Home > Industries > Aerospace
Aerospace components operate under demanding temperature, stress, and dimensional requirements. Cooling passages, composite panels, fastener holes, and mating surfaces require controlled cleaning. When the substrate and contaminant are suitable, laser cleaning can reduce the dimensional risks associated with grinding and abrasive blasting.
Evaluate blades, vanes, nozzles, combustion liners, and cases only against the customer’s engineering specification and approval path. Hot-section deposits, coating residue, carbon, cooling passages, dimensions, and surface condition may require a controlled trial plus inspection or measurement; no universal dimensional or media-residue outcome is promised. For components being prepared for examination, see our inspection and NDT surface preparation service.
Shop compatible
An aerospace laser cleaning enquiry should begin with the customer’s engineering requirements. Identify the part or tool, alloy, coating, finish and approval route. A proposed cleaning method needs a defined trial and acceptance decision.
For a proposed trial on metal composite-production tooling, provide the finish, coating and release-agent information. Ask the tooling engineer to mark the test area and specify the surface checks needed before further processing.
Review metal composite-mold cleaning and inspector-defined surface preparation. Approved recurring tooling work can be discussed through Maintenance Contracts.
Aerospace-related laser cleaning should begin with the engineering requirement, not a general claim that the process is safe for every alloy or component. The part number, alloy, coating, heat treatment, surface condition, tolerance and next operation determine whether a test coupon or controlled trial is appropriate.
Tri-State should not process a flight-critical component, controlled repair or qualified surface-preparation step without the customer’s written specification and approval path.
Plan recurring tooling work through Maintenance Contracts with the customer’s engineering requirements and approval path. For inspector-defined areas, review inspection and NDT surface preparation.
| Scope factor | Information needed |
|---|---|
| Engineering authority | Drawing, process specification, repair authority and written approval for the trial. |
| Material | Alloy, coating, heat treatment, surface finish and dimensional limits. |
| Process evidence | Test coupon, parameter record, before-and-after inspection and acceptance criteria. |
| Contamination control | Residue identity, extraction, clean-area requirements and foreign-object controls. |
| Quality records | Operator, equipment, date, settings, test location and inspection result. |
Production rate should be established only after the approved test demonstrates the required endpoint without unacceptable change. Submit the non-sensitive project information through the project review form; do not upload export-controlled, classified or otherwise restricted technical data through the public website.
For laser work-area planning, see OSHA laser hazard standards. Review site conditions and the agreed controls before scheduling.