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The structural behavior and simplified thermal analysis of normal-strength and high-strength concrete beams under fire

机译:正火和高强混凝土梁受火时的结构性能及简化的热分析

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The objective of this study is to investigate the effects of concrete compressive strength and cover thickness on the structural behavior of reinforced concrete (RC) beams under fire. For this purpose, four normal-strength and high-strength concrete test beams were fabricated and tested under the ISO 834 standard fire curve to point of the failure. The test set-up was designed to evaluate the heat distribution and displacement changes of simply supported beams subjected to sustained loads under fire. Test results for normal-strength and high-strength concrete beams were compared for each of the test variables. The test results show that the relationships between time and temperature distributions in the beam sections are very similar and are unrelated to the strength of the concrete, with the exception of the upper part of the beam section. They also showed that the rates of deflection increase for both normal-strength and high-strength concrete beams is very similar before spalling but becomes remarkably high for high-strength concrete beams after spalling. A simplified model was proposed to determine the effect of spalling on the temperature gradient of a high-strength concrete beam. The results of finite difference method (FDM) analysis using this proposed model showed a section temperature gradient that was similar to that of the test results.
机译:这项研究的目的是研究混凝土抗压强度和覆盖厚度对火灾下钢筋混凝土(RC)梁的结构性能的影响。为此目的,制造了四根普通强度和高强度混凝土测试梁,并根据ISO 834标准着火曲线测试了失效点。该测试装置的设计目的是评估承受火灾持续荷载的简支梁的热分布和位移变化。比较了每个测试变量的正常强度和高强度混凝土梁的测试结果。测试结果表明,梁截面的时间和温度分布之间的关系非常相似,并且与混凝土的强度无关,除了梁截面的上部。他们还表明,正常强度和高强度混凝土梁的挠度增大在剥落之前非常相似,但对于高强度混凝土梁,剥落之后的挠度增大非常明显。提出了一种简化模型来确定剥落对高强度混凝土梁温度梯度的影响。使用该提议模型的有限差分法(FDM)分析的结果显示出截面温度梯度与测试结果相似。

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