The Experts below are selected from a list of 3888 Experts worldwide ranked by ideXlab platform

Jialuo Ding - One of the best experts on this subject based on the ideXlab platform.

  • Preliminary Investigation of Building Strategies of Maraging Steel Bulk Material Using Wire + Arc Additive Manufacture
    Journal of Materials Engineering and Performance, 2019
    Co-Authors: Xiangfang Xu, Chenglei Diao, Jialuo Ding, Supriyo Ganguly, Stewart Williams
    Abstract:

    Wire + arc additive manufacture (WAAM) is a new process for fabricating large-scale metallic components. In this paper, the use of cold metal transfer-based WAAM process for the production of maraging steel bulk material is reported. Process parameters were studied, and the effect of building strategies including oscillation, parallel and weaving on Bead Shape was investigated. The structural integrity of the WAAM bulk material regarding the surface finish, lack-of-fusion issue and microstructure was characterized. Results proved the feasibility of applying WAAM to producing maraging steel bulk material, and weaving was identified to be most recommended building strategy.

  • preliminary investigation of building strategies of maraging steel bulk material using wire arc additive manufacture
    Journal of Materials Engineering and Performance, 2019
    Co-Authors: Jialuo Ding, Chenglei Diao, Supriyo Ganguly, S.w. Williams
    Abstract:

    Wire + arc additive manufacture (WAAM) is a new process for fabricating large-scale metallic components. In this paper, the use of cold metal transfer-based WAAM process for the production of maraging steel bulk material is reported. Process parameters were studied, and the effect of building strategies including oscillation, parallel and weaving on Bead Shape was investigated. The structural integrity of the WAAM bulk material regarding the surface finish, lack-of-fusion issue and microstructure was characterized. Results proved the feasibility of applying WAAM to producing maraging steel bulk material, and weaving was identified to be most recommended building strategy.

S.w. Williams - One of the best experts on this subject based on the ideXlab platform.

  • preliminary investigation of building strategies of maraging steel bulk material using wire arc additive manufacture
    Journal of Materials Engineering and Performance, 2019
    Co-Authors: Jialuo Ding, Chenglei Diao, Supriyo Ganguly, S.w. Williams
    Abstract:

    Wire + arc additive manufacture (WAAM) is a new process for fabricating large-scale metallic components. In this paper, the use of cold metal transfer-based WAAM process for the production of maraging steel bulk material is reported. Process parameters were studied, and the effect of building strategies including oscillation, parallel and weaving on Bead Shape was investigated. The structural integrity of the WAAM bulk material regarding the surface finish, lack-of-fusion issue and microstructure was characterized. Results proved the feasibility of applying WAAM to producing maraging steel bulk material, and weaving was identified to be most recommended building strategy.

Stewart Williams - One of the best experts on this subject based on the ideXlab platform.

  • Preliminary Investigation of Building Strategies of Maraging Steel Bulk Material Using Wire + Arc Additive Manufacture
    Journal of Materials Engineering and Performance, 2019
    Co-Authors: Xiangfang Xu, Chenglei Diao, Jialuo Ding, Supriyo Ganguly, Stewart Williams
    Abstract:

    Wire + arc additive manufacture (WAAM) is a new process for fabricating large-scale metallic components. In this paper, the use of cold metal transfer-based WAAM process for the production of maraging steel bulk material is reported. Process parameters were studied, and the effect of building strategies including oscillation, parallel and weaving on Bead Shape was investigated. The structural integrity of the WAAM bulk material regarding the surface finish, lack-of-fusion issue and microstructure was characterized. Results proved the feasibility of applying WAAM to producing maraging steel bulk material, and weaving was identified to be most recommended building strategy.

Chenglei Diao - One of the best experts on this subject based on the ideXlab platform.

  • Preliminary Investigation of Building Strategies of Maraging Steel Bulk Material Using Wire + Arc Additive Manufacture
    Journal of Materials Engineering and Performance, 2019
    Co-Authors: Xiangfang Xu, Chenglei Diao, Jialuo Ding, Supriyo Ganguly, Stewart Williams
    Abstract:

    Wire + arc additive manufacture (WAAM) is a new process for fabricating large-scale metallic components. In this paper, the use of cold metal transfer-based WAAM process for the production of maraging steel bulk material is reported. Process parameters were studied, and the effect of building strategies including oscillation, parallel and weaving on Bead Shape was investigated. The structural integrity of the WAAM bulk material regarding the surface finish, lack-of-fusion issue and microstructure was characterized. Results proved the feasibility of applying WAAM to producing maraging steel bulk material, and weaving was identified to be most recommended building strategy.

  • preliminary investigation of building strategies of maraging steel bulk material using wire arc additive manufacture
    Journal of Materials Engineering and Performance, 2019
    Co-Authors: Jialuo Ding, Chenglei Diao, Supriyo Ganguly, S.w. Williams
    Abstract:

    Wire + arc additive manufacture (WAAM) is a new process for fabricating large-scale metallic components. In this paper, the use of cold metal transfer-based WAAM process for the production of maraging steel bulk material is reported. Process parameters were studied, and the effect of building strategies including oscillation, parallel and weaving on Bead Shape was investigated. The structural integrity of the WAAM bulk material regarding the surface finish, lack-of-fusion issue and microstructure was characterized. Results proved the feasibility of applying WAAM to producing maraging steel bulk material, and weaving was identified to be most recommended building strategy.

Supriyo Ganguly - One of the best experts on this subject based on the ideXlab platform.

  • Preliminary Investigation of Building Strategies of Maraging Steel Bulk Material Using Wire + Arc Additive Manufacture
    Journal of Materials Engineering and Performance, 2019
    Co-Authors: Xiangfang Xu, Chenglei Diao, Jialuo Ding, Supriyo Ganguly, Stewart Williams
    Abstract:

    Wire + arc additive manufacture (WAAM) is a new process for fabricating large-scale metallic components. In this paper, the use of cold metal transfer-based WAAM process for the production of maraging steel bulk material is reported. Process parameters were studied, and the effect of building strategies including oscillation, parallel and weaving on Bead Shape was investigated. The structural integrity of the WAAM bulk material regarding the surface finish, lack-of-fusion issue and microstructure was characterized. Results proved the feasibility of applying WAAM to producing maraging steel bulk material, and weaving was identified to be most recommended building strategy.

  • preliminary investigation of building strategies of maraging steel bulk material using wire arc additive manufacture
    Journal of Materials Engineering and Performance, 2019
    Co-Authors: Jialuo Ding, Chenglei Diao, Supriyo Ganguly, S.w. Williams
    Abstract:

    Wire + arc additive manufacture (WAAM) is a new process for fabricating large-scale metallic components. In this paper, the use of cold metal transfer-based WAAM process for the production of maraging steel bulk material is reported. Process parameters were studied, and the effect of building strategies including oscillation, parallel and weaving on Bead Shape was investigated. The structural integrity of the WAAM bulk material regarding the surface finish, lack-of-fusion issue and microstructure was characterized. Results proved the feasibility of applying WAAM to producing maraging steel bulk material, and weaving was identified to be most recommended building strategy.