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Eksperimentalna in numerična analiza voljnosti polimernega ohišja rotorja elektromotorja
ID Bukovnik, Gašper (Author), ID Slemenik Perše, Lidija (Mentor) More about this mentor... This link opens in a new window, ID Halilovič, Miroslav (Comentor)

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Abstract
V sodelovanju s podjetjem Domel d. o. o. želimo preveriti ustreznost ohišja rotorja iz polifenilen sulfida. Pri tem se osredotočimo na časovno odvisne mehanske lastnosti polimerov. Ohišje tako v obratovalni dobi 30 000 h pri kotni hitrosti 650 rad/s in temperaturi 90 °C ne sme preseči pomika 0,6 mm na najbolj kritičnem mestu. Najprej pripravimo vzorce iz izbranega materiala za eksperimentalno določitev strižne voljnosti. S pomočjo časovno-temperaturne superpozicije iz serije meritev ustvarimo sumarno krivuljo s pomočjo CFS algoritma. Iz dobljene sumarne krivulje določimo parametre Pronyjeve vrste za popis viskoelastičnega materiala. S pomočjo metode končnih elementov z numerično simulacijo najprej preverimo ustreznost parametrov na testni simulaciji eksperimenta strižne voljnosti. Na koncu pripravimo funkcionalni numerični model rotorja, kjer ugotovimo, da pomik na ohišju po omenjeni časovni dobi ne preseže dopustne vrednosti.

Language:Slovenian
Keywords:strižno lezenje, metoda končnih elementov, Pronyjeve vrste, sumarna krivulja, viskoelastičnost, numerične simulacije
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[G. Bukovnik]
Year:2022
Number of pages:XXII, 50 str.
PID:20.500.12556/RUL-135256 This link opens in a new window
UDC:539.3:678.7:519.61(043.2)
COBISS.SI-ID:99853315 This link opens in a new window
Publication date in RUL:03.03.2022
Views:1502
Downloads:56
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Secondary language

Language:English
Title:Experimental and numerical analysis of compliance for polymer housing of the rotor of electromotor
Abstract:
In collaboration with Domel d. o. o. company we want to check viscoelastic effects of polyphenylene sulfide on rotor housing of electromotor. Housing is subjected to angular velocity of 650 rad/s and temperature of 90 °C. In time period of 30 000 h the housing must not exceed radial displacement of 0,6 mm. We start with experimental determination of creep compliance for chosen polymer. We obtain master curve from the series of short experiments with the help of time-temperature superposition and CFS algorithm. From the master curve we determine parameters of Prony series for behaviour of viscoelastic material. With finite element method we first run a test simulation with same boundary conditions as in creep compliance experiment in order to validate material parameters. At the end we establish functional numerical model of rotor with boundary conditions same as operating ones. Thus we simulate behaviour of rotor in time period of 30 000 h. We reach finding that radial displacement on housing does not exceed the admissible value.

Keywords:creep compliance, finite element method, Prony series, master curve, viscoelasticity, numerical simulations

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