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Optimizacija raztrosa velikosti reže med statorjem in rotorjem za prehod od prototipov do maloserijske proizvodnje elektromotorja
ID Hodin, Julijan (Author), ID Jenko, Marjan (Mentor) More about this mentor... This link opens in a new window, ID Rihar, Lidija (Comentor)

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Abstract
V diplomskem delu vrednotimo velikost zračne reže sinhronskega elektromotorja kot posledice izdelovalnih oblikovnih in dimenzijskih toleranc. Z večjo zračno režo pogojena večja magnetna upornost zmanjša motorni navor, manjšanje zračne reže pa omejijo oblika obodov rotorja in statorja, proizvodne tolerance in potrebna zračnost v ležajih rotorja. Na podlagi predpisanih toleranc na delavniških risbah so bile izvedene meritve dimenzij statorjev in rotorjev na koordinatnem merilnem stroju. Z uporabo statističnih metod smo ovrednotili kakovost proizvodnega procesa. Izmerjene vrednosti prikažemo na grafu Normalne porazdelitvene funkcije in na diagramu kontrole. Poleg tolerančne analize so pomembni tudi izbrani feromagnetni materiali, saj legirani elementi neposredno vplivajo na velikost magnetne upornosti RM. Analiza je pokazala, da so izmerjene vrednosti večje od pričakovanih, ter da proces struženja statorjev ni zadovoljivo nadzorovan.

Language:Slovenian
Keywords:elektromotor, stator, rotor, zračna reža, tolerančna analiza, statistični nadzor procesov, prototipiranje, magnetna upornost
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FS - Faculty of Mechanical Engineering
Year:2024
Number of pages:XXII, 65 str.
PID:20.500.12556/RUL-165363 This link opens in a new window
UDC:621.3.043.2:621.313.13(043.2)
COBISS.SI-ID:223475203 This link opens in a new window
Publication date in RUL:04.12.2024
Views:582
Downloads:671
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Secondary language

Language:English
Title:Optimization of gap size spread between stator and rotor for transition from prototypes to electric motor small-scale production
Abstract:
This thesis examines the impact of air gap size in synchronous electric motors, considering the manufacturing design and dimensional tolerances required. A larger air gap is constrained by magnetic resistance and motor efficiency, while a smaller air gap is limited by the rotor and stator shapes. To assess the quality of the production process, stators and rotors were measured using a coordinate measuring machine based on the specified tolerances in the workshop drawings. Statistical methods were employed to evaluate the production process quality. The measured values are presented using Gaussian distribution graphs and control charts. Besides tolerance analysis, the choice of ferromagnetic material is crucial, as different alloys can increase or decrease magnetic resistance. The analysis revealed that the measured values were higher than expected, indicating that the stator turning process is not satisfactory managed.

Keywords:electric motor, stator, rotor, air gap, tolerance analysis, statistical process control, prototyping, magnetic resistance

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