High-Speed Precision CNC Machine Tools: The Theory and Methods of Thermal Behavior Simulation and Control summarizes the thermal-structure interaction simulation and optimization of high-speed precision machine tools. It begins by examining the current research status of high-speed precision machine tools followed by the thermal-structure interaction characteristic modeling and simulation of high-speed precision machine tools. Later chapters are related to the application of the topology optimization method and axial rotating heat pipe in high-speed precision machine tools.
High-Speed Precision CNC Machine Tools: The Theory and Methods of Thermal Behavior Simulation and Control summarizes the thermal-structure interaction simulation and optimization of high-speed precision machine tools. It begins by examining the current research status of high-speed precision machine tools followed by the thermal-structure interaction characteristic modeling and simulation of high-speed precision machine tools. Later chapters are related to the application of the topology optimization method and axial rotating heat pipe in high-speed precision machine tools.
Dr Chi Ma is an Associate Professor of Chongqing University and has long been involved in research on precision machining technology and equipment and intelligent manufacturing technology and systems. Dr Ma has served as an Expert at the Ministry of Science and Technology, is a Senior member of the Chinese Mechanical Engineering Society, a Peer Review Expert at the National Natural Science Foundation Committee, and a Member of the Digital Twin Professional Committee of the Eighth Council of the Chinese Graphics Society. He has published more than 70 academic papers.
Inhaltsangabe
1. Introduction 2.Theoretical modelling and prediction of thermal contact resistance of angular contact ball bearings 3. Heat generation mechanism analysis and transient thermal characteristics simulation of high-speed spindle system 4. Thermal-structure interaction characteristics simulation and modelling 5. Thermal boundary conditions optimization based on response surface analysis 6. Thermal error measurement, modelling and compensation of ball screw feed drive system with fixed-fixed installation 7. Multi-objective topology optimization method of cooling plate and cooling water jacket towards precision machine tool heat dissipation and thermal error control 8. Effect of gas-liquid phase change of axial rotating heat pipe (ARHP) on fluid-thermal-solid behaviours of high-speed spindle
1. Introduction 2.Theoretical modelling and prediction of thermal contact resistance of angular contact ball bearings 3. Heat generation mechanism analysis and transient thermal characteristics simulation of high-speed spindle system 4. Thermal-structure interaction characteristics simulation and modelling 5. Thermal boundary conditions optimization based on response surface analysis 6. Thermal error measurement, modelling and compensation of ball screw feed drive system with fixed-fixed installation 7. Multi-objective topology optimization method of cooling plate and cooling water jacket towards precision machine tool heat dissipation and thermal error control 8. Effect of gas-liquid phase change of axial rotating heat pipe (ARHP) on fluid-thermal-solid behaviours of high-speed spindle
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