Investigation into effect of particle impact damping (PID) on surface topography in boring operation
详细信息    查看全文
  • 作者:C. V. Biju (1)
    M. S. Shunmugam (1)
  • 关键词:Boring operation ; Regenerative vibration ; Particle impact damping ; Surface topography ; Chatter marks ; Surface roughness ; Roundness error
  • 刊名:The International Journal of Advanced Manufacturing Technology
  • 出版年:2014
  • 出版时间:November 2014
  • 年:2014
  • 卷:75
  • 期:5-8
  • 页码:1219-1231
  • 全文大小:1,730 KB
  • 参考文献:1. 脜kesson H, Smirnova T, H氓kansson L (2009) Analysis of dynamic properties of boring bars concerning different clamping conditions. Mech Syst Signal Process 23(8):2629鈥?647 CrossRef
    2. Altintas Y, Weck M (2004) Chatter stability of metal cutting and grinding. CIRP Ann Manuf Technol 53(2):619鈥?42 CrossRef
    3. Bai X-M, Keer LM, Wang QJ, Snurr RQ (2009) Investigation of particle damping mechanism via particle dynamics simulations. Granul Matter 11(6):417鈥?29 CrossRef
    4. Bayly PV, Halley JE, Mann BP, Davies MA (2003) Stability of interrupted cutting by temporal finite element analysis. J Manuf Sci Eng 125(2):220鈥?25 CrossRef
    5. Chien AY (1982) Approximate harmonic models for rpundness profiles with equivalent enery mean square values. Wear 77:247鈥?52 CrossRef
    6. Compe谩n FI, Olvera D, Campa FJ, Lopez de Lacalle LN, Elias-Zuniga AD (2012) Characterization and stability analysis of a multivariable milling tool by the enhanced multistage homotopy perturbation method. Int J Mach Tools Manuf 57:27鈥?3 CrossRef
    7. Damir MNH (1979) Approximate harmonic models for rpundness profiles. Wear 57(2):217鈥?25 CrossRef
    8. Ema S, Marui E (2000) Suppression of chatter vibration of boring tools using impact dampers. Int J Mach Tools Manuf 40(8):1141鈥?156 CrossRef
    9. Friend RD, Kinra VK (2000) Particle impact damping. J Sound Vib 233(1):93鈥?18 CrossRef
    10. Hahn RS (1951) Design of Lanchester damper for elimination of metal-cutting chatter. Trans ASME 73:331鈥?35
    11. Hahn RS (1970) Boring bar with means to reduce vibrations, US 3499350 A, Mar 1970
    12. Inasaki I, Karpuschewski B, Lee HS (2001) Grinding chatter鈥攐rigin and suppression. CIRP Ann-Manuf Technol 50(2):515鈥?34 CrossRef
    13. Insperger T, Mann BP, Stepan G, Bayly PV (2003) Stability of up-milling and down-milling, part 1: alternative analytical methods. Int J Mach Tools Manuf 43(1):25鈥?4 CrossRef
    14. Koenigsberger F, Tlusty J (1970) Machine tool structures, vol 1. Pergamon Press, New Jersey
    15. Li CJ, Ulsoy AG, Endres WJ (2006) The effect of spindle speed variation on chatter suppression in rotating-tool machining. Mater Sci Forum 505鈥?07:859鈥?4 CrossRef
    16. Lin SC, Hu MR (1992) Low vibration control system in turning. Int J Mach Tools Manuf 32(5):629鈥?40 CrossRef
    17. Mao K, Wang MY, Xu Z, Chen T (2004) Simulation and characterization of particle damping in transient vibrations. J Vib Acoust 126(2):202鈥?11 CrossRef
    18. Marhadi KS, Kinra VK (2005) Particle impact damping: effect of mass ratio, material, and shape. J Sound Vib 283(1鈥?):433鈥?48 CrossRef
    19. Merdol SD, Altintas Y (2008) Virtual simulation and optimization of milling operations鈥攑art I: process simulation. J Manuf Sci Eng 130:051004-1鈥?51004-12
    20. Monnin J, Kuster F, Wegener K (2014) Optimal control for chatter mitigation in milling鈥攑art 1: modeling and control design. Control Eng Pract 24:156鈥?66 CrossRef
    21. Monnin J, Kuster F, Wegener K (2014) Optimal control for chatter mitigation in milling鈥攑art 2: experimental validation. control eng pract 24:167鈥?75 CrossRef
    22. Moradi H, Bakhtiari-Nejad F, Movahhedy MR (2008) Tuneable vibration absorber design to suppress vibrations: an application in boring manufacturing process. J Sound Vib 318(1鈥?):93鈥?08 CrossRef
    23. Moradi H, Movahhedy MR, Vossoughi GR (2009) Robust control strategy for suppression of regenerative chatter in turning. J Manuf Process 11(2):55鈥?5 CrossRef
    24. Otto A, Radons G (2013) Application of spindle speed variation for chatter suppression in turning. CIRP J Manuf Sci Technol 6(2):102鈥?09 CrossRef
    25. Panossian HV (1992) Structural damping enhancement via non-obstructive particle damping technique. J Vib Acoust 114(1):101鈥?05 CrossRef
    26. Patel BR, Mann BP, Young KA (2008) Uncharted islands of chatter instability in milling. Int J Mach Tools Manuf 48(1):124鈥?34 CrossRef
    27. Quintana G, Ciurana J (2011) Chatter in machining processes: a review. Int J Mach Tools Manuf 51(5):363鈥?76 CrossRef
    28. Rahman M, Naranayan V, Venkatesh VC (1986) Optimization of error-of-roundness in turning processes. CIRP Ann Manuf Technol 35(1):377鈥?80 CrossRef
    29. Rivin EI, Kang H (1989) Improvement of machining conditions for slender parts by tuned dynamic stiffness of tool. Int J Mach Tools Manuf 29(3):361鈥?76 CrossRef
    30. Rivin EI, Kang HL, Kops L (1989) Improving dynamic performance of cantilever boring bars. CIRP Ann Manuf Technol 38(1):377鈥?80 CrossRef
    31. Smith GT (2002) Industrial metrology鈥攕urfaces and roundness. Springer, Britain CrossRef
    32. Sweeney G, Tobias SA (1969) Survey of basic machine tool chatter research. Int J Machine Tool Design Res 9(3):217鈥?38 CrossRef
    33. Takasu S, Masuda M, Nishiguchi T, Kobayashi A (1985) Influence of study vibration with small amplitude upon surface roughness in diamond machining. CIRP Ann Manuf Technol 34(1):463鈥?67 CrossRef
    34. Tarng YS, Kao JY, Lee EC (2000) Chatter suppression in turning operations with a tuned vibration absorber. J Mater Process Technol 105(1鈥?):55鈥?0 CrossRef
    35. Tewani SG, Rouch KE, Walcott BL (1995) A study of cutting process stability of a boring bar with active dynamic absorber. Int J Mach Tools Manuf 35(1):91鈥?08 CrossRef
    36. Tobias SA, Fishwick W (1958) A Theory of Regenerative Chatter. The Engineer- London
    37. Tun莽 LT, Budak E (2012) Effect of cutting conditions and tool geometry on process damping in machining. Int J Mach Tools Manuf 57:10鈥?9 CrossRef
    38. Vela-Mart铆nez L, J谩uregui-Correa JC, Rubio-Cerda E, Herrera-Ruiz G, Lozano鈥揋uzman A (2008) Analysis of compliance between the cutting tool and the workpiece on the stability of a turning process. Int J Mach Tools Manuf 48(9):1054鈥?062 CrossRef
    39. Wan M, Zhang W-H, Dang J-W, Yang Y (2010) A unified stability prediction method for milling process with multiple delays. Int J Mach Tools Manuf 50(1):29鈥?1 CrossRef
    40. Wang M, Fei R (1999) Chatter suppression based on nonlinear vibration characteristic of electrorheological fluids. Int J Mach Tools Manuf 39(12):1925鈥?934 CrossRef
    41. Whitehouse D (2002) Surfaces and their measurement. Hermes Penton Science, London
    42. Xu Z, Wang MY, Chen T (2005) Particle damping for passive vibration suppression: numerical modelling and experimental investigation. J Sound Vib 279(3鈥?):1097鈥?120 CrossRef
  • 作者单位:C. V. Biju (1)
    M. S. Shunmugam (1)

    1. Department of Mechanical Engineering, Indian Institute of Technology Madras, Chennai, 600036, India
  • ISSN:1433-3015
文摘
This paper presents a novel method, based on the particle impact damping (PID), for the attenuation of regenerative vibration in boring operation. A specially designed boring bar having a cavity near machining-end for partial filling of spherical particles has been developed. Characteristics of boring bar with and without PID have been found from impact and shaker tests. After identifying appropriate particle size and filling volume, experiments are conducted to evaluate the performance in actual boring operations. Additional boring experiments are also conducted to confirm the performance by changing particle size and filling volumes. The collision of the particles in PID is found to attenuate regenerative vibration by the energy dissipation and thus effectively enhances stability of the boring operation. Analysis of effect of PID on surface topography in terms of chatter marks, surface roughness, and roundness of bored holes shows that the proposed method results in improvement of bore quality when compared with a boring bar without PID. It is also established that radial vibration of the boring bar has a significant influence on the surface topography obtained in boring operation.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700