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Volume 36 Issue 1
Dec.  2011
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Citation:

Study on machinability for laser-assisted machining of hydraulic carbon-graphite seal rings

  • Received Date: 2011-06-17
    Accepted Date: 2011-07-01
  • To perform high efficient turning of hydraulic carbon-graphite seal rings,the laser-assisted machining of the material of carbon-graphite seal ring was conducted using laser pre-heating.The material of carbon-graphite seal rings has the characteristics of high strength and high hardness,and is typical non-metallic difficult-to-machine material.The laser-assisted machining heats the workpiece using laser beam,improving machining efficiency as well as reducing cutting force and tool wear.The turning process of carbon-graphite M104 seal ring was focused on,and the conventional machining was compared with the laser-assisted machining.The experimental process of laser-assisted machining was designed and reasonable process parameters were selected.A high cutting efficiency was obtained.The main cutting force and radial force decreased by 23.5% and 19.9% compared with conventional machining.The temperature distribution in the cutting zone of laser-assisted machining is similar to conventional machining.The laser-assisted machining has less tool wear and can get a better surface quality.
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Study on machinability for laser-assisted machining of hydraulic carbon-graphite seal rings

  • 1. Department of Mould Design and Manufacturing, Ningbo Polytechnic, Ningbo 315800, China

Abstract: To perform high efficient turning of hydraulic carbon-graphite seal rings,the laser-assisted machining of the material of carbon-graphite seal ring was conducted using laser pre-heating.The material of carbon-graphite seal rings has the characteristics of high strength and high hardness,and is typical non-metallic difficult-to-machine material.The laser-assisted machining heats the workpiece using laser beam,improving machining efficiency as well as reducing cutting force and tool wear.The turning process of carbon-graphite M104 seal ring was focused on,and the conventional machining was compared with the laser-assisted machining.The experimental process of laser-assisted machining was designed and reasonable process parameters were selected.A high cutting efficiency was obtained.The main cutting force and radial force decreased by 23.5% and 19.9% compared with conventional machining.The temperature distribution in the cutting zone of laser-assisted machining is similar to conventional machining.The laser-assisted machining has less tool wear and can get a better surface quality.

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