System of Measurement System of Measurement |
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OD OD | Show |
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OD OD | Hide |
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Material Material |
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Shape Shape |
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Round Tube | Straight |
Flexibility Flexibility |
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For Use With For Use With |
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Connection Style Connection Style |
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Barbed |
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Push to Connect |
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Compression |
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Socket Connect |
Maximum Temperature Maximum Temperature |
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Minimum Temperature Minimum Temperature |
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Maximum Pressure Maximum Pressure |
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Hardness Hardness |
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Clarity Clarity |
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Clear | Semi-Clear |
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Opaque |
Fabrication Fabrication |
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Specifications Met Specifications Met |
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Maximum Vacuum Maximum Vacuum |
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End Type End Type |
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Bend Radius Bend Radius |
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Pipe size is an industry designation, not the actual size. View information about how to measure threaded and unthreaded pipe and pipe fittings.
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This general purpose PVC tubing is the industry standard for air and water applications. Tubing is clear, so you can easily monitor flow. It is flexible to easily bend around objects.
Tygon tubing has a nonabsorbing surface for improved flow and drainage.
Tubing that meets NSF/ANSI 51 is safe for contact with food and beverage.
For technical drawings and 3-D models, click on a part number.
More resilient than latex rubber, this silicone rubber tubing can stand up to high-temperature applications. Commonly used with metering (peristaltic) pumps and robotics, it can handle continuous bending and flexing and maintains its flexibility over time.
Opaque tubing doesn’t allow you to see what’s flowing through the line. Semi-clear tubing gives you a limited view inside the line.
For technical drawings and 3-D models, click on a part number.
This tubing won’t degrade when exposed to the damaging effects of ultraviolet light. It is opaque, so you can’t see what’s flowing through the line.
EPDM rubber tubing is the most flexible option. It has better durability than PVC tubing to stand up to harsh outdoor environments. It has excellent resistance to ozone as well as UV light.
Protect sensitive equipment with this tubing—it is specially formulated to reduce the buildup of static electricity.
Silicone rubber tubing has carbon embedded into the walls to divert static quickly. It can handle a wider temperature range than PVC tubing, and is more flexible, so it bends easily around objects. It is opaque, so you can’t see what’s flowing through the line.
This self-extinguishing, silicone rubber tubing meets UL 94 V-0 and UL 94 V-1 for flame retardance, so it delays the spread of flames to valuable equipment. It is opaque, so you cannot see what’s flowing through the line. Tubing is flexible to easily bend around objects.
For technical drawings and 3-D models, click on a part number.
Multiple colors allow you to color-code your line for easy identification. Tubing is flexible, so it bends easily around objects.
Polyurethane rubber tubing can handle higher pressures than PVC plastic tubing and can also be used in vacuum applications. It is ether based, so it performs better in humid environments than ester-based polyurethane.
Opaque tubing doesn’t allow you to see what’s flowing through the line. Clear tubing allows you to easily monitor flow.
For technical drawings and 3-D models, click on a part number.
With excellent resistance to abrasion and tearing, this rubber tubing can hold up in rugged environments. It is semi-flexible, so it is good for gradual bends.
Neoprene tubing can handle higher temperatures than polyurethane tubing. It meets ASTM E162 specifications for surface flammability. Tubing is opaque, so you cannot see what’s running through the line.
With a unique combination of UV resistance and clarity, this PVC tubing won’t degrade from the damaging effects of ultraviolet light exposure, and allows you to monitor flow through the line. Tubing is flexible, so it can easily bend around objects.
For technical drawings and 3-D models, click on a part number.
Excellent strength and durability allow this tubing to handle high-pressure air and water applications.
Polycarbonate tubing won’t degrade when exposed to the damaging effects of ultraviolet light. It should be used at temperatures above freezing. Tubing is clear, so you can easily monitor flow. It is rigid and does not bend.
Cold temperatures pose no problems for this tubing—it stays strong and flexible, even when temperatures drop below freezing. Tubing is also known as Tygon. It has the chemical resistance to handle a variety of acids and other harsh substances. It is clear, so you can easily monitor flow. Tubing is flexible and bends easily around objects.
An internal reinforcement gives this tubing the strength to withstand higher pressures than other soft tubing for food, beverage, and dairy. Tubing doesn’t contain plasticizers like DEHP, so it won’t impart tastes or odors to the fluid passing through it.
PVC plastic tubing can withstand the highest pressures. It is clear, so you can easily monitor flow through the line. This tubing is 3A certified for use in dairy facilities and other sanitary environments.
Semi-flexible tubing is good for gradual bends.
For technical drawings and 3-D models, click on a part number.
ID | OD | Wall Thick. | Flexibility | Bend Radius | Temperature Range, °F | Max. Pressure | Max. Vacuum | Color | Specifications Met | Lengths, ft. | Per Ft. | |
Steel Wire Reinforced Metric Tubing | ||||||||||||
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12mm | 20mm | 4mm | Semi-Flexible | 15mm | 25° to 150° | 110 psi @ 72° F | 29 in. of Hg @ 72° F | Clear | 3-A Certified 20-27, FDA Compliant 21 CFR 177.1980 | 00000000 | 00000 |
The industry standard for general purpose food, beverage, and dairy applications, this tubing meets NSF/ANSI Standard 51 for food contact. Tubing doesn’t contain plasticizers like DEHP, so it won’t impart tastes or odors to the fluid passing through it. It has a nonabsorbing surface, which makes it easy to clean. Tubing is clear, so you can easily monitor flow through the line. It is flexible, so it bends easily around objects.
PVC tubing is the most economical option.
For technical drawings and 3-D models, click on a part number.
Hot food and beverage applications won’t harm this silicone tubing. It is made of FDA listed materials. Tubing is made without plasticizers like DEHP, so it won’t impart tastes or odors to the fluid passing through it. It can handle applications requiring repeated bending and flexing, such as metering (peristaltic) pumps and robotics. It is flexible and bends easily around objects.
Semi-clear tubing gives you a limited view inside the line. Opaque tubing blocks your view, so you cannot see inside the line to monitor flow.
Tubing that meets NSF/ANSI Standard 51 is approved for food contact.
For technical drawings and 3-D models, click on a part number.
Silver ions are blended into the walls of this silicone tubing to inhibit the growth of odor-causing microbes. Tubing is suitable for use in clean rooms. It's also suitable for food and beverage applications. Free of plasticizers like DEHP, it won’t impart tastes to the fluid passing through it. Tubing is opaque, so you cannot see inside the line to monitor flow. It is flexible, so it bends easily around objects.
For technical drawings and 3-D models, click on a part number.
The smooth, nonabsorbing interior on this plastic tubing resists material buildup, so it is easy to clean. Tubing is suitable for food and beverage applications. It doesn’t contain plasticizers like DEHP, so it won’t impart tastes or odors to the fluid passing through it. This tubing is flexible and bends easily around objects.
For technical drawings and 3-D models, click on a part number.
ID, mm | OD, mm | Wall Thick., mm | Bend Radius, mm | Max. Pressure | Specifications Met | Length, ft. | Each | |
Without Polyester Braid Reinforcement | ||||||||
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15 | 20 | 2.5 | 104 | 5 psi @ 72° F | FDA Compliant 21 CFR 174.5, FDA Compliant 21 CFR 177.1210, FDA Compliant 21 CFR 177.2600, NSF/ANSI 51 | 25 | 00000000 | 0000000 |
15 | 20 | 2.5 | 104 | 5 psi @ 72° F | FDA Compliant 21 CFR 174.5, FDA Compliant 21 CFR 177.1210, FDA Compliant 21 CFR 177.2600, NSF/ANSI 51 | 50 | 00000000 | 000000 |
15 | 20 | 2.5 | 104 | 5 psi @ 72° F | FDA Compliant 21 CFR 174.5, FDA Compliant 21 CFR 177.1210, FDA Compliant 21 CFR 177.2600, NSF/ANSI 51 | 100 | 00000000 | 000000 |
This tubing offers superior impact and crack resistance—even at low temperatures. Made of FDA listed materials, it is suitable for use with food and beverage. It is made without plasticizers like DEHP, so it won’t impart tastes or odors to the fluid passing through it. Tubing is semi-flexible, so it is good for gradual bends.
Polyethylene tubing can withstand lower temperatures and higher pressures than EVA tubing.
Semi-clear tubing gives you a limited view inside the line.
Tough and durable, this tubing resists abrasion and tearing. It's also suitable for use with food and beverage.
PVC plastic/polyurethane rubber tubing can handle higher temperatures than polyethylene tubing, as well as some standard PVC tubing. It is made without plasticizers like DEHP, so it won’t impart tastes or odors to the fluid passing through it.
Clear tubing allows you to easily monitor flow.
Flexible tubing bends easily around objects.
For technical drawings and 3-D models, click on a part number.
This fluorosilicone rubber tubing can handle the highest temperatures of all of our fuel and lubricant tubing. It meets MIL-R-25988B specifications for material quality. Tubing is opaque, so you cannot see inside the line. It is flexible, so it bends easily around objects.
For technical drawings and 3-D models, click on a part number.
This polyurethane tubing is soft enough to handle continuous bending and flexing, yet tough enough to resist tearing and abrasion. Use it in applications requiring movement, such as metering (peristaltic) pumps and robotics. Tubing is semi-clear, so you get a limited view inside the line.
For technical drawings and 3-D models, click on a part number.
Seamless construction with no weld bead gives this tubing a smooth interior for unrestricted flow. It is stronger than welded tubing and can be flared without splitting.
316 stainless steel offers excellent corrosion resistance.
For technical drawings and 3-D models, click on a part number.
This tubing has good corrosion resistance and excellent heat transfer qualities. It is seamless, which provides a smooth interior for unrestricted flow. It can be flared without splitting. All tubing meets international standards for copper tubing.
For technical drawings and 3-D models, click on a part number.
10 m | ||||||
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OD, mm | Wall Thick., mm | ID, mm | Max. Pressure | Temper Rating | Each | |
For Use With Air, Hydraulic Fluid, Oil, Water | ||||||
20 | 1 | 18 | 580 psi @ 72° F | Soft | 0000000 | 0000000 |
Seamless construction with no weld bead gives this tubing a smooth interior for unrestricted flow. It is stronger than welded tubing and can be flared without splitting. Do not use in corrosive environments.
For technical drawings and 3-D models, click on a part number.
OD, mm | Wall Thick., mm | ID, mm | Max. Pressure | Temperature Range, °F | Temper Rating | Specifications Met | Each | |
1 m | ||||||||
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Steel | ||||||||
20 | 2 | 16 | 3,600 psi @ 72° F | -5° to 570° | Soft | DIN 2391, DIN EN 10305-4 | 000000000 | 000000 |
Zinc-Plated Steel | ||||||||
20 | 2 | 16 | 2,900 psi @ 72° F | 68° to 240° | Soft | DIN 2391, DIN EN 10305-4 | 000000000 | 00000 |
2 m | ||||||||
Steel | ||||||||
20 | 2 | 16 | 3,600 psi @ 72° F | -5° to 570° | Soft | DIN 2391, DIN EN 10305-4 | 00000000 | 00000 |
Zinc-Plated Steel | ||||||||
20 | 2 | 16 | 2,900 psi @ 72° F | 68° to 240° | Soft | DIN 2391, DIN EN 10305-4 | 000000000 | 00000 |
Connect this pipe to standard-wall plastic pipe fittings for a variety of residential and commercial low-pressure plumbing and water supply applications. It’s made of PVC, which has good corrosion resistance. Connect to unthreaded female socket-connect fittings using a PVC primer and cement (also known as solvent weld).
Pipe for drinking water meets NSF/ANSI Standard 61.
Pipe that meets ASTM D1784 and ASTM D1785 adheres to specifications and testing requirements for material quality.
Bend radius is the point to which you can bend pipe or tubing without damaging it. The smaller the measurement, the better the bend.
Warning: Never use plastic pipe fittings and pipe with compressed air or gas.
For technical drawings and 3-D models, click on a part number.
This polypropylene pipe resists the damaging effects of ultraviolet light, so it’s suitable for outdoor use. It has the chemical resistance to withstand a wide variety of acids, solvents, and other harsh substances. Pipe has thick, strong walls for heavy duty chemical processing applications. It meets ASTM D4101 specifications and testing requirements for material quality.
Warning: Never use plastic pipe fittings and pipe with compressed air or gas.
For technical drawings and 3-D models, click on a part number.
Use heat welding to connect unthreaded pipe to unthreaded female socket-connect fittings.
8 ft. | ||||||||
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DIN Size, mm | OD, mm | ID, mm | Wall Thick., mm | Material | Color | Max. Pressure | Each | |
20 | 20 | 16.2 | 1.9 | Polypropylene Plastic | Light Gray | 150 psi @ 72° F | 00000000 | 000000 |
Also known as mild steel, low-carbon steel is easy to machine, form, and weld. It's widely fabricated into parts that don’t require high strength, such as fixture clamps, mounting plates, and spacers. This material can be surface hardened with heat treating.
For technical drawings and 3-D models, click on a part number.
Certificates with a traceable lot number are available for these products. Download certificates from ACTIVITY after your order ships.
Polished to either a brushed or mirror-like finish, this material is widely used to fabricate decorative enclosures and industrial workstations. The polished surfaces are covered with a protective peel-off film. 304 stainless steel is a good all-around choice for a wide range of applications. It maintains its corrosion resistance in temperatures up to 1500° F.
Brushed #4 is often called a satin finish; it’s similar to a #3 finish, except the grain lines are finer. Rectangular and round tubes are polished on the outside.
For technical drawings and 3-D models, click on a part number.
Certificates with a traceable lot number are available for these products. Download certificates from ACTIVITY after your order ships.
OD | OD Tolerance | ID | Fabrication | Heat Treatment | Straightness Tolerance | 1 ft. Lg. | 3 ft. Lg. | 6 ft. Lg. | |
Brushed #4 | |||||||||
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1mm Wall Thick. (-0.015mm to 0.015mm Tolerance) | |||||||||
20mm | -0.130mm to 0.130mm | 18mm | Seamless | Annealed (Softened) | Not Rated | 0000000 | |||
2mm Wall Thick. (-0.03mm to 0.03mm Tolerance) | |||||||||
20mm | -0.130mm to 0.130mm | 16mm | Seamless | Annealed (Softened) | Not Rated | 0000000 | |||
3mm Wall Thick. (-0.3mm to 0.3mm Tolerance) | |||||||||
20mm | -0.130mm to 0.130mm | 14mm | Seamless | Annealed (Softened) | Not Rated | 0000000 |
Comparable to Lexan, Hyzod, Tuffak, and Makrolon, these polycarbonate tubes are half the weight of glass and maintain excellent impact resistance across a wide temperature range. Use them to make instrument gauge covers and display racks.
For technical drawings and 3-D models, click on a part number.
8 ft. Lg. | ||||||
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OD, mm | OD Tolerance, mm | ID, mm | ID Tolerance, mm | Specifications Met | Each | |
2.5 mm Wall Thick. (-0.26 mm to 0.26 mm) | ||||||
20 | -0.260 to 0.260 | 15 | -0.260 to 0.260 | FDA Compliant 21 CFR 177.1580, UL 94 HB | 00000000 | 000000 |
Blistering temperatures won’t melt these quartz tubes, and rapid temperature shifts won’t cause them to crack. Even tougher than borosilicate, they can be used in furnaces and ovens heated up to 2000° F. These highly pure tubes are often used in laboratories because they won’t leach impurities into samples or contaminate chemical reactions. Quartz tubes are optically clear and have excellent UV transmission, making them ideal for UV purification systems.
For technical drawings and 3-D models, click on a part number.
12" Lg. | |||||
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OD | ID | Wall Thick. | Edge Fabrication | Each | |
Metric | |||||
20mm | 17.000mm | 1.5mm | Ground | 0000000 | 000000 |