3630392
Water Transfer Tube
Cummins®
AVAILABLE
2 are currently available
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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.
We honor the warranty provided by the original equipment manufacturer.
The Cummins 3630392 Water Transfer Tube is a component designed to facilitate the efficient transfer of coolant within the engine cooling system of commercial trucks. Its role is significant in maintaining the optimal operating temperature of the engine, which is vital for the performance and longevity of the vehicle 1.
Basic Concepts of Water Transfer Tubes
A Water Transfer Tube is a conduit that allows coolant to flow between different parts of the engine cooling system. Its function is to ensure that coolant is evenly distributed, which helps in dissipating heat generated by the engine. This process is crucial for maintaining the engine’s temperature within a safe range, preventing overheating and potential damage 2.
Purpose of the 3630392 Water Transfer Tube
This Cummins part plays a role in the operation of a truck by contributing to the engine cooling process. It ensures that coolant is effectively circulated throughout the engine, which aids in heat dissipation. This component helps maintain system efficiency by ensuring that all parts of the engine receive adequate cooling, which is important for consistent performance and durability 3.
Key Features
The 3630392 is characterized by its robust design and the materials used in its construction. It is engineered to withstand the high pressures and temperatures typical of engine cooling systems. The tube’s design facilitates smooth coolant flow, and its material properties contribute to its durability and resistance to corrosion 4.
Benefits
The advantages of the 3630392 include improved cooling efficiency, which can lead to a reduced risk of engine overheating. By ensuring consistent coolant flow, it contributes to enhanced engine longevity. The design and materials used in this component also support its reliability under the demanding conditions of commercial truck operation 5.
Installation Process
Installing the 3630392 requires careful attention to ensure proper fitting and function. The process involves securing the tube in place within the engine cooling system, using the appropriate tools to make necessary connections, and checking for leaks or improper alignment. It is important to follow manufacturer guidelines to ensure the tube is installed correctly 6.
Common Issues and Troubleshooting
Typical problems associated with Water Transfer Tubes may include leaks or blockages. These issues can often be identified through visual inspection or by monitoring the engine’s temperature and coolant levels. Troubleshooting may involve checking connections, cleaning or replacing the tube if necessary, and ensuring that the cooling system is free of contaminants that could impede coolant flow 7.
Maintenance Tips
To ensure the longevity and optimal performance of the 3630392, regular maintenance practices are recommended. This includes periodic inspection for signs of wear or damage, cleaning the tube and surrounding components to prevent buildup, and ensuring that the cooling system is maintained according to manufacturer specifications 8.
Cummins Overview
Cummins Inc. is a well-established company in the commercial truck industry, known for its commitment to quality and innovation in engine components. With a history of developing reliable and efficient engine parts, Cummins has built a reputation for excellence in the automotive sector. The company’s focus on advancing technology and meeting the needs of its customers underscores its position as a leader in the industry 9.
Cummins Water Transfer Tube (Part 3630392) in Engine Applications
The Cummins Water Transfer Tube, identified by part number 3630392, is a critical component in the cooling systems of various Cummins engines. This part ensures efficient heat transfer, maintaining optimal engine temperatures and preventing overheating. Below is a detailed description of how this component integrates into specific Cummins engine models.
K50 Series Engines
In the K50 series engines, the Water Transfer Tube (3630392) plays a pivotal role in the engine’s cooling system. This part is designed to transfer coolant between different sections of the engine, ensuring that heat generated during operation is effectively dissipated. The tube connects the water pump to the radiator, facilitating a continuous flow of coolant that absorbs and removes excess heat from the engine.
The K50 engines, known for their robust performance, rely on this water transfer tube to maintain their operational efficiency. The tube’s placement and design are critical to ensuring that the coolant circulates smoothly, preventing any potential blockages or leaks that could compromise engine performance 10.
Integration and Functionality
The integration of the Water Transfer Tube in the K50 engines involves precise engineering to ensure it fits seamlessly within the engine’s cooling system. The tube is typically made from high-quality materials that can withstand the high temperatures and pressures within the engine. Its design allows for flexibility and durability, ensuring it can endure the rigors of continuous operation.
The installation process requires careful attention to detail to ensure that the tube is correctly aligned and securely fastened. This is crucial for maintaining the integrity of the cooling system and preventing any potential failures that could lead to engine damage 11.
Importance in Engine Performance
The Water Transfer Tube (3630392) is essential for maintaining the thermal balance of the K50 engines. By efficiently transferring coolant, it helps to regulate the engine’s temperature, ensuring that it operates within the optimal range. This not only enhances the engine’s performance but also extends its lifespan by preventing overheating and related damage 12.
Role of Part 3630392 Water Transfer Tube in Engine Systems
The Water Transfer Tube, identified by part number 3630392, is integral to the efficient operation of several engine components. It facilitates the movement of water within the engine system, ensuring optimal performance and cooling.
Integration with Aftercooler Systems
In engines equipped with aftercoolers, the Water Transfer Tube is a key component in the aftercooler plumbing. It directs water flow from the aftercooler to various parts of the engine, aiding in the cooling process post-compression. This is particularly important in the aftercooler left bank return plumbing, where the tube ensures that the cooled air is effectively distributed, enhancing engine efficiency and reducing thermal stress on components 13.
Contribution to Overall Engine Performance
The Water Transfer Tube plays a significant role in maintaining the performance of the engine. By efficiently transferring water, it helps in regulating the temperature of critical engine parts. This temperature regulation is essential for the longevity and reliability of the engine, as it prevents overheating and potential damage to sensitive components 14.
Interaction with Other Engine Parts
Beyond its role in aftercooler systems, the Water Transfer Tube interacts with various other engine parts. It is part of a network that includes the water pump, radiator, and thermostat, all working in concert to maintain the engine’s operating temperature. The tube’s design and placement are tailored to ensure that water reaches these components in a timely and efficient manner, contributing to the overall stability and performance of the engine 15.
Conclusion
In summary, the Water Transfer Tube (part 3630392) is a vital component in the engine’s water management system. Its role in aftercooler plumbing and interaction with other engine parts underscores its importance in maintaining engine performance and longevity. Regular maintenance and proper installation are crucial to ensure the optimal functioning of this component.
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Denton, T., & Pells, H. (2022). Automotive Technician Training Theory. Routledge.
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Barton, D. C., & Fieldhouse, J. D. (2009). Automotive Chassis Engineering Powertrain Chassis System and Vehicle Body. Elsevier.
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Bosch, R. (2007). Bosch Automotive Electrics and Automotive Electronics: Systems and Components, Networking and Hybrid Drive 5th Edition. Springer Vieweg.
↩ -
Cummins Inc. (n.d.). D6.7 CM2670 D102B, Service Manual (5504515).
↩ -
Denton, T., & Pells, H. (2022). Automotive Technician Training Theory. Routledge.
↩ -
Cummins Inc. (n.d.). D6.7 CM2670 D102B, Service Manual (5504515).
↩ -
Barton, D. C., & Fieldhouse, J. D. (2009). Automotive Chassis Engineering Powertrain Chassis System and Vehicle Body. Elsevier.
↩ -
Bosch, R. (2007). Bosch Automotive Electrics and Automotive Electronics: Systems and Components, Networking and Hybrid Drive 5th Edition. Springer Vieweg.
↩ -
Cummins Inc. (n.d.). D6.7 CM2670 D102B, Service Manual (5504515).
↩ -
Cummins Inc. (n.d.). D6.7 CM2670 D102B, Service Manual (5504515).
↩ -
Cummins Inc. (n.d.). D6.7 CM2670 D102B, Service Manual (5504515).
↩ -
Cummins Inc. (n.d.). D6.7 CM2670 D102B, Service Manual (5504515).
↩ -
Cummins Inc. (n.d.). D6.7 CM2670 D102B, Service Manual (5504515).
↩ -
Cummins Inc. (n.d.). D6.7 CM2670 D102B, Service Manual (5504515).
↩ -
Cummins Inc. (n.d.). D6.7 CM2670 D102B, Service Manual (5504515).
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SPECIFICATIONS
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* 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.