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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Thermal resistance and compressive strain of underwater aerogel-syntactic foam hybrid insulation at atmospheric and elevated hydrostatic pressure
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Thermal resistance and compressive strain of underwater aerogel-syntactic foam hybrid insulation at atmospheric and elevated hydrostatic pressure

机译:大气压和静水压下水下气凝胶-同质泡沫混合保温材料的热阻和压缩应变

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摘要

The purpose of this study was to present a new underwater thermal insulation designed for flexibility and high thermal resistance. The insulation was a hybrid composite of two constituents: syntactic foam and an insulating aerogel blanket. Methods for treating and combining the constituents into a hybrid insulation of several designs are presented. A final configuration was selected based on high thermal resistance and was tested for thermal resistance and compressive strain to a pressure of 1.2 MPa (107 msw, meters of sea water) for five continuous pressure cycles. The thermal resistance and compressive strain results were compared to foam neoprene and underwater pipeline insulation. It was found that the hybrid insulation has a thermal resistance significantly higher than both foam neoprene and underwater pipeline insulation at atmospheric and elevated hydrostatic pressures (1.2 MPa). The total thermal resistance of the hybrid insulation decreased 32% at 1.2 MPa and returned to its initial value upon decompression. It was concluded that the hybrid insulation, with modifications, could be used for wetsuit construction, shallow underwater pipeline insulation, or any underwater application where high thermal resistance, flexibility, and resistance to compression are desired.
机译:这项研究的目的是提出一种设计用于柔性和高耐热性的新型水下绝热材料。隔热材料是两种成分的混合复合材料:句法泡沫塑料和隔热气凝胶毯。提出了将成分处理和组合成几种设计的混合绝缘的方法。基于高热阻选择最终配置,并在五个连续的压力循环中测试其热阻和压缩应变至1.2 MPa(107 msw,海水米)的压力。将热阻和压缩应变结果与泡沫氯丁橡胶和水下管道隔热材料进行了比较。已发现,在大气压和较高的静水压力(1.2 MPa)下,混合绝缘材料的耐热性均显着高于泡沫氯丁橡胶和水下管道绝缘材料。混合绝缘材料的总热阻在1.2 MPa时降低了32%,并在减压时恢复到其初始值。结论是,经过改进的混合绝缘材料可用于潜水服结构,浅层水下管道绝缘材料或需要高耐热性,柔韧性和抗压缩性的任何水下应用。

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