Structural-phase state of the surface layer of low-carbon steel after electrolytic-plasma modification

被引:0
|
作者
Kombaev, K. K. [1 ]
Elamanov, D. S. [1 ]
Kassenova, A. B. [1 ]
Kamzin, D. S. [2 ]
Toktarbaeva, G. M. [1 ]
机构
[1] D Serikbayev East Kazakhstan Tech Univ, Ust Kamenogorsk, Kazakhstan
[2] Ust Kamenogorsk Ind Valves Plant JSC, Ust Kamenogorsk, Kazakhstan
来源
RECENT CONTRIBUTIONS TO PHYSICS | 2021年 / 78卷 / 03期
关键词
Electrolyte-plasma modification; martensite; microstructure; hardening; hardness;
D O I
10.26577/RCPh.2021.v78.i3.08
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
An alternative technology of strengthening by electrolytic-plasma modification of low-carbon alloy steel for the wedge columns binding for stop valves has been developed. The processing of steel 20X samples was carried out on an experimental installation, the optimal processing modes were determined experimentally. Simulation of the treated surface makes it possible to assume that during the electrolytic-plasma heating of parts, along with quenching, chemical modification of the metal surface layers occurs. The volt-temperature characteristic with the superposition of real time on the proposed processing clearly shows a significant reduction in the time for hardening, relative to traditional hardening methods of similar steel. Also, energy consumption and, accordingly, the cost of the part and the product as a whole are significantly reduced. Electrolyte-plasma modification promotes the transformation of coarse-grained pearlite-ferrite microstructure into quenched martensite. An increase in hardness relative to the initial state indicates an increase in physical and mechanical properties after electrolyte-plasma treatment. The advantage of the method of electrolytic-plasma treatment consists in low energy consumption at high quenching rates, the possibility of local surface treatment; there are prerequisites for creating a semi-industrial installation for an alternative electrolyte-plasma hardening.
引用
收藏
页码:71 / 79
页数:9
相关论文
共 50 条
  • [41] Characterization of surface hardened layers on Q235 low-carbon steel treated by plasma electrolytic borocarburizing
    Wang, Bin
    Xue, Wenbin
    Wu, Jie
    Jin, Xiaoyue
    Hua, Ming
    Wu, Zhenglong
    JOURNAL OF ALLOYS AND COMPOUNDS, 2013, 578 : 162 - 169
  • [42] Change of Structure and Mechanical Properties of R6M5 Steel Surface Layer at Electrolytic-Plasma Nitriding
    Mazhyn, Skakov
    Bauyrzhan, Rakhadilov
    Erlan, Batyrbekov
    Michael, Scheffler
    HIGH TECHNOLOGY: RESEARCH AND APPLICATIONS, 2014, 1040 : 753 - +
  • [43] Surface Modification of Medium Carbon Steel by Using Electrolytic Plasma Thermocyclic Treatment
    Kumruoglu, L. Cenk
    Becerik, D. Alexander
    Ozel, A.
    Mimaroglu, A.
    MATERIALS AND MANUFACTURING PROCESSES, 2009, 24 (7-8) : 781 - U82
  • [44] Structural-Phase Transitions in Cold-Resistant Low-Carbon Martensitic Steels Susceptible to Structural Heredity
    Berezin S.K.
    Shatsov A.A.
    Greben’kov S.K.
    Spivak L.V.
    Russian Metallurgy (Metally), 2018, 2018 (5) : 432 - 444
  • [45] Modification of the Structural-Phase State of the Surface Layer of a Cermet Composite Under Electron Beam Irradiation in Inert Gas Plasmas
    V. E. Ovcharenko
    K. V. Ivanov
    Yu. F. Ivanov
    A. A. Mokhovikov
    Yu. Bao Hai
    Russian Physics Journal, 2017, 59 : 2114 - 2121
  • [46] Electron-beam modification of a surface layer deposited on low-carbon steel by means of arc spraying
    Gromov V.E.
    Ivanov Y.F.
    Glezer A.M.
    Kormyshev V.E.
    Konovalov S.V.
    Bulletin of the Russian Academy of Sciences: Physics, 2017, 81 (11) : 1353 - 1359
  • [47] Modification of the Structural-Phase State of the Surface Layer of a Cermet Composite Under Electron Beam Irradiation in Inert Gas Plasmas
    Ovcharenko, V. E.
    Ivanov, K. V.
    Ivanov, Yu. F.
    Mokhovikov, A. A.
    Hai, Yu Bao
    RUSSIAN PHYSICS JOURNAL, 2017, 59 (12) : 2114 - 2121
  • [48] Forming structural-phase states of the surface layer of steel by electron-beam treatment
    Tsellermaer I.B.
    Ivanov Y.F.
    Konovalov S.V.
    Gromov V.E.
    Steel in Translation, 2007, 37 (08) : 670 - 672
  • [49] Spectroscopic investigation of plasma electrolytic borocarburizing on q235 low-carbon steel
    Liu, Run
    Wang, Bin
    Wu, Jie
    Xue, Wenbin
    Jin, Xiaoyue
    Du, Jiancheng
    Hua, Ming
    APPLIED SURFACE SCIENCE, 2014, 321 : 348 - 352
  • [50] Increasing Wear Resistance of Low-Carbon Steel by Anodic Plasma-Electrolytic Nitroboriding
    Belkin, V. S.
    Belkin, P. N.
    Krit, B. L.
    Morozova, N., V
    Silkin, S. A.
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2020, 29 (01) : 564 - 572