Using Artificial Intelligence to Optimise Additive Manufacturing Parameters and Reproducibility
- Home
- IP Marketplace
- Advance Material & Coating
- Using Artificial Intelligence to Optimise Additive Manufacturing Parameters and Reproducibility
Technology Overview
The Artificial Intelligence – Parabolic Response Surface (AI-PRS) platform optimizes additive manufacturing by addressing latency effects and dynamic processing parameters with minimal experimentation. It supports various materials and ensures consistent product performance by accounting for melting dynamics, cooling rates, and material properties.
Manufacturing Efficiency & Reliability
-
Optimised Additive Manufacturing:
AI-PRS streamlines additive manufacturing (AM) parameter optimisation, reducing trial-and-error and improving reproducibility for critical maritime components.
-
Multi-Material Capability:
Supports metals, polymers, composites, and ceramics, enabling diverse marine applications from corrosion-resistant fittings to lightweight structures.
-
Improved Quality Control:
Accounts for factors such as heat transfer and impurities to ensure consistent performance in safety-critical parts.
-
Integrated Post-Processing Optimisation:
Aligns printing and heat treatment parameters to enhance mechanical reliability in harsh marine environments.
-
Scalable On-Demand Production :
Enables cost-effective fabrication of customised parts for shipyards and offshore maintenance, supporting rapid repairs and retrofits.
Maritime Use Cases

This AI-driven process refinement system optimises 3D printing parameters to achieve high precision and material durability in additive manufacturing. By improving printing consistency and reducing dependence on traditional supply chains, the technology can help minimise production delays and prevent costly vessel downtime.

In shipbuilding and marine component manufacturing, the system enhances processes such as welding, material deposition, and precision machining by improving product consistency and reducing manufacturing defects. This can increase production efficiency, shorten turnaround times, and reduce material waste.

The technology also supports compliance with maritime classification standards by ensuring that additively manufactured components meet ISO maritime requirements. This helps streamline certification processes and facilitates the adoption of advanced manufacturing technologies in the maritime industry.
Related Tech Offers
related products
-

MXene Fibres for Electromagnet ic Interference Shielding and Thermal Management
by pixart$0.00 Add to Cart -

Advanced and Sustainable Manufacturing Technologies for Shipbuilding and Repair
by pixart$0.00 Add to Cart -

Self sustainable Conversion of Plastic Waste to Carbon Nanomaterials
by pixart$0.00 Add to Cart -

Induction Heating Cured Epoxy Adhesives
by pixart$0.00 Add to Cart