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Air flow exploration of abrasive feed tube

Air flow exploration of abrasive feed tube
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摘要 An abrasive water-jet cutting process is one in which water pressure is raised to a very high pressure and forced through a very small orifice to form a very thin high speed jet beam. This thin jet beam is then directed through a chamber and then fed into a secondary nozzle, or mixing tube. During this process, a vacuum is generated in the cham- ber, and garnet abrasives and air are pulled into the chamber, through an abrasive feed tube, and mixes with this high speed stream of water. Because of the restrictions introduced by the abrasive feed tube geometry, a vacuum gradient is generated along the tube. Although this phenomenon has been recog- nized and utilized as a way to monitor nozzle condition and abrasive flowing conditions, yet, until now, conditions inside the abrasive feed line have not been completely understood. A possible reason is that conditions inside the abrasive feed line are complicated. Not only compressible flow but also multi- phase, multi-component flow has been involved in inside of abrasive feed tube. This paper explored various aspects of the vacuum creation process in both the mixing chamber and the abrasive feed tube. Based on an experimental exploration, an analytical framework is presented to allow theoretical calculations of vacuum conditions in the abrasive feed tube. An abrasive water-jet cutting process is one in which water pressure is raised to a very high pressure and forced through a very small orifice to form a very thin high speed jet beam. This thin jet beam is then directed through a chamber and then fed into a secondary nozzle, or mixing tube. During this process, a vacuum is generated in the cham- ber, and garnet abrasives and air are pulled into the chamber, through an abrasive feed tube, and mixes with this high speed stream of water. Because of the restrictions introduced by the abrasive feed tube geometry, a vacuum gradient is generated along the tube. Although this phenomenon has been recog- nized and utilized as a way to monitor nozzle condition and abrasive flowing conditions, yet, until now, conditions inside the abrasive feed line have not been completely understood. A possible reason is that conditions inside the abrasive feed line are complicated. Not only compressible flow but also multi- phase, multi-component flow has been involved in inside of abrasive feed tube. This paper explored various aspects of the vacuum creation process in both the mixing chamber and the abrasive feed tube. Based on an experimental exploration, an analytical framework is presented to allow theoretical calculations of vacuum conditions in the abrasive feed tube.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2009年第6期761-768,共8页 力学学报(英文版)
基金 supported by the National Innovate Research Groups Foundation of China (50621403) National Basic Research Program of China (2009CB724600).
关键词 Abrasive feed tube- Water jet cutting. Vacuum gradient Abrasive feed tube- Water jet cutting. Vacuum gradient
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参考文献6

  • 1Zeng, J., Munoz, J.: Adaptive process control system. USA Patent, Patent No: 5854744 (1998).
  • 2Conner, I., Ramulu, M.: Estimation of abrasive mass flow rate by measuring feed line vacuum during jet on-off cycling. WJTA American Water-jet Conference, Paper 3A-3 (2005).
  • 3Liu, H.T.: Evaluation of nozzle health states for AWJ machining. In: Proceedings of the 19th International Conference on Water Jetting, pp. 5-19 (2008).
  • 4Balachandran, R: Fundamental of Compressible Fluid Dynamics pp. 136-182. Prentice-Hall, New Delhi (2006).
  • 5Streeter, V.L.: Fluid Mechanics, pp. 175-245. McGrow-Hill New York (1951).
  • 6Schetz, J., Fuhs, A.: Fundamentals of Fluid Mechanics, pp. 900-904 Wiley-Interscience, New York (1999).

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