The Experts below are selected from a list of 10113 Experts worldwide ranked by ideXlab platform

Feng Yang - One of the best experts on this subject based on the ideXlab platform.

  • influence of laser Cladding Process on the magnetic properties of wc fenicr metal matrix composite coatings
    Journal of Materials Processing Technology, 2012
    Co-Authors: Jiaoxi Yang, Falan Liu, Xuanhe Miao, Feng Yang
    Abstract:

    Abstract Metal–matrix composite (MMC) coatings were deposited by laser Cladding technique with direct injection of WC–FeNiCr powder onto N1310 nonmagnetic steel matrix. Laser Cladding was conducted using a Trumpf6000 CO 2 laser. The morphology of WC–FeNiCr MMC coatings was characterized using scanning electron microscopy (SEM). Magnetic properties of WC–FeNiCr MMC coatings were examined by vibrating sample magnetometer (VSM) at room temperature. The influence of laser Cladding Process on the magnetic properties of coatings was investigated. It was found that the content of tungsten carbide and laser power have significant effect on the magnetic properties of composite coatings. The evolution of phase constitution at different laser power was identified by X-ray diffraction (XRD). The presence of an austenitic γ-(Fe, Ni), Cr 0.19 Fe 0.7 Ni 0.11 , Fe 3 W 3 C, WC and W 2 C phases were confirmed by the XRD analysis in the laser clad layer.

  • Influence of laser Cladding Process on the magnetic properties of WC–FeNiCr metal–matrix composite coatings
    Journal of Materials Processing Technology, 2012
    Co-Authors: Jiaoxi Yang, Falan Liu, Xuanhe Miao, Feng Yang
    Abstract:

    Abstract Metal–matrix composite (MMC) coatings were deposited by laser Cladding technique with direct injection of WC–FeNiCr powder onto N1310 nonmagnetic steel matrix. Laser Cladding was conducted using a Trumpf6000 CO 2 laser. The morphology of WC–FeNiCr MMC coatings was characterized using scanning electron microscopy (SEM). Magnetic properties of WC–FeNiCr MMC coatings were examined by vibrating sample magnetometer (VSM) at room temperature. The influence of laser Cladding Process on the magnetic properties of coatings was investigated. It was found that the content of tungsten carbide and laser power have significant effect on the magnetic properties of composite coatings. The evolution of phase constitution at different laser power was identified by X-ray diffraction (XRD). The presence of an austenitic γ-(Fe, Ni), Cr 0.19 Fe 0.7 Ni 0.11 , Fe 3 W 3 C, WC and W 2 C phases were confirmed by the XRD analysis in the laser clad layer.

Jiaoxi Yang - One of the best experts on this subject based on the ideXlab platform.

  • influence of laser Cladding Process on the magnetic properties of wc fenicr metal matrix composite coatings
    Journal of Materials Processing Technology, 2012
    Co-Authors: Jiaoxi Yang, Falan Liu, Xuanhe Miao, Feng Yang
    Abstract:

    Abstract Metal–matrix composite (MMC) coatings were deposited by laser Cladding technique with direct injection of WC–FeNiCr powder onto N1310 nonmagnetic steel matrix. Laser Cladding was conducted using a Trumpf6000 CO 2 laser. The morphology of WC–FeNiCr MMC coatings was characterized using scanning electron microscopy (SEM). Magnetic properties of WC–FeNiCr MMC coatings were examined by vibrating sample magnetometer (VSM) at room temperature. The influence of laser Cladding Process on the magnetic properties of coatings was investigated. It was found that the content of tungsten carbide and laser power have significant effect on the magnetic properties of composite coatings. The evolution of phase constitution at different laser power was identified by X-ray diffraction (XRD). The presence of an austenitic γ-(Fe, Ni), Cr 0.19 Fe 0.7 Ni 0.11 , Fe 3 W 3 C, WC and W 2 C phases were confirmed by the XRD analysis in the laser clad layer.

  • Influence of laser Cladding Process on the magnetic properties of WC–FeNiCr metal–matrix composite coatings
    Journal of Materials Processing Technology, 2012
    Co-Authors: Jiaoxi Yang, Falan Liu, Xuanhe Miao, Feng Yang
    Abstract:

    Abstract Metal–matrix composite (MMC) coatings were deposited by laser Cladding technique with direct injection of WC–FeNiCr powder onto N1310 nonmagnetic steel matrix. Laser Cladding was conducted using a Trumpf6000 CO 2 laser. The morphology of WC–FeNiCr MMC coatings was characterized using scanning electron microscopy (SEM). Magnetic properties of WC–FeNiCr MMC coatings were examined by vibrating sample magnetometer (VSM) at room temperature. The influence of laser Cladding Process on the magnetic properties of coatings was investigated. It was found that the content of tungsten carbide and laser power have significant effect on the magnetic properties of composite coatings. The evolution of phase constitution at different laser power was identified by X-ray diffraction (XRD). The presence of an austenitic γ-(Fe, Ni), Cr 0.19 Fe 0.7 Ni 0.11 , Fe 3 W 3 C, WC and W 2 C phases were confirmed by the XRD analysis in the laser clad layer.

Manoj Masanta - One of the best experts on this subject based on the ideXlab platform.

  • microstructure and mechanical performance of tic inconel825 composite coating deposited on aisi 304 steel by tig Cladding Process
    Journal of Materials Processing Technology, 2017
    Co-Authors: Sweta Saroj, Chinmaya Kumar Sahoo, Manoj Masanta
    Abstract:

    Abstract TiC reinforced Inconel825 based hard and wear resistance composite coating was fabricated on AISI 304 steel by TIG Cladding Process utilizing in-house prepared Inconel825 powder from the discarded chip of turning operation and commercial TiC powder. The proposed coatings have inordinate potential applications, where resistance against wear and corrosion are the foremost requirement. The TiC concentration, preplaced layer thickness and Processing current have shown significant influence on the microstructure and mechanical performance of the coating. Owing to the superior wetting behavior of the Ni-based alloy with TiC, and formation of intermediated phases excellent bond between the TiC particles and Inconel825 matrix was achieved. The micro-hardness value of the coating reached upto 1100 HV 0.05 , and the sliding abrasive wear against alumina abrasive disc reduced more than seven times as compared to the substrate.

  • microstructure and mechanical properties of tic ni coating on aisi304 steel produced by tig Cladding Process
    Journal of Materials Processing Technology, 2017
    Co-Authors: Chinmaya Kumar Sahoo, Manoj Masanta
    Abstract:

    Abstract TiC-Ni composite coating was produced by preplacing a powder mixture of TiC and Ni on AISI 304 steel substrate and subsequent TIG Cladding Process. A hard and wear resistance composite coating with improved bonding between the TiC particles and the steel matrix was obtained due to the incorporation of Ni powder. The X-ray diffraction (XRD) analysis revealed the presence of TiC and some intermetallic of Ni and Ti in the coating; those are responsible for the superior interfacial bonding and consequently higher wear resistance of the coating. The microstructure of the coating analysed through FESEM micrographs revealed that the applied current has a significant influence on the microstructure and corresponding mechanical properties. Based on the heat input, dilution of TiC on Ni-steel matrix regulates the microhardness and corresponding wear properties of the coating. Pin-on-disc type abrasive wear test performed against alumina abrasive disc shows that the TiC-Ni coating exhibit up to seventy times better wear resistance than the AISI 304 steel substrate.

Falan Liu - One of the best experts on this subject based on the ideXlab platform.

  • influence of laser Cladding Process on the magnetic properties of wc fenicr metal matrix composite coatings
    Journal of Materials Processing Technology, 2012
    Co-Authors: Jiaoxi Yang, Falan Liu, Xuanhe Miao, Feng Yang
    Abstract:

    Abstract Metal–matrix composite (MMC) coatings were deposited by laser Cladding technique with direct injection of WC–FeNiCr powder onto N1310 nonmagnetic steel matrix. Laser Cladding was conducted using a Trumpf6000 CO 2 laser. The morphology of WC–FeNiCr MMC coatings was characterized using scanning electron microscopy (SEM). Magnetic properties of WC–FeNiCr MMC coatings were examined by vibrating sample magnetometer (VSM) at room temperature. The influence of laser Cladding Process on the magnetic properties of coatings was investigated. It was found that the content of tungsten carbide and laser power have significant effect on the magnetic properties of composite coatings. The evolution of phase constitution at different laser power was identified by X-ray diffraction (XRD). The presence of an austenitic γ-(Fe, Ni), Cr 0.19 Fe 0.7 Ni 0.11 , Fe 3 W 3 C, WC and W 2 C phases were confirmed by the XRD analysis in the laser clad layer.

  • Influence of laser Cladding Process on the magnetic properties of WC–FeNiCr metal–matrix composite coatings
    Journal of Materials Processing Technology, 2012
    Co-Authors: Jiaoxi Yang, Falan Liu, Xuanhe Miao, Feng Yang
    Abstract:

    Abstract Metal–matrix composite (MMC) coatings were deposited by laser Cladding technique with direct injection of WC–FeNiCr powder onto N1310 nonmagnetic steel matrix. Laser Cladding was conducted using a Trumpf6000 CO 2 laser. The morphology of WC–FeNiCr MMC coatings was characterized using scanning electron microscopy (SEM). Magnetic properties of WC–FeNiCr MMC coatings were examined by vibrating sample magnetometer (VSM) at room temperature. The influence of laser Cladding Process on the magnetic properties of coatings was investigated. It was found that the content of tungsten carbide and laser power have significant effect on the magnetic properties of composite coatings. The evolution of phase constitution at different laser power was identified by X-ray diffraction (XRD). The presence of an austenitic γ-(Fe, Ni), Cr 0.19 Fe 0.7 Ni 0.11 , Fe 3 W 3 C, WC and W 2 C phases were confirmed by the XRD analysis in the laser clad layer.

Xuanhe Miao - One of the best experts on this subject based on the ideXlab platform.

  • influence of laser Cladding Process on the magnetic properties of wc fenicr metal matrix composite coatings
    Journal of Materials Processing Technology, 2012
    Co-Authors: Jiaoxi Yang, Falan Liu, Xuanhe Miao, Feng Yang
    Abstract:

    Abstract Metal–matrix composite (MMC) coatings were deposited by laser Cladding technique with direct injection of WC–FeNiCr powder onto N1310 nonmagnetic steel matrix. Laser Cladding was conducted using a Trumpf6000 CO 2 laser. The morphology of WC–FeNiCr MMC coatings was characterized using scanning electron microscopy (SEM). Magnetic properties of WC–FeNiCr MMC coatings were examined by vibrating sample magnetometer (VSM) at room temperature. The influence of laser Cladding Process on the magnetic properties of coatings was investigated. It was found that the content of tungsten carbide and laser power have significant effect on the magnetic properties of composite coatings. The evolution of phase constitution at different laser power was identified by X-ray diffraction (XRD). The presence of an austenitic γ-(Fe, Ni), Cr 0.19 Fe 0.7 Ni 0.11 , Fe 3 W 3 C, WC and W 2 C phases were confirmed by the XRD analysis in the laser clad layer.

  • Influence of laser Cladding Process on the magnetic properties of WC–FeNiCr metal–matrix composite coatings
    Journal of Materials Processing Technology, 2012
    Co-Authors: Jiaoxi Yang, Falan Liu, Xuanhe Miao, Feng Yang
    Abstract:

    Abstract Metal–matrix composite (MMC) coatings were deposited by laser Cladding technique with direct injection of WC–FeNiCr powder onto N1310 nonmagnetic steel matrix. Laser Cladding was conducted using a Trumpf6000 CO 2 laser. The morphology of WC–FeNiCr MMC coatings was characterized using scanning electron microscopy (SEM). Magnetic properties of WC–FeNiCr MMC coatings were examined by vibrating sample magnetometer (VSM) at room temperature. The influence of laser Cladding Process on the magnetic properties of coatings was investigated. It was found that the content of tungsten carbide and laser power have significant effect on the magnetic properties of composite coatings. The evolution of phase constitution at different laser power was identified by X-ray diffraction (XRD). The presence of an austenitic γ-(Fe, Ni), Cr 0.19 Fe 0.7 Ni 0.11 , Fe 3 W 3 C, WC and W 2 C phases were confirmed by the XRD analysis in the laser clad layer.