GPM K5110X Precision Internal Shocks for Vaterra K-5 Blazer Ascender  [K5110X]

Vaterra 1/10 K-5 Blazer Ascender Aluminium Front/Rear Internal Shocks (110mm) - 1pr set - GPM K5110X
Price:
USD$18.90
Brand:
GPM
Model:
K5110X
GTIN:
4894538083248
Condition:
Brand New
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alt="Vaterra 1/10 K-5 Blazer Ascender Aluminium Front/Rear Internal Shocks (110mm) - 1pr set - GPM K5110X" title="Vaterra 1/10 K-5 Blazer Ascender Aluminium Front/Rear Internal Shocks (110mm) - 1pr set - GPM K5110X"

Precision engineered internal shocks for the Vaterra K-5 Blazer Ascender

Designed for serious hobbyists, the GPM K5110X aluminium internal shocks bring CNC-style durability and tighter damping control to the Vaterra 1/10 K-5 Blazer Ascender. These 110mm internals are intended to improve consistency, reduce wear on standard components, and support more accurate suspension setup.

Technical advantages of the GPM K5110X internals

  • Material: High grade aluminium internals for enhanced structural integrity and long service life.
  • Compatibility: Precisely dimensioned to fit the Vaterra K-5 Blazer Ascender shock assembly as a direct internal upgrade.
  • Functionality: Optimised damping response for cleaner rebound and compression characteristics under load.
  • Installation: Serviceable design allowing routine maintenance and tuning without special tools.

Packing includes

  • 1 pair of 110mm aluminum internal shocks

Original Name / Part No:

  • Vaterra 1/10 K-5 Blazer Ascender Aluminium Front/Rear Internal Shocks (110mm) - 1pr set - GPM K5110X

Compatible Models

  • Vaterra 1/10 K-5 Blazer Ascender
Components are aluminium for strength and heat resistance with precision machining tolerance to ensure consistent piston travel and seal seating for predictable damping.
Stiffer, more consistent internals widen effective tuning range; you can use different oil weights and piston sizes to refine both low and high speed damping curves.
Yes, the internals are designed for service. Seals, pistons and oil are replaceable to maintain peak performance and extend component life.