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Experimentally based parameters applied to concrete damage plasticity model for strain hardening cementitious composite in sandwich pipes

机译:基于实验基于夹层管菌株硬化胶凝复合材料混凝土损伤塑性模型的参数

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Sandwich pipes (SPs) composed of two concentrically steel tubes with a strain hardening cementitious composite (SHCC) filling core is a new concept designed for oil and gas transportation in deep waters. In this concept, the SHCC core is the most critical component that should withstand the combined loading of high hydrostatic pressure and bending moment. This paper proposes a particular concrete damage plasticity (CDP) model for the SHCC core based both on experimental data and on the continuum damage mechanics theory. The basic fundamentals of the CDP model can be divided into three major issues, namely, damage evolution, yield criterion, and plastic flow rule. For the damage evolution, two models of damage variables, under tension and compression, respectively, were built based on uniaxial experimental data available and the fracture energy theory. For the yield criterion, the parameters for the Lubliner model were fitted according to available experimental data from uniaxial and biaxial compressive tests. For the plastic flow rule, the dilation angle was deduced from the results of triaxial compressive tests combined with the Drucker-Prager type plastic flow rule. Finally, four-point bending tests were carried out on SHCC specimens and collapse tests were conducted on SP models to allow a correlation study between experimental data and results obtained from numerical simulations incorporating the proposed CDP model. The correlation between numerical and experimental results showed good agreement, demonstrating that the proposed CDP model can accurately reproduce the mechanical behavior and damage distribution experienced by an SHCC material.
机译:夹层管(SPS)由两个同心的钢管组成,具有菌株硬化胶凝剂复合材料(SHCC)填充芯是一种新的概念,用于深水中的石油和天然气运输。在这一概念中,SHCC核心是最关键的组件,应承受高静水压力和弯矩的组合负荷。本文提出了基于实验数据和连续损伤力学理论的SHCC核心特定混凝土损伤塑性(CDP)模型。 CDP模型的基本基本原理可分为三个主要问题,即损害进化,产量标准和塑料流量规则。对于损伤演化,基于单轴实验数据和裂缝能量理论,分别构建了两种损坏变量,张力和压缩模型。对于收益率标准,根据来自单轴和双轴压缩测试的可用实验数据安装了Lubliner模型的参数。对于塑料流量规则,从三轴压缩试验结果中推导出扩张角度与Drucker-Prager型塑料流量规则的结果推导出来。最后,在SHCC标本上进行了四点弯曲试验,并在SP模型上进行塌陷测试,以允许从包含所提出的CDP模型的数值模拟获得的实验数据和结果之间的相关性研究。数值和实验结果之间的相关性显示出良好的一致性,表明所提出的CDP模型可以准确地再现SHCC材料经历的机械行为和损坏分布。

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