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Recent Activities in ISIJ HLP Research Committee Corrosion Working Group: Proposal of pH Buffer Test Solution for Fitness-For-Purpose HIC Evaluations

机译:ISIJ HLP研究委员会腐蚀工作组中的近期活动:用于目的HIC评估的pH缓冲液测试溶液的建议

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The HLP (High-strength Line Pipe) Research Committee in the Iron and Steel Institute of Japan (ISIJ) has investigated the major issues of line pipes from the viewpoints of corrosion and fracture. Fitness-For-Purpose (FFP) evaluations for Hydrogen Induced Cracking (HIC) have been the subject of considerable study in recent years. FFP is the idea that appropriate materials are chosen depending on the severity of the use environment. Therefore, it is possible that the applicable range of material strength and the flexibility of manufacturing can be expanded by establishing the FFP evaluation approach. This paper reviews the recent activities of the HLP Corrosion Working Group during the past few years.The current status of the conventional HIC test method and FFP HIC evaluation methods were overviewed. Based on the results of a variety of experiments, the HLP Research Committee proposed a HIC test solution for FFP evaluations in the NACE Task Group. The proposed solution is a highly concentrated acetate buffer solution that is 5%NaCl+0.93N?(CH_(3)COOH+CH_(3)COONa), and is expected to be adopted as the optional solution in NACE TM0284. The solution displayed an excellent pH buffering capacity during a long-term HIC test in comparison with the conventional HIC test solutions. The corrosion rate and hydrogen permeation behavior of the steel specimen in the solution were similar to those in the conventional solutions.
机译:日本钢铁学会(ISIJ)的HLP(高强度管线管)研究委员会从腐蚀和断裂的角度研究了管线管的主要问题。氢致裂化(HIC)的目的适应性(FFP)评估是近年来研究的主题。 FFP的想法是根据使用环境的严重程度选择合适的材料。因此,有可能通过建立FFP评估方法来扩大材料强度的适用范围和制造的灵活性。本文回顾了HLP腐蚀工作组在过去几年中的最新活动,概述了常规HIC测试方法和FFP HIC评估方法的现状。基于各种实验的结果,HLP研究委员会在NACE任务组中提出了用于FFP评估的HIC测试解决方案。拟议的溶液是一种高浓度的乙酸盐缓冲溶液,其浓度为5%NaCl + 0.93N2(CH_(3)COOH + CH_(3)COONa),并有望在NACE TM0284中用作可选溶液。与传统的HIC测试溶液相比,该溶液在长期的HIC测试中显示出出色的pH缓冲能力。溶液中钢试样的腐蚀速率和氢渗透行为与常规溶液相似。

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