Skip to main content

Two-Phase Swirling Flow Hole Finishing

  • Chapter
  • First Online:
Surface Finishing Theory and New Technology
  • 1034 Accesses

Abstract

The traditional finishing methods such as honing, grinding, and rolling have some limitations owing to their process characteristics.

This is a preview of subscription content, log in via an institution to check access.

Access this chapter

Chapter
USD 29.95
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
eBook
USD 129.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book
USD 169.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book
USD 169.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Purchases are for personal use only

Institutional subscriptions

References

  1. S.C. Yang, M.Z. Wang, Y.X. Zhang, Surface Quality and Finishing Technology (Machinery Industry Press, Beijing, 2000)

    Google Scholar 

  2. X.H. Li, S.C. Yang, Mechanism research on the swirling air flow compounded with magnetic-field finishing. Adv. Mater. Res. 53–54, 51–55 (2008)

    Article  Google Scholar 

  3. W.H. Li, S.Q. Yang, X.H. Li, Theoretical analysis and experimental verification of hole surface finishing parts. Comput. Model. New Technol. 18(10), 411–414 (2014)

    Google Scholar 

  4. B.M. Li, B. Zhao, Modern Grinding Technology (Mechanical Industry Press, Beijing, 2003)

    Google Scholar 

  5. L.Y. Zhang, Modern Machining Technology (Mechanical Industry Press, Beijing, 2002)

    Google Scholar 

  6. S.C. Yang, S.Q. Yang, The development direction of free abrasive finishing technology. Mach. Metal Cutting 1, 11–12 (2002)

    Google Scholar 

  7. S.Q. Yang, Theoretical Analysis and Experimental Study Two-Phase Swirling Flow Hole Finishing Technology (Taiyuan University of Technology, Taiyuan, 2009)

    Google Scholar 

  8. B.W. Xue, S.C. Yang, S.Q. Yang, Comparison and analysis of all kinds of swirling flow generator and the ways of generating swirling flow. Mech. Eng. Autom. 1, 98–100 (2005)

    Article  Google Scholar 

  9. H.X. Zhang, Experimental investigation and numerical simulation of three dimensional turbulent swirling flow locally generatd in circular pipe (Taiyuan University of Technology, Taiyuan, 2004)

    Google Scholar 

  10. J.R. Ni, G.Q. Wang, H.B. Zhang, The Basic Theory and Latest Applications of Solid Liquid Two Phase Flow (Science Press, Beijing, 1991)

    Google Scholar 

  11. S.Q. Yang, W.H. Li, S.C. Yang, Experimental research on improving performance of the engine by surface finishing technology. Trans. Chin. Soc. Agric. Mach. 37(2), 17–20 (2006)

    Google Scholar 

  12. H.G. Du, L.S. Liu, W.B. Wang, Application and research of removal of inner hole burrs with abrasive water jet technology. Intern. Combust. Engine Powerplant 6, 37–40 (2007)

    Google Scholar 

  13. J.O. Kitoh, Experimental study of turbulent swirling flow in a straight pipe. J. Fluid Mech. 225, 445–479 (1991)

    Google Scholar 

  14. L.X. Zhou, The Numerical Simulation of the Turbulent Two-Phase Flow and Combustion (Tsinghua University Press, Beijing, 1991)

    Google Scholar 

  15. K.F. Cen, J.R. Fan, Theory and Calculation of Gas-Solid Multiphase Flow in Engineering (Zhejiang University Press, Hangzhou, 1990)

    Google Scholar 

  16. S.Q. Yang, W.H. Li, S.C. Yang, Numerical simulation of compulsive swirling flows field on two-phase swirling flows finishing. Comput. Appl. Technol. 29(2–4), 205–207 (2007)

    Article  Google Scholar 

  17. S.Q. Yang, W.H. Li, S.C. Yang, Simulation of flows field characteristics in the nozzle of two-phase compulsive circulation flows finishing. Adv. Mater. Res. 53–54, 9–13 (2008)

    Article  Google Scholar 

  18. F.J. Wang, Computational Fluid Dynamics Analysis: Principle and Application of CFD Software (Tsinghua University Press, Beijing, 2004)

    Google Scholar 

  19. Y.M. Lan, X.H. Sun, D.M. Huo, Numerical simulation of the 3D swirling flow in girallar pipe. J. Taiyuan Univ. Technol. 32(3), 255–259 (2001)

    Google Scholar 

  20. S. Jha, V.K. Jain, Design and development of the magnetorheological abrasive flow finishing (MRAFF) process. Int. J. Mach. Tools Manuf. 44, 1019–1029 (2004)

    Article  Google Scholar 

  21. C.H. Zhang, Study of Abrasive Water Jet Finishing and Experiment Equipment (Nanjing University of Science and Technology, Nanjing, 2003)

    Google Scholar 

  22. S.Q. Yang, Y.N. Gao, W.H. Li et al., Numerical simulation and experiment study of swirling air stream finishing. New Technol. New Process 1, 10–12 (2009)

    Google Scholar 

  23. W.H. Li, S.Q. Yang, S.C. Yang. Development and experimental research of machining medium in barrel finishing. DaLian: Proceedings of the International Conference on Surface Finishing Technology and Surface Engineering, Frontiers of Design and Manufacturing (2006)

    Google Scholar 

  24. Z.Y. Hou, S.C. Yang, S.Q. Yang, Comparison and analysis of the two-phase swirling flow field. Mech. Eng. Autom. 6, 10–12 (2004)

    Google Scholar 

  25. J. Li, Y.Z. Zhang, K.F. Li et al., On the mathematical model of the particle motion in shear turbulent flow. J. Hydraul. Eng. 6, 7–13 (1998)

    Google Scholar 

  26. W.F. Chen, Y. Chang, Three-dimensional supersonic gas-solid two-phase conduit flow with CFD/DSMC method. J. Propul. Technol. 26(3), 239–241 (2005)

    Google Scholar 

  27. S.H. Huang, W. Li, L.J. Cheng, On numerical method of resolving discrete solid particles’ motion equation and its applications. J. Hydrodyn. 14(1), 51–61 (1999)

    Google Scholar 

  28. S.Q. Yang, W.H. Li, S.C. Yang, Flows field simulation of two-phase swirling flows finishing. Adv. Mater. Res. 24–25, 17–22 (2007)

    Article  Google Scholar 

  29. Y.M. Jia, X.H. Zhang, Q.X. Zhao, et al., The computer simulations and experiment studies on swirling flow finishing. J. Taiyuan Univ. Technol. 36(6), 729–731 (2005)

    Google Scholar 

  30. A.K. Xiong, Q.D. Wei, Experiment study on a sort of strong swirling flow. Exp. Meas. Fluid Mech. 13(4), 8–13 (1999)

    Google Scholar 

  31. G.W. He, S.C. Yang, S.Q. Yang, Analysis of the equipment of forming spiral liquid-flow in an annulus. Mech. Eng. Autom. 2, 25–26 (2006)

    Google Scholar 

  32. S.Q. Yang, M.Z. Wang, S.C. Yang, Process research of swirling flow hole surface Finishing technology. Proceedings of the First International Conference on Mechanical Engineering, Shanghai, China (2000)

    Google Scholar 

  33. X.F. Wang, Experimental Study and Analysis of Swirling Flow in Pipes (Wuhan University of Technology, Wuhan, 2004)

    Google Scholar 

  34. A.K. Xiong, Study on Strong Stable Swirling Flow and Application of Nonlinear Eddy Viscosity Model (Peking University, Beijing, 1998)

    Google Scholar 

  35. Q.H. Wang, The numerical simulation of solid/liquid two-phase flow in the screw centrifugal pump (Lanzhou University of Technology, Lanzhou, 2005)

    Google Scholar 

  36. Y.L. Ma, Numerical simulation of the dense two-phase flow (Zhejiang University, Hangzhou, 2001)

    Google Scholar 

  37. S.Q. Yang, S.C. Yang, W.H. Li, Basic principle and theoretical research on the surface finishing of precise hole through gas-particle two-phase swirling flow. Key Eng. Mater. 259–260, 549–552 (2004)

    Article  Google Scholar 

  38. Y.M. Jia, X.Y. Ma, M.Z. Wang et al., The analysis of the machining mechanism and force suffered of swirling airflow finishing. China Mech. Eng. 13(7), 600–602 (2002)

    Google Scholar 

  39. S.C. Yang, S.Q. Yang, T.M. Wang, Mechanism analysis of swirling air stream finishing. Electromachining Mould 2, 13–15 (2002)

    Google Scholar 

  40. T.M. Wang, The Theory Research, Experimental Equipment Design(Control Section) and Experiment Analysis of Whirling Air-Stream Finishing (Taiyuan University of Technology, Taiyuan, 2001)

    Google Scholar 

  41. S.Q. Yang, S.C. Yang, W.H. Li, Experimental equipment for surface finishing precise hole through gas-particle two-phase swirling flow. Key Eng. Mater. 259–260, 544–548 (2004)

    Article  Google Scholar 

  42. S.Q. Yang, W.H. Li, S.C. Yang, Finishing effect and uniformity on gas-particle two-phase swirling flows finishing for hole surface. Adv. Mater. Res. 97–101, 4124–4127 (2010)

    Article  Google Scholar 

  43. Z.Y. Wu, The Experiment Equipment Design and Process Study on the Swirling Air Stream Finishing (Taiyuan University of Technology, Taiyuan, 2001)

    Google Scholar 

  44. W.H. Li, S.Q. Yang, X.C. Yang, Technique project and experimental study of gas-particle two-phase compulsive circulation flows finishing. Adv. Mater. Res. 305, 438–441 (2011)

    Article  Google Scholar 

  45. W.H. Li, S.Q. Yang, X.H. Li, Experimental study of two-phase compulsive circulation flows finishing. Adv. Mater. Res. 135, 149–153 (2010)

    Article  Google Scholar 

  46. S.Q. Yang, W.H. Li, S.C. Yang, Simulation and design of experimental equipment for two-phase compulsive circulation flows finishing. Adv. Mater. Res. 135, 319–324 (2010)

    Article  Google Scholar 

  47. X.C. Yang, Numerical simulation and experimental study for gas-particle two-phase compulsive circulation flows finishing (Taiyuan University of Technology, Taiyuan, 2011)

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Shengqiang Yang .

Rights and permissions

Reprints and permissions

Copyright information

© 2018 The Editor(s) (if applicable) and The Author(s) 2018

About this chapter

Check for updates. Verify currency and authenticity via CrossMark

Cite this chapter

Yang, S., Li, W. (2018). Two-Phase Swirling Flow Hole Finishing. In: Surface Finishing Theory and New Technology. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-662-54133-3_5

Download citation

  • DOI: https://doi.org/10.1007/978-3-662-54133-3_5

  • Published:

  • Publisher Name: Springer, Berlin, Heidelberg

  • Print ISBN: 978-3-662-54131-9

  • Online ISBN: 978-3-662-54133-3

  • eBook Packages: EngineeringEngineering (R0)

Publish with us

Policies and ethics