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Experimental studies and analysis on compressive strength of normal-weight concrete at low temperatures

机译:普通混凝土低温抗压强度试验研究与分析

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摘要

The construction of liquid nitrogen gas storages and engineering structures in cold regions exposed reinforced concrete structures to low temperatures. This paper investigates the compressive strength of normal-weight concrete under low temperatures to -165 degrees C through a 174-specimen test program. The key parameters studied in this test program included low temperature T ranging from -165 to +20 degrees C, water/cement ratio ranging from 0.33 to 0.57, and water content W-c ranging from 0 to 6%. Their influences on the compressive strength of the concrete under low temperature were highlighted and analyzed. With the scanning electron microscope (SEM), the influence of these parameters on the microstructures of the concrete under low temperature was observed and presented. These test data and SEM analyses revealed the failure mechanism and provided proofs on the improvements of the compressive strength of the concrete under low temperature. Based on these test data, a mathematical model has developed to describe the relationship between the increasing factor of the compressive strength of the concrete under low temperatures and the influencing parameters of T, w/c ratio, and W-c. Finally, design equations are provided to predict the increasing factor of the compressive strength of the concrete under low temperature.
机译:在寒冷地区建造液氮气库和工程结构使钢筋混凝土结构暴露在低温下。本文通过174个样本的测试程序研究了普通重混凝土在低温至-165摄氏度下的抗压强度。在该测试程序中研究的关键参数包括-165至+20摄氏度的低温T,0.33至0.57的水灰比以及0至6%的水含量W-c。重点分析了它们对低温下混凝土抗压强度的影响。用扫描电子显微镜(SEM),观察并介绍了这些参数对低温下混凝土微观结构的影响。这些测试数据和SEM分析揭示了破坏机理,并为提高低温下混凝土的抗压强度提供了依据。基于这些测试数据,建立了数学模型来描述低温下混凝土抗压强度的增加因子与T,w / c比和W-c的影响参数之间的关系。最后,提供了设计方程来预测低温下混凝土抗压强度的增加因子。

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