管道完整性评估新工具的实现:局部应变与硬度的相关性

Clément Soret, J. M. Djouda, M. Bonnaudet, M. Zaréa, Y. Madi
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引用次数: 0

摘要

由于外部干扰,用于陆上和海上作业的管道可能会出现凹陷和凿出缺陷。由于这些缺陷会严重损害设施的完整性和性能,因此有必要对这些缺陷附近的应变进行评估。开发非破坏性的方法来评估缺陷的严重性仍然是管道行业的一个问题。本文建立了API X52现代钢、API X52复古钢和API X63复古钢三种管线材料的显微硬度-应变关系。分析了三种管材的显微硬度-应变关系,以验证它们是否可以用一条主曲线来描述。为此,在每个等级的纵向(L)和横向(T)方向上进行缺口拉伸(NT)测试,以达到高应变值(高达70%)。Tabor提出的关系通过引入三个允许考虑实际材料行为的新参数得到改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of a New Tool for Pipelines Integrity Evaluation: A Correlation Between Local Strains and Hardness
Due to external interference, pipelines used for onshore as well as offshore operations can present dent and gouge defects. As such defects can seriously impair facilities’ integrity and performance, it is necessary to evaluate the strains in the vicinity of these defects. The development of non-destructive approaches to assess defects severity remains an issue in the pipeline industry. In the present study, micro-hardness - strain relationships are established for three steel grades of pipeline materials: API X52 modern, API X52 vintage and API X63 vintage. The micro-hardness – strain correlations of the three pipe materials are analyzed in order to verify if they can be described by a master curve. For that purpose, Notched Tensile (NT) tests are performed in Longitudinal (L) and Transverse (T) directions for each grade in order to reach high strain values (up to 70%). The relationship proposed by Tabor was improved with the introduction of three new parameters that allow considering actual material behavior.
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