著者
赤間 大地 土山 聡宏 高木 節雄
出版者
一般社団法人 日本鉄鋼協会
雑誌
鉄と鋼 (ISSN:00211575)
巻号頁・発行日
vol.103, no.5, pp.230-235, 2017 (Released:2017-04-30)
参考文献数
21
被引用文献数
8

The dislocation strengthening was estimated by applying the dislocation theory for a Fe-18%Ni alloy which has a lath martensitic structure. The yield stress of highly dislocated metals is dependent on both the friction stress and the dislocation strengthening. Regarding the coefficient of dislocation strengthening, it is governed by the shear modulus of metals. Ni addition plays a role in increasing the friction stress but decreases the shear modulus. This means that the coefficient of dislocation strengthening is smaller in the Fe-18%Ni alloy than pure iron. It was confirmed that the yield stress, which was experimentally obtained in Fe-18%Ni alloy, is reasonably explained by the mechanism of dislocation strengthening, taking the effects of Ni into consideration. On the other hand, in the case of lath martensite with a dislocation density of 2×1015 /m2, it was also found that the effect of Ni addition does not appear on the yield stress because the increment of solid solution strengthening is cancelled out by the decrement of dislocation strengthening.

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1 1 https://t.co/Qn7UhS0dBj
鉄の転位強化に及ぼすNiの影響 https://t.co/9FY7b6tLUQ 面白そうだったので読んでたら最後でちょっとよくわからなくなった。林立転位モデルで短距離の転位間の相互作用で転位強化が起こるなら結晶粒微細化とは独立に強化されてもいいような

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