Study on Mechanical Property of Aluminium 6061 with E Glass Fiber Reinforced Composite

Author:

Vinayashree 1,Shobha R.2

Affiliation:

1. DSCE

2. MSRIT

Abstract

Aluminium composites are in predominant use due to their lower weight and high strength among the MMC’s. Aluminium 6061 is selected as matrix and E-glass fiber is selected as reinforcement. Fabrication of composite is done by stir casting method. Each fabrication carries the E-glass reinforcement content varied from 2% to 10%. The present article attempts to evaluate the mechanical properties of E-glass fibre reinforced composite and study the effect of reinforcement on the matrix alloy through mechanical properties. When compared to ascast mechanical properties the UTS has increased from 74.28 N/sq mm to 146.8 N/sq mm for a composite at 6% E-glass. The hardness of as-cast has also increased from 22 RHB to 43 RHB at 6% E-glass and the wear of composite has exhibited a decreasing tend with increase in reinforcement content along the sliding distance. The results are analyzed in certain depth in the current paper. The mechanical properties of composites have improved with the increase in the weigh percentage of glass fiber in the aluminium matrix.

Publisher

Trans Tech Publications, Ltd.

Reference10 articles.

1. William D. Callister Jr., Materials Science and Engineering An Introduction, seventh ed., John Wiley & Sons Inc., New York, (2007).

2. George E. Totten, D. Scott Mackenzie, Handbook of Aluminum Alloy Production and Materials Manufacturing, Marcel Dekker Inc., New York, 2.

3. Nikilesh Chawla, Metal matrix in Automotive applications, Advanced materials & processes, (2006) 29-31.

4. R. Prajit, Santhosh Kumar V, Sathwik V, Ananha Narayanan R Evaluation of Mechanical Properties of Al6061, Fly Ash Reinforced with E-Glass Composites, Journal of Mechanical and Civil Engineering, vol-11, issue 1, (Jan 2014) 33-39.

5. Arun Kumar M B and R.P. Swamy Evaluation of Mechanical Properties of Al6061, Fly ash and E-glass Fiber Reinforced Hybrid Metal Matrix Composites, Journal of Engineering and Applied Sciences, vol-6, No. 5, May (2011).

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