Aluminum front shock tower for Vaterra K-5 Blazer Ascender, enhances durability and stability for off-road adventures.  [K5028]

Vaterra 1/10 K-5 Blazer Ascender Aluminium Front Shock Tower - 2pcs set - GPM K5028
Price:
USD$26.90
Brand:
GPM
Model:
K5028
GTIN:
4894538081282
Condition:
Brand New
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alt="Vaterra 1/10 K-5 Blazer Ascender Aluminium Front Shock Tower - 2pcs set - GPM K5028" title="Vaterra 1/10 K-5 Blazer Ascender Aluminium Front Shock Tower - 2pcs set - GPM K5028"

Enhance Your Vaterra K-5 Blazer Ascender with GPM's Aluminum Shock Towers

Upgrade your Vaterra 1/10 K-5 Blazer Ascender with the precision-engineered GPM Aluminum Front Shock Tower. Designed to improve the structural integrity of your RC vehicle, this set of two shock towers offers enhanced durability and stability, making it ideal for tackling rugged terrains. Crafted from high-quality aluminum, these shock towers are not only lightweight but also provide superior strength, ensuring your vehicle handles better under stress.

Why Choose Aluminum for Your RC Shock Towers?

Aluminum is a favored choice among RC enthusiasts due to its balance of weight and strength. The GPM K5028 shock towers are designed to withstand the rigors of off-road racing, providing a reliable upgrade that enhances both performance and longevity. The material's resistance to corrosion and wear makes it perfect for outdoor use, where exposure to elements is a constant challenge.

Installation and Compatibility

Installing the GPM Aluminum Front Shock Tower is straightforward, requiring no special tools or modifications to your existing setup. Compatible with the Vaterra K-5 Blazer Ascender, these towers fit seamlessly into your vehicle's chassis, offering an immediate improvement in handling and response.

Suitable Models

  • Vaterra K-5 Blazer Ascender
Aluminum provides a strong yet lightweight structure, improving durability and handling without adding excessive weight.
This shock tower is specifically designed for the Vaterra K-5 Blazer Ascender, ensuring a perfect fit and optimal performance.

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