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Eksperimentalno določanje realne kontaktne površine v kontaktih z relativnim gibanjem
ID Jan, Petra (Author), ID Kalin, Mitjan (Mentor) More about this mentor... This link opens in a new window

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Abstract
Površine niso nikoli popolnoma gladke, zato je dejanska, tj. realna kontaktna površina med vršički hrapavosti vedno manjša od nominalne kontaktne površine. Razumevanje realne kontaktne površine je ključno za napovedovanje dejanskih pogojev v kontaktih, zlasti pri kontaktih z relativnim gibanjem – drsenjem, kjer vpliva tudi na trenje. Doktorska disertacija preučuje razvoj realne kontaktne površine in trenja v kontaktih večih vršičkov med nominalno ravnimi površinami pri pogojih drsenja, relevantnih za inženirske aplikacije. Za določitev vpliva obremenitve, topografije površin in materialnih lastnosti je bilo razvito in-situ optično preizkuševališče, ki omogoča podrobno analizo celotnega kontakta večih vršičkov med drsenjem na submikronski skali, kar doslej v literaturi še ni bilo doseženo. Rezultati kažejo, da se realna kontaktna površina trdih kovinskih kontaktov poveča zaradi drsenja. Realna kontaktna površina in trenje sta določena predvsem s hrapavostjo površine in deformacijami vršičkov, ki so posledica normalne obremenitve. Vpliv materialnih lastnosti je manjši, saj je bilo opaženo kontaktno vedenje podobno za vse preizkušene kovinske materiale. Primerjava eksperimentalnih rezultatov z znanimi teoretičnimi modeli realne kontaktne površine in trenja, vključno s klasičnimi zakoni trenja, je pokazala odstopanja med izmerjenimi in modeliranimi vrednostmi zaradi modelnih predpostavk in poudarila pomen obravnave hrapavosti površin na ustrezni skali kot ključne spremenljivke za ustrezno analizo drsnih kontaktov.

Language:Slovenian
Keywords:realna kontaktna površina, trenje, drsni kontakt, topografija, in-situ analize, kontakt večih vršičkov
Work type:Doctoral dissertation
Typology:2.08 - Doctoral Dissertation
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[P. Jan]
Year:2026
Number of pages:XXIII, 137, [19] str.
PID:20.500.12556/RUL-184470 This link opens in a new window
UDC:539.92:539.43(043.3)
COBISS.SI-ID:284219395 This link opens in a new window
Publication date in RUL:08.07.2026
Views:206
Downloads:110
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Secondary language

Language:English
Title:Experimental validation of the real contact area in contacts with relative motion
Abstract:
No surfaces are perfectly smooth, so the actual, i.e. real contact area between asperities is always smaller than the nominal contact area. Understanding the real contact area is crucial for predicting actual conditions in engineering contacts, particularly those with relative motion – sliding, where it also affects friction. This doctoral thesis studies the real contact area and friction behaviour of multi-asperity contacts between nominally flat surfaces under engineering-relevant sliding conditions. To determine the influence of load, surface topography and material properties, an in-situ optical test rig was developed for detailed analysis of the entire multi-asperity contact during sliding at submicron scale, which was previously not available in the literature. Results show the real contact area of hard metal contacts increases from static to sliding conditions. Real contact area and friction are primarily governed by surface roughness and asperity deformations depending on the applied normal load. The influence of material properties is lesser, with similar contact behaviour observed for all tested metals. Experimental results were compared to well-known theoretical real contact area and friction models, including classical friction laws, showing deviations due to model assumptions and highlighting the importance of considering surface roughness at the appropriate scale as a key variable.

Keywords:real contact area, friction, sliding contact, surface topography, in-situ analysis, multi-asperity contact

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