Tailoring mechanical heterogeneity, nanoscale creep deformation and optical properties of nanostructured Zr-based metallic glass

被引:8
|
作者
Cui, Jing-Xian [1 ]
Luo, Qiang [1 ]
Zhang, Zheng-Guo [1 ]
Zhu, Jing-Tao [2 ]
Shen, Bao-Long [1 ]
机构
[1] Southeast Univ, Sch Mat Sci & Engn, Jiangsu Key Lab Adv Met Mat, Nanjing 211189, Peoples R China
[2] Tongji Univ, Sch Phys Sci & Engn, Shanghai 200092, Peoples R China
基金
中国国家自然科学基金;
关键词
Metallic glass thin films (MGTFs); Cryogenic thermal cycling (CTC); Structural heterogeneity; Mechanical and creep properties; Optical characteristics; THERMAL-STABILITY; REJUVENATION; TEMPERATURE; NANOGLASSES; RELAXATION; BEHAVIOR; FILMS;
D O I
10.1007/s12598-023-02440-8
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Metallic glasses are spatially heterogeneous at the nanometer scale. However, the effects of external excitation on their structural and mechanical heterogeneity and the correlation to their properties are still unresolved. Nanoindentation, atomic force microscopy (AFM) and high-resolution transmission electron microscopy (HRTEM) were carried out to explore the effects of cryogenic thermal cycling (CTC) on mechanical/structural heterogeneity, nanoscale creep deformation and optical properties of nanostructured metallic glass thin films (MGTFs). The results indicate that CTC treatment alters the distribution fluctuations of hardness/modulus and energy dissipation and results in an increase-then-decrease variation in mechanical heterogeneity. By applying Maxwell-Voigt model, it can be shown that CTC treatment results in a remarkable activation of more defects with longer relaxation time in soft regions but has only a slight effect on defects in hard regions. In addition, CTC treatment increases the transition time from primary-state stage to steady-state stage during creep deformation. The enhanced optical reflectivity of the MGTFs after 15 thermal cycles can be attributed to increased aggregation of Cu and Ni elements. The results of this study shed new light on understanding mechanical/structural heterogeneity and its influence on nanoscale creep deformation and optical characteristics of nanostructured MGTFs, and facilitate the design of high-performance nanostructured MGTFs. (sic)(sic)(sic)璃(sic)(sic)(sic)(sic)尺(sic)(sic)(sic) (sic)均匀(sic). (sic)(sic)(sic)(sic)(sic)(sic)(sic), (sic)(sic)(sic)璃(sic)(sic)(sic)/(sic)(sic)(sic). 均匀(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic). (sic)(sic)(sic) (sic)(sic)(sic)压痕(sic)(sic), (sic)offspring(sic)(sic)微镜(sic)(sic)(sic)辨(sic)射(sic)镜(sic) (sic)(sic)(sic)?(sic)(sic)(sic)(sic)温热(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)璃薄膜 (sic)(sic)/(sic)(sic)(sic)均匀(sic), (sic)(sic)蠕(sic)(sic)(sic)(sic)<SIC>(sic)(sic)(sic)(sic)(sic)(sic). (sic)(sic)(sic)(sic)(sic)温热(sic)(sic)(sic)(sic)(sic)硬(sic), (sic)(sic), (sic)(sic)耗<SIC>(sic) (sic)(sic)趋<SIC>, (sic)(sic)(sic)均匀(sic)(sic)(sic)(sic)(sic)(sic), (sic)(sic)Maxwell-Voigt (sic)(sic). (sic)温热(sic)(sic)(sic)(sic)(sic)(sic)软(sic)(sic)弛豫(sic)(sic)(sic)(sic) 陷. (sic)硬(sic)(sic)陷(sic)(sic)(sic)(sic); 瞬(sic)蠕(sic)(sic)(sic)(sic)蠕(sic)(sic)(sic) (sic)(sic)(sic)(sic)(sic). (sic)(sic)Cu (sic)Ni (sic)(sic)(sic)(sic)(sic), 15 (sic)(sic)温热 (sic)(sic)(sic)(sic)(sic)(sic)(sic)射(sic)(sic)(sic). (sic)<SIC>(sic)(sic)(sic)(sic)(sic)(sic)璃(sic)(sic)/ (sic)(sic)(sic)均匀(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)蠕(sic)(sic)(sic)(sic)<SIC>(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic), (sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic) 璃薄膜(sic)材(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic).
引用
收藏
页码:3430 / 3442
页数:13
相关论文
共 50 条
  • [41] Effect of structural relaxation on deformation behaviour of Zr-based metallic glass
    Liu Yuan
    Zhang Tai-Hua
    Wei Bing-Chen
    Xing Dong-Mei
    Li Wei-Huo
    Zhang Ling-Chen
    CHINESE PHYSICS LETTERS, 2006, 23 (07) : 1868 - 1871
  • [42] Effect of crystallization on the deformation behavior of a Zr-based bulk metallic glass
    Lendvai, Janos
    Gubicza, Jeno
    Labar, Janos L.
    Kuli, Zoltan
    INTERNATIONAL JOURNAL OF MATERIALS RESEARCH, 2009, 100 (03) : 439 - 442
  • [43] Reliability of the plastic deformation behavior of a Zr-based bulk metallic glass
    Fan, J. J.
    Yan, Y. F.
    Chen, S. H.
    Ng, Chi-Ho
    Wu, F. F.
    Chan, K. C.
    INTERMETALLICS, 2016, 74 : 25 - 30
  • [44] Interpretation of viscous deformation of Zr-based bulk metallic glass alloys based on Nabarro-Herring creep model
    Young-Sang Na
    Jong-Hoon Lee
    Metals and Materials International, 2006, 12 : 115 - 120
  • [45] Effect of the metallic glass volume fraction on the mechanical properties of Zr-based metallic glass reinforced with porous W composite
    Zhang, X. Q.
    Wang, L.
    Xue, Y. F.
    Cheng, X. W.
    Wang, Y. D.
    Nie, Z. H.
    Zhang, H. F.
    Fu, H. M.
    Ma, L. L.
    Ren, Y.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2013, 561 : 152 - 158
  • [46] Interpretation of viscous deformation of Zr-based bulk metallic glass alloys based on Nabarro-Herring creep model
    Na, YS
    Lee, JH
    METALS AND MATERIALS INTERNATIONAL, 2006, 12 (02) : 115 - 120
  • [47] Hierarchical micro-nanostructured Zr-based metallic glass with tensile plasticity
    Wang, Dongpeng
    Du, Mengwei
    Lin, Yingchun
    Dong, Zhenzhen
    Zhang, Hongti
    Wu, Yicheng
    Li, Xin
    Wang, Yuxin
    Liu, Chain Tsuan
    ACTA MATERIALIA, 2025, 283
  • [48] Tensile Creep Characterization and Prediction of Zr-Based Metallic Glass at High Temperatures
    Wang, Gang
    Pan, Daoyuan
    Shi, Xinying
    Huttula, Marko
    Cao, Wei
    Huang, Yongjiang
    METALS, 2018, 8 (06)
  • [49] Nanoscale creep behavior and its size dependency of a Zr-based bulk metallic glass manufactured by selective laser melting
    Liu, Siqi
    Chang, Zexin
    Fu, Yuequn
    Liu, Yuyu
    Lin, Meichao
    Ren, Xiaobo
    Wang, Wenxian
    Zhang, Zhiliang
    He, Jianying
    MATERIALS & DESIGN, 2022, 218
  • [50] Glass forming properties of Zr-based bulk metallic alloys
    Zhang, Y
    Zhao, DQ
    Pan, MX
    Wang, WH
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2003, 315 (1-2) : 206 - 210