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首页> 外文期刊>Journal of Materials Research and Technology >Numerical Simulation of Sliding Wear for Self-lubricating Spherical Plain Bearings
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Numerical Simulation of Sliding Wear for Self-lubricating Spherical Plain Bearings

机译:自润滑球面滑动轴承滑动磨损的数值模拟

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Based on the thermo-mechanical finite element analysis method, a thermal wear simulation program was designed for the wear properties analysis of spherical plain bearing with self-lubricating fabric liners. In the program, the classical Archard wear model was applied to analyze the dynamical wear process of the bearing, and Abaqus scripting interface was used to simulate the progressive accumulation of wear between contact surfaces. The position of maximum wear depth occurs at the central contact region and this is in close agreement with test results. The relative error of the maximum wear depth between the FEA prediction and experimental results is a little more than 10%. It is shown that the complex nonlinear wear process can be simulated with a series of discrete quasi static models and the wear simulation program could be used to analyze the practical mechanical and tribological properties of the spherical plain bearings.
机译:基于热力学有限元分析方法,设计了一种热磨损仿真程序,用于自润滑织物衬里球面滑动轴承的磨损性能分析。在该程序中,使用了经典的Archard磨损模型来分析轴承的动态磨损过程,并使用Abaqus脚本接口来模拟接触面之间的磨损累积。最大磨损深度的位置出现在中心接触区域,这与测试结果非常吻合。 FEA预测和实验结果之间最大磨损深度的相对误差略大于10%。结果表明,可以使用一系列离散的拟静态模型来模拟复杂的非线性磨损过程,并且可以使用磨损仿真程序来分析球面滑动轴承的实际力学和摩擦学特性。

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