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.
As a core actuator in aviation flight control systems, this unit features an electromechanical and hydraulic integrated design. It incorporates brushless motors, bidirectional hydraulic pumps, and precision actuators to directly convert electrical energy into hydraulic energy, enabling control surface movement while eliminating the need for a traditional central hydraulic pipeline system.
With high power density and low weight, it supports redundant backup architecture (such as 2×2 redundancy) to ensure flight safety. A built-in high-precision sensor provides real-time feedback on position and pressure data, achieving a response time of ≤15ms and an output force of 50kN.
Its titanium alloy shell is forged to withstand extreme environmental conditions ranging from -55°C to 125°C, meeting DO-160G airworthiness standards. Suitable for key control surfaces such as flaps and rudders, it significantly enhances aircraft reliability while reducing maintenance costs throughout the lifecycle.