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气相二氧化硅的新用途——在真空隔热材料中的应用 被引量:2
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作者 王光国 《有机硅氟资讯》 2004年第10期9-10,共2页
气相二氧化硅是一种无色、无味。具有微孔结构的超细粉体,往往呈附聚体状态存在。在工业上有着广泛的应用。除传统应用于硅酮胶、硅橡胶、特种橡胶、胶体电池、油墨、涂料等领域外。气相二氧化硅还有一个很重要,并且可以说是一种新的... 气相二氧化硅是一种无色、无味。具有微孔结构的超细粉体,往往呈附聚体状态存在。在工业上有着广泛的应用。除传统应用于硅酮胶、硅橡胶、特种橡胶、胶体电池、油墨、涂料等领域外。气相二氧化硅还有一个很重要,并且可以说是一种新的应用,那就是在真空隔热材料中的应用。 展开更多
关键词 气相二氧化硅 硅酮胶 附聚体 无色 特种橡胶 硅橡胶 涂料 真空隔热材料 胶体电池 微孔结构
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可任意形状使用的高性能真空隔热材料
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作者 日经 《军民两用技术与产品》 2004年第12期22-22,共1页
松下电器产业家电集团开发成功质地柔软,并可加工成任意形状的真空隔热材料“Chip-Vacua”。在住宅材料及生活材料等领域中,可为营造节能舒适的环境做出贡献。
关键词 真空隔热材料 家电 节能 高性能 舒适 可加工 开发成功 柔软 领域 质地
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日本家用冰箱近期发展动向 被引量:1
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作者 谢林 《家电科技》 2004年第6期28-29,共2页
关键词 家用冰箱 能效指标 真空隔热材料 耗电量指标 烃类制冷剂 日本
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冰箱
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《家电科技》 2010年第5期31-31,共1页
产品特点:实现了世界上最薄的隔热厚度。采用的VIP真空隔热材料.厚度由原来的55mm缩减到30mm(冷藏室门).
关键词 真空隔热材料 冰箱 产品特点 厚度 冷藏室 VIP
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松下推出三款双开门无氟电冰箱
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《电器制造商》 2003年第3期62-62,共1页
关键词 双开门无氟电冰箱 异丁烷R600a 制冷制 真空隔热材料 松下公司
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Innovative Production of PCMs (Phase Change Materials) Preparation by Vacuum Impregnation: Thermal Insulation Efficiency
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作者 Sirikalaya Suvachittanont Apinya Duangchan Thanit Metheenukul 《Journal of Chemistry and Chemical Engineering》 2013年第10期985-992,共8页
Energy is essential for every human activity for more comfortable life, but it also consumes more natural resources. Fossil fuel is the major energy source for energy consumption, and it also emits a lot of air pollut... Energy is essential for every human activity for more comfortable life, but it also consumes more natural resources. Fossil fuel is the major energy source for energy consumption, and it also emits a lot of air pollution during usage to atmosphere and not reproductively. Electrical energy is the secondary energy sources from fossil fuel which is used to operate air conditioning system. In order to control human comfort temperature, it is usually required when the temperature differences swing between indoor and outdoor temperatures. PCMs (phase change materials) are the high latent heat materials which can be used in building materials for energy conservation purpose. PCMs can store thermal energy and prevent heat to pass through temperature control areas. Paraffin has been used as PCMs which is absorbed into the pore of fly ash as paraffin/fly-ash composite and mixed into the buildings materials. Paraffin is an organic material with high melting point (-59 ~C) and nonflammable material, therefore, it can be used as the building materials for the function of PCMs for energy saving purposes. Composite PCMs can be prepared by vacuum impregnation process. Paraffin in liquid form will be impregnated into the pore of fly ash by vacuum capillary force to form paraffin/fly ash composite PCMs. Vacuum impregnation pressures, vacuum times, impregnation times of liquid paraffin in fly ash pores and temperatures for melting the solid paraffin into the liquid form are all affect on the thermal properties of paraffin/fly ash composite PCMs. Composite PCMs will be selected by the optimum thermal properties with optimum of the production conditions for replace the cement powder in the mortar plate compositions. Cement mortar plate with and without composite PCMs will be tested for the thermal insulation properties by comparison as the real day and night time for 8 h period from spot light turn on and off. Temperature detection on the surface and inside the model building under mortar plate with and without composite PCMs is detected every 1 min. Temperature differences between surface of mortar plate over the model building and inside temperature of model building under mortar plates increase with more composite PCMs contents in mortar plates. Thermal insulation efficiency in the building can be enhanced by the composite PCMs utilization as the composition of the building materials. 展开更多
关键词 PCMs latent heat heat capacity thermal insulation temperature differences
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