Effect of Ultrasonic Treatment on the Grain Refinement and Mechanical Properties of AZ91 Magnesium Alloy

Author:

Bhingole Pramod1,Chaudhari Gajanan1

Affiliation:

1. Indian Institute of Technology Roorkee

Abstract

The present study examines the microstructural evolution and mechanical properties of AZ91 magnesium alloy solidified under high intensity ultrasonic treatment (UST). High intensity ultrasonic vibrations were introduced isothermally below the liquidus temperature into the solidifying AZ91 alloy for the refinement of primary α-Mg grains and β-Mg17Al12intermetallic phase.Various microstructures were produced using different intensity of ultrasonic vibration at a constant temperature and fixed duration of UST. Without any ultrasonic treatment, the structure contains dendrites of primary α-Mg phase which are coarser and non-uniform in size. Nearly uniform, equiaxed grains with continuous and uniform network of intermetallic phase segregated along the grain boundaries were obtained in alloy subjected to high intensity ultrasonic vibration. The average grain size in this case decreased drastically from 300 μm for (without UST) to 17 μm (with UST at intensity of 4 kW/cm2). Vickers hardness also increased steadily with increase in ultrasonic intensity. The mechanisms for microstructural refinement are discussed and it is concluded that the fine uniform grain structure achieved under ultrasonic vibrations is attributed to the cavitation and the acoustic flow induced by ultrasonic vibrations.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference14 articles.

1. C. Blawert, N. Hort, K Kainer, Automotive application of magnesium and its alloys. Trans. Indian Inst. Meta. 57 (2004) 397-408.

2. M. Kulekci, Magnesium and its alloys applications in automotive industry, Int. J Adv. Manuf Tech. 39 (2008) 851-65.

3. H. Friedrich, B. Mordike, Magnesium Technology-Metallurgy, Design Data, Applications, Germany: Springer-Verlag Berlin Heidelberg (2006).

4. ASM Handbook. Properties and Selection: Non-ferrous alloys and special- purpose materials, ASM Int. 2 (1992) 1424-1588.

5. X. Jian, The effect of Ultrasonic vibration on the solidification of light metal alloys, The University of Tennessee, Knoxville (2005).

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