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Effect of annealing on microstructure and mechanical properties of an ultrafine-structured Al-containing FeCoCrNiMn high-entropy alloy produced by severe cold rolling

机译:退火对严重冷轧生产超细结构型铝合体高熵合金的微观结构和力学性能的影响

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摘要

Severe cold rolling (SCR) and annealing were applied to a face-centered cubic (FCC) Al_(0.3)FeCoCrNiMn high entropy alloy. The crystal structure, microstructure, and mechanical properties of this SCRed Al-containing HEA were studied systematically. The coarse-grained alloy is substantially refined after SCR resulting in great improvement of the hardness and strength. With Al addition into the FeCoCrNiMn alloy, the thermal stability of this alloy is declined, and the precipitation of σ and B2 phases in the FCC matrix is greatly promoted. The microstructure evolution of the SCRed alloy during annealing can be divided into three stages: the combined precipitation of σ and B2 phases blow 1000 °C; the dissolution of σ phases and only B2 phase precipitates at 1000 °C; recovering to a single FCC phase at 1100 °C. The SCRed alloys annealed at 500-700 °C show a high strength but with a low ductility due to formation of a large number of σ and B2 phases. With increasing annealing temperature, the strength is gradually reduced that is attributed to grain growth of the matrix and dissolution of precipitates. In addition, these precipitates effectively suppress the grain growth of the matrix during annealing. A fully recrystallized and ultrafine-grained alloy with multiphase structure is obtained as the SCRed alloy annealing at 800 °C, which shows the YS, UTS and the elongation to failure of this alloy are 970 MPa, 1080 MPa and 8%, respectively. The high strength of this alloy is attributed to the grain refinement strengthening and precipitation strengthening.
机译:将严重的冷轧(SCR)和退火应用于面为中心的立方(FCC)AL_(0.3)Fecocrimn高熵合金。系统地研究了该含SCRed Al Hea的晶体结构,微观结构和机械性能。在SCR之后,粗粒合金基本上精制,导致硬度和强度的改善。通过Al加入Fecocrimn合金,该合金的热稳定性被下降,并且大大促进了FCC基质中σ和B2阶段的沉淀。退火期间SCRED合金的微观结构演化可分为三个阶段:σ和B2相的组合沉淀吹1000°C; σ相的溶解和仅B2相沉淀在1000℃下;在1100°C下恢复到单个FCC阶段。在500-700℃下退火的SCRed合金显示出高强度,但由于形成大量σ和B2阶段,具有低延展性。随着退火温度的增加,强度逐渐降低,归因于基质的晶粒生长和沉淀物的溶解。此外,这些沉淀物在退火期间有效地抑制基质的晶粒生长。获得具有多相结构的全重结晶和超细颗粒合金,作为800℃的SCRed合金退火,其显示该合金的Ys,UTS和伸长率为970MPa,1080MPa和8%。这种合金的高强度归因于晶粒细化强化和沉淀强化。

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  • 来源
    《Materials Science and Engineering》 |2020年第1期|139446.1-139446.11|共11页
  • 作者单位

    School of Materials Science and Engineering Shanghai Jiao Tong University 800 Dongchuan Road Shanghai 200240 PR China Collaborative Innovation Center for Advanced Ship and Deep-Sea Exploration (CISSE) Shanghai 200240 PR China Shanghai Key Laboratory of High Temperature Materials and Precision Forming Shanghai Jiao Tong University Shanghai 200240 PR China;

    School of Materials Science and Engineering Shanghai Jiao Tong University 800 Dongchuan Road Shanghai 200240 PR China Collaborative Innovation Center for Advanced Ship and Deep-Sea Exploration (CISSE) Shanghai 200240 PR China Shanghai Key Laboratory of High Temperature Materials and Precision Forming Shanghai Jiao Tong University Shanghai 200240 PR China;

    School of Materials Science and Engineering Shanghai Jiao Tong University 800 Dongchuan Road Shanghai 200240 PR China Collaborative Innovation Center for Advanced Ship and Deep-Sea Exploration (CISSE) Shanghai 200240 PR China Shanghai Key Laboratory of High Temperature Materials and Precision Forming Shanghai Jiao Tong University Shanghai 200240 PR China;

    School of Materials Science and Engineering Shanghai Jiao Tong University 800 Dongchuan Road Shanghai 200240 PR China Collaborative Innovation Center for Advanced Ship and Deep-Sea Exploration (CISSE) Shanghai 200240 PR China Shanghai Key Laboratory of High Temperature Materials and Precision Forming Shanghai Jiao Tong University Shanghai 200240 PR China;

    School of Materials Science and Engineering Shanghai Jiao Tong University 800 Dongchuan Road Shanghai 200240 PR China Collaborative Innovation Center for Advanced Ship and Deep-Sea Exploration (CISSE) Shanghai 200240 PR China Shanghai Key Laboratory of High Temperature Materials and Precision Forming Shanghai Jiao Tong University Shanghai 200240 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    High entropy alloy; Ultrafine-grained materials; Severe plastic deformation; Cold-rolling; Annealing; Precipitation;

    机译:高熵合金;超细颗粒材料;严重的塑性变形;冷轧;退火;沉淀;

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