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Twinning-assisted ductile-to-brittle transition in single crystals of Fe-Mn-Al-C austenitic steels with different stacking fault energy

机译:具有不同堆垛层错能的Fe-Mn-Al-C奥氏体钢单晶中孪生辅助的韧性到脆性转变

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The paper is devoted to experimental investigation of ductile-to-brittle transition (DBT) and fracture peculiarities in austenitic high-carbon Fe-Mn-Al-C steels with different stacking fault energy. The DBT in Fe-13Mn-1.3C (Hadfield steel, Ⅰ), and Fe-13Mn-2.7Al-1.3C (Ⅱ) and Fe-28Mn-2.7Al-1.3C (Ⅲ) (wt. %) single crystals oriented along [001], [011], and [111] directions was investigated under tension. The tensile specimens were solution-treated at 1373 K for 1 hour and then water-quenched. Tensile tests were conducted in the temperature interval of 77 - 673 K at a strain rate of 4×10~(-4) s~(-1). For fracture and structural analysis, a scanning electron microscope and a transmission electron microscopy were utilized. In the present study single crystals were employed to exclude the contributions of the grain boundaries to work hardening and fracture. Moreover, the choice of specimens with the different tensile axes allowed to study fracture peculiarities under conditions where mechanical twinning dominates or suppressed, and also to change the number of twinning systems, which in turn provides information on the influence of multiplicity of shear on the fracture mechanism.
机译:本文致力于不同堆垛层错能的奥氏体高碳Fe-Mn-Al-C钢的延性-脆性转变(DBT)和断裂特性的实验研究。 Fe-13Mn-1.3C(Hadfield钢,Ⅰ)和Fe-13Mn-2.7Al-1.3C(Ⅱ)和Fe-28Mn-2.7Al-1.3C(Ⅲ)(重量%)单晶取向的DBT在张力下沿[001],[011]和[111]方向进行了研究。将拉伸样品在1373 K下固溶处理1小时,然后进行水淬。在77-673 K的温度区间内以4×10〜(-4)s〜(-1)的应变速率进行拉伸测试。为了进行断裂和结构分析,使用了扫描电子显微镜和透射电子显微镜。在本研究中,采用单晶来排除晶界对加工硬化和断裂的影响。此外,选择具有不同拉伸轴的标本可以研究在机械孪晶占主导或受压的条件下的断裂特性,并且还可以改变孪生系统的数量,从而提供有关剪切多样性对断裂的影响的信息。机制。

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