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- W3110215812 abstract "In this paper, the influence of rolling parameters on the generation of wear particles is studied experimentally using a pilot scale rolling mill. Further, a multi-scale wear model is proposed to predict the amount of wear particles generated in cold rolling processes operating under the boundary lubrication. Rolling experiments revealed that thickness reduction and roll roughness are the two dominant process parameters that control wear particles generation in cold rolling processes. Analysis of the wear particles size distribution showed that most of the wear particles are less than 5 μm in diameter. The proposed model captures the trend correctly and give values in the same order of magnitude as the experiments in terms of the volume of wear particles generated. • A new multi-scale wear model developed that combines wear mechanisms at microscale and contact model at macroscale. • Most of the wear particles generated in the rolling experiments are smaller than 5 μm. • Model and rolling experimental results showed good agreement in terms of wear volume. • Wear particles formation in lubricated cold rolling increases with thickness reduction and roll roughness." @default.
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- W3110215812 date "2021-03-01" @default.
- W3110215812 modified "2023-09-25" @default.
- W3110215812 title "Understanding the generation of wear particles in cold rolling processes" @default.
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- W3110215812 doi "https://doi.org/10.1016/j.triboint.2020.106789" @default.
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