RH工艺真空时间对结构厚板力学特性的影响

Ki Hang Shin, Byoung-Chul Choi, K. Nam
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摘要

在Ruhrstahl Heraeus (RH)精炼过程中,在一定的氩气流速和真空度下,通过改变真空时间来制备结构厚板。根据真空时间对结构厚板试样的夹杂物和力学性能进行了评价。转炉内的氮气在RH工艺后产生影响,随着RH工艺真空时间的增加,氮气含量也随之增加。连铸过程中氮含量的下降幅度大于转炉中,且随着真空时间的增加,氢含量也有所下降。在结构厚板中观察到Al2O3·CaO、MnS和Al2O3·MgO夹杂物。氧化物的平均尺寸为(6.1 ~ 33.46)μm, al基夹杂物的平均尺寸为(4.26 ~ 6.3)μm。拉伸强度、屈服强度、伸长率等力学性能均受真空时间的影响,10 min为最佳。显微维氏硬度随真空时间的延长而分散,这可以用威布尔概率分布来解释。从形状和尺度参数上看,RH工艺真空时间为10 min的试样显微维氏硬度分散性较大,但特征值为63.2%时最佳。
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Mechanical Characteristics of Structural Thick Plates Depending on Vacuum Time of RH Process
The structural thick plates were manufactured by varying the vacuum time at a constant argon gas flow rate and degree of vacuum during the Ruhrstahl Heraeus (RH) refining process. The inclusion and mechanical properties of the structural thick-plate specimens were evaluated according to vacuum time. The nitrogen in the converter had an effect after the RH process, and as the vacuum time of the RH process increased, the nitrogen content also increased. The nitrogen in the continuous casting (CC) decreased more than that in the converter, and as the vacuum time increased, the hydrogen decreased. Al2O3·CaO, MnS and Al2O3·MgO inclusions were observed in the structural thick plate. The average size of the oxides was (6.1 to 33.46) μm, while the average size of the Al-O-based inclusions was (4.26 - 6.3) μm. The mechanical properties, such as tensile strength, yield strength, and elongation, were affected by the vacuum time of the RH process with 10 min being the best. The micro-Vickers hardness showed dispersion regardless of the vacuum time of the RH process, which can be explained by the Weibull probability distribution. From the shape and scale parameters, although the specimen with the vacuum time of the RH process of 10 min showed a large dispersion in the micro-Vickers hardness, the characteristic value of 63.2 % was the best.
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