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Določitev napetostno-deformacijskega stanja stružnice za les
ID Gartner, Nejc (Author), ID Klemenc, Jernej (Mentor) More about this mentor... This link opens in a new window, ID Merhar, Miran (Comentor)

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Abstract
V tej diplomski nalogi je predstavljena določitev napetostno-deformacijskega stanja stružnice za les pri zahtevnih obratovalnih pogojih. Pregled literature in izračun obremenitev sta pokazala, da največjo obremenitev predstavljajo rezalne sile, ki hitro naraščajo s povečanjem globine reza. Primerjalna napetost je potrdila, da gred iz jekla C35 zdrži predvidene obremenitve, vendar je dodatno povečanje globine reza lahko kritično. Simulacija povesa je pokazala, da deformacija gredi ni kritična za delovanje stružnice. Kritična vrtilna hitrost je bila izračunana na 4367 min?1, kar je bistveno več kot obratovalna hitrost stružnice 1562,5 min?1, torej stroj deluje v podkritičnem območju. Življenjska doba ležajev je ocenjena na 11 let vzdrževanja za ležaj A in 4 leta za ležaj B, kar zadostuje priporočeni življenjski dobi za obdelovalne stroje. Glavni doprinos diplomske naloge je določitev deformacijsko-napetostnega stanja stružnice za les pri težkih pogojih obratovanja, kar omogoča pripravo poročila za upravljanje stroja. Na podlagi rezultatov so podani predlogi za nadaljnje delo in izboljšave stružnice.

Language:Slovenian
Keywords:Stružnice, gredi, les, obdelava lesa, rezalne sile pri struženju, trdnostni preračuni gredi.
Work type:Bachelor thesis/paper
Organization:FS - Faculty of Mechanical Engineering
Year:2024
PID:20.500.12556/RUL-161154 This link opens in a new window
Publication date in RUL:07.09.2024
Views:75
Downloads:45
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Secondary language

Language:English
Title:Estimating a stress-strain state of a wood lathe
Abstract:
This thesis presents the determination of the stress-deformation state of a wood lathe under demanding operating conditions. A literature review and load calculations revealed that the biggest load is caused by cutting forces, which increase rapidly with the depth of cut. By a comparative stress analysis it was confirmed that a shaft made of C35 steel can withstand the expected loads; however, further increases in the depth of cut could be critical. Simulation of shaft deflection showed that deformation is not critical for the lathe's operation. The critical rotational speed was calculated to be 4367 min⠒1, which is significantly higher than the lathe's operating speed of 1562,5 min⠒1, indicating that the machine operates in a subcritical range. The bearing life was estimated to be 11 years for bearing A and 4 years for bearing B, which meets the recommended lifespan for machine tool bearings. The main contribution of this thesis is the determination of the stress-deformation state of a wood lathe under heavy operating conditions, providing data that can be used to create guidelines for machine operation. Based on the results, recommendations for further work and improvements to the lathe are also presented.

Keywords:Lathes, shafts, wood, wood processing, cutting forces in turning, strength calculations of the shafts.

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