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Eibach 23-24 Chevrolet Colorado Trailboss 2.7L 4cyl 4WD Pro-Truck Reservoir Shock Rear - Single

Eibach 23-24 Chevrolet Colorado Trailboss 2.7L 4cyl 4WD Pro-Truck Reservoir Shock Rear - Single

SKU:E60-23-042-02-01

In stock

Regular price $290.00 USD
Regular price $322.22 USD Sale price $290.00 USD
ADDITIONAL DISCOUNTS APPLIED AT CHECKOUT Sold out

The Eibach Pro-Truck Reservoir Shock Rear is a high-performance suspension component designed to enhance off-road capabilities for the Chevrolet Colorado Trailboss models from 2023 to 2024 with a 2.7L 4-cylinder 4WD setup. Featuring a remote reservoir, this shock dissipates heat more effectively than traditional models, reducing shock fade during demanding off-road conditions. Its design minimizes aeration and foaming of internal fluids by separating them from the nitrogen gas charge, resulting in more responsive and consistent damping performance. Constructed with durable materials, the reservoir shock ensures improved heat management and responsiveness, making it suitable for challenging terrains and extended off-road use.

This single rear reservoir shock is specifically engineered for the 2023-2024 Chevrolet Colorado Trailboss 2.7L 4-cylinder 4WD models. It is a direct replacement for the factory rear shocks, providing enhanced off-road performance and durability. The shock is designed for off-road, trail, and rugged driving applications, offering increased stability and control. Installation is straightforward as a bolt-on upgrade, and it is compatible with the vehicle’s existing suspension setup. This component is ideal for enthusiasts seeking to improve their truck’s off-road handling and heat dissipation capabilities.

Overview

Eibach's PRO-TRUCK Reservoir shocks are designed and engineered to improve the off-road performance of your vehicle. Unlike traditional shocks, “resi” shocks use a remote reservoir which allows additional fluid to dissipate heat more effectively - reducing shock fade. Resi shocks also allow for more responsive performance by reducing aeration (foaming) of the internal fluids by separating it from the nitrogen gas charge.

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