We will reply to your message within an hour.
To minimize fluid loss when connecting and disconnecting your line, these couplings have flat faces for a close fit and shut-off valves to stop the flow—they meet ISO 16028, which is an international standard for hose couplings.
Quickly connect and disconnect hose lines used with a variety of chemicals, from adhesives to isopropyl alcohol and ink. Any part of these couplings that contacts fluid is made from 316 stainless steel, C-276 Hastelloy, PTFE, or fluoroelastomer to withstand the chemicals in your line.
Also known as dry disconnects and double shut-off couplings, these couplings make connecting and disconnecting your line quick and virtually spill-free. Built to stand up to petroleum products, such as diesel fuel and gasoline, their body and gasket are made from materials that won’t corrode from oil.
Made of stainless steel, these hose fittings are more durable than plastic barbed hose fittings and have excellent corrosion and chemical resistance. Slide the barbed end into hose and secure with a clamp.
Made of plastic, these fittings are lighter in weight than metal barbed fittings, yet have the chemical and corrosion resistance to stand up to harsh substances. Slide the barbed end into plastic or rubber hose and secure with a clamp.
Each of these metal fittings is double bagged to prevent contamination in areas that require a high level of cleanliness.
Low-profile barbs and a longer first barb allow for a smoother, easier installation than other barbed fittings. Slide the barbed end into hose and secure with a clamp.
Access your line without twisting the hose—these unions separate into three pieces.
Built with ball bearings, these fittings continuously swivel 360° before and after installation to prevent your hose from twisting, kinking, and failing. They’re made of 316 stainless steel, so they won’t corrode from a wide variety of chemicals, as well as fuels, gasoline, and oil.
Minimize chemical and petroleum spills during accidental disconnects, such as a driver pulling away during loading. These couplings have a shut-off valve on each half to stop flow when they’re separated.
Cut the hose to your desired length and attach the fittings. You don't need any special equipment to install.
Use this conductive hose in a grounded system to eliminate static buildup. The material is blended with carbon black, which conducts static charges away from the hose walls.
Use this durable, flexible hose in pressures up to 5,000 psi. Its braided construction gives it the highest pressure rating of any chemical hose in our offering.
Heat chemicals to prevent them from freezing or becoming too thick. With a self-regulating heating wire, the liquid inside this hose stays warm and keeps flowing.
Yarn reinforcement gives this hose good strength under pressure.
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.
Step on this hose and it springs back to its original shape.
Expose this UHMW (ultra-high molecular weight) polyethylene hose to harsh physical conditions without worrying about it deteriorating or becoming brittle.
Transfer harsh chemicals while reducing vibration that could damage pumps or other equipment.
Quickly set up a line to dispense chemicals—these nozzles come with a hose and fittings that thread onto your drum or intermediate bulk container (IBC).
Dispense chemicals from a line that attaches and detaches from your drum or intermediate bulk container (IBC) in seconds. These nozzles and the included hose come with fittings that connect when you insert the plug into the socket and push the levers down.
The threads on the tube end of these fittings are Class 3A or 3B and adhere to tighter tolerances than other 37° flared fittings.
A PTFE seal on the tube end of these fittings allows for an extra-strong connection in high-vibration applications.
Use these fittings at pressures up to 9,700 psi. Also known as instrumentation fittings, they are made to tight tolerances for use in high-precision applications. They are compatible with Swagelok®, Let-Lok, and Parker A-Lok fittings.
For applications that require an extra level of cleanliness, these fittings are individually bagged to prevent contamination.
These fittings have the highest pressure rating of all the Yor-Lok tube fittings we offer.
A single sleeve (ferrule) bites into tubing as you tighten the nut, creating a strong seal. The nut and sleeve are included.
Instead of a metal sleeve (ferrule), these fittings have a rubber sleeve that cushions tubing and absorbs vibration to maintain a tight seal, even when connected to large pumps.
The thick walls of these fittings can withstand more than twice the pressure of standard compression fittings.
Also known as JIC (Joint Industrial Council) fittings, these connect to tubing that is flared to 37°. They can handle higher pressures than 45° flared fittings.
No sleeve is required to assemble these fittings, which makes for a faster, more convenient installation compared to 37° flared fittings. They are also known as refrigeration and SAE fittings.
The flared end of the fitting nests inside the fitting body, providing extra support to the tubing. Fittings are also known as inverted 45° flared fittings.
Add a push-to-connect junction to unthreaded ports for easy connections with tubing. To install, drill a stepped hole in your surface, push the fitting components into place, and insert your tubing.
With a nickel-plated finish, these compression fittings resist corrosion better than plain brass fittings.
The sleeve in these fittings is rubber instead of metal, so it cushions the tubing and absorbs vibration while creating a tight seal.
Also known as instrumentation fittings, these are made to tighter tolerances than standard compression fittings. They are compatible with Parker CPI fittings.
These fittings include a nut with a built-in sleeve, so there’s no need to remove the nut for assembly.
Also known as JIC (Joint Industrial Council) fittings, these provide a tight metal-to-metal seal on steel tubing that is flared to 37°.
Use these sleeves with a nut and fitting to provide a tight metal-to-metal seal on steel tubing that is flared to 37°.
The external hex bolt on these fittings allows for easy installation in cramped spaces.
Also known as JIS (Japanese Industrial Standard) fittings.
These fittings have two sleeves for extra gripping power. They bite into steel tubing as you tighten the nut to form a strong seal.
The external hex bolt on these fittings allows for easy installation in cramped spaces. They are also known as banjo-style fittings and JIC (Joint Industrial Council) fittings. They provide a tight seal on tubing that is flared to 37°.
With the best corrosion resistance of any metal fitting we offer, these Hastelloy fittings will stand up to aggressive chemicals and are resistant to pitting and stress cracking. Also known as instrumentation fittings, they include a nut with two sleeves.
These Monel fittings have the corrosion resistance to handle hydrofluoric and sulfuric acid. Also known as instrumentation fittings, they include a nut with two sleeves.
Distribute air or fluid to multiple locations from a single supply source with these manifolds. They are also known as headers.
Unlike other manifolds, which have an inlet on either end, these have one inlet on the opposite side from the outlets. This design allows air or fluid to follow a straight path, improving flow through your system. Also known as headers.
When you’re short on vertical space, these manifolds are a good fit—they have outlets on the side instead of on top, so they have a lower profile than rectangular manifolds. Use them to distribute air or fluid to five locations from a single supply source.
Mount these manifolds on the end of a hose line to distribute air, water, or hydraulic fluid to three locations from a single supply source.
With outlets on the side instead of on top, these manifolds have a lower profile than rectangular manifolds and fit well in cramped spaces. Use them to distribute air or fluid to three locations from a single supply source.
Use these junction blocks to organize and separate multiple lines in your system. They have threaded holes that allow air or fluid to flow straight through the block.