Metal & Material Weight Calculator
Pick a material and a shape, enter the section size and length, and get the weight in kg and lb plus the weight per meter and per foot.
Weight = cross-section area × length × density.
Use the Metal & Material Weight Calculator
Material and size
Area formula for this shape: W × T
Theoretical weight from nominal sizes. Rolled sections have corner fillets and mill tolerances, so a stock table can differ by a few percent.
Cross-section area by shape
Weight = area × length × density. Use the same unit for every dimension, then convert: 1 m³ of carbon steel weighs 7,850 kg, and 1 cm³ weighs 7.85 g.
| Shape | Area |
|---|---|
| Plate | W × T |
| Sheet | W × T |
| Flat bar | W × T |
| Round bar | π × D² ÷ 4 |
| Square bar | A² |
| Hexagon bar | 0.866 × AF² |
| Pipe / round tube | π × (OD − t) × t |
| Square tube | 4 × t × (A − t) |
| Angle (L section) | t × (A + B − t) |
| Channel (C section) | t × (H + 2F − 2t) |
| I-beam / H-beam | 2 × bf × tf + (h − 2 × tf) × tw |
Material densities used
| Material | Grade | kg/m³ | lb/in³ |
|---|---|---|---|
| Carbon steel | Mild / carbon steel (A36, S275) | 7,850 | 0.284 |
| Carbon steel | Alloy steel 4140 | 7,850 | 0.284 |
| Carbon steel | Tool steel D2 | 7,700 | 0.278 |
| Stainless steel | 304 / 304L | 7,930 | 0.286 |
| Stainless steel | 316 / 316L | 7,980 | 0.288 |
| Stainless steel | 430 | 7,700 | 0.278 |
| Stainless steel | 2205 duplex | 7,805 | 0.282 |
| Stainless steel | 17-4 PH | 7,780 | 0.281 |
| Aluminum | 6061 | 2,700 | 0.098 |
| Aluminum | 6063 | 2,690 | 0.097 |
| Aluminum | 5052 | 2,680 | 0.097 |
| Aluminum | 5083 | 2,660 | 0.096 |
| Aluminum | 3003 | 2,730 | 0.099 |
| Aluminum | 2024 | 2,780 | 0.100 |
| Aluminum | 7075 | 2,810 | 0.102 |
| Aluminum | 1100 | 2,710 | 0.098 |
| Iron | Cast iron (general) | 7,200 | 0.260 |
| Iron | Gray cast iron | 7,150 | 0.258 |
| Iron | Ductile iron | 7,100 | 0.257 |
| Iron | Wrought iron | 7,700 | 0.278 |
| Copper | Pure copper | 8,960 | 0.324 |
| Copper | C110 (ETP) | 8,890 | 0.321 |
| Brass | C360 free-cutting | 8,500 | 0.307 |
| Brass | C260 cartridge | 8,530 | 0.308 |
| Brass | C280 Muntz metal | 8,390 | 0.303 |
| Brass | C464 naval brass | 8,410 | 0.304 |
| Bronze | C510 phosphor bronze | 8,860 | 0.320 |
| Bronze | C932 bearing bronze | 8,910 | 0.322 |
| Bronze | C655 silicon bronze | 8,530 | 0.308 |
| Bronze | C954 aluminum bronze | 7,450 | 0.269 |
| Titanium | Grade 5 (Ti-6Al-4V) | 4,430 | 0.160 |
| Titanium | Grade 2 (commercially pure) | 4,510 | 0.163 |
| Nickel alloys | Nickel 200 / 201 | 8,890 | 0.321 |
| Nickel alloys | Monel 400 | 8,800 | 0.318 |
| Nickel alloys | Inconel 600 | 8,470 | 0.306 |
| Nickel alloys | Inconel 625 | 8,440 | 0.305 |
| Nickel alloys | Hastelloy C-276 | 8,890 | 0.321 |
| Zinc | Zinc | 7,140 | 0.258 |
| Lead | Lead | 11,340 | 0.410 |
| Concrete | Plain concrete | 2,400 | 0.087 |
| Concrete | Reinforced concrete | 2,500 | 0.090 |
| Concrete | Lightweight concrete | 1,800 | 0.065 |
| Concrete | Autoclaved aerated concrete | 600 | 0.022 |
| Glass | Soda-lime float glass | 2,500 | 0.090 |
| Glass | Borosilicate glass | 2,230 | 0.081 |
| Plastic | PVC (rigid) | 1,400 | 0.051 |
| Plastic | HDPE | 955 | 0.035 |
| Plastic | LDPE | 920 | 0.033 |
| Plastic | Polypropylene | 905 | 0.033 |
| Plastic | Nylon 6 | 1,150 | 0.042 |
| Plastic | Polycarbonate | 1,200 | 0.043 |
| Plastic | Acrylic (PMMA) | 1,180 | 0.043 |
| Plastic | ABS | 1,050 | 0.038 |
| Plastic | PTFE | 2,200 | 0.079 |
| Wood (12% moisture, approx.) | Southern yellow pine | 570 | 0.021 |
| Wood (12% moisture, approx.) | Douglas fir | 530 | 0.019 |
| Wood (12% moisture, approx.) | Spruce | 450 | 0.016 |
| Wood (12% moisture, approx.) | Western red cedar | 370 | 0.013 |
| Wood (12% moisture, approx.) | Red oak | 700 | 0.025 |
| Wood (12% moisture, approx.) | White oak | 760 | 0.027 |
| Wood (12% moisture, approx.) | Hard maple | 700 | 0.025 |
Quick answer
Weight = cross-section area × length × density. Work out the area of the shape, multiply by the length to get the volume, then by the material density (7,850 kg/m³ for carbon steel, 2,700 kg/m³ for 6061 aluminum).
Example: A 10 mm carbon steel plate, 1 m × 1 m: 1 × 1 × 0.010 m³ × 7,850 kg/m³ = 78.5 kg (173.1 lb). The same plate in 6061 aluminum weighs 27.0 kg.
Choose the material and shape, then enter your sizes.
Summary
The calculator finds the cross-section area of the chosen shape, multiplies it by the length for the volume, and multiplies the volume by the density of the material grade you select. It covers carbon, stainless and tool steel, aluminum alloys, cast and wrought iron, copper, brass, bronze, titanium, nickel alloys, zinc and lead, plus concrete, glass, plastics and wood, and accepts a custom density for anything else. Results are theoretical weights from nominal sizes: they leave out the corner radii of rolled sections and mill tolerances, so a stock table can differ by a few percent. Everything runs in your browser.
How it works
- Choose the material, then the grade or alloy. Pick "Custom density" if your material is not listed.
- Choose the shape: plate, sheet, flat bar, round bar, square bar, hexagon bar, pipe, square tube, angle, channel or I-beam.
- Enter the section dimensions shown for that shape and pick their unit (mm, cm or in).
- Enter the length and its unit, and the number of pieces.
- Read the total weight in kg and lb, the weight per meter and per foot, and the area and volume used.
Use cases
- Quote a fabrication job from the weight of plate, bar and tube on the cut list.
- Check whether a lift, rack, trailer or floor can take a bundle of pipe or bar.
- Compare the weight of the same part in steel, stainless and aluminum.
- Estimate freight for an order of angle, channel or beam sections.
- Find the weight per meter of a pipe or tube size that is not in your table.
- Work out the weight of a concrete, glass, plastic or timber part with the same shapes.