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Remaining Available Seats
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11-30 November
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"Discover the power of ProtaStructure Suite 2024, where design, modeling, analysis, and detailing converge in a single, seamless click. Elevate your structural engineering to new heights of efficiency and precision."

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White Paper February 13, 2024

Column Punching Shear Checks (BS8110 & EC 2)

Column Punching Shear Checks with ProtaStructure
Column punching shear checks are essential when designing reinforced concrete slabs and foundations. These checks ensure that slabs or footings can withstand concentrated forces without failing at the column-slab interface. ProtaStructure simplifies the process with an interactive design tool. This tool is tailored for punching shear checks and helps engineers ensure safety and compliance with design codes.

Unlike batch runs, automated calculations may miss critical nuances. ProtaStructure’s interactive tool allows engineers to make precise adjustments. They can perform punching shear checks for individual columns or groups of similar columns. This ensures design settings match specific conditions. The tool supports compliance with British Standards (BS) and Eurocode (EC), while allowing flexibility for unique projects.

How Punching Shear Checks Work in ProtaStructure

The process of column punching shear checks involves several steps:

  1. Column Selection: Identify a single column or a group of similar columns for analysis.
  2. Load Input: Include axial forces and moments obtained from the building analysis.
  3. Shear Resistance Evaluation: Calculate the slab or footing’s punching shear resistance based on material properties, column geometry, and slab thickness.
  4. Code Compliance Checks: Compare punching shear resistance to applied stresses as per BS and Eurocode.
  5. Interactive Adjustments: Adjust reinforcement layouts, slab thickness, or column dimensions to meet design criteria.

Numerical Examples Based on Design Codes

For instance, consider a square column under a slab. The analysis requires checking key parameters such as slab effective depth and punching shear perimeter. Using British Code or Eurocode, ProtaStructure calculates if additional reinforcement is needed to avoid punching shear failure.

Real-World Applications

ProtaStructure’s punching shear tool has been used in many real-world projects. It ensures safety and compliance in structural designs. Visit our Project Gallery to explore structures modeled with ProtaStructure.

Inspiring Customer Success Stories show how engineers use ProtaStructure to streamline punching shear checks. These stories highlight efficient and reliable design solutions worldwide.

Why Interactive Punching Shear Design Matters

Automated tools alone cannot guarantee safety in punching shear checks. Complex design codes require tailored adjustments. ProtaStructure’s interactive approach helps engineers adapt designs to specific conditions. This ensures safety, reliability, and compliance in every project.

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