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Protect pails and clean up quickly with these liners.
These liners are made of polyethylene.
These polypropylene liners are rated at least 70° higher than standard liners.
Made of PVC, these liners have excellent chemical resistance.
Liners are made with an additive that prevents electrostatic discharge from building up on the surface.
Don’t waste time cleaning—these liners are shaped to conform to the inside of your batch cans and can be tossed when you’re done.
Protect the inside of your hampers and box trucks. These liners are tall enough to extend over the top for easy removal.
Extend the life of your dumpster, dump truck, or container with these heavy duty, tear-resistant plastic liners. They're designed to contain leaks and provide quick cleanup.
Select one of these tear- and puncture-resistant plastic bags based on your compactor's cubic-foot chamber capacity.
These bags are designed to resist tears and punctures by stretching around items with sharp edges.
Identify contents by color with these tear-resistant bags.
Reduce landfill waste with these bags made from at least 70% recycled plastic.
Line static-control waste containers with these conductive garbage bags to prevent damage to sensitive electrical equipment. When used in a static-control waste container that’s placed on a grounded floor, these bags drain static charges from waste.
A mint scent keeps rodents and other animals away.
Reduce your environmental impact by properly disposing of compost.
Designed for construction cleanup, these are the most durable bags we offer. They're tear resistant—not even a nail can rip them.
Collect paper and other light waste in these thin plastic bags that are designed for use in office environments.
To handle the weight of wet sorbents, these bags are twice as thick as our extra heavy duty garbage bags. Bags are bright yellow and labeled “Used Sorbents” for easy identification.
Printed with the OSHA-required biohazard graphic, these bags quickly warn people of contents.
Often used in landscaping applications, these bags stand up to damp waste. They're made of kraft paper with a moisture-resistant coating.
Often used in industrial laundry applications because they minimize contact with soiled fabrics, these bags dissolve completely at a minimum temperature of 150° F.
Alert others of hazardous contents with these bags printed with an asbestos warning.
Grab a garbage bag or liner and go. These dispensers hold coreless rolls that can’t slide onto a roll dispenser the way toilet paper does.
Cover large furniture, machinery, and other equipment to protect against dust, dirt, and moisture.
Protect pans from sticky substances and burns, then dispose of these liners for quick cleanup.
Protect plastic and glass petri dishes when working with harsh chemicals.
Protect plastic and glass beakers when working with harsh chemicals.
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.
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.
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.
Twist these lock rings onto bushings to secure them in drilled holes.
Insert these bushings into a drilled hole and twist the lock ring to secure. Reusable and easy to replace, they are held in in place by a separate locking part.
The serrations at the top of the bushing grip to prevent rotation and spin out.
The serrations grip to prevent rotation and spin out. Press or encase into plastic tooling.
The knurls resist force and provide better holding strength than serrations. Encase in plastic tooling.
Maintain consistent alignment in mating parts by installing a pin in one part and a liner in the other.
Insert these one-piece grooved liners between vise jaws to hold small-diameter material vertically.
Choose from flat and grooved liners.
These V-shaped liners hold large round material.
Fold the pliable tabs over the jaws to install.
These bearings stand up to a wider range of chemicals than other dry-running sleeve 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.
A metal shell adds strength.
Reinforced with polyester fabric, these plastic bearings have load and speed capabilities comparable to metal bearings.
Graphite provides a layer of dry lubrication that can operate in high-temperature environments.
Even in the presence of harsh chemicals and extreme temperatures, these bearings operate under heavy loads and at high speeds.
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.
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.
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.
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.
With a flexible layer of rubber sandwiched between an oil-embedded bronze bearing and rigid metal shell, these bearings reduce wear and machinery noise.
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.
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.
Graphite provides a layer of dry lubrication that operates in high-temperature environments.
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.
An aluminum shell adds strength.
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.
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.
Furnished with a traceable lot number and material test report, these bronze bearings are strong, wear resistant, and excellent at handling shock loads.
With oil for reduced friction and iron for added strength, these bearings handle frequent stops and starts in high-load applications.
These bearings come with a traceable lot number and material test report. They are also known as Oilite® bearings.
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.
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.
These bearings stand up to a wider range of chemicals than other dry-running thrust bearings.
A metal backing adds strength.
Adapt needle-roller thrust bearings to use on unhardened, unground surfaces.
Adapt high-precision needle-roller bearings to use on unhardened, unground shafts.
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.
Use these UHMW bearings in wet, corrosive environments.
These nylon bearings swivel inside their housing to compensate for over 20° of shaft misalignment.
Made of acetal blended with PTFE, these bearings handle speeds twice as fast as standard sleeve bearings.
A strong steel housing allows these bearings to handle higher speeds than standard oil-embedded mounted 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.
A reliable classic—these babbitt bearings are strong and corrosion resistant.
Startup friction causes these porous bronze bearings to release a thin layer of oil on the bearing’s surface.
Made of acetal with a PTFE filling, these light duty bearings handle speeds twice as fast as standard acetal bearings can.
Use these nylon or acetal bearings for light loads. The closed backing blocks out dust and other contaminants.
Made of FDA listed PEEK, these bearings are suitable for direct contact with food. The closed backing blocks out dust and other contaminants.
Handling speeds twice as fast as standard mounted sleeve bearings while limiting wear on your system, these bearings are made of PTFE-filled acetal.
Embedded lubricant particles increase the load capacity of these bearings while also making them slippery.
Capable of handling temperatures from -400° to 750° F, these graphalloy bearings have the widest temperature range of any of our mounted bearings.
With no moving parts, sleeve bearings are better for dirty environments than ball and roller bearings.
In addition to a low-friction surface that prevents sticking and binding, this tough material is impact and wear resistant to handle the scuffs, scrapes, and strikes that other plastics can’t.
More sustainable than standard UHMW, these sheets and bars are made from partially recycled material, so they have a lower carbon footprint.
This material suppresses static charges to prevent dust from building up.
Made with carbon black, these recycled UHMW sheets are a sustainable alternative to standard UHMW sheets in applications where static electricity is a concern, such as in conveying equipment and chute liners.
The addition of carbon gives this material the ability to divert static electricity faster than antistatic UHMW.
Also known as Tivar H.O.T., this material lasts up to 10 times longer in high-temperature applications than standard UHMW.
Compared to our standard UHMW polyethylene, these sheets and bars hold up better to scuffs and scrapes in high-speed, high-precision, and high-impact applications—such as conveyor equipment, chute liners, and machine guards. Also known as Tivar HPV.
The addition of glass fibers makes this material more abrasion resistant than standard UHMW. It’s also known as Tivar 88.
If a chip of this material breaks off, it can be located by metal detectors to reduce contamination risks.
This oil-filled material is self-lubricating for an extra-slippery surface.
Prolonged outdoor exposure won’t discolor or degrade VHMW.
Also known as nylon 6/6, this general purpose material is often used for bearings, gears, valve seats, and other high-wear parts.
Designed for extreme wear resistance, this Kevlar-filled nylon 6/6 material lasts up to 20 times longer than unfilled nylon. Also known as Hydlar Z, it is often used for parts that are continuously exposed to wear and abrasion, such as wear strips and bushings.
Because this 6/12 material absorbs less water than standard nylon 6/6, it holds its shape better. It’s often machined into hose fittings and valve components.
This nylon 6/6 material is modified with MDS for a self-lubricating surface that’s more slippery than standard nylon. It's often used in high-friction applications, such as gears and bearings.
With glass reinforcement, this nylon 6/6 material is stronger than standard nylon, plus it can withstand higher temperatures. It’s widely used in high-stress applications, such as caster wheels and automotive parts.
Often used to make gears and wear strips, these cast nylon 6 sheets and bars withstand higher temperatures and are easier to machine than standard nylon 6/6 sheets and bars.
This cast nylon 6 material is easier to machine than other types of nylon. It’s comparable to Nylatron and Nycast.
This nylon stays lubricated over time because it’s filled with oil. Use it to fabricate parts for hard-to-reach places where adding lubricants would be difficult.
The addition of MDS results in a nylon with exceptional wear resistance as well as self-lubricating properties.
Often used for packaging and construction applications, this film is also known as Visqueen.
A polyester string reinforcement gives this material better tear resistance than standard LDPE film.
One of the softest and most flexible plastics we offer, LDPE is more formable than HDPE.
A layer of soft LDPE is sandwiched between two thin layers of aluminum for strength and rigidity.
Often fabricated into signs, packaging, and light duty housings, polystyrene is easy to thermoform.
Known for its electrical insulating properties, this polystyrene is often used for cable connectors, electrical housings, and in microwave applications. It is also known as Rexolite.
Practically nonabsorbent, HDPE won't swell when exposed to moisture. It is denser and more rigid than LDPE, plus it's more chemical resistant.
Made of recycled HDPE plastic, these sheets are more sustainable and economical than standard marine-grade moisture-resistant HDPE sheets.
Also known as starboard, these sheets and bars won’t degrade when exposed to salt water, humidity, and UV light.
Also known as pipe-grade HDPE, these sheets are about four times more impact resistant than standard HDPE and hold up outdoors, and in wet environments.
An economical alternative to Delrin® acetal resin, this acetal copolymer offers similar wear resistance.
This material prevents the buildup of static charges.
Delrin® acetal resin, also known as acetal homopolymer, is stronger and stiffer than acetal copolymer.
A glass-fiber filler gives this material increased rigidity over standard Delrin® acetal resin. Use it to machine manifolds, impellers, and other parts that require rigidity.
The addition of PTFE provides a more slippery, wear-resistant surface than standard Delrin® acetal resin. It’s commonly fabricated into pump components, gears, and bearings.
Because PVC resists many acids and alkalies, it’s widely used for tanks and in chemical-processing applications. Also known as PVC Type 1.
CPVC is just as chemical resistant as standard PVC Type 1 and can handle hotter temperatures up to 200° F.
Offering greater impact resistance than standard PVC Type 1 with similar chemical resistance, this PVC Type 2 is widely used for parts that are subject to shock.
Add stiffness to composite sandwiches without adding a lot of weight.
Widely used for vehicle interiors and equipment housings, this blended material maintains its physical properties after thermoforming. It is comparable to Kydex.
Create signs and partitions with this easy to cut PVC foam.
Because this polypropylene resists swelling when exposed to water, it’s often fabricated into containers and parts for laboratory equipment.
Package food, textiles, and other products in wet environments. This film won’t absorb or swell from water.
Widely used in semiconductor applications, this polypropylene meets UL flame-retardance standards.
Because ABS maintains its toughness even after thermoforming, it’s often made into storage cases, tote trays, equipment housings, and protective gear.
This blended material quickly diverts damaging static charges.
Use Noryl PPO for electrical insulating applications where moisture is a concern. It remains dimensionally stable over time, even when temperatures fluctuate.
An aluminum coating on one side of this film reflects heat, so it’s widely used as an insulator and in packaging applications.
This film is often used as a separator when heating parts in an oven.
Polyester resists swelling in wet environments.
These black polyester sheets protect from UV rays better than off-white polyester. Strong and semi-rigid, they won't swell in moist environments, so they're often made into pump components and spacers.
A satin texture on one side of these PETG sheets makes them semiclear. You can see light from the other side, but not detailed shapes. They are more resistant to scratching and glare than standard PETG.
The addition of glass fibers to this polycarbonate increases tensile strength for use in structural applications.
Polycarbonate maintains good impact resistance across a wide temperature range. It's comparable to Lexan, Hyzod, Tuffak, and Makrolon.
The combination of high strength and water resistance, along with a variety of color choices, makes this opaque cast acrylic useful for outdoor signs and containers. It's also known as Lucite and Plexiglas® Acrylic.
When exposed to UV rays, these cores won’t become brittle or break down. Use them to add stiffness to composite sandwiches that may be used outdoors without adding a lot of weight.
This film is made with virgin Teflon® PTFE resins. It can handle extreme temperatures and resists most solvents.
Known for its naturally slippery surface, PTFE surpasses most plastics when it comes to chemical resistance and performance in extreme temperatures.
Made with Teflon® PTFE resins, these sheets and bars surpass most plastics when it comes to chemical resistance and performance in extreme temperatures.
Manufactured from Rulon PTFE, a PTFE that's modified with filler material for a super-slippery, impact-resistant surface that resists wear.
Filled with carbon and graphite, this naturally slippery PTFE stands up to wear better than standard PTFE.
Protect sensitive equipment from damaging electrical static charges.
This glass-filled PTFE is more rigid than standard PTFE for increased durability in high-stress applications.
A layer of tin-plated steel adds structural support and makes this PTFE easy to form.
This film conducts electricity to prevent the buildup of static charges.
Among the strongest plastic materials we offer, Torlon PAI has a slippery surface that resists wear. Use it to make high-friction compressor parts, bearings, and seals.
Filled with glass, these Torlon 5030 bars are stronger and more rigid than Torlon 4301 and 4203, yet still electrically insulate like Torlon 4203.
Choose these sheets over standard Torlon PAI for their excellent electrical insulating properties.
Kapton® polyimide film is an excellent electrical insulator.
Because this film dissipates heat, it is often used for printed circuit boards and power supplies.
Often used for circuit-breaker housings, manifolds, and semiconductor components, Ultem PEI offers excellent electrical-insulating properties.
Just as chemical resistant as PTFE, yet FEP offers greater impact strength. Use it to make valve components and gaskets.
When excellent chemical resistance is combined with an ability to hold tight tolerances, the result is PPS—a material that’s widely machined into parts for chemical-processing applications. It is comparable to Techtron and Ryton.
Stronger than PTFE, PVDF offers good chemical resistance. Comparable to Kynar and Solef, it’s widely used for pump parts, tank liners, and seals.
Not only does PEEK provide superior wear resistance in repetitive processes, it is also resists wear caused by abrasion. PEEK can be used as a lightweight substitute for metal parts in chemical-processing applications.
Common in food and pharmaceutical plants, these PEEK bars help you identify contaminated batches.
These PEEK sheets can be machined to tight tolerances for use in electrical and semiconductor parts, such as test sockets.
Widely used to make parts that require autoclaving, polysulfone is a hard, rigid material that’s easy to machine and thermoform. It maintains its physical properties when heated, even when exposed to steam.
The slippery surface on this FEP film prevents sticking. Use it as a release film when making molded parts.
PFA film retains its performance properties through a wide range of temperatures. It is often used to insulate cables.
Stronger and more chemical resistant than FEP and PFA film, ETFE film resists cracking over time.
Carbon mesh is embedded into this clear PVC film to dissipate electrostatic discharge and protect sensitive electronic equipment.
Because PVC resists acids and alkalies, it is often used in tanks and chemical-processing applications where visibility is essential.
Static cling allows this PVC film to stick without an adhesive.
Polyester absorbs almost no moisture and resists swelling in wet environments. It is also known as PET and PETE.
A static-dissipative coating on this polyester film prevents electrostatic discharge from damaging sensitive electronic equipment.
This extruded acrylic offers similar performance as cast acrylic at a lower cost.
When compared to uncoated cast acrylic, this clear-coated cast acrylic is 45 times more scratch resistant.
Laminate or mold this plastic film onto credit card signing screens, signs, and other surfaces for a see-through protective layer that won’t scratch.
Modified for increased impact strength over other types of acrylic, this acrylic is often used for skylights and outdoor signs.
Cast acrylic is easier to machine than extruded acrylic. It's comparable to Lucite and Plexiglas® Acrylic.
A static-dissipative coating on this cast acrylic prevents electrostatic discharge from damaging sensitive electronic equipment.
At only half the weight of glass, polycarbonate maintains excellent impact resistance across a wide temperature range. It's comparable to Lexan, Hyzod, Tuffak, and Makrolon.
Often used in security doors and windows to protect against forced entry, this laminated polycarbonate is nearly impenetrable.
Enhanced UV resistance makes this polycarbonate better than standard polycarbonate for outdoor use.
With a clear coating that provides protection from abrasion, UV light, and harsh cleaners, this polycarbonate is often used to create transit shelters and equipment shields.
This polycarbonate has a static-dissipative coating that prevents electrostatic discharge from damaging sensitive electronic equipment.
Also called acetate, this is the same clear film that's used in window envelopes.
PETG can be formed into complex shapes without sacrificing durability.
Also known as frisket film, this polypropylene has a low-tack adhesive that releases without leaving residue behind.
Resistant to scratches and scuffs, mirrored acrylic is an economical alternative to mirrored polycarbonate.
Mirrored polycarbonate resists damage caused by impact.
One 2” square of PEEK, PFA, polyimide, Torlon PAI, and Ultem PEI is included in these selector packs.
Packs include one 2” square of ABS, Delrin® acetal, LDPE, HDPE, UHMW, nylon, cast nylon, polyester, polystyrene, Rexolite polystyrene, and Noryl PPO.
These selector packs come with one 2” square of acrylic, cast acrylic, cellulose, PETG, and polycarbonate.
Each selector pack includes one 2” square of FEP, polypropylene, PPS, PVC, CPVC, PVDF, and Teflon® PTFE.
Made of rubber, this trim resists abrasion better than plastic trim. Often used on panels, boards, signs, and mirrors, it protects edges from impact.
A metal core adds strength and stability, making this trim more durable than standard rubber trim. Made of rubber, it resists abrasion better than plastic trim. Use it to protect the edges of panels, boards, signs, and mirrors from impact.
Sample multiple sizes and styles of rubber trim.
This trim withstands temperatures up to 450° F, which is generally twice as high as our standard rubber trim. Use it to protect the edges of panels, boards, and signs from impact. Made of rubber, it resists abrasion better than plastic trim.
A metal core adds strength and stability, making this trim more durable than other high-temperature rubber trim. It withstands temperatures up to 400° F, which is generally twice as high as our standard rubber trim. Use it to protect the edges of panels, boards, and signs from impact. Made of rubber, it resists abrasion better than plastic trim.
Guard the edges of panels, signs, glass, and other surfaces in food plants from frequent bumps and scrapes. This trim is FDA compliant, so it’s safe to directly touch food.
This trim safeguards equipment from static electricity by diverting electrostatic charges quickly. Made of rubber, it resists abrasion better than plastic trim. Use it to protect the edges of electronics equipment and circuit boards from impact.
This trim withstands temperatures up to 500° F, which is generally twice as high as our other slippery trim. With a slippery surface, it minimizes friction between parts and is often used on conveyor rails, chutes, and guides. Made of plastic, it's also chemical resistant.
With a slippery surface, this trim minimizes friction between parts and is often used on conveyor rails, chutes, and guides. Made of plastic, it's also chemical resistant.
Sample multiple sizes and styles of heavy duty plastic trim.
Select this plastic trim for its chemical resistance. Often used on panels, boards, signs, and mirrors, it protects edges from impact.
This trim has a metal core for added strength and stability. Made of plastic, it's also chemical resistant. Use it to protect the edges of panels, boards, signs, and mirrors from impact.
With a surface resistivity of 10 5 ohms this trim safeguards equipment from static electricity by diverting electrostatic charges quickly. Made of plastic, it's also chemical resistant. Use it to protect the edges of of electronics equipment and circuit boards from impact.
This trim is suitable for use in food preparation and processing environments. It's also chemical resistant. Use it to protect the edges of panels, boards, signs, and mirrors from impact in food processing applications.
This trim meets FMVSS-302 for Federal Motor Vehicle Safety Standards for flammability, UL 94 HB flame requirements, and NFPA 1971 (National Fire Protection Agency) standards. Made of plastic, it's also chemical resistant. Use it to protect the edges of panels, boards, and signs from impact.
This trim withstands temperatures up to 450° F—more than twice as high as other foam trim. Designed to cushion during impact, it protects equipment and surfaces from damage.
Black and yellow stripes create a visual alert to draw attention to equipment and obstructions. Designed to cushion during impact, this foam trim protects edges on posts, shelving, and other surfaces from damage.
Even in the dark, this black and yellow striped trim draws attention to equipment and obstructions. Designed to cushion during impact, it protects edges on posts, shelving, and other surfaces from damage.
Made of aluminum or stainless steel, this trim withstands heavy impact for maximum surface protection. It's often used on panels, boards, signs, and mirrors to protect the edges.
Cushioning on the top provides added protection from impact. This nylon-coated stainless steel trim combines strength with flexibility for a snug hold. It can also protect wire, cable, and hose.
This nylon-coated stainless steel trim combines strength with flexibility to hold snugly on flat, round, and irregular-shaped edges. It can also protect wire, cable, and hose.
Designed to withstand temperatures up to 800° F, this stainless steel trim is good for use with ovens, boilers, and heat shields. It combines strength with flexibility to hold snugly on flat, round, and irregular-shaped edges.
Use this film on metal and plastic parts, appliances, and electronic equipment for protection against damage during packaging, shipping, and installation.
Made of woven polyethylene fabric, this is the most puncture-, abrasion-, and tear-resistant surface protection we offer. Commonly used on heavy equipment, it guards metal, plastic, composite, and painted surfaces from damage. It can also be used as a protective layer beneath other materials.
Commonly used on stair rails, vehicle panels, and heavy equipment, this durable rubber film is tear resistant. Use it to protect metal, wood, plastic, composite, and painted surfaces from damage.
Press this optically clear film into place on windows, mirrors, and glass surfaces. When one layer gets scratched or marred, peel it away to expose a new layer.
Often used to protect sheet metal during fiber and CO2 laser cutting, this film is also good for other fabrication processes such as bending, stamping, and forming. You can even leave this film on finished parts for protection against damage during shipping and storage.
With its reflective, mirror-like finish, this film is often used to repair or create new decorative finishes on edge trim, panels, and other flat surfaces.
Also known as door plates, armor plates, and mop plates, kick plates protect the base of a door from damage caused by foot traffic and equipment.
Fortify a door's base as well as its bottom edge to guard them against damage from foot traffic and equipment. These plates can also be used to salvage rusted, rotted, or otherwise damaged doors.
Reinforce the edge of a door to guard it against damage from foot traffic and equipment. These plates can also be used to salvage rusted, rotted, or otherwise damaged doors.
Commonly used in offices, hospitals, and schools, these guards protect corners on walls and other surfaces from impact.
Even in the dark, these black and yellow striped guards draw attention to equipment and obstructions. They protect corners on walls, posts, shelving, and other surfaces from damage.
These metal guards provide more impact protection than plastic guards. Commonly used in warehouse and manufacturing areas, they protect corners on walls and other surfaces from impact.
Vibrant colors create a visual alert to draw attention to equipment and obstructions. These guards protect corners on walls, posts, shelving, and other surfaces from damage.
With a raised bulb to absorb greater impact than standard corner guards, these guards protect walls, cabinets, and other surfaces.
Protect walls and other surfaces from impact.
The raised bulb adds cushioning to absorb more impact than other surface guards to protect walls and other flat surfaces from impact.
Vibrant colors create a visual alert to draw attention to equipment and obstructions. These guards protect walls and other flat surfaces from impact.
Combine corner guards, surface guards, and end caps to create a system that protects walls and equipment from impact and wear. Often used in offices, hospitals, and schools, these systems protect against damage from small carts and chairs.
The guards in this system have a metal core for added strength and stability. Combine corner guards and surface guards to create a system that protects walls and equipment from impact and wear. Often used in warehouse and manufacturing areas, these systems protect against damage from carts and vehicles.
Impact causes these porous bronze plates to release a thin layer of oil on the surface to minimize friction. Often found on conveyor systems and fabricating machinery, use these plates where friction between two parts or materials is wearing down equipment to extend equipment life.
Suitable for food contact, these plates are made of FDA listed UHMW plastic, which has a slippery surface to minimize friction. Often found on conveyor systems, use these plates where friction between two parts or materials is wearing down equipment to extend equipment life.
Easily attach, move, and replace these magnetic wear strips on metal surfaces to minimize friction—simply press them on and peel them off as needed. Often found on conveyor systems and chutes, use these strips where friction between two parts or materials is wearing down equipment to extend equipment life.
In addition to protecting the bottom of a wall from damage, these bases create a finished look where the wall meets the floor. They're commonly used in offices, hospitals, and schools.
Safeguard pipe, tubing, and other round equipment from damage. Black and yellow stripes create a visual alert to draw attention to equipment and obstructions.
These aluminum bases provide more impact protection than plastic bases. In addition to protecting the bottom of a wall from damage, they create a finished look where the wall meets the floor. They're commonly used in warehouse and manufacturing areas.
Connect two panels while protecting the edges from damage.
The two‐piece design makes it easy to install and seal these grommets around wire, cable, and cords that are already in place. Use them to keep out dust, debris, and moisture.
Cut the center of these grommets with a utility knife to create custom IDs. The two‐piece design makes it easy to install and seal these grommets around wire, cable, and cords that are already in place. Use them to keep out dust, debris, and moisture.
Rated IP68, these grommets form liquid-tight seals around wire, cable, and cords to protect them against dust as well as submersion in a maximum of one meter of water.
Create a tight seal around wire, cable, and cords with these grommets to keep out dust, debris, and moisture.
Snap these grommets into place to hold wire, cable, and cords in wet locations and form a seal against dust, debris, and water.
Create a sanitary seal on through-wall piping, tubing, and cables in food-, cosmetic-, and pharmaceutical-processing areas.
Apply heat and these grommets shrink around wire, cable, and cords to keep out dust, debris, and moisture.
Eliminate clutter on desktops, countertops, benchtops, and other work surfaces by organizing wire, cable, and cords.
Wire, cable, and cords pass through the grommet opening while the bristles fill in the gaps to control dust and debris. Use these grommets to eliminate cord clutter on desktops, countertops, benchtops, and other work surfaces.
The center hole has flaps that flex to accommodate various sizes of wire, cable, and cords while still providing dust and debris protection. Use these grommets to eliminate cord clutter on desktops, countertops, benchtops, and other work surfaces.
Squeeze these flexible grommets to open the center flap—once wire, cable, and cords pass through, the flap closes tightly for dust and debris protection as well as a finished look. Use them to eliminate cord clutter on desktops, countertops, benchtops, and other work surfaces.
Push these flexible grommets into place to protect wire, cable, and cords by turning rough-edged and uneven holes into smooth, insulated holes. Commonly used in metal panels, they also damp vibration.
The center hole has flaps that flex to hold and protect various sizes of wire, cable, and cords while keeping out dust and debris. Push these grommets into place. They turn rough-edged and uneven holes into smooth, insulated holes.
Cut the thin layer of rubber in the center of these grommets to create custom IDs to securely hold and protect wire, cable, and cords. Push these grommets into place. They turn rough-edged and uneven holes into smooth, insulated holes. Commonly used in metal panels, they also damp vibration. Also known as webbed grommets.
These flexible grommets withstand temperatures of 450° F or greater, which is approximately twice as high as our standard grommets. Push them into place to protect wire, cable, and cords by turning rough-edged and uneven holes into smooth, insulated holes. Commonly used in metal panels, they also damp vibration.
Keep grommets of various sizes on hand to solve whatever problems arise.
A slit in the side of these grommets allows you to install them around wire, cable, and cords that are already in place. They snap into the hole and their wings hold them tight. Use them to turn rough-edged and uneven holes into smooth, insulated holes.
The center hole has flaps that flex to hold and protect various sizes of wire, cable, and cords while keeping out dust and debris. Snap these grommets into place and their wings expand against the sides of the hole to lock them in position. Use them to turn rough-edged and uneven holes into smooth holes.
These grommets snap into place and have wings that expand against the sides of the hole to lock them in position. Use them to protect wire, cable, and cords by turning rough-edged and uneven holes into smooth holes.
These grommets have two flanges that snap around holes and flex to compensate for misalignment and movement of pipe and tubing. They're often used for routing applications in panel walls.
Press these flexible grommets into holes and their tapered inner wall will expand when pipe or tubing is inserted to hold them snugly in place. They're often used for routing applications on metal, plastic, and fiberglass tanks.
No setting tools needed—snap the two parts together in a hole you've already cut to strengthen the hole and eliminate fraying. Use these grommets in tarps, covers, curtains, and other material.
A rolled rim provides added grip while the elongated neck and teeth on the washer, also known as a spur washer, add reinforcement and reduce rotation so you can use these grommets in thick materials such as canvas. Press the grommets into a hole you've already cut. They strengthen and prevent holes from fraying in tarps, covers, and curtains. They also provide a way to run rope and cable through your material.
The sharp neck on these grommets cuts the material as you press them into place, eliminating the need for a cutting punch. They strengthen and prevent holes from fraying in tarps, covers, and curtains. They also provide a way to run rope and cable through your material.
Press these grommets into a hole you've already cut. They strengthen and prevent holes from fraying in tarps, covers, and curtains. They also provide a way to run rope and cable through your material.
Kits include grommets, a cutting punch, a cutting block, an installation punch, and a die set. Use them to create a way to run rope and cable through tarps, covers, and curtains.
The extended neck on the washer of these grommets adds reinforcement so you can use them in thicker material such as woven fabrics. Press them into a hole you've already cut. They strengthen and prevent holes from fraying in tarps, covers, and curtains. They also provide a way to run rope and cable through your material.
Support shafts, bearings, and other moving parts that are routed through a hole. These grommets are slippery to allow parts to move freely in the hole. Install them on thin sheet-metal panels.
Protect drawer beds and tools from scratches and dents.
These liners are treated to protect your tools against rust.
Line toolboxes and drawers to cushion and protect small parts.
Made of 100% wool, this is the hardest felt we offer, yet it can still be used for polishing. It is more abrasion resistant and better at damping vibration than other felt. Includes S2-32, S2-24, and S2-20 felt grades.
This synthetic felt is an economical alternative to wool felt.
This Nomex aramid felt withstands temperatures three times as high as wool felt. It is chemical resistant and often used as insulation.
Saturated with wax, these sheets also have a polyester coating on one side to resist corrosion and moisture. Protect piping and wrap irregularly shaped objects with this very flexible fabric.
Also known as cotton duck and canvas.
This cotton fabric is treated to resist flames. Use as tarps.
This low-pile velvet cushions and damps vibration.
Use for lining, cleaning, straining, and polishing.
Even after stretching up to twice its length, this elastic latex will bounce back to its original shape.
Commonly used for wrapping, cushioning, and packaging.
Often used as outdoor equipment covers and pit liners, this material combines UV, water, and mildew resistance with tear resistance.
Composed of high-density polyethylene fibers, this durable material is tear and water resistant and keeps its high strength in both wet and dry environments.
The neoprene coating on these nylon sheets resists UV rays as well as solvents and oil.
The mesh construction makes this fabric breathable and usable as a windscreen.
With larger openings than porous fiberglass fabric, these sheets allow for more air circulation in drying applications.
Pores allow for air circulation, so these sheets are often used in drying applications.
These sheets can be grounded to reduce static electricity.
The PTFE coating makes these fiberglass sheets nonstick and chemical resistant.
These sheets are 50% more tear resistant than other fiberglass fabric sheets.
Commonly used as curtains and in sealing applications.
Similar to plaster, these adhesive-impregnated sheets and strips become moldable when water is added and harden as they dry. They can be used in sealing, insulating, and covering applications.
Resistant to sparks and molten metal spatter, this fabric withstands temperatures up to 1000° F. It's often used for curtains, blankets, and gaskets.
This abrasion-resistant fabric sheds molten metal spatter when placed at an incline of 15° or greater. Use as a welding curtain.
In addition to being oil resistant, this fabric protects against molten metal spatter when used vertically. Use as a heat shield or a welding curtain.
A blend of aramid and fiberglass, this fabric resists mildew and abrasion. It is self-extinguishing and won't melt, so it's often used for insulation applications.
Often used to create curtains and screens, this fabric has an aluminum foil backing that deflects radiant heat.
Even when exposed for as long as 2 minutes to temperatures up to 2600° F, these sheets won't ignite or melt.
Use these strips for high-temperature seals and heat insulation.
Lighter than Kevlar, Nomex is often used for temperature-resistant garments.
More flexible than standard silica fabric, wrap these sheets and strips to insulate pipes, wires, and hose. This fabric also protects against welding spatter.
This temperature-resistant fabric is more cut resistant than Nomex.
Commonly used as curtains, covers, insulation, and splash shields, these sheets protect against welding spatter.
There are hundreds of cushioning pillows in every foot of these pliable mesh sheets. They're often used as a protective liner in drawers and cabinets and anywhere a nonskid surface is required.
Often used for impact pads, gaskets, and enclosure seals, these polyurethane foam sheets and strips absorb shock better than other resilient foam.
Even after extended compression, these high-performance polyurethane foam sheets and strips bounce back to shape faster than any other foam we offer. Also known as Poron urethane, they also stand up to wear caused by rubbing and scraping.
These dual-material foam sheets and strips have ultra-soft polyurethane foam on one side and chemical-resistant polyethylene foam on the other. They are widely used in packaging applications to absorb shock and damp vibration.
Good for tough vacuum-sealing and low closure-force applications, these polyurethane foam sheets and strips have open/closed cells to keep water, air, and gases from being absorbed when they are compressed at least 25%. Even after extended compression, all bounce back to shape faster than other foams we offer.
Durable enough to be used in seat cushions, this flexible polyurethane foam provides gentle cushioning support.
When these sheets and strips are exposed to flames, the surface chars to create a protective barrier that prevents melting, dripping, and the possibility of spreading fire.
Commonly called memory foam and Confor, these sheets and strips have the best cushioning qualities of all the foam we offer.
Made of FDA-listed materials, these polyethylene foam sheets are often used as packaging for food products to absorb shock and damp vibration.
These sheets and strips are made of cross-linked polyethylene, so they are stronger and more chemical resistant than other types of polyethylene foam.
Also known as Ethafoam.
Exceptionally strong, this lightweight ionomer foam offers excellent resistance to impact, UV light, and water. It stands up to wear caused by rubbing and scraping and is often used on bumpers and buoys.
Often used as padding in helmets, gloves, and boots, this super-strong EVA foam absorbs shock and resists tearing better than other types of foam.
Also called plucking foam, these scored foam sheets allow you to pull out individual cubes for custom-shaped packaging.
Know at a glance when a tool is missing from a toolbox with this dual-color foam.
Made of EPDM foam, these sheets and strips have the best resistance to water, sunlight, and oxidation of all the foam we offer.
In addition to having good resistance to water, sunlight, and oxidation, these neoprene foam sheets and strips resist swelling when they come into contact with oil.
Made of a blend of neoprene and EDPM, these foam sheets and strips resist water, sunlight, and oxidation.
Just like the material found in wetsuits, these neoprene foam sheets are encased in nylon fabric for additional protection from wear caused by rubbing and abrasion.
Because this natural rubber foam readily bounces back to shape after compression, it’s a good choice for repetitive sealing applications, such as on doors.
The original mouse pad material. These natural foam rubber sheets have a crisscross-textured skin on one side for a nonslip gripping surface and a layer of polyester fabric on the other side that allows objects to smoothly slide across it.
EPDM is blended with neoprene and SBR to create a general-purpose foam that offers good resistance to water and wear.
These vinyl foam sheets and strips are so conformable that once they're compressed they won't fully spring back. Use them to fill gaps and seal uneven surfaces.
Prevent the spread of flames with these self-extinguishing silicone foam sheets and strips.
Even after extended compression, these sheets and strips will bounce back to shape.
A thin layer of aluminized fiberglass on this silicone foam reflects heat to protect sensitive equipment.
Silicone maintains its flexibility across a wide range of temperatures.
These sheets and strips will bounce back to shape, even after extended compression.
Protect sensitive equipment from heat buildup with this silicone foam. These sheets are commonly used to fill gaps and damp vibration in computers, battery installations, and pipe assemblies.
This premium silicone is the most resilient foam we offer. It is equivalent to Cohrlastic and is also known as Norseal and silicone sponge.
One layer of fiberglass fabric is sandwiched between layers of silicone foam giving these strips strength to handle high-stress applications, such as gasketing.
Even after exposure to sunlight, rain, and snow, these silicone foam strips remain flexible.
Seal and damp vibration around high-temperature food-service equipment with these silicone foam sheets and strips.
In addition to being lighter in weight than silicone foam, this polyimide foam also remains soft and conformable across a broader temperature range.
This foam meets UL fire extinguishing specifications. It's made from a blend of Buna-N, neoprene, and vinyl to offer offer good resistance to oil.
Made from a blend of Buna-N, neoprene, and vinyl, these foam strips have good resistance to oil.
Made of Epichlorohydrin, an alternative to Buna-N, these foam sheets have excellent resistance to oil.
Stiff yet moldable, this foam takes the shape of any object that's pressed into it and will never spring back.
Offering excellent resistance to corrosive environments, these Viton® fluoroelastomer foam sheets and strips stand up to a wide variety of chemicals, fuels, and oils.
Cushion electronic components from impact as you protect them from electrostatic shocks during shipping and storing.
An economical alternative to Viton® fluoroelastomer foam, these semi-rigid nylon foam sheets offer good resistance to a wide range of chemicals.
Similar to a sponge, this open-cell foam absorbs and holds up to 30 times its weight in liquid.
These polyurethane foam egg-crate sheets divert static electricity to protect sensitive equipment from damage.
Protect electronic components from electrostatic shocks and chemicals while safeguarding them from bumps and drops during shipping and storing.
These mats provide good traction while protecting walkways, ramps, and other high-traffic areas.
These mats have a smooth bottom for use on hard floor surfaces.
With a coarse ceramic/garnet abrasive surface, these mats feel like walking on sandpaper, even in environments where moisture and grease are constantly present.
Tested to withstand the stated dielectric test voltage, these mats protect workers from electrical shock when working around high-voltage equipment.
Suction cups on the bottom keep these mats in place when wet.
These mats withstand occasional contact with grease.
Use these greaseproof mats where grease and oil are constantly present.
These general purpose mats provide a walking surface in wet environments that allows liquids to drain beneath your feet.
Use these mats where drainage and slip resistance are a priority.
Rigid mats are more durable than flexible mats, withstanding heavy loads and rough use.
Rigid and lightweight, these polyethylene mats resist acids, salt, gasoline, solvents, and chemicals.
Use greaseproof mats where grease and oil are constantly present. They're treated to protect the mat against odors and degradation.
Hollow tubes form a flexible, cushioned surface to reduce the fatigue and strain of standing while working.
These mats meet NSF/ANSI standards for use in food-processing areas.
These general purpose mats provide cushion to reduce the fatigue and strain of standing while working.
Thicker than our other greaseproof antifatigue mats, these mats have more cushion for greater comfort.
Thicker than standard antifatigue mats, these mats have more cushion for greater comfort.
Made of polyurethane foam, these mats are the ultimate in durability and comfort.
Durable and cushioned, these mats combine the comfort of an antifatigue sponge mat with wear-resistant construction.