High Performance Cummins 6LTAA8.9-C325 Engine
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High Performance Cummins 6LTAA8.9-C325 Engine

High Performance Cummins 6LTAA8.9-C325 Engine

Products Description The ‌6LTAA8.9-C325 engine‌ is a high-performance diesel powerplant engineered for durability and precision in demanding industrial and marine applications. Featuring a robust 8.9-liter displacement and a turbocharged design, this engine delivers ‌325...
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Description

Products Description

 

The ‌6LTAA8.9-C325 engine‌ is a high-performance diesel powerplant engineered for durability and precision in demanding industrial and marine applications. Featuring a robust 8.9-liter displacement and a turbocharged design, this engine delivers ‌325 horsepower‌ with exceptional fuel efficiency and low emissions, aligning with global Tier 3/Stage IIIA standards. Its advanced cooling system and integrated electronic controls ensure optimal thermal management and real-time performance monitoring, making it ideal for generators, construction equipment, and marine propulsion. Built with hardened components for extended service intervals, the 6LTAA8.9-C325 combines Cummins' engineering excellence with modular maintenance features, reducing downtime and operational costs. Explore how this powerhouse balances power density, reliability, and environmental compliance for your next project.

 

Products parameter

 

 High performance Cummins 6LTAA8.9-C325 engine

‌ Number of cylinders‌: 6 cylinders‌
‌ Displacement‌: 8.9L‌
‌ Rated power‌: 239kW @ 2200rpm‌
‌ Maximum torque‌: 1350N·m @ 1400r/min‌
‌ Net mass‌: 680kg‌
‌ Allowable altitude‌: ≤2200 meters‌
‌ Idle speed‌: 700r/min‌
Key technical features‌
‌ Power system‌: Extended stroke design combined with 4-valve structure to improve power output and low-speed torque‌
‌ Heat dissipation design‌: Forced cooling of articulated pistons to enhance mechanical and thermal load bearing capacity‌
‌ Combustion optimization‌: Centrally arranged injectors and symmetrical combustion chambers to achieve uniform distribution of the mixture‌
‌ Fuel efficiency‌: Turbocharging technology and combustion system optimization, taking into account low fuel consumption and high power

 
 

The working principle of a turbocharger is based on the recovery and utilization of exhaust gas energy. The high-temperature, high-pressure exhaust gas from the engine enters the turbine end of the turbocharger, driving the turbine to rotate. The turbine is connected to the compressor via a shaft, driving the compressor to rotate. The compressor compresses the outside air and sends it into the engine cylinders, increasing the intake air volume in the cylinders, thereby improving the engine's power and torque.

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