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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 extra iron and filled with oil containing slippery PTFE, these bearings support heavy loads that frequently start and stop along shafts.
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.
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.
Made of FDA-listed materials or FDA compliant, these bearings are for use in food applications. They also withstand caustic and washdown environments.
These bronze bearings are strong, wear resistant, and excellent at handling shock loads.
Startup friction causes these bearings to release a thin layer of oil on the bearing’s surface. They’re flanged, so they handle loads both parallel and perpendicular to the shaft. They’re also known as Oilite® bearings.
With oil for reduced friction and iron for added strength, these bearings handle frequent stops and starts in high-load applications.
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.
These bearings stand up to a wider range of chemicals than other dry-running flanged sleeve bearings.
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.
The oil in these bearings is NSF registered H1 and FDA compliant for incidental contact with food.
A metal backing adds strength.
These nylon bearings swivel inside their housing to compensate for over 20° of shaft misalignment.
Startup friction causes these porous bronze bearings to release a thin layer of oil on the bearing’s surface.
Mount these hubless bushings flush into your sprocket or pulley for a slim profile with no protruding screws.
The tapered barrel on these bushings is split on both sides, allowing them to contract more tightly around the shaft than quick-disconnect and taper-lock bushings.
Also known as Trantorque bushings, these tighten with a twist of the collar nut—no screws needed.
A mounting flange prevents movement during tightening.
Keep these shaft collars in place by tightening their set screw into the shaft.
These metal collars are stronger than plastic shaft collars.
Suitable for use in washdown applications, these plastic collars also offer good chemical resistance.
A threaded lever lets you tighten these collars with more torque than other quick-release styles, ensuring that they stay put on your shaft.
Use a wrench to rotate your drive shaft without marring or gouging the shaft.
Make quick adjustments to these shaft collars with a lever on the side.
Offering the benefits of a two-piece collar in a one-piece design, these collars swing open for positioning then close anywhere on your shaft.
Three tapped counterbored holes and three through-holes provide mounting flexibility.
Two tapped holes on the face of these collars allow you to fasten them to gears, pulleys, and sprockets.
These couplings have the gripping strength to handle higher torque than most other couplings.
Each hub includes a set screw (unless noted), which bites into your shaft to hold the coupling in place.
The thick split spider on these couplings takes on twice as much torque as standard split spiders, while a set screw holds the hubs in place on your shaft. Also known as jaw couplings, use them to connect motors to pumps, mixers, and other high-torque equipment.
Able to handle high twisting forces as well as misalignment, these couplings are good for high-performance servomotor applications.
Designed to grip evenly around your shaft, these couplings provide more holding power than set screw couplings without marring the shaft.
Each hub includes a set screw, which bites into your shaft to hold the coupling in place.