Description
Upgrade the rear-end aerodynamics and styling of your BMW F90 M5 with the Cvrbonized Carbon Fiber Rear Splats. These precision-crafted rear bumper extensions are designed to enhance airflow, improve stability, and add an aggressive race-inspired aesthetic.
Manufactured from premium-quality carbon fiber, these rear splats offer a lightweight yet durable solution that complements the F90 M5’s high-performance design. The aerodynamic shape seamlessly integrates with the factory bumper, creating a sleek, aggressive stance that enhances both form and function.
With a high-gloss UV-resistant finish, these rear splats are protected against fading, yellowing, and weather damage, ensuring long-term durability and showroom-quality aesthetics. The precise OEM fitment allows for easy installation using factory mounting points or automotive-grade adhesive, requiring no modifications to your vehicle.
Key Features:
- High-Quality Carbon Fiber Construction – Lightweight, durable, and impact-resistant.
- Aggressive Rear-End Styling – Enhances the sporty, race-inspired look of your F90 M5.
- Aerodynamic Benefits – Improves airflow and rear-end stability at high speeds.
- Perfect Fitment – Engineered to seamlessly integrate with the factory rear bumper.
- UV-Resistant Gloss Finish – Protects against discoloration, fading, and environmental damage.
- Easy Installation – Uses factory mounting points or automotive-grade adhesive with no modifications required.
Fitment:
- BMW F90 M5 (2018-2023)
Why Choose Cvrbonized Carbon Fiber Rear Splats?
For BMW M5 owners seeking to enhance the aggressive stance and aerodynamics of their vehicle, these carbon fiber rear splats provide the perfect combination of style, performance, and precision fitment. Whether installed alongside other carbon fiber upgrades or as a standalone addition, these rear splats bring a track-inspired aesthetic to your F90 M5.
Upgrade your BMW F90 M5 with the Cvrbonized Carbon Fiber Rear Splats and experience the perfect blend of high-performance styling and aerodynamic efficiency.