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Karakterizacija topografskih parametrov površin po različnih obdelovalnih postopkih
ID Prtenjak, Hana (Author), ID Kalin, Mitjan (Mentor) More about this mentor... This link opens in a new window

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Abstract
Razumevanje povezave med obdelovalnimi procesi in lastnostmi površin je ključno za optimizacijo triboloških karakteristik mehanskih komponent. Različne obdelave ustvarjajo specifične površinske strukture, vendar sistematična metodologija za njihovo identifikacijo in karakterizacijo ni bila razvita. V raziskavi smo analizirali površinsko topografijo vzorcev, obdelanih s štirimi osnovnimi postopki (struženje, frezanje, brušenje, poliranje) v treh intenzitetah. S kontaktnim tipalom smo izmerili 19 parametrov hrapavosti na 60 vzorcih. Uporabili smo multivariatno statistično analizo, analizo glavnih komponent, spektralno analizo gostote moči in analizo anizotropije. Rezultati kažejo, da vsaka obdelava ustvarja edinstvene topografske lastnosti z statistično značilnimi razlikami (p < 0,001). Parameter asimetrije profila (Rsk) dosega najvišjo diskriminatorno moč, medtem ko tradicionalni parametri (Ra, Rq) niso najboljši diskriminatorji. Razvili smo 3-stopenjski klasifikacijski model za avtomatsko identifikacijo obdelovalnih procesov. Analiza glavnih komponent je pokazala, da se 19 parametrov lahko reducira na štiri komponente, ki pojasnijo 97% variabilnosti.

Language:Slovenian
Keywords:površinska hrapavost, tribologija, obdelovalni procesi, topografski parametri, statistične analize
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FS - Faculty of Mechanical Engineering
Year:2025
Number of pages:XXI, 102 str.
PID:20.500.12556/RUL-174031 This link opens in a new window
UDC:539.92:621.941:621.7.019(043.2)
COBISS.SI-ID:250887683 This link opens in a new window
Publication date in RUL:26.09.2025
Views:394
Downloads:153
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Secondary language

Language:English
Title:Characterization of topographical parameters of surfaces after different machining processes
Abstract:
Understanding the relationship between machining processes and surface properties is crucial for optimizing tribological characteristics of mechanical components. Different machining operations create specific surface structures, however, a systematic methodology for their identification and characterization has not been developed. We analyzed surface topography of samples machined with four basic processes (turning, milling, grinding, polishing) in three intensities. Using contact stylus profilometer, we measured 19 roughness parameters on 60 samples. We applied multivariate statistical analysis, principal component analysis, power spectral density analysis, and anisotropy analysis. Results show that each machining operation creates unique topographical properties with statistically significant differences (p < 0.001). Profile asymmetry parameter (Rsk) achieves the highest discriminatory power, while traditional parameters (Ra, Rq) are not the best discriminators. We developed a 3-level classification model for automatic identification of machining processes. Principal component analysis showed that 19 parameters can be reduced to four components explaining 97% of variability.

Keywords:surface roughness, tribology, machining processes, surface parameters, statistical analyses

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