1. Implement a Dynamic Cooling System with Real-Time Monitoring and Adaptive
Control: Create a dynamic cooling system that incorporates real-time monitoring and
advanced control algorithms (e.g., AI or machine learning) to adapt cooling rates based on
alloy composition and processing conditions. This system will optimize the cooling process
to control precipitate formation, reduce segregation, and enhance material quality by
preventing thermal inconsistencies and hot spots.
2. Integrate High-Precision Sensors for Real-Time Monitoring of Key Parameters:
Equip the TRC setup with integrated sensors to monitor critical parameters such as
temperature, pressure, and material flow. This data-driven approach will enable real-time
adjustments to the cooling process and other operational parameters, improving control
over the casting process and enabling immediate correction of conditions that lead to
segregation. The goal is to produce high-quality strips with uniform microstructures.
3. Experiment with Alternative Roll Materials for Enhanced Performance: Test
alternative roll materials, such as ceramic-coated or high-thermal-conductivity alloys, to
improve heat transfer, wear resistance, and the overall durability of the TRC setup. These
materials will contribute to more uniform cooling across the roll surface, minimizing
segregation and improving strip quality.
4. Enhance Roll Surface Texture with Micro-Patterns: Modify the roll surface texture by
introducing micro-patterns to promote uniform solidification across the strip width. These
surface enhancements will help distribute the melt more evenly, reducing the formation of
segregated regions and ensuring consistent material properties across the entire strip.
5. Support Circular Economy by Enabling Sustainable and High-Quality Recycling:
Design the TRC setup to be compatible with recycled aluminum and magnesium alloys,
focusing on producing high-quality, low-waste strips suitable for high-value industries
such as automotive, aerospace, and electronics. This objective supports circular economy
principles, encouraging resource conservation and promoting eco-friendly production.
6. Develop a Compact, Modular, and Energy-Efficient TRC system tailored for small
scale recyclers, research labs, and educational institutions. The system’s compact design
and low investment requirements will provide access to advanced casting technologies
without significant infrastructure costs, making it a high-value tool for sustainable
manufacturing in these sectors. The objective is to position the TRC setup as a leading
technology in sustainable materials processing in India and internationally.