首页> 外文期刊>Thin-Walled Structures >Numerical and experimental studies on sectional load capacity of concrete-infilled double steel corrugated-plate walls under combined compression and in-plane bending
【24h】

Numerical and experimental studies on sectional load capacity of concrete-infilled double steel corrugated-plate walls under combined compression and in-plane bending

机译:组合压缩和面内弯曲下混凝土双钢波纹板壁截面承载力的数值和实验研究

获取原文
获取原文并翻译 | 示例
           

摘要

The concrete-infilled double steel corrugated-plate walls (CDSCWs) consist of two steel corrugated plates (SCPs), infilled concrete and two boundary elements. The two SCPs are connected by high-strength bolts and the spacing between the two SCPs is filled with concrete. The two vertical boundary elements are installed at both sides of CDSCWs. The sectional load-bearing performance of CDSCWs only under uniform compression has been investigated previously by the authors. But CDSCWs under a combination of compression and in-plane bending moment are applied in practice widely and commonly. Therefore, this paper presents the corresponding sectional load-capacity design method of CDSCWs under a combination of compression and in-plane bending moment. Firstly, an experimental investigation on sectional load-capacity of an I-shaped CDSCW specimen subjected to combined compression and in-plane bending moment is completed. The experimental results reveal a high axial load-bearing efficiency of the SCPs in the CDSCW specimen, and also validated the finite element (FE) model adopted in this study. Then, the FE numerical simulation is applied to systematically analyze the load-bearing performance of CDSCWs subjected to the combination of compression and in-plane bending moment. The coefficient beta(c) is introduced to consider the local buckling of compressive zone and the weakening effect of tensile-compressive transition zone in SCPs. The coefficient phi(sp) is introduced to consider the weakening effect of tensile-compressive transition zone in concrete and the adverse cooperative effect among SCPs, concrete and boundary elements owing to their different ultimate strains at the ultimate state of CDSCWs. As a result, the N-M correlation curve for predicting the sectional load-bearing capacity of CDSCWs under both the uniform compression and in-plane bending moment is then established and also verified by the experimental results.
机译:混凝土灌注的双钢波纹板壁(CDSCWS)由两个钢瓦楞板(SCPS),潜入混凝土和两个边界元素组成。两个SCP通过高强度螺栓连接,两个SCP之间的间距充满混凝土。两个垂直边界元件安装在CDSCW的两侧。作者在先前研究了CDSCWS的截面承载性能,仅在均匀压缩下进行了研究。但是在压缩和面内弯矩的组合下的CDSCW在实践中广泛且通常应用于实践中。因此,本文介绍了在压缩和面内弯矩的组合下CDSCWS的相应截面载荷容量设计方法。首先,完成对经过组合压缩和面内弯矩的I形CDSCW样本的截面负荷能力的实验研究。实验结果揭示了CDSCW标本中SCP的高轴承承载效率,并验证了本研究采用的有限元(FE)模型。然后,应用FE数值模拟以系统地分析经受压缩和面内弯矩的组合的CDSCW的承载性能。引入系数β(C)以考虑压缩区的局部屈曲和SCP中拉伸压缩过渡区的弱化效果。引入系数PHI(SP)以考虑拉伸压缩过渡区在混凝土中的弱化和SCPS,混凝土和边界元件之间的不利协作效果,由于其不同的CDSCWS的终极状态不同的终极菌株。结果,N-M相关曲线,用于预测均匀压缩和面内弯矩下的CDSCWS的截面承载能力,并通过实验结果验证。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号