|
The mine hoist throat mine transport equipment , its performance has a direct impact on the security of the enterprise 's production and underground mine personnel . A long time , the design of mine hoist method is based on conventional static design -based dynamic simulation design method , compared to the aerospace, automotive, aircraft and other high - end machinery products , virtual prototype technology into a mine hoist design , in order to shorten the development cycle , reduce R \u0026 D costs , improve product quality , enhance the market competitiveness of the products . Using ADAMS software platform based on virtual prototyping technology to 2JTP × 1.2 mine hoist study established part of the winding system model , the use of 3D solid modeling software Pro / E and into ADAMS software built in ADAMS wire rope imposed constraints and load the the mine hoist wound system three - dimensional digitized virtual prototype model, and the individual components . This article lifter kinematics and dynamics of visual simulation study , steel wire rope wound on the drum hoist single container to enhance dynamic simulation and analysis of simulation results , and analysis results show that : the model and set the parameters of the simulation is correct , the measured enhance the displacement, velocity, and other relevant data in line with the actual situation . Modal analysis of the elevator shaft , analysis showed that the : hoist spindle vibration is a complex combination of bending and twisting vibration , maximum deformation of the spindle intermediate results for the dynamic analysis and design of mine hoist provide an effective means of .
|