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Dynamics Simulation of Gear Meshing Based on Virtual Prototype

Miao Liu

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Abstract

Through the Pro/E to establish the involute cylindrical gears accurate three-dimensional model, and the use of ADAMS for dynamic simulation analysis of gears meshing, obtained a series of simulation results. Through the simulation results of the analysis and comparison with the theoretical calculations and found that the error of the virtual prototype simulation results and the calculation results was less than 1%, and the former data was closer to the truth. The results of gear meshing analysis based on Pro / E and ADAMS virtual prototyping technology is reasonable and correct.

About this research paper

What this paper is about

Through the Pro/E to establish the involute cylindrical gears accurate three-dimensional model, and the use of ADAMS for dynamic simulation analysis of gears meshing, obtained a series of simulation results. Through the simulation results of the analysis and comparison with the theoretical calculations and found that the error of the virtual prototype simulation results and the calculation results was less than 1%, and the former data was closer to the truth. The results of gear meshing analysis based on Pro / E and ADAMS virtual prototyping technology is reasonable and correct.

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Available abstract

Through the Pro/E to establish the involute cylindrical gears accurate three-dimensional model, and the use of ADAMS for dynamic simulation analysis of gears meshing, obtained a series of simulation results. Through the simulation results of the analysis and comparison with the theoretical calculations and found that the error of the virtual prototype simulation results and the calculation results was less than 1%, and the former data was closer to the truth. The results of gear meshing analysis based on Pro / E and ADAMS virtual prototyping technology is reasonable and correct.

Key concepts: Virtual prototyping, Involute, Dynamic simulation, Computer science, Simulation, Engineering, Engineering drawing, Mechanical engineering

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