From Machine Enclosure to Pressurised Build Chamber - Enabling Additive Manufacturing of Large Components in Inert Environments
Hämtar...
Publicerad
Författare
Typ
Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Modellbyggare
Tidskriftstitel
ISSN
Volymtitel
Utgivare
Sammanfattning
Additive manufacturing (AM) of large titanium components for the aerospace industry requires
inert environments to prevent oxidation and contamination to ensure material integrity. As the
aerospace manufacturers scale up titanium AM, maintaining these inert atmospheres becomes
increasingly challenging. Permanova Lasersystem AB is developing a scaled up laser directed
energy deposition (L-DED) system with a larger and reversible build plate to enable larger and
more efficient builds and improved residual stress control. However, the current tent-based inert
enclosure cannot be expanded to work with the new build plate. This thesis explores how
the existing laser safety enclosure surrounding the system can be adapted to also function as an
overpressurised inert enclosure by assessing what overpressure it should withstand and maintain,
how it responds to it, what the biggest problems for maintaining it are, and how different
solutions for solving those problems compare. Interviews, standards review and state-of-theart
analysis established that a pressure differential of 50 Pa prevents ambient air infiltration;
therefore, 100 Pa was selected as the design pressure to incorporate a safety factor of two and
maintain recommended engineering margins.
Leakage assessment revealed critical leakage paths at the floor interface, ceiling, corners, and
panel joints, while structural simulations identified weaknesses in the active protection panels
and part of the skeleton. Based on these findings, sealing and reinforcement concepts were developed
and evaluated. The final solution was to implement metal plates and L-profiles together
with a polyurethane sealant for covering the major leakage paths, a fully sealed active panel to
not only prevent leakage but also to increase stiffness and an additional roof beam to eliminate
deflection. The results demonstrate that the existing laser enclosure can effectively be adapted
into a large, overpressurised inert enclosure without extensive redesign.
Beskrivning
Ämne/nyckelord
overpressure, additive manufacturing, sealing, machine enclosure
