整体式和装配式建筑用粘土泡沫混凝土工艺及物理力学性能研究

IF 0.3 Q4 ENGINEERING, MULTIDISCIPLINARY Science & Technique Pub Date : 2019-08-13 DOI:10.21122/2227-1031-2019-18-4-292-302
M. M. Mordzich
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引用次数: 1

摘要

理论和实验研究已经获得了一种有效的绝缘和结构材料(粘土泡沫混凝土),在建筑中使用的主要等级范围内,根据平均密度D300-D700,它不会受到坍坍和收缩的影响,其特点是强度提高5 - 31%,弹性模量提高8 - 27%,以及更高(30.7%)的透气性和回潮率(17.4 - 46.7%),吸水率较低(10.0 - 83.2%)。与蒸压硬化加气混凝土和等密度泡沫混凝土的吸湿性和导热性比较。采用三段式工艺制备粘土泡沫混凝土。在第一阶段水泥面团准备好,如果它是必要的一个最佳淬火加速器(1%氯化钙从水泥质量)和添加剂凝水泥石结构(Al2SO4从水泥质量的1%)介绍,他们防止衰退的粘合剂(泡沫混凝土)在随后的淬火,从水泥质量,结合0.5%“HydroxypropylmethylcelluloseУСК-200 TT”——和收缩的泡沫和claydite泡沫混凝土在随后的干燥。在第二阶段,将蛋白基泡沫剂(Laston)以水泥质量的0.5 - 1.3%的最佳量(取决于给定的密度)引入水泥面团中,同时对粘合剂进行曝气;第三阶段,在配制好的泡沫混凝土混合料中加入膨胀粘土砾石(每1m3粘土泡沫混凝土合理掺量约为0.7-0.8 m3),连续搅拌60-90秒。泡沫和粘土泡沫混凝土组成的计算方法得到了发展;对具有高度均匀性的膨胀粘土泡沫混凝土的成型模式(在制造成型过程中密度和强度变化系数为6.2%,层高可达1500 mm)进行了论证,证实了所提出技术的效率。
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Technology and Physico-Mechanical Properties of Claydite Foam Concrete for Monolithic and Prefabricated Construction
Theoretical and experimental investigations have resulted in obtaining an effective insulating and structural material (claydite foam concrete) that is not subjected to slump and shrinkage in the range of main grades used in construction in terms of average density D300–D700, characterized by 5–31 % greater strength and 8–27 % elasticity modulus, as well as a higher (£30.7 %) level of vapor permeability and moisture return (by 17.4–46.7 %) with lower values (by 10.0–83.2 %) of water absorption, sorption moisture and thermal conductivity in comparison with aerated concrete of autoclave hardening and foam concrete of equal density. A three-stage technology has been developed for preparing claydite foam concrete. At the first stage cement dough is prepared and if it is necessary an optimum amount of hardening accelerator (1 % CaCl2 from cement mass) and additives condensing cement stone structure (1 % Al2SO4 from cement mass ) are introduced into it, they prevent slump of a binder (foam concrete) during the subsequent hardening, and in combination with 0.5 % from cement mass “Hydroxypropylmethylcellulose УСК-200 TT” – and shrinkage of foam and claydite foam concrete during the subsequent drying. At the second stage, the binder is aerated while introducing protein-based foam agent (Laston) into the cement dough in an optimal amount (depending on the given density) 0.5–1.3 % from the cement mass; and at the third stage, expanded clay gravel is introduced into prepared foam concrete mixture (in rational amount of approximately 0.7–0.8 m3 per 1 m3 of claydite foam concrete) with continuous mixing for 60–90 seconds. Methodologies for calculation of foamand claydite foam concrete compositions have been developed; molding modes of expanded clay foam concrete with high degree of homogeneity (variation coefficient of density and strength uk £ 6.2 % in the process of manufacturing molding with layer height up to 1500 mm) have been justified that confirms efficiency of the proposed technology.
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来源期刊
Science & Technique
Science & Technique ENGINEERING, MULTIDISCIPLINARY-
自引率
50.00%
发文量
47
审稿时长
8 weeks
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