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Evolution of inclusions and change of as-cast microstructure with Mg addition in high carbon and high chromium die steel

机译:高碳和高铬模具钢中施加镁加入夹杂物夹杂物的演变及变化

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摘要

The effects of Mg on the inclusions and the as-cast microstructure of high carbon and high chromium die steel, a grade of cold working die steel with high C content of 1.4-1.6% and high Cr content of 11.0-13.0%, were systematically investigated. It is found that inclusions vary with the route as Al2O3 (NoMg) to MgO center dot Al2O3+ Al2O3(5 ppm Mg), and then to MgO + MgO Al2O3 (11 and 15 ppm Mg). The average diameter of the inclusions decreased from 1.91 mu m ( no Mg) to 1.29 mu m ( 15 ppm Mg), while the number density increased from 2.69 x 10(4) mm(-3) (noMg) to similar to 5.62 x 10(4) mm(-3) (15 ppm Mg). The changes in the size and the number density were discussed in terms of the effect of inclusions on the nucleation process and the wettability of them with steel melt. The as-cast microstructures were greatly refined with Mg addition that correlated with the evenly dispersed fine Mg containing inclusions.
机译:MG对高碳和高铬模具钢的夹杂物和铸造微观结构的影响,具有高C含量为1.4-1.6%,高Cr含量为11.0-13.0%的冷加工模具钢等级 调查。 发现夹杂物随着Al 2 O 3(NOMG)的途径而变化,对MgO中心点Al 2 O 3 + Al 2 O 3(5ppm Mg),然后与MgO + MgO Al2O3(11和15ppm Mg)相同。 夹杂物的平均直径从1.91μm(no mg)降低至1.29 mu m(15ppm mg),而数量密度从2.69×10(4)mm(-3)增加到类似于5.62 x 10(4)mm(-3)(15 ppm mg)。 在夹杂物对成核过程中的影响和钢熔体的润湿性方面讨论了尺寸和数量密度的变化。 用Mg加法大大改装了铸造的微观结构,其与含均匀分散的细mg含有夹杂物相关。

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