Micropillar compression testing of powders

被引:0
|
作者
Emily L. Huskins
Zachary C. Cordero
Christopher A. Schuh
Brian E. Schuster
机构
[1] Army Research Laboratory,Oak Ridge Institute for Science and Education Postdoctoral Fellowship Program
[2] MIT,Department of Materials Science and Engineering
[3] Army Research Laboratory,RDRL
[4] United States Naval Academy,WML
来源
关键词
Engineering Stress; Amorphous Metal; Flat Punch; Pillar Diameter; Individual Powder Particle;
D O I
暂无
中图分类号
学科分类号
摘要
An experimental design for microcompression on individual powder particles is proposed as a means of testing novel materials without the challenges associated with consolidation to produce bulk specimens. This framework is demonstrated on an amorphous tungsten alloy powder, and yields reproducible measurements of the yield strength (4.5 ± 0.3 GPa) and observations of the deformation mode (in this case, serrated flow by shear localization).
引用
收藏
页码:7058 / 7063
页数:5
相关论文
共 50 条
  • [41] Fracture behavior of hydroxyapatite nanofibers in dental enamel under micropillar compression
    Yilmaz, Ezgi D.
    Bechtle, Sabine
    Oezcoban, Hueseyin
    Schreyer, Andreas
    Schneider, Gerold A.
    SCRIPTA MATERIALIA, 2013, 68 (06) : 404 - 407
  • [42] A micropillar compression investigation into the plastic flow properties of additively manufactured alloys
    Li, Shi-Hao
    Zhao, Yakai
    Radhakrishnan, Jayaraj
    Ramamurty, Upadrasta
    ACTA MATERIALIA, 2022, 240
  • [43] Interpreting strain burst in micropillar compression through instability of loading system
    Wang, Peng
    Liu, Fengxian
    Cui, Yinan
    Liu, Zhanli
    Qu, Shaoxing
    Zhuang, Zhuo
    INTERNATIONAL JOURNAL OF PLASTICITY, 2018, 107 : 150 - 163
  • [44] Mechanical properties of intermetallic inclusions in Al 7075 alloys by micropillar compression
    Singh, Sudhanshu S.
    Guo, Enyu
    Xie, Huxiao
    Chawla, Nikhilesh
    INTERMETALLICS, 2015, 62 : 69 - 75
  • [45] A critical assessment of work hardening in TWIP steels through micropillar compression
    Wang, Jiangting
    Stanford, Nicole
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2017, 696 : 42 - 51
  • [46] Mechanical property evaluation of TSV-Cu micropillar by compression method
    Ting Gu
    Ping Cheng
    Su Wang
    Huiying Wang
    Xuhan Dai
    Hong Wang
    Guifu Ding
    Electronic Materials Letters, 2014, 10 : 851 - 855
  • [47] Elevated and cryogenic temperature micropillar compression of magnesium–niobium multilayer films
    K. Thomas
    G. Mohanty
    J. Wehrs
    A. A. Taylor
    S. Pathak
    D. Casari
    J. Schwiedrzik
    N. Mara
    R. Spolenak
    J. Michler
    Journal of Materials Science, 2019, 54 : 10884 - 10901
  • [48] Ductile-brittle transition in micropillar compression of GaAs at room temperature
    Oestlund, Fredrik
    Howie, Philip R.
    Ghisleni, Rudy
    Korte, Sandra
    Leifer, Klaus
    Clegg, William J.
    Michler, Johann
    PHILOSOPHICAL MAGAZINE, 2011, 91 (7-9) : 1190 - 1199
  • [49] In-situ SEM micropillar compression of porous and dense zirconia materials
    Juri, Afifah Z.
    Basak, Animesh K.
    Yin, Ling
    JOURNAL OF THE MECHANICAL BEHAVIOR OF BIOMEDICAL MATERIALS, 2022, 132
  • [50] Mechanical characterization of microconstituents in a cast duplex stainless steel by micropillar compression
    Guo, En-Yu
    Xie, Hu-Xiao
    Singh, Sudhanshu S.
    Kirubanandham, Antony
    Jing, Tao
    Chawla, Nikhilesh
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2014, 598 : 98 - 105