Synchronization of Auxiliary Mechanisms and Main Electric Drive of the Pipe Cold-Rolling Mill. Complete Solution

被引:2
|
作者
Ostrouhov, Vsevolod [1 ]
Sychev, Dmitry [2 ]
Grigorev, Maxim [2 ]
机构
[1] NTC Privodnaya Tekhnika Lld, Chelyabinsk 454007, Russia
[2] Natl Res Univ, South Ural State Univ, Elect Drive Dept, Chelyabinsk 454080, Russia
关键词
cold-rolling pipe mill; electric feed drive; independent excitation synchronous reluctance motor; multilevel frequency converter; multicriteria optimization;
D O I
10.3390/machines8040071
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This article deals with installations with complex and nonstandard executive instrument movement. Having analyzed the technical implementation and operational features of cold-rolling pipe mills, the research team formulated the problem of synthesizing electric drives of auxiliary mechanisms. It is shown that the conditions for choosing a mechanical converter are associated with the oscillation of the processes of the electric drive system. The finite element method and the gradient descent method are used for structural analysis of solids and electromagnetic calculations. The data of the specific cost of semiconductor converters were analyzed using a linear least-squares regression technique. The advantages of a synchronous reluctance motor of independent excitation for the electric drives of auxiliary mechanisms are given and substantiated. The optimization of the geometrical parameters of the electromechanical converter was carried out according to the maximum developed electromagnetic torque. Modern semiconductor technology in the design of special-purpose electric drives leads to a revision of the principles for determining the optimal number of phases and the structure of the motor power supply. The rationale for the use of multilevel frequency converters is given. Taking into account an in-depth preliminary analysis and an integrated approach, these tasks were successfully completed, which was confirmed experimentally at the implementation of the developed system.
引用
收藏
页码:1 / 14
页数:14
相关论文
共 25 条
  • [11] DYNAMIC ANALYSIS OF DRIVE MECHANISM FOR BILLET ON COLD-ROLLING TUBE MILL
    POTAPOV, IN
    POLUKHIN, PI
    DZHAVAKHYAN, RP
    STYRKIN, GD
    SHEIKH-ALI, AD
    GREMYAKOV, IP
    BORISENKO, AI
    STEEL IN THE USSR, 1981, 11 (05): : 287 - 289
  • [12] Influence Factors of Inherent Characteristics of F5 Cold-Rolling Mill's Main Drive System
    Jia, Xingdou
    Yan, Xiaoqiang
    Wang, Lidong
    MATHEMATICAL PROBLEMS IN ENGINEERING, 2022, 2022
  • [13] REDUCTION IN STRIP TEARING DURING STOPPING AND STARTING OF A CONTINUOUS COLD-ROLLING MILL.
    Pimenov, A.F.
    Abramov, A.N.
    Triano, A.I.
    Efremov, N.I.
    Metallurgist, 1987, 31 n-4 : 94 - 95
  • [14] NEW TURN-AND-FEED DRIVE OF A COLD ROLLING TUBE MILL.
    Kozhevnikov, S.N.
    Russian Engineering Journal (English translation of Vestnik Mashinostroeniya), 1976, 56 (05): : 48 - 50
  • [15] A Power Drive System for Pipe Rotation and Delivery Mechanisms of a KhPT-250 Cold Rolling Mill
    Korzhavin M.E.
    Chupin E.S.
    Grigor’ev M.A.
    Russian Electrical Engineering, 2020, 91 (05) : 298 - 301
  • [16] COMPUTER CONTROL OF ROLL COOLING ON A REVERSING COLD-ROLLING MILL FOR ELECTRIC SHEET
    SCHUSTER, T
    SCHNEIDER, M
    GIERMANN, G
    STAHL UND EISEN, 1984, 104 (14): : 651 - 655
  • [17] PERFECTING DRIVE OF RECIPROCAL MOTION OF SEMIPRODUCT ON COLD-ROLLING TUBE MILL WITH FIXED STAND
    POLUKHIN, PI
    POTAPOV, IN
    DZHAVAKHYAN, RP
    STYRKIN, GD
    SHEIKH-ALI, AD
    GREMYAKOV, IP
    BORISENKO, AI
    STEEL IN THE USSR, 1981, 11 (03): : 162 - 164
  • [18] Smart Grid for Main Electric Drive of Plate Mill Rolling Stand
    Radionov, A. A.
    Maklakov, A. S.
    Gasiyarov, V. R.
    2014 INTERNATIONAL CONFERENCE ON MECHANICAL ENGINEERING, AUTOMATION AND CONTROL SYSTEMS (MEACS), 2014,
  • [19] Optimal selection of the parameters of the kinematic chain of the main drive of the cold rolling mill
    Chechulin, Yu B.
    Buynachev, S. K.
    Bakin, A. V.
    INTERNATIONAL SCIENTIFIC AND PRACTICAL CONFERENCE ON INNOVATIONS IN ENGINEERING AND TECHNOLOGY, 2018, 441
  • [20] Loss Components in Electric Drive of Cold Pilger Mill. Control Law Optimization
    Sychev, D. A.
    Liu Lin
    Gou Xinyue
    Mu Shicai
    2018 INTERNATIONAL CONFERENCE ON INDUSTRIAL ENGINEERING, APPLICATIONS AND MANUFACTURING (ICIEAM), 2018,