Mechanothermal assessment of outdoors aged hybrid glass fibre reinforced polymer composite filled with fly ash as industrial waste
Industrial fly ash impregnated glass fibre reinforced polymer (GFRP) composites were examined to assess their overall characteristics in adverse ambient conditions, keeping in mind that use of filler materials in FRP composites was expected to enhance the strength properties of the material. GFRP co...
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Published in: | Journal of reinforced plastics and composites |
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02-02-2024
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Abstract | Industrial fly ash impregnated glass fibre reinforced polymer (GFRP) composites were examined to assess their overall characteristics in adverse ambient conditions, keeping in mind that use of filler materials in FRP composites was expected to enhance the strength properties of the material. GFRP composite specimens with 2–10 wt % industrial fly ash were fabricated in the laboratory. These were exposed to open ambient ageing for 120 days. The samples impregnated with 8 wt % fly ash and aged for 120 days were seen to absorb the minimum moisture and exhibited the maximum ILSS of 35.19 MPa and flexural strength of 690 MPa, respectively. These samples also exhibited the highest T g of 101.53°C as revealed through low temperature DSC. It was also observed that the 8 wt% fly ash containing samples aged in the open for 120 days showed the ILSS to be 5.83% higher and T g to be 21.95% higher as compared to the unaged GFRP samples without fly ash. FTIR spectra confirm the trend of thermo-mechanical properties. Both optical and scanning electron microscopy of the fractured surfaces of the test samples revealed the modes of mechanical failure of the hybrid GFRP composite with their indicative properties at optimized extent of fly ash dispersion. |
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AbstractList | Industrial fly ash impregnated glass fibre reinforced polymer (GFRP) composites were examined to assess their overall characteristics in adverse ambient conditions, keeping in mind that use of filler materials in FRP composites was expected to enhance the strength properties of the material. GFRP composite specimens with 2–10 wt % industrial fly ash were fabricated in the laboratory. These were exposed to open ambient ageing for 120 days. The samples impregnated with 8 wt % fly ash and aged for 120 days were seen to absorb the minimum moisture and exhibited the maximum ILSS of 35.19 MPa and flexural strength of 690 MPa, respectively. These samples also exhibited the highest T g of 101.53°C as revealed through low temperature DSC. It was also observed that the 8 wt% fly ash containing samples aged in the open for 120 days showed the ILSS to be 5.83% higher and T g to be 21.95% higher as compared to the unaged GFRP samples without fly ash. FTIR spectra confirm the trend of thermo-mechanical properties. Both optical and scanning electron microscopy of the fractured surfaces of the test samples revealed the modes of mechanical failure of the hybrid GFRP composite with their indicative properties at optimized extent of fly ash dispersion. |
Author | Behera, Ajit Pradhan, Dibyajyoti D. Mohanty, Upendra K. Beura, Subhrajit Chakraverty, Ananta P. |
Author_xml | – sequence: 1 givenname: Dibyajyoti D. surname: Pradhan fullname: Pradhan, Dibyajyoti D. organization: School of Physics, Gangadhar Meher University, Sambalpur, India – sequence: 2 givenname: Ananta P. orcidid: 0000-0002-1497-934X surname: Chakraverty fullname: Chakraverty, Ananta P. organization: School of Physics, Gangadhar Meher University, Sambalpur, India – sequence: 3 givenname: Ajit surname: Behera fullname: Behera, Ajit organization: Department of Metallurgical and Materials Engineering, National Institute of Technology, Rourkela, India – sequence: 4 givenname: Subhrajit surname: Beura fullname: Beura, Subhrajit organization: Department of Mechanical Engineering, ITER, Sikhya O Anusandhan (SOA) University, Bhubaneswar, India – sequence: 5 givenname: Upendra K. orcidid: 0000-0002-0694-186X surname: Mohanty fullname: Mohanty, Upendra K. organization: Department of Mechanical Engineering, ITER, Sikhya O Anusandhan (SOA) University, Bhubaneswar, India |
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Title | Mechanothermal assessment of outdoors aged hybrid glass fibre reinforced polymer composite filled with fly ash as industrial waste |
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