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1)  anti-plane deformation
反平面变形
2)  plane deformation
平面变形
1.
Analysis of yield stress states of fcc metals under plane deformation;
面心立方金属平面变形的屈服应力状态分析
2.
A New Solution for Plane Deformation of Rectangular block by Slip-Line field Method and its Application;
矩形坯料平面变形滑移线法新解及其应用
3.
In this paper the monitoring of plane deformation of a largr work is analysed in detail,the accuracy for horizontal monitoring of the precise tracerse net is prior to ±3mm.
本文综述了某个大型工程平面变形监测的情况,用严密导线网成功地测定了平面位移,监测精度优于±3mm。
3)  plane strain
平面变形
1.
A kinematically admissible continuous velocity field to the plane strain extru sion is established in cartesian coordinates, and an upper - bound analytical solution is thus obtained in this paper.
本文采用直角坐标系建立了平面变形挤压问题的运动学许可连续速度场并获得了该问题的上解析限解。
4)  plane of deformation
形变平面
5)  anti plane strain
反平面应变
1.
The analytic solution and the intensity factor of anti plane strain problems of curvilinear cracks in piezoelectric materials are obtained by using the Faber series expansion of complex variable functions and solving Hilbert problem.
用复函数的Faber级数展开方法 ,通过求解Hilbert问题研究了含任意曲线裂纹的压电材料反平面应变问题 ,获得了问题的解析解和场强度因子。
6)  antiplane strain
反平面应变
1.
This Paper research on coupling field for antiplane strain problerns of the circular- arc electrically permeable slit cracks between bonded dissimilar piedectric materials under the concentrated forces by using analysis continuation principle of functions of complex variable.
用复变函数解析延展原理,研究了集中载荷作用下的不同压电材料反平面应变状态的共圆弧电渗透型界面裂纹的耦合场;对单个圆弧裂纹,给出了封闭形式的复函数解和场强度因子。
2.
Coupling field for antiplane strain problems of the electrically permeable slit cracks between bonded dissimilar piezoelectric materials under concentrated loads is studied using complex function method.
本文用复变函数解析延展原理,研究了集中载荷作用下的不同压电材料反平面应变 状态的电渗透型界面裂纹的耦合场:对单个裂纹,给出了封闭形式的复函数解和场强度因子。
3.
A general solution of the antiplane strain problem of circular arc cracks between bonded dissimilar piezoelectric materials under concentrated forces is provided by using analytical continuation principle in the theory of functions of complex variable.
本文应用复变函数解析延展原理,得到了集中载荷作用下的不同压电材料反平面应变状态的共圆弧界面裂纹问题的一般解;对单个圆弧界面裂纹,给出了复函数封闭解和场强度因子。
补充资料:大坝内部变形观测(见水工建筑物变形观测)


大坝内部变形观测(见水工建筑物变形观测)


  daba neibubianxing guanCe大坝内部变形观测见水工建筑物变形观测。
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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