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首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Effect of grain size and boron on resistance to secondary working embrittlement of high-purity ferritic stainless cold-rolled steel sheet
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Effect of grain size and boron on resistance to secondary working embrittlement of high-purity ferritic stainless cold-rolled steel sheet

机译:晶粒度和硼对高纯铁素体不锈钢冷轧钢板抗二次加工脆性的影响

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摘要

The effect of grain size and boron on the resistance to the secondary working embrittlement of high-purity ferritic stainless cold-rolled steel sheet is investigated and analyzed. The mechanism for improving the resistance to the secondary working embrittlement by adding boron to high-purity ferritic stainless steel sheet is studied from the standpoint of the behavior of the segregated boron. The results obtained are as follows.(1) The secondary working embrittlement in Ti stabilized low C, ~ ferritic stainless steel sheet occures by the interganular fracture.(2) Refining the grain size improves the resistance to the embrittlement, but it remarkably deteriorates the deep drawing property.(3) Adding boron improves the resistance to the embrittlemnt, with ensuring the deep drawing property.(4) The morphology of fracture in the secondary working embrittlement changes from the intergranular fracture to the cleavage fracture by adding boron.(5) It is considered that the improvement of the resistance to the working embrittlement is due to strengthening the grain boundary by the segregated boron to the grain boundary instead of carbon. This agrees with the results obtained in theinterstitial-atom free steel sheets.
机译:研究和分析了晶粒度和硼对高纯铁素体不锈钢冷轧钢板抗二次加工脆性的影响。从偏析硼的行为的观点出发,研究了通过向高纯度铁素体系不锈钢板中添加硼来提高耐二次加工脆性的机理。得出的结果如下:(1)Ti稳定的低碳铁素体不锈钢薄板的二次加工脆化是由于晶界断裂而引起的。(2)细化晶粒尺寸可提高抗脆性,但会显着降低合金的脆性。 (3)添加硼提高了对脆性的抵抗力,同时确保了深拉伸性能。(4)二次加工脆化后的断裂形态从晶间断裂到断裂断裂,通过添加硼来实现。(5) )认为对工作脆性的抵抗性的提高是由于通过偏析硼而不是碳与晶界的偏析来强化晶界。这与在无间隙原子的钢板中获得的结果一致。

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