Critical length scale controls adhesive wear mechanisms

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Critical length scale controls adhesive wear mechanisms

The adhesive wear process remains one of the least understood areas of mechanics. While it has long been established that adhesive wear is a direct result of contacting surface asperities, an agreed upon understanding of how contacting asperities lead to wear debris particle has remained elusive. This has restricted adhesive wear prediction to empirical models with limited transferability. Here...

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The definition of wear has been proposed as a progressive loss of materials due to mechanical action of two bodies while in contact. Several researchers have also suggested the definition of wear as the progressive loss of substance from the operating surface of a body occurring as a result of relative motion against a solid, liquid or gaseous counter body at the surface. Thus, it can be stated...

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On the debris-level origins of adhesive wear.

Every contacting surface inevitably experiences wear. Predicting the exact amount of material loss due to wear relies on empirical data and cannot be obtained from any physical model. Here, we analyze and quantify wear at the most fundamental level, i.e., wear debris particles. Our simulations show that the asperity junction size dictates the debris volume, revealing the origins of the long-sta...

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ژورنال

عنوان ژورنال: Nature Communications

سال: 2016

ISSN: 2041-1723

DOI: 10.1038/ncomms11816