Product Description
Heavy-duty polyurethane load wheel designed for manual pallet jacks. Features polyurethane tread bonded to carbon steel core for reliable performance and durability. Direct replacement for Pallet Mule manual pallet jack applications. Available cross-reference part numbers: PUA3X33/8PMWB, PTA3X33/8 PMWB, PT A3X33/8 PMWB.
Specifications
Wheel Specifications
| Wheel Material | Polyurethane tread with steel core |
| Core Material | Carbon steel, powder coated |
| Tread Hardness | 85 Shore A polyurethane |
Part Identification
| Manufacturer Part Number | PU A3X33/8 PMWB |
| Cross-Reference Part Numbers | PUA3X33/8PMWB, PTA3X33/8 PMWB, PT A3X33/8 PMWB |
| Compatibility | Pallet Mule manual pallet jacks |
| Application | Heavy-duty manual pallet jack load wheel |
Frequently Asked Questions
Q: What are the dimensions of the PU A3X33/8 PMWB load wheel?
A: The PU A3X33/8 PMWB has a. These dimensions are critical for verifying fitment on your manual pallet jack before ordering.
Q: Which pallet jack models does the PU A3X33/8 PMWB fit?
A: This load wheel is compatible with Pallet Mule manual pallet jacks. Verify your specific equipment model matches before ordering, as dimensional fitment varies across equipment lines.
Q: What material and hardness is the PU A3X33/8 PMWB tread?
A: The wheel features 85 Shore A polyurethane tread bonded to a carbon steel core with powder coating. This hardness level provides balanced wear resistance for general manual pallet jack applications.
Q: What cross-reference part numbers match the PU A3X33/8 PMWB?
A: Equivalent part numbers include PUA3X33/8PMWB, PTA3X33/8 PMWB, and PT A3X33/8 PMWB. Use these cross-references when verifying compatibility with original equipment specifications.
Q: How long does the PU A3X33/8 PMWB typically last in service?
A: Polyurethane load wheels with 85 Shore A hardness typically deliver 18 to 36 months of service depending on floor conditions and load cycle frequency. Harder tread compounds wear longer on smooth floors; softer wheels last longer on rough surfaces.
