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1.
INTEGRAL CLASSIFICATION AND INTEGRAL FORMULAS FOR TRIANGULAR THIN-PLATE ELEMENTS
三角形薄板单元的积分分类和积分公式
2.
Derivation and analytical process of calculating shears in triangular element with finite element methods are given.
基于上述关系推导了三角形薄板单元的剪力求解过程,然后给出了具体的分析步骤。
3.
THE DYNAMIC PROPERTY OF GENERALIZED CONFORMING THICK/THIN PLATE ELEMENTS ATF-PQ4a
广义协调厚薄通用板单元的动力特性分析
4.
QUASI-CONFORMING FOUR NODE PLATE BENDING ELEMENT FOR THIN PLATE VIBRATION ANALYSIS
拟协调四节点板弯曲单元在薄板振动分析中的应用
5.
In this paper,the finite element method of a six-node triangular mi-xed element is used to solve the problem of the elastic thin plate.
本文采用三角形六结点混合单元的有限元方法求解弹性薄板。
6.
Solution to the Large Deflection Problem of Thin Plates by BEM Method
用边界元法求解薄板大挠度弯曲问题
7.
The Study of Finite Element Analysis on Multi-Point Forming Process of Sheet Metal;
薄板多点成形过程有限元分析的研究
8.
The Hybrid-Trefftz Finite Element Method for Forced Vibration Analysis of Thin Plate;
薄板受迫振动问题的Trefftz有限元法
9.
Finite Element Research of Working Roll for Cold Rolling Thin Steel Plate Based on ABAQUS
基于ABAQUS冷轧薄板工作辊有限元研究
10.
THE U-TRANSFORMATION-FINITE ELEMENT METHOD FOR RECTANGULAR THIN-PLATE BENDING PROBLEMS
矩形薄板弯曲问题的U变换-有限元法
11.
New Elements for Thin/Thick and Laminated Composite Plates and the Method of Quadrilateral Area Co-ordinates;
新型厚薄板、层合板元与四边形面积坐标法
12.
Identify single point dynamic load of plate in time domain based on LabVIEW
基于LabVIEW的薄板单点载荷识别系统
13.
Improvement of Zienkiewicz Plate-element by Combined Hybrid Methods;
组合杂交有限元方法对Zienkiewicz薄板元的高精度改进
14.
A New High-Order Multi-Joint Finite Element for Thin-Walled Bar
一种新型的高次多结点薄壁杆件单元
15.
A New Torsional Stiffness Matrix of Thin-Walled Bar Elements
一种新的薄壁杆件单元扭转刚度矩阵
16.
A 5 Node 19 β Hybrid/Mixed Curved Shell Element
一种5节点19-β杂交/混合(薄)曲壳单元
17.
Study of ANSYS modelling on the combination of 3D entity unit and plate-shell unit
ANSYS三维实体单元与板壳单元的组合建模研究
18.
Inverse Identification of Materials Imployed in Sheet Metal Simulation Based on the Combination of the Finite Element Method (FEM) and the Genetic Algorithm (GA);
基于micro GA和有限元的薄板材料参数的反求