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Parametric finite element model for large scale tension tests on flawed pipeline girth welds

机译:用于缺陷管道环缝焊缝的大规模拉伸试验的参数化有限元模型

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摘要

The structural response of a pipe with a flawed girth weld, subjected to global plastic deformation is influenced by a large number of geometrical and material properties. Finite element models that aim to simulate this need to include all relevant influence factors, which causes high challenges in the creation of such models. In search for a high degree of flexibility, automation and ease of use, the authors have developed a parametric script that creates geometries for two common pipeline girth weld tension tests: the curved wide plate test and the full scale pressurized pipe tension test. The developed model allows to modify pipe geometry, test specimen geometry, flaw position (weld metal centre or heat-affected zone), flaw size, weld misalignment, pipe thickness variations, weld fusion line profile, and weld cap profile. The desired geometry is obtained by a coordinate transformation scheme that starts from a flat plate with a simplified weld geometry. A deliberate partitioning strategy is applied to obtain flexibility in the flaw location and full independence between a fine flaw mesh and a coarse body mesh. This article describes the approach, structure and governing equations of the model. An example geometry is discussed to illustrate the various possibilities. The proposed model provides inspiration for all who seek to develop parametric finite element models with a similar flexibility and ease of use.
机译:具有缺陷的环焊缝的管道的结构响应会受到整体塑性变形的影响,这受许多几何和材料特性的影响。旨在模拟此需求的有限元模型需要包括所有相关的影响因素,这在创建此类模型时会带来很高的挑战。为了寻求高度的灵活性,自动化和易用性,作者开发了一种参数脚本,可为两种常见的管道环焊缝张力测试创建几何形状:弯曲的宽板测试和满量程加压管道张力测试。开发的模型可以修改管道的几何形状,试样的几何形状,缺陷位置(焊接金属中心或热影响区),缺陷尺寸,焊缝未对准,管道厚度变化,焊缝熔合线轮廓和焊帽轮廓。通过坐标变换方案获得所需的几何形状,该方案从具有简化焊接几何形状的平板开始。应用了有意的分区策略来获得缺陷位置的灵活性以及精细缺陷网格和粗体网格之间的完全独立性。本文介绍了该模型的方法,结构和控制方程。讨论示例几何形状以说明各种可能性。所提出的模型为所有寻求开发具有相似灵活性和易用性的参数有限元模型的人提供了灵感。

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