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Determination of hygrothermal performance of clay-sand plaster: influence of covering on sorption and water vapour permeability

机译:粘土砂石膏湿热性能的测定:覆盖对吸附和水蒸气渗透性的影响

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Indoor finishing materials considerably influence indoor climate because of their moisture buffering ability occurring due to the sorption and diffusion properties of materials. Hygroscopic sorption properties were determined in accordance with the standard EVS-EN ISO 12571 and the principles given in the standard EVS-EN 1015-19:2005 were followed when determining water vapour permeability properties. The same specimens (thickness 2.4 cm) were used for both tests. To describe the dynamics during the first hours, the specimens were weighted at 1, 2, 3, 6, 12, 24, 48, 72 hours after changing the humidity level. Moisture uptake (kg/m2) and moisture uptake rate kg/(m2h) within the very first hours at 0-30, 30-50 and 50-80%; moisture content at RH level of 30%, 50% and 80%; points (30, 50 and 80%) at sorption curve were monitored. Six different covering materials were used: fine finishing mortar with cellulose, fine finishing mortar without cellulose, casein paint, cellulose base coat, lime paint, casein base coat, clay plaster not covered. The rate of moisture uptake was highest within the first hour after a sudden change in moisture level. Water vapour diffusion equivalent air layer thickness Sd=0.11-0.13 m was recorded.
机译:室内整理材料由于材料的吸附性和扩散性能而发生的水分缓冲能力显着影响室内气候。根据标准EVS-ZH ISO 12571测定吸湿性的吸附性能,并且在确定水蒸气渗透性特性时,遵循标准EVS-EV-1015-19:2005中给出的原理。两种试验使用相同的样品(厚度2.4cm)。为了在第一小时内描述动力学,在改变湿度水平后,72小时的1,2,3,6,12,24,48,72小时加权样品。在0-30,30-50和50-80%的第一小时内,湿度吸收(kg / m2)和水分吸收率Kg /(m2h); RH水平的水分含量为30%,50%和80%;监测吸附曲线的点(30,50和80%)。使用了六种不同的覆盖材料:纤维素的精细整理研砂浆,精细精加工砂浆,无纤维素,酪蛋白涂料,纤维素底涂层,石灰涂料,酪蛋白底涂层,粘土膏状物不覆盖。水分突然变化后的第一个小时内的水分吸收率最高。记录水蒸气扩散当量空气层厚度SD = 0.11-0.13m。

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