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Grain boundary segregation of minor arsenic and nitrogen at elevated temperatures in a microalloyed steel

机译:微合金钢升高温度下轻砷和氮的晶界偏析

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Auger electron spectroscopy (AES) was used to investigate the grain boundary segregation of arsenic and nitrogen in a kind of microalloyed steel produced by a compact strip production (CSP) technology at 950 to 1100°C, which are similar to the hot working temperature of the steel on a CSP production line. It was discovered that arsenic segregated on grain boundaries when the steel was annealed at 950°C for 2 h. When the annealing temperature increased to 1100cC, arsenic was also found to have segregated on grain boundaries in the early annealing stage, for instance, within the first 5 min annealing time. However, if the holding time of the steel at this temperature increased to 2 h, arsenic diffused away from grain boundaries into the matrix again. Nitrogen was not found to have segregated on grain boundaries when the steel was annealed at a relatively low temperature, such as 950°C. But when the annealing temperature increased to 1100°C, nitrogen was detected to have segregated at grain boundaries in the steel.
机译:螺旋钻电子光谱(AES)用于研究通过紧凑型剥离生产(CSP)技术在950至1100°C中生产的微合金化钢中砷和氮的晶界分离,其类似于热工作温度CSP生产线上的钢。发现当钢在950℃下退火2小时时,砷在晶界上隔离。当退火温度增加到1100cc时,还发现砷在早期退火阶段的晶界上被隔离,例如,在前5分钟内退火时间内。然而,如果在该温度下钢的保持时间增加到2小时,则再次扩散到晶界中的砷。当钢在相对低的温度下退火时,未发现氮在晶界上被隔离,例如950℃。但是,当退火温度升至1100℃时,检测氮气在钢中的晶界中被隔离。

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