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Collapse pressure of sandwich pipes with strain-hardening cementitious composite - Part 1: Experiments and parametric study

机译:应变硬化水泥基复合材料三明治管的坍塌压力第1部分:实验和参数研究

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Combining both thermal insulation and structural strength in the core, sandwich pipes (SP) are a promising alternative for conventional single wall pipes in deep-water applications. The ultimate strength of SPs under external pressure has always been a major concern in the design process. An insightful understanding of the collapse pressure and post-buckling behavior of SPs is critical not only for safe application, but also for optimized design. This paper and its companion paper present a comprehensive study on the collapse pressure of SPs with strain-hardening cementitious composite (SHCC).Part 1 presents experiments investigating the collapse under external pressure of SPs composed of two steel tubes and the strain-hardening cementitious composite (SHCC) core. The experimental results were employed in correlation studies with the finite element model using the ABAQUS software; good agreement was reached. The proposed numerical model was used in a parametric study for simulating collapse in 6000 different practical configurations. The influence of the geometric parameters and material properties of the SP on its ultimate structural strength under external pressure and post-buckling behavior was systematically analyzed. The results revealed some interesting phenomena not previously reported. For example, assuming frictionless inter-layer conditions, the collapse pressure of an SP with an SHCC core decreases with increasing steel layer thickness. The reasons behind these phenomena were thoroughly discussed and the special behavior of an SP with an SHCC core subjected to external pressure is reported.The results developed in this paper were utilized in Part 2: A suitable prediction equation, where different equation forms are evaluated and one prediction equation is recommended for the design of an SP with an SHCC core.
机译:夹芯管(SP)结合了芯部的隔热和结构强度,是深水应用中常规单壁管的有希望的替代方案。在外部压力下,SP的极限强度一直是设计过程中的主要问题。对SP的塌陷压力和屈曲后行为的深刻理解不仅对于安全应用,而且对于优化设计都是至关重要的。本文及其相关论文对含应变硬化胶凝复合材料(SHCC)的SPs的坍塌压力进行了全面的研究。第一部分是研究由两根钢管和应变硬化胶凝复合材料组成的SPs在外压下的塌陷的实验。 (SHCC)核心。使用ABAQUS软件将实验结果与有限元模型进行相关性研究。达成了良好的协议。所提出的数值模型用于参数研究中,以模拟6000种不同实际配置中的倒塌。系统分析了SP的几何参数和材料性能对其在外部压力和屈曲后行为下的极限结构强度的影响。结果揭示了一些以前没有报道过的有趣现象。例如,假设无摩擦层间条件,具有SHCC核的SP的坍塌压力随钢层厚度的增加而降低。深入讨论了这些现象的原因,并报告了SHCC堆芯承受外压的特殊性能。本文的研究结果在第2部分中得到了利用:一种合适的预测方程式,其中评估了不同的方程式并对于具有SHCC核心的SP的设计,建议使用一个预测方程。

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