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Effect of rare earths on impact toughness of a low-carbon steel

机译:稀土对低碳钢冲击韧性的影响

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摘要

Studies of an industrial low-carbon steel (B450NbRE) suggest that the impact toughness is unexpectedly low under its practical service, probably resulting from the unstable recovery of rare earths (RE) in steel making. The purpose of this work is to investigate the effect of RE on the impact toughness in low-carbon steel. The B450NbRE steels with content of 0.0012-0.0180 wt.% RE were produced by vacuum induction furnace. The impact toughness and microstructure were investigated after hot rolled. The Gleeble-1500 thermal simulator was used to validate the effect of RE on the microstructure. The results indicate that the microstructure of hot-rolled steels is characterized by polygonal ferrite, quasi-polygonal ferrite, bai nite and pearlite. The impact toughness increases with RE contents reaching the peak with content of 0.0047 wt.% RE, such a change exhibits the same rule as the case of the ferrite amount. However, this improvement in impact toughness is not only due to an increase in ferrite amount, but also the fine grained structure and the cleaner grain boundaries. And content of 0.0180 wt.% RE is excessive. Such an addition of the RE resulted in the martensite precipitates at the grain boundaries, which are extremely detrimental to impact toughness.
机译:对工业低碳钢(B450NbRE)的研究表明,在其实际使用条件下,冲击韧性出乎意料地低,这可能是由于炼钢中稀土(RE)的回收不稳定造成的。这项工作的目的是研究稀土对低碳钢冲击韧性的影响。通过真空感应炉生产RE含量为0.0012-0.0180重量%的B450NbRE钢。热轧后研究冲击韧性和显微组织。使用Gleeble-1500热仿真器来验证RE对微观结构的影响。结果表明,热轧钢的组织为多边形铁素体,准多边形铁素体,白铁矿和珠光体。当RE含量达到0.0047wt。%RE的峰值时,冲击韧性增加,这种变化表现出与铁素体量相同的规则。但是,冲击韧性的提高不仅是由于铁素体量的增加,而且是由于细晶粒组织和更清洁的晶界。并且0.0180重量%RE的含量过多。稀土元素的这种添加导致马氏体在晶界析出,这对冲击韧性极为不利。

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