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Influence of steam curing on properties of fiber-reinforced concrete during hardening

机译:蒸汽养护对硬化过程中纤维增强混凝土性能的影响

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To increase the efficiency of steel-fiber concrete production, the existing technological operations that could reduce the costs should be optimized. This process requires scientific research and analysis of the existing results to improve the efficiency of each production stage. One of the important stages in the steel-fiber concrete production is steam curing, which is responsible for forming the cementitious matrix structure. To increase the efficiency of this production stage, a study was conducted to develop the steam curing conditions according to the rules of steel-fiber concrete structure formation and the methods of improving durability indicators. Tests on several steel-fiber concrete compositions were conducted, and the relations between its thermal conductivity and the reinforcement coefficient of concrete were revealed. The results of the tests let us conclude that with the increase of the reinforcement coefficient its thermal capacity decreases. The temperature gradient charts along the cross-section of samples with different cement/sand ratios and reinforcement coefficients were built. According to the data obtained, the optimal industrial conditions of steam curing were discovered. The dependences determining the increase of mechanical performance of steel-fiber concrete due to the formation of prestressed fiber structure in the material were revealed.
机译:为了提高钢纤维混凝土的生产效率,应优化可降低成本的现有技术操作。此过程需要对现有结果进行科学研究和分析,以提高每个生产阶段的效率。钢纤维混凝土生产中的重要阶段之一是蒸汽固化,这是形成水泥基结构的原因。为了提高该生产阶段的效率,进行了一项研究,以根据钢纤维混凝土结构形成的规则和改善耐久性指标的方法来开发蒸汽养护条件。对几种钢纤维混凝土组合物进行了试验,揭示了其导热系数与混凝土增强系数之间的关系。测试结果使我们得出结论,随着增强系数的增加,其热容量会降低。建立了具有不同水泥/砂比和增强系数的样品横截面的温度梯度图。根据获得的数据,发现了蒸汽固化的最佳工业条件。揭示了确定由于材料中预应力纤维结构的形成而导致钢纤维混凝土机械性能提高的依赖性。

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