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钉载作用下多裂纹板的裂纹闭合接触问题
引用本文:郭树祥,许希武.钉载作用下多裂纹板的裂纹闭合接触问题[J].航空学报,2007,28(1):118-122.
作者姓名:郭树祥  许希武
作者单位:南京航空航天大学,航空宇航学院,结构强度研究所,江苏,南京,210016
基金项目:江苏省自然科学基金 , 教育部跨世纪优秀人才培养计划 , 教育部"优秀青年教师资助计划"
摘    要: 基于摩擦接触问题的数学规划解法,采用各向异性体平面弹性理论中的复势方法,建立了含裂纹群有限大各向异性板,在钉载作用下裂纹闭合或局部闭合问题的有效分析方法。忽略钉与孔间的摩擦,假设钉载沿孔边呈余弦分布,通过在可能闭合的裂纹边界引入互补变量函数并将其展成Fourier级数形式,以Faber级数为工具,应用保角映射技术和最小二乘边界配点法,导出裂纹面摩擦接触的线性互补模型,并通过算例验证了方法的有效性。数值结果表明,由于采用级数解描述板应力场和位移场,本方法具有较高的计算精度和效率,便于研究裂纹闭合对应力强度因子等断裂参数的影响。

关 键 词:裂纹群  线性互补问题  复势方法  摩擦接触  应力强度因子  Faber级数  
文章编号:1000-6893(2007)01-0118-05
修稿时间:2005年8月1日

Frictional Contact Problems of a Finite Plate with Multiple Closed Cracks under Fastener Loads
GUO Shu-xiang,XU Xi-wu.Frictional Contact Problems of a Finite Plate with Multiple Closed Cracks under Fastener Loads[J].Acta Aeronautica et Astronautica Sinica,2007,28(1):118-122.
Authors:GUO Shu-xiang  XU Xi-wu
Institution:Research Institute of Structures and Strength, College of Aerospace Engineering, Nanjing University of Aeronautics and  Astronautics
Abstract:Based on the mathematical programming procedure of the contact problem with fric tion and using the complex potential method in the anisotropic plane theory of e lasticity, an efficient approach is presented to deal with the frictional contac t of a finite anisotropic plate containing multiple cracks subjected to arbitrar y loads of fasteners. The complementary parameters introduced to the contact bou ndary are expanded into the Fourier series, and the linear complementary model c onsidering the crack closure is obtained by means of the Faber series expansion, conformal mapping and the least square boundary collocation technique. Some exa mples are given to demonstrate the correctness and effectiveness of the method. Numerical results indicate that the present method has many advantages such as h igh accuracy, good convergence, and is convenient to investigate the effects of crack closure on the fracture capabilities of structures.
Keywords:multiple crack  the linear complementary problem  com plex potential method  frictional contact  stress intensity factor  Faber series
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