CALPHAD integrated grain boundary co-segregation design: Towards safe high-entropy alloys

被引:14
|
作者
Wang, Lei [1 ]
Kamachali, Reza Darvishi [1 ]
机构
[1] BAM Fed Inst Mat Res & Testing, Unter Eichen 87, D-12205 Berlin, Germany
关键词
High -entropy alloys; Grain boundary segregation; Segregation engineering; Alloys safety; PHASE-FIELD; FREE-ENERGY; DIFFUSION; TRANSFORMATION; MODEL;
D O I
10.1016/j.jallcom.2022.167717
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Along with the desire for developing novel multi-principal element alloys, also known as high-entropy alloys, the concern about their safe application is also increasingly growing. This relates to the alloys' phase stability, in particular, the control required over unexpected phase decompositions resulting from solute segregation at grain boundaries. Yet, the mechanisms of co-segregation and grain boundary phase decomposition in multi-component alloys are rather challenging to explore. In fact, quantitative investigation of grain boundary behaviors is mostly conducted for binary and a few ternary alloys. In this work, we apply the recently introduced CALPHAD-integrated density-based formalism [RSC Advances 10 (2020) 2672826741] for considering co-segregation phenomena in alloys with an arbitrary number of components -the term 'co-segregation' here refers to co-evolution and any mutual interplay among the solute atoms during their interaction with a grain boundary. Quaternary Fe-Co-Mn-Cr alloy system is studied. We present two major advances beyond previous results: First, a co-segregation-induced multi-component grain boundary spinodal decomposition is quantitatively simulated for the first time. We found that in addition to its low cohesive energy and asymmetrical mixing enthalpy due to magnetic ordering, Mn plays a leading role in triggering interfacial phase decomposition by having a relatively large, concentration-dependent atomic mobility. Second, as an alternative to grain boundary phase diagrams proposed for binary and ternary alloys, we introduce the concept of co-segregation maps for grain boundary segregation screening and design in multi-component alloys. Applying the co-segregation maps, the nonlinear Mn and Cr co-segregation are discussed. Depicted on the alloying composition and phase space, the co-segregation maps enable the required insights to guide a safer, more controlled design of high-entropy alloys. (c) 2022 Elsevier B.V. All rights reserved.
引用
收藏
页数:12
相关论文
共 50 条
  • [41] Solute segregation effect on grain boundary migration and Hall-Petch relationship in CrMnFeCoNi high-entropy alloy
    Liu, G.
    Lu, D. H.
    Liu, X. W.
    Liu, F. C.
    Yang, Q.
    Du, H.
    Hu, Q.
    Fan, Z. T.
    MATERIALS SCIENCE AND TECHNOLOGY, 2019, 35 (04) : 500 - 508
  • [42] Reducing hot tearing by grain boundary segregation engineering in additive manufacturing: example of an AlxCoCrFeNi high-entropy alloy
    Sun, Zhongji
    Tan, Xipeng
    Wang, Chengcheng
    Descoins, Marion
    Mangelinck, Dominique
    Tor, Shu Beng
    Jaegle, Eric A.
    Zaefferer, Stefan
    Raabe, Dierk
    ACTA MATERIALIA, 2021, 204
  • [43] Synergic grain boundary segregation and precipitation in W- and W-Mo-containing high-entropy borides
    Wang, Chunyang
    Qin, Mingde
    Lei, Tianjiao
    He, Yubin
    Kisslinger, Kim
    Rupert, Timothy J.
    Luo, Jian
    Xin, Huolin L.
    JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2021, 41 (10) : 5380 - 5387
  • [44] Corrosion of Al(Co)CrFeNi High-Entropy Alloys
    Godlewska, Elzbieta M.
    Mitoraj-Krolikowska, Marzena
    Czerski, Jakub
    Jawanska, Monika
    Gein, Sergej
    Hecht, Ulrike
    FRONTIERS IN MATERIALS, 2020, 7 (07)
  • [45] Defeating hydrogen-induced grain-boundary embrittlement via triggering unusual interfacial segregation in FeCrCoNi-type high-entropy alloys
    Li, Q.
    Mo, J.W.
    Ma, S.H.
    Duan, F.H.
    Zhao, Y.L.
    Liu, S.F.
    Liu, W.H.
    Zhao, S.J.
    Liu, C.T.
    Liaw, P.K.
    Yang, T.
    Acta Materialia, 2022, 241
  • [46] Defeating hydrogen-induced grain-boundary embrittlement via triggering unusual interfacial segregation in FeCrCoNi-type high-entropy alloys
    Li, Q.
    Mo, J. W.
    Ma, S. H.
    Duan, F. H.
    Zhao, Y. L.
    Liu, S. F.
    Liu, W. H.
    Zhao, S. J.
    Liu, C. T.
    Liaw, P. K.
    Yang, T.
    ACTA MATERIALIA, 2022, 241
  • [47] Alloy Design for High-Entropy Bulk Glassy Alloys
    Takeuchi, A.
    Chen, N.
    Wada, T.
    Zhang, W.
    Yokoyama, Y.
    Inoue, A.
    Yeh, J. -W.
    IUMRS INTERNATIONAL CONFERENCE IN ASIA 2011, 2012, 36 : 226 - 234
  • [48] Three Strategies for the Design of Advanced High-Entropy Alloys
    Tsai, Ming-Hung
    ENTROPY, 2016, 18 (07)
  • [49] Alloy Design and Properties Optimization of High-Entropy Alloys
    Zhang, Y.
    Yang, X.
    Liaw, P. K.
    JOM, 2012, 64 (07) : 830 - 838
  • [50] Design of ternary high-entropy aluminum alloys (HEAls)
    Asadikiya, Mohammad
    Zhang, Yifan
    Wang, Libo
    Apelian, Diran
    Zhong, Yu
    JOURNAL OF ALLOYS AND COMPOUNDS, 2022, 891