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Implementation of Real-Time Machining Process Control Based on Fuzzy Logic in a New STEP-NC Compatible System

Author

Listed:
  • Po Hu
  • Zhenyu Han
  • Yunzhong Fu
  • Hongya Fu

Abstract

Implementing real-time machining process control at shop floor has great significance on raising the efficiency and quality of product manufacturing. A framework and implementation methods of real-time machining process control based on STEP-NC are presented in this paper. Data model compatible with ISO 14649 standard is built to transfer high-level real-time machining process control information between CAPP systems and CNC systems, in which EXPRESS language is used to define new STEP-NC entities. Methods for implementing real-time machining process control at shop floor are studied and realized on an open STEP-NC controller, which is developed using object-oriented, multithread, and shared memory technologies conjunctively. Cutting force at specific direction of machining feature in side mill is chosen to be controlled object, and a fuzzy control algorithm with self-adjusting factor is designed and embedded in the software CNC kernel of STEP-NC controller. Experiments are carried out to verify the proposed framework, STEP-NC data model, and implementation methods for real-time machining process control. The results of experiments prove that real-time machining process control tasks can be interpreted and executed correctly by the STEP-NC controller at shop floor, in which actual cutting force is kept around ideal value, whether axial cutting depth changes suddenly or continuously.

Suggested Citation

  • Po Hu & Zhenyu Han & Yunzhong Fu & Hongya Fu, 2016. "Implementation of Real-Time Machining Process Control Based on Fuzzy Logic in a New STEP-NC Compatible System," Mathematical Problems in Engineering, Hindawi, vol. 2016, pages 1-14, June.
  • Handle: RePEc:hin:jnlmpe:9814973
    DOI: 10.1155/2016/9814973
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