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首页> 外文期刊>Scientific reports. >Influence of the Nitrogen Content on the Carbide Transformation of AISI M42 High-Speed Steels during Annealing
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Influence of the Nitrogen Content on the Carbide Transformation of AISI M42 High-Speed Steels during Annealing

机译:氮含量对退火期间AISI M42高速钢碳化物转化的影响

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Attempts were made to elucidate the effect of nitrogen on primary eutectic carbides in as-cast and annealed AISI M42 high-speed steel. Particular emphasis was placed on the transformation of carbides during forging and annealing in steels with different nitrogen concentrations and the influence of final carbides on the impact toughness of the steel. Microstructural observation, electrolytic extraction method, X-ray diffraction analysis, automated inclusion analysis (INCASteel), and impact toughness measurement combined with fractographic observation were conducted on the specimens. Primary M2C carbides were found to be dominant precipitates in the as-cast ingot, with a certain amount of V(C,N). Nitrogen addition promoted the formation of fibrous M2C, whereas lamellar M2C predominated in M42 steel with a low nitrogen concentration (w[N]%?=?0.006). Fibrous carbides M2C tend to decompose into more stable carbides M6C and MC during forging and annealing compared to lamellar M2C. Nitrogen alloying only affected the morphologies and dimensions of carbides, but did not change the types of carbides. These improvements in the dimensions and fractions of carbides naturally increased the impact toughness of annealed steel. Hence, it was suggested that the addition of nitrogen to AISI M42 high-speed steel was required to achieve homogeneous distribution of carbides and sufficient impact toughness.
机译:试图阐明施用氮气施用氮气对铸造和退火的AISI M42高速钢的影响。特别强调在具有不同氮浓度的钢锻造和退火过程中碳化物的转化,以及最终碳化物对钢的冲击韧性的影响。微观观察,电解提取方法,X射线衍射分析,自动化分析(ICKETEAL)在标本下进行了与法式分类的影响。发现初级M2C碳化物在铸造锭中占优势沉淀物,具有一定量的V(C,N)。氮添加促进纤维M2C的形成,而LAMELLAR M2C以低氮浓度为主的M42钢(W [N]%?= 0.006)。与层状M2C相比,纤维状碳化物M2C倾向于在锻造和退火期间分解成更稳定的碳化物M6C和MC。氮合金化只影响了碳化物的形态和尺寸,但没有改变碳化物的类型。这些碳化物尺寸和级分的这些改进自然增加了退火钢的冲击韧性。因此,建议需要向AISI M42高速钢添加氮以实现碳化物的均匀分布和足够的冲击韧性。

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