首页> 外文会议>ASME international pipeline conference;IPC2010 >INFLUENCE OF THE MATERIAL PLASTICITY ON THE CHARACTERISTIC BEHAVIOR OF SANDWICH PIPES
【24h】

INFLUENCE OF THE MATERIAL PLASTICITY ON THE CHARACTERISTIC BEHAVIOR OF SANDWICH PIPES

机译:材料塑性对夹心管特性的影响

获取原文
获取外文期刊封面目录资料

摘要

Sandwich Pipes (SP) can be considered as an enhanced design configuration for Pipe in Pipe (PIP) systems. By improving the structural properties of the core layer and the components' interface adhesion, SP systems can be an effective design alternative for deepwater applications. However, designing such a hybrid structure demands more knowledge of the response of the system under the governing loading and environmental conditions. A SP system would be a suitable design alternative for offshore pipelines that are subjected to very large hydrostatic pressure in deepwater. Therefore, full understanding of the behavior of such systems under the external hydrostatic pressure is a prerequisite for designing optimum SPs.In this paper a set of parametric models are generated based on practical design configurations. The Finite Element (FE) software package, ABAQUS, is used to create the models and analyze them. The FE models are analyzed through eigenvalue buckling and post-buckling analyses with the assumptions of linear and nonlinear buckling. Appropriate initial imperfections and FE parameters are administered. Moreover, the integrity of FE models is investigated through a mesh convergence study and also by considering various types of element locking mechanism. The results of these three methods of analysis are compared and the discrepancy between the results obtained through the linear analysis in comparison to the nonlinear post-buckling analysis is highlighted. Moreover, the influence of using various material plasticity models on the buckling and post-buckling responses is also investigated. Different models describing the materials stress-strain curves in the form of the elastic perfectly plastic, elastic followed by plastic exponentialhardening, as well as the existence of the Luder's bands are also considered. Furthermore, the effect of core material's stiffness on the buckling and post-buckling response of the system is also examined. Based on the equivalent plastic strain, it will be shown that in order to ensure system's effective composite sandwich action, the core must have a certain minimal stiffness. Finally, the influence of the enhancement in the steel grade used to form either the internal or external pipe on the stability response of both PIP and SP systems will be illustrated.
机译:三明治管(SP)可以被认为是管中管(PIP)系统的增强设计配置。通过改善核心层的结构特性和组件的界面附着力,SP系统可以成为深水应用的有效设计替代方案。但是,设计这样的混合结构需要更多有关控制负载和环境条件下系统响应的知识。对于深水中承受很大静水压力的海上管道,SP系统将是合适的设计替代方案。因此,充分了解此类系统在外部静水压力下的行为是设计最佳SP的先决条件。 在本文中,根据实际设计配置生成了一组参数模型。有限元(FE)软件包ABAQUS用于创建模型并进行分析。有限元模型通过特征值屈曲和后屈曲分析在线性和非线性屈曲的假设下进行分析。管理适当的初始缺陷和FE参数。此外,通过网格收敛研究以及考虑各种类型的元素锁定机制来研究有限元模型的完整性。比较了这三种分析方法的结果,并强调了通过线性分析获得的结果与非线性屈曲后分析相比的差异。此外,还研究了使用各种材料可塑性模型对屈曲和屈曲后响应的影响。以弹性完全塑性,弹性后跟塑性指数的形式描述材料应力-应变曲线的不同模型 还考虑了硬化以及Luder乐队的存在。此外,还检查了芯材刚度对系统屈曲和屈曲后响应的影响。基于等效塑性应变,将表明,为了确保系统有效的复合夹层作用,型芯必须具有一定的最小刚度。最后,将说明用于形成内部或外部管道的钢种的增强对PIP和SP系统的稳定性响应的影响。

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