A case study details how ExxonMobil utilized Meltio's Directed Energy Deposition (DED) technology for repairs at one of its refineries, showcasing the practical application of metal additive manufacturing in industrial maintenance.
ExxonMobil has successfully implemented Meltio's Directed Energy Deposition (DED) metal 3D printing technology for maintenance and repair operations within its refinery.
The case study, published by Metal Additive Manufacturing magazine, outlines how the refinery leveraged Meltio's DED system to address critical component issues, reducing downtime and associated costs.
While specific details of the repairs are not provided, the application demonstrates the growing adoption of metal AM for functional parts in demanding industrial environments. The use of DED allows for the addition of material to existing components, enabling complex repairs and the potential for part redesign or enhancement.
This initiative signifies a step towards integrating advanced manufacturing techniques into routine industrial maintenance, offering a more agile and potentially cost-effective alternative to traditional repair methods or part replacement.
This case study highlights the practical utility of Directed Energy Deposition (DED) in industrial maintenance. By enabling on-site repairs and material addition to existing parts, DED systems like Meltio's can significantly reduce downtime and operational costs in critical infrastructure like refineries. This aligns with the broader trend of leveraging additive manufacturing for asset management and extending component lifecycles, moving beyond prototyping to direct production and repair applications.
Edited by the news editor with AI from the original report — please refer to the original source.