Material structure: Cast aluminum bronze CuZn25Al6Fe3Mn3, with graphite insert. Applicatio...
The single-sided flange copper sleeve is a high-performance brass alloy shaft sleeve with excellent wear resistance and load-bearing capacity. This shaft sleeve is manufactured using advanced centrifugal casting technology, ensuring excellent structural stability and high durability. It is suitable for high-load and low-speed scenarios and is highly suitable for heavy machinery, especially in environments that require high wear resistance and high temperature resistance, providing long-lasting and reliable service.
High wear resistance: Made of high-strength brass alloy, it has excellent wear resistance and is suitable for long-term use under heavy loads.
Hardness: Approximately 170HBW (Brinell hardness), ensuring strong compressive and friction resistance.
Centrifugal casting process: Manufactured using advanced centrifugal casting technology, it ensures precise and dense structure, enhancing product durability.
Large size processing capability: The maximum outer diameter of the brass sleeve can be processed up to 2 meters, and the maximum height up to 1 meter, suitable for various large-scale mechanical applications.
|
Material |
High-Tensile brass CuZn25Al6Fe3Mn3 |
|
Base material |
CuZn25Al6Fe3Mn3 |
|
Base hardness |
HB170 |
|
Tensile strength |
740 MPa |
|
Yield strength |
400MPa |
|
Elongation ratio |
7% |
In early July 2025, TOCREE successfully completed the relocation of its production and operational base. The company has moved from its former location at Room 101, Building 27, Jiashan Information Te...
READ MOREDecember 2025 – Tocree (Tocree Machinery) has further strengthened its precision machining capabilities and product accuracy with the introduction and commissioning of a new advanced high-precision CN...
READ MORENovember 2025 – To meet continuously growing market demand, Tocree (Tocree Machinery) has officially launched and completed a significant expansion of its core foundry workshop. The project added 1,30...
READ MORE