Volume 37 Issue 1
Jan.  2017
Turn off MathJax
Article Contents
Kou Jianfeng, Xu Fei, Feng Wei. Study of strain energy based shear model for single lap bolt[J]. Explosion And Shock Waves, 2017, 37(1): 10-14. doi: 10.11883/1001-1455(2017)01-0001-09
Citation: Kou Jianfeng, Xu Fei, Feng Wei. Study of strain energy based shear model for single lap bolt[J]. Explosion And Shock Waves, 2017, 37(1): 10-14. doi: 10.11883/1001-1455(2017)01-0001-09

Study of strain energy based shear model for single lap bolt

doi: 10.11883/1001-1455(2017)01-0001-09
  • Received Date: 2015-05-15
  • Rev Recd Date: 2015-09-15
  • Publish Date: 2017-01-25
  • In simplifying large numbers of bolt connections in simulation to substitute the construction of the whole joint structure, it is essential to establish a joint constitutive model. In this paper, a shear constitutive model of the single lap bolt was established. Firstly, the curves of the load-displacement of the single lap shear bolt were obtained from experiments, and the corresponding physical mechanism was analyzed using the finite-element method. Then, the curve of the load-displacement was divided into several phases according to the physical mechanism. Based on the first three phases, the basic form of the shear constitutive model was proposed and the related parameters were determined in detail. In the second phase of the shear model, the support stiffness was solved by the strain energy method based on reasonable stress distribution hypothesis, which was a step most difficult to take. Finally, this constitutive model was verified by numerous examples. The results show that this shear model for the single lap bolt has the advantages of providing clear physical meaning, easy parameter estimation, and high accuracy.
  • loading
  • [1]
    Thota J, Trabia M B, O'Toole B J. Simulation of shock response in a lab-scale space frame structure using finite element analysis[J]. ASME 2011 International Mechanical Engineering Congress and Exposition, 2011, 218(1):75-86.
    [2]
    沈诣, 洪荣晶, 高学海, 等.大型结构的螺栓连接有限元简化方法与验证[J].机械设计与制造, 2012(8):26-28.

    Shen Yi, Hong Rongjing, Gao Xuehai, et al. A simplify method and verification with FEM for bolt connection of large-scale structure[J]. Machinery Design & Manufacture, 2012(8):26-28.
    [3]
    Hartwigsen C J, Song Y, Mcfarland D M, et al. Experimental study of non-linear effects in a typical shear lap joint configuration[J]. Journal of Sound and Vibration, 2004, 277(1/2):327-351.
    [4]
    Fu W P, Huang Y M, Zhang X L, et al. Experimental investigation of dynamic normal characteristics of machined joint surfaces[J]. Journal of Vibration & Acoustics, 2000, 122(4):393-398.
    [5]
    He Y C, Wan Y C. Load-deflection behaviour of thin-walled plates with a single bolt in shearing[J]. Thin-Walled Structures, 2011, 49(10):1261-1276.
    [6]
    Gaul L, Lenz J. Nonlinear dynamics of structures assembled by bolted joints[J]. Acta Mechanica, 1997, 125(1):169-181.
    [7]
    Butner C M, Adams D E, Foley J R. Experimental investigation of the effects of bolt preload on the dynamic response of a bolted interface[J]. Journal of Applied Mechanics, 2013, 80(1):011016.
    [8]
    Segalman D J. A four-parameter Iwan model for lap-type joints[J]. Journal of Applied Mechanics, 2005, 72(5):752-760.
    [9]
    Tian H, Li B, Liu H, et al. A new method of virtual material hypothesis-based dynamic modeling on fixed joint interface in machine tools[J]. International Journal of Machine Tools & Manufacture, 2011, 51(3):239-249.
    [10]
    黄开放, 金建新.基于虚拟材料方法的螺栓预紧力模拟的研究[J].机械设计与制造, 2012(8):148-150.

    Huang Kaifang, Jin Jianxin. Research on bolt preload simulation based on virtual material method[J]. Machinery Design & Manufacture, 2012(8):148-150.
    [11]
    Shi Y, Wang M, Wang Y. Analysis on shear behavior of high-strength bolts connection[J]. International Journal of Steel Structures, 2011, 11(2):203-213.
    [12]
    Thota J, O'Toole B J, Trabia M B. Optimization of shock response within a military vehicle space frame[J]. Structural & Multidisciplinary Optimization, 2011, 44(6):847-861.
    [13]
    柳征勇, 骆剑, 唐国安.大型卫星整流罩分离冲击载荷分析研究[J].航天器环境工程, 2008, 25(5):467-470.

    Liu Zhengyong, Luo Jian, Tang Guoan. The studies on the impact force for separation of the large payload fairing[J]. Spacecraft Environment Engineering, 2008, 25(5):467-470.
    [14]
    Han Z, Shah V N, Abou-Hanna J, et al. Dynamic structural analysis of the 9516 transport package[J]. ASME 2010 Pressure Vessels and Piping Division/K-PVP Conference, 2010, 45(3):378-391.
    [15]
    张学良, 温淑花.基于接触分形理论的结合面切向接触刚度分形模型[J].农业机械学报, 2002, 33(3):91-93.

    Zhang Xueliang, Wen Shuhua. A fractal model of tangential contact stiffness of joint surfaces based on the contact fractal theory[J]. Transactions of the Chinese Society for Agricultural Machinery, 2002, 33(3):91-93.
    [16]
    葛世荣, Tonder K.粗糙表面的分形特征与分形表达研究[J].摩擦学学报, 1997, 17(1):74-81.

    Guo Shirong, Tonder K. The fractal behavior and fractal characterization of rough surfaces[J]. Tribology, 1997, 17(1):74-81.
    [17]
    潘玉良, 吴立群, 张云电.分形模型参数与粗糙度参数Ra关系的研究[J].中国工程科学, 2004, 6(5):49-51.

    Pan Yuliang, Wu Liqun, Zhang Yundian. Study of the relationship between fractal model parameters and roughness parameter Ra[J]. Engineering Science, 2004, 6(5):49-51.
    [18]
    张学良, 黄玉美, 傅卫平, 等.粗糙表面法向接触刚度的分形模型[J].应用力学学报, 2000, 17(2):31-35.

    Zhang Xueling, Huang Yumei, Fu Weiping. Fractal model of normal contact stiffness between rough surfaces[J]. Chinese Journal of Applied Mechanics, 2000, 17(2):31-35.
    [19]
    Nassar S A, Abboud A. An improved stiffness model for bolted joints[J]. Journal of Mechanical Design, 2009, 131(12):121001.
    [20]
    杨国庆, 王飞, 洪军, 等.螺栓被连接件刚度理论的计算方法[J].西安交通大学学报, 2012, 46(7):50-56.

    Yang Guoqing, Wang Fei, Hong Jun, et al. Theoretical analysis for bolted member stiffness[J]. Journal of Xi'an Jiaotong University, 2012, 46(7):50-56.
    [21]
    Lehnhoff T F, Ko K, McKay M L. Member stiffness and contact pressure distribution of bolted joints[J]. Journal of Mechanical Design, 1994, 116(2):550-557.
  • 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

    Figures(9)  / Tables(3)

    Article Metrics

    Article views (6153) PDF downloads(719) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return