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Effect of artificial aging on the microstructure of weldment on API 5L X-52 steel pipe

机译:人工时效对API 5L X-52钢管焊接件组织的影响

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The effects of artificial aging on the microstructure in the weldment of an API 5L X-52 steel pipe were studied. Aging was performed at 250 deg C over a period of 1000 h and values were recorded at every 100 h intervals. Transmission electron microscopy observations showed precipitation strengthening from nearly circular Nb-C containing nanoparticles for the base metal and heat affected zone, and cementite for the weld metal. The largest amount of precipitation in the weldment zone was obtained at 500 h, due to peak-aging, which showed the highest particle density. The weld metal was more susceptible to aging, exhibiting the highest increase in precipitation at 500 h, followed by the heat affected zone. After 500 h, the deterioration in the microstructure was caused by the coarsening of particles due to over-aging. The base metal showed the larger increment in particle size after 900 h of aging accompanied by a bigger decrease in fine particles than in the weld metal.
机译:研究了人工时效对API 5L X-52钢管焊接件显微组织的影响。在250摄氏度的条件下进行1000小时的时效处理,并每隔100小时记录一次值。透射电子显微镜观察表明,对于基本金属和热影响区,几乎圆形的含Nb-C的纳米粒子沉淀增强,而对于焊接金属,渗碳体沉淀增强。由于峰值时效,在500 h处获得了最大的焊接区沉淀,这表明了最高的颗粒密度。焊缝金属更容易老化,在500 h时出现最大的沉淀增加,其次是热影响区。 500小时后,微观结构的恶化是由于过时效引起的颗粒粗化所致。与焊接金属相比,时效900 h时效后,母材的粒径增加幅度更大,而细颗粒的减少幅度更大。

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