摘要
研究粘接于均质基底材料上功能梯度涂层平面裂纹问题.假设功能梯度材料剪切模量的倒数为坐标的线性函数,而泊松比为常数.采用Fourier变换和传递矩阵法将该混合边值问题化为奇异积分方程组,通过数值求解获得应力强度因子.考察了材料梯度变化形式、结构几何尺寸和材料梯度参数对裂纹应力强度因子的影响,发现功能梯度材料涂层尺寸、裂纹长度以及材料梯度参数均对应力强度因子有显著影响.
In this paper,the plane elasticity problem for a functionally graded coating containing a crack bonded to homogeneous material substrate is studied.It is assumed that in the coating,the reciprocal of the shear modulus is a linear function of the coordinate,while Poisson's ratio keeps constant.By utilizing the Fourier transformation technique and the transfer matrix method,the mixed boundary problem is reduced to a system of singular integral equations,which are solved numerically.The influences of the geometric parameters and the graded parameter on the stress intensity factors are investigated.The numerical results show that the graded parameters,the thickness of coating,and the crack size have significant effects on the stress intensity factors.
出处
《力学学报》
EI
CSCD
北大核心
2007年第5期685-691,共7页
Chinese Journal of Theoretical and Applied Mechanics
基金
国家自然科学基金(10432030
10125209).
关键词
功能梯度材料
涂层
断裂
应力强度因子
functionally graded materials
coating
fracture
stress intensity factor