Lightweight CNC-machined parts designed for extreme environments, such as titanium alloy brackets and turbine blades. These components meet aerospace-grade strength and high-temperature resistance standards while balancing weight reduction and fatigue durability.
Precision CNC Machining of Aircraft Engine Combustion Chambers:
Utilizing a high-temperature alloy integral structure, this component is precisely machined using five-axis CNC milling to achieve sub-millimeter accuracy in complex film cooling holes and fuel injection channels.
It has successfully passed AMS material certification and NADCAP special process audits, meeting the stringent demands of extreme thermal cycles exceeding 1500°C.
The weld-free design eliminates fatigue weaknesses, while the integrated vortex finder enhances combustion efficiency to 99.5%, ensuring nitrogen oxide emissions remain below CAEP/8 standards. Strict adherence to the AS9100D quality system is maintained, with full-process digital twin traceability and verification through 3,000 hours of accelerated equivalent testing.
Optimized for mainstream aviation power platforms such as LEAP and GEnx, it offers an impressive mean time between failures (MTBF) of 25,000 flight hours.