Damage and Fracture of VT22 Titanium Alloy in Static Tension After the Application of Additional Pulse Loading

被引:0
|
作者
P. O. Marushchak
I. V. Konovalenko
M. G. Chausov
A. P. Pylypenko
机构
[1] Ternopil Ivan Puluj Technical University,
[2] Ukrainian National University of Bioresources and Nature Management,undefined
来源
Strength of Materials | 2017年 / 49卷
关键词
degradation; damage; deformation; micromechanisms of fracture; ductile tearing dimples;
D O I
暂无
中图分类号
学科分类号
摘要
The paper describes the main regularities of plastic deformation in VT22 titanium alloy and the micromechanisms of its fracture in static tension and in tension after different dynamic nonequilibrium loading modes resulting from the application of additional pulse loads. It is found that irrespective of the result of loading, the fracture of alloy VT22 occurs by the pore nucleation and coalescence mechanism. The physico-mechanical phenomena underlying the formation of ductile tearing dimples on fracture surfaces are analyzed and their relation to the deformation processes is described.
引用
收藏
页码:436 / 445
页数:9
相关论文
共 50 条
  • [21] Fatigue characteristics of VT22 titanium alloy with wear-resistant coatings
    V. O. Kralya
    O. H. Molyar
    A. M. Khimko
    D. O. Puhachevs’kyi
    Materials Science, 2006, 42 : 853 - 857
  • [22] Electromechanical Hardening of VT22 Titanium Alloy in Screw-Cutting Lathes
    Yakovlev S.A.
    Zamal’dinov M.M.
    Nuretdinova Y.V.
    Mishanin A.L.
    Igonin V.N.
    Sotnikov M.V.
    Khabarova V.V.
    Russian Engineering Research, 2018, 38 (06) : 488 - 490
  • [23] Effect of additional carbon and boron alloying on the structure and mechanical properties of alloy VT22
    Moiseev, VN
    Sysoeva, NV
    Polyakova, IG
    METAL SCIENCE AND HEAT TREATMENT, 1998, 40 (3-4) : 107 - 111
  • [24] SPECIFIC FEATURES OF FRACTURE OF HIGH-STRENGTH BOLTS OF VT22 ALLOY
    Ivasyshyn, O. M.
    Vasylevs'kyi, E. T.
    Antonyuk, S. L.
    Velychko, V. V.
    Markovs'kyi, P. E.
    Havrysh, I. M.
    MATERIALS SCIENCE, 2015, 51 (03) : 366 - 371
  • [25] Effect of additional carbon and boron alloying on the structure and mechanical properties of alloy VT22
    V. N. Moiseev
    N. V. Sysoeva
    I. G. Polyakova
    Metal Science and Heat Treatment, 1998, 40 : 107 - 111
  • [26] Specific Features of Fracture of High-Strength Bolts of VT22 Alloy
    О. М. Ivasyshyn
    E. T. Vasylevs’kyi
    S. L. Antonyuk
    V. V. Velychko
    P. E. Markovs’kyi
    І. М. Havrysh
    Materials Science, 2015, 51 : 366 - 371
  • [27] Improving the Wear Resistance of VT22 Titanium Alloy by Anodic Plasma Electrolytic Boriding
    S. A. Kusmanov
    I. V. Tambovskii
    I. A. Kusmanova
    P. N. Belkin
    Surface Engineering and Applied Electrochemistry, 2021, 57 : 419 - 424
  • [28] Improving the Wear Resistance of VT22 Titanium Alloy by Anodic Plasma Electrolytic Boriding
    Kusmanov, S. A.
    Tambovskii, I. V.
    Kusmanova, I. A.
    Belkin, P. N.
    SURFACE ENGINEERING AND APPLIED ELECTROCHEMISTRY, 2021, 57 (04) : 419 - 424
  • [29] EFFECT OF HYDROGEN ON THE DEVELOPMENT OF DEFORMATION AND FRACTURE IN TITANIUM ALLOY VT22 IN THE TEMPERATURE RANGE OF 293-823 K
    Grabovetskaya, G. P.
    Mishin, I. P.
    Naydenkin, E. V.
    Stepanova, E. N.
    Zabudchenko, O. V.
    RUSSIAN PHYSICS JOURNAL, 2024, 67 (06) : 756 - 764
  • [30] SURFACE MODIFICATION OF THE TITANIUM ALLOY VT22 BY HIGH CURRENT PULSED ELECTRON BEAM
    Donets, S. Ye.
    Lytvynenko, V. V.
    Lonin, Yu. F.
    Ponomarev, A. G.
    Startsev, O. A.
    Uvarov, V. T.
    PROBLEMS OF ATOMIC SCIENCE AND TECHNOLOGY, 2022, (04): : 61 - 65