Advanced machining processes and optimization
This cluster of papers focuses on advanced monitoring and optimization of machining operations, including topics such as surface integrity, tool wear, cutting parameters, chatter vibration, minimum quantity lubrication, and high speed machining. It also covers the machining of composite materials and the control of surface roughness in various machining processes.
Papers listed on taxonomy pages are the top few works per node from the OpenAlex snapshot. That list is not exhaustive and is not an endorsement. The topic map and the journal registry remain separate: there is still no authoritative topic-to-venue or topic-to-organization edge. Search is a lexical lookup, not a claim that a venue publishes a topic.
Most cited
- Metal cutting principles
- Analytical Prediction of Stability Lobes in Milling
- Manufacturing Automation: Metal Cutting Mechanics, Machine Tool Vibrations, and CNC Design
- Advanced monitoring of machining operations
- Mechanics of the Metal Cutting Process. I. Orthogonal Cutting and a Type 2 Chip
- Design optimization of cutting parameters for turning operations based on the Taguchi method
Most recent
- Digital Twin-Enabled Intelligent Stability Management in Ultra-Precision Machining
- Simulation-Assisted Prediction of Surface Topography for Milling Strategy Selection in Freeform 3-Axis and 5-Axis Ball-End Milling
- Taguchi-based optimization of milling parameters for en24 steel: experimental analysis of material removal rate and surface roughness
- Mechanisms of surface formation and force reduction in laser-assisted milling of carbon fiber reinforced polymer
- Drilling of Natural Fiber-Reinforced Polymer Composites: A Unified Review of Damage Mechanisms, Process Optimization, and Mitigation Strategies
- Molecular dynamics simulations of energy field-assisted machining of brittle materials: A review of methods, advances, and future prospects