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光化水泥厂位于鄂西北,厂信息中心是全厂信息一体化管理的执行机构。档案室作为中心的一个分支,位于科技大楼四、五、六层楼,使用面积达820多平方米,窗户面积占库内壁面积25—30%,全部大幅钢窗结构,故库内光照面积很大,虽配以二层厚质窗帘布,也免不了光线的透入和热量的幅射。冬夏二季内外温差也很小,所配双向排气扇及一台移动式去湿机,即使全天候运转,也收效甚微,针对这种现状,他们以硅酸盐为基料研制成新型复合体隔温材料。并总结出一套简便的施工方法,效果十分理想。在经过近一年酷暑严冬的温湿度观察和记录,基本满足国家标准库房的要求。无论三九或三九天库内外温差可保持在8℃左右,去湿机在高湿高温季节也不需或很少启动的情况下,相对湿度仍可控制在60%以内。这种非金属矿物材料不仅本身就是一种隔温体,是以有机和无机材料、纤维材料和颗粒材料以及一定比例的胶液相结合的复合体。施工前呈膏状,干燥后的固体为微孔网结构。
Fenghua cement factory is located in northwest Hubei Province, Plant Information Center is the implementation of the whole plant information management agencies. Archives as a center of a branch, located in the science and technology building four, five, six floors, the use of area of more than 820 square meters, accounting for 25-30% of the inner wall of the window area, all large steel window structure, so the light inside the gallery is very Large, although with two thick curtain fabric, but also inevitably the penetration of light and heat radiation. In the winter and summer, the temperature difference between the inside and outside is also very small. The bi-directional exhaust fan equipped with a mobile dehumidifier, even with all-weather operation, has little effect. In response to this situation, they developed a new composite based on silicate Insulation materials. And summed up a set of simple construction methods, the effect is very satisfactory. After nearly a year of intense winter temperatures and humidity observations and records, basically meet the requirements of the national standard warehouse. Regardless of thirty-nine or thirty-nine days the temperature difference between inside and outside the warehouse can be maintained at about 8 ℃, the dehumidifier in the high humidity season also need or rarely start, the relative humidity can still be controlled within 60%. This non-metallic mineral material is not only a thermal barrier itself, but also a composite of organic and inorganic materials, fibrous materials and particulate materials, and a certain proportion of glue. Before the construction was a paste, the dried solid microporous network structure.