Modeling and simulation of micro-groove topography on cylindrical surface by elliptical vibration-assisted turning

Micro-grooving, as a form of surface texturing, has a wide array of industrial applications. However, the majority of micro-grooving operations have been mainly done for flat surfaces. In this paper, ultrasonic elliptical vibration is used to assist micro-groove turning on cylindrical surfaces and model of micro-groove topography on cylindrical surface by elliptical vibration-assisted turning is investigated. First, elliptical vibration-assisted micro-groove generation process on cylindrical surface is analyzed by considering the geometry of tool and the cross-sectional area of chip in each vibration cycle. Then, the model of micro-groove topography on cylindrical surface is established by combining the tool tip arc curve and the ultrasonic elliptical vibration-assisted cutting locus curve. In the modeling process, the trajectory equation of tool tip arc curve in elliptical vibration process is obtained by sweeping tool tip arc curve along elliptical vibration locus. Surface topography equation of micro-groove considering the machining parameters and vibration parameters can be obtained based on the established trajectory equation of tool tip arc. Thus, model of micro-groove topography on cylindrical surface is constructed based on the Boolean operation between the cylindrical surface and the obtained surface topography equation of micro-groove. Finally, simulation algorithm of micro-groove generation process is proposed based on surface topography model of micro-groove on cylindrical surface in details. The influence of machining parameters and vibration parameters on micro-groove generation is analyzed and compared based on the established surface topography model and the proposed simulation algorithm. In order to validate the proposed surface topography model and simulation algorithm, a series of micro-groove cutting experiments under different machining conditions are performed to verify the predicted effect of the established simulation model. The results show that the simulation of the established micro-groove generation model correlates well with the experimental results.

[1]  Doo-Sun Choi,et al.  Micro grooving simulation and optimization in the roughing stage , 2010 .

[2]  Ping Guo,et al.  An analysis of the surface generation mechanics of the elliptical vibration texturing process , 2013 .

[3]  Eiji Shamoto,et al.  Study on Elliptical Vibration Cutting , 1994 .

[4]  Ping Guo,et al.  Fast Generation of Micro-Channels on Cylindrical Surfaces by Elliptical Vibration Texturing , 2014 .

[5]  Ping Guo,et al.  Development of a tertiary motion generator for elliptical vibration texturing , 2013 .

[6]  Deug-Woo Lee,et al.  Modeling and machining evaluation of microstructure fabrication by fast tool servo-based diamond machining , 2014 .

[7]  Mustafizur Rahman,et al.  Modeling of the effect of tool edge radius on surface generation in elliptical vibration cutting , 2013 .

[8]  Eiji Shamoto,et al.  Ultrasonic elliptical vibration cutting , 1995 .

[9]  Sundman Bo.,et al.  エレクトロウェッティングディスプレイの油脱ぬれパターンの観測と光学的意味 | 文献情報 | J-GLOBAL 科学技術総合リンクセンター , 2008 .

[10]  Hamid Reza Karimi,et al.  Mathematical model of micro turning process , 2009 .

[11]  M. Rahman,et al.  A study of the cutting modes in the grooving of tungsten carbide , 2004 .

[12]  Daniel J. Waldorf,et al.  A Simplified Model for Ploughing Forces in Turning , 2006 .

[13]  Muhammad Aziz,et al.  Effect of Ultrasonic Vibration on Micro Grooving , 2008 .

[14]  Richard E. DeVor,et al.  Study of the mechanics of the micro-groove cutting process , 2011 .

[15]  Gi-Dae Kim,et al.  Characteristics of elliptical vibration cutting in micro-V grooving with variations in the elliptical cutting locus and excitation frequency , 2008 .

[16]  Eiji Shamoto,et al.  Ultaprecision Diamond Cutting of Hardened Steel by Applying Elliptical Vibration Cutting , 1999 .

[17]  Shuo-Jen Lee,et al.  Simulation-based fabrication of micro-helical grooves in a hydrodynamic thrust bearing by using ECMM , 2013 .