Laser-Treated Steel Surfaces Gliding on Snow at Different Temperatures

Author:

Maggiore Ettore1ORCID,Corsaro Carmelo2ORCID,Fazio Enza2ORCID,Mirza Inam3ORCID,Ripamonti Francesco4ORCID,Tommasini Matteo1ORCID,Ossi Paolo M.5

Affiliation:

1. Dipartimento di Chimica, Materiali e Ingegneria Chimica “G. Natta”, Politecnico di Milano, 20133 Milano, Italy

2. Dipartimento di Scienze Matematiche e Informatiche, Scienze Fisiche e Scienze della Terra, Università degli Studi di Messina, 98166 Messina, Italy

3. HiLASE Center, Institute of Physics of the Czech Academy of Sciences (CAS), 252 41 Dolní Břežany, Czech Republic

4. Dipartimento di Meccanica, Politecnico di Milano, 20156 Milano, Italy

5. Dipartimento di Energia, Politecnico di Milano, 20133 Milano, Italy

Abstract

With the goal of substituting a hard metallic material for the soft Ultra High Molecular Weight Polyethylene (UHMWPE) presently used to make the bases of skis for alpine skiing, we used two non-thermodynamic equilibrium surface treatments with ultra-short (7–8 ps) laser pulses to modify the surface of square plates (50 × 50 mm2) made of austenitic stainless steel AISI 301H. By irradiating with linearly polarized pulses, we obtained Laser Induced Periodic Surface Structures (LIPSS). By laser machining, we produced a laser engraving on the surface. Both treatments produce a surface pattern parallel to one side of the sample. For both treatments, we measured with a dedicated snow tribometer the friction coefficient µ on compacted snow at different temperatures (−10 °C; −5 °C; −3 °C) for a gliding speed range between 1 and 6.1 ms−1. We compared the obtained µ values with those of untreated AISI 301H plates and of stone grinded, waxed UHMWPE plates. At the highest temperature (−3 °C), near the snow melting point, untreated AISI 301H shows the largest µ value (0.09), much higher than that of UHMWPE (0.04). Laser treatments on AISI 301H gave lower µ values approaching UHMWPE. We studied how the surface pattern disposition, with respect to the gliding direction of the sample on snow, affects the µ trend. For LIPSS with pattern, orientation perpendicular to the gliding direction on snow µ (0.05) is comparable with that of UHMWPE. We performed field tests on snow at high temperature (from −0.5 to 0 °C) using full-size skis equipped with bases made of the same materials used for the laboratory tests. We observed a moderate difference in performance between the untreated and the LIPSS treated bases; both performed worse than UHMWPE. Waxing improved the performance of all bases, especially LIPSS treated.

Funder

European Regional Development Fund and the state budget of the Czech Republic

Publisher

MDPI AG

Subject

General Materials Science

Reference27 articles.

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2. Tradati, A. (2022, July 26). Il Noleggio Sci in Italia Indagine sul Mercato e Analisi dei Risultati. Available online: https://www.fierabolzano.it/uploads/blocks/files/prowinter_lab_2019_2020_1588242257.pdf.

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5. Nanorheology of Interfacial Water during Ice Gliding;Canale;Phys. Rev. X,2019

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