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涂附磨具表面形貌测量和建模方法综述

Review on Surface Topography Measurement and Modeling Method for Coated Grinding Tool
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摘要 精确测量涂附磨具表面形貌并建模,对于评估磨具性能、理解加工过程中的材料去除机制至关重要。本文首先介绍了涂附磨具制作工艺,其次总结了目前涂附磨具表面形貌测量的技术,包括接触式和非接触式测量技术,以及它们的优缺点和适用范围;随后,对磨具表面形貌建模方法进行了归纳,并讨论了各方法的应用场景和潜在挑战,并展望了磨具表面形貌建模方法的未来发展方向。 Accurately measuring and modeling the surface morphology of coated grinding tools is crucial for evaluating tool performance and understanding material removal mechanisms during the machining process.The manufacturing process of coated grinding tools were introduced.The current techniques for measuring the surface morphology of coated grinding tools were summarized,including contact and non-contact measurement techniques,as well as their advantages,disadvantages,and scope of application.The modeling methods for surface morphology of grinding tools were summarized,and the application scenarios and potential challenges of each method were discussed.The future development direction of modeling methods for surface morphology of grinding tools was discussed.
作者 陈振 许睿 郭艳蓝 王晓晔 郭温 赵盼 CHEN Zhen;XU Rui;GUO Yan-lan;无(Xi'an Aeronautical University,Xi'an 710077;Xi'an Mingde Institute of Technology,Xi'an 710124;Northwestern Polytechnical University,Xi'an 710072)
出处 《航空精密制造技术》 2025年第4期1-3,8,共4页 Aviation Precision Manufacturing Technology
基金 2022年度陕西省液压技术重点实验室开放基金研究项目(YYJS2022KF03,YYJS2022KF11) 陕西省自然科学基础研究计划资助项目(2023-JC-YB-431) 教育部产学合作协同育人项目(220906280183841) 航空科学基金资助项目(2020Z045053001)。
关键词 涂附磨具 表面测量 粗糙表面建模 磨粒分布 coated grinding tool surface measurement rough surface modeling abrasive particle distribution
作者简介 第一作者:陈振(1990-),博士研究生,讲师。
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  • 1GONG Ya-dong, WANG Bin, WANG Wan-Shan (School of Mechanical Engineering & Automation, Northeastern University, Shenyang 110004, China).The Simulation of Grinding Wheels and Ground Surface Roughness Based on Virtual Reality Technology[J].厦门大学学报(自然科学版),2002,41(S1). 被引量:29
  • 2赵振业.高强度合金抗疲劳应用技术研究与发展[J].中国工程科学,2005,7(3):90-94. 被引量:47
  • 3陈延君,黄云,朱凯旋,王维朗,黄智.国内外砂带技术的发展及应用[J].航空制造技术,2007,50(7):86-91. 被引量:9
  • 4Doman D A,Warkentin A,Bauer R.A Survey of Recent Grinding Wheel Topography Models[J].Machine Tools&Manufacture,2006,46(3/4):343-352.
  • 5Komanduri R.Machining and Grinding:a Historical Review of the Classical Papers[J].Applied Me-chanics Reviews,1993,46(3):80-132.
  • 6Badger J A,Torrance A A.A Comparison of TwoModels to Predict Grinding Forces from Wheel Sur-face Topography[J].International Journal of Ma-chine Tools and Manufacture,2000,40(8):1099-1120.
  • 7Tonshoff H K,Peters J,Inasaki I,et al.Modelling and Simulation of Grinding Processes[J].CIRP An-nals-Manufacturing Technology,1992,41(2):677-688.
  • 8Chakrabarti S,Paul S.Numerical Modelling of Sur-face Topography in Superabrasive Grinding[J].Int.J.Adv.Manuf.Technol.,2008,39(1/2):29-38.
  • 9Aurich J C,Biermann D,Blum H,et al.Modelling and Simulation of Process:Machine Interaction in Grinding[J].Prod.Eng.Res.Devel.,2009,3(1):111-120.
  • 10Chen X,Rowe W B.Analysis and Simulation of the Grinding Process.PartⅡ:Mechanics of Grinding[J].International Journal of Machine Tools and Manufacture,1996,36(8):883-896.

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