欢迎登录材料期刊网

材料期刊网

高级检索

基于Abaqus有限元分析软件建立了复合材料螺栓联接的三维有限元模型,以预测复合材料螺栓联接的螺纹载荷分布,为使模型符合真实情况,将螺母支承在弹性地基上并通过Abaqus USDFLD子程序考虑了C基或SiC基复合材料拉压不对称特性.此外,本文对预测金属螺纹的载荷分布的Yamamoto方法进行了经验性的推广,使其可以反映C基或SiC基复合材料的各向异性和拉压不对称性.通过对比多组材料及几何参数下推广的Yamamoto方法(EYM)和有限元法(FEM)预测的螺纹载荷分布验证了推广的Yamamoto方法的有效性.研究结果表明:复合材料螺栓联接的载荷分布通常比金属联接的载荷分布更均匀;随着螺距与直径之比的增加,螺纹载荷分布不均程度有所增加;复合材料螺栓绕其轴线相对于螺母的转动对载荷分布几乎没有影响.

参考文献

[1] 万玉慧.C/SiC复合材料及其构件的制备与力学性能[D].西安:西北工业大学,2005.Wan Yuhui,Preparation and mechanical properties for C/SiC composites and components[D].Xi'an:Northwestern Polytechnical University,2005.
[2] Zhang Y N,Zhang L T,Cheng L F,et al.Fundamental issues of applications of C/SiC composites for re-entry vehicles[J].Journal of Ceramic Processing Research,2009,10(3):248-256.
[3] Mei H,Cheng L F,Ke Q Q,et al.High-temperature tensile properties and oxidation behavior of carbon fiber reinforced silicon carbide bolts in a simulated re-entry environment[J].Carbon,2010,48(11):3007-3013.
[4] Li G D,Zhang C R,Hu H F,et al.Preparation and properties of C/SiC bolts via precursor infiltration and pyrolysis process[J].Rare Metals,2011,30 (1Supplement):572-575.
[5] Li G D,Zhang C R,Hu H F,et al.Preparation and mechanical properties of C/SiC nuts and bolts[J].Materials Science and Engineering:A,2012,547:1-5.
[6] 王杰,李克智,郭领军,等,炭布叠层穿刺c/c复合材料螺栓连接件微观组织和力学性能[J].固体火箭技术,2012,35(2):248-252.Wang Jie,Li Kezhi,Guo Lingjun,et al.Microstructure and mechanical properties of C/C composite bolt[J].Journal of Solid Rocket Technology,2012,35(2):248-252.
[7] Sopwith D G.The distribution of load in screw threads[J].Proceedings of the Institution of Mechanical Engineers,1948,159(1):373-383.
[8] 山本晃.螺纹联接的理论与计算[M].郭可谦,高素娟,译.上海:上海科学技术文献出版社,1984:45-52.Yamamoto A.The theory and computation of threads connection[M].Guo Keqian,Gao Sujuan,translated.Shanghai:Shanghai Scientific and Technological Literature Press,1984:45-52.
[9] Tanaka M,Miyazawa H,Asaba E,et al.Application of the finite element method to bolt-nut joints:Fundamental studies on analysis of bolt-nut joints using the finite element method[J].Bulletin of JSME,1981,24(192):1064-1071.
[10] Zhao H.A numerical method for load distribution in threaded connections[J].Journal of Mechanical Design,1996,118(2):274-279.
[11] 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.Cheng Haiping,Zeng Pan,Fang Gang,et al.Load distribution of bolted joint[J].Journal of Mechanical Engineering,2010,46(9):171-178.
[12] Chen J J,Shih Y S.A study of the helical effect on the thread connection by three dimensional finite element analysis[J].Nuclear Engineering and Design,1999,191(2):109-116.
[13] Sun Y J,Liao R D.The effect of helix on the nonlinear analysis of threaded connection[J].Advanced Materials Research,2011,148-149:1741-1744.
[14] Hetenyi M.A photoelastic study of bolt and nut fastenings[J].Transactions of the ASME,1943,10(2):93-100.
[15] Kenny B,Patterson E A.Load and stress distribution in screw threads[J].Experimental Mechanics,1985,25 (3):208-213.
[16] Jacobsen T K,Br(φ)ndsted P.Mechanical properties of two plain-woven chemical vapor infiltrated silicon carbide-matrix composites[J].Journal of the American Ceramic Society,2001,84(5):1043-1051.
[17] 袁辉.碳/碳复合材料刚度与强度预测模型研究[D].南京:南京航空航天大学,2009.Yuan Hui.Research on prediction models for stiffness and strength of C/C composites[D].Nanjing:Nanjing University of Aeronautics and Astronautics,2009.
[18] Nelson W D,Bunin B L,Hart-Smith L J.Critical joints in large composite aircraft structure,DP-7266[R].1983.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%