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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.
Able to handle high twisting forces as well as misalignment, these couplings are good for high-performance servomotor applications.
With a bellows between two hubs, these couplings handle all types of misalignment and are good for precision stepper and encoder motion-control applications.
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.
A strip of flexible spring steel wraps around the teeth of both hubs to absorb sharp, momentary load increases that can come from motor startups, emergency braking, or sudden impact with hard objects.
Safely connect slightly misaligned shafts near food lines—the spider on these couplings contains metal, so it’ll trigger a metal detector if a piece frays off and contaminates your batch.
Also known as Schmidt couplings, these handle higher angular misalignment than other three-piece couplings. Good for applications with varying shaft misalignment, they're commonly used with conveyor rollers and roller feeds in printing and packaging machines.
Use these gear-shaped couplings for high-speed and high-torque applications.
Made with lightweight nylon sleeves, these gear couplings require less energy to move than other high-torque flexible couplings. They compensate for parallel, angular, and axial misalignment.
With a rugged roller-chain design, these couplings provide excellent torque and angular misalignment capacities.
With a rigid gear design, these steel couplings transmit more torque than other couplings of the same size.
Designed to grip evenly around your shaft, clamping couplings provide more holding power than set screw couplings without marring the shaft.
When one of your shafts is undersized from wear, oversized from coatings, or uncommonly sized, machine one end of these couplings to fit. They clamp around your shafts for a secure hold that won’t cause damage.
These couplings have the gripping strength to handle higher torque than most other couplings.
Set screws bite into your shaft to hold these couplings in place.
Install and remove these shaft couplings without disconnecting the shafts, motors, and other attached components—they’re made in two pieces so you don’t need to slide them onto shaft ends. They’re also useful when you have limited access to the ends of the shafts.
Access one shaft without disconnecting the other. These rigid couplings have a solid bottom that connects the shafts and two top pieces that clamp the shafts independently.
Extend the life of your rigid shaft couplings by blocking out dirt, water, lubricants, and other contaminants. These two-piece covers twist together to form a shell around the coupling.
Connect and transfer torque between two shafts that are misaligned at an angle.
Use these U-joints in wet environments to connect and transfer torque between two shafts.
Ideal for wet environments, these U-Joints are stainless steel, so they have good corrosion resistance while also balancing strength. They have a heat- and water-resistant silicone cover (also known as a boot or bellows) to keep lubricant in and contaminants out.
A cover (also known as a boot or bellows) seals out contaminants and seals in lubricant.
Often found in food, cosmetic, and pharmaceutical plants, these U-joints connect misaligned shafts in sanitary environments.
With a maximum torque of at least 11,600 in.-lbs., these U-joints handle more torque than any other U-joint in our offering.
Choose these U-joints for applications that run continuously in wet environments.
Often found in continuously running applications, these U-joints operate at higher speeds and last longer than other types of joints, thanks to their needle bearings.
A good choice when you need accurate and repeatable motion, these U-joints have zero backlash (no play), so there’s no motion lost when your shafts change direction.
Ideal for use in assemblies that change frequently, these U-joints have clamping screws that can be quickly loosened when you need to move them.
Since these U-joints have zero backlash (no play), there’s no motion lost when your shafts change direction, so machines move smoothly with more accurate, repeatable motion. As double U-joints, they connect and transfer torque between two shafts that are either parallel to each other or are misaligned at an angle.
A spring automatically lengthens or shortens these U-joints to fit your application, making them a good choice for assemblies with frequent changes.
Increase the diameter of your shaft while also making it longer.
Reduce the diameter of your shaft while adding length.
Adapt your shaft to a threaded end without having to machine threads onto your shaft.
One side is unfinished for milling custom pulleys, threaded hubs, sprockets, collars, knobs, sensor targets, or just about anything imaginable; the other side is a one-piece clamping coupling for mounting whatever you’ve created to your shaft.
To protect power-transmission components from damage, these couplings will shear or tear in overtorque conditions (approximately 10-20 times the maximum rated torque) to sever connections between shafts.
Protect your machinery if there is a jam, emergency stop, or other overload by cutting off torque between shafts when a maximum torque is reached.
Using magnetic force instead of friction to transmit torque, these torque limiters won't wear when they slip.
With rugged roller chains, these torque limiters handle more torque than other torque limiters. They have a disc that creates friction to prevent torque overload, control tension, and brake.
Disengaged until they rotate fast enough to transmit torque, these clutches give the components on your driven side a smooth start by allowing the driving side to start without load.
With zero backlash (no play), there’s no motion lost when these torque limiters transfer torque, so machines move smoothly with accurate and repeatable motion. They protect your machinery if there is a jam, emergency stop, or other overload by cutting off torque when a maximum torque is reached.
Prevent corrosion from interfering with these torque limiters’ ability to protect your machinery if there’s a jam, emergency stop, or other overload.
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.
Prevent damage from overloading. When overloaded, these limiters cause your sprocket or pulley to slip. Once the overload is removed, the limiters automatically reset.