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1.
Simulation of springback using rotation-free shell element
基于无旋转自由度壳单元的回弹预测方法
2.
The Research on Membrane Element with Drilling Degree of Freedom Based on Thin Shell Finite Element Method;
基于薄壳有限元法的带旋转自由度膜元研究
3.
Improvements of Quadrilateral Element with Drilling Dofs Using Hybrid Finite Element Methods;
带旋转自由度的四边形元的杂交有限元改进
4.
The Asymptotic Analysis of Symmetrical Free Vibration of Revolution Shell;
旋转薄壳轴对称自由振动的渐近分析
5.
Design of Rotational Degree of Freedom in 6-DoF Micromotion Platform
六自由度微动平台旋转自由度的设计
6.
The new finite element formation and programming to reinforced round shell
带肋旋转薄壳的新型有限单元构造及编程
7.
Free revolving viscometer based on virtual instrument technique
基于虚拟仪器技术的自由旋转粘度计
8.
Research on Adaptive Method Coupling Meshless Method and Finite Element for Distortion Elements of Plates and Shells
板壳畸变单元的无网格和有限元自适应耦合方法研究
9.
The transition from ferromagnetism to paramagnetism involves a transition from ordered to disordered orientations of electron spins.
由铁磁性转变为顺磁性涉及到电子自旋的取向由有序向无序转变。
10.
A Kind of Hybrid Element Including Allman Type Drilling Degrees Of Freedom;
一种含Allman型转角自由度的杂交元
11.
single-crystal spinflip laser
单晶自旋反转激光器
12.
Solution to free vibration of Euler beam and girder system with Element-Free Galerkin method
无单元法求解欧拉梁及梁系的自由振动问题
13.
Because of the effects of tidal friction, the earth's rotation, which forms the basis for time units, is gradually slowed down .
由于潮汐的阻力作用,地球的旋转速度逐渐减慢,地球的这种旋转构成了时间单位的基矗
14.
In the process of hardware-in-the-loop simulation, the rotation error is produced because the rotational speed of rotative missile can not reach the contant value.
在半实物仿真的过程中,由于旋转导弹转速无法达到恒定的要求,引起自旋误差。
15.
Generalized conforming quadrilateral membrane element with vertex rotational freedom
含面内刚性转角自由度的四边形广义协调膜元
16.
Structure Synthesis of Single Closed-loop Multi-degree of Freedom of Over-constrained Mechanism Based on Screw Theory
基于螺旋理论的单闭环多自由度过约束机构综合
17.
The Research on the Single Degree of Freedom Control System of the Simulated Platform for Carrier Landing Guide;
着舰引导仿真转台单自由度控制系统研究
18.
Study on Milling Helical-surface Machining Tech Nique with Four-axial Non-instaneous Envelop;
四自由度无瞬心包络铣削螺旋曲面加工方法研究