HUDY 106059 Replacement 2x10 Drive Shaft Pins Extra Hard - 4 Pack  [HSP-106059]

HUDY 106059 - SET OF Replacement Drive Shaft Pins 2x10 - Extra Hard (4)
Price:
NZD$28.28
Brand:
HUDY
Model:
HSP-106059
Condition:
Brand New
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Drive shaft pin replacement details

This HUDY kit supplies four 2x10 drive shaft pins sized for RC drive shafts. Labeled "Extra Hard", these pins receive a tougher heat-treated finish than typical stock pins and are used to lock a drive shaft into a hub or coupling to limit axial movement.

Fitting is straightforward: line up the shaft hole and push the pin through until it is flush with the mounting surface. For removal, use small needle-nose pliers or a 2 mm pin punch, then test the assembly to ensure the shaft is secure and free of excess play. These pins are a small but useful part of regular drivetrain upkeep.

Specifications

  • Item: Replacement drive shaft pins
  • Model Number: HUDY 106059
  • Quantity: 4 pcs
  • Size: 2x10
  • Material: Extra hard
  • Compatibility: Standard 2x10 RC drive shafts

Use these when you need firmer retention compared with standard pins or when replacing pins showing wear, to help keep shaft alignment consistent.

Remark :
Due to limited stock availability, please notice that some HUDY items may have to order from the factory and the ready time is around 8-12 weeks. Customer purchases the item is assumed to accept the waiting time which allows us to order directly from the manufacturer if the item is out of our warehouse.
Basic hand tools suffice: push the pin by hand or use a small vice or pin press for a controlled fit. A pin punch sized for 2 mm helps for removal.
The extra hard finish reduces deformation, so the pin holds shape better; if your hub material is soft, check for abrasion and ensure the pin still seats fully.
Look for bending, burrs, or end mushrooming; replace any pin that does not sit straight or shows visible damage.
They are intended to resist deformation better than soft pins, making them a good choice where frequent disassembly or heavier loads occur.

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