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首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Evaluation of Nominal Contact Area and Contact Pressure Distribution in a Steel-Steel Interface by Means of Ultrasonic Techniques
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Evaluation of Nominal Contact Area and Contact Pressure Distribution in a Steel-Steel Interface by Means of Ultrasonic Techniques

机译:超声波技术评估钢-钢界面的标称接触面积和接触压力分布

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摘要

Analysis of contact interfaces represents one of the most critical engineering problems and involves a huge number of practical applications such as roller bearings, tooth gears, wheel-rail interaction, electrical and thermal couplings, biomechanics etc. While theoretical and numerical approaches to the problem have been extensively studied over the years, only a few experimental techniques have been devised either to validate analytical results, or to infer information non invasively about the state of contact. From the late 1950s onwards, when a relationship was discovered between the amount of energy reflected or transmitted through the contact region and the characteristics of contact, researchers have been employing ultrasonic waves to inspect contact interfaces. Since then, many efforts have been directed towards improving the experimental technique and enhancing the theoretical understanding of ultrasonic waves propagation over an incomplete contact interface. In the light of these considerations, the application of a simple 'pulse-echo' technique able to investigate the elastoplastic contact of a steel sphere-plate system is proposed in this paper. The main purpose of the analysis is to assess the reliability of the ultrasonic method as a useful tool for assessing a number of contact parameters such as size and shape of contact area, distribution of contact pressure and so on. Experimental data were compared with numerical results obtained using a Finite Element Model (FEM) code. Ultrasonic reflection data were in good agreement with calculated values, thus confirming the effectiveness of the ultrasonic technique as a fast, reliable and non-invasive method in evaluating contact parameters in loaded metallic interfaces.
机译:接触界面的分析是最关键的工程问题之一,涉及大量的实际应用,例如滚子轴承,齿轮,轮轨相互作用,电热耦合,生物力学等。经过多年的广泛研究,仅设计了几种实验技术来验证分析结果或以非侵入方式推断有关接触状态的信息。从1950年代后期开始,当发现通过接触区域反射或传输的能量与接触特性之间存在联系时,研究人员一直在使用超声波检查接触界面。从那时起,人们已经进行了许多努力来改进实验技术并增强超声波在不完全接触界面上传播的理论理解。鉴于这些考虑,本文提出了一种简单的“脉冲回波”技术的应用,该技术能够研究钢球-板系统的弹塑性接触。该分析的主要目的是评估超声方法的可靠性,该超声方法是用于评估许多接触参数(例如接触面积和形状,接触压力分布等)的有用工具。将实验数据与使用有限元模型(FEM)代码获得的数值结果进行比较。超声反射数据与计算值非常吻合,从而证实了超声技术作为一种快速,可靠且无创的方法在评估加载的金属界面中的接触参数方面的有效性。

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