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Thermal Characterisation and Modelling for a Single Sided Axial Flux SMC Stator
University West, Department of Engineering Science.
University West, Department of Engineering Science.
2025 (English)Independent thesis Advanced level (degree of Master (One Year)), 10 credits / 15 HE creditsStudent thesis
Abstract [en]

This study investigates the thermal behaviour of a single-sided axial flux electric motor stator composed of a soft magnetic composite (SMC) material through experimental characterization and lumped parameter thermal modelling. With increasing demands for compact and high-power-density motor designs, effective thermal management becomes critical to ensure reliability and performance.

The research focuses on both DC and AC loading conditions, employing a spatially resolved sensor network to capture detailed temperature distributions across stator components such as windings, yoke, and teeth. A two-stage modelling approach was implemented: an initial single-node thermal network validated basic assumptions, followed by a refined multi-node model capable of simulating transient and spatial thermal behaviour with high fidelity.

Experimentally determined thermal conductivities and convection coefficients, alongside a tailored nodal network, enabled the accurate prediction of temperature evolution. Validation against experimental data showed a maximum absolute error of under 10 °C, with coil temperature predictions consistently within 5 °C.

The model successfully incorporated AC iron losses using the Steinmetz equation, demonstrating applicability to dynamic operating scenarios. This work establishes a validated, adaptable methodology for thermal analysis of axial flux electric machine stators, supporting future design optimization and thermal management strategies. 

Place, publisher, year, edition, pages
2025. , p. 49
Keywords [en]
Thermal Characterisation, Modelling, Single Sided Axial Flux SMC Stator
National Category
Other Electrical Engineering, Electronic Engineering, Information Engineering
Identifiers
URN: urn:nbn:se:hv:diva-24006Local ID: EXE800OAI: oai:DiVA.org:hv-24006DiVA, id: diva2:1991889
Subject / course
Electrotechnology
Educational program
Master Programme in Electric vehicle engineering
Supervisors
Examiners
Available from: 2025-09-01 Created: 2025-08-26 Last updated: 2025-09-30Bibliographically approved

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CiteExportLink to record
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