- Key Properties
- Design Criteria
- Loads
- Summary and Graphs
1. Key Properties

A. Member Type
Calcs.com gives the user the opportunity to use a custom member size if they wish. If ‘no’ is selected for the use of custom members, the user is provided with a drop-down list industry-standard size members from which a member can be selected.
B. Total Column Height
The total height of the column needs to be given In millimetres (mm).C. Lateral and Torsional Unbraced and Effective Lengths
The first column of this table refers to the bracing type, which is of 3 categories. Torsional bracing restricts movement about the z-axis, while x-axis and y-axis lateral bracing restricts movement about the x and y-axes respectively. The orientation of the axes is given by the diagram on the left.
The second column requires the user to input the unbraced length in mm for each of the bracing types. By default, this is set equal to the column height. However, if additional bracing is used, the unbraced length will be smaller than the column height. It may be useful to enter user formulas for these unbraced lengths, such as “L/2” if the column is braced at midheight.
The third column is allocated for the effective length factor, which by default is assumed to be equal to 1; this is usually conservative, and is equal to assuming pin-type restraints. However, if the column’s restraints provide moment restraint (analogous to a fixed restraint), then this factor may be lower.
Effective Unbraced Length = Unbraced Length x Effective Length Factor
D. Position of Supports From Bottom

E. Frame Type
In this section, the user can choose between a braced frame and a sway frame for their design. In a sway frame, the structure as a whole is allowed to sway laterally while in a braced frame such movement is effectively restrained. See AS 4100:1998, Cl 4.1.2 for a more detailed definition.2. Design Criteria
Deflection Limit Absolute Criterion: This is the hard maximum deflection allowed for the column, regardless of span length, and applied to all load cases. Extension Limit Absolute Criterion: This is the hard maximum extension allowed for the column.3. Loads

A. Axial, Point & Moment Loads


B. Lateral Distributed Loads


C. Default Axial Load Eccentricity
What is Axial Load Eccentricity? Generally, axial loads (i.e. loads acting vertically downwards) act through the centre of a column. However, in some cases, the load can act off the centre of the column and cause bending in addition to compression of the column. Axial load eccentricity refers to the horizontal distance between the centre of the column and the line of action of the axial load. Axial Load Eccentricity Options in Calcs.com
- ‘Corner Face’ assumes default eccentricity to be the corner of the member plus a 100mm (not common in steel)
- ‘Capped’ assumes default eccentricity to be equal to the face of the member
- ‘Pure Compression’ assumes zero eccentricity. The calculator is set to pure compression by default
- ‘Custom’ allows the user to specify the default eccentricity as needed
- ‘X-axis Face’ assumes default eccentricity to be the face of the flange plus a 100mm
- ‘Y-axis Face’ assumes default eccentricity to be the face of the web plus a 100mm
D. Include Self-Weight
The user can choose whether or not they include the self-weight of the column in their calculations. The calculator is set to include the self-weight by default unless the user specifies otherwise.E. Character of Imposed Load

4. Summary & Graphs
The summary section the key parameters of your calculation will be outlined. In the graphs section, the user can select whether or not they include the load duration factor k1 in the plots and select the load case that they would like the see in their graph (e.g.: 1.2G 1.5Q). The user can also specify whether they want the axial compression capacity graphed on the plot. A sample of the summary and graphs produced during calculations can be seen in the examples given below.Examples
Task 1
Design a steel stud with the following characteristics- for residential application
- 4m in height with no lateral restraints and a braced frame
- member type: 150 UB 14.0 - Gr. 300PLUS
- fixed base and a roller support at the top
- an axial load at the top: 6kN dead load and 10kN live load
- assume zero eccentricity and therefore zero bending
- include self-weight
Method





Summary & Graphs

