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Experimental Study on Thermal Expansion Behavior of Concrete under Three-Dimensional Stress

机译:三维应力下混凝土热膨胀行为的实验研究

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Concrete is widely used in underground engineering and bears three-dimensional stress transmitted by overlying load. When a fire occurs, the thermal expansion of concrete structure under such stress state is different from that under stress-free state. For this purpose, a self-developed real-time high-temperature true triaxial test system was applied to investigate the thermal expansion behavior of concrete under three-dimensional stress state. The thermal expansion strain of concrete under the three-dimensional stress undergoes strain increasing and strain stabilizing stages. At 600°C, the maximum thermal expansion strain of concrete under the three-dimensional stress is 0.75%. The average coefficient of thermal expansion of concrete under three-dimensional stress condition was then calculated, and its value reaches the minimum of 8.68?×?10 ?6 /°C at 200°C and the maximum of 13.41?×?10 ?6 /°C at 500°C. Comparing the coefficient of thermal expansion of concrete under stress-free condition given by Eurocode, it is found that the three-dimensional stress has an obvious restraint on the thermal expansion of concrete. The research results can provide theoretical basis for the stability analysis of underground engineering concrete structures under high-temperature environment.
机译:混凝土广泛用于地下工程中,通过覆盖载荷传递三维应力。发生火灾时,在这种应力状态下的混凝土结构的热膨胀与无应力状态下的混凝土结构不同。为此目的,应用了自开发的实时高温真正的三轴试验系统,以研究三维应力状态下混凝土的热膨胀行为。三维应力下混凝土的热膨胀应变经历应变增加和应变稳定阶段。在600°C时,三维应力下混凝土的最大热膨胀应变为0.75%。然后计算混凝土在三维应力条件下的平均热膨胀系数,其值达到8.68Ω×10?6 /°C,在200°C,最大值为13.41?×10?6 /°C在500°C下。比较混凝土的热膨胀系数在欧元码给出的无应力条件下的热膨胀系数,发现三维应力对混凝土的热膨胀具有明显的抑制。研究结果可以为高温环境下地下工程混凝土结构的稳定性分析提供理论依据。

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