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Triaxial strength and failure criterion of plain high-strength and high-performance concrete before and after high temperatures

机译:高温前后普通高强度高性能混凝土的三轴强度和破坏准则

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摘要

Triaxial tests were performed on 100 mm x 100 mm x 100 mm cubic specimens of plain high-strength and high-performace concrete (HSHPC) at all kinds of stress ratios after exposure to normal and high temperatures of 20, 200,300,400,500, and 600 deg C using a large static-dynamic true triaxial machine. Friction-reducing pads, using three layers of plastic membrane with glycerine were placed between the compressive loading plate and the specimens; the tensile loading planes of concrete samples were processed by an attrition machine, and then the samples were glued-up with the loading plate with structural glue. The failure mode characteristic of the specimens and the direction of the crack were observed and described. The three principally static strengths in the corresponding stress state were measured. The influence of the temperatures and stress ratios on the triaxial strengths of HSHPC after exposure to high temperatures was also analyzed. The experimental results showed that the uniaxial compressive strength of plain HSHPC after exposure to high temperatures does not decrease completely with the increase in temperature, the ratios of the triaxial to its uniaxial compressive strength are dependent on the brittleness-stiffness of HSHPC after different temperatures and the stress ratios. On this basis, a new failure criterion with the temperature parameters is proposed for plain HSHPC under multiaxial stress states. It provides the experimental and theoretical foundations for strength analysis of HSHPC structures subject to complex loads after subjected to a high temperature environment.
机译:在20、200,300,400,500和600℃的常温和高温下,在各种应力​​比下,对100 mm x 100 mm x 100 mm普通高强度和高性能混凝土(HSHPC)立方样品进行三轴测试使用大型静态动态真三轴机床。用三层带有甘油的塑料膜的减摩垫被放置在压缩载物板和试样之间。用磨损机对混凝土样品的拉伸载荷平面进行处理,然后用结构胶将样品与载荷板粘合在一起。观察并描述了试样的破坏模式特征和裂纹方向。在相应的应力状态下测量了三个主要的静态强度。还分析了温度和应力比对HSHPC暴露于高温后的三轴强度的影响。实验结果表明,高温下普通HSHPC的单轴抗压强度不会随温度的升高而完全降低,三轴与单轴抗压强度的比值取决于不同温度和温度下HSHPC的脆性-刚度。应力比。在此基础上,提出了多轴应力状态下普通HSHPC的温度参数失效准则。它为高温环境下承受复杂载荷的HSHPC结构的强度分析提供了实验和理论基础。

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