This study determined the equivalent moment of inertia of the upper rotating body of an excavator, for the inertial endurance test of an excavator slewing system. The input speed and torque of the slewing reducer were measured by an excavator slewing test, and the equivalent moment of inertia of the upper rotating body of the excavator was calculated using iterative calculation. We developed a dynamic simulation model of the excavator slewing system, and validated the model by comparing it with the slewing test results. Using the validated model, we further developed a simulation model for the inertial endurance test, that considers the moment of inertia of the upper rotating body of an excavator. We concluded that the new dynamic model for the inertial endurance test of an excavator slewing system well exemplified the actual slewing test results.
Citations
Citations to this article as recorded by
Analysis of the PTO Driveline Rattle Noise on an Agricultural Tractor Da-Vin Ahn, In-Kyung Shin, Hyun-Woo Han, Gwan-Hee Son, Young-Jun Park Journal of the Korean Society of Manufacturing Process Engineers.2019; 18(6): 45. CrossRef
A Study on Durability of Seat Height Motor Gear by Angle Moonsik Han, Jaeung Cho Journal of the Korean Society of Manufacturing Process Engineers.2019; 18(8): 18. CrossRef
A Study on the Durability due to Fork Shape of Excavator Bucket Moonsik Han, Jaeung Cho Journal of the Korean Society of Manufacturing Process Engineers.2018; 17(2): 54. CrossRef