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Information Journal Paper

Title

Effect of Clay Nanoparticles on Increasing the Lifetime of Glass/Epoxy Composites under Thermal and Humidity Conditions (Hydrothermal)

Pages

  701-708

Abstract

 In this research, the effect of adding Clay Nanoparticles on increasing the lifetime of glass/ epoxy composites under hydrothermal conditions has been investigated. For this purpose, samples containing 3 Vol. % of Clay Nanoparticles and samples without Clay Nanoparticles in resin epoxy has been manufactured for the fabrication of specimens of the tensile test using hand lay-up and vacuum bag. The specimens were placed under the hydrothermal condition of 90% humidity and 75 ° C temperature for 500 hours in the incubator and were tested for tensile properties. The results show that addition of Clay Nanoparticles decreases the strength of the composite by 21. 39% in the newly produced samples while in a long time, these particles slow down the process of composite degradation, so that in the same Environmental Conditions, the strength of specimens containing Clay Nanoparticles is 9% higher than the specimens without Clay Nanoparticles.

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    APA: Copy

    AZIMI, S.A., MOMENI, V., Alaei, M.H., MIRZAEI, A., Rezvani Nasab, M., Ramezani Nezhad, M., & Mohamadian, A.H.. (2020). Effect of Clay Nanoparticles on Increasing the Lifetime of Glass/Epoxy Composites under Thermal and Humidity Conditions (Hydrothermal). MODARES MECHANICAL ENGINEERING, 20(3 ), 701-708. SID. https://sid.ir/paper/179102/en

    Vancouver: Copy

    AZIMI S.A., MOMENI V., Alaei M.H., MIRZAEI A., Rezvani Nasab M., Ramezani Nezhad M., Mohamadian A.H.. Effect of Clay Nanoparticles on Increasing the Lifetime of Glass/Epoxy Composites under Thermal and Humidity Conditions (Hydrothermal). MODARES MECHANICAL ENGINEERING[Internet]. 2020;20(3 ):701-708. Available from: https://sid.ir/paper/179102/en

    IEEE: Copy

    S.A. AZIMI, V. MOMENI, M.H. Alaei, A. MIRZAEI, M. Rezvani Nasab, M. Ramezani Nezhad, and A.H. Mohamadian, “Effect of Clay Nanoparticles on Increasing the Lifetime of Glass/Epoxy Composites under Thermal and Humidity Conditions (Hydrothermal),” MODARES MECHANICAL ENGINEERING, vol. 20, no. 3 , pp. 701–708, 2020, [Online]. Available: https://sid.ir/paper/179102/en

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