Integrating Trajectory Planning with Kinematic Analysis and Joint Torques Estimation for an Industrial Robot Used in Incremental Forming Operations

Author:

Racz Sever-GabrielORCID,Crenganiș Mihai,Breaz Radu-EugenORCID,Bârsan AlexandruORCID,Gîrjob Claudia-EmiliaORCID,Biriș Cristina-MariaORCID,Tera MelaniaORCID

Abstract

Robot manufacturing involves continuous path control, which is now available for both robotic controllers and CAM software packages. However, CAM solutions are focused on generating the code for the robotic structure to follow the toolpath, without taking into consideration the dynamics and energy consumption. In this study, robot incremental forming was considered as the manufacturing process, and a simulation model, based upon Matlab-Simulink Simscape Multibody technology, was developed. The proposed model was fed with the trajectory information generated by the CAM program, and using an inverse kinematics function, it was able to generate the commands to drive the robotic structure on the technological toolpaths. The model was also used to study the dynamic behavior of the robot; external experimental data from a 3D force sensor were fed to the model to include the influence of the technological forces which appeared during the incremental forming process. Thus, using the proposed model in conjunction with the external CAM software, the influence of the workpiece position upon the joint torques could be estimated, opening the way for future optimization. The shortcomings of the model, mainly involving inaccurate information with regard to the physical properties of the robotic structure, were addressed by subtracting the dry-run joint torques from those obtained from the technological process.

Funder

Romanian Ministry of Research, Innovation and Digitization

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Control and Optimization,Mechanical Engineering,Computer Science (miscellaneous),Control and Systems Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Improving the accuracy of industrial robot movements in the process of incremental shaping;VESTNIK of Samara University. Aerospace and Mechanical Engineering;2024-07-10

2. Designing Digital Twins of Robots Using Simscape Multibody;Robotics;2024-04-14

3. Comparison of compliance error compensation approaches for robotic manipulators with double encoders;2023 IEEE International Conference on Robotics and Biomimetics (ROBIO);2023-12-04

4. A retrospective review on recent developments in the micro-incremental sheet forming process;Advances in Materials and Processing Technologies;2023-04-17

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