Evolution of the contact between rough viscoelastic solids after decreasing loads: memory erasure and monotonic increase

Fuente: arXiv
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Autori principali: Li, Zichen, Brenner, Renald, Frérot, Lucas
Natura: Preprint
Pubblicazione: 2025
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author Li, Zichen
Brenner, Renald
Frérot, Lucas
author_facet Li, Zichen
Brenner, Renald
Frérot, Lucas
contents The real area of contact governs, in part, the magnitude of the friction force, yet its time evolution in rough viscoelastic interfaces remains incompletely understood. In experiments of contact between polymethylmethacrylate blocks under decreasing normal loads, Dillavou and Rubinstein have shown that the true contact area exhibits, after unloading, a decreasing phase and long-term memory of the contact state prior to unloading. It is however unclear what modeling ingredients are necessary to reproduce these two features. Here, we investigate these effects using fractional viscoelastic rough contact models. By adapting existing contact theories and numerical simulation methods to fractional viscoelasticity, which induces a wide relaxation spectrum, we reproduce logarithmic aging under constant load, but show that memory of the contact state is erased upon unloading. Indeed, the contact area behaves as if it had always experienced the reduced load, even on short time-scales, contrasting with the response of a standard linear solid. Moreover, none of our results show a decreasing regime of the contact area after unload: we ultimately prove that this is the case for all linear viscoelastic models -- despite capturing logarithmic aging -- leading to the conclusion that additional local internal variables are required to explain both long-term contact memory and contact area reduction after unloading.
format Preprint
id arxiv_https___arxiv_org_abs_2511_19402
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Evolution of the contact between rough viscoelastic solids after decreasing loads: memory erasure and monotonic increase
Li, Zichen
Brenner, Renald
Frérot, Lucas
Soft Condensed Matter
The real area of contact governs, in part, the magnitude of the friction force, yet its time evolution in rough viscoelastic interfaces remains incompletely understood. In experiments of contact between polymethylmethacrylate blocks under decreasing normal loads, Dillavou and Rubinstein have shown that the true contact area exhibits, after unloading, a decreasing phase and long-term memory of the contact state prior to unloading. It is however unclear what modeling ingredients are necessary to reproduce these two features. Here, we investigate these effects using fractional viscoelastic rough contact models. By adapting existing contact theories and numerical simulation methods to fractional viscoelasticity, which induces a wide relaxation spectrum, we reproduce logarithmic aging under constant load, but show that memory of the contact state is erased upon unloading. Indeed, the contact area behaves as if it had always experienced the reduced load, even on short time-scales, contrasting with the response of a standard linear solid. Moreover, none of our results show a decreasing regime of the contact area after unload: we ultimately prove that this is the case for all linear viscoelastic models -- despite capturing logarithmic aging -- leading to the conclusion that additional local internal variables are required to explain both long-term contact memory and contact area reduction after unloading.
title Evolution of the contact between rough viscoelastic solids after decreasing loads: memory erasure and monotonic increase
topic Soft Condensed Matter
url https://arxiv.org/abs/2511.19402