Tube & Structural Tube
Round, square and rectangular tube in steel, aluminum and stainless.
Also searched as: square tuberound tubedom tubestructural tubebox section
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A513 Carbon Steel Round Tube
Wall Thickness: 0.065 in
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ABS Plastic Square Tube
Color: WhiteLength: 250 mmSide 1: 3-6 mmSide 2: 3-6 mm
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ASTM A500 Grade B Rhs Shs Steel Square Tube
Shape: SquareStandard: ASTM A500 Grade B
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ASTM A513 1026 Cold Drawn DOM Tube Honing Precision Cylinder Pipe Seamless Alloy Carbon Steel Tube
Outside Diameter: 21.3-1420mmWall Thickness: 2.11-300mm
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ASTM A513 1026 DOM Tube Honed Cylinder Pipe Seamless
Construction: SeamlessFinish: HonedGrade: 1026Standard: ASTM A513Type: DOM
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ASTM A513 1026 DOM Tube Honed Cylinder Pipe Seamless Carbon Steel Tube
Grade: 1026Standard: ASTM A513
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Alloy 1020/1026 DOM Steel Round Tubing, 1.125"
Outside Diameter: 1.125 inShape: Round
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Alloy 1020/1026 DOM Steel Round Tubing, 1.5" X 0.095"
Outside Diameter: 1.5 inShape: RoundWall Thickness: 0.095 in
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Aluminium Square Tube Box Section T6 100mm x 100mm x 3mm
Outer Dimensions: 100mm x 100mmShape: SquareWall Thickness: 3mm
from $23.54eBay $23.54 -
Aluminum Alloy Square Tube
Size: 20x20mm, 25x25mm
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Aluminum Extrusion Round Tube Profile
Outer Diameter: 200 mm+Shape: Round
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Aluminum Round Tube
Shape: Round
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Aluminum Round Tube 6061
Grade: 6061Length: 100-500 mmOuter Diameter: 36-39 mmWall Thickness: 1-13.5 mm
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Aluminum Round Tube 6063 T5
Grade: 6063 T5Inner Diameter: 20-35 mmOuter Diameter: 45 mmWall Thickness: 5-12.5 mm
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Aluminum Square Tube
Length: 6 ftWidth: 1 in
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Black Round Stainless Steel Tube
Diameter: 25 mmLength: 2 meter
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Black Steel Box Section Rectangular Tube
Shape: RectangularSize: 50 x 50
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Cable/Tube Clip Tab8
Overall Height: 20.2 mmOverall Length: 32.6 mm
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Carbon Steel Rectangular Tube
Outside Width: 6 inWall Thickness: 0.375 in
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Carbon Steel Rectangular Tube
Outside Width: 3 inWall Thickness: 0.12 in
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Carbon Steel Seamless Square Tube
Construction: Seamless
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Carbon Steel Square Tube
Outside Width: 1 inWall Thickness: 0.065 in
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Carbon Steel Square Tube
Outside Width: 4 inWall Thickness: 0.375 in
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Carbon Steel Square Tube
Side Length: 65 mm
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Clear Hollow Round Plastic Tube
Length: 250 mmOuter Diameter: 8-20 mm
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Cold Drawn Welded Tube Made of Drawn Over Mandrel
Construction: WeldedProcess: Cold DrawnType: Drawn Over Mandrel
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Cold Rolled DOM Seamless Steel Tube
Diameter: 6-20mmLength: 12m
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Compression and Bending Resistance Structural Tube
Resistance: Compression and Bending
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Copper Round Tube
Length: 498 mmOuter Diameter: 2-28 mmWall Thickness: 0.5-2 mm
About tube & structural tube
Tube and structural tube are hollow profiles utilized in construction, mechanical assemblies, and architectural applications for their strength-to-weight ratio and rigidity. This category encompasses round, square, and rectangular cross-sections, primarily manufactured from steel (including mild steel, DOM, and various alloys), aluminum (e.g., 6061-T6, 6063-T5), and stainless steel (e.g., 304, 316). Key selection parameters include outside diameter (OD) or side dimensions, wall thickness (gauge), and overall length. Steel tubing often conforms to standards such as ASTM A500 for cold-formed welded and seamless carbon steel structural tubing, or ASTM A513 for electric-resistance-welded carbon and alloy steel mechanical tubing. Aluminum tubing frequently adheres to ASTM B221 or B429. Surface finishes vary from mill finish to galvanized, painted, or anodized, depending on corrosion resistance and aesthetic requirements. DOM (Drawn Over Mandrel) tubing is characterized by its superior concentricity, dimensional accuracy, and smooth internal and external surfaces, making it suitable for hydraulic cylinders and precision shafts. Structural tube, often referred to as box section, is designed for load-bearing applications where high strength and torsional rigidity are critical.
How to choose
Selecting the appropriate tube begins with defining the application's structural requirements. First, determine the necessary cross-sectional shape: round for fluid transfer or aesthetics, square/rectangular for structural framing and torsional rigidity. Second, specify the material based on strength, weight, and environmental exposure; steel offers high strength, aluminum provides a lighter alternative, and stainless steel ensures corrosion resistance. Third, calculate the required outer dimensions (OD for round, side length for square/rectangular) and wall thickness to meet load-bearing and deflection criteria. Thicker walls increase strength but also weight and cost. Finally, consider the manufacturing process (e.g., seamless for pressure, DOM for precision) and any required surface finishes for environmental protection or appearance.