Contribution to the analysis of thermal behaviour of polymer composites: case of polyethylene/titanium diboride composites

IF 1.9 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
A MIDOUN, H BENAHMED, S KHALDI
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Abstract

To deepen the fundamental knowledge on the effect of titanium diboride (TiB2) particle interface on thermal conductivity of three different composites with polyethylene matrices (HDPE/TiB2, MDPE/TiB2 and LDPE/TiB2), this paper is devoted to a theoretical approach on the analysis of thermal behaviour of polymer-based composites. This study is based on the Hashin and Shtrikman model, which allows us to determine the thermal conductivity considering an idealized interface between the reinforcing molecules. In addition, the Hasselman and Johnson model is used to evaluate thermal conductivity with an imperfect interface. We mainly discuss the difference between two types of interfaces with the aim of improving the thermal conductivity within the composite material used in this study without altering the mechanical and thermal behaviours. This approach creates new opportunities, especially in manufacturing, to use high-quality composite materials at low-cost and non-destructive. To this end, we have investigated the variations in the effective thermal conductivity of different composites, λeff as a function of volume fraction of the reinforcement (TiB2). In particular, we have emphasized the study on the effective thermal conductivity of the composite, taking into account interactions at the interface between the particles and matrix. Definitely, the random dispersion of spherical particles and cylindrical particles oriented perpendicular to the heat flow is considered. The main conclusion is that the form of particles and the type of interface of the reinforcement drastically affect thermal conductivity of the system under consideration.

Abstract Image

对聚合物复合材料热行为分析的贡献:聚乙烯/二硼化钛复合材料案例
为了加深对二硼化钛(TiB2)颗粒界面对三种不同的聚乙烯基复合材料(高密度聚乙烯/TiB2、中密度聚乙烯/TiB2 和低密度聚乙烯/TiB2)导热性影响的基础知识的了解,本文致力于从理论上分析聚合物基复合材料的热行为。这项研究以 Hashin 和 Shtrikman 模型为基础,通过该模型,我们可以确定增强分子之间理想化界面的热传导率。此外,Hasselman 和 Johnson 模型还用于评估不完美界面的导热性。我们主要讨论了两种界面之间的区别,目的是在不改变机械和热性能的情况下,提高本研究中所用复合材料的导热性。这种方法创造了新的机会,尤其是在制造领域,可以低成本、无损地使用高质量的复合材料。为此,我们研究了不同复合材料的有效热导率 λeff 随增强材料(TiB2)体积分数的变化情况。我们特别强调了对复合材料有效热导率的研究,同时考虑了颗粒与基体之间界面的相互作用。当然,我们也考虑了垂直于热流方向的球形颗粒和圆柱形颗粒的随机分散。得出的主要结论是,颗粒的形式和增强材料的界面类型会极大地影响所考虑系统的导热性。
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来源期刊
Bulletin of Materials Science
Bulletin of Materials Science 工程技术-材料科学:综合
CiteScore
3.40
自引率
5.60%
发文量
209
审稿时长
11.5 months
期刊介绍: The Bulletin of Materials Science is a bi-monthly journal being published by the Indian Academy of Sciences in collaboration with the Materials Research Society of India and the Indian National Science Academy. The journal publishes original research articles, review articles and rapid communications in all areas of materials science. The journal also publishes from time to time important Conference Symposia/ Proceedings which are of interest to materials scientists. It has an International Advisory Editorial Board and an Editorial Committee. The Bulletin accords high importance to the quality of articles published and to keep at a minimum the processing time of papers submitted for publication.
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