Design and Manufacture of a Fiber Pyro Expanded Perlite/Epoxy Composite for Thermal Insulation

B. G. Rolón, Jm Belman-Flores, V. E. Gutiérrez
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引用次数: 2

Abstract

A polymer-ceramic composite material was modelled in the MatLab software, and developed for low-temperature applications. No gasses were emitted during the manufacturing process of this composite. The objective was to develop a uniformly dispersed, interwoven, and reinforced fibre’s structure, resulting in a fiber pyro expanded perlite/ epoxy composite. The material does not cause immediate chemical reactions, either with the severe nor the soft matrix of epoxy resins. Mechanical and physical characterizations of the material were described herein. The thermal conductivity of the material was calculated by the Mixture Rules method and experimentally by Method SAM, finding a value of 0.284 W/mK. The main application proposed for this material is for thermal insulation purposes at cryogenic temperatures in the industry.
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纤维热膨胀珍珠岩/环氧树脂绝热材料的设计与制造
在MatLab软件中对聚合物-陶瓷复合材料进行了建模,并开发了用于低温应用的材料。在该复合材料的制造过程中不排放任何气体。目标是开发一种均匀分散、交织和增强的纤维结构,从而产生纤维热膨胀珍珠岩/环氧复合材料。该材料不会立即引起化学反应,无论是与环氧树脂的剧烈或柔软的基质。本文描述了该材料的力学和物理特性。采用混合规则法和SAM方法对材料的导热系数进行了计算,得到的导热系数为0.284 W/mK。该材料的主要应用是在工业低温下的隔热目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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