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Study of the dependence of equilibrium sorption humidity of heat-insulating products on temperature

机译:隔热产品均衡吸附湿度依赖性研究温度

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摘要

The desiccator method for products like mineral wool has a low accuracy, which is due to the small mass of the samples and the uneven content of the binder between the samples. The standard method does not involve testing materials at different temperatures. However, the value of sorption moisture depends not only on the nature and structure of the material, but also on the temperature conditions. At the moment, the regularities of changes in the sorption moisture content of materials depending on the air temperature have been studied only in separate scientific works and do not cover the entire spectrum of modern building materials. The paper presents the results of a study of the sorption moisture content of modern mineral wool products at various temperatures above 0 oС. The results show an increase in sorption humidity with decreasing temperature from 22 oС to 0 oС. The greatest increase in humidity occurs at values of relative air humidity in the range of 90–97 %. It is shown that the standard desiccator method for studying sorption moisture requires scientific development and increased control of test conditions with decreasing temperature.
机译:矿棉等产品的干燥器方法具有低精度,这是由于样品的质量小,并且样品之间的粘合剂的不均匀含量。标准方法不涉及在不同温度下测试材料。然而,吸附湿度的值不仅取决于材料的性质和结构,还取决于温度条件。目前,仅在单独的科学作品中研究了根据空气温度的吸附水分含量的变化的规律,并且不涵盖现代建筑材料的整个谱。本文介绍了在0 O型高于0℃的各种温度下的现代矿物羊毛产品的吸附含水量研究的结果。结果表明,吸附湿度的增加,温度降低到22°O〜0OС。湿度最大的增加发生在相对空气湿度的值,范围为90-97%。结果表明,用于研究吸附水分的标准干燥器方法需要科学发展,并随着温度降低而增加对试验条件的控制。

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