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Analiza vpliva geometrijskih sprememb na delovanje stikalnega mehanizma električnega odklopnika
ID Lisec, Jernej (Author), ID Čepon, Gregor (Mentor) More about this mentor... This link opens in a new window, ID Peperko, Aljoša (Comentor)

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Abstract
Zaradi vse strožjih zahtev delovanja je potrebno zaščitne naprave nenehno izboljševati, hkrati pa zniževati stroške izdelave. Zadnje čase so kombinirana zaščitna stikala ena izmed bolj popularnih zaščitnih naprav, ki združujejo delovanje inštalacijskih odklopnikov in stikal na diferenčni tok. V nalogi je predstavljena obravnava obstoječe in priprava izboljšane konstrukcije stikalnega mehanizma odklopniškega dela s pomočjo numerične analize, kjer smo z dinamiko sistema teles simulirali vklop in izklop obeh konstrukcij. Iz simulacij izklopa smo določili izklopne sile in izklopne čase. V nadaljevanju je izvedena tudi analiza na fizičnih vzorcih, pri kateri smo preko dobljenih izklopnih sil, izklopnih časov ter temperaturnega testa preverili vpliv modifikacij v realnih pogojih. Pri tem smo si pomagali tudi s hitro kamero. Iz rezultatov analiz smo ugotovili, da smo glede na izklopne sile in izkopne čase, z modifikacijo konstrukcije izboljšali delovanje mehanizma. Prav tako smo s pomočjo testa ugotovili, da se je izboljšala temperaturna odpornost mehanizma.

Language:Slovenian
Keywords:kombinirana zaščitna stikala, stikalni mehanizem, modifikacija konstrukcije, numerične simulacije, dinamika sistema teles, izklopne sile, izklopni časi, hitra kamera, temperaturni test
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FS - Faculty of Mechanical Engineering
Year:2025
Number of pages:XXIV, 76 str.
PID:20.500.12556/RUL-171353 This link opens in a new window
UDC:621.316.577:519.876.5(043.2)
COBISS.SI-ID:246783491 This link opens in a new window
Publication date in RUL:23.08.2025
Views:134
Downloads:32
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Secondary language

Language:English
Title:Analysis of geometrical modifications on the switching mechanism performance in an electrical circuit breaker
Abstract:
Due to increasingly stringent operational requirements, protective devices must be continuously improved while reducing manufacturing costs. One of the most popular protective devices in recent times are residual current circuit breakers with overcurrent protection, which combine the operation of circuit breakers and residual current circuit breakers. This paper presents a discussion of the existing design and the preparation of an improved switching mechanism design using numerical analysis, where we used multybody dynamics to simulate the switch-on and switch-off of both mechanism designs. From the switch-off simulations, we determined the tripping forces and tripping times. This is followed by an analysis of physical samples, in which we checked out the impact of the modifications in real-life conditions through the obtained tripping forces, tripping times and from the temperature test. A high-speed camera was used to support the analysis. The results of the analysis showed that, in terms of tripping forces and tripping times, the modification of the design improved the performance of the mechanism. The test also showed that the temperature resistance of the mechanism had improved.

Keywords:residual current circuit breakers with overcurrent protection, switching mechanism, design modification, numerical simulations, multibody dynamics, tripping forces, tripping times, high-speed camera, temperature test

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