Tool orientations’ generation and nonlinear error control based on complex surface meshing

Tool orientations’ planning of five-axis machining is a significant factor for impacting surface quality and overall machining accuracy of complex-curved surface parts. This paper particularly describes a practical method of tool orientation’s generation for ball cutters commonly used in complex sur...

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Published inInternational journal of advanced manufacturing technology Vol. 105; no. 10; pp. 4279 - 4288
Main Authors Hong, Xinyu, Hong, Rongjing, Lin, Xiaochuan
Format Journal Article
LanguageEnglish
Published London Springer London 01.12.2019
Springer Nature B.V
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Abstract Tool orientations’ planning of five-axis machining is a significant factor for impacting surface quality and overall machining accuracy of complex-curved surface parts. This paper particularly describes a practical method of tool orientation’s generation for ball cutters commonly used in complex surface finish machining. Based on the method of triangular meshing in surface, the points and the normal vectors are respectively extracted from the surface with unknown parameters. Each obtained normal vector is translated by Rodrigues’ rotational motion in space into the tool orientation for the ball cutter. The generated tool orientation is simple to be adjusted and can effectively avoid problems such as overcut and interference during machining. In addition, by analyzing the nonlinear error between adjacent tool orientations in machining, an interpolation is proposed approach to reduce the rotational error angle and guarantee the continuity of trajectory. After actual processing, the highlights of this method are verified.
AbstractList Tool orientations’ planning of five-axis machining is a significant factor for impacting surface quality and overall machining accuracy of complex-curved surface parts. This paper particularly describes a practical method of tool orientation’s generation for ball cutters commonly used in complex surface finish machining. Based on the method of triangular meshing in surface, the points and the normal vectors are respectively extracted from the surface with unknown parameters. Each obtained normal vector is translated by Rodrigues’ rotational motion in space into the tool orientation for the ball cutter. The generated tool orientation is simple to be adjusted and can effectively avoid problems such as overcut and interference during machining. In addition, by analyzing the nonlinear error between adjacent tool orientations in machining, an interpolation is proposed approach to reduce the rotational error angle and guarantee the continuity of trajectory. After actual processing, the highlights of this method are verified.
Author Hong, Xinyu
Lin, Xiaochuan
Hong, Rongjing
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CitedBy_id crossref_primary_10_3390_ma17122977
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Keywords Five-axis machining
Complex surface
Tool orientations
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Snippet Tool orientations’ planning of five-axis machining is a significant factor for impacting surface quality and overall machining accuracy of complex-curved...
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SubjectTerms CAE) and Design
Computer-Aided Engineering (CAD
Cutters
Engineering
Error analysis
Five axis
Industrial and Production Engineering
Interpolation
Machine shops
Machining
Mechanical Engineering
Media Management
Meshing
Nonlinear analysis
Nonlinear control
Orientation
Original Article
Surface finish
Surface properties
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Title Tool orientations’ generation and nonlinear error control based on complex surface meshing
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