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Effect of pressure holding time of extraction process on thermal conductivity of glassfiber VIPs

机译:萃取过程的保压时间对玻璃纤维VIP导热系数的影响

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Vacuum insulation panels (VIPs) are regarded as the most promising high-performance thermal insulation products on the market today. A high and stable vacuum state within VIP enclosure provides a durable service life for VIP. In this paper, multiple core material layers (CMLs) with thickness of 0.5 mm, 1 mm, 3 mm, and 7 mm were formed as the core of glassfiber VIPs. The microstructure of the core materials and thermal conductivity of as-prepared VIPs was investigated. The porosity of the core materials was about 90% while the mean pore diameter was about 10~25 μm. At adopted pressure holding time of extraction process of 180 s, the initial total thermal conductivity of VIPs was lower than 4 mW/(m K) and slightly increased with total thickness of core material, but increased greatly with CMLs thickness. Mass transfer characteristics within core material during extraction process was analyzed based on the interlayer-microstructure model. Residual gases within VIPs were mainly extracted from the connected gas flow channel built by glass fibers. The optimum pressure holding time for VIPs with 0.5 mm-thickness, 1 mm-thickness, 3 mm-thickness, and 7 mm-thickness CMLs was 300 s, 240 s, 240 s, and 180 s, respectively.
机译:真空隔热板(VIP)被认为是当今市场上最有前途的高性能隔热产品。 VIP机箱内的真空状态稳定高,为VIP提供了持久的使用寿命。在本文中,形成了厚度分别为0.5 mm,1 mm,3 mm和7 mm的多个芯材料层(CML)作为玻璃纤维VIP的芯。研究了制备的VIP的核心材料的微观结构和热导率。芯材的孔隙率约为90%,平均孔径约为10〜25μm。在提取过程中采用的保压时间为180 s时,VIP的初始总热导率低于4 mW /(m K),随芯材总厚度的增加而略有增加,但随CMLs厚度的增加而大大增加。基于层间微观结构模型分析了萃取过程中核心材料内部的传质特性。 VIP内的残留气体主要从玻璃纤维建立的连通气流通道中抽出。厚度为0.5毫米,厚度为1毫米,厚度为3毫米和7毫米CML的VIP的最佳保压时间分别为300 s,240 s,240 s和180 s。

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