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首页> 外文期刊>Journal of structural engineering >Effects of High-Strength Concrete on Progressive Collapse Resistance of Reinforced Concrete Frame
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Effects of High-Strength Concrete on Progressive Collapse Resistance of Reinforced Concrete Frame

机译:高强度混凝土对钢筋混凝土框架渐进塌陷电阻的影响

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Abstract The application of extreme loads, such as impact and blast, may lead to progressive collapse and the robustness of a structure must be considered in this context. Although extensive studies have been carried out in recent decades to investigate the load-resisting mechanism of RC frames to prevent progressive collapse, the effects of high-strength concrete (HSC) on progressive collapse resistance capacity remain unclear. Therefore, six tests of RC frames with different span-to-depth ratios and concrete strengths were conducted in present study. Among them, three are HSC frames and the others are normal-strength concrete (NSC) frames. It was found that the use of HSC could further enhance the compressive arch action (CAA) capacity, especially for frames with a low span-to-depth ratio. On the other hand, HSC can reduce the tensile catenary action (TCA) capacity at a large deformation stage, primarily because of the higher bond stress between concrete and rebar, leading to earlier fracture of the rebar. The analytical results from the model were compared with the test results. It was found that the refined CAA model could accurately predict the CAA capacity of NSC frames, but not of HSC frames. Moreover, using the existing model it is hard to accurately predict the CAA capacity of frames with relatively small span-to-depth ratios (less than 7).
机译:摘要极端载荷的应用,如冲击和爆炸,可能导致逐渐崩溃,在这种背景下必须考虑结构的稳健性。尽管近几十年来研究RC帧的抗衡机制以防止逐次崩溃,但高强度混凝土(HSC)对渐进式塌陷能力的影响仍不清楚。因此,本研究中对具有不同跨度比率和混凝土强度的RC帧的六个测试。其中,三个是HSC帧,其他是正常强度混凝土(NSC)框架。结果发现,HSC的使用可以进一步增强压缩拱动作(CAA)容量,特别是对于具有低跨度和深度比的帧。另一方面,HSC可以在大变形阶段降低拉伸膨胀动作(TCA)容量,主要是因为混凝土和钢筋之间的粘合应力较高,导致钢筋早期骨折。将模型的分析结果与测试结果进行比较。发现精制CAA模型可以准确地预测NSC帧的CAA容量,但不具有HSC帧。此外,使用现有的模型,很难准确地预测具有相对较小的跨度的跨度比率的帧的CAA容量(小于7)。

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