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Since 1980 they have been involved in design and manufacturing of gears with leading automotive, marine, oil/gas, mining, and aerospace companies around the world. In 1986 he has developed his first software for 3d simulation of spiral bevel gear tooth geometry and tooth contact pattern based on manufacturing summary of Gleason gear cutting
machines. The new method of gear geometry simulation was used for the first time in production of spiral bevel gears for Mi-28 helicopter in 1987. Accurate 3d modeling of the gear tooth has become very useful for commercial applications. In 1998 he has developed advanced engineering software library for Delphi division of General Motors which included 3d CAD modeling programs for worm face gears, worm gears, ball screws, variable ratio racks, helical gears. In 2002, in Fukuoka, Japan, I have presented a new spiral bevel gear software to simulate Gleason and Klingelnberg gear cutting in 3d with machine summary calculations. This spiral bevel software is known for the highest resolution of 3d modeling. The accurate 3d modeling capabilities of spiral bevel and hypoid gears have become popular since 2008 when 5-axis CNC machining of spiral bevel gears entered practical production.