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Evaluation of the mechanical properties of 200 MPa ultra-high-strength concrete at elevated temperatures and residual strength of column

机译:高温下200 MPa超高强度混凝土的力学性能和立柱残余强度的评估

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In this study, material properties of ultra-high-strength concrete (UHSC) and residual load of reinforced concrete column have been evaluated at elevated temperature. On the basis of the results of experiments, prediction process for residual load of column member subjected to elevated temperature have been proposed. For evaluation on mechanical properties at elevated temperature of UHSC, 100 x 200 mm cylinder specimen of 100, 150, 200 MPa was heated to 100, 200, 300, 500 and 700 degrees C by 1 degrees C/min. After that, the ratio of compressive strength at room temperature to compressive strength at elevated temperature was measured. Also, comparison evaluation between experimental results of this paper and previously presented properties of compressive strength properties of normal strength concrete (NSC) and high strength concrete was carried out. Reinforced concrete column member was made of 200 MPa concrete and was heated by ISO-834 standard heating curve for 3 h. Internal force degradation and fire resistance performance of column member was evaluated by measuring internal temperature and axial deformation. Also, after heating, residual axial load capacity was evaluated through natural cooling for 24 h. Prediction process of residual internal force of UHSC column was proposed by deriving model for internal force degradation with experimental results of residual mechanical properties and spalling properties of UHSC subjected to elevated temperature. Based on the experimental results, it was observed that internal force degradation of UHSC by elevated temperature occurred more than that of NSC. In the test for fire resistance performance of column, 26% of section was lost due to spalling, however, it was observed that residual internal force was 52% of design axial load. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,在高温下评估了超高强度混凝土(UHSC)的材料性能和钢筋混凝土柱的残余荷载。根据实验结果,提出了高温下圆柱构件残余载荷的预测方法。为了评估在UHSC高温下的机械性能,将100、150、200 MPa的100 x 200 mm圆柱试样以1℃/ min的速度加热到100、200、300、500和700℃。之后,测量室温下的抗压强度与高温下的抗压强度之比。此外,本文的实验结果与先前介绍的普通强度混凝土(NSC)和高强度混凝土的抗压强度特性之间进行了比较评估。钢筋混凝土柱构件由200 MPa混凝土制成,并通过ISO-834标准加热曲线加热3小时。通过测量内部温度和轴向变形来评估柱构件的内力退化和耐火性能。同样,在加热后,通过自然冷却24小时来评估残余的轴向载荷能力。通过推导高温下UHSC的残余力学性能和剥落性能的实验结果,通过推导内力退化模型,提出了UHSC柱残余内力的预测过程。根据实验结果,观察到高温导致UHSC的内力降解比NSC发生的内力降解更多。在柱的耐火性能测试中,由于剥落损失了26%的截面,但是观察到,残余内力为设计轴向载荷的52%。 (C)2015 Elsevier Ltd.保留所有权利。

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