Volume 36 Issue 12
Dec.  2021
Turn off MathJax
Article Contents
WANG Kaiping, YAN Ming, SUN Ziqiang, SU Donghai, HUI Anmin, LIU Haichao. Influence factors of nonlinear stiffness of bolted flange connection structure under different loads[J]. Journal of Aerospace Power, 2021, 36(12): 2503-2514. doi: 10.13224/j.cnki.jasp.20200539
Citation: WANG Kaiping, YAN Ming, SUN Ziqiang, SU Donghai, HUI Anmin, LIU Haichao. Influence factors of nonlinear stiffness of bolted flange connection structure under different loads[J]. Journal of Aerospace Power, 2021, 36(12): 2503-2514. doi: 10.13224/j.cnki.jasp.20200539

Influence factors of nonlinear stiffness of bolted flange connection structure under different loads

doi: 10.13224/j.cnki.jasp.20200539
  • Received Date: 2020-12-18
  • Publish Date: 2021-12-28
  • In order to study the influence of various factors on the nonlinear stiffness of bolted flange connection structure,a fine finite element model of screw connection structure with rising angle was established,the full hexahedron mesh generation was carried out,and the validity of the model was verified.The simulation analysis under tension,bending and torsion load was carried out respectively.The results showed that the larger initial pre-tightening force indicated the greater bending and torsional stiffness of the connection structure,and the initial pre-tightening force had no influence on the tensile stiffness.Under the tensile load,the initial preload increased the critical resistance of the separation of the two flanges.Under the bending load,the greater initial preload indicated the greater external bending moment triggering the opening of the two flanges,and it was more difficult for each bolt to bear the external force.Before the opening of two flanges,the initial pre-tightening force had little influence on the bending stiffness of the connection structure,but the influence was greater after the opening;the larger diameter and more number of bolts indicated the greater tensile,bending and torsional stiffness of the connection structure;the closer bolt position to the flange tube indicated the greater tensile stiffness of the connection structure.The friction coefficient between the joint surfaces had no influence on the tensile and bending stiffness of the connection structure.The greater friction coefficient between the joint surfaces indicated the greater torsional stiffness of the connection structure.The friction coefficient between the flange and flange joint surface had a greater influence on the torsional stiffness in the first section of the stiffness curve,while the friction coefficient between the bolt flange joint surface had a greater influence on the second section.

     

  • loading
  • [1]
    IBRAHIM R A,PETTIT C L.Uncertainties and dynamic problems of bolted joints and other fasteners[J].Journal of Sound and Vibration,2005,279(3):857-936.
    [2]
    王志,李吉凯,刘玉.带止口法兰连接结构刚度特性对结构振动影响[J].航空动力学报,2019,34(6):1201-1208.
    [3]
    白聪儿,宣海军,米栋,等.离心压气机包容结构连接螺栓建模方法[J].航空动力学报,2019,34(2):313-320.
    [4]
    姚星宇,王建军.航空发动机螺栓连接载荷与结构参数对连接刚度影响规律[J].推进技术,2017,38(2):424-433.
    [5]
    姚星宇,王建军,翟学.航空发动机螺栓连接薄层单元建模方法[J].北京航空航天大学学报,2015,41(12):2269-2279.
    [6]
    赵广,金鑫,崔颖,等.基于模态应变能的接触刚度识别方法[J].机械工程学报,2020,56(9):147-153.
    [7]
    SU? D,WILLNER K.Investigation of a jointed friction oscillator using the multiharmonic balance method[J].Mechanical Systems and Signal Processing,2015,52(2):73-87.
    [8]
    MAYER M H,GAUL L.Segment-to-segment contact elements for modelling joint interfaces in finite element analysis[J].Mechanical Systems and Signal Processing,2007,21(2):724-734.
    [9]
    ABAD J,MEDEL F J,FRANCO J M.Determination of valanis model parameters in a bolted lap joint:experimental and numerical analyses of frictional dissipation[J].International Journal of Mechanical Sciences,2014,89(23):289-298.
    [10]
    GUO Yao.Nonlinearity of interfaces and force transmission of bolted flange joints under impact loading[J].International Journal of Impact Engineering,2017,109(11):214-223.
    [11]
    江和龄,孔令飞,李超,等.螺栓结合部接触区域非线性动态特征的凝聚建模方法[J].机械工程学报,2018,54(17):218-225.
    [12]
    ERITEN M,KURT M,BERGMAN L A,et al.Nonlinear system identification of frictional effects in a beam with a bolted joint connection[J].Mechanical Systems and Signal Processing,2013,39(12):245-264.
    [13]
    KRACK L,SALLES F,THOUVEREZ F.Vibration prediction of bladed disks coupled by friction joints[J].Archives of Computational Methods in Engineering,2016,24(3):1-48.
    [14]
    LUAN Yu,GUAN Zhenqun,CHENG Gengdong,et al.A Simplified nonlinear dynamic model for the analysis of pipe structures with bolted flange joints[J].Journal of Sound and Vibration,2012,331(2):325-344.
    [15]
    LU Xu,ZENG Yan,CHEN Yan,et al.Transient response characteristics of a bolted flange connection structure with shear pin/cone[J].Journal of Sound and Vibration,2017,395(23):240-257.
    [16]
    MAIO D D,SCHWINGSHACKL C W,SEVERI A.Development of a test planning methodology for performing experimental model validation of bolted flanges[J].Nonlinear Dynamics,2016,83(1):983-1002.
    [17]
    SCHWINGSHACKL C W,MAIO D D,SEVERI A,et al.Modeling and validation of the nonlinear dynamic behavior of bolted flange joints[J].Journal of Engineering for Gas Turbines and Power,2013,135(12):122504.1-122504.8.
    [18]
    LI Yikun,HAO Zhiming,FENG Jiaquan,et al.Investigation into discretization methods of the six-parameter Iwan model[J].Mechanical Systems and Signal Processing,2017,85:98-110.
    [19]
    MARC-ANTOINE B,KAMRAN B.Analytical lump model for the nonlinear dynamic response of bolted flanges in aero-engine casings[J].Mechanical Systems and Signal Processing,2019,115:14-28.
    [20]
    WANG Zuocai,XIN Yu,REN Weixin.Nonlinear structural joint model updating based on instantaneous characteristics of dynamic responses[J].Mechanical Systems and Signal Processing,2016,76:476-496.
    [21]
    WU Zhijun,NASSAR S A,YANG Xianjie.Nonlinear deformation behavior of bolted flanges under tensile,torsional,and bending loads[J].Journal of Pressure Vessel Technology,2014,136(6):12-20.
    [22]
    山本晃.螺纹联接的理论与计算[M].郭可谦,译.上海:上海科学技术文献出版社,1984.
    [23]
    SOPWITH D G.The distribution of load in screw threads[J].ARCHIVE Proceedings of the Institution of Mechanical Engineers,1948,159:373-383.
    [24]
    陈海平,曾攀,方刚,等.螺纹副承载的分布规律[J].机械工程学报,2010,46(9):171-178.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (700) PDF downloads(168) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return