Simulation Analysis of Temperature Field of Conical Friction Plate Based on Thermomechanical Coupling

HAI LAN, YU-HUAN SONG, MING HAN

Abstract


Using ABAQUS software, the temperature field in the process of sliding friction of the dual steel plate of a new friction plate-conical friction plate was simulated and analyzed by the method of thermo-mechanical coupling. The distribution of heat flux density and the convective heat transfer on different surfaces of the dual steel were considered in the calculation. It is found that the highest temperature of the dual steel during sliding is inside the tapered groove. The temperature inside and outside of the tapered groove is distributed in a low-high-low state, that is, the temperature at the bottom of the tapered groove and the top of the groove is higher than the middle position The temperature gradient of the radial node gradually becomes larger with the passage of time; the temperature distribution of the entire dual steel plate shows a symmetrical trend.

Keywords


Conical friction plate, Thermomechanical coupling, Convection heat transfer, Temperature field.Text


DOI
10.12783/dtetr/pmsms2018/24890

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