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Friction Stir Processing of Hybrid Al-Si Alloy Metal Matrix Composite
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Abstract
Metal matrix composites are an important class of material that is developing rapidly to fulfil the diversified engineering requirements. The metal matrix composites are attractive owing to superior properties as compared to monolithic material. Their properties are dependent on various factors and fabrication techniques. The metal matrix composites are associated with several issues which hinder their full potential. In the present study friction stir processing is applied on the metal matrix composite as a post-processing operation. The friction stir processing offers many advantages owing to the solid-state nature of the processing. Stir cast metal matrix composites are prepared by using zircon sand particles of 50 µm in the matrix of LM13 aluminium alloy. The friction stir processing is applied on the metal matrix plates at a constant rotational speed and traverse speed of 1400 rpm and 63 mm/min, respectively. Multiple passes of friction stir processing are applied to elucidate the effect of the number of passes on microstructural modification. Microstructural examination showed a significant improvement in eutectic silicon morphology and distribution of zircon sand particles. A more than 5 times reduction as compared to the initial size was observed in the zircon sand particles after four passes of friction stir processing. The processed metal matrix composite also exhibits improvement in tensile strength and hardness.
Title: Friction Stir Processing of Hybrid Al-Si Alloy Metal Matrix Composite
Description:
Abstract
Metal matrix composites are an important class of material that is developing rapidly to fulfil the diversified engineering requirements.
The metal matrix composites are attractive owing to superior properties as compared to monolithic material.
Their properties are dependent on various factors and fabrication techniques.
The metal matrix composites are associated with several issues which hinder their full potential.
In the present study friction stir processing is applied on the metal matrix composite as a post-processing operation.
The friction stir processing offers many advantages owing to the solid-state nature of the processing.
Stir cast metal matrix composites are prepared by using zircon sand particles of 50 µm in the matrix of LM13 aluminium alloy.
The friction stir processing is applied on the metal matrix plates at a constant rotational speed and traverse speed of 1400 rpm and 63 mm/min, respectively.
Multiple passes of friction stir processing are applied to elucidate the effect of the number of passes on microstructural modification.
Microstructural examination showed a significant improvement in eutectic silicon morphology and distribution of zircon sand particles.
A more than 5 times reduction as compared to the initial size was observed in the zircon sand particles after four passes of friction stir processing.
The processed metal matrix composite also exhibits improvement in tensile strength and hardness.
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