This paper extends a previously presented CPMT framework by introducing a hierarchical DT framework that simultaneously maintains DTs of both the machine tool and the machining process, providing a foundation for AI-assisted machining applications while preserving the machine tool monitoring and teleoperation capabilities.
Abstract
Digital Twins (DTs) have emerged as a key technology for improving the monitoring, optimization, and automation of manufacturing systems. However, existing Cyber-Physical Machine Tool (CPMT) implementations primarily represent the machine tool, while the machining process remains only partially synchronized with its physical counterpart. This paper extends a previously presented CPMT framework by introducing a hierarchical DT framework that simultaneously maintains DTs of both the machine tool and the machining process. The proposed framework integrates real-time CNC operational data, a voxel-based workpiece representation, synchronized process vibration measurements, and a persistent part DT repository for process replay, traceability, and future synthetic data generation. Experimental evaluation demonstrated real-time operation at a 20 Hz machining-state update rate, interactive visualization exceeding 100 frames per second, and a mean depth reconstruction error of 0.16 mm. The implementation provides a foundation for AI-assisted machining applications while preserving the machine tool monitoring and teleoperation capabilities.
This paper explores the emerging technology of Digital Twins and their applications in the high-precision machining industry in predicting the tool life and controlling the process variation. A Digital Twin is a virtual model that mirrors a real-world device throughout its lifecycle, incorporating real-time data from t...
C. Laux· IISE Annual Conference &...· 0 citations
In this research, the design of a digital twin system for a Robot-Assembled Workpiece Transfer Station (RAWTS) and virtual commissioning with it were detailed, aiming for debugging high-repeatability, high-precision robotic motions. The system employs a structured three-layer digital twin framework, Physical, Digital,...
Yu-Ping Zang, Ye Wang, Hu-Dai Fu et al.· SAE technical paper series· 0 citations
Digital twin (DT) technology has become a transformative engineering paradigm for metal-cutting machine tool systems and materials-processing equipment, enabling real-time synchronisation, predictive analytics, and intelligent decision-making throughout the entire production cycle. This systematic review summarises the...
Oleksandr Sokolov, V. Ivanov, S. Sokolov et al.· Actuators· 0 citations
Digital twin technology has emerged as an effective approach for improving the monitoring, validation, and optimization of Computer Numerical Control (CNC) machining operations. This study presents an investigative framework integrating Computer-Aided Design/Computer-Aided Manufacturing (CAD/CAM), Software-in-the-Loop...
Anand Valiavalappil· Yanbu Journal of Engineering...· 0 citations
Digital twin-based real-time quality control in gear machining lacks closed-loop feedback, classification without visual recognition, and low-latency I/O synchronization. This paper proposes a digital twin-driven intelligent quality control framework built upon a four-layer cyber–physical architecture comprising three...
As CNC machine tools evolve toward intelligence and precision, tool condition monitoring (TCM) becomes essential for ensuring machining quality, efficiency and cost reduction. To address the limitations of existing studies—such as single function, simplex algorithm and lack of integrated platforms—this paper develops a...
Shi-Yuan Li, Zhen-Hua Jiang, Dong-Xu Wu et al.· Global Intelligent Industry...· 0 citations
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