Research on Decorative and Integrated Thermal Insulation Board for External Wall

Author:

Zhanhua Zhang,jie lI,Changyu Shi,Chao Zhang,An Wang,Shan Zhang

Abstract

With the acceleration of globalization, industrialization and informatization, the consumption of energy resources is increasing, and the building energy consumption accounts for about 30%, so the building energy conservation has become an important part of energy conservation and emission reduction. At the same time of economic development, we should reduce building energy consumption and do a good job in building energy conservation [1], and put forward the following ways: the improvement of building’s own heat preservation and insulation performance; the improvement of energy utilization system efficiency such as electricity and heating; the development and utilization of new energy; and the proper management of energy utilization equipment system. Among them, the most effective way is to improve the thermal insulation performance of the building itself. The thermal insulation of enclosure and the air tightness of doors and windows are two important parts of thermal insulation. According to the relevant data [2], the heat loss of enclosure structure accounts for 40-50% of the building energy consumption, and the heat loss of wall structure accounts for about 70%. Therefore, the improvement of the thermal insulation requirements of the wall structure plays a huge role in building energy conservation In this paper, the experimental research on the exterior wall thermal insulation board of decoration and heat preservation integration is carried out. The influence of fly ash content, asbestos fiber content, composite active activator, waterproof agent and other additives on the physical properties of fiber-reinforced fly ash / cement board is discussed. The optimal content of various factors is determined and its mechanism is analyzed. The optimum proportion of fiber reinforced fly ash / cement board was determined by orthogonal test.

Publisher

EDP Sciences

Reference5 articles.

1. Report on the Status and Development of China Building Energy Efficiency), [J], China Building Energy Conservation Commission, (2012)

2. Ma Changbo, Jianhao Lin: submitted to FLY ASH COMPREHENSIVE UTILIZATION FENMEIHUI LIYONG (2)2010: p. 39-41.

3. Zhu Yanfang: submitted to Thermal Insulations & Energy-Saving Technology (04)2003: p.47-49

4. Li Xiangzhou: submitted to Brick-Tile (10) 2005: p.54-56

5. Fiber Reinforced Calcium Silicate Board, JC/T564-2000, Beijing, National Bureau of building materials

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