产品规格
产品内容
4-Bolt Flange Bearing Unit The PEER PER.UCF205-16-B Flange Block Bearing Unit is a high-performance solution engineered for robust applications across various industrial sectors. This 4-bolt flange bearing unit is specifically designed to provide reliable support and precise alignment for rotating shafts, ensuring optimal operational efficiency and longevity.
Key Features
Design: Featuring a 4-bolt mounting configuration that allows for easy installation and secure attachment to machinery, promoting stability even under heavy loads.
Locking Mechanism: Equipped with a set screw locking system that enhances shaft grip and prevents rotation slippage, ensuring consistent performance over time.
Material Construction: Manufactured with high-quality materials that exhibit excellent wear resistance and durability, catering to demanding operational environments.
Dimensions: Standard housing dimensions facilitate compatibility with various shaft sizes, ensuring versatility in application across different machinery setups.
Temperature Range: Designed to operate effectively within a wide temperature range, making it suitable for both indoor and outdoor applications.
Applications
Industrial Machinery: Ideal for use in conveyor systems, industrial fans, and other rotating equipment where reliability is critical.
Agricultural Equipment: Perfectly suited for agricultural machinery such as tractors and harvesters, where heavy-duty performance is necessary.
Material Handling: Commonly utilized in material handling systems, providing the necessary support for moving parts in demanding environments.
Compatibility: Designed to fit standard shaft sizes, making it an excellent choice for retrofitting existing systems or new installations.
Benefits
Enhanced Reliability: The robust construction and effective locking mechanism provide long-lasting performance with minimal maintenance, reducing downtime.
Ease of Installation: The 4-bolt design simplifies mounting processes, allowing for quick and efficient setup in various applications.
Operational Efficiency: Optimal support and alignment contribute to improved operational efficiency, reducing wear on machinery and extending service life.