THERMAL SCIENCE

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Construction of visual three-dimensional fabric reinforced composite thermal performance prediction system

ABSTRACT
In view of the construction of a visualized three-dimensional thermal performance prediction system for fabric reinforced composites, the thermal constants analyzer was used to analyze and compare the thermal conductivity of the three-dimensional fabric reinforced composites by experimental methods, such as fiber volume fraction, internal braiding angle, and different yarn reduction methods and fabric structures. The factors influencing the thermal conductivity of three-dimensional fabric reinforced composites were studied, and the principle of thermal conductivity was analyzed. The thermal expansion coefficients of three-dimensional fabric reinforced composites in X and Y directions are one order of magnitude smaller than those in Z directions. When aramid fabric is used as reinforcement, the composites with negative thermal expansion coefficients can be designed. The research results provide the necessary basis for the design, application and theoretical research of the three-dimensional fabric reinforced composites in heat conduction. Through the research of this paper, it lays a foundation for the process selection, performance design and structure optimization of this kind of material, and promotes the further application of three-dimensional braided composites.
KEYWORDS
PAPER SUBMITTED: 2019-01-04
PAPER REVISED: 2019-03-05
PAPER ACCEPTED: 2019-03-15
PUBLISHED ONLINE: 2019-05-18
DOI REFERENCE: https://doi.org/10.2298/TSCI190104200W
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