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EFFECT OF STRAIN AGEING ON MECHANICAL PROPERTIES OF PIPELINE GIRTH WELDS

机译:应变时效对管道周向焊缝力学性能的影响

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Pipeline girth welds for on-shore and off-shore pipelines use a variety of arc welding processes. The trend towards strain based designs for line pipe installation and the effect of coatings for off-shore pipelines have resulted in evaluation and testing of pipe material subjected to strain ageing. However, very little work has been done to systematically study the effect on ferritic weld metal. This work details some initial work done on evaluating the effect of strain ageing on ferritic weld metal deposited with a 1.2 mm diameter flux cored wire under 75% Ar -25% CO_2 shielding gas. Pipeline girth welds were welded on API Grade X-70 pipe and tested to get all weld metal tensile and Charpy V-Notch properties. The weld metal strength overmatched the base material by 7-9%. The ductile to brittle transition temperature for the weld metal was -40°C. The effect of strain ageing on weld metal properties was evaluated. All weld metal tensile samples were subjected to varying levels of pre-strain and ageing treatments to evaluate the effect on yield strength and post-yield behavior. An increase in yield strength after straining and ageing as well as the re-appearance of yield point is observed. Increase in pre-strain decreases elongation. Increase in ageing temperature delays the appearance of dynamic strain ageing. The activation energy for the increase in strength after strain ageing has been measured by assuming a diffusion controlled mechanism. Charpy V-Notch samples were taken to generate transition curves of weld metal after strain ageing and compared to the as-welded condition.
机译:陆上和近海管道的管道环缝焊使用多种电弧焊接工艺。管线管道安装基于应变设计的趋势以及近海管道涂料的影响已导致对经受应变老化的管道材料进行评估和测试。但是,很少有工作来系统地研究对铁素体焊缝金属的影响。这项工作详述了一些初步工作,以评估应变时效对在75%Ar -25%CO_2保护气体下沉积直径为1.2 mm药芯焊丝的铁素体焊接金属的影响。管道环缝焊在API X-70级管道上进行了焊接,并进行了测试,以获得所有焊缝金属的拉伸性能和夏比V型缺口性能。焊接金属强度比基础材料高7-9%。焊接金属的韧性至脆性转变温度为-40°C。评估了应变时效对焊缝金属性能的影响。对所有焊缝金属拉伸样品进行不同程度的预应变和时效处理,以评估其对屈服强度和屈服后行为的影响。观察到应变和时效后屈服强度的增加以及屈服点的重新出现。预应变的增加会降低伸长率。时效温度的升高会延迟动态应变时效的出现。通过假设扩散控制机制,已经测量了应变时效后强度增加的活化能。在变形时效后,对夏比V型缺口样品进行取样,以生成焊缝金属的过渡曲线,并将其与焊接后的状态进行比较。

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