Production of Materials with High Thermal Insulation from Natural Fibers and Sericin

M. Pakdel, B. Alemi
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Abstract

Silkworm cocoon is a natural biological and composite structure that has evolved over time and has high physical and mechanical properties against stress and acts as insulation against ambient temperature conditions. Understanding the relationships between the two-component structure of silkworm cocoons (sericin and fibroin) inspires the creation of composite structures, including lightweight, high-strength nonwoven biocomposites. In the present study, by analyticaldescriptive method, we have tried to use cocoon sericin and introduce some famous and widely used natural fibers in materials science and study their characteristics because for various reasons such as lightness, lack of pollution and low cost, etc. can be suitable alternative for a replacement of synthetic fibers suggest the production of non-woven bio-composite materials. Natural fibers such as jute, hemp, flax, etc. with different volume percentages in combination with sericin as a binder, were proposed for this biocomposite and the thermal performance of each of them was compared using Maxwell's theoretical model. All compounds show low thermal conductivity and jute-sericin biocomposite with 70% by volume and 0.061 W/m2-K performance has better performance. doi: 10.5829/ijee.2022.13.03.11
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利用天然纤维和丝胶蛋白生产高绝热材料
蚕茧是一种天然的生物和复合结构,随着时间的推移而进化,具有很高的抗应力物理和机械性能,并对环境温度条件起绝缘作用。了解蚕茧的双组分结构(丝胶蛋白和丝素蛋白)之间的关系,激发了复合材料结构的创造,包括轻质、高强度的非织造生物复合材料。在本研究中,我们尝试用分析描述的方法,介绍了一些在材料科学中应用广泛的著名天然纤维和蚕丝蛋白,并研究了它们的特性,因为它们具有轻质、无污染和低成本等多种原因,可以作为合成纤维的合适替代品,建议生产无纺布生物复合材料。采用不同体积百分比的天然纤维如黄麻、大麻、亚麻等,以丝胶为粘结剂,采用麦克斯韦理论模型对其热性能进行了比较。所有化合物均表现出较低的导热性,其中体积比为70%、性能为0.061 W/m2-K的黄麻-丝胶生物复合材料性能较好。doi: 10.5829 / ijee.2022.13.03.11
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