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Prashant Rawat, AE, IITM
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Prashant Rawat, AE, IITM
  • Home
  • Profile
  • Research
    • Sponsored Projects
    • Ongoing Research
  • Teaching
  • Publications
    • Journal Publication
    • Conference Proceedings
    • Book Chapters
  • Team
    • Current
    • Alumni
  • Lab Facilities
  • More
    • Home
    • Profile
    • Research
      • Sponsored Projects
      • Ongoing Research
    • Teaching
    • Publications
      • Journal Publication
      • Conference Proceedings
      • Book Chapters
    • Team
      • Current
      • Alumni
    • Lab Facilities
  • C17: Kumaar, K. P., Rawat, P., & Singh, N. (2023). Origami-inspired sandwich structures under low-to-high velocity impacts: A numerical simulation approach. Materials Today: Proceedings.

  • C16: Singh, K. K., Koti, V., & Rawat, P. (2022). Dependence of secondary operations in powder metallurgy and their impact on the electrical conductivity of MWCNTs/Cu nanocomposites. Materials Today: Proceedings, 49, 2143-2148.

  • C15:  Behera, R. P., Rawat, P., Tiwari, S. K., & Singh, K. K. (2020). A brief review on the mechanical properties of Carbon nanotube reinforced polymer composites. Materials Today: Proceedings, 22, 2109-2117.

  • C14:  Rawat, P., Singh, K. K., & Singh, P. K. (2020). Comparison of steel and fiber-reinforced polymer rebars for mining applications: A numerical approach. Materials Today: Proceedings, 33, 5041-5045.

  • C13:  Behera, R. P., Rawat, P., Singh, K. K., Kumar, C., & Deep, A. (2018, June). Flexural and Short beam shear strength analysis of symmetrical GFRP composites reinforced with MWCNTs having notches. In IOP Conference Series: Materials Science and Engineering (Vol. 377, No. 1, p. 012147). IOP Publishing.

  • C12:  Kumar, C., Rawat, P., Singh, K. K., Behera, R. P., & Deep, A. (2018, June). Combined effect of loading rate and percentage by weight of MWCNTs on inter laminar shear strength (ILSS) and flexural strength of CFRP. In IOP conference series: materials science and engineering (Vol. 377, No. 1, p. 012074). IOP Publishing.

  • C11:  Deep, A., Singh, K. K., Rawat, P., Kumar, C., & Behera, R. P. (2018, June). Impact of hybrid reinforcement (nano-and macro-) over quasi-isotropic symmetrically designed GFRP composites on short beam strength properties. In IOP Conference Series: Materials Science and Engineering (Vol. 377, No. 1, p. 012166). IOP Publishing.

  • C10: Kumar, C., Singh, K. K., Rawat, P., Deep, A., & Behera, R. P. (2018, December). Effect of loading rate on inter laminar shear strength (ILSS) of highly doped MWCNTs carbon/epoxy laminates. In IOP Conference Series: Materials Science and Engineering (Vol. 455, No. 1, p. 012006). IOP Publishing.

  • C9: Deep, A., Singh, K. K., Rawat, P., Kumar, C., & Behera, R. P. (2018, December). Effect of nano and macro carbon fillers on flexural properties of glass fiber/epoxy composite laminates. In IOP Conference Series: Materials Science and Engineering (Vol. 455, No. 1, p. 012007). IOP Publishing.

  • C8: Rawat, P., Singh, K. K., & Singh, N. K. (2017). Numerical investigation of damage area due to different shape of impactors at low velocity impact of GFRP laminate. Materials Today: Proceedings, 4(8), 8731-8738.

  • C7: Rawat, P., Singh, K. K., & Singh, N. K. (2017). Numerical investigation of low-velocity impact in symmetric and asymmetric GFRP laminate with and without pre-crack. Adv. Mater. Proc. 2, 3, 152-155.

  • C6: Rawat, P., & Singh, K. K. (2017). Damage tolerance of carbon fiber woven composite doped with MWCNTs under low-velocity impact. Procedia engineering, 173, 440-446.

  • C5: Behera, R. P., Rawat, P., & Singh, K. K. (2018). Tensile behavior of three phased glass/epoxy laminate embedded with MWCNTs: An experimental approach. Materials Today: Proceedings, 5(2), 8176-8183.

  • C4: Jain, A., Rawat, P., & Singh, K. K. (2018). Wear and frictional behavior of three phased glass/epoxy composite laminate reinforced with MWCNTs. Materials Today: Proceedings, 5(2), 8112-8120.

  • C3: Rawat, P., & Singh, K. K. (2016, September). A strategy for enhancing shear strength and bending strength of FRP laminate using MWCNTs. In IOP Conference Series: Materials Science and Engineering (Vol. 149, No. 1, p. 012105). IOP Publishing.

  • C2: Singh, K. K., Rawat, P., & Rai, A. K. (2016). Mechanical characterization of GFRP laminate reinforced with short carbon fiber fillers under ILSS test and 3-point bend test. ARPN journal of Engineering and Applied Sciences, 11, 16.

  • C1: Yadav, S., Kumar, S., & Rawat, P. Comparative Study of Mechanical Characteristic for Symmetric and Asymmetric Glass Fiber Reinforced Polymer (GFRP) Laminate.

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