Dynamic Properties of Low-Alloyed Copper Alloys with Submicrocrystalline Structure Obtained by High Strain Rate Deformation

被引:0
|
作者
Abdullina, D. N. [1 ]
Khomskaya, I. V. [1 ]
Razorenov, S. V. [2 ]
Shorokhov, E. V. [3 ]
机构
[1] Russian Acad Sci, Mikheev Inst Met Phys, Ural Branch, Ekaterinburg 620108, Russia
[2] Russian Acad Sci, Fed Res Ctr Problems Chem Phys & Med Chem, Chernogolovka 142432, Russia
[3] Russian Res Inst Tech Phys, Russian Fed Nucl Ctr Zababakhin, Snezhinsk 456770, Russia
来源
PHYSICS OF METALS AND METALLOGRAPHY | 2023年 / 124卷 / 12期
关键词
copper alloys; submicrocrystalline structure; high strain rate deformation; shock compression; dynamic elastic limit; spall strength; HIGH-PRESSURE TORSION; MECHANICAL-PROPERTIES; STRENGTH; METALS; ZR;
D O I
10.1134/S0031918X23602081
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
The mechanical properties of alloys Cu-0.03 wt % Zr and Cu-0.10 wt % Cr with a submicrocrystalline structure formed after dynamic channel angular pressing and subsequent annealing. The properties of the alloys were studied under conditions of shock compression with a pressure of 4.7-7.0 GPa and a deformation rate of (1.3-3.2) x 105 s-1. It is shown that grain size refinement from 200-400 to 0.3-1.0 mu m increases the dynamic elastic limit and the dynamic yield strength of the Cu-0.03% Zr alloy by factors of 1.9 and 1.8, respectively. At the same time, the spall strength is reduced by a factor of 1.4. Subsequent annealing at 400 and 450 degrees C can increase the characteristics of the elastic-plastic transition by factors of 3.0 and 3.7, respectively. This elevates the spall strength to the level of a large crystal analogue. It is determined that the process of dispersing the Cu-0.10% Cr alloy structure to 1.0-5.0 mu m leads to an increase in the spall strength by a factor of 1.5 with respect to this value in the coarse grained state, while the dynamic elastic limit and the dynamic yield strength are increased by factors of 3.7 and 2.6, respectively.
引用
收藏
页码:1310 / 1318
页数:9
相关论文
共 50 条
  • [31] Resistance of submicrocrystalline aluminum alloys to high-rate deformation and fracture after dynamic channel angular pressing
    Brodova, I. G.
    Petrova, A. N.
    Razorenov, S. V.
    Shorokhov, E. V.
    PHYSICS OF METALS AND METALLOGRAPHY, 2015, 116 (05): : 519 - 526
  • [32] Resistance of submicrocrystalline aluminum alloys to high-rate deformation and fracture after dynamic channel angular pressing
    I. G. Brodova
    A. N. Petrova
    S. V. Razorenov
    E. V. Shorokhov
    The Physics of Metals and Metallography, 2015, 116 : 519 - 526
  • [33] Strain-Ageing of Low-Alloyed Multiphase High-Strength Steels
    Samek, Ludovic
    Dykas, Jakub
    De Moor, Emmanuel
    Grajcar, Adam
    METALS, 2020, 10 (04)
  • [34] Study of the Structure and Mechanical Properties of Submicrocrystalline and Nanocrystalline Copper Produced by High-Rate Pressing
    Khomshaya, I. V.
    Shorokhov, E. V.
    Zel'dovich, V. I.
    Kheifets, A. E.
    Frolova, N. Yu.
    Nasonov, P. A.
    Ushakov, A. A.
    Zhgilev, I. N.
    PHYSICS OF METALS AND METALLOGRAPHY, 2011, 111 (06): : 612 - 622
  • [35] Structure and properties of low-carbon low-alloyed steels after rapid high-temperature tempering
    Izotov, VI
    Kozlova, AG
    Mikhaylova, LK
    FIZIKA METALLOV I METALLOVEDENIE, 1996, 81 (03): : 65 - 75
  • [36] MEASUREMENT OF PROPERTIES OF HIGH-STRENGTH LOW-ALLOYED STEEL UNDER DYNAMIC LOAD IN REAL-WORLD CONDITIONS OF DEFORMATION AT ELEVATED TEMPERATURES
    Jenicek, Stepan
    Kucerova, Ludmila
    Jirkova, Hana
    Masek, Bohuslav
    21ST INTERNATIONAL CONFERENCE ON METALLURGY AND MATERIALS (METAL 2012), 2012, : 712 - 717
  • [37] DYNAMIC RECRYSTALLIZATION IN HIGH-STRAIN, HIGH-STRAIN-RATE PLASTIC-DEFORMATION OF COPPER
    ANDRADE, U
    MEYERS, MA
    VECCHIO, KS
    CHOKSHI, AH
    ACTA METALLURGICA ET MATERIALIA, 1994, 42 (09): : 3183 - 3195
  • [38] Study of the structure and mechanical properties of submicrocrystalline and nanocrystalline copper produced by high-rate pressing
    I. V. Khomshaya
    E. V. Shorokhov
    V. I. Zel’dovich
    A. E. Kheifets
    N. Yu. Frolova
    P. A. Nasonov
    A. A. Ushakov
    I. N. Zhgilev
    The Physics of Metals and Metallography, 2011, 111
  • [39] Thermophysical Properties of High-Strength Low-Alloyed Pipe Steel
    Urtsev, N. V.
    Platov, S. I.
    Shmakov, A. V.
    Ryzhkov, M. A.
    Lobanov, M. L.
    PHYSICS OF METALS AND METALLOGRAPHY, 2024, 125 (11): : 1284 - 1290
  • [40] Basic physics of optimisation of structure and properties of low-carbon low-alloyed steels
    Kotrechko, SO
    Meshkov, YY
    Nikonenko, DI
    Televich, RV
    METALLOFIZIKA I NOVEISHIE TEKHNOLOGII, 2004, 26 (07): : 941 - 962