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Steel Pipe Weight Chart 2026 – lb/ft & kg/m by Schedule

Steel Pipe Weight Chart: lb/ft & kg/m by Schedule | ConcreteCalculate.com
Plain End Steel Pipe Weight Reference (ASME B36.10)

Steel Pipe Weight Chart
lb/ft & kg/m by Schedule

Plain end weight for welded and seamless wrought steel pipe, with the exact formula, worked examples, and water filled weight calculations.

NPS 1/8″ to 12″+Schedule 10 to 160Weight FormulaWater Filled WeightUpdated August 2026
Muhammad Ramzan BabarReviewed by Muhammad Ramzan Babar, PhD Researcher & Calculator Developer · View Profile
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Plain end weight is the standard basis

All values in this chart represent plain end, bare carbon steel pipe weight per ASME B36.10, before coating, threading, flanges, fittings, or contents. Actual installed or shipped weight will be higher; see the sections on coating, water filled weight, and theoretical versus actual weight below.

⭐⭐⭐ Steel Pipe Weight Chart: Quick Reference

Plain end weight per ASME B36.10 for common Schedule 40 steel pipe sizes.

NPSDNODScheduleWall ThicknessWeight lb/ftWeight kg/m
1/8″60.405″400.068″0.240.36
1/4″80.540″400.088″0.420.63
3/8″100.675″400.091″0.570.84
1/2″150.840″400.109″0.851.27
3/4″201.050″400.113″1.131.68
1″251.315″400.133″1.682.50
1-1/4″321.660″400.140″2.273.38
1-1/2″401.900″400.145″2.724.04
2″502.375″400.154″3.655.44
3″803.500″400.216″7.5811.27
4″1004.500″400.237″10.7916.06
6″1506.625″400.280″18.9728.24
8″2008.625″400.322″28.5542.49
10″25010.750″400.365″40.4860.25
12″30012.750″400.406″53.5379.65
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Standards basis

ASME B36.10 provides dimensions and plain end weights/masses for welded and seamless wrought carbon and alloy steel pipe. Values shown are calculated using the standard formula and verified against multiple independently published B36.10 based references.

⭐ What Is Steel Pipe Weight?

Steel pipe weight is the mass of the bare pipe material per unit length.

Weight vs mass

Weight is commonly expressed in lb/ft in U.S. construction practice, while mass is commonly expressed in kg/m in metric practice. Both describe the same physical quantity using different unit conventions.

Why weight varies

Pipe weight depends on outside diameter, wall thickness (which is set by schedule), steel density, and the length of pipe being weighed.

Key variables

NPS, OD, wall thickness, schedule, and material density are the core inputs; end condition (plain end vs threaded and coupled) also affects actual supplied weight.

Answering “how much does it weigh”

Weight cannot be answered from NPS alone; both the schedule and the actual OD/wall combination must be known.

⭐⭐⭐ Steel Pipe Weight Formula

The theoretical relationship behind every value in this chart.

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The formula

W (lb/ft) = 10.6802 × t × (OD − t), where t is wall thickness in inches and OD is outside diameter in inches. This constant is derived from carbon steel density (approximately 0.2836 lb per cubic inch) combined with the geometric conversion from square inches to a per foot basis.

VariableMeaningUnit
ODOutside diameterInches
tWall thicknessInches
10.6802Constant combining steel density and unit conversionlb/ft per in²
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Theoretical formula, not a substitute for tabulated standard values

This formula gives a close approximation consistent with ASME B36.10 tabulated values, but always use the actual standard table or manufacturer data for final engineering, procurement, or shipping decisions.

⭐⭐⭐ Steel Pipe Weight Calculation Example

Demonstrating that the formula and the standard tabulated value agree closely.

2 Inch Schedule 40 Steel Pipe

Given: OD = 2.375 in, wall thickness = 0.154 in.Calculation: W = 10.6802 x 0.154 x (2.375 minus 0.154) = 10.6802 x 0.154 x 2.221 = 3.65 lb/ft, matching the published ASME B36.10 tabulated value of approximately 3.65 lb/ft (5.44 kg/m).
Determine NPS.

Identify the nominal pipe size.

Determine OD.

Look up the standard actual outside diameter for that NPS.

Determine wall thickness.

Identify the wall thickness for the specific schedule.

Calculate cross-sectional steel area.

Use the annular ring area between OD and ID.

Apply steel density.

Multiply by the applicable material density.

Convert to lb/ft or kg/m.

Express the result in the desired unit convention.

⭐⭐⭐ Schedule 40 Steel Pipe Weight Chart

The most commonly referenced steel pipe weight series.

NPSOD (in)Wall (in)Weight (lb/ft)Weight (kg/m)
1/2″0.8400.1090.851.27
3/4″1.0500.1131.131.68
1″1.3150.1331.682.50
1-1/4″1.6600.1402.273.38
1-1/2″1.9000.1452.724.04
2″2.3750.1543.655.44
3″3.5000.2167.5811.27
4″4.5000.23710.7916.06
6″6.6250.28018.9728.24
8″8.6250.32228.5542.49
10″10.7500.36540.4860.25
12″12.7500.40653.5379.65

⭐⭐⭐ Schedule 80 Steel Pipe Weight Chart

Always heavier than Schedule 40 at the same NPS due to thicker walls.

NPSOD (in)Wall (in)Weight (lb/ft)Weight (kg/m)
1/2″0.8400.1471.091.62
3/4″1.0500.1541.472.19
1″1.3150.1792.173.23
1-1/4″1.6600.1913.004.46
1-1/2″1.9000.2003.635.40
2″2.3750.2185.027.47
3″3.5000.30010.2515.26
4″4.5000.33714.9822.30
6″6.6250.43228.5742.52
8″8.6250.50043.3964.57
10″10.7500.59364.3395.73
12″12.7500.68788.51131.72

⭐⭐⭐ Schedule 160 Steel Pipe Weight Chart

The heaviest common schedule series for standard pressure piping.

NPSOD (in)Wall (in)Weight (lb/ft)Weight (kg/m)
1/2″0.8400.1871.311.95
1″1.3150.2502.854.24
2″2.3750.3447.4611.10
4″4.5000.53122.5133.50
6″6.6250.71945.3567.48
8″8.6250.90674.71111.19

⭐⭐⭐ STD, XS & XXS Steel Pipe Weight

These are alternative wall designations within ASME B36.10, not additional schedule numbers.

STD (Standard Weight)

Matches Schedule 40 wall thickness and weight for NPS 1/8 through 10. At NPS 12 and larger, STD diverges from Schedule 40, generally becoming relatively thinner at a given size as Schedule 40 continues increasing.

XS (Extra Strong)

Matches Schedule 80 wall thickness and weight for NPS 1/8 through 8. At NPS 10 and larger, XS diverges from Schedule 80 and uses its own fixed wall thickness and corresponding weight.

XXS (Double Extra Strong)

The heaviest wall designation, available only across a limited range of NPS sizes, not the full range offered by Schedule 40/80/160.

NPSOD (in)STD Weight (lb/ft)XS Weight (lb/ft)XXS Weight (lb/ft)
1/2″0.8400.851.091.71
2″2.3753.655.029.03
4″4.50010.7914.9827.54
6″6.62518.9728.5753.16

⭐⭐⭐ Schedule 40 vs Schedule 80 Weight Comparison

The practical implications of choosing a heavier schedule.

NPSSch 40 (lb/ft)Sch 80 (lb/ft)Weight Increase
2″3.655.02+37%
3″7.5810.25+35%
4″10.7914.98+39%
6″18.9728.57+51%
8″28.5543.39+52%
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Implications of the weight increase

Heavier schedule pipe requires stronger lifting equipment, closer support spacing consideration, higher shipping costs, and greater handling effort. A 6 inch Schedule 80 run can weigh over 50 percent more than the same length of Schedule 40, which materially affects crane capacity and support design assumptions.

⭐⭐⭐ Steel Pipe Weight by NPS

Quick individual reference for commonly searched sizes.

1/2 inch steel pipe

OD 0.840 in. Sch 40: 0.85 lb/ft (1.27 kg/m). Sch 80: 1.09 lb/ft (1.62 kg/m).

1 inch steel pipe

OD 1.315 in. Sch 40: 1.68 lb/ft (2.50 kg/m). Sch 80: 2.17 lb/ft (3.23 kg/m).

2 inch steel pipe ⭐⭐⭐

OD 2.375 in. Sch 40: 3.65 lb/ft (5.44 kg/m). Sch 80: 5.02 lb/ft (7.47 kg/m). Sch 160: 7.46 lb/ft (11.10 kg/m).

3 inch steel pipe ⭐⭐⭐

OD 3.500 in. Sch 40: 7.58 lb/ft (11.27 kg/m). Sch 80: 10.25 lb/ft (15.26 kg/m).

4 inch steel pipe ⭐⭐⭐

OD 4.500 in. Sch 40: 10.79 lb/ft (16.06 kg/m). Sch 80: 14.98 lb/ft (22.30 kg/m). Sch 160: 22.51 lb/ft (33.50 kg/m).

6 inch steel pipe ⭐⭐⭐

OD 6.625 in. Sch 40: 18.97 lb/ft (28.24 kg/m). Sch 80: 28.57 lb/ft (42.52 kg/m).

8 inch steel pipe ⭐⭐⭐

OD 8.625 in. Sch 40: 28.55 lb/ft (42.49 kg/m). Sch 80: 43.39 lb/ft (64.57 kg/m).

12 inch steel pipe ⭐⭐⭐

OD 12.750 in. Sch 40: 53.53 lb/ft (79.65 kg/m). Sch 80: 88.51 lb/ft (131.72 kg/m).

⭐⭐⭐ Steel Pipe Weight Unit Conversion

Essential conversions for switching between imperial and metric weight units.

ConversionFormulaExample
lb/ft to kg/mkg/m = lb/ft x 1.488163.65 lb/ft = 5.43 kg/m
kg/m to lb/ftlb/ft = kg/m ÷ 1.488165.44 kg/m = 3.66 lb/ft
lb/ft to lb/inlb/in = lb/ft ÷ 123.65 lb/ft = 0.304 lb/in
lb/ft to total weightTotal lb = lb/ft x length (ft)3.65 lb/ft x 20 ft = 73.0 lb

⭐⭐⭐ Steel Pipe Weight and Material Density

Theoretical weight calculations depend directly on the assumed material density, which varies by steel type.

MaterialDensity (lb/in³)Density (g/cm³)Common Standard
Carbon steel0.28367.85ASTM A53 / A106, ASME B36.10
Stainless steel 3040.28907.99ASTM A312 TP304, ASME B36.19
Stainless steel 3160.29008.02ASTM A312 TP316, ASME B36.19
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Do not assume every steel has identical density

Stainless steel is slightly denser than carbon steel, meaning a stainless pipe of identical dimensions weighs slightly more. Keep stainless steel pipe weight calculations separate from the carbon steel table above; consult ASME B36.19 and the applicable stainless material density for accurate stainless steel pipe weight, rather than mixing it into the primary carbon steel table.

Carbon steel pipe weight

The primary material covered by this chart, using 0.2836 lb/in³ density and ASME B36.10 dimensional data.

Stainless steel pipe weight

Uses a slightly higher density (approximately 0.289 to 0.290 lb/in³ depending on grade) and ASME B36.19 dimensional tables, which can differ from B36.10 at certain sizes and schedules.

⭐⭐⭐ Steel Pipe Weight With Water

Total filled pipe weight is significantly higher than empty pipe weight and matters for supports and hydrotest planning.

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Water filled weight formula

Total filled weight equals empty pipe weight plus water weight, where water weight per unit length equals (π/4) times ID squared times water density (approximately 62.4 lb/ft³ or 1000 kg/m³). Contents, insulation, coating, lining, flanges, and water can substantially increase actual system weight beyond the bare plain end pipe weight.

NPS (Sch 40)Empty Weight (lb/ft)Water Weight (lb/ft)Total Filled Weight (lb/ft)
2″3.650.994.64
4″10.793.6114.40
6″18.978.1027.07
8″28.5513.9442.49

⭐⭐⭐ Theoretical vs Actual Steel Pipe Weight

Three related but distinct weight concepts that should never be confused.

ConceptBasis
Theoretical weightCalculated directly from OD, wall thickness, and assumed material density using the geometric formula
Standard tabulated weightPublished in the governing dimensional standard, such as ASME B36.10, reflecting the standard’s own rounding and reference basis
Actual weightThe real measured weight of a specific manufactured pipe, which can vary due to manufacturing tolerance, actual material density, end preparation, and coating
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Use manufacturer data for final procurement

For final engineering design, shipping calculations, or crane lift planning, use the specific manufacturer’s actual weight data rather than relying solely on theoretical or generic tabulated values.

⭐⭐ Coating, Fittings, Insulation & Lining

None of these are included in the base plain end weight table.

Galvanized pipe weight

Zinc coating adds mass beyond bare steel weight; the exact addition depends on coating thickness and the specific galvanizing process, so no single universal percentage applies to every product.

Paint and epoxy coating

Adds a comparatively small amount of weight versus bare steel, but should still be accounted for in precise weight calculations for coated pipe systems.

Internal lining

Cement mortar lining, epoxy lining, or other internal linings add weight and also reduce effective internal diameter and flow area.

Insulation and cladding

Insulation and its protective cladding add substantial weight to a piping system beyond the bare pipe, particularly relevant for hot or cold service line support design.

Fittings, flanges, and valves

Elbows, tees, flanges, couplings, and valves are not represented in the straight pipe weight table and require separate weight data from their specific manufacturer or applicable dimensional standard.

Plain end vs threaded and coupled

Threading removes some material at the pipe end, while couplings add material; actual supplied weight for threaded and coupled (T&C) pipe differs from the plain end weight shown in the base B36.10 table.

⭐⭐⭐ Weight per Length & Bundle Weight

Weight per foot must be multiplied by actual purchased length for real quantities.

NPS 4″ Sch 40 (10.79 lb/ft)LengthTotal Weight
Single length1 ft10.79 lb
Single length10 ft107.9 lb
Single length20 ft215.8 lb
Single length21 ft226.6 lb
Single length40 ft431.6 lb
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No universal commercial pipe length

Actual commercial pipe lengths vary by manufacturer and product (commonly cited around 20 or 21 feet random length, but not universal); always confirm actual purchased length rather than assuming a fixed standard.

Bundle weight

Total bundle weight equals number of pipes multiplied by weight per pipe (weight per foot times length), important for crane capacity and transport planning.

Shipping considerations

Bare pipe weight, packaging, bundling material, and any coating together determine actual shipping weight, which can meaningfully exceed the plain end theoretical weight.

Bundle of Schedule 40 steel pipes marked ASTM A53/A53M, loaded on a flatbed trailer for construction and industrial use.

⭐⭐⭐ Supports, Lifting & Hydrostatic Testing

Pipe weight is a critical but not sole input into support design and lifting safety.

Pipe supports

Support load calculations must consider empty pipe weight, operating contents, insulation, hydrotest water, and any attached valves or fittings together, not bare pipe weight alone.

Hydrostatic testing ⭐⭐⭐

Water filled hydrotest weight can be significantly greater than empty pipe weight, since water adds substantial mass; this hydrotest condition can govern support loads even when it is not the normal operating condition.

Lifting

Lifting calculations require actual pipe weight, length, attached fittings, slings, coating, and any contents; this chart provides a starting weight reference only and does not itself constitute a lifting safety determination.

Support spacing

Support spacing depends on pipe size, material, contents, temperature, applicable code, support type, and deflection criteria together; pipe weight alone does not determine correct spacing.

⭐⭐⭐ Steel Pipe Weight for Structural Applications

Structural round hollow sections may follow different standards than process piping schedules.

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Do not assume every round HSS matches a pipe schedule

Structural round HSS products can follow different dimensional and weight standards than ASME B36.10 process pipe. Confirm the applicable structural specification before using a generic process-pipe schedule chart for structural design or weight calculations.

Construction applications ⭐⭐⭐

Steel pipe weight matters for pipe supports, concrete pump systems, temporary piping, water lines, structural applications, equipment specification, and material handling on construction sites.

Weight vs steel vs copper vs PVC

Steel pipe is meaningfully heavier per foot than PVC pipe of comparable size, and copper tube uses an entirely different sizing convention; see the PVC Pipe Size Chart and Copper Pipe Size Chart for those material-specific dimensions before comparing weight across materials.

⭐⭐⭐ Steel Pipe Weight Visual Guide

Original diagrams explaining the weight formula, schedule comparison, and empty vs filled weight.

ODIDtWeight = 10.6802 x t x (OD – t) lb/ft
Steel pipe cross-section showing OD, ID, and wall thickness t, the geometric basis for the weight formula.
Sch 40: 3.65 lb/ftSch 80: 5.02 lb/ft
Same 2 inch NPS, but Schedule 80 weighs approximately 37 percent more than Schedule 40 due to its thicker wall.
Empty: 10.79 lb/ftFilled: 14.40 lb/ft
4 inch Schedule 40 pipe weighs significantly more when filled with water, an important consideration for hydrotest loads.

⭐⭐⭐ Steel Pipe Weight Worked Examples

These examples demonstrate the calculation and conversion process.

1. 2 Inch Schedule 40

Given: OD = 2.375 in, wall = 0.154 in.Result: 3.65 lb/ft, approximately 5.44 kg/m.

2. 4 Inch Schedule 40

Given: OD = 4.500 in, wall = 0.237 in.Result: 10.79 lb/ft, approximately 16.06 kg/m.

3. 6 Inch Schedule 80

Given: OD = 6.625 in, wall = 0.432 in.Result: 28.57 lb/ft, approximately 42.52 kg/m.

4. Calculate 20 Foot Pipe Weight

Given: 4 inch Schedule 40 pipe at 10.79 lb/ft, 20 foot length.Result: 10.79 x 20 = 215.8 lb total.

5. Convert lb/ft to kg/m

Given: 18.97 lb/ft.Result: 18.97 x 1.48816 = 28.23 kg/m.

6. Calculate Water Filled Pipe Weight

Given: 4 inch Schedule 40 pipe (10.79 lb/ft empty, ID approximately 4.026 in).Result: water weight = (π/4) x 4.026² x 62.4/144 = approximately 3.61 lb/ft; total filled weight = 10.79 + 3.61 = 14.40 lb/ft.

⭐⭐⭐ Common Steel Pipe Weight Mistakes

Most weight calculation errors trace back to one of these misunderstandings.

❌ Confusing NPS with actual OD

Nominal pipe size and actual outside diameter differ for NPS 12 and smaller.

❌ Assuming Schedule 40 has one weight for every size

Weight increases substantially with NPS, from 0.24 lb/ft to over 50 lb/ft.

❌ Confusing lb/ft with total pipe weight

Weight per foot must be multiplied by actual length for total weight.

❌ Confusing kg/m with kg per pipe

Same issue in metric units; multiply by actual length in meters.

❌ Ignoring wall thickness

OD alone cannot determine weight; wall thickness (schedule) is equally essential.

❌ Ignoring pipe length

Weight per unit length is not the same as the weight of an actual purchased piece.

❌ Treating theoretical weight as exact shipping weight

Manufacturing tolerance and coating change actual shipped weight.

❌ Ignoring coating

Galvanizing, paint, and lining all add weight beyond bare steel.

❌ Ignoring fittings

Elbows, tees, flanges, and valves are not included in straight pipe weight.

❌ Ignoring contents

Water filled weight can be substantially higher than empty pipe weight.

❌ Using carbon steel density for stainless steel

Stainless steel has a slightly higher density than carbon steel.

❌ Confusing STD, XS, and XXS

These match specific schedules only within limited size ranges, then diverge.

Frequently Asked Questions

It depends on NPS, OD, wall thickness, and schedule; for example, 2 inch Schedule 40 weighs approximately 3.65 lb/ft.
Varies by size, from about 0.24 lb/ft at 1/8 inch to over 50 lb/ft at 12 inch; there is no single universal value.
Also varies by size, and is always heavier than Schedule 40 at the same NPS.
Approximately 3.65 lb/ft, or about 5.44 kg/m.
Approximately 10.79 lb/ft, or about 16.06 kg/m.
Approximately 18.97 lb/ft, or about 28.24 kg/m.
Calculate the annular cross-sectional steel area from OD and wall thickness, multiply by length and density, or use the simplified formula 10.6802 times t times (OD minus t) for lb/ft.
W (lb/ft) = 10.6802 x t x (OD minus t), with t and OD in inches, based on carbon steel density.
Multiply lb/ft by 1.48816.
Weight (lb/ft) and mass (kg/m) describe the same physical quantity using different unit conventions.
Yes, at the same NPS, due to its thicker wall.
Standard Weight, matching Schedule 40 for NPS 1/8 through 10, then diverging at larger sizes.
Extra Strong, matching Schedule 80 for NPS 1/8 through 8, then diverging at larger sizes.
No, standard tabulated weight is bare plain end pipe only.
Theoretical weight is calculated from ideal geometry; actual weight can vary due to manufacturing tolerance, material, and coating.

📄 Download Steel Pipe Weight Chart PDF

This PDF is a genuine field reference. Use the print button to create a print-ready or downloadable version.

NPS, DN, OD, wall thicknessSchedule 40 weight chartSchedule 80 weight chartSchedule 160 weight chartSTD, XS, XXS weightlb/ft and kg/mWeight formulaConversion formulasPlain end definitionCommon sizesWorked examples

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