• 表明模型较之基于经典理论剪切变形理论的脱层模型精度显著提高。

    The numerical examples show that the present delamination model is more accurate than those based on the classical theory and the first order shear deformation theory.

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  • 采用高斯径向函数一阶剪切变形理论对普通复合材料叠合固有频率进行计算

    The Gaussian radial basis functions and first-order shear deformation theory are presented to calculate the natural frequencies of generally laminated composite plates.

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  • 结果表明,高剪切变形理论计算结果未必优于一阶剪切变形理论更符合于实际。

    The calculation showed that the HSPT has the same results with First-order ones sometime.

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  • 采用级数方法首次建立了基于剪切变形理论各向异性矩形横向弯曲解析

    General analytic solutions for transverse bending of anisotropic rectangular plate using first order shear deformation theory is obtained at the first time by the complex series method (CSM).

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  • 基于剪切变形理论哈密顿原理,建立旋转合圆动力学运动方程和相应边界条件。

    Based on the first order shear deformation theory and Hamiltonian principle, the governing equations and boundary conditions of rotating multi-layer annular plate were derived.

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  • 介绍用于复合材料层合理论计算经典层合板理论剪切变形理论以及阶剪切变形理论及其各种简化形式,重点介绍了前两者理论

    This chapter shows some laminate theories such as the Classical Plate Theory and the first Order Shear Deformation Theory and the High Order Shear Deformation Theory and it's simple forms firstly.

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  • 基于剪切变形理论推导功能梯度材料圆形边界面内均布压力作用下的轴对称屈曲方程

    Based on the first-order shear deformation plate theory, axisymmetric governing buckling equations are derived for a functionally graded material circular plate subjected to in-plane pressure.

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  • 针对杨木—秸秆层合弯曲问题,利用分层剪切理论变形强度进行分析将分析结果经典理论一阶和高阶剪切变形理论结果进行了比较。

    Aimed at the bend of poplar-straw laminated beam, the theory of delamination shearing deformation was used to analyse its bending deflection and strength, and compared the results with other theories.

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  • 针对杨木—秸秆层合弯曲问题,利用分层剪切理论变形强度进行分析将分析结果经典理论一阶和高阶剪切变形理论结果进行了比较。

    Aimed at the bend of poplar-straw laminated beam, the theory of delamination shearing deformation was used to analyse its bending deflection and strength, and compared the results with other theories.

    youdao

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