# 130x16FL Flat Bar

> Source page: [https://steelinfo.au/flat-bar/130x16fl/](https://steelinfo.au/flat-bar/130x16fl/)

AS/NZS 3679.1 Grade 300

The **130x16FL** is a flat bar to AS/NZS 3679.1. It is 130 × 16.0 mm, has a mass of 16.3 kg/m and a gross area of 2080 mm². Its major-axis second moment of area is I_x = 0.0444 × 10⁶ mm⁴ and in Grade 300 (f_y = 300 MPa) its section moment capacity is φM_sx = 2.2 kNm. Download its free [DXF drawing](https://steelinfo.au/flat-bar/130x16fl/130x16fl.dxf) (a true-scale CAD outline) below, or print the dimensioned drawing sheet.

Also written as: 130 x 16 flat bar, 130x16 FL

[DXF (AutoCAD R12)](https://steelinfo.au/flat-bar/130x16fl/130x16fl.dxf) · [SVG drawing](https://steelinfo.au/flat-bar/130x16fl/130x16fl.svg) · [JSON data](https://steelinfo.au/flat-bar/130x16fl/130x16fl.json)

## Dimensions

**130x16FL dimensions**

| Symbol | Property | Value | Unit |
|---|---|---|---|
| b | Width | 130 | mm |
| t | Thickness | 16.0 | mm |

## Section properties

**130x16FL section properties**

| Symbol | Property | Value | Unit |
|---|---|---|---|
| m | Mass per metre (nominal) | 16.3 | kg/m |
| A_g | Gross cross-section area | 2080 | mm² |
| I_x | Second moment of area about x-axis | 0.0444 | 10⁶ mm⁴ |
| Z_x | Elastic section modulus, x-axis | 5.55 | 10³ mm³ |
| S_x | Plastic section modulus, x-axis | 8.32 | 10³ mm³ |
| r_x | Radius of gyration, x-axis | 4.6 | mm |
| I_y | Second moment of area about y-axis | 2.93 | 10⁶ mm⁴ |
| Z_y | Elastic section modulus, y-axis | 45.1 | 10³ mm³ |
| S_y | Plastic section modulus, y-axis | 67.6 | 10³ mm³ |
| r_y | Radius of gyration, y-axis | 37.5 | mm |
| J | Torsion constant | 164 | 10³ mm⁴ |
| A_s | External surface area per metre | 0.292 | m²/m |
| A_s/t | External surface area per tonne | 17.9 | m²/t |

Axes: x-x is parallel to the wide face (weak axis); y-y is the strong axis.

## Design capacities to AS 4100

**AS 4100 design capacities – Grade 300**

| Symbol | Property | Value | Unit |
|---|---|---|---|
|  | Steel grade | 300 (AS/NZS 3679.1) |  |
| f_y | Yield stress used | 300 | MPa |
| f_u | Tensile strength | 440 | MPa |
| k_f | Form factor (Cl. 6.2.2) | 1.000 |  |
|  | Section class, x-axis (Cl. 5.2) | Compact |  |
| Z_ex | Effective section modulus, x-axis | 8.32 | 10³ mm³ |
| φM_sx | Section moment capacity, x-axis | 2.2 | kNm |
|  | Section class, y-axis | Compact |  |
| Z_ey | Effective section modulus, y-axis | 67.6 | 10³ mm³ |
| φM_sy | Section moment capacity, y-axis | 18.3 | kNm |
| φN_s | Section compression capacity (Cl. 6.2.1) | 562 | kN |
| φN_t | Tension capacity, gross section (Cl. 7.2, k_t=1, A_n=A_g) | 562 | kN |
| α_b | Compression member section constant (Table 6.3.3) | 0.5 |  |

## Relevant Australian Standards

- **AS/NZS 3679.1:2016** Structural steel – Part 1: Hot-rolled bars and sections — Specifies chemical composition, mechanical properties and tolerances for hot-rolled universal beams and columns, channels, angles, flats and bars in Grades 300 and 350.
- **AS 4100:2020** Steel structures — The Australian design Standard for steel members and connections. Covers section classification (Section 5), member moment capacity including lateral-torsional buckling (5.6), shear (5.11), axial compression (Section 6), tension (Section 7) and combined actions (Section 8).

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 16.33 kg/m. Verify against current manufacturer literature before use in design. Spotted an error? [Report it](mailto:info@steelinfo.au?subject=Data%20error%3A%20130x16FL).

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From SteelInfo (https://steelinfo.au/flat-bar/130x16fl/), 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.
