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Automated tool trajectory planning of industrial robots for painting composite surfaces
by
Chen, Heping
, Xi, Ning
in
Algorithms
/ Automation
/ Automobile industry
/ Automotive engineering
/ CAE) and Design
/ Computer simulation
/ Computer-Aided Engineering (CAD
/ Engineering
/ Free form
/ Industrial and Production Engineering
/ Industrial robots
/ Mechanical Engineering
/ Media Management
/ Original Article
/ Spray painting
/ Surface geometry
/ Thickness
/ Trajectory planning
2008
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Automated tool trajectory planning of industrial robots for painting composite surfaces
by
Chen, Heping
, Xi, Ning
in
Algorithms
/ Automation
/ Automobile industry
/ Automotive engineering
/ CAE) and Design
/ Computer simulation
/ Computer-Aided Engineering (CAD
/ Engineering
/ Free form
/ Industrial and Production Engineering
/ Industrial robots
/ Mechanical Engineering
/ Media Management
/ Original Article
/ Spray painting
/ Surface geometry
/ Thickness
/ Trajectory planning
2008
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Automated tool trajectory planning of industrial robots for painting composite surfaces
by
Chen, Heping
, Xi, Ning
in
Algorithms
/ Automation
/ Automobile industry
/ Automotive engineering
/ CAE) and Design
/ Computer simulation
/ Computer-Aided Engineering (CAD
/ Engineering
/ Free form
/ Industrial and Production Engineering
/ Industrial robots
/ Mechanical Engineering
/ Media Management
/ Original Article
/ Spray painting
/ Surface geometry
/ Thickness
/ Trajectory planning
2008
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Automated tool trajectory planning of industrial robots for painting composite surfaces
Journal Article
Automated tool trajectory planning of industrial robots for painting composite surfaces
2008
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Overview
Automatic trajectory generation for spray painting is highly desirable for today’s automotive manufacturing. Generating paint gun trajectories for free-form surfaces to satisfy paint thickness requirements is still highly challenging due to the complex geometry of free-form surfaces. In this paper, a CAD-guided paint gun trajectory generation system for free-form surfaces has been developed. The system utilizes the CAD information of a free-form surface and a paint gun model to automatically generate a paint gun trajectory to satisfy the paint thickness requirements. Complex surfaces are divided into patches to satisfy the constraints. A trajectory integration algorithm is developed to integrate the trajectories of the patches. The paint thickness deviation from the required paint thickness is optimized by modifying the paint gun velocity. A paint thickness verification method is also developed to verify the generated trajectories. The results of simulations have shown that the trajectory generation system achieves satisfactory performance. This trajectory generation system can also be applied to generate trajectories for many other CAD-guided robot trajectory planning applications in surface manufacturing.
Publisher
Springer-Verlag,Springer Nature B.V
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