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1.
Complex Variables Method for Several Classes of Anti-plane Crack Problems of Piezoelectric Materials;
几类压电材料反平面裂纹问题的复变方法
2.
Electric Field Gradient Effects in Anti-plane Crack Problems of Piezoelectric Ceramics;
压电陶瓷反平面裂纹问题中的电场梯度效应
3.
ANALYSIS OF DOUBLY PERIODIC IN-PLANE CRACKS USING THE EIGENFUNCTION EXPANSION-VARIATIONAL METHOD
双周期平面裂纹问题的特征展开-变分方法
4.
STRESS FIELD AROUND THE ANTIPLANE CRACK TIP IN AN ORTHOTROPIC FUNCTIONALLY GRADED MATERIAL
正交各向异性功能梯度材料反平面裂纹尖端应力场
5.
Fracture Analysis of Antiplane Interface Crack between Two Dissimilar Orthotropic Composite Materials
正交异性双材料反平面界面裂纹分析
6.
Cracks grow in directions nearly parrallel to the surface.
裂纹在近乎平行于表面的方向上生长。
7.
Antiplane Yoffe-type Moving Crack in Functionally-graded Materials;
功能梯度材料中反平面Yoffe型运动裂纹
8.
Analytical Solutions for the Anti-plane Problems with an Arc crack
圆弧裂纹的反平面剪切问题的解析解
9.
AN EXPERIMENTAL STUDY OF OUT-PLANE DISPLACEMENTFIELD NEAR THE TIP OF A THROUGH CRACKIN A PLATE UNDER BENDING
含穿透裂纹平板受弯时裂纹尖端离面位移场的实验研究
10.
The problem of an elastic plane having symmetric parabolic crack is discussed.
研究含轴对称抛物线曲裂纹平面弹性问题.
11.
Anti-plane Moving Yoffe-crack in Functionally Graded Piezoelectric Materials;
功能梯度压电材料反平面Yoffe型运动裂纹问题
12.
Computer Simulation of Planar Microcrack Growth Process and Correlation Experiment;
平面微裂纹扩展的计算机模拟与相关试验
13.
Research of Surface Crack on Phosphor Bronze Strip Produced by Horizontal Continuous Casting
水平连铸锡磷青铜表面裂纹形成原因及探究
14.
An exact solution to the antiplane problem of doubly periodic cracks in magnetoelectroelastic materials
电磁弹性材料双周期裂纹反平面问题的精确解
15.
The anti-plane fracture problems of cracked plate for functionally graded materials under shear loads is discussed.
讨论功能梯度材料裂纹板在剪切载荷作用下的反平面断裂问题。
16.
On Perfectly Stress Field at a Mixed-Mode Crack Tip under Plane and Anti-Plane Strain
关于平面应变和反平面应变复合型裂纹尖端的理想塑性应力场
17.
Singular Integral Equation Approach for Multiple-edge Crack Problems of Half-plane in Antiplane Elasticity;
反平面弹性中半平面多边缘裂纹问题的奇异积分方程解法
18.
The results are compared with observation of crack growth and spalling.
存在的是平面的、小的次表面裂纹。 最后将计算结果与实际观察的裂纹生长剥落情况对比。