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December 18, 2024
BorgWarner secures EGR cooler contracts, leveraging strong relationships and innovative compact floating core technology for high reliability and extended product life.
Date: August 3, 2024Auburn Hills- United State- BorgWarner Inc., an American automotive and e-mobility supplier, is expanding its thermal management business by securing exhaust gas recirculation (EGR) cooler contracts with a major North American commercial vehicle customer. Their robust, emissions-reducing EGR solution features a design that needs less coolant flow and resists thermal fatigue. Production is planned in Q4 2027, with deployment across various CV applications.
Dr. Volker Weng, Vice President of BorgWarner Inc. and President and General Manager, Turbos and Thermal Technologies, said, "We continue to see tremendous interest in our EGR product portfolio, including coolers, valves and modules, that support increased fuel economy needs and stringent emission requirements across the world. These recent program awards are a natural extension of the close working relationship our team has built with this customer and reflect BorgWarner's leadership position in the market as well as our historically strong performance with similar applications."
BorgWarner is offering two EGR cooler variations to meet diverse engine cooling needs: one with a compact floating core (CFC) for durability and extended life under high thermal stress, and another with a compact monoblock design for tighter packaging and cost-efficiency. The CFC features hybrid tube heat transfer for high thermal efficiency and reduced fatigue, while the monoblock version is optimized for reliability in passenger and mid-range applications.
BorgWarner's modular EGR cooler family offers four adaptable designs for engines ranging from 2.0 to 16.0 liters. Most core components are standardized, simplifying adaptation across applications. Since launching, the company has delivered over 1 million EGR coolers and developed advanced modeling tools to optimize designs, prevent localized boiling, and boost performance.