Tracks

   Track 1.  Advances in Engineering Materials

  • Ferrous and Non-ferrous Materials, Composites, Micro/Nano Materials, Ceramics.

  • Functional Materials, Biomaterials, Smart/Intelligent Materials

  • Materials Applications, Mechanical Behavior & Fracture, Performance and Life Cycle

  • Materials Property and Characterization.

  • Energy Storage Materials, Heating and Cooling Systems with Renewable Energy and Energy Harvesting

  • Quantum Materials and Metamaterials

  • Piezoelectrics and Piezomagnetics.

  • Tribology and Wear, Interfaces and Interphases

  • Creep and Aggressive Environment, Corrosion

  • Medical Implant Materials, Silica and Carbon Materials

  • Graphite, Graphene, Magnetic and Optical Materials

  • Liquid Crystals, Batteries, Solar cells

  • Organic Electronics, Mesoporous Materials, Biocatalysis

  • Photocatalysis, Polymers 

Track 2.  Manufacturing Technology, Modeling, Analysis and Optimization

  • Conventional and Non-conventional Machining Processes and their Hybridization

  • Advanced Finishing Processes, Micro-Machining

  • Surface Engineering/Coatings

  • Material Forming and Joining

  • Material Design and Development

  • Microwave Processing of Materials

  • Laser Machining and Sintering

  • Bio-Manufacturing, Additive Manufacturing

  • Modelling, Analysis and Simulation of Manufacturing Processes

  • Multi-objective Optimization

  • Applications of Mathematical Modelling and Optimization

  • Data Mining, Cloud Computing, IoT, Industrial IoT

  • Machine Learning and Applications

  • Artificial Intelligence, Computer Vision, Big Data Analytics

  • Vibration, Noise Analysis and Control

Track 3.  Architecture and Infrastructural Design Materials

  • Advanced Material Characterization Techniques and Damage Mechanics

  • Multi-scale Modelling of Materials

  • Design and Architecture of Materials

  • Fatigue in large Constructions

  • Stability and Strength of Concrete

  • Steel and Glass Structures and Technology

  • Durability and Sustainability of Materials

  • Use of Waste Materials in Infrastructure Projects

  • Design of New Materials for Sustainability

  • Eco-efficient and Ultra-High-Performance Cementitious Materials

  • Geotechnical Reuse of Solid Waste

Track 4.  Technological Aspects of Materials in Electrical, Electronics and Computer Systems

  • Materials for Sustainability with Technology Downscaling

  • Fabrication Process of Nanomaterials and Nanodevices

  • MEMS Integration, 3D Printing and 4D Printing.

  • Materials for Semiconductor Devices and Wearable Antennas

  • Optoelectronic Materials

  • Materials for State-of-the-Art Transistors

  • Smart Grids

  • Sensors and Actuators

  • Planning, Warehousing, Procurement of Materials

  • Material Transportation, Intelligent Transport Systems

  • Disposal and Control, Material Requirement Planning

  • Materials for Efficient Design of Analog and Digital Integrated Circuits as well as Communication Applications

  • High Voltage Engineering and Electrical Safety

  • High-Performance Computer Networks, Distributed Computing, Adhoc Networks

  • Augmented Reality, Supply Chain Management, Quality and Inventory control, Logistic management