Construction and technical properties of vermiculite concrete and fibro vermiculite concrete with volcanic pumice under the influence of elevated temperatures

T. Khezhev, G. N. Khadzhishalapov, A. Zhurtov, F. Shogenova, A. V. Kalazhokov
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Abstract

Objective. Development of compositions of vermiculite concrete and fibro vermiculite concrete with volcanic pumice. Investigation of the construction and technical properties of the developed compositions of vermiculite concrete and fibrovermiculite concrete with volcanic pumice under the influence of elevated temperatures.Method. Methods of increasing the fire resistance of reinforced concrete structures are considered. The research is aimed at the development of vermiculite concrete and fibro vermiculite concrete with volcanic pumice for fire protection of building structures and the manufacture of heat-resistant products and structures. To reduce the cost of vermiculite concrete, its partial replacement with volcanic pumice is proposed. For the study of vermiculite concrete with volcanic pumice reinforced with basalt fiber, a rotatable plan of the second order of the regular hexagon type was used.Result. Replacing a part of an expensive aggregate (expanded vermiculite) with pumice leads to a slight increase in the average density of the composite, while the bending and compressive strength increases. In addition, the heat-resistant properties of vermiculite concrete with pumice are increased. This is due to the fact that volcanic pumice, being a hydraulically active additive, is able to react hydration with cement components, eliminating the harmful effect of secondary hydration of free calcium oxide. The influence of the heating temperature on the change in the construction and technical properties of vermiculite concrete and fibrovermiculic concrete, including with the addition of pumice, has been studied. It was found that dispersed reinforcement with basalt fibers reduces shrinkage deformations, when heated to t = 800, the shrinkage decreases from 0.7 to 0.5% compared to the original concrete matrix.Conclusion. The dependence "compressive strength = f (average concrete density)" significantly depends on the presence and ratio of pumice in the composition of vermiculite concrete, while an increase in the holding temperature to 600 oC or 800 oC leads to a decrease in the compressive strength from 15 to 25%, and the main decrease occurs when heated to 600 oC, further the increase in temperature has a negligible effect. The dependence of the bending strength on the compressive strength is generally maintained regardless of the heating temperature, and the heating of concrete does not reduce the relative bending strength, i.e. the ratio of bending strength / compressive strength is not reduced. Dispersed fiber reinforcement increases the relative bending strength by about 70% regardless of the heating temperature.
高温影响下火山浮石蛭石混凝土及纤维蛭石混凝土的施工及技术性能
目标。含火山浮石的蛭石混凝土及纤维蛭石混凝土的研制。研究了高温作用下蛭石混凝土和火山浮石纤维蛭石混凝土的结构和技术性能。研究了提高钢筋混凝土结构耐火性能的方法。研究目的是开发用于建筑结构防火的蛭石混凝土和火山浮石纤维蛭石混凝土,以及耐热产品和耐热结构的制造。为降低蛭石混凝土的成本,提出用火山浮石代替蛭石混凝土。对玄武岩纤维增强火山浮石蛭石混凝土的研究,采用了正六边形二级可旋转平面。用浮石代替一部分昂贵的骨料(膨胀蛭石)会导致复合材料的平均密度略有增加,同时抗弯和抗压强度也会增加。此外,添加浮石的蛭石混凝土的耐热性能也有所提高。这是由于火山浮石作为一种水力活性添加剂,能够与水泥组分发生水化反应,消除了游离氧化钙二次水化的有害影响。研究了加热温度对蛭石混凝土和纤维蛭石混凝土结构和技术性能变化的影响,包括添加浮石的影响。研究发现,玄武岩纤维分散配筋降低了混凝土的收缩变形,当加热到t = 800时,混凝土的收缩比原混凝土基体减少了0.7 ~ 0.5%。“抗压强度= f(混凝土平均密度)”的依赖关系显著依赖于蛭石混凝土组成中浮石的存在和比例,而保温温度升高至600℃或800℃时,其抗压强度下降幅度为15% ~ 25%,且主要发生在加热至600℃时,温度升高的影响可以忽略不计。无论加热温度如何,抗弯强度对抗压强度的依赖关系一般都保持不变,混凝土的加热不会降低其相对抗弯强度,即抗弯强度/抗压强度之比不会降低。无论加热温度如何,分散纤维增强材料的相对抗弯强度提高约70%。
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