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平面载荷作用
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  “平面载荷作用”译为未确定词的双语例句
     STRESS INTENSITY FACTOR OF DISSIMILAR ORTHOTROPIC LAMINATE WITH AN EDGE CRACK ALONG THE INTERFACE UNDER ANTI-PLANE LOADING
     反平面载荷作用下带界面裂纹的不同正交异性层板的应力分析
短句来源
     Failure Mechanism for Masonry Panels with Small Size Concrete Hollow Blocks Under In-Plane Loading
     平面载荷作用下小型砼空心砌块砌体的破坏机理
短句来源
     To analyze singular electromechanical fields at a corner of wedge/junction in a piezoelectric media under inplane loading, as the first part of this work, stress equilibrium equations, Maxwell equation and boundary conditions are first employed to derive a new weak form for solving eigenpair problems in piezoelectric materials;
     为了对平面载荷作用下压电材料中切口或接头端部附近电弹性场奇异性问题进行分析,首先以应力平衡方程、Maxwell方程和和边界条件为基础,得到一种求解压电材料特征问题的弱式方程;
短句来源
  相似匹配句对
     SHAPE OPTIMIZATION OFARIGID INCLUSIN INAN ELATIC PLANE UNDER CONCENTRATED LOADS
     集中载荷作用下弹性平面刚性夹杂的形状优化
短句来源
     Antiplane strain Problems of Electrically Permeables Cracks Between Bonded Dissimilar Piezoelectric Materials under the Concentrated Loads
     集中载荷作用下的压电材料反平面界面渗透裂纹
短句来源
     The Effect of Symbol to Plane-design
     符号对平面设计的作用
短句来源
     The plastic limit load of elbows under in-plane closing bending moments is discussed.
     对平面闭合弯矩作用下弯管的极限载荷进行了分析研究。
短句来源
     Failure Mechanism for Masonry Panels with Small Size Concrete Hollow Blocks Under In-Plane Loading
     平面载荷作用下小型砼空心砌块砌体的破坏机理
短句来源
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  plane loading
These elements take care of bending stress due to out of plane loading.
      
This paper describes a damage accumulation mechanism in cross-ply CFRP laminates [02/902]2S subjected to out-of-plane loading.
      
For (θm/90n), laminates containing transversely cracked layers under general in-plane loading, the constitutive relations are derived and the effective stiffnesses are expressed as the function of crack density.
      
Complex function method and multi-polar coordinate transformation technology are used here to study scattering of circular cavity in right-angle planar space to SH-wave with out-of-plane loading on the horizontal straight boundary.
      
This paper deals with the problem of maximizing or minimizing the integral stiffness of a linearly elastic fiber reinforced composite disc of given domain and with given boundary conditions and in-plane loading along the edge.
      
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In this paper, the expressions of the stress and displacemonl fields of a dissimilar orthotropic laminate with an interfacial edge crack(dela-mination) under anti-plane shear loading,satisfying all of the basic equations, boundary conditions along the craok surfaces and conditions of continuity along the ligament of the interface are obtained by the method of complex variable. Furthermore, the coefficient of the singular term (stress intensity factor) is determined by the variational method for multi-regions....

In this paper, the expressions of the stress and displacemonl fields of a dissimilar orthotropic laminate with an interfacial edge crack(dela-mination) under anti-plane shear loading,satisfying all of the basic equations, boundary conditions along the craok surfaces and conditions of continuity along the ligament of the interface are obtained by the method of complex variable. Furthermore, the coefficient of the singular term (stress intensity factor) is determined by the variational method for multi-regions. The computation results show a satistactory convergen-cy of the stress intensity factors and the calculation is very time-sav-

本文对含有边缘界面裂纹的不同正交各向异性平板在反平面载荷作用下的位移场与应力场进行了分析,得到了满足所有基本方程以及裂纹面边界条件与交界面连续条件的位移场与应力场展开式,本文进一步应用变分原理决定应力场展开式中奇异项系数—应力强度因子,计算结果表明,应力强度因子的收敛性是令人非常满意的。

A study of interlaminar stress at a hole in a composite laminarplate is a complicated subject. Its solution belongs to the three dimensionalanisotropic elasticity. This paper presents results from a numerical study of in-terlaminar stress distribution at a hole in a fiber laminate under axial tensionand compression loading.

含圆孔纤维增强层合板的孔边层间应力研究属三维各向异性弹性力学范畴,是一个较复杂的问题。本文利用块体八结点各向异性等参元,求解了在两种平面载荷作用下,含不同圆孔孔径的多层纤维增强层合板孔边层间应力的分布。

The behavior of two collinear cracks in infinite piezoelectric materials strip subjected to anti-plane shear is investigated by a new method. The cracks are parallel to the edge of the strip. By using the Fourier transform, the problem can be solved with two pair of triple integral equations. These equations are solved using Schmidt′s method. This process is quite different from that adopted in previously. The result makes clear that stress-strength factors is only interrelated to the size of the crack and the...

The behavior of two collinear cracks in infinite piezoelectric materials strip subjected to anti-plane shear is investigated by a new method. The cracks are parallel to the edge of the strip. By using the Fourier transform, the problem can be solved with two pair of triple integral equations. These equations are solved using Schmidt′s method. This process is quite different from that adopted in previously. The result makes clear that stress-strength factors is only interrelated to the size of the crack and the thickness of the material. But it has nothing to do with the nature of material.

采用一种新的方法 ( Schmidt方法 )研究条状压电材料中共线双裂纹在平面载荷作用下的静态问题 .利用富里叶变换使问题的求解转换为求解两对三重对偶积分方程 ,这些方程可以采用 Schmidt方法来求解 .结果表明 ,应力强度因子仅与裂纹的几何尺寸、条状厚度有关 ,而与材料性质无关 .

 
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