Mechanical and dynamical process model for general milling tools in multi-axis machining
Explore this paper's citation graph
- Type
- dissertation
- Published
- 2011-01-01
- Cited by
- 1
- References
- 49
- OpenAlex
- https://openalex.org/W64546740
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:107888168
Keywords
Machining, Enhanced Data Rates for GSM Evolution, Mechanical engineering, Aerospace, Process (computing)
References
- Selection of cutting strategy and parameters in multi-axis machining operations for improved productivity
- MODELING OF 5-AXIS MILLING PROCESSES
- Sculptured Surface Machining: Theory and applications
- Prediction of ball-end milling forces from orthogonal cutting data
- Analysis of the Influence of Mill Helix Angle on Chatter Stability
- Handbook of Noise and Vibration Control
- Analytical models for high performance milling. Part I: Cutting forces, structural deformations and tolerance integrity
- Uncharted islands of chatter instability in milling
- A Z-map update method for linearly moving tools
- Analysis of Linear and Nonlinear Chatter in Milling
- Analytical Prediction of Stability Lobes in Ball End Milling
- DEVELOPMENT OF MECHANISTIC MODELS FOR THE PREDICTION OF MACHINING PERFORMANCE: MODEL BUILDING METHODOLOGY
- Prediction of Milling Force Coefficients From Orthogonal Cutting Data
- Mechanics and Dynamics of Serrated Cylindrical and Tapered End Mills
- Modeling of Ball-End Milling Forces with Cutter Axis Inclination
- A general mechanics and dynamics model for helical end mills
- Dynamics and Stability of Variable-pitch Milling
- Improving the high-speed finishing of forming tools for advanced high-strength steels (AHSS)
- An investigation of zero helix peripheral up-milling
- Analytical Prediction of Stability Lobes in Milling
Cited by
Related papers
- Generalized model for dynamics and stability of multi-axis milling with complex tool geometries
- Geometrical Analysis and Optimization of 5-Axis Milling Processes
- A generalised geometrical model of turning operations for cutting force modelling using edge discretisation
- NC tool path evaluator and generator for high speed milling
- A generalised model of milling forces
- Identification of the specific cutting force for geometrically defined cutting edges and varying cutting conditions
- General geometric modelling approach for machining process simulation
- Simulation Model for Micro-Milling Operations and Surface Generation
- A generalized approach for mechanics of chip formation in steady-state and dynamic orthogonal metal cutting using a new model of shear zone with parallel boundaries and its validation to cutting-forces prediction in self-piloting machining
- Modelling of static and dynamic milling forces in inclined operations with circle-segment end mills