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Back to Trajectory Simulation and Material Removal Rate for Double Side...
Trajectory Simulation and Material Removal Rate for Double Side...
Author/Editor:
Ioan D Marinescu, PhD, Michael P Hitchiner PhD, MR Christian E Spanu, PhD
Description
Back to Trajectory Simulation and Material Removal Rate for Double Side...
A computerized kinematical model for double-sided fine grinding accounting for piece rotation inside the workpiece carrier was developed. Simulated trajectories for random points located on the end faces of the workpiece, both in a fixed global coordinate system and in each wheel's rotating coordinate system, were predicted. Experiments using different grinding kinematics and coolant conditions were carried out. A strong correlation was found between the predicted length of trajectory and the experimental material removal rate. Conclusions on the optimization of the double-sided fine grinding process were deduced. Authors: I. D. Marinescu (University of Toledo), C. Spanu (Gaiser Tool Co.), M. Hitchiner (Saint Gobain Abrasives, Inc.).
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