Litcius/Paper detail

Effect of Molybdenum (Mo) Addition on Phase Composition, Microstructure, and Mechanical Properties of Pre-Alloyed Ti6Al4V Using Spark Plasma Sintering Technique

Murugesan Rajadurai, Muthuchamy AyyappaRaj, A. Raja Annamalai, Dinesh Agrawal, Chun‐Ping Jen

2021Molecules15 citationsDOIOpen Access PDF

Abstract

The effect of molybdenum additions on the phases, microstructures, and mechanical properties of pre-alloyed Ti6Al4V was studied through the spark plasma sintering technique. Ti6Al4V-xMo (where x = 0, 2, 4, 6 wt.% of Mo) alloys were developed, and the sintered compacts were characterized in terms of their phase composition, microstructure, and mechanical properties. The results show that the equiaxed primary alpha and Widmänstatten (alpha + beta) microstructure in pre-alloyed Ti6Al4V is transformed into a duplex and globular model with the increasing content of Mo from 0 to 6%. The changing pattern of the microstructure of the sample strongly influences the properties of the material. The solid solution hardening element such as Mo enhances mechanical properties such as yield strength, ultimate tensile strength, ductility, and hardness compared with the pre-alloyed Ti6Al4V alloy.

Topics & Concepts

Spark plasma sinteringMicrostructureMaterials scienceTitanium alloyAlloyUltimate tensile strengthMolybdenumMetallurgyEquiaxed crystalsDuctility (Earth science)Composite materialCreepTitanium Alloys Microstructure and PropertiesAdvanced materials and compositesIntermetallics and Advanced Alloy Properties