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Napoved preboja vode skozi PTFE membrano pri testu vodnega stolpca
ID Lenaršič, Rok (Author), ID Slemenik Perše, Lidija (Mentor) More about this mentor... This link opens in a new window

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Abstract
V magistrskem delu raziskujemo korelacijo med testi preboja vode in testi vodnega stolpca na PTFE-membranah za ventilacijske enote v električnih vozilih. Opravili smo teste preboja vode in teste vodnega stolpca na membranah različnih premerov, ki so bile pritrjene na aluminijaste ploščice, simulirajoč proizvodne pogoje. Za potrebe kalibracije materialnih modelov smo izvedli enoosne natezne preizkuse na pravokotnih vzorcih membrane pri različnih hitrostih deformacij in pri konstantnih napetostih. Na podlagi eksperimentalno določenih tlakov in višin deformacij membrane na točki preboja vode skozi membrano smo s pomočjo numerično določenih lokalnih deformacij razvili model, ki omogoča napovedovanje tlaka, ob katerem pride do preboja vode skozi poro membrane glede na lokalno deformacijo. Model omogoča določitev tlaka testa preboja vode, pri katerem je možnost preboja vode enaka kot pri testu vodnega stolpca pri določenem tlaku in času testa, kar bistveno izboljša možnost nadzora kakovosti in varnost ventilacijskih enot v električnih vozilih.

Language:Slovenian
Keywords:politetrafluoroetilenska membrana, test vodnega stolpca, test preboja vode, natezni preizkus, baterijske prezračevalne enote
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[R. Lenaršič]
Year:2024
Number of pages:XX, 61 str.
PID:20.500.12556/RUL-154718 This link opens in a new window
UDC:532:62-278:620.172(043.2)
COBISS.SI-ID:186964483 This link opens in a new window
Publication date in RUL:24.02.2024
Views:539
Downloads:95
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Secondary language

Language:English
Title:Prediction of water penetration through a PTFE membrane in a water column test
Abstract:
In the master’s thesis, we explored the correlation between Water Entry Pressure (WEP) tests and water column tests on PTFE membranes for ventilation units in electric vehicles. We conducted experimental tests on membranes of various diameters attached to aluminum plates, simulating production conditions. To calibrate the material models, we performed uniaxial tensile tests on rectangular membrane samples at different deformation rates and constant stresses. Based on experimentally determined pressures and height of deformation of the membrane at the water breakthrough points, we developed a model using numerically determined local deformations, which enables the prediction of the pressure at which water breakthrough occurs through the membrane pores based on local deformation. The model allows for determining the water breakthrough pressure test at which the possibility of water breakthrough is equal to that of the water column test at a specific pressure and test duration, significantly improving the quality control and safety of ventilation units in electric vehicles.

Keywords:polytetrafluoroethylene membrane, water column test, water entry pressure test, numerical simulations, battery venting units

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