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These steel ball bearings handle higher loads than stainless steel and plastic bearings.
A solid polymer lubricant surrounds the balls, eliminating the need for additional lubrication. Because it's solid, the lubricant blocks out water and dust, extending the life of the bearing.
Wider than our standard ball bearings, these rugged bearings are good for handling heavy loads at low speeds.
Use these bearings where high speed and precision are not required.
Bearings are 440C stainless steel for good corrosion resistance.
A solid polymer lubricant surrounds the balls, eliminating the need for additional lubrication. Bearings are 440C stainless steel.
Made to tight tolerances, these 440C stainless steel bearings combine speed and accuracy with corrosion resistance.
Good for applications with incidental food contact, these 440C stainless steel bearings have a food-grade, solid polymer lubricant between the balls and race that eliminates the need for additional lubrication.
These 316 stainless steel bearings are more corrosion resistant than our other stainless steel bearings, but they have a lower load capacity.
Made of slippery plastic, these bearings do not require lubrication and have excellent corrosion and chemical resistance.
With two rows of balls, these lightweight bearings have greater durability and load capacity—and a wider profile—than single-row plastic bearings.
Made of PVDF, these bearings resist moisture absorption, so they won’t warp in underwater applications.
These PEEK bearings operate in temperatures almost twice as high as our other plastic ball bearings.
The flange ensures proper positioning inside a tube or housing.
Install these acetal bearings in caustic environments and where lubrication can’t be used. They have good all-around corrosion and chemical resistance.
No need to worry about precisely aligning these bearings—they swivel to compensate for up to 5° of shaft misalignment.
When speed and accuracy matter most, opt for these bearings. They’re made to tighter tolerances than standard flanged ball bearings.
Unlike other ball bearings, these do not need to be fully inserted into a housing. A spline around the outside of the bearing creates a permanent, secure hold in thin panels.
Steel balls and washers allow these bearings to handle higher loads than bearings with stainless steel components.
A combination of stainless steel and nylon components provide increased corrosion resistance over standard thrust ball bearings.
Also known as Oilite® bearings.
Increased iron content makes these bearings stronger and more resistant to shock loads than standard oil-embedded bearings; however they operate at lower speeds.
For applications with frequent starts and stops, the oil in these bearings contains particles of slippery PTFE that lubricate the bearing during startup.
With a flexible layer of rubber sandwiched between an oil-embedded bronze bearing and rigid metal shell, these bearings reduce wear and machinery noise.
Unlike other sleeve bearings, these do not need to be fully inserted into a housing. Their unique shape creates a permanent, secure hold in thin panels.
The oil in these bearings is suitable for incidental contact with food.
Embedded with oil that is safe for incidental contact with food, these bearings are suitable for use in high-load applications such as bottling and filling lines in food processing plants. They are also known as Super Oilite® bearings.
A metal shell adds strength.
Use where high loads and speeds are not required.
Use these bearings in applications with frequent starts and stops because they operate with very little friction.
Graphite provides a layer of dry lubrication that can operate in high-temperature environments.
Made of FDA-listed materials or FDA compliant, these bearings are for use in food applications. They also withstand caustic and washdown environments.
These bearings stand up to a wider range of chemicals than other dry-running sleeve bearings.
Good for underwater applications, these bearings won’t swell or warp when wet.
Permanently and securely install these self-clinching bearings into panels, with no need for precision-bored holes or machined mounts.
Even in the presence of harsh chemicals and extreme temperatures, these bearings operate under heavy loads and at high speeds.
These bronze bearings are strong, wear resistant, and excellent at handling shock loads.
The addition of iron and aluminum gives these aluminum-bronze bearings high strength and excellent corrosion resistance—making them suitable for use in marine and mining applications.
Support heavy loads that are often found in bottling and filling lines in food plants—these bearings contain extra iron and FDA-compliant oil. They’re flanged, so they handle loads both parallel and perpendicular to the shaft.
These bearings come with a traceable lot number and material test report. They are also known as Oilite® bearings.
A slit running along the length of these bearings allows you to quickly slip them into a housing—no tools required.
Made of FDA listed materials for use in food applications, these bearings also withstand caustic and washdown environments.
Graphite provides a layer of dry lubrication that operates in high-temperature environments.
An aluminum shell adds strength.
Compensating for minor shaft misalignment and not requiring lubrication, these sleeve bearings swivel to self-align and are dry running. They don’t need a housing and you can install and replace them without any tools because they’re slip fit.
These bearings stand up to a wider range of chemicals than other dry-running flanged sleeve bearings.
Made of acetal with a PTFE filler, these bearings handle velocities up to twice as high as standard acetal bearings. They swivel to compensate for a small amount of shaft misalignment.
Furnished with a traceable lot number and material test report, these bronze bearings are strong, wear resistant, and excellent at handling shock loads.
Made of 863 iron-copper and embedded with NSF registered H1 oil, these bearings can tackle high-load applications in food plants, such as bottling and filling lines.
These bearings stand up to a wider range of chemicals than other dry-running thrust bearings.
Also known as drawn-cup roller bearings, these are our thinnest roller bearings. The outer ring is drawn out to form a lip that holds the bearing together.
The needles in these bearings roll freely in one direction, but lock to transmit torque when the rotation of the shaft is reversed. Also known as drawn-cup roller clutches.
Thinner rollers allow these bearings to fit in tighter spaces than tapered-roller thrust bearings.
Adapt needle-roller thrust bearings to use on unhardened, unground surfaces.
Designed with a thin, compact housing, these bearings are good for space-constrained applications.
Made from slippery materials, these bearings reduce friction without the oily mess.
Made of acetal blended with PTFE, these bearings handle speeds twice as fast as standard sleeve bearings.
Startup friction causes these porous bronze bearings to release a thin layer of oil on the bearing’s surface.
With a flexible layer of neoprene sandwiched between an oil-embedded bronze bearing and rigid steel shell, these bearings reduce wear and machinery noise.
Roller bearings have a thinner profile and larger contact area than ball bearings, making them stronger and more space-efficient than ball bearings.
Use these bearings for light loads and small shafts. The closed backing blocks out dust and other contaminants.
Embedded lubricant particles increase the load capacity of these bearings while also making them slippery.
Use these nylon or acetal bearings for light loads. The closed backing blocks out dust and other contaminants.
Made of acetal with a PTFE filling, these light duty bearings handle speeds twice as fast as standard acetal bearings can.
Handling speeds twice as fast as standard mounted sleeve bearings while limiting wear on your system, these bearings are made of PTFE-filled acetal.
Made of FDA listed PEEK, these bearings are suitable for direct contact with food. The closed backing blocks out dust and other contaminants.
These roller bearings handle extremely high speeds for their small size.
Use ball bearings in debris-free environments and when speed is a necessity. They operate with less friction than sleeve bearings, so you can run them at higher speeds.
The choice for low-friction motion in high-temperature environments.
Designed to handle heavy loads, these bearings have higher load capacities than comparable standard linear ball bearings.
Because they usually do not require lubrication, linear sleeve bearings outperform linear ball bearings in dirty environments.
Ridges on the inside of these bearings wipe away dust and debris as the bearing travels on a shaft.
A ceramic liner makes high speeds as well as rapid acceleration and deceleration possible.
Sleeve bearings outperform ball bearings in dirty environments. Use them for low speed applications.
The flanged housing makes these bearings a good solution for vertical linear motion applications.
The shell, housing, and balls of these bearings are stainless steel for excellent corrosion resistance.
Choose ball bearings for debris-free environments and when speed is a necessity. They operate with less friction than sleeve bearings, so you can run them at higher speeds.
Designed to handle heavy loads, these bearings have the highest load capacities of any mounted linear ball bearings we offer.
Outdoor as well as mild chemical environments are no problem for these bearings. They have stainless steel balls for corrosion resistance.
Virtually maintenance free, these bearings have slippery, chemical-resistant liners that don't require added lubrication.
A ceramic coating makes high speeds as well as rapid acceleration and deceleration possible.
Also known as yoke-style cam followers, these rollers have more mounting flexibility than threaded track rollers. They're typically mounted onto a shaft or clevis rod end.
Made of 440C stainless steel, these shaft-mount track rollers resist corrosion in damp environments.
Also known as Trantorque bushings, these tighten with a twist of the collar nut—no screws needed.
Reduce the ID of sprockets, pulleys, and gears in low-torque applications.
Suitable for use in washdown applications, these plastic collars also offer good chemical resistance.
Instead of replacing your shaft or keeping components, such as couplings, with various bore diameters on hand, these reducers adapt the bore of a component to a smaller size.
Add your own stepper motor and controller to precisely move the ball screw and carriage smoothly at high speeds, like a head on an inkjet printer.
With PTFE sleeve bearings and a low-friction ball screw, these slides don’t require the mess and maintenance of lubrication but still give you precise positioning anywhere along the length of their stroke.