日本金属学会誌
Online ISSN : 1880-6880
Print ISSN : 0021-4876
ISSN-L : 0021-4876
論文
高炭素高速度鋼系合金の組織および硬さに及ぼす窒素の影響
原 隆太郎山本 昌宏伊東 彦上宮田 和則成田 一人宮原 広郁
著者情報
ジャーナル フリー

2015 年 79 巻 4 号 p. 169-175

詳細
抄録

  Influence of nitrogen addition as one of the alloying element on the formation of solidification structure and the improvement of hardness after thermal treatments was investigated for high-speed steel type alloys (Fe-1.7~2.3%C-5%Cr-5%Mo-5%V). Nitrogen content was successively varied from 48 ppm to 1542 ppm by the mixing of Cr2N into the molten alloy. Analysis of diffraction pattern reveals the formation of M2CN carbonitride at N-containing specimen, whereas the eutectic MC carbides containing mainly V solidifies at N-free specimen. The macrohardness of the quenched specimens gradually increases with increasing quenching temperature. Nitrogen addition helps to improve the hardness as carbon does. Macrohardness of the quenched specimen depends on both the amount and hardness of martensite matrix. The specimen, which contains high volume fraction of retained austenite, shows the superior secondary hardening after the optimized twice tempering. Furthermore, the hardening of specimens is enhanced by nitrogen addition. The precipitation of nano-size carbonitride is observed around primary micro-size carbonitride, which indicated that M2CN carbonitride diffuses nitrogen, causes carbonitride precipitation, and finally develops macrohardness at N-containing specimen.

著者関連情報
© 2015 (公社)日本金属学会
前の記事 次の記事
feedback
Top