Strength and torsion fracture mechanism of commercially pure titanium with ultrafine-grained structure

被引:5
|
作者
Klevtsov, G., V [1 ]
Valiev, R. Z. [2 ]
Klevtsova, N. A. [1 ]
Fesenyuk, M., V [3 ]
Tyurkov, M. N. [1 ]
Polyakov, A., V [2 ]
机构
[1] Togliatti State Univ, Tolyatti 445020, Russia
[2] USATU, Res Inst Phys Adv Mat, Ufa 450008, Russia
[3] JSC PA Strela, Orenburg 460005, Russia
来源
LETTERS ON MATERIALS | 2021年 / 11卷 / 03期
基金
俄罗斯科学基金会;
关键词
titanium; ultrafine-grained (UFG) structure; equal channel angular pressing (ECAP); torsion test; fracture; torque; microrelief; TI; BEHAVIOR;
D O I
10.22226/2410-3535-2021-3-273-278
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The mechanical behavior and the mechanism of torsional fracture of medical grade titanium Grade4 with an ultrafine-grained (UFG) structure in comparison with a coarse-grained (CG) structure were investigated. CG titanium (d(av) = 25 mu m) was investigated in the hot-rolled state. To obtain the UFG structure, two processing regimes were used. In the first regime, homogenization annealing was carried out at a temperature of 680 degrees C for 1 hour, then equal-channel angular pressing (6 passes) according to the "Conform" scheme (ECAP-C) at a workpiece and tool temperature of 250 degrees C (route Bc, phi=120 degrees). The average grain size is equal to 0.4 mu m. In the second regime, after homogenization annealing and six ECAP-C passes, the workpieces were drawn at a temperature of 200 degrees C (ECAP-C+D). The average grain size is equal to 0.2 mu m. The torsion test of samples with a diameter of 3 mm (close to the diameter of screws for fixing plates in traumatology) was carried out on a KTS 403-20-0.5 installation in accordance with GOST 3565-80. The torque, number of revolutions and angle of twisting of the samples made from CG and UFG titanium, as well as the mechanical properties of titanium during torsion were evaluated. Torsion tests have shown that the torsional strength and the torsional yield strength of UFG titanium increase, and the relative shear decreases in comparison with similar properties of CG titanium. In addition, the mode of nanostructuring (ECAP-C+D) provides higher values of the torsional strength properties of titanium compared to ECAP-C, which is favorable from the standpoint of resistance to fracture of titanium screws by torsion. On the surface of the fractures, there are three regions differing in microrelief: the central part of the fracture, the middle (transitional) and the peripheral parts. In the central part of the fractures, the microrelief consists of equiaxed dimples and structureless areas. In the middle part, shear dimples dominate, and in the peripheral part of fractures, areas of shear dimples alternate with areas of the rubbed surface.
引用
收藏
页码:273 / 278
页数:6
相关论文
共 50 条
  • [1] Strength and fracture of ultrafine-grained titanium Grade 4
    Smirnov, Ivan
    Polyakov, Alexander
    Sudenkov, Yuri
    XXVII INTERNATIONAL CONFERENCE: MATHEMATICAL AND COMPUTER SIMULATION IN MECHANICS OF SOLIDS AND STRUCTURES - FUNDAMENTALS OF STATIC AND DYNAMIC FRACTURE (MCM 2017), 2017, 6 : 196 - 200
  • [2] Impact Toughness of Ultrafine-Grained Commercially Pure Titanium for Medical Application
    Polyakov, Alexander Vadimovich
    Semenova, Irina Petrovna
    Bobruk, Elena Vladimirovna
    Baek, Seung Mi
    Kim, Hyoung Seop
    Valiev, Ruslan Zufarovich
    ADVANCED ENGINEERING MATERIALS, 2018, 20 (05)
  • [3] Strength and Fracture Mechanism during Torsion of Ultrafine-Grained Austenitic Steel for Medical Applications
    Klevtsov G.V.
    Valiev R.Z.
    Fesenyuk M.V.
    Klevtsova N.A.
    Tyur’kov M.N.
    Abramova M.M.
    Raab G.I.
    Steel in Translation, 2021, 51 (11) : 778 - 782
  • [4] On the deformation mechanism of ultrafine-grained titanium with multilayered hierarchical structure
    Yang, D. K.
    Cizek, P.
    Fabijanic, D.
    Hodgson, P. D.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2013, 582 : 162 - 169
  • [5] Strength and Fracture Mechanism of an Ultrafine-Grained Austenitic Steel for Medical Applications
    Klevtsov, Gennadiy V.
    Valiev, Ruslan Z.
    Klevtsova, Natal'ya A.
    Tyurkov, Maxim N.
    Linderov, Mikhail L.
    Abramova, Marina M.
    Raab, Arseniy G.
    Minasov, Timur B.
    MATERIALS, 2021, 14 (24)
  • [6] Deformation kinetics of coarse-grained and ultrafine-grained commercially pure Ti
    Blum, W.
    Li, Y. J.
    Breutinger, F.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2007, 462 (1-2): : 275 - 278
  • [7] Fatigue resistance of titanium with ultrafine-grained structure
    I. P. Semenova
    G. Kh. Salimgareeva
    V. V. Latysh
    S. A. Kunavin
    R. Z. Valiev
    Metal Science and Heat Treatment, 2009, 51 : 87 - 91
  • [8] Fatigue resistance of titanium with ultrafine-grained structure
    Semenova, I. P.
    Salimgareeva, G. Kh.
    Latysh, V. V.
    Kunavin, S. A.
    Valiev, R. Z.
    METAL SCIENCE AND HEAT TREATMENT, 2009, 51 (1-2) : 87 - 91
  • [9] Static mechanical properties and ductility of biomedical ultrafine-grained commercially pure titanium produced by ECAP process
    Naseri, Reza
    Kadkhodayan, Mehran
    Shariati, Mahmoud
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2017, 27 (09) : 1964 - 1975
  • [10] Deformation Behavior and Microstructural Evolution of Ultrafine-Grained Commercially Pure Ti
    Liu, Xiaoyan
    Zhao, Xicheng
    Yang, Xirong
    Xie, Chen
    ADVANCED ENGINEERING MATERIALS, 2014, 16 (04) : 371 - 375