Bulletin of Pure & Applied Sciences- Chemistry
  • Year: 2019
  • Volume: 38c
  • Issue: 1

Stress corrosion behaviour of advanced materials like Al1100/Sic Nano Composites

  • Author:
  • Vishwaprakash1,, Pruthviraj Ramanna Dyapur2, Ramesha Sonnappa3
  • Total Page Count: 7
  • Published Online: Jan 1, 2019
  • Page Number: 60 to 66

1Research Scholar, Chemistry R&D Centre, Department of Chemistry, Raj Rajeswari College of Engg, Bengaluru, Karnataka, 560 074, India E-mail: vphosamani123@gmail.com

2Associate Professor, Chemistry R&D Centre, Department of Chemistry, Raj Rajeswari College of Engg, Bengaluru, Karnataka, 560 074, India E-mail: pruthvirajrd@gmail.com

3Assistant Professor, Chemistry R&D Centre, Department of Chemistry, Raj Rajeswari College of Engg, Bengaluru, Karnataka, 560 074, India E-mail: rameshakoti@gmail.com

*Corresponding Author Vishwaprakash, Research Scholar, Chemistry R&D Centre, Department of Chemistry, Raj Rajeswari College of Engg, Bengaluru, Karnataka, 560 074, India E-mail: vphosamani123@gmail.com

Abstract

The stress corrosion resistance of AL1100/SiC Nano Composites metal matrix composites (MMC's) in high temperature acidic media has been evaluated using an autoclave. The liquid melt metallurgy technique using vortex method was used to fabricate MMC's. SiC Nano Composites particulates of 50–80 pm in size are added to the matrix. AL1100 containing 2,4,6 weight percentage of SiC Nano Composites are prepared. Stress corrosion tests was conducted using weight loss method for different exposure time, normality and temperature of the acidic medium. The corrosion rates of composites was lower to that of matrix AL1100 alloy under all conditions.

Keywords

SiC Nano Composites, MMC's, Vortex method, Stress corrosion, Autoclave