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Carbon Containing Material in Non-Woven Fabrics for Thermoinsulation of Winter Apparel

机译:含碳材料中的冬季服装热晶体中的材料

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Nowadays different types of carbon containing fibers become more and more popular in textile. Pure carbon fibers, fibers with carbon particles, graphene and even carbon containing dyes began to apply in textile for different purposes. Fibers may contain from about 1% of black carbon for antistatic property up to 40% of graphene for special mechanical and moisture management properties. Carbon has pro and contra as thermoinsulating material. It possesses great ability to absorb heat but, at the same time, carbon is good thermoconductive material, and heat escapes quickly due to high thermal conductivity. Heat loss from human body is realized through several channels. For example, thermoconductive heat loss is only 10-15%, whereas irradiative heat loss can reach up to 80% from total heat loss value. Based on this information, we developed non-woven carbon containing compositions which is targeted for maximizing capture of outgoing irradiation heat and minimizing heat loss in thermoconductive channel. In this work, we presented result of development of different carbon containing non-woven compositions for insulation. As a result, some of our non-woven paddings with density 100 g/m2 have clothing insulation value (CLO) equal 4, which makes them close to natural down insulation. We also provided wide characterizations of non-woven samples such as stiffness, IR absorption and reflection, washing stability, analysis of economic feasibility of industrial production.
机译:如今,不同类型的含碳纤维在纺织品中变得越来越受欢迎。纯碳纤维,具有碳颗粒,石墨烯甚至含碳染料的纤维开始以不同目的施用纺织品。纤维可含有约1%的黑碳,用于抗静电性,可用于特殊机械和水分管理性能的石墨烯的40%。碳具有Pro和Contra作为热束缚材料。它具有极大的吸收热量,但同时,碳是良好的导热材料,并且由于高导热率而迅速逸出。通过几种通道实现人体的热量损失。例如,导热热损失仅为10-15%,而辐射热损失可从总热量损失值达到高达80%。基于这些信息,我们开发了无纺布含碳组合物,其靶向最大化出出的辐射热量捕获,并最小化导热通道中的热量损失。在这项工作中,我们提出了含有非织造组合物的不同碳的发展的结果进行绝缘。结果,我们的一些具有密度100g / m2的无纺布拼接具有相等的衣物绝缘值(CLO),这使得它们靠近自然的绝缘。我们还提供了广泛的无纺布样品,如刚度,红外吸收和反射,洗涤稳定性,工业生产经济可行性分析。

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