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Bearings Rod End Bearings Durbal Rod ends
Quick Code: BB-383576

DGAL17 UK Basic Line Durbal Rod end

£26.43 exc VAT (£31.72 inc VAT)
In Stock   Free Delivery over £100   Next Day Order by 4pm
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Product Specification
Inner dimension
17mm
Lubrication hole
Without lubrication groove
Maintenance
Maintenance-free version
Outer dimension
46mm
Seal
None, open bearing
Thread direction
Left-hand thread
Thread type
Male thread
Version
Steel/bronze-PTFE
Width
14mm
Reference
DGAL17 UK Basic Line
Additional Reference:
10167809
Brand
Durbal
Quick Order Code
BB-383576
Product Description

A precision-engineered Durbal rod end bearing designed for versatile industrial applications, the DGAL17 UK Basic Line offers reliable performance with specialized features for demanding mechanical environments.

Technical Specifications:

  • Inner Dimension: 17mm
  • Outer Dimension: 46mm
  • Width: 14mm
  • Thread Type: Male thread
  • Thread Direction: Left-hand thread
  • Material Composition: Steel/bronze-PTFE
  • Lubrication: Without lubrication groove
  • Maintenance: Maintenance-free version
  • Sealing: Open bearing (no seal)

Recommended Applications:

  • Industrial machinery and equipment
  • Precision mechanical linkage systems
  • Construction and material handling equipment
  • Hydraulic and pneumatic system components
  • Agricultural machinery mechanisms
  • Mechanical engineering applications

The DGAL17 UK Basic Line rod end bearing is engineered to provide reliable angular misalignment compensation in challenging industrial settings. Its robust steel/bronze-PTFE construction ensures durability and smooth operational performance. The maintenance-free design minimizes operational complexity, while the open bearing configuration offers versatility across various mechanical interconnection requirements.

Ideal for engineers and manufacturers seeking a compact, reliable rod end bearing that delivers consistent performance in demanding environments. The specialized material composition provides excellent wear resistance and smooth motion, making it a preferred choice for critical mechanical systems.