切削加工中切屑形态控制及应用研究进展

Research progress on chip morphology control and application in cutting processes

  • 摘要: 随着现代制造业向高精度、高效率方向快速发展,有效地控制切屑形态已成为提升加工质量与安全性的关键环节。切屑形态不仅反映加工状态,更对加工精度、刀具寿命及生产的安全性具有重要影响。首先,基于材料变形机制,揭示了连续带状、锯齿状和崩裂状等典型切屑的形成机理。在此基础上,总结了切屑形态的预测方法,对比解析模型、有限元仿真和机器学习的优势与局限性,为主动调控切屑形态提供理论依据。其次,从切削参数调控、刀具结构优化及辅助加工工艺等方面探讨了切屑形态的控制方法,并对辅助加工工艺的作用机制、优点及适用材料进行总结。最后,总结切屑在金属固态回收、功能材料制备等领域的新型应用,对智能实时控制与绿色可持续制造发展方向提出展望。

     

    Abstract: With the rapid development of modern manufacturing towards high precision and high efficiency, effective control of chip morphology has become a key factor in improving processing quality and safety. Chip morphology not only reflects the processing state but also has a significant impact on processing accuracy, tool life and production safety. Firstly, based on the material deformation mechanism, the formation mechanism of typical chips such as continuous ribbon, serrated and fragmented chips is revealed. On this basis, the prediction methods of chip morphology are summarized, and the advantages and limitations of analytical models, finite element simulation and machine learning are compared and analyzed, providing a theoretical basis for the active regulation of chip morphology. Secondly, the control methods of chip morphology are discussed from aspects such as the regulation of cutting parameters, the optimization of tool structure and auxiliary processing technology, and the mechanism of action, advantages and applicable materials of auxiliary processing technology are summarized. Finally, the new applications of chips in fields such as solid-state recycling of metals and the preparation of functional materials are summarized, and the development direction of intelligent real-time control and green sustainable manufacturing is proposed.

     

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