Area of research
Mechanical Engineering · Ceramics and Composites
Research interest
Research interests include Materials science, Ceramic, Composite material, Cubic zirconia, Microstructure, and Sintering.
Scratch and grinding behavior of different cemented carbide grades for cutting inserts
Sterically Stabilized (Zr,Ti)-(Al,Sn,Pb,Bi)-C MAX Phase Solid Solutions with Zn Additions and Enhanced Chemical Complexity on the A-Site
Investigation of printing and post-processing parameters for enhancing the high-strength of zirconia ceramics via direct ink writing
Novel zirconia ceramics for dental implant materials
Rheology and printability of alumina-toughened zirconia pastes for high-density strong parts via direct ink writing
Facile synthesis of high entropy carbide-nickel based cermets by in-situ carbo-thermal reduction of transition metal oxides
Electrification of clinker and calcination treatments in the cement sector by microwave technology – A review
Thermal Reactivation of Hydrated Cement Paste: Properties and Impact on Cement Hydration
Optimizing dispersants for direct ink writing of alumina toughened zirconia (ATZ) ceramics: Insights into suspension behavior and rheological properties
NbC-Ni based cermets: Phase diagrams, microstructure and mechanical properties
Layer characteristics in strength-gradient multilayered yttria-stabilized zirconia
Evaluation of 3D-Printed Magnetic Materials For Additively-Manufactured Electrical Machines
UV‐Curing Assisted Direct Ink Writing of Dense, Crack‐Free, and High‐Performance Zirconia‐Based Composites With Aligned Alumina Platelets
Upscaled Synthesis Protocol for Phase‐Pure, Colloidally Stable MXenes with Long Shelf Lives
A hybrid 1D/2D coating strategy with MXene and CNT towards the interfacial reinforcement of carbon fiber/poly(ether ether ketone) composite
Mechanical properties–translucency–microstructure relationships in commercial monolayer and multilayer monolithic zirconia ceramics
3D printed zirconia dental implants with integrated directional surface pores combine mechanical strength with favorable osteoblast response
Liquid phase assisted synthesis of (Ti,V,Nb,Ta,W)C-Ni high entropy carbide cermets by conventional pressureless sintering
Chemically complex double solid solution MAX phase-based ceramics in the (Ti,Zr,Hf,V,Nb)-(Al,Sn)-C system
Synthesis of MAX phase-based ceramics from early transition metal hydride powders
Laser surface texturing of zirconia-based ceramics for dental applications: A review
Additively Manufactured Zirconia for Dental Applications
Additive manufacturing of zirconia ceramics by material jetting
Crack mitigation in Laser Powder Bed Fusion processed Hastelloy X using a combined numerical-experimental approach
Single-point scratch testing for understanding particle engagement in abrasion of multiphase materials
Mechanical properties, aging stability and translucency of speed-sintered zirconia for chairside restorations
Importance of tetragonal phase in high-translucent partially stabilized zirconia for dental restorations
Mechanical properties and cytocompatibility of dense and porous Zn produced by laser powder bed fusion for biodegradable implant applications
Impact of sandblasting on the flexural strength of highly translucent zirconia
Compatibility of Zr2AlC MAX phase-based ceramics with oxygen-poor, static liquid lead–bismuth eutectic