The Challenge
Aerospace titanium and aluminum components often combine thin walls, deep cavities, complex geometries and demanding dimensional tolerances. Titanium creates high cutting temperatures and rapid tool wear, while thin-walled aluminum parts can deform or vibrate during high-speed machining.
Our Solution
We evaluate the component geometry, material, tolerance requirements and production volume before defining the machine configuration, workholding method, cutting tools and machining strategy. Tool paths and cutting parameters are optimized to control heat, vibration and part deformation.
Application
Suitable for aerospace structural parts, titanium brackets, aluminum housings, impellers, landing-gear components and other complex five-axis machined parts.
Result
The integrated machining solution improves dimensional stability, surface quality and tool life while reducing setup operations and overall cycle time.