3637496
Water Transfer Tube
Cummins®

AVAILABLE

Cummins®

Ships within 1-3 business days

$259.95 $309.34

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 3637496 Water Transfer Tube is a component designed for use in commercial trucks. Its purpose is to facilitate the efficient transfer of coolant within the engine cooling system. This part is significant in maintaining the operational integrity of the engine by ensuring that coolant is distributed effectively to various components, thereby helping to regulate engine temperature 1.

Function and Operation

The Water Transfer Tube operates within the engine cooling system by directing coolant flow between different engine components. It connects to the water pump and other critical parts of the cooling system, allowing coolant to circulate. This circulation is vital for dissipating heat generated by the engine, which is crucial for maintaining optimal operating temperatures 2.

Purpose of the Water Transfer Tube

The specific role of the Water Transfer Tube is to maintain optimal engine temperature by ensuring efficient operation of the cooling system. By facilitating the smooth transfer of coolant, it helps prevent overheating, which can lead to engine damage. This component is integral to the overall efficiency and reliability of the engine cooling process 3.

Key Features

The design and construction of the Water Transfer Tube include several notable features. It is typically made from durable materials that can withstand the high temperatures and pressures within the engine cooling system. The tube is engineered to be robust, ensuring longevity and reliable performance. Additionally, its design may include specific fittings and connections that enhance its integration within the cooling system 4.

Benefits

The advantages provided by the Water Transfer Tube include improved coolant flow, which enhances the efficiency of the cooling system. This results in reduced risk of overheating and contributes to the overall reliability of the engine. By ensuring consistent coolant distribution, the tube plays a part in maintaining engine performance and longevity 5.

Installation

Proper installation of the Water Transfer Tube involves several steps. First, ensure that the engine is cool and the cooling system is drained. Then, remove the old tube if replacing an existing one. Install the new tube by connecting it to the water pump and other relevant components, ensuring all connections are secure. Use appropriate tools to tighten fittings and check for any leaks after installation 6.

Maintenance and Troubleshooting

Routine maintenance practices for the Water Transfer Tube include regular inspection for signs of wear or damage. It is important to check connections for leaks and ensure that the tube is free from obstructions. If issues arise, such as coolant leaks or reduced flow, inspect the tube and connections for any faults. Replacing worn or damaged parts promptly can help maintain the efficiency of the cooling system 7.

Cummins Overview

Cummins Inc. is a well-established company with a significant presence in the commercial truck industry. Founded in 1919, Cummins has a long history of providing reliable engine and power generation technologies. The company offers a wide range of products, including engines, filtration systems, and aftermarket parts, and is known for its commitment to quality and innovation in the industry 8.

Role of Part 3637496 Water Transfer Tube in Engine Systems

The 3637496 Water Transfer Tube is an essential component in the aftercooler water plumbing system of various engine setups. Its primary function is to facilitate the efficient transfer of cooling water between the aftercooler and other parts of the engine system.

Integration with Aftercooler Water Plumbing

In the aftercooler water plumbing, the Water Transfer Tube ensures a consistent and reliable flow of cooling water. This is vital for maintaining the optimal temperature of the aftercooler, which in turn enhances the performance and longevity of the engine. The tube connects to the aftercooler inlet and outlet, creating a closed-loop system that circulates water through the aftercooler core. This process effectively reduces the temperature of the compressed air, improving the overall efficiency of the engine 9.

Interaction with Other Components

The Water Transfer Tube also interacts with several other components within the engine system:

  • Water Pump: The tube is connected to the water pump, which drives the circulation of cooling water throughout the system. The pump ensures that water is consistently delivered to the aftercooler at the required pressure and flow rate.

  • Thermostat: Positioned in the water flow path, the thermostat regulates the temperature of the cooling water. The Water Transfer Tube plays a role in transporting water to and from the thermostat, allowing for precise temperature control within the system.

  • Radiator: In some engine configurations, the cooling water may also pass through the radiator before returning to the aftercooler. The Water Transfer Tube ensures seamless connectivity between these components, maintaining a balanced cooling process.

  • Sensors and Gauges: The tube facilitates the movement of water past temperature sensors and flow gauges, providing real-time data on the cooling system’s performance. This information is crucial for monitoring and adjusting the system as needed.

Conclusion

Understanding the role of the 3637496 Water Transfer Tube within these components allows engineers and mechanics to better appreciate its importance in maintaining the efficiency and reliability of the engine system. Proper installation, maintenance, and troubleshooting of this part are essential for ensuring the optimal performance of the engine cooling system.


  1. Alma Hillier, Fundamentals of Motor Vehicle Technology Book 1 6th Edition, Oxford University Press, 2014.

  2. Paul Dempsey, Troubleshooting and Repairing Diesel Engines, McGraw-Hill, 2008.

  3. Joseph A Bell, Modern Diesel Technology Electricity Electronics, Delmar Cengage Learning, 2014.

  4. Thorsten Boger and Willard Cutler, Reducing Particulate Emissions in Gasoline Engines, SAE International, 2018.

  5. Cummins Inc., Service Manual (5504460), X13 CM2670 X122B.

  6. Cummins Inc., Service Manual (5504460), X13 CM2670 X122B.

  7. Cummins Inc., Service Manual (5504460), X13 CM2670 X122B.

  8. Cummins Inc., Service Manual (5504460), X13 CM2670 X122B.

  9. Cummins Inc., Service Manual (5504460), X13 CM2670 X122B.

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SPECIFICATIONS

Package Dimensions
128.0 x 10.0 x 5.0 in
Weight
0.3 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.