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Evaluation of Fracture Toughness of Welded High Strength Low Alloy Line-pipe Steel

机译:高强度低合金管线钢焊接断裂韧性的评估

摘要

The present investigation revolves around evaluation of fracture toughness of welded API X65 steel plate. API X65 is a high strength low alloy (HSLA) steel which is used in linepipes for transporting oil and natural gas. In the above application, catastrophic failure due to fatigue is reported to cause sudden damage and loss to human-life as well as property. Hence, from end application point of view, knowledge on fracture toughness especially in welded plates is of immense importance. Through the present work, an effort has been made to add to the limited number of reports on the above subject. In this work, first, the selected steel was characterized in terms microstructure, hardness and tensile properties. Thereafter, the welding of steel plates was performed with sub merged arc welding (SAW) with root pass of shielded metal arc welding (SMAW). The microhardness profile in base material (BM), heat affected zone (HAZ), weld zone (WZ) and weld nugget were evaluated along with micro structural characterization of the above zones using optical and transmission-electron microscopy. The fracture toughness of various zones of welded plate, was evaluated in terms of J-R curve following the concept of EPFM. The samples for fracture toughness tests were prepared as per ASTM E1820. Fractography of the failed specimens were also carried out. The evaluation of fracture toughness of welded API X65 plates indicates that, JQ value of heat affected zone was slightly lower than the base material, but for the weld zone it dropped significantly by 53% due to the non-uniform crack front and crack propagation. The phenomenon is attributed to presence of different defects in the weld region. JQ value for fusion line samples showed significant scatter with an average reduction of 40% in JQ value as compared to base material. The scatter in fusion line value can be attributed to error in precise placement of notch or deviation of crack path during testing. Presence of Nb and V imparts precipitation hardening effect to the API X65 steel, such that it has a satisfactory combination of strength and toughness parameters fulfilled by API service requirements.
机译:本研究围绕评估焊接的API X65钢板的断裂韧性。 API X65是高强度低合金(HSLA)钢,用于管道输送石油和天然气。在上述申请中,据报道,由于疲劳而导致的灾难性故障导致突然的损害以及对生命和财产的损失。因此,从最终应用的角度来看,关于断裂韧性的知识,特别是在焊接板中的断裂韧性,具有极其重要的意义。通过当前的工作,已努力增加关于上述主题的有限数量的报告。在这项工作中,首先,根据微观组织,硬度和拉伸性能对所选钢进行了表征。此后,通过具有保护金属电弧焊(SMAW)的根焊道的亚埋弧焊(SAW)进行钢板的焊接。使用光学和透射电子显微镜,评估了基材(BM),热影响区(HAZ),焊接区(WZ)和熔核的显微硬度分布以及上述区域的显微结构特征。根据EPFM的概念,通过J-R曲线评估了焊接板各个区域的断裂韧性。根据ASTM E1820准备用于断裂韧性测试的样品。还对失败的标本进行了断口扫描。对焊接的API X65板的断裂韧性的评估表明,热影响区的JQ值略低于母材,但由于裂纹前沿和裂纹扩展不均匀,焊接区的JQ值显着下降了53%。该现象归因于在焊接区域中存在不同的缺陷。与基础材料相比,融合线样品的JQ值显示出显着的分散性,JQ值平均降低了40%。熔合线值的散布可归因于测试过程中刻槽的精确放置错误或裂纹路径的偏差。 Nb和V的存在赋予API X65钢以沉淀硬化的作用,从而使其具有API服务要求所满足的强度和韧性参数的令人满意的组合。

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    Bhargava Banda Venkata;

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  • 年度 2016
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