The Experts below are selected from a list of 150 Experts worldwide ranked by ideXlab platform

Peter Šimon - One of the best experts on this subject based on the ideXlab platform.

  • Two-Stage Kinetic Model for the α–β Phase Recrystallisation in Nickel Sulphide
    Journal of Thermal Analysis and Calorimetry, 2001
    Co-Authors: D. W. Bishop, Paul S. Thomas, A. S. Ray, Peter Šimon
    Abstract:

    Toughened glass panels used as a Glazing Material in multistorey buildings are known to fracture prematurely when they contain nickel sulfide inclusions as a result of the α-β phase recrystallisation in nickel sulfide. The kinetics of this recrystallisation were studied by differential scanning calorimetry (DSC) under isothermal and non-isothermal conditions. The recrystallisation was observed to be a two-step process with an induction period followed by the phase change. A two-stage kinetic model was used to estimate the recrystallisation time under ambient conditions. These values were found to correlate well with the observed time to failure for glass panels installed in multistorey buildings.

  • Two-stage kinetic model for the α-β phase recrystallisation in nickel sulphide
    Journal of Thermal Analysis and Calorimetry, 2001
    Co-Authors: D. W. Bishop, Paul S. Thomas, Abhi Ray, Peter Šimon
    Abstract:

    Toughened glass panels used as a Glazing Material in multistorey buildings are known to fracture prematurely when they contain nickel sulfide inclusions as a result of the α-β phase recrystallisation in nickel sulfide. The kinetics of this recrystallisation were studied by differential scanning calorimetry (DSC) under isothermal and non-isothermal conditions. The recrystallisation was observed to be a two-step process with an induction period followed by the phase change. A two-stage kinetic model was used to estimate the recrystallisation time under ambient conditions. These values were found to correlate well with the observed time to failure for glass panels installed in multistorey buildings.

D. W. Bishop - One of the best experts on this subject based on the ideXlab platform.

  • Two-Stage Kinetic Model for the α–β Phase Recrystallisation in Nickel Sulphide
    Journal of Thermal Analysis and Calorimetry, 2001
    Co-Authors: D. W. Bishop, Paul S. Thomas, A. S. Ray, Peter Šimon
    Abstract:

    Toughened glass panels used as a Glazing Material in multistorey buildings are known to fracture prematurely when they contain nickel sulfide inclusions as a result of the α-β phase recrystallisation in nickel sulfide. The kinetics of this recrystallisation were studied by differential scanning calorimetry (DSC) under isothermal and non-isothermal conditions. The recrystallisation was observed to be a two-step process with an induction period followed by the phase change. A two-stage kinetic model was used to estimate the recrystallisation time under ambient conditions. These values were found to correlate well with the observed time to failure for glass panels installed in multistorey buildings.

  • Two-stage kinetic model for the α-β phase recrystallisation in nickel sulphide
    Journal of Thermal Analysis and Calorimetry, 2001
    Co-Authors: D. W. Bishop, Paul S. Thomas, Abhi Ray, Peter Šimon
    Abstract:

    Toughened glass panels used as a Glazing Material in multistorey buildings are known to fracture prematurely when they contain nickel sulfide inclusions as a result of the α-β phase recrystallisation in nickel sulfide. The kinetics of this recrystallisation were studied by differential scanning calorimetry (DSC) under isothermal and non-isothermal conditions. The recrystallisation was observed to be a two-step process with an induction period followed by the phase change. A two-stage kinetic model was used to estimate the recrystallisation time under ambient conditions. These values were found to correlate well with the observed time to failure for glass panels installed in multistorey buildings.

  • Micro Raman characterization of nickel sulfide inclusions in toughened glass
    Materials Research Bulletin, 2000
    Co-Authors: D. W. Bishop, Paul S. Thomas
    Abstract:

    Toughened glass panels used as Glazing Material in multistory buildings are subject to fracture when they contain nickel sulfide inclusions. The failure mechanism is generally attributed to the significant volume increase related to a polymorphic phase retransformation in nickel sulfide. This investigation exploits the ability of micro Raman spectroscopy to analyze minute inclusions. The technique is able to distinguish between different polymorphs and various stoichiometric forms of nickel sulfide and has the potential to satisfy the need for an in situ, nondestructive analytical technique for the characterization of nickel sulfide inclusions in glass.

Paul S. Thomas - One of the best experts on this subject based on the ideXlab platform.

  • Two-Stage Kinetic Model for the α–β Phase Recrystallisation in Nickel Sulphide
    Journal of Thermal Analysis and Calorimetry, 2001
    Co-Authors: D. W. Bishop, Paul S. Thomas, A. S. Ray, Peter Šimon
    Abstract:

    Toughened glass panels used as a Glazing Material in multistorey buildings are known to fracture prematurely when they contain nickel sulfide inclusions as a result of the α-β phase recrystallisation in nickel sulfide. The kinetics of this recrystallisation were studied by differential scanning calorimetry (DSC) under isothermal and non-isothermal conditions. The recrystallisation was observed to be a two-step process with an induction period followed by the phase change. A two-stage kinetic model was used to estimate the recrystallisation time under ambient conditions. These values were found to correlate well with the observed time to failure for glass panels installed in multistorey buildings.

  • Two-stage kinetic model for the α-β phase recrystallisation in nickel sulphide
    Journal of Thermal Analysis and Calorimetry, 2001
    Co-Authors: D. W. Bishop, Paul S. Thomas, Abhi Ray, Peter Šimon
    Abstract:

    Toughened glass panels used as a Glazing Material in multistorey buildings are known to fracture prematurely when they contain nickel sulfide inclusions as a result of the α-β phase recrystallisation in nickel sulfide. The kinetics of this recrystallisation were studied by differential scanning calorimetry (DSC) under isothermal and non-isothermal conditions. The recrystallisation was observed to be a two-step process with an induction period followed by the phase change. A two-stage kinetic model was used to estimate the recrystallisation time under ambient conditions. These values were found to correlate well with the observed time to failure for glass panels installed in multistorey buildings.

  • Micro Raman characterization of nickel sulfide inclusions in toughened glass
    Materials Research Bulletin, 2000
    Co-Authors: D. W. Bishop, Paul S. Thomas
    Abstract:

    Toughened glass panels used as Glazing Material in multistory buildings are subject to fracture when they contain nickel sulfide inclusions. The failure mechanism is generally attributed to the significant volume increase related to a polymorphic phase retransformation in nickel sulfide. This investigation exploits the ability of micro Raman spectroscopy to analyze minute inclusions. The technique is able to distinguish between different polymorphs and various stoichiometric forms of nickel sulfide and has the potential to satisfy the need for an in situ, nondestructive analytical technique for the characterization of nickel sulfide inclusions in glass.

Özlem Emir Çoban - One of the best experts on this subject based on the ideXlab platform.

  • evaluation of essential oils as a Glazing Material for frozen rainbow trout oncorhynchus mykiss fillet
    Journal of Food Processing and Preservation, 2013
    Co-Authors: Özlem Emir Çoban
    Abstract:

    In this study, sage, thyme and clove oils were evaluated as a Glazing Material for rainbow trout (Oncorhynchus mykiss) frozen. One percent sage, thyme and clove oil solutions were used for Glazing. Water-glazed (WG) and nonglazed (NG) rainbow trout fillets were used as controls. Fish fillets were glazed and were stored in a freezer at −18C for 6 months. Samples were analyzed at 1, 2, 3, 4, 5 and 6 months for moisture content, total volatile basic nitrogen, thiobarbituric acid, peroxide value, free fatty acids and sensorial quality. It was determined that glazed samples had higher moisture content compared to NG trout fillet after 6 months storage. Essential oils were effective in controlling lipid oxidation in rainbow trout fillet (P < 0.05). PRACTICAL APPLICATIONS Freezing is one of the most employed methods used for preserving fresh fish and other seafood products. However, frozen storage does not completely inhibit chemical reactions (e.g., lipid oxidation) that lead to quality deterioration of fish and fish product. The antioxidant property of some essential oils may make it ideal for use as a Glazing solution for suppressing lipid oxidation in rainbow trout fillet during frozen storage.

  • Evaluation of essential oils as a Glazing Material for frozen rainbow trout (oncorhynchus mykiss) fillet
    Journal of Food Processing and Preservation, 2012
    Co-Authors: Özlem Emir Çoban
    Abstract:

    In this study, sage, thyme and clove oils were evaluated as a Glazing Material for rainbow trout (Oncorhynchus mykiss) frozen. One percent sage, thyme and clove oil solutions were used for Glazing. Water-glazed (WG) and nonglazed (NG) rainbow trout fillets were used as controls. Fish fillets were glazed and were stored in a freezer at −18C for 6 months. Samples were analyzed at 1, 2, 3, 4, 5 and 6 months for moisture content, total volatile basic nitrogen, thiobarbituric acid, peroxide value, free fatty acids and sensorial quality. It was determined that glazed samples had higher moisture content compared to NG trout fillet after 6 months storage. Essential oils were effective in controlling lipid oxidation in rainbow trout fillet (P 

A. S. Ray - One of the best experts on this subject based on the ideXlab platform.

  • Two-Stage Kinetic Model for the α–β Phase Recrystallisation in Nickel Sulphide
    Journal of Thermal Analysis and Calorimetry, 2001
    Co-Authors: D. W. Bishop, Paul S. Thomas, A. S. Ray, Peter Šimon
    Abstract:

    Toughened glass panels used as a Glazing Material in multistorey buildings are known to fracture prematurely when they contain nickel sulfide inclusions as a result of the α-β phase recrystallisation in nickel sulfide. The kinetics of this recrystallisation were studied by differential scanning calorimetry (DSC) under isothermal and non-isothermal conditions. The recrystallisation was observed to be a two-step process with an induction period followed by the phase change. A two-stage kinetic model was used to estimate the recrystallisation time under ambient conditions. These values were found to correlate well with the observed time to failure for glass panels installed in multistorey buildings.