High-Throughput Nanoindentation Mapping of a Microsegregated CoCrFeNi Multi-Principal Element Alloy (MPEA): Challenges and Limitations

被引:3
|
作者
Gualtieri, Magdalena Lassinantti [1 ]
Colombini, Elena [1 ]
Testa, Veronica [1 ]
Bolelli, Giovanni [1 ]
Giovanardi, Roberto [1 ]
Veronesi, Paolo [1 ]
机构
[1] Univ Modena & Reggio Emilia, Dept Engn Enzo Ferrari, Via P Vivarelli 10-1, I-41125 Modena, Italy
关键词
high entropy alloy; indentation size effect; multi-principal element alloy; nanoindentation; plastic deformation; HIGH ENTROPY ALLOYS; MECHANICAL-PROPERTIES; METALLIC MATERIALS; SIZE; MICROSTRUCTURE; HARDNESS; RESISTANCE; STRENGTH;
D O I
10.1002/adem.202300110
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Equimolar CoCrFeNi is a popular multi-principal element alloy, generally obtained by melt-aided routes. The dendritic microstructure of as-cast alloys is cooling-rate dependent and thus may show different macromechanical behaviors. Knowledge about the nanomechanics of chemically/structurally distinct zones is important for explaining these differences and facilitating material's design through processing conditions. To this aim, high-throughput nanoindentation mapping is a potentially powerful tool. However, results are possibly biased by the indentation size effect (ISE) and plastically deformed surfaces induced by inadequate sample preparation. This work is aimed at giving some guidelines for map acquisition and sample preparation based on data from various nanoindentation techniques (i.e., high-throughput nanoindentation, continuous stiffness, and quasi-static measurements) collected on differently polished surfaces. It is shown that conventional metallographic preparation leads to a plastically deformed layer that penetrates deep into the surface (11-17 & mu;m). Electropolishing is efficient in removing this layer. However, difficulties may arise due to preferential corrosion in a multiphase system wherefore polishing conditions needs optimization. Nanoindentations of adequately prepared surfaces of CoCrFeNi result in an important ISE, which affects measurements at depths lower than ca 2000 nm. This must be taken into account when performing high-throughput nanoindentation mapping of this material.
引用
收藏
页数:8
相关论文
共 50 条
  • [31] High-Performance Microwave-Derived Multi-Principal Element Alloy Coatings for Tribological Application
    Nair, Rakesh Bhaskaran
    Arora, Harpreet Singh
    Mandal, Priya
    Das, Santanu
    Grewal, Harpreet Singh
    ADVANCED ENGINEERING MATERIALS, 2018, 20 (09)
  • [32] Efficient production of a high-performance dispersion strengthened, multi-principal element alloy
    Smith, T. M.
    Thompson, A. C.
    Gabb, T. P.
    Bowman, C. L.
    Kantzos, C. A.
    SCIENTIFIC REPORTS, 2020, 10 (01)
  • [33] A Hall–Petch study of the high toughness Cr40Co30Ni30 multi-principal element alloy
    Fernanda Cunha Puosso
    Gustavo Bertoli
    Francisco Gil Coury
    Journal of Materials Research, 2023, 38 : 215 - 227
  • [34] Hierarchical multiphase microstructure in additively manufactured (CoCrNi)83Al17 multi-principal element alloy with high strength
    Zheng, Mengyao
    Li, Chuanwei
    Liao, Yu
    Long, Zhong
    Gu, Jianfeng
    SCRIPTA MATERIALIA, 2025, 263
  • [35] High-throughput aqueous passivation behavior of thin-film vs. bulk multi-principal element alloys in sulfuric acid
    Blades, William H.
    Sur, Debashish
    Joress, Howie
    DeCost, Brian
    Holcombe, Emily F.
    Redemann, Ben
    McQueen, Tyrel M.
    Berlia, Rohit
    Rajagopalan, Jagannathan
    Taheri, Mitra L.
    Scully, John R.
    Sieradzki, Karl
    CORROSION SCIENCE, 2024, 236
  • [36] The Study about Microstructure Characterization of AlCoCrTiNiCu_x High Entropy Alloy System with Multi-principal element
    Wang, Chunwei
    Mo, Zhuoqiang
    Tang, Jianjiang
    NEW MATERIALS, APPLICATIONS AND PROCESSES, PTS 1-3, 2012, 399-401 : 3 - 7
  • [37] Formation mechanism of AlNbTiVZr high entropy alloy/Ti multi-principal element alloy by laser direct energy deposition: Microstructure evaluation and mechanical properties
    Zhang, Yumeng
    Zhao, Yiqing
    Sun, Longxiang
    Wang, Leilei
    Li, Linqin
    Zhan, Xiaohong
    JOURNAL OF ALLOYS AND COMPOUNDS, 2024, 997
  • [38] A Hall-Petch study of the high toughness Cr40Co30Ni30 multi-principal element alloy
    Puosso, Fernanda Cunha
    Bertoli, Gustavo
    Coury, Francisco Gil
    JOURNAL OF MATERIALS RESEARCH, 2023, 38 (01) : 215 - 227
  • [39] Effect of Si on the evolution of plasticity mechanisms, grain refinement and hardness during high-pressure torsion of a non-equiatomic CoCrMnNi multi-principal element alloy
    Kishore, Kaushal
    Chandan, Avanish Kumar
    Hung, Pham Tran
    Kumar, Saurabh
    Ranjan, Manish
    Kawasaki, Megumi
    Gubicza, Jeno
    INTERNATIONAL JOURNAL OF PLASTICITY, 2023, 169
  • [40] High-Throughput Preparation and Mechanical Property Screening of Zr-Ti-Nb-Ta Multi-Principal Element Alloys via Multi-Target Sputtering
    Qiu, Haochen
    Yan, Xuehui
    Wu, Shuaishuai
    Jiang, Wei
    Zhu, Baohong
    Guo, Shengli
    COATINGS, 2023, 13 (09)