ANSI-Tested Casters for Proven Safety & Performance 🚚 Free Shipping $325+ (USA)
Discover the unmatched blend of durability and floor protection with the Hamilton Non-Marking AR Rubber Wheels. Boasting a robust aluminum core and a capacity of up to 500 lbs, these wheels are designed for seamless operation in high-demand environments without leaving marks or damage.
Ideal for applications ranging from retail to healthcare, these wheels ensure reliability across various floor types. Whether for carts, equipment, or mobile stations, Hamilton's non-marking wheels promote operational efficiency and safety in any setting.
Elevate your equipment's performance with wheels that offer the perfect combination of strength and gentle floor interaction. The Hamilton AR Rubber Wheels support your need for a smooth glide, enhanced durability, and maintenance of pristine floor conditions.
1/2" Straight Roller Bearing
410 lbs Load Capacity @ 3 mph
5/8" Straight Roller Bearing
410 lbs Load Capacity @ 3 mph
3/4" Straight Roller Bearing
410 lbs Load Capacity @ 3 mph
1/2" Straight Roller Bearing
500 lbs Load Capacity @ 3 mph
5/8" Straight Roller Bearing
500 lbs Load Capacity @ 3 mph
3/4" Straight Roller Bearing
500 lbs Load Capacity @ 3 mph
The Hamilton Non-Mark on Alum | AR, Rubber Wheels are designed with a high load capacity of up to 500 lbs, making them ideal for heavy-duty industrial applications. The non-marking feature ensures that your floors remain scuff and mark-free, even under heavy loads.
These wheels are not just robust and durable, but also versatile. They can be used in a variety of environments, from manufacturing facilities to warehouses, proving their reliability and efficiency in material handling and operational tasks.
Hamilton's commitment to quality and performance is evident in the Non-Mark on Alum | AR, Rubber Wheels. Every feature of these wheels is engineered with the modern industrial environment in mind, blending cutting-edge innovations and premium materials to exceed the expectations of the most demanding applications.