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How to calculate the force of UG finite element analysis

Publish: 2021-05-13 22:39:21
1. I also have this problem. It should not be a software problem. I run 4.0 6.0 with the same results. Other files are generated, but op2 is not. The operation steps are the same as those in the book. Do you want to install something else. Looking forward to your reply!!!!! I've been studying it for several days, but I haven't made any progress.
2. Stress element node refers to the strain diagram of a node. Hope to help you, but UG finite element analysis has some limitations, it is recommended to learn ANSYS.
3.

This is used for advanced simulation in UG. It is recommended that you find related videos and learn while watching

4. Displacement is not the standard to judge, because the size of the part is not given, which can be large or small. The displacement is only relative to the size of the part to judge whether it meets the requirements
it is mainly about whether the calculated maximum stress value exceeds the strength value of the material. Since the analysis has been done, the maximum stress value should also have been calculated and compared with the yield strength of the material.
5. In advanced simulation, this is more complicated
6. In the post editing view display deformation [result], the scale is set to 1, and the mode (% model) is changed to (absolute)!
7. The NX NASTRAN solver is mainly used in UGNX finite element analysis, including:
NX NASTRAN basic: the basic mole of NX NASTRAN, including linear static, modal, buckling and heat transfer functions
NX NASTRAN nonlinear: supports material nonlinearity, geometric nonlinearity and contact analysis
NX NASTRAN dynamic response: calculate the dynamic response of structure under external excitation in time domain and frequency domain
NX NASTRAN superelements: decompose the super large model into small substructures
NX NASTRAN direct matrix abstraction program (DMAP): allows users to carry out secondary development and extend their algorithms and applications to NX NASTRAN
NX NASTRAN aeroelasticity: analyze the model under the action of air flow
NX NASTRAN Optimization: automatic iteration to complete the optimization design
NASTRAN for femap: Based on Windows environment, it combines the pre-processing and post-processing functions of femap with the analysis ability of NX NASTRAN
NX NASTRAN advanced aeroelasticity: it can predict the response of structure under the action of air flow and conct supersonic analysis.
8. LZ, UG advanced simulation finite element has two books worthy of reference:
one is "ugnx7.5 introction to finite element analysis and examples of fine lecture"
another book, introction to finite element analysis and examples of ugnx8.5, is published by China Machine Press
different versions should have similar ideas.
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