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Effect of Ti, Zr and Mg Addition on the Impact Toughness of Heat Affected Zone in Low Carbon Steel

机译:Ti,Zr和Mg添加对低碳钢热影响区冲击韧性的影响

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In order to understand the effects of deoxidizer such as titanium, zirconium and magnesium on the impact toughness of heat affected zone (HAZ) of steel, four low carbon steels deoxidized by titanium, zirconium and magnesium were obtained. After smelting, forging, rolling and welding simulation, the effects of Ti, Zr and Mg additives on the impact toughness of HAZ in low carbon steel were studied. The inclusion characteristics (size, morphology and chemistry) analysis, Charpy-type test and the fracture observation of the specimens after the Charpy-type test were carried out respectively. The following results were found. The density of inclusion in Ti-Zr-Mg deoxidized steel is maximal. With the increasing of Ti content in steel, the proportion of inclusions in diameter less than 0.5 ìm decreases. The proportion reaches maximum 64.0% in Ti-Zr-Mg deoxidized steel. The addition of Ti-Zr-Mg can enhance the impact toughness of HAZ after welding simulation. The maximal impacting energy is 249J at 253K. The complex particles of MgO-ZrO_2-TiO_x-MnS are most benefit to enhance impact toughness. The improvement of HAZ is attributable to the role of particle pinning and the formation of intergranular ferrite.
机译:为了了解脱氧剂如钛,锆和镁对钢热影响区(HAZ)的冲击韧性的影响,得到了钛,锆和镁脱氧的四个低碳钢。锻炼后,研究了锻造,轧制和焊接模拟,研究了Ti,Zr和Mg添加剂对低碳钢中HAZ的冲击韧性的影响。分别进行了含有特征(尺寸,形态,化学)分析,夏比型试验和样品的断裂观察,分别进行了夏比型试验后的试样进行。找到了以下结果。将包含在Ti-Zr-Mg脱氧钢中的密度最大。随着钢中的Ti含量的增加,直径小于0.5μm的夹杂物的比例降低。 Ti-ZR-Mg脱氧钢中的比例最大达到64.0%。焊接模拟后,添加Ti-Zr-Mg可以增强HAZ的冲击韧性。最大撞击能量为249J,为253K。 MgO-ZrO_2-TiO_-MNS的复杂颗粒最有利于增强冲击韧性。 HAZ的改善是归因于颗粒固定的作用和晶间铁素体的形成。

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