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Application of instrumented indentation technique for enhanced fitness-for-service assessment of pipeline crack

机译:仪器压痕技术在提高管道裂缝适应性评估中的应用

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摘要

While most in-field non-destructive technologies for structural integrity diagnosis focus on precise crack detection, a novel instrumented indentation technique for non-destructively determining tensile properties in fields is introduced here. The goal of this work is to apply the newly-developed indentation technique to in-field fitness-for-service (FFS) assessment of linepipe cracks. As one step to verify its applicability, tensile properties in base metal and girth weldement of API-X65-graded line-pipe were evaluated by this indentation technique and provided for construction of material-specific failure assessment diagrams (FADs). Results are discussed in terms of the accuracy of the indentation data and how the FAD assessment results are affected by the variation in local tensile properties measured by indenting small target regions such as heat-affected zones (HAZs). Based on the results, we suggest that the indentation technique may be useful for reducing possible difficulties in flaw assessment (arising from the use of incorrect tensile properties) by providing reliably practical data for FAD construction.
机译:虽然大多数用于结构完整性诊断的现场非破坏性技术都集中在精确的裂缝检测上,但这里介绍了一种新型的仪器压痕技术,用于非破坏性地确定现场的拉伸性能。这项工作的目的是将新开发的压痕技术应用于管道裂缝的现场服务质量评估(FFS)。作为验证其适用性的一个步骤,通过这种压痕技术评估了API-X65渐变管线管在母材和环焊件中的拉伸性能,并为构造特定于材料的失效评估图(FAD)提供了条件。将根据压痕数据的准确性以及通过对小目标区域(如热影响区(HAZ))进行压痕而测得的局部拉伸性能的变化,如何对FAD评估结果产生影响来讨论结果。根据结果​​,我们建议通过提供可靠的FAD施工实用数据,压痕技术可能有助于减少缺陷评估中的可能困难(由于使用了不正确的拉伸性能而引起)。

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