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Wichard FRX6 Friction Ring - 7mm (9/32") [FRX6 / 20705]

Description

FRX6 Friction Ring - 7mm (9/32")

Features:

  • Efficient and light
  • FRX Wichard thimbles are efficient, light, and reliable
  • Very strong and can be used for heavy loads and semi-static lines
  • FRX thimbles are designed to make your lines run smoothly with minimum wear
  • They are hard anodized (50 microns) for a longer lifespan

Applications:

  • Mast-foot block, barber-hauler, inhauler, loop, thimble, lazy jack, running backstay, tackle, and more

Specifications:

  • Materials: Anodized aluminium
  • Working load: (lb) 880 / (kg) 400
  • Weight: (lb) 0.004 / (g) 2
  • A: (inch) 7/32" / (mm) 5.5
  • B: (inch) 9/32" / (mm) 7
  • C: (inch) 23/64" / (mm) 9
  • D diameter: (inch) 45/64" / (mm) 18

Caption:

  • Working Load (WL): For nautical applications
  • Working Load Limit (WLL): For industrial applications only. The safety factor is 5 times the breaking load. WLL = Breaking load / 5

*Sold as an Individual


Quick Guide (pdf)

Wichard FRX6 Friction Ring - 7mm (9/32") [FRX6 / 20705]

Product form

$18.45 $11.99

    Description

    FRX6 Friction Ring - 7mm (9/32")

    Features:

    • Efficient and light
    • FRX Wichard thimbles are efficient, light, and reliable
    • Very strong and can be used for heavy loads and semi-static lines
    • FRX thimbles are designed to make your lines run smoothly with minimum wear
    • They are hard anodized (50 microns) for a longer lifespan

    Applications:

    • Mast-foot block, barber-hauler, inhauler, loop, thimble, lazy jack, running backstay, tackle, and more

    Specifications:

    • Materials: Anodized aluminium
    • Working load: (lb) 880 / (kg) 400
    • Weight: (lb) 0.004 / (g) 2
    • A: (inch) 7/32" / (mm) 5.5
    • B: (inch) 9/32" / (mm) 7
    • C: (inch) 23/64" / (mm) 9
    • D diameter: (inch) 45/64" / (mm) 18

    Caption:

    • Working Load (WL): For nautical applications
    • Working Load Limit (WLL): For industrial applications only. The safety factor is 5 times the breaking load. WLL = Breaking load / 5

    *Sold as an Individual


    Quick Guide (pdf)

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