Home /Research /Design and Evaluation of Airflow Cooling System for High-Power-Density Motor for Robotic Applications
OTHER

Design and Evaluation of Airflow Cooling System for High-Power-Density Motor for Robotic Applications

Awungabeh F. Akawung, Yasutaka Fujimoto

Year
2020
Citations
7

Abstract

Due to increase in aging societies, the use of robots for human assistance has become the subject of most research focus. A necessary feature of these human assistance robots is flexibility. In order to provide mechanical flexibility, small-size and lightweight components are use in their construction. Unfortunately, small-size electric motors provide limited facility for heat dissipation. In this research, a new structural design for electric motors, with cooling support based on airflow, is proposed. The cooling structure is designed for a high power-density motor rated at 2kW, 40Arms, 15000 min <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">-1</sup> speed with 2 pole pairs surface permanent magnet. It is evaluated by performing a detailed thermal analysis of the machine using Lumped parameter thermal network model (LPTN), Finite Element Analysis (FEA), and Computational Fluid Dynamics (CFD) techniques.

Keywords

Flexibility (engineering)AirflowFinite element methodElectric motorComputational fluid dynamicsPower densityComputer scienceMechanical engineeringRobotWater cooling

Related papers

Browse all OTHER papers