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Correlation of a discrete friction (Iwan) element and continuum approaches to predict interface sliding behavior

机译:离散摩擦(Iwan)元素和连续介质方法的关联以预测界面滑动行为

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摘要

This paper makes quantitative comparisons between three types of models for predicting frictional interface behavior: (ⅰ) Iwan-type friction elements that describe contact in terms of discrete contact points and spring elements, (ⅱ) analytical models based on continuum elasticity and Coulomb friction, and (ⅲ) finite element models which incorporate a simple interface constitutive description. A simplified "fiber pullout" geometry is considered which consists of a clamped rectangular bar being pulled between friction grips. The analysis illustrates that interface slip and load transfer behavior is well described by both analytical shear models and bilinear Iwan-type elements which differentiate elastic and friction effects. Two key contribution of this work are the identification of explicit connections between discrete friction parameters (i.e. spring stiffnesses) and continuum elasticity properties, and a straightforward calibration procedure to correlate lower order models with continuum results. This represents an important step toward lower order frictional interface models that can be used to efficiently yet accurately simulate dynamic stick-slip behavior in dynamically loaded contacts.
机译:本文对三种用于预测摩擦界面行为的模型进行了定量比较:(ⅰ)用离散接触点和弹簧元件描述接触的伊万型摩擦元件;(ⅱ)基于连续弹性和库仑摩擦的分析模型, (ⅲ)结合了简单的界面本构描述的有限元模型。考虑了简化的“光纤拉出”几何形状,该几何形状包括在摩擦手柄之间拉动的夹紧矩形杆。分析表明,通过分析剪切模型和区分弹性和摩擦效应的双线性Iwan型单元,可以很好地描述界面滑动和载荷传递行为。这项工作的两个关键作用是确定离散摩擦参数(即弹簧刚度)和连续弹性特性之间的明确联系,以及将低阶模型与连续结果相关联的简单校准程序。这代表了迈向低阶摩擦界面模型的重要一步,该模型可用于有效而准确地模拟动态加载的触点中的动态粘滑行为。

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