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Mathematical models for manufacturing a novel gear shaper cutter Shen-Wang Lin/Cheng-Shun Han/Jiu-Bin Tan/Shen Dong
The Journal of Mechanical Science and Technology, vol. 24, no. 1, pp.383-390, 2010
Abstract : The design principle and models for novel error-free shaper cutters are discussed to improve the accuracy and service life of gear cutting
tools. The modified methods for designing the tooth profile of the shaper cutter are developed by including the inverse envelope
method, midpoint-midline method and midpoint-displacement method based on the theory of geometrical reverse problem. The universal
mathematical models for manufacturing optimal tooth profile of shaper cutters are presented. The feasibility and reliability of the proposed
principle, methods and models are proved by combining the numerical examples with practical application. The design method
suggested in this paper is superior to the traditional design scheme, and will be helpful in facilitating the design and manufacture of
shaper cutters.
Keyword :
Mathematical model; Modified tooth profile; Profile error; Shaper cutter
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