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APR Performance GTC-300 67" Adjustable Carbon Fiber Wing
Part #: AS-106720
$2,129.00
$1,809.65 For each
Free Shipping! *to continental U.S. only
Fits On:
00-09 Honda S2000
Description:
Mounting bases cover factory spoiler/wing holes.
Warning
User assumes full responsibility for ensuring proper installation as intended. Professional installation by well-qualified personnel is highly recommended. The vehicle applications shown above are intended to work as a complete system when installed onto original vehicle body parts (i.e. trunk lids, hatches, etc.). To insure proper function and reliability, APR advises against modification or substitution of any component of the intended installation. Any modification or substitution of the airfoil, side plates, pedestals, mounting bases, mounting brackets, or hardware included with the wing kit may create unsafe operating conditions and ultimately cause this system to fail. Substitution of original vehicle manufacturer parts needed for the intended installation (i.e. rear trunk lid or rear hatch) with non-original parts may also create unsafe operating conditions and ultimately cause this system to fail.
With a span of 67 or 61 inches and a height of 13 inches, the GTC-300 is an adjustable wing that means serious business. The GTC-300 3D airfoil shape allows for optimal airflow that reduces drag yet supplies an effective amount of downforce. Computational Fluid Dynamics (CFD) analysis was performed on this wing to support validation of its aerodynamic design.
Each GTC Series airfoil is composed of lightweight and durable carbon fiber reinforced polymer (CFRP) or fiber reinforced polymer (FRP) composite materials. CFRP models contain pre-pregnated woven carbon fiber sheets for superior strength and low weight. FRP models contain woven pre-pregnated glass fiber sheets for high strength at reasonable weight. All CFRP and FRP airfoils are made using pre-pregnated composite manufacturing processes (i.e. high-temperature autoclave and vacuum bagging) in high-quality aluminum molds.
Supporting the airfoils are 10mm "aircraft grade" 6061 billet aluminum pedestals that come in a flat black powder coat finish.
Center section to outer section angle difference: 15 degrees
Gurney Flaps
Gurney flaps are now available for all of APR's GTC-series (200/300/500) wings. These are super lightweight, made with carbon fiber using the pre-pregnated carbon process, and conform perfectly to the contours of the GTC-series 3D airfoils. They are easily attached using the included double-sided tape.
The Gurney flap (a.k.a. wickerbill) is an aerodynamic device that was originally pioneered and developed in the 1970s by a racing driver named Dan Gurney. Unbeknownst to his competition, this device was used to increase downforce while minimizing increase in drag. He found that not only did this device increase the lift/drag (L/D) ratios, it also increased the stalling angles (so he could operate the airfoils at greater pitch angles). It took a few years for everyone else to catch on to its purpose, and now, the Gurney flap (or similar device) can be seen in race cars and even airplanes all over the world.
Mounting bases cover factory spoiler/wing holes.
Warning
User assumes full responsibility for ensuring proper installation as intended. Professional installation by well-qualified personnel is highly recommended. The vehicle applications shown above are intended to work as a complete system when installed onto original vehicle body parts (i.e. trunk lids, hatches, etc.). To insure proper function and reliability, APR advises against modification or substitution of any component of the intended installation. Any modification or substitution of the airfoil, side plates, pedestals, mounting bases, mounting brackets, or hardware included with the wing kit may create unsafe operating conditions and ultimately cause this system to fail. Substitution of original vehicle manufacturer parts needed for the intended installation (i.e. rear trunk lid or rear hatch) with non-original parts may also create unsafe operating conditions and ultimately cause this system to fail.
With a span of 67 or 61 inches and a height of 13 inches, the GTC-300 is an adjustable wing that means serious business. The GTC-300 3D airfoil shape allows for optimal airflow that reduces drag yet supplies an effective amount of downforce. Computational Fluid Dynamics (CFD) analysis was performed on this wing to support validation of its aerodynamic design.
Each GTC Series airfoil is composed of lightweight and durable carbon fiber reinforced polymer (CFRP) or fiber reinforced polymer (FRP) composite materials. CFRP models contain pre-pregnated woven carbon fiber sheets for superior strength and low weight. FRP models contain woven pre-pregnated glass fiber sheets for high strength at reasonable weight. All CFRP and FRP airfoils are made using pre-pregnated composite manufacturing processes (i.e. high-temperature autoclave and vacuum bagging) in high-quality aluminum molds.
Supporting the airfoils are 10mm "aircraft grade" 6061 billet aluminum pedestals that come in a flat black powder coat finish.
Center section to outer section angle difference: 15 degrees
Gurney Flaps
Gurney flaps are now available for all of APR's GTC-series (200/300/500) wings. These are super lightweight, made with carbon fiber using the pre-pregnated carbon process, and conform perfectly to the contours of the GTC-series 3D airfoils. They are easily attached using the included double-sided tape.
The Gurney flap (a.k.a. wickerbill) is an aerodynamic device that was originally pioneered and developed in the 1970s by a racing driver named Dan Gurney. Unbeknownst to his competition, this device was used to increase downforce while minimizing increase in drag. He found that not only did this device increase the lift/drag (L/D) ratios, it also increased the stalling angles (so he could operate the airfoils at greater pitch angles). It took a few years for everyone else to catch on to its purpose, and now, the Gurney flap (or similar device) can be seen in race cars and even airplanes all over the world.
APR has gained a reputation for making high end automotive accessories. With APR, you get what you pay for as their products are always of the utmost quality. Their carbon fiber spoilers are intended to improve the performance of your vehicle as well as giving it a quality custom look.
Q: Do carbon fiber wings fit on every vehicle?
A: Some carbon fiber wings are vehicle-specific, but most are universal. Check product descriptions to identify what fits your car. Measurements of your trunk's length and width are needed to match against the carbon wing's length and width to ensure any given universal wing will fit your car.
Q: How do you install a carbon fiber wing?
A: Carbon wings are usually mounted on raised pedestals that need to be bolted into the trunk of your car. Drill holes into your trunk and bolt in the pedestals.
Q: Why buy a carbon fiber wing?
A: Carbon fiber wings offer a great cosmetic upgrade designed customize the appearance of your car. Carbon products give your car a modern race look. Also, they have a very specific role in aerodynamics. Carbon wings defuse airflow over the top half of the car and at the trailing edge of the wing. The wing can keep airflow from tumbling and creating a swirling vortex behind the car. This is important when dealing with drag and lift.
A: Some carbon fiber wings are vehicle-specific, but most are universal. Check product descriptions to identify what fits your car. Measurements of your trunk's length and width are needed to match against the carbon wing's length and width to ensure any given universal wing will fit your car.
Q: How do you install a carbon fiber wing?
A: Carbon wings are usually mounted on raised pedestals that need to be bolted into the trunk of your car. Drill holes into your trunk and bolt in the pedestals.
Q: Why buy a carbon fiber wing?
A: Carbon fiber wings offer a great cosmetic upgrade designed customize the appearance of your car. Carbon products give your car a modern race look. Also, they have a very specific role in aerodynamics. Carbon wings defuse airflow over the top half of the car and at the trailing edge of the wing. The wing can keep airflow from tumbling and creating a swirling vortex behind the car. This is important when dealing with drag and lift.
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