The best carbon fiber replacement. I love my C8 and when the hud display was pulling back, extreme came in clutch. As always you have my respect.
2020-25 Corvette C8 | DRY CARBON FIBER Replacement Upper Dash Instrument Panel
Upgrade the interior of your 2020–2025 Chevrolet Corvette C8 with the Corvette C8 | CARBON FIBER Replacement Upper Dash Instrument Panel. Designed as a direct replacement for the OEM upper dash trim, this carbon fiber panel delivers a factory-plus look with motorsport-inspired quality. Crafted from genuine dry prepreg carbon fiber, it provides exceptional rigidity and lightweight performance while showcasing a stunning exposed weave that elevates your cockpit’s visual appeal. The panel installs seamlessly using existing factory clips and mounting points, requiring no cutting, drilling, or adhesive. This upgrade preserves all factory functionality, ensuring perfect fitment around your instrument cluster and dashboard controls. Package includes 1 X Corvette C8 | Factory Style Carbon Fiber Replacement Upper Dashboard Instrument Panel. Ideal for enthusiasts looking to enhance their daily driver, track car, or show vehicle with a premium, performance-oriented interior component.
FITMENT Fits 2020-2025 Chevrolet Corvette C8 Models
This replacement upper dash panel is precision-engineered for 2020–2025 Chevrolet Corvette C8 models, delivering a seamless factory-style upgrade. The dry carbon fiber construction ensures lightweight rigidity and a high-end motorsport-grade aesthetic that surpasses traditional overlays. Designed as a full replacement rather than a surface overlay, the panel aligns perfectly with OEM dash geometry for consistent edges and seamless transitions with surrounding panels. Direct clip-on installation means no modifications, cutting, or adhesives are required. The exposed carbon fiber weave, finished with a UV-resistant clear coat, adds a premium interior look while protecting against fading and wear over time. Lightweight yet strong, it reduces unnecessary trim weight and complements other carbon fiber interior components. Retains full OEM functionality around controls and instrument cluster, making it suitable for performance builds, show cars, and luxury daily driving upgrades.
Professional installation is recommended. This panel installs using factory clips and mounting points without drilling, cutting, or permanent modifications. Installation manual is not included. No hardware is required.
FITMENT Fits 2020-2025 Chevrolet Corvette C8 Models
| Year | Make | Model | Trim |
|---|---|---|---|
| 2025 | Chevrolet | Corvette | E-Ray Convertible 2-Door |
| 2025 | Chevrolet | Corvette | E-Ray Coupe 2-Door |
| 2025 | Chevrolet | Corvette | Stingray Convertible 2-Door |
| 2025 | Chevrolet | Corvette | Stingray Coupe 2-Door |
| 2025 | Chevrolet | Corvette | Z06 Convertible 2-Door |
| 2025 | Chevrolet | Corvette | Z06 Coupe 2-Door |
| 2025 | Chevrolet | Corvette | Z51 Convertible 2-Door |
| 2025 | Chevrolet | Corvette | Z51 Coupe 2-Door |
| 2025 | Chevrolet | Corvette | Z51 Performance Coupe 2-Door |
| 2025 | Chevrolet | Corvette | ZR1 Convertible 2-Door |
| 2025 | Chevrolet | Corvette | ZR1 Coupe 2-Door |
| 2024 | Chevrolet | Corvette | E-Ray Convertible 2-Door |
| 2024 | Chevrolet | Corvette | E-Ray Coupe 2-Door |
| 2024 | Chevrolet | Corvette | Stingray Convertible 2-Door |
| 2024 | Chevrolet | Corvette | Stingray Coupe 2-Door |
| 2024 | Chevrolet | Corvette | Z06 Convertible 2-Door |
| 2024 | Chevrolet | Corvette | Z06 Coupe 2-Door |
| 2024 | Chevrolet | Corvette | Z51 Convertible 2-Door |
| 2024 | Chevrolet | Corvette | Z51 Coupe 2-Door |
| 2024 | Chevrolet | Corvette | Z51 Performance Coupe 2-Door |
| 2023 | Chevrolet | Corvette | Stingray Convertible 2-Door |
| 2023 | Chevrolet | Corvette | Stingray Coupe 2-Door |
| 2023 | Chevrolet | Corvette | Z06 Convertible 2-Door |
| 2023 | Chevrolet | Corvette | Z06 Coupe 2-Door |
| 2023 | Chevrolet | Corvette | Z51 Convertible 2-Door |
| 2023 | Chevrolet | Corvette | Z51 Coupe 2-Door |
| 2023 | Chevrolet | Corvette | Z51 Performance Coupe 2-Door |
| 2022 | Chevrolet | Corvette | Stingray Convertible 2-Door |
| 2022 | Chevrolet | Corvette | Stingray Coupe 2-Door |
| 2022 | Chevrolet | Corvette | Z51 Convertible 2-Door |
| 2022 | Chevrolet | Corvette | Z51 Coupe 2-Door |
| 2022 | Chevrolet | Corvette | Z51 Performance Coupe 2-Door |
| 2022 | Chevrolet | Corvette | Z51 Special Edition Coupe 2-Door |
| 2021 | Chevrolet | Corvette | Stingray Convertible 2-Door |
| 2021 | Chevrolet | Corvette | Stingray Coupe 2-Door |
| 2021 | Chevrolet | Corvette | Z51 Convertible 2-Door |
| 2021 | Chevrolet | Corvette | Z51 Coupe 2-Door |
| 2021 | Chevrolet | Corvette | Z51 Performance Coupe 2-Door |
| 2020 | Chevrolet | Corvette | Stingray Convertible 2-Door |
| 2020 | Chevrolet | Corvette | Stingray Coupe 2-Door |
| 2020 | Chevrolet | Corvette | Z51 Coupe 2-Door |
| 2020 | Chevrolet | Corvette | Z51 Performance Coupe 2-Door |
Dry Carbon Fiber vs Wet Carbon Fiber — What’s the Difference?
Not all carbon fiber parts are made the same. The biggest distinction comes down to how the carbon is processed — commonly known as dry carbon and wet carbon. Both use genuine carbon fiber weave, but the production method, finish, and performance are completely different.
Manufacturing Process
Dry carbon fiber parts are produced using a pre-preg (pre-impregnated) carbon cloth, where the exact amount of resin is pre-applied by the manufacturer. These sheets are then vacuum-sealed and cured under high pressure and temperature in an autoclave, removing excess air and resin.
The result is a light, extremely strong, and precisely formed component — the same process used in motorsport and aerospace applications.
Wet carbon fiber, on the other hand, uses a hand-lay or wet-lay method. The carbon cloth is laid into a mold and liquid resin is manually brushed or poured over it before curing. Because it’s not vacuum-bagged or autoclave-cured, there’s usually more trapped resin and air pockets, leading to a heavier part and a less uniform finish.
Weight & Strength
Dry carbon fiber is roughly 30–50% lighter than wet carbon. This is due to the controlled resin ratio — just enough to bind the fibers without unnecessary weight.
By comparison, wet carbon or carbon-over-fiberglass parts can be up to 70% heavier, since excess resin and fiberglass layers add mass without increasing stiffness.
For reference:
Dry carbon also offers a much higher modulus of elasticity (~125 GPa), giving it outstanding rigidity under stress — ideal for aerodynamic and high-load components.
Visual & Structural Differences
