What I check first: The obvious broken part is not always the part that makes the next flight unsafe. An impact can loosen a firewall, crack a wing joiner, shift a servo tray, bruise foam, damage a battery, bend a shaft, or pull a control horn without leaving a dramatic mark. I inspect from the point of impact outward and compare both sides of the airplane.
Assess the Damage Before Repairing It
| What you find | What it can mean | Best next step |
|---|---|---|
| Nose-first impact | Spinner, propeller, shaft, motor or engine, mount, firewall, battery, and forward fuselage carry the load | Remove the cowl and inspect beyond the visible nose damage |
| Wingtip or cartwheel | Wing joiner, spar, tip, aileron, servo, fuselage wing saddle, and opposite gear can be damaged | Compare both panels for twist, cracks, and movement |
| Hard landing | Gear mount, fuselage formers, wing attachment, battery restraint, tailwheel, and propeller may be affected | Load-check the gear and inspect structure inside the fuselage |
| Tail strike | Stabilizer mount, fin, tail post, elevator or rudder hinges, pushrods, and servos can shift | Sight the tail alignment and test every control under light load |
| Water, mud, or crop landing | Electronics, bearings, connectors, fuel systems, cooling passages, and hidden cavities may be contaminated | Dry, clean, and inspect before applying power |
| Minor-looking foam crease | Internal foam beads, spars, glue joints, or molded channels may be crushed | Flex and compare the area carefully; surface shape alone is not proof |
Work Through the Repair in This Order
- Make the airplane electrically and mechanically safe. Disconnect batteries, shut off fuel and ignition, remove or restrain the propeller, and keep a damaged LiPo in a safe location.
- Photograph and record the impact. Before straightening anything, note where the airplane hit, which parts separated, battery position, switch positions, and any marks showing how loads traveled.
- Remove access panels and equipment as needed. Cowls, hatches, wings, seats, trays, and fairings can hide cracked structure. Do not stop at the first visible break.
- Inspect from the impact point outward. Follow spars, longerons, formers, doublers, motor boxes, wing tubes, joiners, servo trays, and mounting rails into apparently undamaged areas.
- Compare symmetry and alignment. Sight the wing and tail, measure control surfaces, compare landing gear, and check whether the fuselage, stabilizer, fin, motor, and wing still share their intended alignment.
- Load-check without being destructive. Use moderate hand pressure to reveal clicking joints, movement, soft spots, delamination, loose horns, cracked hinges, shifting mounts, and damaged gear attachments.
- Inspect every control and radio component. Check servo cases and gears, mounts, arms, pushrods, clevises, horns, hinges, extensions, receiver antennas, switches, batteries, and connectors.
- Inspect the complete power system. Check propeller, spinner, adapters, shafts, bearings, motor or engine, firewall, ESC, fuel tank and tubing, batteries, connectors, exhaust, and cooling openings.
- Repair, rebalance, and perform a full preflight. After repairs, verify center of gravity, lateral balance, control direction, stabilization direction, failsafe, range, current or engine operation, and hardware security.
- Plan a conservative return-to-service flight. Use calm weather, a large familiar field, a known-good battery, an experienced observer, and a clear glide path. Land at the first abnormal sound or response.
Do Not Hide a Structural Problem
A neat surface does not prove the original strength, alignment, or load path has been restored. Dry-fit the structure, compare it with undamaged reference points, and make sure loads are carried into sound material. More adhesive is not a substitute for missing or crushed structure.
Common Mistakes
- Repairing only the part that visibly broke off
- Reusing a damaged propeller or questionable battery
- Powering the model before checking for a jammed motor or pinched wire
- Assuming foam that springs back has regained full strength
- Skipping CG and control checks because no radio parts were replaced
Before the Airplane Flies Again
- Confirm the repaired structure is straight, secure, and fully cured.
- Check every control direction, hinge, horn, linkage, servo mount, and endpoint.
- Verify the center of gravity and lateral balance with the airplane flight-ready.
- Inspect wiring, batteries, fuel systems, power-system mounts, and rotating parts.
- Perform the manufacturer’s range test after radio or receiver-power work.
- Use a conservative return-to-service flight and land at the first abnormal sound or response.
Related RC Plane Lab Guides
Use the complete preflight checklist, mechanical setup guide, repair overview, and sudden handling-change diagnostic. Return to the RC Airplane Building & Repair Center.
RC Plane Lab provides general educational information. Follow the instructions for your specific airplane, materials, adhesives, covering, engine, motor, batteries, and radio equipment.