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Diagnostika mehanskih sistemov z identifikacijo dinamskih lastnosti pri rotacijskem vzbujanju
ID Pflaum, Agata (Author), ID Čepon, Gregor (Mentor) More about this mentor... This link opens in a new window, ID Ocepek, Domen (Comentor)

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Abstract
V zaključni nalogi je obravnavana možnost zaznavanja sprememb dinamskih lastnosti konstrukcij pri moduliranem rotacijskem vzbujanju z uporabo cenovno dostopne merilne opreme. Konzolno vpet namenski pločevinasti preizkušanec je bil vzbujan s servo motorjem z ekscentrično maso, odziv pa merjen z MEMS-pospeškomerom in mikrokrmilnikom ESP32. Iz meritev je bila določena frekvenčna prenosna funkcija, nato pa opravljena primerjava odziva nepoškodovanega in poškodovanega preizkušanca. Po vnosu poškodbe so se spremenile amplitude in frekvence resonančnih vrhov. Rezultati kažejo, da je obravnavani pristop primeren za spremljanje stanja mehanskih sistemov in zgodnje zaznavanje sprememb njihovih dinamskih lastnosti.

Language:Slovenian
Keywords:modulirano rotacijsko vzbujanje, frekvenčna prenosna funkcija, identifikacija dinamskih lastnosti, mikrokrmilnik, strukturna dinamika
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[A. Pflaum]
Year:2026
PID:20.500.12556/RUL-187158 This link opens in a new window
UDC:531.395:531.76:621.3(043.2)
COBISS.SI-ID:290624771 This link opens in a new window
Publication date in RUL:09.09.2026
Views:53
Downloads:15
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Secondary language

Language:English
Title:Diagnostics of mechanical systems through identification of dynamic properties under rotational excitation
Abstract:
This final thesis examines the possibility of detecting changes in the dynamic properties of structures under modulated rotational excitation using affordable measurement equipment. A cantilevered, purpose-built sheet metal test specimen was excited by a servomotor with an eccentric mass, and the response was measured using a MEMS accelerometer and an ESP32 microcontroller. The frequency response function was determined from the measurements, followed by a comparison of the responses of the undamaged and damaged test specimen. Following the caused damage, the amplitudes and frequencies of the resonance peaks changed. The results show that the approach under consideration is suitable for monitoring the condition of mechanical systems and for the early detection of changes in their dynamic properties.

Keywords:modulated rotational excitation, frequency response function, identification of dynamic properties, microcontroller, structural dynamics

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