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首页> 外文期刊>Metals and Materials International >Effects of Deformation-Induced Martensite and Grain Size on Ductile-to-Brittle Transition Behavior of Austenitic 18Cr-10Mn-N Stainless Steels
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Effects of Deformation-Induced Martensite and Grain Size on Ductile-to-Brittle Transition Behavior of Austenitic 18Cr-10Mn-N Stainless Steels

机译:形变诱发马氏体和晶粒尺寸对奥氏体18Cr-10Mn-N不锈钢延性-脆性转变行为的影响

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Effects of deformation-induced martensite and grain size on ductile-to-brittle transition behavior of austenitic 18Cr-10Mn-(0.3~0.6)N stainless steels with different alloying elements were investigated by means of Charpy impact tests and microstructural analyses. The steels all exhibited ductile-to-brittle transition behavior due to unusual brittle fracture at low temperatures despite having a face-centered cubic structure. The ductile-to-brittle transition temperature (DBTT) obtained from Chapry impact tests did not coincide with that predicted by an empirical equation depending on N content in austenitic Cr-Mn-N stainless steels. Furthermore, a decrease of grain size was not effective in terms of lowering DBTT. Electron back-scattered diffraction and transmission electron microscopy analyses of the cross-sectional area of the fracture surface showed that some austenites with lower stability could be transformed to α'-martensite by localized plastic deformation near the fracture surface. Based on these results, it was suggested that when austenitic 18Cr-10Mn-N stainless steels have limited Ni, Mo, and N content, the deterioration of austenite stability promotes the formation of deformation-induced martensite and thus increases DBTT by substantially decreasing low-temperature toughness.
机译:通过夏比冲击试验和显微组织分析,研究了变形引起的马氏体和晶粒尺寸对不同合金元素的奥氏体18Cr-10Mn-(0.3〜0.6)N不锈钢的韧性-脆性转变行为的影响。尽管具有面心立方结构,但由于在低温下异常的脆性断裂,所有钢都表现出韧性到脆性的转变行为。从Chapry冲击试验获得的韧性到脆性转变温度(DBTT)与根据奥氏体Cr-Mn-N不锈钢中N含量的经验方程式预测的温度不一致。此外,就降低DBTT而言,减小晶粒尺寸是无效的。对断面横截面的电子背散射衍射和透射电镜分析表明,一些较低稳定性的奥氏体可通过在断面附近发生局部塑性变形而转变为α'马氏体。根据这些结果,建议当奥氏体18Cr-10Mn-N不锈钢的Ni,Mo和N含量有限时,奥氏体稳定性的下降会促进形变诱发的马氏体的形成,从而通过显着降低低合金钢的含量来增加DBTT。温度韧性。

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