日本金属学会誌
Online ISSN : 1880-6880
Print ISSN : 0021-4876
ISSN-L : 0021-4876
87 巻, 5 号
選択された号の論文の6件中1~6を表示しています
特集「保磁力の学理における最近の進歩」
論文
  • 山本 亮介, 西本 明生
    原稿種別: 論文
    2023 年 87 巻 5 号 p. 179-185
    発行日: 2023/05/01
    公開日: 2023/04/25
    [早期公開] 公開日: 2023/02/24
    ジャーナル フリー HTML

    Surface hardening treatment is used to have strength to mechanical parts, and carburizing and quenching are the most widely used. There are reports on various carburizing efforts to deal with recent environmental issues. The authors have proposed an ultra rapid carburizing above the eutectic temperature, due to realize in-line carburizing. Since this is an unprecedented carburizing treatment method, setting the carburizing conditions that are suitable for efficiency has been the future challenge.

    In this paper, we investigated a method for predicting the carbon concentration profile in the steel based on the known carburizing reaction mechanism of ultra rapid carburization. In order to predict the carbon concentration profile in the steel, it was calculated by the finite difference method using the carbon penetration rate F, the use of F = 4.04 × 10-11e(1.20 × 10-2T), which penetrates from the surface, and the carbon diffusion in the steel based on Fick’s law. In addition, among various carbon diffusion coefficients Dc, the use of Dc(T,C) = 4.53 × 10-7{1+yc(1-yc)}•e{-(-2.221•10-4)(17767-yc•26436)}, which takes into consideration the dependence of carbon concentration, gave a good agreement with the actual measurement results by EPMA. Furthermore, as a result of investigating efficient carburizing conditions using a prediction method, we could minimize the time required to obtain an effective case depth of 0.8 mm. In addition, the amount of carburizing gas used was also reduced. In other words, it suggests that the accumulation of a huge amount of condition data and the condition setting skills are no longer necessary.

    Fig. 3 Comparison of gas carburizing and ultra rapid carburizing. Fullsize Image
     
  • 秀嶋 保利, 前田 郁也, 福田 忠生, 尾崎 公一
    原稿種別: 論文
    2023 年 87 巻 5 号 p. 186-191
    発行日: 2023/05/01
    公開日: 2023/04/25
    [早期公開] 公開日: 2023/02/10
    ジャーナル フリー HTML

    Magnesium chips were coated with silicon powder using a binder, and thixomolding was attempted using the silicon-coated chips as the raw material. The microstructures of the products exhibited that all the added silicon was precipitated as Mg2Si particles. No voids were observed at the interfaces between the Mg2Si particles and the matrix. The hardness and Young’s modulus of the products increased with the amount of silicon added. The Young’s modulus followed the rule of mixtures.

    Fig. 8 Effect of Si addition on Young’s modulus with the rules of mixtures (Parallel model, Series model and Mori-Tanaka model). Fullsize Image
     
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