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Effect of Grain Refinement on Mechanical Properties in 25Cr-1N Austenitic Steel

机译:晶粒细化对25Cr-1N奥氏体钢中力学性能的影响

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The Fe-25Cr-1N alloy produced by solution nitriding possesses extremely high yield strength owing to the solid solution strengthening by nitrogen. However, it was found that the steel exhibited an insufficient elongation because of the brittle intergranular fracture caused during the uniform tensile deformation. This is due to the marked stress concentration at grain boundaries, which is derived from the grain coarsening caused during long time solution nitriding and the development of planar dislocation structure characteristic of high nitrogen austenitic steels. The most effective way to reduce the stress concentration at grain boundary during deformation should be grain refinement. In this study, grain refinement was attempted by the two-step heat treatment for the Fe-25Cr-1N(-Mn) alloy, and then the mechanical properties were investigated by means of tensile tests and fatigue tests. The two-step heat treatment resulted in the grain refinement of austenite to 20 microns in diameter. The intergranular fracture was greatly suppressed from 70% (as-solution-nitrided) to 10% (grain-refined) in area fraction by the grain refinement. In addition, elongation was markedly increased with local necking. The yield stress and tensile strength were also increased, and thus, the fatigue limit is also raised by more than 30%.
机译:由于氮气强化,通过溶液产生的Fe-25Cr-1N合金具有极高的屈服强度,其具有极高的屈服强度。然而,发现钢的伸长率不足,因为在均匀的拉伸变形期间引起的脆性骨折骨折。这是由于晶界的显着应力浓度,这源自在长时间溶液期间引起的晶粒粗化和高氮奥氏体钢的平面脱位结构的发展。在变形期间降低晶界压力浓度的最有效方法应该是晶粒细化。在该研究中,通过对Fe-25cr-1N(-mn)合金的两步热处理来试图晶粒细化,然后通过拉伸试验和疲劳试验研究机械性能。两步热处理导致奥氏体的晶粒细化至直径为20微米。通过晶粒细化将晶间骨折从70%(溶液氮化)从70%(溶液氮化)抑制到10%(晶粒化)。此外,用局部颈缩显着增加伸长率。屈服应力和拉伸强度也增加,因此,疲劳极限也升高超过30%。

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