Aluminum rear bulkhead by 3Racing, designed for Sakura D5S chassis, enhances strength and precision for competitive RC drifting.  [SAK-D5609]

3RACING Sakura D5S Aluminum Rear Bulkhead - SAK-D5609
Price:
USD$18.90
Brand:
3Racing
Model:
SAK-D5609
Condition:
Brand New
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Enhance Your Sakura D5S with the 3Racing Aluminum Rear Bulkhead

The 3Racing SAK-D5609 Aluminum Rear Bulkhead is a precision-engineered upgrade for the Sakura D5S chassis, crafted to improve durability and handling. Constructed from high-quality aluminum, this component provides increased rigidity, ensuring your RC car maintains optimal performance during intense drift sessions. Its design focuses on providing a perfect fit and enhancing the structural integrity of your vehicle, making it an essential part for racers looking to push their Sakura D5S to its limits.

Why Choose the SAK-D5609 Aluminum Rear Bulkhead?

When it comes to RC drifting, every component counts. The 3Racing Aluminum Rear Bulkhead is specifically tailored for the Sakura D5S, offering a robust solution that enhances your car's rear-end stability. By replacing the stock plastic bulkhead with this aluminum version, you gain improved strength and reduced flex, which translates to better control and more predictable handling on the track. This upgrade is ideal for those who demand precision and reliability from their RC vehicles.

Installation Insights and Tips

Installing the SAK-D5609 Aluminum Rear Bulkhead is straightforward, thanks to its precise engineering. Ensure you have the necessary tools on hand, such as hex drivers, for a smooth installation process. Align the bulkhead carefully with the existing mounting points on your Sakura D5S chassis, and secure it using the provided screws. Regular maintenance checks are recommended to keep your bulkhead in top condition, especially if you're frequently hitting the track.

This particular bulkhead is designed specifically for the Sakura D5S chassis, ensuring optimal fit and performance.
While aluminum is slightly heavier than plastic, the increase in strength and durability typically outweighs the minimal weight addition.

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