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The Oil Transfer Connection 3064630, manufactured by Cummins, is designed to facilitate the efficient transfer of oil within the lubrication system of commercial trucks. Cummins, a prominent name in the commercial truck industry, produces a range of parts and systems aimed at enhancing the performance and reliability of heavy-duty vehicles. This part is integral to the operation of trucks, ensuring that oil is effectively distributed to various engine components, thereby supporting engine health and performance 1.
Basic Concepts of Oil Transfer Connection
An Oil Transfer Connection is a component that plays a role in a truck’s lubrication system by enabling the movement of oil between different parts of the engine. This process is vital for maintaining engine health, as it ensures that all moving parts receive adequate lubrication, reducing friction and wear 2. The efficient transfer of oil contributes to the overall efficiency and longevity of the engine.
Purpose of the 3064630 Oil Transfer Connection
The 3064630 Oil Transfer Connection is specifically designed to facilitate the transfer of oil between different components or systems within a truck’s engine. Its role is to ensure that oil is consistently and efficiently distributed, supporting the lubrication needs of various engine parts. This contributes to the smooth operation of the engine, helping to maintain its performance over time 3.
Key Features
The 3064630 Oil Transfer Connection features a design that incorporates durable materials and precise engineering to enhance its performance and longevity. Its construction allows for efficient oil transfer, while its materials are chosen for their ability to withstand the demanding conditions within a truck’s engine. Unique attributes of this connection may include specific design elements that improve its functionality and integration within the lubrication system.
Benefits
The 3064630 Oil Transfer Connection offers several benefits, including improved lubrication efficiency, which can lead to reduced friction and wear on engine components. Additionally, its design may contribute to reduced maintenance requirements, as efficient oil transfer can help prevent issues related to inadequate lubrication. Enhanced engine protection is another benefit, as consistent and effective oil distribution supports the overall health and performance of the engine 4.
Installation and Integration
Proper installation of the 3064630 Oil Transfer Connection within a truck’s lubrication system is important for ensuring its effective operation. This process may involve specific preparations or considerations to ensure that the connection is correctly integrated into the system. Following manufacturer guidelines for installation can help maintain the performance and reliability of the lubrication system.
Troubleshooting and Maintenance
Common issues related to the 3064630 Oil Transfer Connection may include leaks or inefficient oil transfer. Troubleshooting these issues can involve checking for proper installation, ensuring that all connections are secure, and inspecting the condition of the connection itself. Regular maintenance practices, such as cleaning and inspecting the connection for wear or damage, can help ensure optimal performance and longevity.
Cummins Overview
Cummins Inc. is a leading manufacturer in the commercial truck industry, known for its wide range of products that enhance the performance and reliability of heavy-duty vehicles. With a history of innovation and quality, Cummins has established a strong reputation for producing parts and systems that meet the demanding needs of commercial trucking. Their product offerings include engines, powertrain components, and aftermarket parts, all designed to support the efficiency and durability of commercial trucks.
Cummins Oil Transfer Connection Part 3064630
The Cummins Oil Transfer Connection part number 3064630 is a critical component in the engine systems of various Cummins engines, including the N14 CELECT and N14 MECHANICAL variants. This part facilitates the transfer of oil between different parts of the engine, ensuring that lubrication is maintained effectively throughout the engine’s operation.
In the N14 CELECT engine, the Oil Transfer Connection is integral to the engine’s electronic control system. It ensures that the oil is distributed to the necessary components, maintaining optimal engine performance and longevity. The CELECT system’s advanced monitoring and control capabilities rely on consistent oil flow, making this part essential for the engine’s overall functionality.
Similarly, in the N14 MECHANICAL engine, the Oil Transfer Connection part 3064630 plays a vital role in the engine’s mechanical operation. This engine variant, known for its robust design and reliability, depends on the efficient transfer of oil to reduce friction and wear among its components. The mechanical nature of the N14 MECHANICAL engine necessitates precise oil distribution to maintain its operational integrity.
Both the N14 CELECT and N14 MECHANICAL engines benefit from the use of the Cummins Oil Transfer Connection part 3064630. This part’s design ensures that it fits seamlessly into these engines, providing a reliable and efficient means of oil transfer. Its importance in maintaining engine health and performance cannot be overstated, as it directly impacts the engine’s lubrication system.
Role of Part 3064630 Oil Transfer Connection in Engine Systems
The Part 3064630 Oil Transfer Connection is an essential component in the efficient operation of various engine systems. It facilitates the seamless transfer of oil between different components, ensuring optimal performance and longevity of the engine.
Integration with Lubrication Systems
In lubrication systems, the Oil Transfer Connection plays a significant role by connecting the Lub Oil Filter to the Lub Oil Cooler. This connection ensures that the oil is properly filtered before it is cooled, maintaining the cleanliness and temperature of the oil. This is vital for reducing wear and tear on engine components and ensuring smooth operation.
Connection to Oil Coolers
The Oil Transfer Connection is also integral in linking the Oil Cooler to other parts of the engine. By providing a secure and efficient pathway for oil to flow from the engine to the cooler and back, it helps in maintaining the oil at an optimal temperature. This is particularly important in high-performance engines where temperature management is key to performance and reliability.
Use in Oil Cooler Kits
In Oil Cooler Kits, the Oil Transfer Connection is used to connect various components such as the Oil Filter and the Oil Cooler. These kits are designed to enhance the cooling efficiency of the engine oil, and the connection ensures that the oil circulates effectively through the system. This results in better thermal management and improved engine protection.
Ensuring Compatibility and Efficiency
When integrating the Oil Transfer Connection with components like the Oil Filter / Cooler, it is important to ensure that all connections are secure and leak-free. This not only enhances the efficiency of the oil transfer but also prevents potential damage to the engine from oil leaks.
By understanding the role of the Part 3064630 Oil Transfer Connection in these systems, engineers and mechanics can better maintain and optimize engine performance.
Conclusion
The 3064630 Oil Transfer Connection is a vital component in the lubrication systems of commercial trucks, particularly those equipped with Cummins engines. Its role in facilitating efficient oil transfer contributes to the overall health, performance, and longevity of the engine. Proper installation, regular maintenance, and understanding its integration within the lubrication system are key to maximizing the benefits of this Cummins part.
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Reif, Konrad. Fundamentals of Automotive and Engine Technology: Standard Drives, Hybrid Drives, Brakes, Safety Systems. Springer Vieweg, 2014.
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Xin, Qianfan. Diesel Engine System Design. Woodhead Publishing Limited, 2011.
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Goodnight, Nicholas, and Kirk Van Gelder. Automotive Braking Systems. Jones & Bartlett Learning, 2018.
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Stone, Richard. Introduction to Internal Combustion Engines, Fourth Edition. Macmillan, 2012.
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SPECIFICATIONS
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