基于有限元法的微动接触磨损仿真

Q4 Engineering Rakenteiden Mekaniikka Pub Date : 2020-03-13 DOI:10.23998/rm.76261
A. Mäntylä, J. Juoksukangas, J. Hintikka, T. Frondelius, A. Lehtovaara
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引用次数: 7

摘要

本文提出了一种鲁棒的基于有限元法的磨损模拟方法,特别适用于微动接触。该方法利用了商用有限元求解器Abaqus中的接触子程序。它基于用户自定义的法向和切向接触公式。对于法向接触方向,采用简单的Archard磨损方程计算节点间隙场,以描述材料因磨损而去除的深度。接触压力计算中包含磨损场,以模拟加载循环过程中的磨损和接触应力演变。这种方法的主要优点是所有接触变量都可以在例程中访问,这允许法向和切向接触变量之间的完全耦合。此外,在解决过程中不需要修改网格。这使得实现灵活,稳健,特别适用于摩擦和切向接触刚度起重要作用的微动情况。将该方法应用于螺栓连接型微动试验实例。该方法也完全适用于复杂的真实部件仿真。
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FEM-based wear simulation for fretting contacts
This article presents a robust Finite-Element-Method-based wear simulation method, particularly suitable for fretting contacts. This method utilizes the contact subroutine in a commercial finite element solver Abaqus. It is based on a user-defined contact formulation for both normal and tangential directions. For the normal contact direction, a nodal gap field is calculated by using a simple Archard's wear equation to describe the depth of material removal due to wear. The wear field is included in the contact pressure calculation to allow simulation of wear and contact stress evolution during the loading cycles. The main advantage of this approach is that all contact variables are accessible inside the routine, which allows full coupling between normal and tangential contact variables. Also, there is no need for mesh modifications during the solution. This makes the implementation flexible, robust and particularly suitable for fretting cases where friction and tangential contact stiffness play an essential role. The method is applied to the bolted joint type fretting test case. The methodology is also fully applicable to complex real component simulations.
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来源期刊
Rakenteiden Mekaniikka
Rakenteiden Mekaniikka Engineering-Mechanical Engineering
CiteScore
0.50
自引率
0.00%
发文量
2
审稿时长
16 weeks
期刊最新文献
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