.1134/S0025654424604245
Zhiqiang Gao, Mengnan Liu, Haonan Dong, Wen Wang, Weiping Fu
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引用次数: 0

摘要

在机械系统中,各种零件的加工表面,特别是需要精密加工的零件,如进给系统中的滚子和轨迹表面,往往表现出非高斯粗糙度特征,这与传统接触模型中广泛采用的高斯表面模型有很大的不同。为了深入研究非高斯粗糙表面特征参数对机械界面接触性能的影响机理,本研究专门构建了非高斯粗糙表面的接触模型。该模型详细阐述了偏度和峰度这两个关键参数对接触力、实际接触面积和接触刚度的复杂影响。从而加深了对非高斯粗糙表面接触特性的认识,为进给系统中滚子与轨迹接触性能的分析与优化提供了理论依据。
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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Investigation on Contact Behaviors Exhibited by Non-Gaussian Rough Surfaces

In mechanical systems, the machining surfaces of various components, especially those subjected to precision machining such as the roller and track surfaces in feed systems, often exhibit non-Gaussian roughness characteristics, which significantly differ from the Gaussian surface model widely adopted in traditional contact models. In order to thoroughly investigate the influence mechanism of characteristic parameters of non-Gaussian rough surfaces on the contact performance of mechanical interfaces, this study specifically constructs a contact model for non-Gaussian rough surfaces. This model elaborately elucidates the complex effects of skewness and kurtosis, two key parameters, on contact force, actual contact area, and contact stiffness. Thus, it deepens the understanding of contact characteristics of non-Gaussian rough surfaces and provides a theoretical basis for the analysis and optimization of the contact performance between rollers and tracks in feed systems.

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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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