Fabrication and testing of composites with oriented microstructures

Electronic system design has been requiring critical attention and consideration especially since devices have been increasingly densely packaged. Effective heat dissipation and regulation is a crucial factor in system design to guarantee excellent device performance. Thermal Interface Materials (TI...

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Main Author: Balane, Gadil Veronica Yvonne
Other Authors: Hortense Le Ferrand
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2024
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Online Access:https://hdl.handle.net/10356/176047
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1760472024-05-18T16:45:57Z Fabrication and testing of composites with oriented microstructures Balane, Gadil Veronica Yvonne Hortense Le Ferrand School of Materials Science and Engineering Hortense@ntu.edu.sg Engineering Composites Boron nitride Slip casting Electronic system design has been requiring critical attention and consideration especially since devices have been increasingly densely packaged. Effective heat dissipation and regulation is a crucial factor in system design to guarantee excellent device performance. Thermal Interface Materials (TIMs) are high thermal conducting materials used to fill the interfacial gap between two or more stacked electronic components and channel the heat to the heat sink. Composite made of hexagonal boron nitride (hBN) filler and polyvinylidene fluoride (PVDF) matrix presents as a prospective TIM. In this study, BN-PVDF composites are fabricated using the magnetically assisted slip casting (MASC) method. Optimum slurry concentration was determined by firstly deciding on the optimum PVDF concentration, which was identified to be 10wt% PVDF after visual inspection of pure PVDF films. Secondly, the BN concentration was varied to produce slurries of 20wt%, 30wt%, 40wt%, 45wt%, and 50wt% mBN. After subjecting the slurries to rheological characterization, and fabricating film and bulk samples for morphological characterization using SEM, 45wt% BN emerged to be the optimum slurry concentration. The 45wt% BN slurry was then used to create vertically, horizontally, and randomly aligned film and bulk samples to further realize the material’s thermal properties. The samples were subjected to heating and cooling processes, where it was established that the vertical alignment conducts heat the fastest. Lastly, the thermal conductivities of samples were measured. Despite the through-thickness thermal conductivity of the vertically aligned 45wt% mBN sample being the highest with a value of 0.821 Wm-1K-1, it remained incomparable to other BN polymer composites that were previously fabricated. Further optimization of the fabrication process could be carried out in future works specifically reduction of porosities by sintering or by filling the voids with silicone oil in order to improve its thermal conductivity value. Mechanical and electrical testing should also be conducted to provide a comprehensive material characterization and to determine the usefulness of BN-PVDF composite especially in high power density electronics. Bachelor's degree 2024-05-13T07:28:31Z 2024-05-13T07:28:31Z 2024 Final Year Project (FYP) Balane, G. V. Y. (2024). Fabrication and testing of composites with oriented microstructures. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/176047 https://hdl.handle.net/10356/176047 en application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering
Composites
Boron nitride
Slip casting
spellingShingle Engineering
Composites
Boron nitride
Slip casting
Balane, Gadil Veronica Yvonne
Fabrication and testing of composites with oriented microstructures
description Electronic system design has been requiring critical attention and consideration especially since devices have been increasingly densely packaged. Effective heat dissipation and regulation is a crucial factor in system design to guarantee excellent device performance. Thermal Interface Materials (TIMs) are high thermal conducting materials used to fill the interfacial gap between two or more stacked electronic components and channel the heat to the heat sink. Composite made of hexagonal boron nitride (hBN) filler and polyvinylidene fluoride (PVDF) matrix presents as a prospective TIM. In this study, BN-PVDF composites are fabricated using the magnetically assisted slip casting (MASC) method. Optimum slurry concentration was determined by firstly deciding on the optimum PVDF concentration, which was identified to be 10wt% PVDF after visual inspection of pure PVDF films. Secondly, the BN concentration was varied to produce slurries of 20wt%, 30wt%, 40wt%, 45wt%, and 50wt% mBN. After subjecting the slurries to rheological characterization, and fabricating film and bulk samples for morphological characterization using SEM, 45wt% BN emerged to be the optimum slurry concentration. The 45wt% BN slurry was then used to create vertically, horizontally, and randomly aligned film and bulk samples to further realize the material’s thermal properties. The samples were subjected to heating and cooling processes, where it was established that the vertical alignment conducts heat the fastest. Lastly, the thermal conductivities of samples were measured. Despite the through-thickness thermal conductivity of the vertically aligned 45wt% mBN sample being the highest with a value of 0.821 Wm-1K-1, it remained incomparable to other BN polymer composites that were previously fabricated. Further optimization of the fabrication process could be carried out in future works specifically reduction of porosities by sintering or by filling the voids with silicone oil in order to improve its thermal conductivity value. Mechanical and electrical testing should also be conducted to provide a comprehensive material characterization and to determine the usefulness of BN-PVDF composite especially in high power density electronics.
author2 Hortense Le Ferrand
author_facet Hortense Le Ferrand
Balane, Gadil Veronica Yvonne
format Final Year Project
author Balane, Gadil Veronica Yvonne
author_sort Balane, Gadil Veronica Yvonne
title Fabrication and testing of composites with oriented microstructures
title_short Fabrication and testing of composites with oriented microstructures
title_full Fabrication and testing of composites with oriented microstructures
title_fullStr Fabrication and testing of composites with oriented microstructures
title_full_unstemmed Fabrication and testing of composites with oriented microstructures
title_sort fabrication and testing of composites with oriented microstructures
publisher Nanyang Technological University
publishDate 2024
url https://hdl.handle.net/10356/176047
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