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Measurement and Evaluation of the Thermal Expansion Coefficient of Rock-Filled Concrete

机译:堆石混凝土热膨胀系数的测量与评估

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摘要

Rock-filled concrete (RFC), formed by pouring self-compacting concrete (SCC) into rock blocks, is a newly developed type of mass concrete. It is important to determine its coefficient of thermal expansion (CTE) in engineering applications. In this study the CTE of RFC was determined for the first time using thermal expansion tests. RFC with three rock rates was measured at different ages. Meanwhile, the CTEs of SCC and rock blocks were experimentally tested for subsequent numerical simulation and theoretical analysis. The CTE of RFC was then evaluated numerically and theoretically based on the constituent materials. A three-dimensional finite element model was built for the numerical simulation of the thermal expansion tests of RFC. In addition, two composite models were used for the theoretical evaluation of the CTE of RFC based on the material parameters of SCC and rock blocks. The obtained numerical and theoretical CTE values agree well with the experimental CTE value. The numerical simulation and theoretical formulas can be used to estimate the CTE of RFC, thereby overcoming the high cost of complex experimental measurements.
机译:通过将自密实混凝土(SCC)倒入岩石块中而形成的碎石混凝土(RFC)是一种新型的大体积混凝土。在工程应用中确定其热膨胀系数(CTE)非常重要。在这项研究中,使用热膨胀测试首次确定了RFC的CTE。三种岩石速率的RFC在不同的年龄进行了测量。同时,对SCC和岩石块的CTE进行了实验测试,以进行后续的数值模拟和理论分析。然后根据构成材料在数值和理论上评估RFC的CTE。建立了三维有限元模型,用于RFC热膨胀试验的数值模拟。另外,基于SCC和岩石块的材料参数,使用两个复合模型对RFC的CTE进行理论评估。获得的数值和理论CTE值与实验CTE值非常吻合。数值模拟和理论公式可用于估算RFC的CTE,从而克服了复杂实验测量的高昂成本。

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