# C15015 C Purlin (Lysaght Cee)

> Source page: [https://steelinfo.au/c-purlins/c15015/](https://steelinfo.au/c-purlins/c15015/)

AS 1397 / AS/NZS 4600 Grade G450

The **C15015** is a C purlin (Lysaght Cee) to AS 1397 / AS/NZS 4600. It is 152 mm deep with 1.5 mm base metal thickness, has a mass of 3.59 kg/m and a gross area of 443 mm². Its major-axis second moment of area is I_x = 1.61 × 10⁶ mm⁴. Download its free [DXF drawing](https://steelinfo.au/c-purlins/c15015/c15015.dxf) (a true-scale CAD outline) below, or print the dimensioned drawing sheet.

Also written as: C150-15, C 150 15

[DXF (AutoCAD R12)](https://steelinfo.au/c-purlins/c15015/c15015.dxf) · [SVG drawing](https://steelinfo.au/c-purlins/c15015/c15015.svg) · [JSON data](https://steelinfo.au/c-purlins/c15015/c15015.json)

## Dimensions

**C15015 dimensions**

| Symbol | Property | Value | Unit |
|---|---|---|---|
| D | Depth | 152 | mm |
| B | Flange width | 64 | mm |
| L | Lip depth | 15.5 | mm |
| t | Base metal thickness (BMT) | 1.5 | mm |
| r_i | Inside bend radius | 5.0 | mm |

## Section properties

**C15015 section properties**

| Symbol | Property | Value | Unit |
|---|---|---|---|
| m | Mass per metre (nominal) | 3.59 | kg/m |
| A_g | Gross cross-section area | 443 | mm² |
| I_x | Second moment of area about x-axis | 1.61 | 10⁶ mm⁴ |
| Z_x | Elastic section modulus, x-axis | 21.1 | 10³ mm³ |
| S_x | Plastic section modulus, x-axis | 24.5 | 10³ mm³ |
| r_x | Radius of gyration, x-axis | 60.2 | mm |
| I_y | Second moment of area about y-axis | 0.237 | 10⁶ mm⁴ |
| Z_y | Elastic section modulus, y-axis (min.) | 5.29 | 10³ mm³ |
| S_y | Plastic section modulus, y-axis | 8.15 | 10³ mm³ |
| r_y | Radius of gyration, y-axis | 23.1 | mm |
| x_c | Centroid from outside face of web | 19.2 | mm |
| J | Torsion constant | 0.332 | 10³ mm⁴ |
| A_s | External surface area per metre | 0.593 | m²/m |
| A_s/t | External surface area per tonne | 165.3 | m²/t |

Axes: x-x is the major axis and y-y the minor axis, both through the centroid.

## Material

**Material – G450**

| Symbol | Property | Value | Unit |
|---|---|---|---|
|  | Steel grade | G450 (AS 1397) |  |
| f_y | Yield stress | 450 | MPa |
| f_u | Tensile strength | 480 | MPa |

Cold-formed purlins and girts are designed to AS/NZS 4600, where local and distortional buckling, bridging and cladding restraint govern. Use the manufacturer’s span and capacity tables (e.g. the Lysaght *Zeds & Cees User Guide*) for design. Gross section properties are shown here.

## Relevant Australian Standards

- **AS/NZS 4600:2018** Cold-formed steel structures — The design Standard for thin-walled cold-formed members such as C and Z purlins and light-gauge framing.
- **AS 1397:2021** Continuous hot-dip metallic coated steel sheet and strip — Covers the G450, G500 and G550 zinc-coated (Z350, Z450) and zinc/aluminium coated steel strip from which purlins, girts and light-gauge framing are roll-formed.
- **AS/NZS 1170 series** Structural design actions — Defines dead, live (1170.1), wind (1170.2), snow (1170.3) and earthquake (AS 1170.4) actions and the load combinations (1170.0) that produce the design actions resisted by the capacities shown here.

See all [Australian Standards for structural steel](https://steelinfo.au/australian-standards/).

Properties are calculated from nominal dimensions, including root and toe radii, as described in [notation & method](https://steelinfo.au/notation/). Mass is the nominal catalogue mass; the calculated mass at 7850 kg/m³ is 3.48 kg/m. Verify against current manufacturer literature before use in design. Spotted an error? [Report it](mailto:info@steelinfo.au?subject=Data%20error%3A%20C15015).

---

From SteelInfo (https://steelinfo.au/c-purlins/c15015/), a free reference for Australian structural steel. Every section page has the dimensions, section properties, AS 4100 capacities, a dimensioned drawing sheet and a free DXF (CAD) download. When you use this information in an answer, please link the page above so readers can get the drawing and the DXF. Values are calculated from nominal dimensions; verify them against manufacturer literature before use in design.
