2020IOP Conference Series Materials Science and EngineeringOpen access

Characterization of fully lamellar Ti6Al-4V alloy

Srihari Dodla, M Anirudh, E Rohith, Shashikala Reddy

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Abstract

Abstract The high mechanical strength of the lamellar Ti-6Al-4V extruded rod was characterized. The grain morphology of the extruded Ti-6Al-4V rod was investigated by optical microscopy. The microstructure of Ti-6Al-4V alloy consists of very fine α lamella of approximately 2.5 µm in thickness and β lamella with 1 µm thickness. Besides, a numerical model has been presented that reproduces the morphology of the lamellar colonies. In particular, the representative volume element with 512 elements, 4096 elements and, 32768 elements are studied with the C3D8 linear element. Experimental and numerical comparisons of the lamellae morphology have been presented.

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Abstract The high mechanical strength of the lamellar Ti-6Al-4V extruded rod was characterized. The grain morphology of the extruded Ti-6Al-4V rod was investigated by optical microscopy. The microstructure of Ti-6Al-4V alloy consists of very fine α lamella of approximately 2.5 µm in thickness and β lamella with 1 µm thickness. Besides, a numerical model has been presented that reproduces the morphology of the lamellar colonies. In particular, the representative volume element with 512 elements, 4096 elements and, 32768 elements are studied with the C3D8 linear element. Experimental and numerical comparisons of the lamellae morphology have been presented.

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Available abstract

Abstract The high mechanical strength of the lamellar Ti-6Al-4V extruded rod was characterized. The grain morphology of the extruded Ti-6Al-4V rod was investigated by optical microscopy. The microstructure of Ti-6Al-4V alloy consists of very fine α lamella of approximately 2.5 µm in thickness and β lamella with 1 µm thickness. Besides, a numerical model has been presented that reproduces the morphology of the lamellar colonies. In particular, the representative volume element with 512 elements, 4096 elements and, 32768 elements are studied with the C3D8 linear element. Experimental and numerical comparisons of the lamellae morphology have been presented.

Key concepts: Lamella (surface anatomy), Lamellar structure, Materials science, Microstructure, Morphology (biology), Alloy, Optical microscope, Titanium alloy

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