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A Study on Thermal Flow Analysis in Grinding Disc Assembly for Disintegration of Secondary Battery Materials  

Dong-Min Yun (Department of Fire Protection Engineering, Sangji University)
Yong-Han Jeon (Department of Fire Protection Engineering, Sangji University)
Publication Information
Design & Manufacturing / v.16, no.4, 2022 , pp. 34-39 More about this Journal
Abstract
Sustained economic development around the world is accelerating resource depletion. Research and development of secondary batteries that can replace them is also being actively conducted. Secondary batteries are emerging as a key technology for carbon neutrality. The core of an electric vehicle is the battery (secondary battery). Therefore, in this study, the temperature change by the heat source of the hammer and the rotational speed (rpm) of the abrasive disc of the Classifier Separator Mill (CSM) was repeatedly calculated and analyzed using the heat flow simulation STAR-CCM+. As the rotational speed (rpm) of the abrasive disk increases, the convergence condition of the iteration increases. Under the condition that the inlet speed of the Classifier Separator Mill (CSM) and the heat source value of the disc hammer are the same, the disc rotation speed (rpm) and the hammer temperature are inversely proportional. As the rotational speed (rpm) of the disc increases, the hammer temperature decreases. However, since the wear rate of the secondary battery material increases due to the strong impact of the crushing rotational force, it is determined that an appropriate rpm setting is necessary. In CSM (Classifier Separator Mill), it is judged that the flow rate difference is not significantly different in the direction of the pressure outlet (Outlet 1) right above the classifier wheel with the fastest flow rate. Because the disc and hammer attachment technology is adhesive, the attachment point may deform when the temperature of the hammer rises. Therefore, it is considered necessary to develop high-performance adhesives and other adhesive technologies.
Keywords
Secondary Battery; Grinding Disc; Thermal Energy;
Citations & Related Records
Times Cited By KSCI : 4  (Citation Analysis)
연도 인용수 순위
1 Park, M.J., Jun, D.J., Kang, S.G. "Korean Secondary battery industrial ecosystem", Journal of the Korean Battery Society, Vol. 1, No. 2, p. 85-88, 2021   DOI
2 Son, D.H., Sohn, C.H., Ha, J.H. "Numerical Analysis of Unsteady Thermo-Fluid Behavior for Launched Body using Chimera Mesh", Journal of the Korea Institute of Military Science and Technology, 제13권 제6호, pp. 1013~1018, 2010
3 Kwag, S.H. "Flow Analysis in the Fuel Chamber of Engine by Applying Turbulent Models", Journal of Korean Navigation and Port Research, 제30권, 제5호, pp. 369~374, 2006   DOI
4 Kwag, S.H. "Numerical Simulation of Pipe Flow with an Obstacle by applying Turbulent Models", Journal of Korean Navigation and Port Research, 제29권, 제6호, pp. 523~528, 2005   DOI
5 Lim, D.W., Park, Y.S., Shin, B.C. "Assessment of Stability of Stability of Hydraulic Breaker Cylinder and Piston Thermal-Structural coupled Field Analysis by Finite Element Method", J. Korea Society of Die & Mold Engineering, Vol. 12, No. 1, 2018
6 Jung, K,T., Lee, J.S. "Thermal and Fluid Analysis on Air Distribution in a Elevator Car", Journal of the Korean Society of Manufacturing Process Engineers, Vol. 19, No. 1, pp. 56~62, 2020