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Mechanical properties of young concrete: Part Ⅰ: Experimental results related to test methods and temperature effects

机译:新混凝土的力学性能:第一部分:与试验方法和温度效应有关的实验结果

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Results of several test series on mechanical properties of young concrete are presented. Six different concrete mixes were tested systematically, and a number of other concrete mixes less extensively, all with w/b≈0.40. The program included compressive strength, tensile strength, splitting tensile strength and E-modulus determination both in compression and tension. Because temperature influences the rate of property development, and also the "final value" of a given property, the specimens were subjected to realistic temperature regimes the first few days as well as isothermal conditions. The test methods are described, and results obtained by the different test methods are compared. It is recommended that the temperature sensitivity constants should be determined from compressive strength tests on specimens exposed to realistic temperature histories. These parameters depend strongly on the cement type and the silica fume content. It was found that high performance concretes were quite robust to the negative effects of elevated temperatures. This was particularly true for concretes with pozzolana. In part two of the paper model parameters for an equation to be used in calculation programs are determined, and a test program for crack risk estimation is proposed.
机译:给出了几个关于年轻混凝土力学性能的测试系列的结果。系统地测试了六种不同的混凝土混合料,而其他一些混凝土混合料的分布范围较广,均w /b≈0.40。该程序包括抗压强度,抗拉强度,劈裂抗拉强度和抗压强度的E模量测定。由于温度会影响特性发展的速度以及给定特性的“最终值”,因此样品在开始的前几天以及等温条件下都经受了实际的温度调节。描述了测试方法,并比较了不同测试方法获得的结果。建议应根据暴露于实际温度历史的样品的抗压强度试验确定温度敏感性常数。这些参数在很大程度上取决于水泥的类型和硅粉的含量。人们发现,高性能混凝土对高温的负面影响十分稳健。对于含火山灰的混凝土尤其如此。在论文的第二部分中,确定了要在计算程序中使用的方程式的模型参数,并提出了用于裂纹风险估计的测试程序。

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