留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

陶瓷基复合材料基体裂纹偏转能量释放率研究

张鸿 宋迎东

张鸿, 宋迎东. 陶瓷基复合材料基体裂纹偏转能量释放率研究[J]. 航空动力学报, 2007, 22(10): 1730-1736.
引用本文: 张鸿, 宋迎东. 陶瓷基复合材料基体裂纹偏转能量释放率研究[J]. 航空动力学报, 2007, 22(10): 1730-1736.
ZHANG Hong, SONG Ying-dong. Study of energy release rates for crack deflection of ceramic matrix composites[J]. Journal of Aerospace Power, 2007, 22(10): 1730-1736.
Citation: ZHANG Hong, SONG Ying-dong. Study of energy release rates for crack deflection of ceramic matrix composites[J]. Journal of Aerospace Power, 2007, 22(10): 1730-1736.

陶瓷基复合材料基体裂纹偏转能量释放率研究

基金项目: 航空科学基金资助(05C52013)

Study of energy release rates for crack deflection of ceramic matrix composites

  • 摘要: 采用虚裂纹闭合技术(VCCT)计算了基体裂纹在界面处不同传播路径的能量释放率,并结合基于能量释放率的裂纹偏转准则对陶瓷基复合材料基体裂纹偏转进行了研究.计算了弹性错配参数α和β、基体裂纹扩展长度a、基体裂纹相对扩展长度ad/ap对裂纹偏转的影响,并将VCCT计算结果与积分法的计算结果进行比较.结果表明:VCCT能够准确计算基体裂纹扩展时的能量释放率,计算结果可为研究陶瓷基复合材料失效机制提供一定参考.

     

  • [1] 张立同,成来飞.新型碳化硅陶瓷基复合材料的研究进展[J].航空制造技术,2004,1:24-32.ZHANG Litong,CHENG Laifei.Progress in research work of new CMC-SiC[J].Aeronautical Manufacturing Technology,2004,1:24-32.
    [2] He M Y,Hutchinson J W.Crack deflection at an interface between dissimilar elastic materials[J].International Journal of Solids and Structures,1989,25:1053-1067.
    [3] He M Y,Evans A G,Hutchinson J W.Crack deflection at an interface between dissimilar elastic materials:Role of Residual Stresses[J].International Journal of Solids and Structures,1994,31:3443-3455.
    [4] Gupta V,Argon A S,Suo Z.Crack deflection at an interface between two orthotropic media[J].J.Appl.Mech,1992,59:79-87.
    [5] Kumaria S,Dingth R N.Effect of interfacial shear strength on crack-fiber interaction behavior in ceramic matrix[J].J.Am.cerami.soc,1996,79:199-208.
    [6] Tullock D L,Reimanis I E,Graham A L,et al.Deflection and penetration of cracks at an interface between two dissimilar materials[J].Acta Metall Mater,1994,42:3245-52.
    [7] Dundurs J.Edge-bonded dissimilar orthogonal elastic wedges[J].J Appl Mech (Trans ASME),1969,36(5):650-652.
    [8] 杨卫.宏微观断裂力学[M].北京:国防工业出版社,1995.
    [9] Lee W,Yoo Y H,Shin H.Reconsideration of crack deflection at planar interfaces in layered systems[J].Composites Science and Technology,2004,64:2415-2423.
    [10] Martin E,Peters P W M,Leguillon D,et al.Conditions for matrix crack deflection at an interface in ceramic matrix composites[J].Materials Science and Engineering A250,1998:291-302.
    [11] Mammol A A,Graham A L,Mammoli A A.The effect of flaws on the propagation of cracks at bi-materials interfaces[J].Acta Metallurgica et Materialia,1995,43(3):1149-1156.
    [12] LIU Y F,Tanaka Y,Masuda C.Debonding mechanisms in the presence of an interphase in composites[J].Acta mater,1998,46(15):5237-5247.
    [13] Romeo A,Ballarini R.A cohesive zone model for cracks terminating at a biomaterial interface[J].International Journal of Solids and Structures,1997,11(34):1307-1326.
    [14] Parmigiania J P,Thoulessa M D.The roles of toughness and cohesive strength on crack deflection at interfaces[J].Journal of the Mechanics and Physics of Solids,2006,54:266-287.
    [15] Ahn B K,Curtin W A,Parthasarathy T A,et al.Criteria for crack deflection/penetration for fiber-reinforced ceramic matrix composites[J].Compos Sci Technol,1998,58(11):1775-84.
    [16] Byung K A.Interfacial mechanics in fiber-reinforced composites:mechanics of single and multiple cracks in CMCs[D].USA:The Faculty of the Virginia Polytechnic Institute and State University,1997.
    [17] Rybicki E F,Kanninen M F.A finite element calculation of stress intensity factors by a modified crack closure integral[J].Eng.Fracture Mech,1977,9:931-938.
    [18] 白瑞祥,陈浩然.含分层损伤复合材料加筋层合板的分层扩展研究[J].应用数学和力学,2004,4(25):368-378.BAI Ruixiang,CHEN Haoran.Numerical analysis of delamintation growth for stiffened composite laminated plates[J].Applied Mathematics and Mechanics,2004,4(25):368-378.
    [19] Krueger R M,Pierre J.Skin-stiffener debond prediction based on computational fracture analysis[R].NASA/CR-2005-213915.
    [20] Krueger R M,Pierre J.Analysis of composite skin-stiffener debond specimens using volume elements and a shell/3D modeling technique[R].NASA/CR-2002-211947.
    [21] Krueger R.The virtual crack closure technique:history,approach and applications[R].NASA/CR-2002-211628.
    [22] Lee W,Howard S J,Clegg W J.Growth of interface defects and its defect on crack deflection and toughening[J].Acta mater,1996,44(10):3905-3922.
    [23] Martin E,Leguillon D,Lacroix C.A revisited criterion for crack deflection at an interface in a brittle material[J].Compos.Sci.Technol,2001:61(12):1671-1679.
  • 加载中
计量
  • 文章访问数:  1423
  • HTML浏览量:  1
  • PDF量:  453
  • 被引次数: 0
出版历程
  • 收稿日期:  2006-09-19
  • 修回日期:  2007-01-26
  • 刊出日期:  2007-10-28

目录

    /

    返回文章
    返回