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Run chemicals through this tubing at temperatures between -100° F and 500° F.
Ultraviolet light won’t cause this tubing to degrade or deteriorate.
You don’t have to worry about this tubing cracking due to stress or impact—even over a wide range of temperatures.
A lightweight alternative to stainless steel, this tubing can handle extreme-pressure applications up to 1,000 psi.
Hard walls give this tubing excellent strength in high-pressure and vacuum applications.
This durable tubing has the best abrasion and wear resistance of all our hard tubing for chemicals.
Not only can this tubing handle temperatures between -450° F and 500° F, it also has a convoluted spiral design for good flexibility and smooth flow.
The corrugated design allows this tubing to extend and compress just like an accordion.
Keep your work site safe and clutter free—this coiled tubing extends when you need it and retracts out of the way when you don't.
Use this general purpose tubing with a variety of chemicals.
Made of highly chemical-resistant materials, this tubing withstands harsh chemicals such as hydrochloric acid, sodium hydroxide, and sulfuric acid.
Use this resilient tubing in high-temperature chemical applications up to 400° F.
Commonly used in applications requiring movement, such as metering (peristaltic) pumps and robotics, this tubing can handle continuous bending and flexing.
With a diameter of 2" or larger, this tubing has the girth to handle high volumes of acids and other harsh substances.
An FEP liner gives this tubing better chemical resistance than any of our other firm tubing. It also provides a smooth interior for easy cleaning unrestricted flow.
Cold temperatures pose no problems for this tubing—it stays strong and flexible, even when temperatures drop to -100° F.
This tubing can withstand high-temperature chemical applications up to 400° F.
The smooth, nonabsorbing interior on this tubing resists material buildup, so it is easy to clean.
Made from TPE plastic, this tubing doesn’t contain plasticizers like DEHP, so it won’t impart tastes or odors to the fluid passing through.
With hard walls and the ability to handle extreme temperatures, this tubing is the preferred material for semiconductor applications. The material contains extremely low levels of additives, so it won’t contaminate the fluid passing through it.
Designed for high-purity applications, this hard tubing is cleaned and bagged to prevent dirt and moisture from contaminating the inside. It is free of plasticizers like DEHP, so it won’t impart tastes or odors to the fluid running through it.
Run corrosive substances through this tubing without worrying about pitting and stress cracking. It is also known as Hastelloy.
Also known as instant fittings, these chemical-resistant plastic fittings connect to tubing with a push. An internal gripping ring holds the tubing tight.
Fittings have a sleeve that bites into tubing as you tighten the nut to form a seal in applications up to 120 psi. Also known as flareless fittings.
A spring-free flow path allows more chemicals to pass through these tube couplings at lower line pressures than other quick-disconnect couplings.
Made of FEP (fluorinated ethylene propylene), this hose can stand up to chemicals at high temperatures.
No need for a gasket—this hose’s PTFE liner flares out as it passes through the flanges, so your line’s contents never touch the fittings.
Expose this UHMW (ultra-high molecular weight) polyethylene hose to harsh physical conditions without worrying about it deteriorating or becoming brittle.
Step on this hose and it springs back to its original shape.
Transfer harsh chemicals while reducing vibration that could damage pumps or other equipment.
To stand up to the harsh chemicals used to clean food-processing lines, these fittings are made of PVDF, also known as Kynar.
This PTFE pipe can withstand a wider temperature range than any of our other plastic pipe for chemicals. It is commonly used in high-purity chemical flow processes, such as semiconductor and clean room applications.
The inside of this pipe won’t leach contaminants into your line or accumulate particles—it’s polished to an ultra-smooth 12 Ra finish, which also makes them easy to clean. Made of polypropylene, it resists organic solvents, acids, and alkalis better than CPVC pipe.
Made of PVDF that’s finished to a 12 Ra smoothness, this pipe handles some of the harshest chemicals without leaching contaminants into your line.
Also known as Victaulic pipe, this pipe has grooved ends that connect to fittings and flanges with a clamp, so you can access your line for routine maintenance. It is CPVC, which has excellent chemical resistance to withstand a variety of salt solutions, acids, and other harsh substances.
Use this pipe in gravity-flow applications that involve highly-corrosive chemicals–it is NSF certified for use in corrosive waste systems. Pipe is made of CPVC, which has better chemical resistance than ABS plastic to stand up to acids and other harsh substances.
Made of polypropylene, this gravity-flow pipe stands up to tough organic solvents, such as acetone, that would dissolve CPVC pipe. You can also use it for lines with highly corrosive acids, such as hydrochloric acid, and alkalies.
Cast acrylic is easier to machine than extruded acrylic. It's comparable to Lucite and Plexiglas® Acrylic.
This extruded acrylic offers similar performance as cast acrylic at a lower cost.
PETG can be formed into complex shapes without sacrificing durability.
Widely used as shipping tubes, this cellulose is also known as butyrate.
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.
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.
Because ABS maintains its toughness even after thermoforming, it’s often made into storage cases, tote trays, equipment housings, and protective gear.
Because this polypropylene resists swelling when exposed to water, it’s often fabricated into containers and parts for laboratory equipment.
Known for its naturally slippery surface, PTFE surpasses most plastics when it comes to chemical resistance and performance in extreme temperatures.
This glass-filled PTFE is more rigid than standard PTFE for increased durability in high-stress applications.
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.