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An improved feedrate scheduling method for NURBS interpolation in five-axis machining
Affiliation:1. State Key Lab of Digital Manufacturing Equipment & Tech, School of Mechanical Science and Engineering, Huazhong University of Science & Technology, Wuhan 430074, China;2. Guangdong Province Key Lab of Digital Manufacturing Equipment, Dongguan 523000, China;1. NC Buslab, Shenyang Institute of Computing Technology, Chinese Academy of Science, Shenyang 110168, China;2. University of Chinese Academy of Science, Beijing 100049, China;3. School of Information Engineering, Dalian University, Dalian 116021, China
Abstract:Five-axis machining plays an important role in manufacturing by dint of its high efficiency and accuracy. While two rotation axes benefit the flexibility of machining, it also brings limitations and challenges. In order to further balance machining precision and efficiency, an improved feedrate scheduling method is presented considering geometric error and kinematic constraints for the Non Uniform Rational B-Spline (NURBS) interpolation in five-axis machining. A simplification method is proposed to calculate the geometric error which describes the deviation between the ideal tool path and the real tool path induced by the non-linear movement. A linear relation between geometric error and feedrate is built to limit the feedrate. The constraints determined by single axis kinematic performance and tangential kinematic performance are also considered. Under these constraints, a constrained feedrate profile is determined. Aiming to get more constant feedrate in the difficult-to-machine areas, this work proposes a scheduling method which combines morphological filtering and S-shape acceleration/deceleration (acc/dec) mode. Simulations and experiments are performed to compare the proposed feedrate scheduling method with two previous feedrate scheduling method and the results prove that the proposed feedrate scheduling method is reliable and effective.
Keywords:Feedrate scheduling  Five-axis machining  Geometric error  Morphological filtering  NURBS interpolation
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