3082317
Aftercooler Core
Cummins®

AVAILABLE

Cummins®

Ships within 1-3 business days

$10,999.95 $13,089.94

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 Aftercooler Core 3082317 by Cummins is designed to enhance the efficiency and performance of heavy-duty truck engines. Its role is to cool the compressed air before it enters the engine cylinders, contributing to the overall efficiency and longevity of the engine. Cummins Inc., a well-established manufacturer in the automotive industry, produces this part as part of its commitment to innovation and quality in aftermarket parts 3.

Function and Operation

The Aftercooler Core functions within the truck’s engine system by cooling the compressed air that has been heated during the compression process. This cooling process occurs before the air enters the engine cylinders, ensuring that the air is at an optimal temperature for combustion. By reducing the temperature of the air, the aftercooler helps to increase the density of the air, which can lead to more efficient combustion and improved engine performance 2.

Key Features

This Cummins part is characterized by several key features that enhance its performance. It is constructed using high-quality materials that are resistant to corrosion and wear, ensuring durability in demanding environments. The design of the core allows for efficient heat exchange, maximizing the cooling effect on the compressed air. Additionally, the core is engineered to fit seamlessly within various engine configurations, ensuring compatibility and ease of installation 1.

Benefits of Using an Aftercooler Core

Incorporating an Aftercooler Core into a truck’s engine system offers several advantages. It contributes to improved engine efficiency by ensuring that the air entering the cylinders is at an optimal temperature. This can lead to reduced thermal stress on engine components, enhancing the overall performance and reliability of the engine. Furthermore, the use of an aftercooler can result in lower emissions and reduced fuel consumption, contributing to more sustainable trucking operations 2.

Installation and Integration

Proper installation of the Aftercooler Core is crucial for ensuring its effectiveness within the engine system. It is important to follow manufacturer guidelines to ensure compatibility with the specific engine model and configuration. Careful attention to the installation process will help to maximize the benefits of the aftercooler and ensure optimal engine performance 1.

Maintenance and Care

Regular maintenance and care of the Aftercooler Core are essential for ensuring its optimal performance and longevity. This includes routine cleaning to remove any debris or contaminants that may accumulate on the core, as well as periodic inspection for signs of wear or damage. Adhering to a maintenance schedule will help to identify and address any issues before they lead to more significant problems 3.

Troubleshooting Common Issues

Common issues that may arise with the Aftercooler Core include leaks, reduced efficiency, or physical damage. Troubleshooting these problems involves a systematic approach to identify the root cause and implement the appropriate solution. This may include inspecting connections for leaks, cleaning the core to remove contaminants, or replacing damaged components to restore optimal performance 2.

Performance Enhancements

The Aftercooler Core contributes to overall engine performance by improving fuel efficiency, power output, and reliability. By ensuring that the air entering the engine is at an optimal temperature, the aftercooler helps to maximize combustion efficiency, leading to enhanced engine performance. Case studies and examples can illustrate the tangible benefits of incorporating an aftercooler into a truck’s engine system 1.

Environmental Impact

The use of an efficient Aftercooler Core can have positive environmental impacts by reducing emissions and lowering fuel consumption. By contributing to more sustainable trucking operations, the aftercooler plays a role in minimizing the environmental footprint of heavy-duty trucks. This aligns with broader efforts to promote eco-friendly transportation solutions 2.

Cummins: A Brief Overview

Cummins Inc. is a leading manufacturer in the automotive industry, with a rich history of innovation and quality. The company offers a wide range of products, including engines, filtration systems, and aftermarket parts, demonstrating its commitment to providing high-quality solutions for the transportation sector. Cummins’ dedication to aftermarket parts underscores its role in supporting the longevity and performance of heavy-duty trucks 3.

Cummins Aftercooler Core Part 3082317 Compatibility

The Cummins Aftercooler Core part number 3082317 is designed to fit seamlessly with several high-performance Cummins engines, ensuring optimal cooling efficiency and performance. This part is integral to the engine’s cooling system, enhancing the overall reliability and longevity of the engine.

QSK45 Engines

The QSK45 engine series, known for its robust design and high power output, benefits significantly from the integration of the Aftercooler Core part 3082317. This part is engineered to fit precisely within the QSK45 engine architecture, providing efficient heat exchange and maintaining the optimal temperature of the compressed air entering the engine. The compatibility ensures that the engine operates at peak efficiency, reducing the risk of overheating and extending the engine’s service life.

CM500 Engines

Similarly, the CM500 engine series, which is renowned for its versatility and durability, is another beneficiary of the Aftercooler Core part 3082317. This part is meticulously designed to integrate with the CM500 engine’s cooling system, ensuring that the compressed air is cooled effectively before it enters the combustion chamber. This integration is crucial for maintaining the engine’s performance and reliability, especially in demanding applications where consistent cooling is essential.

Grouping of Engines

Both the QSK45 and CM500 engines, while distinct in their specific applications and performance characteristics, share a common requirement for efficient cooling systems. The Aftercooler Core part 3082317 is engineered to meet these requirements, providing a reliable and effective solution for both engine series. This compatibility underscores the versatility and robustness of the part, making it a critical component for maintaining the performance and longevity of these high-performance engines.

Role of Part 3082317 Aftercooler Core in Engine Systems

The Aftercooler Core (part 3082317) is a component in the arrangement of modern engine systems, particularly those equipped with turbochargers. Its primary function is to cool down the compressed air from the turbocharger before it enters the engine’s combustion chamber.

In turbocharged engines, the turbocharger compresses the intake air, which increases its temperature. Elevated air temperatures can lead to decreased air density, which in turn reduces the engine’s efficiency and power output. The Aftercooler Core addresses this issue by dissipating the heat from the compressed air, thereby increasing its density and enhancing the engine’s performance.

The Aftercooler Core works in conjunction with the turbocharger and other components within the engine system. As the hot, compressed air exits the turbocharger, it flows through the Aftercooler Core. Here, the core utilizes either air-to-air or air-to-water cooling methods to reduce the temperature of the intake air.

This cooled air then moves into the engine’s intake manifold, where it mixes with fuel and is combusted in the cylinders. The result is more efficient combustion, improved power output, and reduced thermal stress on engine components.

Conclusion

In summary, the Aftercooler Core (part 3082317) plays a significant role in maintaining optimal operating conditions within turbocharged engine systems. By effectively cooling the compressed air, it contributes to enhanced engine performance, efficiency, and longevity.


  1. Cummins Inc. (n.d.). Operation and Maintenance Manual. Bulletin Number 2883565.

  2. Huzij, R., Spano, A., & Bennett, S. (2019). Modern Diesel Technology: Heavy Equipment Systems. Cengage Learning.

  3. Sclar, D. (2008). Auto Repair for Dummies: 2nd Edition. For Dummies.

SPECIFICATIONS

Hazardous Material
Non-Hazardous (NOI, ICE/Auto)
Package Dimensions
1.0 x 1.0 x 1.0 in
Weight
1 lbs
* 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.