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Flexible Polishing Machine with Dual Grinding Heads for Aeroengine Blade and Blisk

机译:柔性抛光机,带双磨头用于航空发动机刀片和眨眼

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The blade and blisk manufacturing includes polishing process when the surface roughness and size requirement of profile are disqualified after milling process. This polishing process is mainly carried out manually by skilled workers or NC machines. However, the existing polishing technology always leads to surface quality instability and inconsistency because of the complex free-form surface of blade and blisk. Therefore, in this paper, based on the research of polishing requirements and methods of blade and blisk, an automatic 6-axis polishing machine was proposed in order to enhance surface quality. And then, a polishing mechanism was designed using flexible technique to make the polishing tool accommodate surface waviness which was produced in milling process. In addition, the working principle and control method of flexible polishing mechanism were studied. Finally, the polishing test results of blade and blisk showed that the profile error was about 0.06mm and the surface roughness was less than Ra0.4 after automatic polishing. Compared with the manual polishing process, the automatic polishing technology not only increased the polishing efficiency and quality stability, but also reduced labor intensity largely.
机译:刀片和眨材制造包括抛光过程,当铣削过程后曲线的表面粗糙度和尺寸要求被取消资格时。该抛光过程主要由技术人员或NC机械手动进行。然而,由于刀片的复杂自由形式,现有的抛光技术总是导致表面质量不稳定和不一致。因此,在本文的基础上,基于抛光要求和叶片和眨眼的方法,提出了一种自动6轴抛光机,以提高表面质量。然后,使用柔性技术设计抛光机构,以使抛光工具适应在研磨过程中产生的表面波纹。此外,研究了柔性抛光机理的工作原理和控制方法。最后,刀片和眨眼的抛光测试结果表明,轮廓误差约为0.06mm,在自动抛光后,表面粗糙度小于Ra0.4。与手动抛光过程相比,自动抛光技术不仅提高了抛光效率和质量稳定性,而且在很大程度上降低了劳动强度。

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