Fabrication and characterization of friction stir processed Al 6061 reinforced with TiB2-Al2O3

Author:

Rao Ch. MohanaORCID,Rao K. Mallikarjuna

Abstract

PurposeThe objective of the paper is to evaluate the fabrication process and to study the influence of process parameters of friction stir processing of 6061-TiB2-Al2O3 Aluminum alloy surface composite on microhardness tensile strength, and microstructure.Design/methodology/approachFriction stir processing method is used for attaining the desired mechanical properties, and selectively processed reinforcements to fabricate the samples. The Taguchi technique was used to optimize rotational speed, travel speed and volume percentage of reinforcement particles to enhance the mechanical properties of 6061-TiB2-Al2O3 Aluminum alloy composite.FindingsThe fabrication of surface composites through FSP allows new inventions in terms of material with enhanced surface layers without changing the base metal.Practical implicationsTo examine the behavior of the surface of the composites in the different zones, the practical implication consists of the use of different characterization techniques like optical microscopy and scanning microscopy for microstructural behavior and the measurement of hardness and tensile tests for mechanical behavior.Originality/valueThe research work consists of tool design and process parameters, which can affect the final product (microstructural changes), and the performance of the modified surface layer behavior was studied and presented.

Publisher

Emerald

Subject

Mechanical Engineering,Mechanics of Materials,Civil and Structural Engineering

Reference13 articles.

1. Composite fabrication using friction stir processing - a review;International Journal of Advanced Manufacturing Technology,2012

2. Mechanically alloyed Al6061-TiB2 nanocomposite: powder processing, consolidation, and mechanical strength;Materials and Design,2015

3. Bakes, H., Benjamin, D. and Kirkpatrick, C.W. (Eds) (1979), Metals Handbook, Vol. 2, ASM, Metals Park, OH, pp. 3-23.

4. Influences of pinprofile and rotational speed of the tool on the formation of friction stir processing zone in AA2219 aluminum alloy;Journal of Materials Science and Engineering: A,2007

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