1. 中国航发动力股份有限公司,西安,710021
2. 西北工业大学,西安,710072
纸质出版:2025
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侯可为,杨森,任军学,雷海峰,赵华卫. 整体叶盘机器人柔性磨抛工艺研究[J]. 航空制造技术, 2025, 68(13): 40-48.
HOU Kewei, YANG Sen, REN Junxue, LEI Haifeng, ZHAO Huawei. Investigation of Flexible Grinding and Polishing Processes of Integral Blisk on Robot Platform[J]. Aeronautical Manufacturing Technology, 2025, 68(13): 40-48.
侯可为,杨森,任军学,雷海峰,赵华卫. 整体叶盘机器人柔性磨抛工艺研究[J]. 航空制造技术, 2025, 68(13): 40-48. DOI: 10.16080/j.issn1671-833x.2025.13.040.
HOU Kewei, YANG Sen, REN Junxue, LEI Haifeng, ZHAO Huawei. Investigation of Flexible Grinding and Polishing Processes of Integral Blisk on Robot Platform[J]. Aeronautical Manufacturing Technology, 2025, 68(13): 40-48. DOI: 10.16080/j.issn1671-833x.2025.13.040.
整体叶盘是新一代航空发动机实现结构创新和技术跨越的核心关键零部件,其型面精度与表面质量对航空发动机的疲劳性能和气动性能影响显著。目前国内整体叶盘磨抛工艺仍然处于落后的人工打磨阶段,叶片表面质量差,一致性难以保证,人工打磨劳动强度大、效率低。本文介绍了整体叶盘机器人砂带磨抛设备及其工艺原理,并利用该设备开展了针对钛合金整体叶盘磨抛工艺试验。基于整体叶盘的结构特点和人工打磨经验,提出了整体叶盘自动化磨抛工艺方法,包括磨抛轨迹规划方法、磨具和加工参数优化方法等,并通过工艺过程控制和参数反馈调整机制,实现其在整体叶盘加工中的应用。结果表明,整体叶盘机器人磨抛后表面粗糙度R
a
小于0.4 μm,磨抛效率和磨抛型面一致性显著提高,叶片磨抛去除量为0.008 ~ 0.013 mm,磨抛后叶型轮廓度满足设计公差要求。
The integral blisk is a key component in enabling the new generation of aircraft engines to achieve structural innovation and a technological leap. Its profile accuracy and surface quality have a significant impact on the fatigue and aerodynamic performance of the aircraft engine. Currently
the integral blisk grinding and polishing process in China remains in a backward stage
characterized by manual polishing
which results in poor blade surface quality
inconsistent performance
high labor intensity and low efficiency. This paper introduces the robot belt grinding and polishing equipment for integral blisks and its technical principle
and uses this equipment to carry out the process testing of the titanium alloy
integral blisk. Based on the structural characteristics of the integral blisk and the experience of manual polishing methods
this paper proposes an automated polishing process method for integral blisk
including polishing trajectory planning
optimization of grinding tools and processing parameters
and realizes its application in the processing of integral blisk through process control and parameter feedback adjustment. The results show that the surface roughness R
a
of the integral blisk after robot polishing is less than 0.4 μm
the grinding and polishing efficiency is significantly improved
and the consistency of the grinding and polishing profile is also enhanced remarkably. The material removal amount of the blades during polishing is 0.008–0.013 mm
and the blade profile tolerance meets the design requirements.
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