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Manjusri Misra - One of the best experts on this subject based on the ideXlab platform.

  • static and dynamic mechanical properties of vinylester resin matrix composites filled with fly ash
    Macromolecular Materials and Engineering, 2006
    Co-Authors: Dipa Ray, Debadrita Bhattacharya, Amar K. Mohanty, Lawrence T Drzal, Manjusri Misra
    Abstract:

    Vinylester resin matrix composites were prepared with a fly ash loading of 30, 40, 50 and 60 wt.-%. Flexural properties of the composites were investigated. It was found that the flexural strength was lowered in all the filled composites, but the flexural Modulus showed a significant increase of 10, 57, 112% in case of 30,40 and 50 wt.-% fly-ash-loaded composites respectively, compared to the neat resin. However, there was a decrease in the mechanical properties in case of 60 wt.-% fly-ash-filled composites. The dynamic mechanical analysis was carried out to obtain information about the matrix-filler interaction at the interface. The storage Modulus Value at room temperature was highest for the 50 wt.-% fly-ash-filled composites, corroborating with the observed flexural Modulus Value. The fractured surfaces were examined under SEM and were correlated with the mechanical properties.

  • static and dynamic mechanical properties of vinylester resin matrix composites filled with fly ash
    Macromolecular Materials and Engineering, 2006
    Co-Authors: Dipa Ray, Debadrita Bhattacharya, Amar K. Mohanty, Lawrence T Drzal, Manjusri Misra
    Abstract:

    Vinylester resin matrix composites were prepared with a fly ash loading of 30, 40, 50 and 60 wt.-%. Flexural properties of the composites were investigated. It was found that the flexural strength was lowered in all the filled composites, but the flexural Modulus showed a significant increase of 10, 57, 112% in case of 30,40 and 50 wt.-% fly-ash-loaded composites respectively, compared to the neat resin. However, there was a decrease in the mechanical properties in case of 60 wt.-% fly-ash-filled composites. The dynamic mechanical analysis was carried out to obtain information about the matrix-filler interaction at the interface. The storage Modulus Value at room temperature was highest for the 50 wt.-% fly-ash-filled composites, corroborating with the observed flexural Modulus Value. The fractured surfaces were examined under SEM and were correlated with the mechanical properties.

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

  • static and dynamic mechanical properties of vinylester resin matrix composites filled with fly ash
    Macromolecular Materials and Engineering, 2006
    Co-Authors: Dipa Ray, Debadrita Bhattacharya, Amar K. Mohanty, Lawrence T Drzal, Manjusri Misra
    Abstract:

    Vinylester resin matrix composites were prepared with a fly ash loading of 30, 40, 50 and 60 wt.-%. Flexural properties of the composites were investigated. It was found that the flexural strength was lowered in all the filled composites, but the flexural Modulus showed a significant increase of 10, 57, 112% in case of 30,40 and 50 wt.-% fly-ash-loaded composites respectively, compared to the neat resin. However, there was a decrease in the mechanical properties in case of 60 wt.-% fly-ash-filled composites. The dynamic mechanical analysis was carried out to obtain information about the matrix-filler interaction at the interface. The storage Modulus Value at room temperature was highest for the 50 wt.-% fly-ash-filled composites, corroborating with the observed flexural Modulus Value. The fractured surfaces were examined under SEM and were correlated with the mechanical properties.

  • static and dynamic mechanical properties of vinylester resin matrix composites filled with fly ash
    Macromolecular Materials and Engineering, 2006
    Co-Authors: Dipa Ray, Debadrita Bhattacharya, Amar K. Mohanty, Lawrence T Drzal, Manjusri Misra
    Abstract:

    Vinylester resin matrix composites were prepared with a fly ash loading of 30, 40, 50 and 60 wt.-%. Flexural properties of the composites were investigated. It was found that the flexural strength was lowered in all the filled composites, but the flexural Modulus showed a significant increase of 10, 57, 112% in case of 30,40 and 50 wt.-% fly-ash-loaded composites respectively, compared to the neat resin. However, there was a decrease in the mechanical properties in case of 60 wt.-% fly-ash-filled composites. The dynamic mechanical analysis was carried out to obtain information about the matrix-filler interaction at the interface. The storage Modulus Value at room temperature was highest for the 50 wt.-% fly-ash-filled composites, corroborating with the observed flexural Modulus Value. The fractured surfaces were examined under SEM and were correlated with the mechanical properties.

Amar K. Mohanty - One of the best experts on this subject based on the ideXlab platform.

  • static and dynamic mechanical properties of vinylester resin matrix composites filled with fly ash
    Macromolecular Materials and Engineering, 2006
    Co-Authors: Dipa Ray, Debadrita Bhattacharya, Amar K. Mohanty, Lawrence T Drzal, Manjusri Misra
    Abstract:

    Vinylester resin matrix composites were prepared with a fly ash loading of 30, 40, 50 and 60 wt.-%. Flexural properties of the composites were investigated. It was found that the flexural strength was lowered in all the filled composites, but the flexural Modulus showed a significant increase of 10, 57, 112% in case of 30,40 and 50 wt.-% fly-ash-loaded composites respectively, compared to the neat resin. However, there was a decrease in the mechanical properties in case of 60 wt.-% fly-ash-filled composites. The dynamic mechanical analysis was carried out to obtain information about the matrix-filler interaction at the interface. The storage Modulus Value at room temperature was highest for the 50 wt.-% fly-ash-filled composites, corroborating with the observed flexural Modulus Value. The fractured surfaces were examined under SEM and were correlated with the mechanical properties.

  • static and dynamic mechanical properties of vinylester resin matrix composites filled with fly ash
    Macromolecular Materials and Engineering, 2006
    Co-Authors: Dipa Ray, Debadrita Bhattacharya, Amar K. Mohanty, Lawrence T Drzal, Manjusri Misra
    Abstract:

    Vinylester resin matrix composites were prepared with a fly ash loading of 30, 40, 50 and 60 wt.-%. Flexural properties of the composites were investigated. It was found that the flexural strength was lowered in all the filled composites, but the flexural Modulus showed a significant increase of 10, 57, 112% in case of 30,40 and 50 wt.-% fly-ash-loaded composites respectively, compared to the neat resin. However, there was a decrease in the mechanical properties in case of 60 wt.-% fly-ash-filled composites. The dynamic mechanical analysis was carried out to obtain information about the matrix-filler interaction at the interface. The storage Modulus Value at room temperature was highest for the 50 wt.-% fly-ash-filled composites, corroborating with the observed flexural Modulus Value. The fractured surfaces were examined under SEM and were correlated with the mechanical properties.

Debadrita Bhattacharya - One of the best experts on this subject based on the ideXlab platform.

  • static and dynamic mechanical properties of vinylester resin matrix composites filled with fly ash
    Macromolecular Materials and Engineering, 2006
    Co-Authors: Dipa Ray, Debadrita Bhattacharya, Amar K. Mohanty, Lawrence T Drzal, Manjusri Misra
    Abstract:

    Vinylester resin matrix composites were prepared with a fly ash loading of 30, 40, 50 and 60 wt.-%. Flexural properties of the composites were investigated. It was found that the flexural strength was lowered in all the filled composites, but the flexural Modulus showed a significant increase of 10, 57, 112% in case of 30,40 and 50 wt.-% fly-ash-loaded composites respectively, compared to the neat resin. However, there was a decrease in the mechanical properties in case of 60 wt.-% fly-ash-filled composites. The dynamic mechanical analysis was carried out to obtain information about the matrix-filler interaction at the interface. The storage Modulus Value at room temperature was highest for the 50 wt.-% fly-ash-filled composites, corroborating with the observed flexural Modulus Value. The fractured surfaces were examined under SEM and were correlated with the mechanical properties.

  • static and dynamic mechanical properties of vinylester resin matrix composites filled with fly ash
    Macromolecular Materials and Engineering, 2006
    Co-Authors: Dipa Ray, Debadrita Bhattacharya, Amar K. Mohanty, Lawrence T Drzal, Manjusri Misra
    Abstract:

    Vinylester resin matrix composites were prepared with a fly ash loading of 30, 40, 50 and 60 wt.-%. Flexural properties of the composites were investigated. It was found that the flexural strength was lowered in all the filled composites, but the flexural Modulus showed a significant increase of 10, 57, 112% in case of 30,40 and 50 wt.-% fly-ash-loaded composites respectively, compared to the neat resin. However, there was a decrease in the mechanical properties in case of 60 wt.-% fly-ash-filled composites. The dynamic mechanical analysis was carried out to obtain information about the matrix-filler interaction at the interface. The storage Modulus Value at room temperature was highest for the 50 wt.-% fly-ash-filled composites, corroborating with the observed flexural Modulus Value. The fractured surfaces were examined under SEM and were correlated with the mechanical properties.

Lawrence T Drzal - One of the best experts on this subject based on the ideXlab platform.

  • static and dynamic mechanical properties of vinylester resin matrix composites filled with fly ash
    Macromolecular Materials and Engineering, 2006
    Co-Authors: Dipa Ray, Debadrita Bhattacharya, Amar K. Mohanty, Lawrence T Drzal, Manjusri Misra
    Abstract:

    Vinylester resin matrix composites were prepared with a fly ash loading of 30, 40, 50 and 60 wt.-%. Flexural properties of the composites were investigated. It was found that the flexural strength was lowered in all the filled composites, but the flexural Modulus showed a significant increase of 10, 57, 112% in case of 30,40 and 50 wt.-% fly-ash-loaded composites respectively, compared to the neat resin. However, there was a decrease in the mechanical properties in case of 60 wt.-% fly-ash-filled composites. The dynamic mechanical analysis was carried out to obtain information about the matrix-filler interaction at the interface. The storage Modulus Value at room temperature was highest for the 50 wt.-% fly-ash-filled composites, corroborating with the observed flexural Modulus Value. The fractured surfaces were examined under SEM and were correlated with the mechanical properties.

  • static and dynamic mechanical properties of vinylester resin matrix composites filled with fly ash
    Macromolecular Materials and Engineering, 2006
    Co-Authors: Dipa Ray, Debadrita Bhattacharya, Amar K. Mohanty, Lawrence T Drzal, Manjusri Misra
    Abstract:

    Vinylester resin matrix composites were prepared with a fly ash loading of 30, 40, 50 and 60 wt.-%. Flexural properties of the composites were investigated. It was found that the flexural strength was lowered in all the filled composites, but the flexural Modulus showed a significant increase of 10, 57, 112% in case of 30,40 and 50 wt.-% fly-ash-loaded composites respectively, compared to the neat resin. However, there was a decrease in the mechanical properties in case of 60 wt.-% fly-ash-filled composites. The dynamic mechanical analysis was carried out to obtain information about the matrix-filler interaction at the interface. The storage Modulus Value at room temperature was highest for the 50 wt.-% fly-ash-filled composites, corroborating with the observed flexural Modulus Value. The fractured surfaces were examined under SEM and were correlated with the mechanical properties.