Effect of low electrical potentials on the microhardness of metallic materials

被引:0
|
作者
D. V. Orlova
V. I. Danilov
L. B. Zuev
O. S. Staskevich
机构
[1] Russian Academy of Sciences,Institute of Strength Physics and Materials Science, Siberian Branch
[2] National Research Tomsk Polytechnic University,undefined
[3] National Research Tomsk State University,undefined
来源
关键词
Zirconium; Electrical Potential; Hall Coefficient; Silicon Iron; E110 Alloy;
D O I
暂无
中图分类号
学科分类号
摘要
The effect of low (<5 V) electrical potentials on the microhardness of metallic materials has been studied experimentally. It has been revealed that this effect does depend on the sign of the electric field potential. It has been found that the microhardness of aluminum, cobalt, and zinc decreases and the microhardness of zirconium and iron increases when an electrical potential is applied. It has been argued that the degree of microhardness change under an electric field depends on the magnitude of applied potential, the magnitude of the Hall coefficient of a metal, and its physicochemical properties.
引用
收藏
页码:9 / 11
页数:2
相关论文
共 50 条
  • [31] The void size effect in metallic materials
    Hwang, KC
    Liu, B
    Qiu, X
    Huang, Y
    PROGRESS IN EXPERIMENTAL AND COMPUTATIONAL MECHANICS IN ENGINEERING, 2003, 243-2 : 405 - 410
  • [32] THE LOW-TEMPERATURE SUPERPLASTICITY OF METALLIC MATERIALS
    VALIEV, RZ
    KAIBYSHEV, OA
    KUZNETSOV, RI
    MUSALIMOV, RS
    TSENEV, NK
    DOKLADY AKADEMII NAUK SSSR, 1988, 301 (04): : 864 - &
  • [33] Ceramic dies selection for electrical resistance sintering of metallic materials
    Cuevas, F. G.
    Andreouli, D.
    Gallardo, J. M.
    Oikonomou, V.
    Cintas, J.
    Torres, Y.
    Montes, J. M.
    CERAMICS INTERNATIONAL, 2019, 45 (12) : 14555 - 14561
  • [34] Simulation of electrical heating of materials in metallic capacity of cylindrical form
    Pivnyak G.
    Dreshpak N.
    Vypanasenko S.
    Meshcheryakov L.
    Zaika L.
    Potempa M.
    Solid State Phenomena, 2019, 291 : 72 - 82
  • [35] DEVELOPMENT TRENDS OF THE METALLIC MATERIALS FOR THE USE IN THE ELECTRICAL AND ELECTRONIC ENGINEERING
    HENKEL, O
    NEUE HUTTE, 1984, 29 (06): : 201 - 207
  • [36] IMPROVING CORROSION RESISTANCE OF METALLIC MATERIALS BY ELECTRICAL DISCHARGES IN IMPULSES
    Barhalescu, Mihaela
    Dumitrache, Constantin
    Oanta, Emil
    Sabau, Adrian
    ANNALS OF DAAAM FOR 2009 & PROCEEDINGS OF THE 20TH INTERNATIONAL DAAAM SYMPOSIUM, 2009, 20 : 675 - 676
  • [37] MICROHARDNESS AND THE INFLUENCE OF ANNEALING ON MICROHARDNESS METALLIC GLASSES FE-NI-B
    MIHALIK, M
    HAJKO, V
    KAVECANSKY, V
    KAREL, V
    KOVOVE MATERIALY-METALLIC MATERIALS, 1985, 23 (02): : 205 - 214
  • [38] ELECTRICAL-CONDUCTIVITY OF CERTAIN METALLIC COMPOSITE-MATERIALS
    YATSENKO, MI
    SOVIET APPLIED MECHANICS, 1979, 15 (09): : 894 - 896
  • [39] SURFACE ELECTRICAL CONDUCTANCE AND ELECTROKINETIC POTENTIALS IN NETWORKS OF FIBROUS MATERIALS
    MOSSMAN, CE
    MASON, SG
    CANADIAN JOURNAL OF CHEMISTRY-REVUE CANADIENNE DE CHIMIE, 1959, 37 (07): : 1153 - 1164
  • [40] Effect of porogen residue on electrical characteristics of ultra low-k materials
    Baklanov, Mikhail R.
    Zhao, Larry
    Van Besien, Els
    Pantouvaki, Marianna
    MICROELECTRONIC ENGINEERING, 2011, 88 (06) : 990 - 993