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高级仿真
高级仿真 1
NX Nastran structural analysis and solution types 2
NX Nastran thermal analysis and solution types 4
线性静态分析 4
Supported linear static analysis types 4
Using materials for a linear static analysis 5
Defining boundary conditions for a linear static analysis 5
Using the iterative solver 5
模态分析 6
Supported modal analysis types 6
Using materials for a modal analysis 7
Defining boundary conditions for a modal analysis 7
Setting modal solution attributes 7
Reviewing modal analysis results 8
如何判断模态的频率 9
线性曲屈分析 9
Buckling analysis introduction 9
Linear buckling assumptions 10
Supported buckling analysis types 10
Using materials for a buckling analysis 10
Defining boundary conditions for a buckling analysis 10
Reviewing buckling analysis results 11
Nonlinear static analysis introduction 11
Supported nonlinear solution types 12
Whether to use a nonlinear solution 12
Using elements for solution type NLSTATIC 106 13
Using elements for solution type ADVNL 601, 106 13
Using materials for solution types NLSTATIC 106 and ADVNL 601, 106 14
Entering stress/strain data for solution types NLSTATIC 106 and ADVNL 601, 106 14
Defining boundary conditions for solution types NLSTATIC 106 and ADVNL 601, 106 15
NLSTATIC 106的求解设置 15
ADVNL 601, 106的求解设置 16
响应仿真 17
仿真步骤 17
Special boundary conditions 18
Solution attributes for Response Simulation 20
FRF and Transmissibility 20
Analysis events 21
Excitation loads 22
Function tools for Response Simulation utility 22
Sensors 23
Strain gages 23
产生整个模型在极值点处的响应 24
柔体分析 24
Flexible bodies workflow 24
Advanced Simulation steps 24
Motion Simulation steps 25
Connecting the flexible body FEM to the mechanism 25
Defining connection and load degrees of freedom 25
NX Nastran structural analysis and solution types
Analysis type Solution type Description Linear Static SESTATIC101 – Single Constraint
SESTATIC101 – Multi-Constraint
SESTATIC101 – Superelement Structural solve used to solve linear and some nonlinear problems, such as gaps and contact el
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