Aerospace

Laser power supplies are widely used in the manufacturing, testing, and maintenance of key aerospace components. Portable laser equipment can ensure the traceability of components and improve surface treatment quality.

1Application of Laser Power Supply in Aerospace

In the aerospace field, laser power supplies are widely used in the manufacturing, testing, and maintenance of critical components due to their high precision, reliability, and resistance to extreme environments.


Continuous fiber laser power supply (such as 6kW continuous fiber laser power supply) is used for aircraft engine blade processing, achieving precision cutting and deep penetration welding of titanium alloy blades. Pulse fiber laser power supply is used for group hole processing of carbon fiber composite panels, without delamination or burrs.


The Nd: YAG laser power supply is applied to the welding of aviation hydraulic pipelines, achieving sealed welding of thin-walled stainless steel pipes. At the same time, high-energy pulses are used for the repair of satellite propulsion fuel tanks, mainly for local cladding repair of aluminum alloy cabin bodies.


Semiconductor laser power supplies, such as the 808nm long pulse semiconductor laser 808 power supply, are used for local annealing of spacecraft coatings and regulating thermal radiation performance due to their compact size and precise temperature control.


CO ₂ laser power supply, with a wavelength of 10.6 μ m for stress free cutting, mainly focuses on the manufacturing of non-metallic components for spacecraft, such as polycarbonate cutting for aircraft portholes and thermal material forming for spacecraft.

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2Application of portable laser equipment in aerospace

In the aerospace field, handheld laser marking machines and handheld laser cleaning machines play an important role. Handheld laser marking machines are mainly used for permanent identification of key components, such as marking serial numbers, QR codes, and other information on engine blades, fasteners, and composite materials to ensure full lifecycle traceability and meet the stringent standards of the aviation industry; Handheld laser cleaning machines are used for surface treatment, such as removing aircraft skin paint layers, aluminum alloy oxide layers, and engine blade carbon deposits, replacing traditional chemical or mechanical cleaning methods to avoid substrate damage. Both have advantages such as portability, efficiency, and environmental friendliness, and can be synergistically applied in aerospace manufacturing, maintenance, and repair to ensure the traceability of components and improve surface treatment quality, thus meeting the industry's strict requirements for high precision and high reliability.

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