Wear in multiple network elastomers arises from the continuous accumulation of molecular damage rather than microcrack growth

Fuente: arXiv
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Main Authors: Taisne, Ombeline, Caillard, Julien, Boullay, Côme Thillaye du, Couty, Marc, Creton, Costantino, Comtet, Jean
Format: Preprint
Published: 2025
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author Taisne, Ombeline
Caillard, Julien
Boullay, Côme Thillaye du
Couty, Marc
Creton, Costantino
Comtet, Jean
author_facet Taisne, Ombeline
Caillard, Julien
Boullay, Côme Thillaye du
Couty, Marc
Creton, Costantino
Comtet, Jean
contents Tire wear releases millions of tons of particles annually, bearing immense industrial and environmental impact. However, efforts to mitigate the wear of elastomeric materials remain largely empirical, due to a limited understanding of the underlying damage mechanisms that cause wear. Employing mechanochemical approaches on model multiple network elastomers, we uncover how polymer strand scission events - the elemental damage units in these disordered networks - evolve during frictional wear. Our findings demonstrate that discrete micro-slippage at rough contacting asperities damages the material several micrometers below the surface through stress-activated bond scission events. This steady accumulation of subsurface damage ultimately leads to material erosion through the generation of a degraded viscous layer, painting a new picture of wear as a continuous damage growth process. Our approach further demonstrates an enhanced resilience to wear when tuning material architecture to reduce sensitivity to stress fluctuations, paving the way for knowledge-based strategies to develop more sustainable materials.
format Preprint
id arxiv_https___arxiv_org_abs_2506_17860
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Wear in multiple network elastomers arises from the continuous accumulation of molecular damage rather than microcrack growth
Taisne, Ombeline
Caillard, Julien
Boullay, Côme Thillaye du
Couty, Marc
Creton, Costantino
Comtet, Jean
Soft Condensed Matter
Materials Science
Tire wear releases millions of tons of particles annually, bearing immense industrial and environmental impact. However, efforts to mitigate the wear of elastomeric materials remain largely empirical, due to a limited understanding of the underlying damage mechanisms that cause wear. Employing mechanochemical approaches on model multiple network elastomers, we uncover how polymer strand scission events - the elemental damage units in these disordered networks - evolve during frictional wear. Our findings demonstrate that discrete micro-slippage at rough contacting asperities damages the material several micrometers below the surface through stress-activated bond scission events. This steady accumulation of subsurface damage ultimately leads to material erosion through the generation of a degraded viscous layer, painting a new picture of wear as a continuous damage growth process. Our approach further demonstrates an enhanced resilience to wear when tuning material architecture to reduce sensitivity to stress fluctuations, paving the way for knowledge-based strategies to develop more sustainable materials.
title Wear in multiple network elastomers arises from the continuous accumulation of molecular damage rather than microcrack growth
topic Soft Condensed Matter
Materials Science
url https://arxiv.org/abs/2506.17860