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Progress of research into cotton straw and corn straw cement-based building materials in China

机译:中国棉花秸秆与玉米秸秆水泥型建材研究进展

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This paper reviews the development of cotton straw and corn straw cement-based materials in China. With the use of unmodified straw fibres, the compressive strength of the cement-based material decreases with an increase in corn and cotton straw content, but the rate of decrease is considerably lower than that of wheat and rice straw, mainly because of differences in the strength of the straw. The incorporation of fly ash, urea formaldehyde resin and other materials can effectively improve the mechanical and thermal insulation properties of mixed-type building materials. Three methods of modification are proposed - alkali treatment, grafting treatment and direct addition of a modifier. A multiple linear regression equation between mechanical properties and the content of the main components of the cotton straw cement-based materials is obtained, which provides a theoretical basis to predict and design cement-based block materials. Finally, to address the problems of the mix type (difficult stirring, slow hardening, and energy demands and environmental pollution during the modification process), the concept of a composite-type bionic straw cement-based building material is introduced, which provides direction towards the development of new bionic light straw materials.
机译:本文综述了中国棉花秸秆和玉米秸秆水泥材料的发展。通过使用未改性的秸秆纤维,水泥基材料的抗压强度随着玉米和棉秸秆含量的增加而降低,但下降速度显着低于小麦和稻草的速率,主要是因为差异稻草的力量。粉煤灰,尿素甲醛树脂和其他材料的掺入可以有效地改善混合型建筑材料的机械和隔热性能。提出了三种改性方法 - 碱处理,接枝处理和直接添加改性剂。获得了机械性能之间的多元线性回归方程,并获得了棉秸秆水泥基材料的主要部件的含量,为预测和设计基于水泥的块材料提供了理论依据。最后,为了解决混合类型的问题(在修改过程中难以搅拌,硬化和能量需求和环境污染),引入了复合型仿生秸秆水泥基础建筑材料的概念,从而提供了方向新型仿生秸秆材料的发展。

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