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Recent Efforts on Characterizing Propagating Ductile Fracture Resistance of Linepipe Steels

机译:表征管线钢的延性断裂韧性的最新努力

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This paper summarizes efforts on improving the methodology for arrest of unstable axial ductile crack propagation for the assessment of new and future gas pipeline projects. The past ductile fracture methodologies generally involve using the Charpy V-notch test, but that test has proven to be unreliable for high toughness materials and for materials that have rising-shelf energies, and is questionable for higher strength steels than X70 grade linepipe. The improved methodology utilizes the energy from a full-thickness impact specimen, of which the DWTT is the most frequently used. Various modified-notch specimens have been proposed in order to obtain the propagation energy component of the tests. On-going efforts involve developing a more fundamental relationship between technically defensible steady-state crack propagation fracture parameters and the DWTT energy. Recent experimental dynamic data and fracture analyses are presented in this paper.
机译:本文总结了为评估新的和未来的天然气管道项目而改进的用于阻止不稳定的轴向延性裂纹扩展的方法的工作。过去的延性断裂方法通常涉及使用夏比V型缺口测试,但事实证明该测试对于高韧性材料和具有上升架能的材料不可靠,并且对于比X70级管线更高强度的钢也存在疑问。改进的方法利用了全厚度冲击试样的能量,其中最常用的是DWTT。为了获得测试的传播能量分量,已经提出了各种修改后的缺口试样。正在进行的工作包括在技术上可行的稳态裂纹扩展断裂参数与DWTT能量之间建立更基本的关系。本文介绍了最新的实验动态数据和断裂分析。

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