Analysis of the stress-strain state of steel closed ropes under tension and torsion

被引:0
|
作者
Leonid Gurevich
Vladimir Danenko
Artem Bogdanov
Vitaliy Kulevich
机构
[1] Volgograd State Technical University,
关键词
Closed rope; Finite element modeling; Stress-strain state; Wire; Stretching; Torsion; Deformation; Equivalent stress;
D O I
暂无
中图分类号
学科分类号
摘要
The analysis of the stress-strain state of the closed rope elements under axial tension and torsion was carried out by the finite element method using the licensed software package SIMULIA/Abaqus. The closed rope consists of an outer layer of Z-profile wires, a subsurface layer of alternating round and H-profile wires, an intermediate layer, and a core of the structure 1 + 7 + 7/7 + 14 of round wires. Modeling made it possible to determine the values of the axial force P, the torque M, the relative elongation ε, and the relative angle of torsion θ of the rope sample at the given values of the axial displacement and the rotation angle the cross-section. The results of the analytical calculation of the stress-strain state of a spiral rope using traditional approaches were compared with those obtained in the course of computer finite element modeling. The results of modeling the rope deformation under tension were verified by experimental data obtained by stretching the rope sample on a universal horizontal hydraulic test machine LabTest 6.2000N.7. The results of computer modeling of the rope pure tension correlate well with the results of the calculation by the method of M.F. Glushko, which more accurately takes into account the real construction of the ropes. Computer simulation of the stress-strain state of the closed rope elements made it possible to determine the contact stresses between shaped wires in layers and between layers at different values of the gap between shaped wires; therefore, it can be used to optimize the gaps. Computer simulation of the stress-strain state of the rope elements of a closed structure makes it possible to assess the consistency of the layers narrowing during axial tension by analyzing the contact stresses between adjacent wires in the cross-section of the rope.
引用
收藏
页码:15 / 22
页数:7
相关论文
共 50 条
  • [41] Stress-strain behaviour of steel-fibre-reinforced recycled aggregate concrete under axial tension
    Zong, Shuai
    Liu, Zhenzhen
    Li, Shan
    Lu, Yiyan
    Zheng, Aohan
    JOURNAL OF CLEANER PRODUCTION, 2021, 278
  • [42] Study on stress-strain curve of high strength steel fiber reinforced concrete under uniaxial tension
    Dalian University of Technology, Dalian 116023, China
    Tumu Gongcheng Xuebao, 2006, 3 (55-61):
  • [43] ANALYSIS OF THE STRESS-STRAIN STATE OF AN ADHESIVE JOINT
    SHVECHKOV, EI
    KUDRYASHOV, AB
    KHVATAN, AM
    STRENGTH OF MATERIALS, 1985, 17 (09) : 1291 - 1297
  • [44] STRESS-STRAIN EQUATION FOR RUBBER IN TENSION
    CLAXTON, WE
    JOURNAL OF APPLIED PHYSICS, 1958, 29 (10) : 1398 - 1406
  • [45] The stress-strain curve of Luflexen in tension
    Haward, RN
    Healey, G
    Wood, AK
    JOURNAL OF MATERIALS SCIENCE, 2001, 36 (01) : 21 - 25
  • [46] The stress-strain curve of Luflexen in tension
    R. N. Haward
    G. Healey
    A. K. Wood
    Journal of Materials Science, 2001, 36 : 21 - 25
  • [47] Analysis of the Stress-Strain State of a Bridgman Specimen in Axial Tension by the Finite-Element Method
    Lenkovskyi, T. M.
    Ivanytskyi, Ya L.
    Molkov, Yu, V
    Duriagina, Z. A.
    Kulyk, V. V.
    Trostianchyn, A. M.
    Shyshkovskyi, R. O.
    MATERIALS SCIENCE, 2021, 56 (05) : 722 - 726
  • [48] Determination of stress-strain relationship of sheet metal under biaxial tension
    Tay, C.J.
    Shang, H.M.
    Shit, S.K.
    Experimental Techniques, 1993, 17 (02) : 32 - 35
  • [49] STRESS-STRAIN STATE OF STEEL ARTICLES WITH CONTROLLED COOLING.
    Vlasova, N.V.
    Adamova, N.A.
    Sorokin, V.G.
    Metal Science and Heat Treatment (English Translation of Metallovedenie i Termicheskaya Obrabotka, 1986, 28 (11-12): : 904 - 908
  • [50] Analysis of the pure shear stress-strain state obtained by biaxial tension-compression test
    Muñoz, Sergio Horta
    Serna Moreno, Maria Del Carmen
    Revista de Materiales Compuestos, 2024, 8 (03):