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SealMaster USRB5000K-407 738287 USRB 5000A 适配器安装单元
- 品牌: SealMaster
- 型号: 738287
- 分类: 带座轴承
- SKU: 6932169
- 参考重量: 30.94 kg
- 价格: 具体价格货期请咨询客服
产品规格
产品内容
4-Bolt Pillow Block Bearings The SealMaster USRB5000K-407 738287 USRB 5000A Adapter Mount Unit is a premium 4-Bolt Pillow Block Bearing designed for reliable performance in various automotive and industrial applications. Built with precision engineering, this bearing unit offers superior load capacity and durability, ensuring optimal functionality in demanding environments.
Key Features
Heavy-Duty Construction: Crafted from high-quality materials, providing enhanced wear resistance and longer service life.
Sealed Design: Features a double-lip seal that prevents contaminants from entering, prolonging the bearing's lifespan and maintaining operational integrity.
Easy Installation: The 4-bolt mounting configuration allows for straightforward installation and alignment, minimizing downtime.
Versatile Sizing: Suitable for standard shaft sizes, accommodating a variety of applications without the need for extensive modifications.
High Load Capacity: Engineered to support heavy loads, making it ideal for use in industrial machinery and automotive applications.
Applications
Industrial Machinery: Perfect for use in conveyor systems, material handling equipment, and other heavy machinery.
Automotive: Compatible with various automotive components, including axles and drive shafts, ensuring smooth operation.
Agricultural Equipment: Used in farming machinery to enhance performance and reduce maintenance needs.
Construction: Ideal for applications in construction equipment requiring robust and reliable bearing solutions.
Benefits
Increased Reliability: The robust design and quality materials ensure dependable performance, reducing the risk of failure in critical applications.
Lower Maintenance Costs: With its sealed construction and high durability, this bearing requires less frequent maintenance and replacement, saving on operational costs.
Enhanced Efficiency: Smooth operation minimizes friction, contributing to improved energy efficiency and reduced wear on connected components.