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Grain Refinement Behavior of Pipeline Steel in Welding Heat Affected Zone

机译:管线钢焊接热影响区的晶粒细化行为

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Self refining grain behavior of X80 pipeline steel in the heat affected zone was studied systematically by physical simulation method. The sizes and distribution of the inclusions which promote intra-granular ferrite nucleation were measured using the automatic image analyzer, and the figures of the intra-granular ferrite which has self refining grain behavior were observed using transmission electron microscopes with energy dispersive X-ray spectroscopy, the fracture toughness values of the coarse grain zone in the HAZ were also measured. The results show that the welding thermal cycle has nearly no effect on the sizes and distribution of the inclusions in the HAZ. The reasons of self-refining grain in the HAZ are that the small non-metallic inclusions such as MnO、 TiO、 MnS、 CuS and ( Mn ,Cu )S in X80 pipeline steel ,which can induce the nucleation of intra-granular ferrite in the welding process, and sympathetic nucleation of intra-granular ferrite makes the coarse grains refined in the HAZ. First intra-granular ferrite has large boundary energy and high density dislocation, which induce the sympathetic nucleation of intra-granular ferrite.
机译:通过物理仿真方法系统地研究了热影响区中X80管线钢的自精炼晶粒行为。使用自动图像分析仪测量促进粒状铁氧体成核的夹杂物的尺寸和分布,并且使用具有能量分散X射线光谱的透射电子显微镜观察到具有自精炼晶粒行为的粒状铁氧体的图中的图,还测量了HAZ中粗粒区的断裂韧性值。结果表明,焊接热循环几乎没有对HAZ中夹杂物的尺寸和分布的影响。 HAZ中的自精炼颗粒的原因是X80管线钢中的MNO,TiO,MNS,CU和(MN,Cu)和(Mn,Cu)S等小的非金属夹杂物,其可以诱导粒状铁氧体的核心粒状铁氧体的焊接过程和交感神经成核使粗糙的粗粒细化。第一粒状铁氧体具有大的边界能量和高密度位错,诱导粒状铁氧体的交感神经成核。

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