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Oil-Embedded Copper Bushing Sleeve, Self-Lubricating Powder Metallurgy Flanged Bearing, 10-20mm Inner Diameter, Stepped Design (16x22x28x28x3mm) in Saudi Arabia

16x20x20x25x2mm

SAR 304

Brand
ZDWXMGUY
Weight
400 g
Style16x20x20x25x2mm
1 +

Special Features

  • SELF-LUBRICATING DESIGN: Engineered with oil-embedded copper material for maintenance-free operation and consistent smooth performance
  • MATERIAL COMPOSITION: Manufactured using powder metallurgy techniques with high-grade copper for superior wear resistance and durability
  • VERSATILE SIZING: Available in multiple inner diameter options (10mm, 12mm, 16mm, 20mm) to accommodate various shaft applications
  • STEPPED FLANGE DESIGN: Features precision-engineered stepped sleeve and flange for secure positioning and simplified installation
  • PERFORMANCE FEATURES: Oil-impregnated construction ensures reliable lubrication and extended service life in demanding applications

Description

Discover superior performance with these precision-engineered self-lubricating copper bushing sleeves. Manufactured using advanced powder metallurgy techniques, these flanged bearings feature a stepped design that ensures secure axial positioning and hassle-free installation. Available in multiple inner diameter sizes ranging from 10mm to 20mm, these versatile bushings accommodate various shaft dimensions for different applications. The oil-embedded copper construction delivers exceptional wear resistance and maintains smooth operation over time. The self-lubricating design minimizes maintenance requirements while providing consistent, reliable performance. These robust bushings excel in applications requiring precise fit and durability, making them ideal for automotive and industrial use. The specialized powder metallurgy process ensures uniform density and superior structural integrity throughout the bearing. The stepped flange configuration provides both proper alignment and enhanced load distribution, contributing to extended service life and optimal functionality in demanding mechanical systems.

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