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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 a flexible layer of rubber sandwiched between an oil-embedded bronze bearing and rigid metal shell, these bearings reduce wear and machinery noise.
With extra iron and filled with oil containing slippery PTFE, these bearings support heavy loads that frequently start and stop along shafts. They’re sleeve bearings, so they handle loads parallel to the shaft.
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.
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.
The oil in these bearings is suitable for incidental contact with food.
Use where high loads and speeds are not required.
A metal shell adds strength.
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.
Use these bearings in applications with frequent starts and stops because they operate with very little friction.
These bearings stand up to a wider range of chemicals than other dry-running sleeve bearings.
Reinforced with polyester fabric, these plastic bearings have load and speed capabilities comparable to metal bearings.
Permanently and securely install these self-clinching bearings into panels, with no need for precision-bored holes or machined mounts.
Good for underwater applications, these bearings won’t swell or warp when wet.
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.
A figure-8-shaped groove provides a flow path for lubricant, distributing it evenly along the bearing’s surface.
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.
Grooves on the inside of the bearing provide a flow path for lubricant, distributing it evenly along the bearing’s surface.
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.
These bearings stand up to a wider range of chemicals than other dry-running flanged sleeve bearings.
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.
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.
With oil for reduced friction and iron for added strength, these bearings handle frequent stops and starts in high-load 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.
Furnished with a traceable lot number and material test report, these bronze bearings are strong, wear resistant, and excellent at handling shock loads.
Handle heavy loads that frequently start and stop along shafts—these bearings contain extra iron and slippery PTFE lubricant. They’re thrust bearings, which means they support loads parallel to the shaft.
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.
A metal backing adds strength.
These bearings stand up to a wider range of chemicals than other dry-running thrust bearings.
Use these UHMW bearings in wet, corrosive environments.
These nylon bearings swivel inside their housing to compensate for over 20° of shaft misalignment.
Made from slippery materials, these bearings reduce friction without the oily mess.
Capable of handling temperatures from -400° to 750° F, these graphalloy bearings withstand the widest temperature range of any of our mounted bearings.
Made of acetal blended with PTFE, these bearings handle speeds twice as fast as standard sleeve bearings.
With a flexible layer of neoprene sandwiched between an oil-embedded bronze bearing and rigid steel shell, these bearings reduce wear and machinery noise.
Startup friction causes these porous bronze bearings to release a thin layer of oil on the bearing’s surface.
A strong steel housing allows these bearings to handle higher speeds than standard oil-embedded mounted sleeve bearings.
A reliable classic—these babbitt bearings are strong and corrosion resistant.
Use these nylon or acetal bearings for light loads. The closed backing blocks out dust and other contaminants.
Embedded lubricant particles increase the load capacity of these bearings while also making them slippery.
Made of acetal with a PTFE filling, these light duty bearings handle speeds twice as fast as standard acetal bearings can.
Made of FDA listed PEEK, these bearings are suitable for direct contact with food. The closed backing blocks out dust and other contaminants.
Capable of handling temperatures from -400° to 750° F, these graphalloy bearings have the widest temperature range of any of our mounted bearings.
Handling speeds twice as fast as standard mounted sleeve bearings while limiting wear on your system, these bearings are made of PTFE-filled acetal.
With no moving parts, sleeve bearings are better for dirty environments than ball and roller bearings.
This sleeving stretches to fit over items for easy installation, and then tightens around its contents for a secure fit. Choose from multiple colors to organize wire and cable.
Protect cable, hose, and pipe in high temperature environments—this sleeving withstands temperatures over 450° F. It stretches to fit over items for easy installation, then tightens around its contents for a secure fit.
Tight braiding makes this sleeving resistant to fraying when cut with scissors. It stretches to fit over items for easy installation, then tightens around its contents for a secure fit.
Tested to meet MIL-STD-202, this sleeving meets performance standards for flame retardance. It stretches to fit over items for easy installation, then tightens around its contents for a secure fit.
Rated UL 2024 and NFPA 262, this sleeving is approved for use in plenum spaces such as duct work and above a drop ceiling. It self-extinguishes and emits minimal amounts of smoke and gas during combustion. Stretch to fit over items for easy installation; it tightens around its contents for a secure fit.
Braided from thick plastic strands, this sleeving has excellent abrasion resistance. It stretches to fit over items for easy installation, then tightens around its contents for a secure fit.
Use this braided copper sleeving to protect wire and cable from signal distortion caused by nearby equipment and devices. It stretches to fit over items for easy installation, then tightens around its contents for a secure fit.
With excellent torsional strength, this sleeving withstands the extreme twisting found in robotics. It has impact strength similar to steel yet is lighter than most other sleeving materials. Stretch it to fit over items for easy installation; it tightens around its contents for a secure fit.
Reduce the likelihood of slipping in high-traffic areas. This sleeving has thick, nonslip fibers that create friction so it doesn’t slide when you step on it. It stretches to fit over items for easy installation, then tightens around its contents for a secure fit.
This sleeving withstands temperatures over 1000°F, such as in refineries.
With a temperature rating of 1800°F or higher, this sleeving can withstand hotter temperatures than fiberglass and most ceramic.
Unlike fiberglass and silica, this sleeving won't irritate skin, so it's easier to handle. It has a temperature rating of 1100° F or higher.
A blend of Aramid and fiberglass gives this sleeving excellent abrasion resistance. It can withstand temperatures up to 650° F
Tightly braided nylon fibers give this sleeving excellent abrasion resistance. As it wears, the fibers frizz and make the outer wall thicker for improved protection.
Made of Nomex fabric, this sleeving has excellent tear resistance and better abrasion resistance than nylon sleeving.
This sleeving withstands temperatures up to 390°F and is often used to insulate connections in transformers and relays. It prevents electricity and heat from dissipating from wire and cable.
A specially formulated silicone rubber coating allows this sleeving to stretch over items during installation; it then tightens around its contents for a secure fit.
Add a layer of insulation to prevent electricity and heat from dissipating from wire and cable.
Use this PTFE sleeving in applications where temperatures reach up to 500° F.
Made of PVC, this sleeving resists chemicals, oil, and acids.
A silicone rubber coating on this fiberglass sleeving protects against sparks and molten metal splash.
Made from thicker and denser fiberglass than standard spark-resistant sleeving, this sleeving is more abrasion resistant and provides better insulation. The silicone rubber coating protects against sparks and molten metal splash.
Wrap this sleeving around wire, cable, and hose without disconnecting them. It has a slit along the entire length and wraps over itself to stay closed without an adhesive strip or other closure.
A strip of hook-and-loop creates a strong seal along the entire length of this sleeving, yet it can be opened at any point to access contents. Use it to wrap around wire, cable, or hose without disconnecting them.
Snaps keep this sleeving securely closed, yet permit quick access to contents and allow you to route wires in between the snaps. Use it to easily wrap around wire, cable, and hose without disconnecting them.
Zip this sleeving around wire, cable, or hose that are connected at both ends to quickly bundle them.
Organize and protect the cables on your Universal Robots arm without hindering its movement.
The tightly braided construction makes this polyester sleeving abrasion resistant. It has a slit along the entire length so it easily wraps around wire, cable, and hose without disconnecting them.
Silicone rubber coats this fiberglass sleeving to shed sparks and molten metal splash. It has a slit along the entire length so it easily wraps around wire, cable, and hose without disconnecting them.
Often used to protect wire, cable, and hose in robotics and other automated applications, this highly flexible sleeving withstands continuous motion without tearing or fraying.
Use this shielded sleeving to protect wire and cable from signal distortion caused by nearby equipment and devices. It has a slit along the entire length so it easily wraps around wire and cable without disconnecting them.
Coated with PVC, this polyester sleeving resists chemicals and solvents. It has a slit along the entire length so it easily wraps around wire, cable, and hose without disconnecting them.
Made of aluminum with a fiberglass liner, this sleeving reflects heat away from contents and withstands temperatures up to 390°F. A slit along the entire length makes it easy to install around wire, cable, and hose without disconnecting them.
Unlike traditional sleeving that bunches wire and cable into a circle, this sleeving holds them flat, so it’s good for tight spaces such as vehicle interiors. It has a slit along the entire length so it easily wraps around wire and cable without disconnecting them.
Wrap this sleeving around cable, cords and wires to protect them and to form bundles.
This sleeving absorbs UV light, so it can be used in direct sunlight without getting damaged. A reusable alternative to tape and cable ties, it allows you to route wire and cable between the spirals.
Made of PTFE, this sleeving has excellent resistance to chemicals and acids. A reusable alternative to tape and cable ties, it allows you to route wire and cable between the spirals.
Made with a self-extinguishing additive, this sleeving will not produce fumes when exposed to open flame or high temperatures. A reusable alternative to tape and cable ties, it allows you to route wire and cable between the spirals.
Protect cables, cords, and wire and form them into bundles in your food-processing plant while lowering the risk of contaminating the food.
A slit along the length makes this sleeving easy to install over wire, cable, and hose without disconnecting them. The corrugated construction gives it impact and abrasion resistance similar to conduit, with more flexibility.
Made of nylon, this sleeving is the most impact- and abrasion-resistant slit corrugated sleeving we offer. A slit along the length makes it easy to install over wire, cable, and hose without disconnecting them.
This sleeving reflects heat away from contents and withstands temperatures up to 300°F. A slit along the length makes it easy to install over wire, cable, and hose without disconnecting them. The corrugated construction gives it impact and abrasion resistance similar to conduit, with more flexibility.
Rated UL 94 V-2, this sleeving resists combustion and minimizes the spread of flames. A slit along the length makes it easy to install over wire, cable, and hose without disconnecting them. It has impact and abrasion resistance similar to conduit, with more flexibility.
The corrugated construction gives this sleeving impact and abrasion resistance similar to conduit, but with more flexibility.
This sleeving reflects heat away from contents and withstands temperatures up to 900°F. The corrugated construction gives it impact and abrasion resistance similar to conduit, but with more flexibility.
A hinge along the entire length makes this one-piece sleeving easy to open for installation. Interlocking ridges overlap along the opening to protect contents from dust and dirt. The corrugated construction gives it the impact and abrasion resistance of conduit, with more flexibility.
The two halves of this sleeving nest into each other, fully enclosing contents. It has interlocking ridges that overlap to keep out dust and dirt. The corrugated construction gives it the impact and abrasion resistance of conduit, with more flexibility.
A mica and silicone rubber blend allows this sleeving to withstand temperatures up to 2100° F. It can be quickly applied to hose or cable like tape, so it's a good option for emergency patches.
Made of neoprene rubber, this sleeving has excellent abrasion resistance. It can be quickly applied to hose or cable like tape, so it's a good option for emergency patches.
Use this general purpose tubing to insulate and protect wire and cable.
Extra-thick walls provide more protection against abrasion and tears than standard high-shrink-ratio tubing. This tubing shrinks down to 1/6th of its original ID, so it creates a tight seal over irregularly shaped objects.
This tubing creates a tight seal over irregularly shaped objects.
The smallest heat-shrink tubing we offer, this tubing protects wire with a 0.017" and smaller diameter.
Identify ground wire with this green-and-yellow striped tubing.
Access connections more easily than with standard heat-shrink tubing. Make a small slit in this tubing to peel it away.
This tubing shrinks down to a quarter of its original ID, so it creates a tight seal over irregularly shaped objects. It withstands up to 500° F.
With thin walls, this tubing shrinks faster than other high-temperature tubing. It withstands up to 500° F.
Use this tubing in applications where temperatures reach up to 500° F. It's often used to insulate electronic components.
Create a water-resistant seal—this tubing has an adhesive lining that melts when the tubing is heated and bonds to the underlying surface.
This PTFE tubing withstands temperatures up to 450° F and has an inner lining that creates a water-resistant seal when heated.
Extra-thick walls provide better protection against abrasion and tears than standard moisture-seal tubing, as well as creating a water-resistant seal.
Made of PVC, this tubing resists chemicals, oil, and solvents. The adhesive lining creates a water-resistant seal when heated.
With excellent resistance to tears and cuts, this tubing withstands demanding use.
Use this tubing where wire and cable may be exposed to chemicals, oil, and acids.
Often used to bundle batteries, capacitors, and other electronics, this tubing tightly conforms to objects, similar to shrink wrap. It has excellent resistance to chemicals, oil, and acids.
Resistant to diesel fuel, hydraulic fluid, and lubricating oil, this tubing is often used in vehicles.
Made of woven polyolefin/polyester fabric, this tubing has excellent abrasion resistance so it can be dragged over rough surfaces without damage.
Often used in automated applications such as robotics, this highly flexible silicone rubber tubing withstands continuous motion without cracking and tearing. It resists abrasion and can be dragged over rough surfaces without damage.
Protect bus bars and other high-voltage devices—this tubing withstands voltages up to 5,000 volts.
A flame-retardant additive makes this polyolefin tubing combustion resistant and minimizes the spread of flames.
Made of PVDF, this tubing has excellent cut and abrasion resistance. It has a flame-retardant additive that resists combustion and minimizes the spread of flames.
Also known as halogen-free tubing, this tubing produces minimal amounts of smoke and gas if exposed to an open flame, so it can be used in enclosed areas such as ships and tunnels.
A layer of conductive cloth protects wire and cable from signal interference caused by nearby equipment and devices.
Approved for contact with food, this tubing is FDA Compliant 21 CFR 177.1330.
After being cleaned with alcohol, this tubing is bagged and sealed in a clean room. It's certified for material quality and purity.
Organize and route wire and cable in an enclosure—this tubing bundles wires together while allowing them to reach different connection points.
Seal the end of crimped connections, such as motor coils, to protect them from moisture.
Also known as breakout boots, these splitters insulate and seal the point where wire splits off from cable, or where cables exit from conduit.
Create a permanent seal without applying heat. This tubing is also known as cold-shrink tubing.
Maintain a supply of tubing in a variety of sizes that withstand abrasion, moisture, and chemicals.
Keep general purpose tubing in a variety of sizes on hand.
Use this wrap with heat-shrink tubing to create a moisture-resistant seal. Apply it like tape around wire and cable, then slide the tubing over the wrap. The wrap melts when tubing is heated and bonds to the underlying surface.
A different shrink ratio on each end allows this tubing to fit over cable assemblies and wire harnesses with large connections, or around connectors with a 90° elbow.
Protect wire and cable without disconnecting them from an assembly. For a water-resistant seal, this wrap has an adhesive lining that melts when the tubing is heated and bonds to the underlying surface.
18-8 stainless steel spacers have good corrosion resistance.
Made of aluminum, these spacers are lightweight and mildly corrosion resistant.
The zinc plating provides some corrosion resistance.
These spacers have excellent corrosion resistance and are passivated for enhanced protection.
Brass makes these spacers electrically conductive and the zinc-plated finish adds corrosion resistance.
The anodized coating on these lightweight spacers provides increased abrasion resistance over uncoated aluminum.
Withstanding salt water, acids, and chemicals, these spacers resist corrosion better than any other metal spacer we offer. They have a high strength-to-weight ratio and are about 40% lighter than steel spacers.
These spacers have excellent wear and abrasion resistance. Exposure to moisture may cause them to expand.
Almost nonabsorbent, these unthreaded LDPE and HDPE spacers won't swell when exposed to water.
Naturally slippery and wear resistant, acetal spacers also offer some resistance to moisture.
Polypropylene spacers have a hard surface and resist many chemicals and solvents.
PTFE spacers have a slippery surface and surpass most plastic spacers when it comes to chemical resistance and performance in extreme temperatures.
Use PEEK spacers as an alternative to metal spacers in high-temperature, high-stress applications. They resist chemicals, wear, and moisture.
Made of FDA-listed material, these clear spacers can be used in food and beverage applications.
A nickel-chrome plating gives these spacers a mirror-like finish.
Reduce vibration, shock, and noise with these spacers that compress between components.
Choose the OD, ID, length, and material and we will accommodate your unique spacer needs.
Cut stock to the length you need.
Protect components from electrical charges.
Create space to clean between components on food processing lines and other sanitary equipment.
An economical alternative to standard unthreaded spacers.
The 45° end fits against an angled surface to create a flat surface for connection.
Also known as arbor spacers, these are notched to space components on a keyed shaft.
Also known as saddle washers, the curved end fits against round objects such as tube and pipe.
Choose these standoffs for their adherence to NAS 1831 specifications.
Position components in assemblies, as well as separate or connect parts with these standoffs.
These standoffs are made to NAS specifications.
A nylon patch bonded to the threads adds friction, preventing these standoffs from loosening from vibration.
Mount components onto food processing lines, walls, and sanitary equipment while leaving space to clean in between.
The magnetic end of these standoffs makes it easy to temporarily mount or reposition components on magnetic surfaces.
A nickel-chrome plating gives these standoffs a mirror-like finish.
A recess under the hex clinches a panel for a strong hold that won't push, pull, or twist out. When mounted with a lever press, the hex sits flush with the surface and the open end creates a through hole.
These standoffs are designed to fit in the limited space of compact electronics such as laptops and hand-held devices.
Also known as captive standoffs, a recess under the hex clinches the panel for a strong hold that won't push, pull, or twist out. When mounted, the hex sits flush with the surface and the closed end creates a neat, finished appearance.
Also known as captive spacers, the splines on these bite into a panel for a permanent hold.
The ends of these removable supports snap in and compress between panels to reduce vibration of miniature cooling fans in compact electronics.
Stick these supports to surfaces where you don't want to drill a hole. The snap-in end can be released for repairs and upgrades.
The flat top supports boards without drilling a hole while wings on the other end add tension for a secure hold in a hole.
Designed for multi-level printed circuit board applications, these self-aligning, through-hole supports have a chamfered female end for stacking. The other end snaps and locks in place for a permanent connection.
Wings add tension to strengthen the hold in a hole. The other end is releasable for repairs and upgrades.
Secure the self-tapping female connection with a screw; the other end snaps snugly into a panel, yet can be released for repairs and upgrades.
Both ends snap and lock in place for a permanent connection.
Thread the male connection into a tapped hole and snap the other end into a panel for a secure hold that can be released for repairs and upgrades.
Once the end is clinched in place, panels with keyholes easily slide on and off these supports.
With the end clinched in place, the prongs allow you to quickly snap a panel on and off these supports.
Often called swage standoffs because you permanently crimp them into a panel.
In enclosures and other places where you don’t want to drill a hole, mount circuit boards and other thin panels with these supports.
Also known as shoulder washers.
About half the strength of medium-strength steel coupling nuts, these nuts are for light duty fastening applications.
For light duty applications, choose these metric-sized coupling nuts.
The left-hand threads on these coupling nuts resists loosening from counterclockwise vibration. Use in light duty applications.
Made from Grade 8 steel, these nuts are about 25% stronger than medium-strength steel coupling nuts. Furnished in inch thread sizes.
These metric-sized coupling nuts are Class 10 steel, so they’re about 25% stronger than medium-strength steel coupling nuts.
Made from Grade 5 steel, these inch-sized coupling nuts are suitable for most applications.
Choose these locknuts to fasten standard metric threads. They’re Class 8 steel, so they can be used in most fastening applications.
Comparable in strength to Grade 9 bolts, these coupling nuts are about 20% stronger than high-strength steel coupling nuts. Available in inch thread sizes.
These coupling nuts have good chemical resistance.
These metric coupling nuts have good chemical resistance.
More corrosion resistant than 18-8 stainless steel coupling nuts, these metric nuts have excellent resistance to chemicals and salt water.
More corrosion resistant than 18-8 stainless steel coupling nuts, these nuts have excellent resistance to chemicals and salt water.
One-third the weight of steel, aluminum coupling nuts resist corrosion in wet environments.
Brass coupling nuts are corrosion resistant in wet environments and electrically conductive.
Plastic coupling nuts are chemical resistant, nonconductive, and lightweight.
A smooth rounded body provides a finished look.
Known for their strength, steel coupling nuts are available with a corrosion-resistant finish.
Stainless steel coupling nuts have excellent corrosion resistance in most environments.
Use the sight hole to check for proper thread engagement.
About twice as strong as aluminum rivet nuts, these steel rivet nuts are zinc plated for mild corrosion resistance.
The most corrosion resistant twist-resistant rivet nuts we offer, these stand up to chemicals.
These aluminum rivet nuts are one-third the weight of steel rivet nuts and have mild corrosion resistance.
A hex-shaped body provides the highest twist resistance of any rivet nut.
Wedges under the flange lock the nut in place in soft materials such as brass and aluminum.
About twice as strong as aluminum rivet nuts, these rivet nuts are zinc plated for mild corrosion resistance.
Once installed these rivet nuts have a large back flange that distributes the load across a broad area for a strong hold in plastic and composites.
A nonconductive rubber coating insulates the nut from electricity, seals out moisture, and damps vibration.
A PVC coating minimizes the chance of scratching the surface of your material. These rivet nuts are more corrosion resistant than zinc-plated steel rivet nuts.
The coated flange seals out moisture and prevents corrosion.
These rivet nuts are mildly corrosion resistant.
The most corrosion resistant low-profile rivet nuts we offer, these stand up to chemicals.
About twice as strong as aluminum rivet nuts, these low-profile rivet nuts have a cadmium or tin-zinc plating for corrosion resistance.
These kits include one size of low-profile rivet nuts.
These low-profile rivet nuts are one-third the weight of steel and have mild corrosion resistance.
The thread area is enclosed, which prevents leakage past the threads from either side of your application.
A PVC foam seal under the flange keeps liquids and gasses from leaking between the nut and the surrounding material.
Threads float inside the nut so you can install a screw at a slight angle to align with off-center parts. They’re also known as Riv-Float nuts.
Stainless steel nuts have excellent corrosion resistance in most environments.
Stronger than stainless steel, these nuts are comparable in strength to Grade 9 bolts.
These screw-mount nuts are often used to attach glides and levels to wood.
Use these barrels with a screw you already have or pair with a different type of screw to create a custom fastener. Made from 316 stainless steel, they have excellent chemical resistance and can be used in saltwater environments.
These include a barrel and a screw with an extra-wide (truss) head. Made from 316 stainless steel, they have excellent chemical resistance and can be used in saltwater environments.
Use these barrels with a screw you already have or pair with a different type of screw to create a custom fastener. Made from 18-8 stainless steel, they are chemical resistant.
These include a barrel and a screw.
Use these barrels with a screw you already have or pair with a different type of screw to create a custom fastener. They're zinc plated to resist corrosion in wet environments.
Use these hex drive screws and binding barrels as a low-profile alternative to standard nut and bolt combinations.
An unthreaded barrel allows quick assembly with a press or a hammer.
Plastic binding barrels and caps are chemical resistant, nonconductive, and lightweight.
These barrels and caps are corrosion resistant in wet environments.
Add length to a binding barrel.
Stainless steel binding barrels and screws have excellent corrosion resistance in most environments.
One-third the weight of steel, aluminum binding barrels and screws resist corrosion in wet environments.
Brass binding barrels and screws are corrosion resistant in wet environments and electrically conductive.
Create strong joints in wood and wood composite.
Install in a cutout to create a secure joint between boards, butcher blocks, and countertops.
Angled under the head for a flush finish in countersunk holes.
These binding barrels and screws have good chemical resistance.
More corrosion resistant than 18-8 stainless steel binding barrels and screws, these have excellent resistance to chemicals and salt water.
Install these binding barrels and screws with a standard slotted screwdriver. They require a special tool to remove.
A tamper-resistant Torx driver is required for installation and removal.
Sealed with PVC foam under the head to prevent leaks and keep contaminants out.
Also known as roll, tension, split, and expansion pins, these pins have a slot along one side that you squeeze closed to install them into unthreaded holes.
Interlocking teeth help these pins resist sliding when exposed to vibration. They have a slot that presses closed when the pins are inserted so they don't flex after installation.
A zinc-plated finish gives these steel inserts mild corrosion resistance.
Made from brass, these inserts are nonmagnetic, mildly corrosion resistant, and electrically conductive.
These aluminum inserts are lightweight, nonmagnetic, and mildly corrosion resistant.
Protect bolts from sideways (shear) pressure.
Made of Nitronic 60 stainless steel, these inserts prevent the screw from binding or sticking without any coating or lubricant that could contaminate particle-free environments.
A dry film keeps the screw from sticking or binding in these inserts during installation.
Eliminating the need for primer, these inserts are coated to resist corrosion when installed in different materials.
These inserts have a high strength-to-weight ratio and resist acids and salt water better than nickel alloy and stainless steel inserts.
Made of nickel alloy, these inserts are more resistant to acids and salt water than stainless steel inserts.
A distorted thread grips the screw to resist loosening.
Inserts come with a through-hole tap and installation tool.
Assortments include various sizes of helical inserts and a tap, a drill bit, and an installation tool for each thread size.
Without a prong to break off and retrieve, these inserts are often used where debris could cause damage.
These kits have short-, normal-, and long-reach inserts, an installation tool, and a tap.
Kits include helical inserts, a tap, and an installation tool.
A black-phosphate finish provides mild corrosion resistance.
Made of 18-8 stainless steel, these inserts have better corrosion resistance than black-phosphate steel.
These inserts are the most corrosion-resistant thread-locking inserts we offer.
These assortments include various sizes of thread-locking inserts.
Adhesive on both the internal and external threads keeps these inserts in place and holds screws tight.
A closed-end tap, drill bit, and installation bit are included with these inserts.
Made of 18-8 stainless steel, these inserts have good corrosion resistance.
These inserts are made to stringent military specifications.
The strongest key-locking inserts we offer, these inserts are made to stringent military specifications.
These inserts come with an installation tool. Drive the keys into the surrounding material for a more secure hold than thread-locking inserts.
Forming the strongest hold of any of our threaded inserts, these inserts have a distorted internal thread to lock screws into place and keys that drive into surrounding material to prevent slipping and rotating.
These inserts cut their own threads in soft metals such as aluminum, so there's no need to tap the hole. Also known as Tap-Lok inserts.
The knurled body holds these inserts in place in aluminum and other soft metals. Use an arbor press to install them in untapped holes.
Made from brass, these inserts are electrically conductive, nonmagnetic, and have good corrosion resistance.
These aluminum inserts are 70% lighter than brass inserts, electrically conductive, and nonmagnetic. They have good corrosion resistance, which is comparable to brass but not as good as stainless steel.
These 18-8 stainless steel inserts have better corrosion resistance than brass inserts and may be mildly magnetic.
Made from brass, these inserts are nonmagnetic, corrosion resistant, and electrically conductive.
The flange keeps these inserts from pulling through a hole. Press them in from the underside of material, and install a screw from the top of material.
These 18-8 stainless steel inserts have better corrosion resistance than aluminum inserts and may be mildly magnetic.
70% lighter than stainless steel, these aluminum inserts are mildly corrosion resistant and nonmagnetic.
Use these inserts to install fine-thread screws in existing holes.
The barbed sides keep these securely in place even before a screw is installed.
Push down on the inside of these inserts with an installation tool and they expand to hold firm in surrounding material.
Install these inserts into plastic parts to create a secure base for fasteners.
With the male threaded end on these inserts, mount components directly to plastic parts.
The tapered shape makes it easier to guide these inserts into a hole during installation. Use a drill bit to create a straight hole, then taper the top half.
Assortments include various sizes of inserts, a soldering iron, a ceramic insulation tube, and installation tips.
Also known as Trisert inserts, these cut threads into plastic and have better holding power than press-fit inserts.
The flange keeps these inserts from being pulled through a hole and provides a load bearing surface.
Large threads cut into softwood such as particleboard for a strong hold.
Assortments include various sizes of tapping inserts for softwood.
These 18-8 stainless steel inserts have excellent resistance to chemicals and may be mildly magnetic.
Steel inserts have high strength for durability.
Assortments include various sizes of tapping inserts for hardwood.
These 18-8 stainless steel tee nut inserts have better corrosion resistance than zinc-plated steel tee nut inserts.
The most corrosion resistant tee nut inserts we offer, these inserts stand up to chemicals and salt water.
Six prongs around the barrel of these inserts provide a strong hold and prevent them from loosening and twisting.
Fewer prongs than other tee nut inserts reduce the risk of splitting hardwood—these inserts have three short prongs.
Ridges on the barrel of these inserts make them less likely to split hardwood than inserts with prongs. They're often used in wood that has been cut across the growth rings.
Use where vibration is a concern—these tee nut inserts have distorted threads that lock screws in place.
Hooked prongs give these inserts excellent holding power even when removing screws.
An open end allows long screws and bolts to pass through the insert.
A closed end seals out elements and protects the threads on these inserts from debris.
Mount these inserts flush or below the material's surface.
Knurls hold these inserts in hardwoods such as oak, maple, and walnut to prevent twisting.
Press these inserts into a drilled hole and the flexible metal teeth anchor them in the material. Use them with carbon fiber, fiberglass, and garolite.
A wide flange distributes the load over a large area. Hammer these inserts into a drilled hole.
A zinc plating provides corrosion resistance in wet environments.
These 18-8 stainless steel anchors have good chemical resistance.
More corrosion resistant than 18-8 stainless steel anchors, these 316 stainless steel anchors have excellent resistance to chemicals and salt water.
Drive these tools with a hammer until the thicker portion of the tool makes contact with the anchor, causing it to expand.
These 316 stainless steel anchors have excellent resistance to chemicals and salt water.
Install like a stud anchor—just thread the anchor, a nut, and a washer onto the end of a threaded rod, drive into a hole, and turn the nut to expand the base. Also known as rod anchors, they're often used with threaded rod to hang pipe and wiring.
Also known as caulk-in anchors, these stay secure when there's not much material to hold.
The fastest way to install shallow-hole female-threaded anchors. Just push the tip of the tool into the anchor and turn the tool with a power drill.
Drive these tools with a hammer to expand anchors.
An adjustable stop allows you to set anchors at consistent depths. Use with a hammer.
Often referred to as four-way expansion anchors, these expand in four directions to resist loosening from vibration.
Also known as double expansion anchors, these expand from both sides for full contact and a secure hold.
The removable flat head provides a flush finish in countersunk holes.
An open-end cap nut provides a finished appearance.
Turn the bolt to expand the nut for a secure hold in concrete. These anchors are often used to anchor machinery.
Bolts are beveled under the head for a flush finish in countersunk holes.
A hex head allows for a secure grip with a wrench.
Also known as lag shields, these anchors are designed for use with large-diameter wood screws.
For narrow holes and small cavities where toggle anchors won't fit.
A pivoting toggle bar creates a strong hold.
Used with adhesive in bricks and hollow blocks, such as cinder blocks, these mesh tubes create a stronger hold for rods and studs than other anchors.
These rivet nuts have a smooth body and fit in smaller holes than twist-resistant rivet nuts. Assortments include rivet nuts, mandrels, nosepieces, and a plier-style installation tool.
A ribbed-shaped body holds the nut in place so it won't move when tightening a screw. Assortments contain rivet nuts, mandrels, nosepieces, and a plier-style installation tool.
Use these rivet nuts for light duty fastening in low-clearance applications. Assortments include rivet nuts, mandrels, and an installation tool.
Also known as shoulder and insulator washers, these nonmetal washers block electrical current and prevent corrosion from mating different types of metal.
Have different sizes and lengths of spacers ready for a variety of jobs.
Slotted spring pins are also known as roll, tension, split, and expansion pins. Because the slot is pressed closed when the pins are inserted, they don't flex after installation.
Keep a variety of standoffs in different lengths and thread sizes on hand.
Precisely shaped to fit snugly on keyed shafts, these shims align, level, and space components. Because of their tight fit, they also help components rotate in unison with the shaft.
These shims are shaped to fit over D-profile shafts. Use them to precisely align, level, and adjust spacing.
Be prepared with shims in a variety of thicknesses. These shims are shaped to fit over D-profile shafts. Use them to precisely align, level, and adjust spacing.
Use these sleeves alone or with gloves to protect your arms from cuts and punctures when handling sharp objects.
Use these gloves to avoid cuts when working with sharp or pointy objects.
Use these sleeves alone or with gloves to protect your arms.
These single-use gloves prevent cross contamination and provide the dexterity needed for intricate work.
Handle small items when dexterity is essential and full hand coverage isn't needed. These single-use cots cover fingers without restricting hand movement.
Use these sleeves alone or with gloves to protect your arms from welding sparks and spatter.
Use these gloves to shield your hands from welding sparks and spatter.
These pads allow you to rest your arm on a hot surface while welding.
Use these sleeves alone or with gloves to protect your arms from heat.
Protect your arms against intermittent exposure to flames and radiant heat.
Protect your hands from intermittent exposure to flames and radiant heat up to 2000° F.
The lining withstands intermittent heat, while the outer layer of material acts as a barrier to chemicals and solvents.
Protect your hands from intermittent exposure to extreme heat during jobs such as metal forging and glass manufacturing.
Protect your arm from stains, sparks, and abrasions. Use these sleeves alone or with gloves.
Protect your shirt sleeves from stains and wear in food-processing environments.
The all-leather design offers durability and wear resistance.
Use these sleeves alone or with gloves to protect your arm from oils and most acids.
Wear as a liner or over other gloves to protect against esters as well as aromatic, chlorinated, and oxygenated solvents such as ketones and alcohols.
Often used for cleaning lab spaces, these gloves withstand most acids, alcohols, and cleaning solutions.
Protect your hands from oil, acids, and scrapes while you're working.
Protect objects in your clean room from skin oil and other contaminants when dexterity is essential and full hand coverage is not needed.
For applications that require frequent glove changes, the sleeves stay connected to the glove box so you can quickly change the size or type of glove being used.
The accordion design prevents the sleeve from collapsing and allows more air circulation. It stays connected to the glove box so you can quickly change the size or type of glove being used.
Use these gloves in glove boxes to safely handle hazardous substances or avoid contaminating sensitive materials. Seamless one-piece construction provides maximum strength and integrity.
These gloves provide the protection you need when working in abrasive blasting cabinets.
Protect your arms and chest from heat and sparks when welding.
Snap these bibs onto cape sleeves to provide protection for your stomach from heat and sparks when welding.
Keep arms cool while protecting against harmful UV rays.
Choose the ID, OD, and length you need.
Larger OD tolerances than standard press-fit bushings allow for finishing. Bushings should be machine ground.
Also known as jig bushings, these metric drill bushings fit inside fixture plate holes to guide drill bits, counterbores, reamers, and other cutting tools. They improve accuracy so that your drilled holes and cuts are consistent from part to part.
These bushings are made of stainless steel, which provides excellent corrosion resistance.
Made of durable tungsten carbide, these bushings outlast steel.
Avoid wear caused by repeatedly pressing bushings into your jig fixture. Instead, press fit these sleeves into the fixture one time, and then swap bushings with different IDs in and out to change the size of your bit.
Replace worn bushings and quickly change IDs without needing to repeatedly use a lever press. Instead of pressing bushings in and out of your jig fixture, which can cause damage, these bushings slide in and out of sleeves.
The raised flange on these sleeves fits into the notch on removable drill bushings.
The head prevents these bushings from being pushed through the jig when drilling pressure is extreme. The head sits above the jig plate or can be mounted flush by installing in a counterbored hole.
Even under extreme drilling pressure, these metric bushings won't press through your jig plate. A flanged head on the top of the bushing acts as a stop, preventing it from moving as you push down your drill bit, reamer, or other cutting bit.
The knurls resist force and provide better holding strength than serrations. Encase in plastic tooling.