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Compressive behaviour of ECC confined concrete partially encased steel composite columns using high strength steel

机译:ECC紧孔混凝土部分包装钢复合柱采用高强度钢的压缩行为

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摘要

When using high strength materials in concrete partially encased steel (CES) composite columns, the major issues encountered are strain incompatibility of high strength steel and high strength concrete, premature concrete spalling and explosive brittle failure with poor ductility. In order to improve the compressive behaviour and ductility of CES columns, Engineered Cementitious Composites (ECC) encasement is proposed as a confinement and protection layer for concrete and steel, respectively. In order to evaluate the effectiveness of ECC cover on performance of CES columns, compressive behaviours of ECC-CES short columns were experimentally investigated to study the effects of material strengths, ECC encasement thickness, steel section shape and column's aspect ratio. Findings were discussed and reported in terms of failure behaviours, load-deformation responses, post-peak ductility and toughness. Test results suggested that while only an insignificant increase of axial compressive resistance was observed, ECC encasement improved failure behaviour of ECC-CES columns by effectively controlling brittleness and explosive spalling of high strength concrete. ECC-CES generally showed improved ductility and energy absorption capacity but the strength enhancements were minimal. Reliability of current design codes in predicting the column ultimate strength was investigated and a new approach based on effective stress method was proposed. Finally, a 3D non-linear numerical model was also developed to predict the compressive behaviours of the proposed form of columns and a small scale parametric study was conducted. (C) 2020 Elsevier Ltd. All rights reserved.
机译:当在混凝土部分包装钢(CES)复合柱中使用高强度材料时,遇到的主要问题是高强度钢和高强度混凝土,过早混凝土剥落和爆炸性脆性失效,延展性较差的强度问题。为了改善CES柱的压缩行为和延展性,分别提出了工程化的水泥复合材料(ECC)封装作为混凝土和钢的限制和保护层。为了评估ECC涵盖CES柱的性能的有效性,实验研究了ECC-CES短柱的压缩行为,研究了材料强度,ECC外壳厚度,钢截面形状和柱纵横比的影响。在失败行为,负荷变形响应,后峰值延展性和韧性方面讨论和报道了发现。测试结果表明,观察到轴向抗压性的微不足道的增加,ECC通过有效地控制高强度混凝土的脆性和爆炸性剥落来改善ECC-CES柱的失效行为。 ECC-CES通常显示出改善的延展性和能量吸收能力,但强度增强性很小。研究了预测柱极限强度的电流设计码的可靠性,提出了一种基于有效应力法的新方法。最后,还开发了3D非线性数值模型以预测所提出的柱形式的压缩行为和进行小规模参数研究。 (c)2020 elestvier有限公司保留所有权利。

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