An algorithm is developed for the execution of motions on the CNC hypoid generating machine using the relations on the cradle-type machine. The algorithm is based on the condition that since the tool is a rotary surface and the pinion/gear blank is also related to a rotary surface, it is necessary to ensure the same relative position of the head cutter and the pinion on both machines. The algorithm is applied for the execution of motions on the CNC hypoid generator for the manufacture of spiral bevel gears, based on the machine-tool setting variation on the cradle-type hypoid generator conducted by optimal polynomial functions up to 5th order. By using the corresponding computer program, the motion graphs of the CNC hypoid generator are determined for the manufacture of spiral bevel gears based on the optimal variation of the velocity ratio in the kinematic scheme and of the cradle radial setting on a cradle-type generator.
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ASME 2009 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference
August 30–September 2, 2009
San Diego, California, USA
Conference Sponsors:
- Design Engineering Division and Computers in Engineering Division
ISBN:
978-0-7918-4903-3
PROCEEDINGS PAPER
Advanced Manufacture of Spiral Bevel Gears on CNC Hypoid Generating Machine
Vilmos V. Simon
Vilmos V. Simon
Budapest University of Technology and Economics, Budapest, Hungary
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Vilmos V. Simon
Budapest University of Technology and Economics, Budapest, Hungary
Paper No:
DETC2009-86119, pp. 233-243; 11 pages
Published Online:
July 29, 2010
Citation
Simon, VV. "Advanced Manufacture of Spiral Bevel Gears on CNC Hypoid Generating Machine." Proceedings of the ASME 2009 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. Volume 6: ASME Power Transmission and Gearing Conference; 3rd International Conference on Micro- and Nanosystems; 11th International Conference on Advanced Vehicle and Tire Technologies. San Diego, California, USA. August 30–September 2, 2009. pp. 233-243. ASME. https://doi.org/10.1115/DETC2009-86119
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