Dynamic behavior analysis for a six axis industrial machining robot
Claudiu-Florinel Bisu (MPS), Medhi Cherif (I2M), Alain G\'erard (I2M),, Jean-Yves K'Nevez (I2M)

TL;DR
This paper analyzes the dynamic behavior of a six-axis industrial robot during machining, focusing on vibrational characteristics in different operational states to improve precision in complex applications.
Contribution
It provides a detailed analysis of the vibrational dynamics of a six-axis robot during machining, highlighting the influence of operational conditions on stability and precision.
Findings
Identification of self-excited frequencies in different configurations
Vibration behavior during spindle activation without cutting
Vibration analysis during milling operations
Abstract
The six axis robots are widely used in automotive industry for their good repeatability (as defined in the ISO92983) (painting, welding, mastic deposition, handling etc.). In the aerospace industry, robot starts to be used for complex applications such as drilling, riveting, fiber placement, NDT, etc. Given the positioning performance of serial robots, precision applications require usually external measurement device with complexes calibration procedure in order to reach the precision needed. New applications in the machining field of composite material (aerospace, naval, or wind turbine for example) intend to use off line programming of serial robot without the use of calibration or external measurement device. For those applications, the position, orientation and path trajectory precision of the tool center point of the robot are needed to generate the machining operation. This…
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Taxonomy
TopicsRobotic Mechanisms and Dynamics · Advanced Surface Polishing Techniques · Advanced machining processes and optimization
