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1. Baurle, L., Kaempfer, T.U., Szabo, D., & Spencer, N.D. (2007). Sliding friction of polyethylene on snow and ice: Contact area and modeling. Cold Reg. Sci. Technol., 47, 276–289. doi:10.1016/j.coldregions.2006.10.00510.1016/j.coldregions.2006.10.005Open DOISearch in Google Scholar

2. Spagni, A., Berardo, A., Marchetto, D., Gualtieri, E., Pugno, N.M., & Valeri, S. (2016). Friction of rough surfaces on ice: Experiments and modeling. Wear, 368–369, 258–266. doi:10.1016/j.wear.2016.10.00110.1016/j.wear.2016.10.001Open DOISearch in Google Scholar

3. Ducret, S., Zahouani, H., Midol, A., Lanteri, P., & Mathia, T.G. (2005). Friction and abrasive wear of UHWMPE sliding on ice. Wear, 26–31. doi:10.1016/j.wear.2004.09.0264.10.1016/j.wear.2004.09.0264Open DOISearch in Google Scholar

4. Baurle, L., Szabó, D., Fauve, M., Rhyner, H., & Spencer, N.D. (2006). Sliding friction of polyethylene on ice: Tribometer measurements. Tribol. Lett., 24, 77–84. doi:10.1007/s11249-006-9147-z10.1007/s11249-006-9147-zOpen DOISearch in Google Scholar

5. Rohm, S., Hasler, M., Knoflach, C., van Putten, J., Unterberger, S.H., Schindelwig, K. …Nachbauer, W. (2015). Friction between steel and snow in dependence of the steel roughness. Tribol. Lett., 59, 27. doi:10.1007/s11249-015-0554-x10.1007/s11249-015-0554-xOpen DOISearch in Google Scholar

6. Scherge, M., Böttcher, R., Spagni, A., & Marchetto, D. (2018). High-speed measurements of steel–ice friction: Experiment vs. calculation. Lubricants, 6, 26. doi:10.3390/lubricants601002610.3390/lubricants6010026Open DOISearch in Google Scholar

7. Lungevics, J., Jansons, E., & Gross, K.A. (2018). An ice track equipped with optical sensors for determining the influence of experimental conditions on the sliding velocity. Latv. J. Phys. Tech. Sci., 55, 64–75. doi:10.2478/LPTS-2018-000710.2478/LPTS-2018-0007Open DOISearch in Google Scholar

8. Jansons, E., Lungevics, J., Stiprais, K., Pluduma, L., & Gross, K.A. (2018). Measurement of sliding velocity on ice, as a function of temperature, runner load and roughness, in a skeleton push-start facility. Cold Reg. Sci. Technol., 151, 260–266. doi:10.1016/J.COLDREGIONS.2018.03.01510.1016/j.coldregions.2018.03.015Search in Google Scholar

9. Kietzig, A.-M., Hatzikiriakos, S.G., & Englezos, P. (2009). Ice friction: The effects of surface roughness, structure, and hydrophobicity. J. Appl. Phys., 106, 24303. doi:10.1063/1.317334610.1063/1.3173346Open DOISearch in Google Scholar

eISSN:
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Anglais
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Sujets de la revue:
Physics, Technical and Applied Physics