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Analysis of new inorganic exterior insulation materials and thermal energy storage

机译:新型无机外保温材料分析及热能储存

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In order to reduce the energy efficiency of the construction industry and improve the building safety, in this research, a new type of inorganic insulation material – vitreous bead insulation mortar is studied and its properties are analyzed. Quantitative method is used to analyze the influence of glass bead mixing amount, cellulose ether mixing amount and redispersible emulsion powder mixing amount on the consistency, water retention rate, dry density, softening coefficient and compressive strength of glass bead insulation mortar. The effect of different raw materials allocation on the thermal conductivity of vitrified microbeads thermal insulation mortar is explored. The results show that the performance of insulation mortar decreases significantly with the increase of glass bubbles. With the increase of cellulose ether content, the consistency and compressive strength of insulation mortar first increased and then decreased, the water retention rate increased significantly, but the dry density decreased significantly. With the increase of the content of redispersible emulsion powder, the consistency and compressive strength of insulation mortar first increased and then decreased, but the dry density decreased gradually. Glass bubbles and fly ash parameters are the main factors that affect the thermal conductivity of thermal insulation mortar, and their thermal conductivity decreases with the increase of the proportion of air-entraining agent. As a result, the performance of vitreous microbeads thermal insulation mortar will change to a certain extent with the different proportion of raw materials, which provides data support for the preparation and application of inorganic external wall thermal insulation materials.
机译:为了降低建筑业的能源效率,提高建筑安全性,在本研究中,研究了一种新型无机绝缘材料 - 研究了玻璃体珠绝缘砂浆,并分析了其性能。定量方法用于分析玻璃珠混合量,纤维素醚混合量和可再分散乳液粉末混合量对玻璃珠绝缘砂浆的稠度,水保持率,干密度,软化系数和抗压强度的影响。探讨了不同原料分配对玻璃化微珠热绝缘砂浆导热率的影响。结果表明,随着玻璃气泡的增加,绝缘砂浆的性能显着降低。随着纤维素醚含量的增加,绝缘砂浆的稠度和抗压强度首先增加,然后减少,水保持率显着增加,但干密度显着降低。随着再分散乳液粉末的含量的增加,绝缘砂浆的稠度和抗压强度首先增加,然后减少,但干燥的密度逐渐降低。玻璃泡和粉煤灰参数是影响隔热砂浆导热率的主要因素,随着空气夹带剂比例的增加,它们的导热率降低。结果,玻璃体微珠保温砂浆的性能将随着原材料比例的不同比例而变化,这提供了用于制备无机外墙绝热材料的数据支持。

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