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Stabilized numerical solution for transient dynamic contact of inelastic solids on rough surfaces

机译:粗糙表面上非弹性固体瞬态动态接触的稳定数值解

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摘要

A simulation technique to deal with transient dynamic contact of tire rubber compounds on rough road surfaces is presented. The segment-to-surface approach is used for modeling the contact between tire tread rubber and road track. While the rubber components are deformable and described by a sophisticated viscoelastic damage constitutive model, the road surface is assumed to be rigid and characterized by an analytical function. A spectral approach based on an inverse computation of the 2D-Fast Fourier transform has been suggested for the reconstruction of rough surface profiles. The Newmark time-stepping method is used for the integration of transient dynamic equations. With the so-called contact-stabilized Newmark method the spurious oscillation at contact boundary has been removed. The detailed investigation on the dynamic contact of inelastic rubber block with rough road surfaces has been made. The robustness of the contact-stabilized Newmark method within a finite deformation framework is underlined by numerical studies, in which it is compared with several dissipation-based stabilization techniques selected from literature.
机译:提出了一种处理粗糙路面上轮胎胶料瞬态动态接触的仿真技术。段到表面的方法用于对轮胎胎面橡胶和路面之间的接触进行建模。尽管橡胶组件是可变形的,并通过复杂的粘弹性损伤本构模型进行描述,但假定路面是刚性的,并具有分析功能。已经提出了一种基于二维快速傅里叶变换逆计算的光谱方法来重建粗糙表面轮廓。 Newmark时间步法用于瞬态动力学方程的积分。使用所谓的接触稳定的Newmark方法,可以消除接触边界处的寄生振荡。详细研究了非弹性橡胶块与粗糙路面的动态接触。数值研究强调了接触稳定化Newmark方法在有限变形框架内的稳健性,并将其与选自文献中的几种基于耗散的稳定化技术进行了比较。

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