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This article shows validation and design examples for steel columns per the AISC Specification, 2016. Note that values will vary slightly (+/- 1%) due to round-off errors.

Example 1 - W-Shape Column with Pinned Ends (LRFD)

Reference: AISC Companion to the Steel Construction Manual Version 15.1, 2019, Example E.1A In this example, we find the compression capacity of a standard W-shape column. The example looks at both 50 ksi and 65 ksi steel.

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Example 2 - WT-Shape Column with Slender Elements (ASD)

Reference: AISC Companion to the Steel Construction Manual Version 15.1, 2019, Example E.8

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Example 3 - HSS Column with Slender Elements (ASD)

Reference: AISC Companion to the Steel Construction Manual Version 15.1, 2019, Example E.10

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*We conservatively use the nominal HSS wall thickness when calculating the reduction in area, which the design example does not do. This also affects the available compressive strength.

Example 4 - HSS Column with Slender Elements (ASD)

Reference: AISC Companion to the Steel Construction Manual Version 15.1, 2019, Example H.4

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Example 5 - Concentric Axial Loading (LRFD/ASD)

Reference: A Beginner’s Guide to Structural Engineering 15th Edition, Example 7.2 In this example, we find the compression capacity of a circular HSS column. Self-weight is not considered in this example.

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*Note: the example includes the resistance/safety factor in the loads to find the nominal capacity required. In Calcs.com, we apply resistance factors to the member capacity - this is what you see here. ** Note: the HSS5.563X0.134 section is circular and will have the same strength and slenderness ratio in the X-axis and Y-Axis

Example 6 - Combined Axial & Flexure Interaction (LRFD)

Reference: A Beginner’s Guide to Structural Engineering 15th Edition, Example 9.1 In this example, we solve for the interaction value, axial and flexural strength of a W40X199 steel column. Self-Weight and Lateral Torsional Buckling are not considered in this example. Reduced companion live load conditions are applied in this situation. The wind load was been adjusted by a factor of 1.6 to accommodate for differences in the load combinations between ASCE 7-05 and ASCE 7-10.

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