Tubing
Polyurethane, nylon, PTFE, copper and stainless tubing by OD.
Also searched as: pneumatic tubingptfe tubenylon tubingcopper tube6mm tubing
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Nylon PA12 Tube Pneumatic Tubing Air Brake Hose
Length: 10 m
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Nylon Tubing Blue Color
Inside Diameter: 4.00 mmLength: 100 ftMaximum Operating Pressure: 14.7-200 psiOutside Diameter: 6 mm
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Nylon Tubing, Natural
Inside Diameter: 2.7 mmOutside Diameter: 4 mm
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PA6 High Pressure Nylon Tube Air Tubing
Length: 1-10 mOutside Diameter: 4, 6, 8, 10 mm
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PA6 Nylon Tube
Length: 1-10 mOperating Temperature: -30°C to +120°COutside Diameter: 4-16 mmWorking Pressure: 2.0 MPa
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PA6 Nylon Tube 4mm-16mm
Burst Pressure: 6.0 MPaLength: 1-10 mOperating Temperature: -30°C to +120°COuter Diameter: 4-16 mm
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PTFE Bowden Tube
Maximum Operating Temperature: 280 °C
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PTFE Bowden Tube, 2.5 mm ID x 4mm OD
Inside Diameter: 2.5 mmLength: 10 ftOutside Diameter: 4 mm
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PTFE Teflon Tube 1M
Length: 1 m
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PTFE Teflon tubing 10ft - 3mm ID X 4mm OD for 1.75
Color: TranslucentInner Diameter: 3mmLength: 10ftOuter Diameter: 4mm
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PTFE Tube 4M for 1.75mm Filament
Filament Diameter: 1.75mmHeat Resistance: 260°CLength: 4M
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from $43.29Zoro $43.29 -
PTFE Tube Stock 1 5/8 in Inside Dia, 12 in Length
Inside Diameter: 1 5/8 inLength: 12 in
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PTFE Tube Stock 1 in Inside Dia, 3 ft Length
Inside Diameter: 1 inLength: 3 ft
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PTFE Tube Stock 1/2 in Inside Dia, 3 ft Length
Inside Diameter: 1/2 inLength: 3 ft
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PTFE Tube Stock 3/4 in Inside Dia, 3 ft Length
Inside Diameter: 3/4 inLength: 3 ft
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PTFE Tube Stock 3/8 in Inside Dia, 3 ft Length
Inside Diameter: 3/8 inLength: 3 ft
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PTFE Tube for 3D Printer Bowden J-Head
Length: 1 m
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PTFE Tube for Bamboo Lab P1s P1P X1c X1 X1E
Diameter: 2.5 mm, 4 mm
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PTFE Tube, 2.5mm ID x 4mm OD
Inside Diameter: 2.5 mmLength: 5 mOutside Diameter: 4 mm
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PTFE Tube: 0.252" ID, 0.319" OD, 25' Long
Inside Diameter: 0.252 "Length: 25 ftOutside Diameter: 0.319 "Wall Thickness: 0.033 "
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PTFE Tube: 1" ID, 1-1/8" OD
Inside Diameter: 1 "Outside Diameter: 1-1/8 "
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PTFE Tube: 1/16" ID, 1/8" OD
Inside Diameter: 1/16 "Maximum Operating Pressure: 197 psiOutside Diameter: 1/8 "
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PTFE Tube: 1/2" ID, 5/8" OD, 2' Long
Inside Diameter: 1/2 "Length: 2 ftMinimum Operating Temperature: -150 °FOutside Diameter: 5/8 "Wall Thickness: 1/16 "
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PTFE Tube: 1/4" ID, 3/8" OD
Inside Diameter: 1/4 "Maximum Operating Pressure: 127 psiOutside Diameter: 3/8 "
About tubing
Tubing serves as a conduit for fluids and gases in pneumatic, hydraulic, and process control systems. Selection is primarily driven by application requirements concerning pressure, temperature, chemical compatibility, and flexibility. Common types include polyurethane, known for its flexibility and abrasion resistance, often used in pneumatic and robotic applications. Nylon tubing offers higher pressure ratings and good chemical resistance, suitable for air, oil, and some chemical transfer. PTFE (Polytetrafluorofluoroethylene) tubing provides excellent chemical inertness, high-temperature resistance, and a low coefficient of friction, making it ideal for aggressive media or high-purity applications. Metallic tubing, such as copper and stainless steel, is specified for high-pressure, high-temperature, or structural applications. Copper tubing is frequently used for refrigeration, HVAC, and some hydraulic lines, while stainless steel offers superior corrosion resistance and strength for demanding industrial and hygienic environments. Tubing is typically specified by its Outer Diameter (OD) and wall thickness, which together determine the Inner Diameter (ID) and pressure rating. Standard ODs include metric sizes (e.g., 4mm, 6mm, 8mm, 10mm, 12mm) and imperial sizes (e.g., 1/8", 1/4", 3/8", 1/2"). Pressure ratings are critical and must exceed maximum system operating pressure, often with a safety factor. Material composition dictates chemical compatibility and temperature limits. Flexibility is also a key consideration, particularly for dynamic applications or tight bend radii.
How to choose
When selecting tubing, first define the fluid or gas being transported and its operating pressure and temperature range. This dictates the required material (e.g., polyurethane for air, PTFE for aggressive chemicals, stainless steel for high pressure). Next, determine the necessary flow rate to establish the appropriate Inner Diameter (ID), which in turn, along with the pressure rating, will define the Outer Diameter (OD) and wall thickness. Consider the installation environment: Will the tubing be static or dynamic? Does it require resistance to abrasion, UV, or specific chemicals? Finally, evaluate flexibility requirements for routing and bending, as this will influence material choice and minimum bend radius. For example, polyurethane offers high flexibility, while stainless steel is rigid.