Pin-on-Disc Modelling with Mesh Deformation Using Discrete Element Method

Author:

Yan YunpengORCID,Helmons Rudy,Schott DingenaORCID

Abstract

The pin-on-disc test is a standard sliding wear test used to analyse sliding properties, including wear contour and wear volume. In this study, long-term laboratory test performance is compared with a short-term numerical model. A discrete element method (DEM) approach combined with an Archard wear model and a deformable geometry technique is used. The effect of mesh size on wear results is evaluated, and a scaling factor is defined to relate the number of revolutions between the experiment and the numerical model. The simulation results indicate that the mesh size of the disc has a significant effect on the wear contour. The wear depth and wear width follow a normal distribution after experiencing a run-in phase, while the wear volume has a quadratic relation with the number of revolutions. For the studied material combination, the calibration of the wear coefficient shows that the wear volume of the pin-on-disc test accurately matches the simulation results for a minimum of eight revolutions with a wear coefficient lower than 2 × 10−11 Pa−1.

Funder

China Scholarship Councile

Publisher

MDPI AG

Subject

General Materials Science

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1. Anti-skid durability of porous drainage asphalt mixture based on discrete element;Proceedings of the Institution of Civil Engineers - Smart Infrastructure and Construction;2023-07-24

2. Modelling of material removal due to sliding wear caused by bulk material;Powder Technology;2023-02

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