Area of research
Materials Chemistry · Mechanical Engineering
Research interest
Research focused on Microstructure and Alloy, with related work in Crystal twinning, Powder metallurgy, Ultimate tensile strength. Notable publications include 'Strain rate dependence of deformation-induced transformation and twinning in a metastable titanium alloy', 'Multi-layered structures of Ti-6Al-4V alloy and TiC and TiB composites on its base fabricated using blended elemental powder metallurgy', and 'The effect of cooling rates on the microstructure and mechanical properties of thermo-mechanically processed Ti–Al–Mo–V–Cr–Fe alloys'.
Ballistic performance of titanium-based layered composites made using blended elemental powder metallurgy and hot isostatic pressing
Significant hardening effect of high-temperature aging of alloy Ti-6Al-4V composite reinforced with TiC
Mechanical Behavior of Titanium Based Metal Matrix Composites Reinforced with TiC or TiB Particles under Quasi-Static and High Strain-Rate Compression
Effect of strain on microstructural development during uniaxial compression of metastable beta Ti–10V–2Fe–3Al alloy
Diffusion bonding of TiC or TiB reinforced Ti–6Al–4V matrix composites to conventional Ti–6Al–4V alloy
Multi-layered structures of Ti-6Al-4V alloy and TiC and TiB composites on its base fabricated using blended elemental powder metallurgy
The effect of β-phase condition on the tensile behaviour in a near-β Ti alloy produced by blended elemental powder metallurgy
Formation of Deformation-Induced Products in a Metastable-β Titanium Alloy during High Temperature Compression
The effect of thermo-mechanical processing and ageing time on microstructure and mechanical properties of powder metallurgy near β titanium alloys
Strain rate dependence of deformation-induced transformation and twinning in a metastable titanium alloy
The effect of ageing on microstructure and mechanical properties of powder Ti–5Al–5Mo–5V–1Cr–1Fe alloy
The effect of cooling rates on the microstructure and mechanical properties of thermo-mechanically processed Ti–Al–Mo–V–Cr–Fe alloys
Microstructure evolution and alloying elements distribution between the phases in powder near-β titanium alloys during thermo-mechanical processing
Microstructure Development and Alloying Elements Diffusion during Sintering of Near-β Titanium Alloys