3177770
Aftercooler Core
Cummins®

AVAILABLE

Cummins®

Ships within 1-3 business days

$3,999.95 $4,759.94

This truck part is made by Cummins®. We guarantee that all of our parts are from the OEM (original equipment manufacturer), ensuring a proper fit and quality manufacturing.


DESCRIPTION

The Cummins 3177770 Aftercooler Core is a component designed for use in commercial trucks, playing a significant role in the engine’s operation. Its primary function is to reduce the temperature of compressed air from the turbocharger, which is vital for maintaining engine efficiency and performance 3.

Basic Concepts of Aftercooler Cores

An aftercooler core is a heat exchanger used in a truck’s engine system to cool the compressed air from the turbocharger before it enters the engine’s combustion chamber. There are two main types of aftercooling systems: air-to-air and air-to-water. In an air-to-air system, ambient air is used to cool the compressed air, while in an air-to-water system, a coolant liquid is employed for this purpose. The Cummins 3177770 Aftercooler Core operates on the principle of air-to-air aftercooling, utilizing the surrounding air to dissipate heat from the compressed air 1.

Purpose of the Cummins 3177770 Aftercooler Core

The Cummins 3177770 Aftercooler Core serves to lower the temperature of the compressed air produced by the turbocharger. This reduction in temperature increases the air density, allowing more air to enter the engine’s cylinders. Consequently, this leads to more efficient combustion, improved engine performance, and increased power output 3.

Key Features

The Cummins 3177770 Aftercooler Core is constructed with high-quality materials to ensure durability and efficient heat exchange. Its design includes a robust core structure that maximizes the surface area for heat dissipation, enhancing its performance. The build quality ensures it can withstand the rigors of commercial truck operation, providing reliable service over time.

Benefits of Using the Cummins 3177770 Aftercooler Core

Utilizing the Cummins 3177770 Aftercooler Core offers several advantages. It contributes to improved engine efficiency by ensuring optimal air temperature for combustion. This results in increased power output and better fuel economy. Additionally, the enhanced cooling provided by the aftercooler core can lead to reduced wear on engine components, promoting longevity and reliability 3.

Installation and Integration

Proper installation of the Cummins 3177770 Aftercooler Core is crucial for its effective operation. It should be installed according to the manufacturer’s guidelines, ensuring all connections are secure and the core is correctly positioned within the engine system. Tools required for installation may include wrenches, hose clamps, and possibly a torque wrench to ensure proper tightening of connections.

Maintenance and Care

Routine maintenance of the Cummins 3177770 Aftercooler Core is important to ensure its continued efficient operation. This includes regular inspection for signs of damage or wear, cleaning the core to remove any debris that may obstruct airflow, and checking all connections for leaks or loose fittings. Attention to these details can help prevent issues and maintain optimal performance.

Troubleshooting Common Issues

Common problems with aftercooler cores can include reduced efficiency due to clogging or damage to the core. Signs of these issues may include decreased engine performance or unusual noises from the engine area. Troubleshooting steps may involve inspecting the core for damage, cleaning it to remove obstructions, or replacing it if necessary to restore proper function.

Performance Enhancements

The Cummins 3177770 Aftercooler Core contributes to overall truck performance in several ways. By ensuring the air entering the engine is at an optimal temperature, it enhances combustion efficiency, leading to improved fuel efficiency and reduced emissions. Additionally, the cooler air can help protect engine components from excessive heat, contributing to the longevity of the engine 3.

Cummins Corporation Overview

Cummins Inc. is a global power leader that designs, manufactures, and distributes a wide range of power solutions, including engines, filtration, and aftermarket parts. With a strong reputation in the commercial truck industry, Cummins is known for its commitment to quality, innovation, and customer satisfaction. The Cummins 3177770 Aftercooler Core is a testament to this commitment, offering reliable performance and durability for commercial truck applications 2.

Compatibility

The Cummins Aftercooler Core part number 3177770 is designed to be compatible with a range of Cummins engines, ensuring efficient cooling and performance. This part is specifically engineered to fit seamlessly with the following engine models:

K38 and K50 Engines

The Aftercooler Core part 3177770 is engineered to integrate with both the K38 and K50 engines. These engines are known for their robust performance and reliability, often used in heavy-duty applications. The aftercooler core plays a role in these engines by cooling the compressed air from the turbocharger, which enhances engine efficiency and power output.

Installation and Functionality

When installed in the K38 and K50 engines, the Aftercooler Core part 3177770 ensures that the air entering the engine is at an optimal temperature. This reduces the risk of engine knocking and improves overall performance. The design of the aftercooler core allows for efficient heat exchange, which is important in maintaining the engine’s operational temperature and preventing overheating.

Importance of the Aftercooler Core

The aftercooler core is a vital component in turbocharged engines, as it helps to mitigate the heat generated by the compression process. By cooling the compressed air, the aftercooler core ensures that the engine operates at peak efficiency, which is particularly important in high-performance and heavy-duty applications. The compatibility of part 3177770 with the K38 and K50 engines underscores its importance in maintaining the engine’s performance and longevity 3.

Role of Part 3177770 Aftercooler Core in Performance Engine Systems

The 3177770 Aftercooler Core is an integral component within performance engine systems, specifically designed to enhance the efficiency and reliability of turbocharged and supercharged engines. This component works in conjunction with several key elements to optimize engine performance.

Integration with Turbochargers and Superchargers

In turbocharged systems, the Aftercooler Core is positioned downstream of the turbocharger. Its primary function is to reduce the temperature of the compressed air before it enters the engine’s intake manifold. This cooling process increases the air density, allowing for more efficient combustion and higher power output. Similarly, in supercharged engines, the Aftercooler Core follows the supercharger, ensuring that the air delivered to the engine is at an optimal temperature for peak performance.

Synergy with Intercoolers

The Aftercooler Core often works in tandem with intercoolers, which are also designed to cool intake air. While intercoolers typically handle the initial cooling stage, the Aftercooler Core provides additional temperature reduction. This dual-stage cooling system ensures that the air entering the engine is as cool as possible, maximizing engine efficiency and power.

Compatibility with High-Performance Fuel Systems

In high-performance fuel systems, the Aftercooler Core plays a supportive role by maintaining consistent air temperatures. This stability is essential for precise fuel delivery and combustion, directly influencing the engine’s overall performance and drivability. The cooled air ensures that the fuel-air mixture remains optimal, even under high-stress conditions.

Enhanced Engine Longevity

By reducing the temperature of the intake air, the Aftercooler Core helps mitigate thermal stress on engine components. This temperature management is particularly beneficial in high-performance applications where engines operate at elevated temperatures. The result is enhanced engine longevity and reduced risk of heat-related damage.

Contribution to Exhaust Systems

The efficiency gains provided by the Aftercooler Core also have a positive impact on exhaust systems. Cooler, denser air leads to more complete combustion, which in turn reduces the amount of unburned fuel entering the exhaust. This not only improves overall engine efficiency but also contributes to cleaner emissions, aligning with modern performance and environmental standards.

Conclusion

In summary, the 3177770 Aftercooler Core is a vital component in performance engine systems, working seamlessly with turbochargers, superchargers, intercoolers, fuel systems, and exhaust systems to deliver enhanced performance, efficiency, and reliability. Its role in cooling the compressed air ensures optimal engine operation, contributing to improved fuel efficiency, reduced emissions, and extended engine life 3.


  1. Miedema, S. A., & Lu, Z. (2010). The Dynamic Behavior of a Diesel Engine. Published by Drir S. A. Miedema.

  2. Hilgers, M. (2023). Chassis and Axles. Springer Vieweg.

  3. Lakshminarayanan, P. A., & Nayak, N. S. (2011). Critical Component Wear in Heavy Duty Engines. John Wiley & Sons.

* This information is provided as is and may be out of date. Please contact us or the manufacturer to verify warranty coverage.
* Variable geometry turbocharger and electronic actuator repairs are not eligible to be claimed as over-the-counter under New or ReCon parts warranty for parts installed after October 1, 2018.
* Diesel Oxidation Catalyst (DOC), Diesel Particulate Filter (DPF), Selective Catalyst Reduction (SCR) catalyst, and Electronic Control Module (ECM) repairs are not eligible to be claimed as over-the-counter under New or ReCon parts warranty for parts installed after January 1, 2020.
* These restrictions are only applicable to New parts and ReCon parts coverages for the components listed above sold to a customer in the US or Canada. All other coverages are excluded. All other regions are excluded.