首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Assessment of Ductile-to-Brittle Transition Behavior of Localized Microstructural Regions in a Friction-Stir Welded X80 Pipeline Steel with Miniaturized Charpy V-Notch Testing
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Assessment of Ductile-to-Brittle Transition Behavior of Localized Microstructural Regions in a Friction-Stir Welded X80 Pipeline Steel with Miniaturized Charpy V-Notch Testing

机译:用微型夏比V型缺口试验评估摩擦搅拌焊接X80管线钢中局部微结构区域的韧性到脆性转变行为

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摘要

Friction-stir welding (FSW) is an alternative welding process for pipelines. This technology offers sound welds, good repeatability, and excellent mechanical properties. However, it is of paramount importance to determine the toughness of the welds at low temperatures in order to establish the limits of this technology. Ductile-to-brittle transition curves were generated in the present study by using a small-scale instrumented Charpy machine and miniaturized V-notch specimens (Kleinstprobe, KLST); notches were located in base metal, heat-affected, stirred, and hard zones within a FSW joint of API-5L X80 Pipeline Steel. Specimens were tested at temperatures between 77 K (-196 A degrees C) and 298 K (25 A degrees C). Based on the results obtained, the transition temperatures for the base material and heat-affected zone were below 173 K (-100 A degrees C); conversely, for the stirred and hard zones, it was located around 213 K (-60 A degrees C). Fracture surfaces were characterized and showed a ductile fracture mechanism at high impact energies and a mixture of ductile and brittle mechanisms at low impact energies. (C) The Minerals, Metals & Materials Society and ASM International 2016
机译:搅拌摩擦焊(FSW)是管道的替代焊接工艺。该技术可提供良好的焊接,良好的重复性和出色的机械性能。然而,至关重要的是确定低温下的焊缝韧性以确立该技术的极限。在本研究中,通过使用小型仪器化的夏比机器和小型化的V型缺口试样(Kleinstprobe,KLST)生成了延性-脆性转变曲线。缺口位于API-5L X80 Pipeline Steel的FSW接头内的贱金属,热影响,搅拌和硬区中。在77 K(-196 A摄氏度)和298 K(25 A摄氏度)之间的温度下测试样品。根据获得的结果,基材和热影响区的转变温度低于173 K(-100 A摄氏度)。相反,对于搅拌区和硬区,它位于213 K(-60 A摄氏度)左右。表征了断裂表面并显示了在高冲击能量下的韧性断裂机制和在低冲击能量下的韧性和脆性机制的混合物。 (C)矿产,金属与材料学会和ASM International 2016

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