Evaluating the Tool Point Dynamic Repeatability for High-Speed Machining Applications | NIST
Explore this paper's citation graph
- Type
- article
- Published
- 2001-11-01
- Cited by
- 11
- References
- 8
- OpenAlex
- https://openalex.org/W43633563
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:55697017
Keywords
Machining, Control theory (sociology), Point (geometry), Stability (learning theory), Repeatability
References
- Predicting High-Speed Machining Dynamics by Substructure Analysis
- The Effect of Tool Length on Stable Metal Removal Rate in High Speed Milling
- Improving High-Speed Machining Material Removal Rates by Rapid Dynamic Analysis
- On the Dynamics of High-Speed Milling with Long, Slender Endmills
- Analytical Prediction of Stability Lobes in Milling
- Stabilizing chatter by automatic spindle speed regulation
Cited by
- Three Dimensional Dynamics of Micro Tools and Miniature Ultra-High-Speed Spindles
- Dynamics of ultra-high-speed (UHS) spindles used for micromachining
- Productivity Improvement through Modeling: An Overview of Manufacturing Experience for the Food Industry
- Analytical modeling of spindle-tool dynamics on machine tools using Timoshenko beam model and receptance coupling for the prediction of tool point FRF
- Tool point frequency response function prediction using RCSA based on Timoshenko beam model
- Identification of a Lathe Spindle Dynamics Using Extended Inverse Receptance Coupling
- The Dynamic Repeatability of a Machine Tool–Holder–Workpiece System
- Dynamic performance of industrial robots in the secondary carbon fiber-reinforced plastics machining
- İŞLEME MERKEZLERİNDE İŞ MİLİ - TAKIM TUTUCU - TAKIM SİSTEMİNİN DİNAMİK MODELLENMESİ
- Analytical modeling of spindle–tool dynamics on machine tools using Timoshenko beam model and receptance coupling for the prediction of tool point FRF
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