Forge Motorsport Intercooler for Audi TT RS – FMINT2TTRS
د.إ5,980.00
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Description
- 37°C reduction in IATs
- Gains of up to 25BHP
- Overall surface area increased by 30%
- Volumetric capacity of 15.7l
- 130% increase in capacity over the OEM
- One of the largest intercoolers on the market today
- Bar and plate core design
- Lifetime Warranty Guarantee
After developing an uprated intercooler for the Audi TTRS 8J, our tuning partners approached us to develop a 2nd version that would be specifically designed for those running 500+ BHP. Even for customers with just a stage 1 tune, gains of around 25 BHP can be expected by just swapping out the relatively small and inefficient OEM intercooler (OE Part No. 8J0145804B).
The standard intercooler fitted by Audi has a volumetric capacity of 6.8l, which essentially bottle-necks the inlet tract to the throttle body, creating a restriction when the boost is increased. We utilised our CAD design to ensure that the end tanks flow in the best way possible, spreading the compressed air evenly throughout, this in-turn lead to superior performance over the stock item. We tested several core configurations during development, with the best all-rounder being our bar and plate design. The overall surface area of the intercooler has increased by 30% providing more cooling capabilities. We utilised all the available space with a volumetric capacity of 15.7l, resulting in an overall 130% increase in capacity over the OEM, making this intercooler one of the largest on the market today.
This intercooler is complimented with our modified OEM crash bar (OE Part No. 8J0807109B), that also doubles as the intercooler support.
Why do we test different cores?
When developing an intercooler, we will test several different cores for each application. For example, a bar and plate style core, and a tube and fin style core. Our tube and fin will be tested with different fin pitches and heights, e.g., 22 fins per inch or 17 fins per inch. We will also look at changing the internal fin pitches/shapes and density within the tube, enabling to fine tune the amount of pressure drop the intercooler produces.
Pressure drop is not always a bad thing, as our testing and research has proven on various projects. This is because the pressurized air velocity is being stalled by the pressure drop within the cooler, thus allowing more time to cool the air within the cooler itself, as air passes through the non-pressurized face of the core that is open to the atmosphere. Too much pressure drop can of course have a problem on the higher performance engines. As the intercooler reaches its maximum efficiency, the turbo must work a lot harder to force the air through the core. This in-turn creates higher inlet air temps (IAT’s) due to the turbo creating more heat as it is being worked harder.
Having no pressure drop can also prove to be inefficient, as the cooler will not lower the charge temperature again, resulting in higher inlet air temperatures.
Dyno Results
Testing was completed using an independent dyno, we used Powerstation in Tewksbury on their MAHA dyno. This was manufactured by the same people who currently supply BMW M Sport and Mercedes Benz for all their engine calibration and dyno testing.
During testing, we let the car heat soak on the dyno until the radiator fans tripped on and off (which gives an inlet temperature of 38°C), then did a dyno pull from there. This gives a more consistent result and reflects real-world driving conditions more accurately. You can easily see the Forge Motorsport intercooler cools much quicker and delivers a greater drop in temperature compared to OEM.
The OEM intercooler produced inlet air temperatures on average of 72°C after 3 pulls, while the Forge Motorsport intercooler reduced the inlet air temperature to 35°C, resulting in a 37°C reduction over the stock item, and being far more superior than our first iteration that has since been discontinued.
The dyno graph shows the comparison between a highly tuned TTRS running our original revision Forge Motorsport intercooler, and after installing the 500+ BHP version. The results repeatedly showed an increase from the 460BHP previously achieved, to 512BHP, creating gains of +52BHP. We repeated our testing to ensure our results were true and checked all our test vehicles sensor data to ensure there were no negative effects.
Finished in our specially formulated textured black finish, and supported by our lifetime guarantee, this is truly an outstanding performance-enhancing product.
Compatible Vehicles :
Additional information
Brand | Forge Motorsport |
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Make | Audi, TTRS |
Model Year | 2011, 2012, 2013, 2014 |
Quick Comparison
Settings | Forge Motorsport Intercooler for Audi TT RS - FMINT2TTRS remove | Snow Performance – Boost Cooler Stage 2E Power-Max - ProLine - SP10250PRO remove | CTS TURBO CHARGE PIPE UPGRADE KIT FOR BMW G20/G29/G05/G07/G11 AND A90 TOYOTA SUPRA B58C 3.0L - CTS-IT-349 remove | CTS TURBO HIGH-PERFORMANCE HEAT EXCHANGER FOR B9 AUDI RS5 -CTS-HX-009 remove | BLACK BOOST MERCEDES AMG M157/M278 RACING COOLANT THERMOSTAT -BBTMT002 remove | Racingline VWR Oil Cooler Replacement Filter - VWR180001 remove | ||||||||||||||||||||||||||||||||||||||||||||
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Name | Forge Motorsport Intercooler for Audi TT RS - FMINT2TTRS remove | Snow Performance – Boost Cooler Stage 2E Power-Max - ProLine - SP10250PRO remove | CTS TURBO CHARGE PIPE UPGRADE KIT FOR BMW G20/G29/G05/G07/G11 AND A90 TOYOTA SUPRA B58C 3.0L - CTS-IT-349 remove | CTS TURBO HIGH-PERFORMANCE HEAT EXCHANGER FOR B9 AUDI RS5 -CTS-HX-009 remove | BLACK BOOST MERCEDES AMG M157/M278 RACING COOLANT THERMOSTAT -BBTMT002 remove | Racingline VWR Oil Cooler Replacement Filter - VWR180001 remove | ||||||||||||||||||||||||||||||||||||||||||||
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SKU | FMINT2TTRS | SP10250PRO | CTS-IT-349 | CTS-HX-009 | BBTMT002 | VWR180001 | ||||||||||||||||||||||||||||||||||||||||||||
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Price | د.إ5,980.00 | د.إ2,600.00 – د.إ3,900.00 | د.إ1,300.00 | د.إ2,200.00 | د.إ500.00 | د.إ250.00 | ||||||||||||||||||||||||||||||||||||||||||||
Stock | In Stock
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Availability | In Stock | In Stock | In Stock | In Stock | In Stock | In Stock | ||||||||||||||||||||||||||||||||||||||||||||
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Description | Upon placing the order, we will get in touch with you to confirm the availability information. For Instant Enquiry and More Details, Please Click Here | Upon placing the order, we will get in touch with you to confirm the availability information. For Instant Enquiry and More Details, Please Click Here | Upon placing the order, we will get in touch with you to confirm the availability information. For Instant Enquiry and More Details, Please Click Here | Upon placing the order, we will get in touch with you to confirm the availability information. For Instant Enquiry and More Details, Please Click Here | This product will be in stock and available for purchase. | This product will be in stock and available for purchase. The Oil Cooler Kit includes a pretty special oil filter. The filter element is made from high-flow stainless steel micronic filter cloth – a medical grade material guaranteed to filter out oil contamination better than paper-based filters, all helping to avoid the risk of resultant engine damage. | ||||||||||||||||||||||||||||||||||||||||||||
Content |
![]() ![]() ![]() Why do we test different cores? When developing an intercooler, we will test several different cores for each application. For example, a bar and plate style core, and a tube and fin style core. Our tube and fin will be tested with different fin pitches and heights, e.g., 22 fins per inch or 17 fins per inch. We will also look at changing the internal fin pitches/shapes and density within the tube, enabling to fine tune the amount of pressure drop the intercooler produces. Pressure drop is not always a bad thing, as our testing and research has proven on various projects. This is because the pressurized air velocity is being stalled by the pressure drop within the cooler, thus allowing more time to cool the air within the cooler itself, as air passes through the non-pressurized face of the core that is open to the atmosphere. Too much pressure drop can of course have a problem on the higher performance engines. As the intercooler reaches its maximum efficiency, the turbo must work a lot harder to force the air through the core. This in-turn creates higher inlet air temps (IAT’s) due to the turbo creating more heat as it is being worked harder. Having no pressure drop can also prove to be inefficient, as the cooler will not lower the charge temperature again, resulting in higher inlet air temperatures.Dyno Results Testing was completed using an independent dyno, we used Powerstation in Tewksbury on their MAHA dyno. This was manufactured by the same people who currently supply BMW M Sport and Mercedes Benz for all their engine calibration and dyno testing.Compatible Vehicles : | Boost Cooler water injection can achieve a power increase of up to 10-25% in turbo and supercharged engines without thermally overloading the engine. The charge air temperature is lowered by up to 60°C, the combustion chamber is cooled and the thermal load on already tuned vehicles is effectively reduced.
Water or water/alcohol (methanol or ethanol) is injected at high pressure into the hot charge air in a finely atomised form as soon as the desired starting charge pressure is reached. The evaporating liquid achieves an extremely effective charge air and intercooling, which, among other things, prevents uncontrolled combustion ("knocking"). The effect is demonstrably comparable with 116 octane racing petrol.
The Boost Cooler is unsurpassed in atomisation! The liquid is swirled inside the Hyper-Sonic atomiser nozzle at supersonic speed before being forced through the Venturi orifice. With the included Dual Stage Upgrade, 2 atomiser nozzles are used to inject as early as possible with the primary nozzle and to achieve maximum cooling and performance in peak loads with the switched-on 2nd nozzle.
| CTS Turbo is proud to announce the release of the high-flow aluminum charge pipe for new generations of B58C engines in G-series BMW 3.0T engines and A90 Toyota Supra 3.0T
The CTS Charge Pipe Kit offers more air flow than a factory pipe, OE-like fitment and peace of mind at any boost level. Our charge pipe kit will also improve the reliability of your B58C engine over the plastic stock part.
You’ll notice an increase in throttle response and a decrease in turbo lag. It’s is a must for vehicles tuned to run higher than stock boost level.
Product Details:
| CTS Turbo is excited to introduce our upgraded Aluminum heat exchanger specifically designed for the B9 Audi RS5. We understand that the factory heat exchanger falls short in effectively cooling tuned engines, which is why we developed our own solution.
Our heat exchanger boasts a significantly larger volume than OEM, featuring a dual-pass core that seamlessly complements the factory heat exchanger with minimal modifications required for installation. Ensure optimal cooling and dependable performance for your 2.9T V6 twin-turbo engine with the CTS Turbo Aluminum heat exchanger.
Features:
| BlackBoost Performance Engineering - Racing Coolant Thermostat. With our BlackBoost Racing Coolant Thermostat the coolant circulation with the radiator is always at 100% open. The factory coolant thermostat opens at 100°C / 212°F. Only for racing application, not recommended be used under very cold weather conditions. Applicable for: all M157 / M278 engines | Racingline VWR Oil Cooler Replacement Filter - VWR180001
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