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VOLUMETRIC CONTACT DYNAMICS MODELS AND EXPERIMENTAL VALIDATION OF NORMAL FORCES FOR SIMPLE GEOMETRIES

机译:体积接触动力学模型和实验验证简单几何形状的正常力

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摘要

A volumetric contact dynamics model has been proposed for the purpose of generating reliable and rapid simulations of contact dynamics. Forces and moments between bodies in contact can be expressed in terms of the volume of interference between the undeformed geometries. This allows for the modelling of contact between complex geometries and relatively large contact surfaces, while being computationally less expensive than finite element methods. However, the volumetric model requires experimental validation. Models for simple geometries in contact have been developed for stationary and dynamic contact; an apparatus has been developed to experimentally validate these models. This paper focuses on validation of the normal contact models. Measurements of forces and displacements will be used to identify the parameters related to the normal force, i.e. the volumetric stiffness and hysteretic damping factor for metallic surfaces. The experimental measurements are compared with simulated results to assess the validity of the volumetric model.
机译:已经提出了一种体积接触动力学模型,目的是产生可靠和快速模拟接触动态。接触的身体之间的力和时刻可以在未变形几何形状之间的干扰体积方面表达。这允许复杂几何形状和相对大的接触表面之间的接触建模,同时计算比有限元方法便宜。然而,体积模型需要实验验证。用于静止和动态接触的简单几何形状的模型用于静止和动态接触;已经开发了一种装置来通过实验验证这些模型。本文侧重于验证正常接触型号。力和位移的测量将用于识别与正常力相关的参数,即金属表面的体积刚度和滞后阻尼因子。将实验测量与模拟结果进行比较,以评估体积模型的有效性。

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