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Complex Effect of Concrete Composition on the Thermo-Mechanical Behaviour of Mass Concrete

机译:混凝土成分对大体积混凝土热力学行为的复杂影响

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摘要

The current work presents the complex investigation of the influence of cement and aggregate type on the thermo-mechanical behavior of mass concrete. Six types of cement with different amounts of non-clinker constituents and four types of aggregates are used in experimental tests. Particular attention was given to the low clinker cements with high amounts of siliceous fly ash and ground blast furnace slag. The experimental research covered the determination of thermal, mechanical, and rheological properties of early age concrete with different constituents. Experimental results have been used both to validate the numerical model and analysis of exemplary foundation slab. The results confirm the importance of the concrete mix composition and it has been shown that the early-age volume deformation and possible cracking is the result of the concerted action of thermal and mechanical properties of concrete. The obtained results indicate granite as the best aggregate for mass concrete. Considering the type of cement, much better behaviour of mass concrete has been noted for cements with fly ash and composite cements containing both fly ash and slags than cements only with slag.
机译:当前的工作提出了对水泥和骨料类型对大体积混凝土热机械性能影响的复杂研究。在实验测试中使用了六种类型的具有不同含量的非熟料的水泥和四种类型的骨料。特别关注含大量硅质粉煤灰和高炉渣的低熟料水泥。实验研究涵盖了不同成分的早期混凝土的热,机械和流变性能的测定。实验结果已用于验证数值模型和示例性基础板的分析。结果证实了混凝土混合料组合物的重要性,并且已经表明,早期体积变形和可能的开裂是混凝土的热和机械性能的共同作用的结果。所得结果表明花岗岩是大体积混凝土的最佳骨料。考虑到水泥的类型,已发现具有粉煤灰的水泥和同时包含粉煤灰和矿渣的复合水泥的大体积混凝土的性能要比仅具有矿渣的水泥好得多。

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