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Microstructures and Mechanical Properties of Friction Tapered Stud Overlap Welding for X65 Pipeline Steel Under Wet Conditions

机译:X65管线钢下湿润条件下摩擦锥形螺栓重叠焊接的微观结构和力学性能

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This paper exhibits a novel in situ remediation technique named friction tapered stud overlap welding (FTSOW) to repair a through crack in structures and components in extremely harsh environments. Furthermore, this paper presents variations in process data, including rotational speed, stud displacement, welding force, and torque for a typical FTSOW weld. In the present study, the effects of welding parameters on the microstructures and mechanical properties of the welding joints were investigated. Inapposite welding parameters consisted of low rotational speeds and welding forces, and when utilized, they increased the occurrence of a lack of bonding and unfilled defects within the weld. The microstructures with a welding zone and heat-affected zone mainly consisted of upper bainite. The hardness value was highest in the welding zone and lowest in the base material. During the pull-out tests, all the welds failed in the stud. Moreover, the defect-free welds broke at the interface of the lap plate and substrate during the cruciform uniaxial tensile test. The best tensile test results at different depths and shear tests were 721.6 MPa and 581.9 MPa, respectively. The favorable Charpy impact-absorbed energy was 68.64 J at 0 degrees C. The Charpy impact tests revealed a brittle fracture characteristic with a large area of cleavage.
机译:本文在原位修复技术中表现出一种摩擦锥形螺柱重叠焊接(FTSOW)的新颖,以在极其恶劣环境中修复结构和组件的裂缝。此外,本文呈现了工艺数据的变化,包括典型FTSOW焊缝的转速,螺柱位移,焊接力和扭矩。在本研究中,研究了焊接参数对焊接接头的微观结构和力学性能的影响。 Inapposite焊接参数由低旋转速度和焊接力组成,当使用时,它们增加了焊缝内缺乏粘接和未填充缺陷的发生。具有焊接区和热影响区域的微观结构主要由上贝卡塔特组成。焊接区中的硬度值最高,基材中最低。在拉出测试期间,螺柱中的所有焊缝都失败。此外,在十字形单轴拉伸试验期间,无缺陷焊缝在圈板和基板的界面处破裂。在不同深度和剪切试验的最佳拉伸试验结果分别为721.6MPa和581.9MPa。有利的夏比冲击吸收能量为68.64J,0℃。夏比冲击试验显示出具有大面积裂解的脆性骨折特征。

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