Fabrication and Evaluation of Mechanical Properties of Fe2O3 Particulate Filled Hybrid Composites

Authors

  • Vithal Rao Chavan Asst. Professor, Department of Mechanical engineering, Rao Bahadur Y Mahabaleshwarappa Engineering College, Bellary, India
  • K. R. Dinesh Principal and Professor, Department of Mechanical Engineering, Government Engineering College, Raichur, India
  • K. Veeresh Principal and Professor, Department of Mechanical Engineering, Rao Bahadur Y Mahabaleshwarappa Engineering College, Bellary, India
  • G. Jagannatha Reddy Associate. Professor, Department of Industrial Production Engineering, Rao Bahadur Y Mahabaleshwarappa Engineering College, Bellary, India
  • Veerabhadrappa Algur Asst. Professor, Department of Industrial Production Engineering, Rao Bahadur Y MahabaleshwarappaEngineering College, Bellary, India
  • Venkatesh P.G. Scholar, Department of Industrial & Production Engineering, Rao Bahadur Y Mahabaleshwarappa Engineering College, Bellary, India

DOI:

https://doi.org/10.53555/nnmce.v2i3.360

Keywords:

GFRP, Mechanical Properties, Orthophthalic polyester resin hematite ore filler

Abstract

The researchers are quite concentrating at the hybrid materials. this is mainly due to their applicable benefits have they offer low density, low cost,etc., an experimental investigation was conducted to study the effect of hematite ore and volume fraction on Tensile Strength, Hardness, Impact Strength of Hybrid composite. General Purpose resin or Orthophthalic resin, E-Glass fiber, and Hematite ore are the constitute of hybrid composite. Specimen was cut from the fabricated laminate according to the ASTM standard for different experiments for tensile test, hardness test, and impact test. The laminates are prepared by varying the volume fraction (6%, 8%, 10 %,). The results shown that the incorporation of hematite ore has a strong influence on the properties.

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Published

2015-03-31

How to Cite

Chavan, V. R., Dinesh, K. R., Veeresh, K., Reddy, G. J. ., Algur, V. ., & Venkatesh. (2015). Fabrication and Evaluation of Mechanical Properties of Fe2O3 Particulate Filled Hybrid Composites. Journal of Advance Research in Mechanical and Civil Engineering (ISSN: 2208-2379), 2(3), 68-72. https://doi.org/10.53555/nnmce.v2i3.360