Thermally conductive polymer nanocomposites for filament-based additive manufacturing

Thermal management is a crucial factor affecting the performance and lifetime in several applications, such as electronics, generators, and heat exchangers. Additive manufacturing (AM) techniques provide a new revolution in manufacturing by expanding freedom for design and fabrication for complex ge...

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Main Authors: Almuallim, Basel, Wan Sharuzi, Wan Harun, Al Rikabi, Ihab Jabbar, Mohammed, Hussein A.
Format: Article
Language:English
English
Published: Springer 2022
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/38855/1/Thermally%20conductive%20polymer%20nanocomposites%20for%20filament-based%20additive%20manufacturing.pdf
http://umpir.ump.edu.my/id/eprint/38855/2/Thermally%20conductive%20polymer%20nanocomposites%20for%20filament-based%20additive%20manufacturing_ABS.pdf
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author Almuallim, Basel
Wan Sharuzi, Wan Harun
Al Rikabi, Ihab Jabbar
Mohammed, Hussein A.
author_facet Almuallim, Basel
Wan Sharuzi, Wan Harun
Al Rikabi, Ihab Jabbar
Mohammed, Hussein A.
author_sort Almuallim, Basel
collection UMP
description Thermal management is a crucial factor affecting the performance and lifetime in several applications, such as electronics, generators, and heat exchangers. Additive manufacturing (AM) techniques provide a new revolution in manufacturing by expanding freedom for design and fabrication for complex geometries. One way to overcome these problems is by developing novel polymer-based composite materials with improved thermal conductivity properties for AM technologies. In this review, the fundamental principles of designing high thermal conductive polymer nanocomposites are presented. High thermal conductive polymer nanocomposites generally consist of the base polymer and thermally conductive filler materials such as aluminum oxide or boron nitride which are reviewed in detail. The factors affecting the thermal conductivity of composites, such as the filler loading and overall composite structure, are also summarized. This article stands on statistical data from technical papers published during 2000–2020 about the topics of fused deposition modeling (FDM) polymers or their thermal conductive composites. Finally, the most critical factors affecting the thermal conductivity of polymer nanocomposites are described in detail. Nonetheless, various novel techniques show the potential abilities of thermal conductivity of polymer nanocomposites usage by AM technologies, enabling applications in LED devices, energy, and electronic packaging. Graphical abstract: [Figure not available: see fulltext.]
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spelling UMPir388552023-11-14T00:48:24Z http://umpir.ump.edu.my/id/eprint/38855/ Thermally conductive polymer nanocomposites for filament-based additive manufacturing Almuallim, Basel Wan Sharuzi, Wan Harun Al Rikabi, Ihab Jabbar Mohammed, Hussein A. T Technology (General) TA Engineering (General). Civil engineering (General) TJ Mechanical engineering and machinery TK Electrical engineering. Electronics Nuclear engineering TS Manufactures Thermal management is a crucial factor affecting the performance and lifetime in several applications, such as electronics, generators, and heat exchangers. Additive manufacturing (AM) techniques provide a new revolution in manufacturing by expanding freedom for design and fabrication for complex geometries. One way to overcome these problems is by developing novel polymer-based composite materials with improved thermal conductivity properties for AM technologies. In this review, the fundamental principles of designing high thermal conductive polymer nanocomposites are presented. High thermal conductive polymer nanocomposites generally consist of the base polymer and thermally conductive filler materials such as aluminum oxide or boron nitride which are reviewed in detail. The factors affecting the thermal conductivity of composites, such as the filler loading and overall composite structure, are also summarized. This article stands on statistical data from technical papers published during 2000–2020 about the topics of fused deposition modeling (FDM) polymers or their thermal conductive composites. Finally, the most critical factors affecting the thermal conductivity of polymer nanocomposites are described in detail. Nonetheless, various novel techniques show the potential abilities of thermal conductivity of polymer nanocomposites usage by AM technologies, enabling applications in LED devices, energy, and electronic packaging. Graphical abstract: [Figure not available: see fulltext.] Springer 2022-02 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/38855/1/Thermally%20conductive%20polymer%20nanocomposites%20for%20filament-based%20additive%20manufacturing.pdf pdf en http://umpir.ump.edu.my/id/eprint/38855/2/Thermally%20conductive%20polymer%20nanocomposites%20for%20filament-based%20additive%20manufacturing_ABS.pdf Almuallim, Basel and Wan Sharuzi, Wan Harun and Al Rikabi, Ihab Jabbar and Mohammed, Hussein A. (2022) Thermally conductive polymer nanocomposites for filament-based additive manufacturing. Journal of Materials Science, 57 (6). 3993 -4019. ISSN 0022-2461. (Published) https://doi.org/10.1007/s10853-021-06820-2 https://doi.org/10.1007/s10853-021-06820-2
spellingShingle T Technology (General)
TA Engineering (General). Civil engineering (General)
TJ Mechanical engineering and machinery
TK Electrical engineering. Electronics Nuclear engineering
TS Manufactures
Almuallim, Basel
Wan Sharuzi, Wan Harun
Al Rikabi, Ihab Jabbar
Mohammed, Hussein A.
Thermally conductive polymer nanocomposites for filament-based additive manufacturing
title Thermally conductive polymer nanocomposites for filament-based additive manufacturing
title_full Thermally conductive polymer nanocomposites for filament-based additive manufacturing
title_fullStr Thermally conductive polymer nanocomposites for filament-based additive manufacturing
title_full_unstemmed Thermally conductive polymer nanocomposites for filament-based additive manufacturing
title_short Thermally conductive polymer nanocomposites for filament-based additive manufacturing
title_sort thermally conductive polymer nanocomposites for filament based additive manufacturing
topic T Technology (General)
TA Engineering (General). Civil engineering (General)
TJ Mechanical engineering and machinery
TK Electrical engineering. Electronics Nuclear engineering
TS Manufactures
url http://umpir.ump.edu.my/id/eprint/38855/1/Thermally%20conductive%20polymer%20nanocomposites%20for%20filament-based%20additive%20manufacturing.pdf
http://umpir.ump.edu.my/id/eprint/38855/2/Thermally%20conductive%20polymer%20nanocomposites%20for%20filament-based%20additive%20manufacturing_ABS.pdf
work_keys_str_mv AT almuallimbasel thermallyconductivepolymernanocompositesforfilamentbasedadditivemanufacturing
AT wansharuziwanharun thermallyconductivepolymernanocompositesforfilamentbasedadditivemanufacturing
AT alrikabiihabjabbar thermallyconductivepolymernanocompositesforfilamentbasedadditivemanufacturing
AT mohammedhusseina thermallyconductivepolymernanocompositesforfilamentbasedadditivemanufacturing