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Optimization of Comprehensive Stiffness Performance Index for Industrial Robot in Milling Process

Qintao Chen, Jizhi Yang, Pengyu Li

Year
2019
Citations
3

Abstract

Low stiffness of serial robot is the main factor limiting its application in milling task. In order to improve the stiffness characteristics of the robot, the stiffness model of the robot is established based on the kinematics model and Jacobian matrix. Then, for the milling task, the milling process is analyzed and the cutting force model is introduced. Base on that, the stiffness model of the robot is further analyzed and the stiffness performance index is proposed. At the same time, in order to avoid the singular posture of the robot during the milling process. Condition number is introduced to measure the dexterity of the robot. A comprehensive stiffness performance optimization model was established, and the posture of the robot in milling process is optimized. Finally, the posture with optimal stiffness are obtained.

Keywords

StiffnessJacobian matrix and determinantRobotRobot kinematicsKinematicsProcess (computing)Industrial robotRobot calibrationComputer scienceDirect stiffness method

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