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Study on the laser treatment of electroless Ni-P-SiC composite coatings 被引量:1

Study on the laser treatment of electroless Ni-P-SiC composite coatings
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摘要 Effect of the laser treatment on electroless Ni-P-SiC composite coatings was investigated. The microscopic structure, surface morphology, ingredient, and performance of the Ni-P-SiC composite coatings were synthetically analyzed by the use of X-ray diffraction apparatus, scanning electron microscope, energy distribution spectrometer, micro-hardness tester, wear tester and so on. It was found that the composite coatings did make crystalloblastic transformation after laser heating. Structural analysis confirmed that some new types of phase Ni2Si or Ni3Si compound would emerge in the Ni-P-SiC coatings after laser treatment. The micro-hardness measurement results showed that when the laser power was 450 W with scanning speed of 0.5 m/min, the hardness of the coating was superior to the coating obtained by the conventional furnace heating, and wear resistance of the composite coating after laser treating could also improve. Effect of the laser treatment on electroless Ni-P-SiC composite coatings was investigated. The microscopic structure, surface morphology, ingredient, and performance of the Ni-P-SiC composite coatings were synthetically analyzed by the use of X-ray diffraction apparatus, scanning electron microscope, energy distribution spectrometer, micro-hardness tester, wear tester and so on. It was found that the composite coatings did make crystalloblastic transformation after laser heating. Structural analysis confirmed that some new types of phase Ni2Si or Ni3Si compound would emerge in the Ni-P-SiC coatings after laser treatment. The micro-hardness measurement results showed that when the laser power was 450 W with scanning speed of 0.5 m/min, the hardness of the coating was superior to the coating obtained by the conventional furnace heating, and wear resistance of the composite coating after laser treating could also improve.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2006年第10期589-591,共3页 中国光学快报(英文版)
关键词 Composite materials Energy dispersive spectroscopy HEATING Laser applications MICROHARDNESS MORPHOLOGY Scanning electron microscopy Structural analysis Wear resistance X ray diffraction analysis Composite materials Energy dispersive spectroscopy Heating Laser applications Microhardness Morphology Scanning electron microscopy Structural analysis Wear resistance X ray diffraction analysis
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参考文献3

  • 1H. Yan.Modern technology of electroless Ni and composite coatings[]..1999
  • 2H. Shao,M. Zhou,and G. Chen. Appl. Laser . 2003
  • 3J. Lang,Z. Xing,and Q. Zhu. Chin. Plant Eng . 2003

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  • 2张恩磊,唐元洪,张勇,林良武.SiC纳米复合涂层的制备及特性[J].材料导报,2006,20(F05):71-74. 被引量:1
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  • 4UWE S, CHRISTOPH L, KLAUS F. Some recent trends in research and technology of advanced thermal barrier coatings [ J ]. Aerospace Science Technology, 2003, 7 ( 1 ) : 73 - 78.
  • 5HAYNES J A, FERBER M K, PORTER W D. Thermal cycling behavior of plasma-sprayed thermal barrier coatings with various MCrAlY bond coats [ J ]. Journal of Thermal Spray Technology, 2000, 9 ( 1 ) : 38 - 48.
  • 6WANG H Y, ZUO D W, SUN Y B, et al. Effects of nano-Al2O3p on thermal shock behaviors of NiCoCrAlY coatings by laser cladding[ J]. Advanced Materials Research, 2009, 79 - 82 : 779 - 782.
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  • 10WANG H Y, ZUO D W, CHEN Y J, et al. Effects of processing parameters on energy efficiency of squash presetting laser cladding[ J]. Materials Science Forum, 2009, 628 - 629 : 679 - 684.

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