XRAY T4'19 Magnesium Flex Chassis Insert - Arrowmax AM-900002  [AM-900002]

Arrowmax AM-900002 Xray T4\'19 Chssis Arrowspace Mg Flex
Price:
CAD$182.13
Brand:
Arrowmax
Model:
AM-900002
Condition:
Brand New
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Arrowmax AM-900002 chassis summary

This Arrowmax AM-900002 component is an RC chassis element specified for use with the XRAY T4'19 platform. It functions as an Arrowspace magnesium flex piece to modify chassis flex behavior for setup work. The sections below cover compatibility, tuning intent, and practical points for racers who tune chassis dynamics on circuit.

How it affects handling: chassis flex changes alter weight transfer, traction and steering feel on 1/10 touring cars; a magnesium flex part lets drivers test different stiffness distributions to address understeer or oversteer and to tune mid-corner balance across surfaces.

Fitting notes: this item is intended for the XRAY T4'19 chassis family and installs into the factory mounting area for the T4'19. Verify fit and clearances on your T4'19 before tightening fasteners, and make sure existing screws and mounts are compatible with the AM-900002.

Specifications

  • Item: Arrowspace Mg Flex chassis component
  • Material: Magnesium
  • Model Number: AM-900002
  • Compatibility: XRAY T4'19

Fit the AM-900002 when you want to compare chassis flex setups on XRAY T4'19 cars; change one parameter at a time and use lap times and driver feedback to evaluate handling shifts.

The AM-900002 is listed for XRAY T4'19 compatibility. Before final installation, check the T4'19 mounting pattern and clearances to confirm a clean fit with your chassis hardware.
A magnesium flex insert shifts chassis stiffness and flex distribution, which affects how weight moves during braking and cornering, altering traction levels and steering response.
Inspect the component after track sessions for cracks or deformation, ensure screws are correctly torqued, and replace the part if you detect damage or permanent bend.
Make only one change at a time, log lap times and driver notes, and compare runs to isolate how the flex change affects corner entry, mid-corner grip and exit behaviour.

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