The Experts below are selected from a list of 312 Experts worldwide ranked by ideXlab platform

L. Cota-araiza - One of the best experts on this subject based on the ideXlab platform.

  • Surface Analysis of the Environmental Corrosion of Zinalco (Zn-22Al-2Cu) Alloy
    MRS Online Proceedings Library, 2004
    Co-Authors: R. Guerrero-penalv, M.h. Farías, L. Cota-araiza
    Abstract:

    The surface of a set of zinalco (Zn-22Al-2Cu) samples was prepared by mechanical polishing (MP) and by electropolishing (EP). Samples were subjected to Environmental Corrosion during 56 days and studied by x-ray photoelectron spectroscopy (XPS), Auger electron spectroscopy (AES), scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). Differences in relative atomic concentration ratio of Al/Zn in oxides of the surface layer were obtained and they are related to the bulk microstructure. A different Corrosion behavior is observed between MP and EP samples and it is explained in terms of surface composition and morphology. The initial growth of Corrosion products was observed in EP samples and a Corrosion model is proposed. The surface of both types of samples can be modified by lowenergy argon ion bombardment.

  • Surface analysis of the Environmental Corrosion of zinalco (Zn–22Al–2Cu) alloy
    Applied Surface Science, 2002
    Co-Authors: R Guerrero, M.h. Farías, L. Cota-araiza
    Abstract:

    Abstract The surface of a set of zinalco (Zn–22Al–2Cu) samples was prepared by mechanical polishing (MP) and by electropolishing (EP). Samples were subjected to Environmental Corrosion during 56 days and studied by X-ray photoelectron spectroscopy (XPS), Auger electron spectroscopy (AES), scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). Differences in relative atomic concentration ratio of Al/Zn in oxides of the surface layer were obtained and they are related to the bulk microstructure. A different Corrosion behavior is observed between MP and EP samples and it is explained in terms of the surface composition and morphology. The initial growth of Corrosion products was observed in EP samples and a Corrosion model is proposed. The surface of both types of samples can be modified by low energy argon ion bombardment.

R Guerrero - One of the best experts on this subject based on the ideXlab platform.

  • Surface analysis of the Environmental Corrosion of zinalco (Zn–22Al–2Cu) alloy
    Applied Surface Science, 2002
    Co-Authors: R Guerrero, M.h. Farías, L. Cota-araiza
    Abstract:

    Abstract The surface of a set of zinalco (Zn–22Al–2Cu) samples was prepared by mechanical polishing (MP) and by electropolishing (EP). Samples were subjected to Environmental Corrosion during 56 days and studied by X-ray photoelectron spectroscopy (XPS), Auger electron spectroscopy (AES), scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). Differences in relative atomic concentration ratio of Al/Zn in oxides of the surface layer were obtained and they are related to the bulk microstructure. A different Corrosion behavior is observed between MP and EP samples and it is explained in terms of the surface composition and morphology. The initial growth of Corrosion products was observed in EP samples and a Corrosion model is proposed. The surface of both types of samples can be modified by low energy argon ion bombardment.

M.h. Farías - One of the best experts on this subject based on the ideXlab platform.

  • Surface Analysis of the Environmental Corrosion of Zinalco (Zn-22Al-2Cu) Alloy
    MRS Online Proceedings Library, 2004
    Co-Authors: R. Guerrero-penalv, M.h. Farías, L. Cota-araiza
    Abstract:

    The surface of a set of zinalco (Zn-22Al-2Cu) samples was prepared by mechanical polishing (MP) and by electropolishing (EP). Samples were subjected to Environmental Corrosion during 56 days and studied by x-ray photoelectron spectroscopy (XPS), Auger electron spectroscopy (AES), scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). Differences in relative atomic concentration ratio of Al/Zn in oxides of the surface layer were obtained and they are related to the bulk microstructure. A different Corrosion behavior is observed between MP and EP samples and it is explained in terms of surface composition and morphology. The initial growth of Corrosion products was observed in EP samples and a Corrosion model is proposed. The surface of both types of samples can be modified by lowenergy argon ion bombardment.

  • Surface analysis of the Environmental Corrosion of zinalco (Zn–22Al–2Cu) alloy
    Applied Surface Science, 2002
    Co-Authors: R Guerrero, M.h. Farías, L. Cota-araiza
    Abstract:

    Abstract The surface of a set of zinalco (Zn–22Al–2Cu) samples was prepared by mechanical polishing (MP) and by electropolishing (EP). Samples were subjected to Environmental Corrosion during 56 days and studied by X-ray photoelectron spectroscopy (XPS), Auger electron spectroscopy (AES), scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). Differences in relative atomic concentration ratio of Al/Zn in oxides of the surface layer were obtained and they are related to the bulk microstructure. A different Corrosion behavior is observed between MP and EP samples and it is explained in terms of the surface composition and morphology. The initial growth of Corrosion products was observed in EP samples and a Corrosion model is proposed. The surface of both types of samples can be modified by low energy argon ion bombardment.

Bruce H. Thomas - One of the best experts on this subject based on the ideXlab platform.

  • visualising Environmental Corrosion in outdoor augmented reality
    Australasian User Interface Conference, 2011
    Co-Authors: James A. Walsh, Bruce H. Thomas
    Abstract:

    This paper provides a description of outdoor visualisation of Environmental Corrosion data. This system was developed to aid in the visual understanding of data from wireless sensors used to monitor large structures. Due to the laborious manual inspections required for large structures (such as bridges), wireless Environmental sensors have been designed to automate this process. Our system visualizes this information in its real-world context using the Tinmith mobile outdoor augmented reality system. We provide an overview of the visualizations, outlining a user study that was conducted to determine the effectiveness of the visualizations in providing the user with context-sensitive information, along with the preliminary results of this study. The paper concludes with an overview of future work on the system and final thoughts.

  • AUIC - Visualising Environmental Corrosion in outdoor augmented reality
    2011
    Co-Authors: James A. Walsh, Bruce H. Thomas
    Abstract:

    This paper provides a description of outdoor visualisation of Environmental Corrosion data. This system was developed to aid in the visual understanding of data from wireless sensors used to monitor large structures. Due to the laborious manual inspections required for large structures (such as bridges), wireless Environmental sensors have been designed to automate this process. Our system visualizes this information in its real-world context using the Tinmith mobile outdoor augmented reality system. We provide an overview of the visualizations, outlining a user study that was conducted to determine the effectiveness of the visualizations in providing the user with context-sensitive information, along with the preliminary results of this study. The paper concludes with an overview of future work on the system and final thoughts.

James A. Walsh - One of the best experts on this subject based on the ideXlab platform.

  • visualising Environmental Corrosion in outdoor augmented reality
    Australasian User Interface Conference, 2011
    Co-Authors: James A. Walsh, Bruce H. Thomas
    Abstract:

    This paper provides a description of outdoor visualisation of Environmental Corrosion data. This system was developed to aid in the visual understanding of data from wireless sensors used to monitor large structures. Due to the laborious manual inspections required for large structures (such as bridges), wireless Environmental sensors have been designed to automate this process. Our system visualizes this information in its real-world context using the Tinmith mobile outdoor augmented reality system. We provide an overview of the visualizations, outlining a user study that was conducted to determine the effectiveness of the visualizations in providing the user with context-sensitive information, along with the preliminary results of this study. The paper concludes with an overview of future work on the system and final thoughts.

  • AUIC - Visualising Environmental Corrosion in outdoor augmented reality
    2011
    Co-Authors: James A. Walsh, Bruce H. Thomas
    Abstract:

    This paper provides a description of outdoor visualisation of Environmental Corrosion data. This system was developed to aid in the visual understanding of data from wireless sensors used to monitor large structures. Due to the laborious manual inspections required for large structures (such as bridges), wireless Environmental sensors have been designed to automate this process. Our system visualizes this information in its real-world context using the Tinmith mobile outdoor augmented reality system. We provide an overview of the visualizations, outlining a user study that was conducted to determine the effectiveness of the visualizations in providing the user with context-sensitive information, along with the preliminary results of this study. The paper concludes with an overview of future work on the system and final thoughts.