DT-04 Front/Rear Shock Tower 7075-T6 Alloy DT402830F/R by GPM  [DT402830F/R]

TAMIYA DT-04 RC FIGHTER NXGEN 7075-T6 Alloy Front / Rear Shock Tower - GPM DT402830F/R
Price:
CAD$17.82
Brand:
GPM
Model:
DT402830F/R
GTIN:
4894538407228
Condition:
Brand New
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alt="TAMIYA DT-04 RC FIGHTER NXGEN 7075-T6 Alloy Front / Rear Shock Tower - GPM DT402830F/R" title="TAMIYA DT-04 RC FIGHTER NXGEN 7075-T6 Alloy Front / Rear Shock Tower - GPM DT402830F/R"
alt="TAMIYA DT-04 RC FIGHTER NXGEN 7075-T6 Alloy Front / Rear Shock Tower - GPM DT402830F/R" title="TAMIYA DT-04 RC FIGHTER NXGEN 7075-T6 Alloy Front / Rear Shock Tower - GPM DT402830F/R"

7075-T6 Alloy Shock Tower for DT-04

This CNC machined 7075-T6 alloy shock tower is an aftermarket replacement for DT-04 RC models. It provides multiple mounting holes so you can relocate shock positions and change shock angle without altering the shock bodies themselves. The part gives precise, repeatable mounting options when tuning suspension geometry on 1/10 DT-04 setups.

Installation is straightforward for hobby-level maintenance: remove the factory tower, transfer any required spacers or hardware, and fasten the replacement using the original mounting points and compatible hex screws. Verify thread engagement and use conservative torque to avoid stripping into aluminium, and check clearance for shock shafts through the full suspension travel.

On-track and bench tuning: selecting different tower holes changes leverage and the effective shock angle, which alters rebound and compression behaviour. Try incremental changes, log each setting, and compare handling before moving to springs or damping adjustments.

Compatible Models

  • TAMIYA 1/10 DT-04 RC FIGHTER NXGEN-58741
The tower is CNC machined from 7075-T6 alloy and finished to present a corrosion resistant surface and accurate mounting faces suitable for RC tuning work.
In most cases stock screws and spacers from the DT-04 will work, but confirm that the original spacers seat flush and that thread engagement is correct before final assembly.
Record the hole position, spring rate, and damper setting for each run. Make one change at a time so you can isolate the effect of tower geometry on handling.

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