Axial SCX24 Aluminum 1.0'' Beadlock 8-Spoke Wheel Set - JR-SCX2490A-BK by Jazrider  [JR-SCX2490A-BK]

Axial Racing SCX24 Aluminum 1.0'' Beadlock 8 Spokes Wheels (Black,4pcs) w/Brass Ring
Price:
£16.59
Brand:
JAZRIDER
Model:
JR-SCX2490A-BK
Condition:
Brand New
Available in shop
Write a review

Product details & scale use

This wheel set targets Axial SCX24 chassis applications and is supplied as four black aluminum beadlock wheels with a brass ring. They function as a machined replacement for stock wheels on 1/24 scale trail and crawler rigs while preserving standard fit interfaces.

The wheels give a metal alternative that can reduce long-term wear, permit more accurate tyre seating for tuning, and change the vehicle's visual scale balance. Fitment requires removal of the factory wheels and assembly of the beadlock halves and rings using the original wheel mounting hardware where required.

  • Contents: 4pcs beadlock-style wheels, black finish with brass ring.
  • Purpose: replacement and tuning for 1/24 scale trail/crawling platforms.
  • Fit note: compatible with Axial SCX24 wheel hubs; mount per chassis instructions.

Specifications

  • Item Axial Racing SCX24 Aluminum 1.0'' Beadlock 8 Spokes Wheels (black), 4pcs
  • Material Aluminum with brass ring
  • Model Number JR-SCX2490A-BK
  • Compatibility Axial SCX24 1/24 scale 4WD chassis

This set is a practical option for scale-minded SCX24 owners looking for metal beadlocks to enhance appearance and durability while maintaining hub compatibility.

You receive four wheel halves assembled as beadlock-style wheels with brass rings; screws and chassis-specific mounting hardware are not included and should be reused from your vehicle.
Tyre seating can change slightly due to the beadlock profile and brass ring; check bead alignment and seat tyres evenly around the rim when assembling.
These wheels are dimensioned for SCX24 fitment to avoid drivetrain interference, but verify clearance with larger tyre sizes or custom suspension setups before final use.
You may need to experiment with softer or firmer inserts to match the altered rotational mass and achieve desired traction and handling characteristics.

Copyright © 2008-2026 rcjaz.co.uk All rights reserved