著者
星野 和夫
出版者
社団法人日本鉄鋼協会
雑誌
鐵と鋼 : 日本鐡鋼協會々誌 (ISSN:00211575)
巻号頁・発行日
vol.69, no.8, pp.998-1005, 1983-06-01
被引用文献数
1 3

The flow stress (σ) of unstable austenitic stainless steels is studied by comparing stable austenitic and martensitic stainless steels. (1) The root of dislocation density (√<ρ>) obtained by X-ray analysis in stable γ-phase increases with strain (ε) and the expression of ε as a function of √<ρ> is parabolic. √<ρ> of γ phase mixed with deformation-induced martensite (α′) increases with the root of α′ phase volume fraction (V_<α′^<1/2>>) in addition to the above relation. (2) σ of unstable steels is intermediate of the values caluculated by "equal stress model" and "equal strain model" and it becomes to take the values estimated by equal strain model with increase of α′-phase. In this case, the higher the strength of α′ phase is and the larger the volume of α′ phase is, the higher is the ununiformity of strain between γ and γ′ phase. In the case that the strength of α′phase is almost the same, the smaller the volume of γ′ phase is, the smaller is the ununiformity of strain between γ and α′phase. (3) σ is affected not only by the volume but also by the strength of α′ phase and inversely plastic flow depresses α′-transformation to inhibit the enhancement of higher σ values due to high strength of α′-phase.

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SUS304は確かに何も加工していない場合には磁性が無いのですけれど ↓の文献にもあるように、加工して強度を出す場合などは特にそうですが、 金属組織がオーステナイトというものから加工誘起マルテンサイトという状態 に常温で容易に変化します。これにより磁性を生じることは当然なのです 更に、何故特にIISB2804の場合には、加工しなければならないかと言えば 製品性格・規格上でどうしてもあ ...

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