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The Design and Manufacture of a Multilayer Low-Temperature Protective Composite Fabric Based on Active Heating Materials and Passive Insulating Materials

机译:基于主动加热材料和被动绝缘材料的多层低温复合保护面料的设计与制造

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摘要

Based on active heating materials (the phase change microcapsules (microPCMs)) and passive insulating materials (SiO aerogel), a new-type multilayer low temperature protective composite fabric (MPF) was designed and manufactured to meet the demands of protection and operation in a short time under a low-temperature environment. Results showed that the MPF consisted of three layers including the fabric layer, the microPCM function layer, and the SiO aerogel thermal insulation layer. The differential scanning calorimeter (DSC) results demonstrated that the phase transition enthalpy of the composite was 96.2 J/g during the cooling process. The low-temperature resistance and thermal insulation performance at −50 °C were investigated. The results also demonstrated that the low-temperature resistance time of the MPF was 660 s and the power consumption of the MPFs needed to maintain 37 °C for 10 and 20 min were 629 J and 1872 J, respectively. Compared with the microPCM function layer and the thermal insulation layer, which have the same thickness as the MPF, the low-temperature resistance time of the MPF was prolonged for about 2 and 3 min, respectively. The MPF could provide effective protection of the low-temperature work in a short time and could be applied as potential materials in low-temperature protection.
机译:基于活性加热材料(相变微胶囊(microPCM))和无源绝缘材料(SiO气凝胶),设计和制造了一种新型的多层低温保护复合面料(MPF),以满足在空调中的保护和操作需求。低温环境下时间短。结果表明,MPF由三层组成:织物层,microPCM功能层和SiO气凝胶隔热层。差示扫描量热仪(DSC)结果表明,在冷却过程中,复合材料的相变焓为96.2 J / g。研究了在-50°C下的耐低温性和隔热性能。结果还表明,MPF的耐低温时间为660 s,维持37°C 10分钟和20分钟所需的MPF的功耗分别为629 J和1872J。与具有与MPF相同厚度的microPCM功能层和隔热层相比,MPF的低温耐受时间分别延长了约2分钟和3分钟。 MPF可以在短时间内为低温工作提供有效的保护,并且可以用作低温保护的潜在材料。

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