Concrete Corbel Design Tool

Concrete Corbel Design Tool MCP Connector for Claude

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Calculate structural reinforcement, shear friction, and bearing capacity for concrete corbels.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing concrete corbels. It calculates primary reinforcement using calculate_flexural_requirements, evaluates shear and interface stability with calculate_shear_and_friction, and verifies bearing pressure via calculate_bearing_capacity. Finally, verify_design_integrity ensures the complete design meets structural requirements and anchorage needs. It is designed for structural engineers to handle complex vertical and horizontal loading conditions.

concretecorbelstructural-engineeringreinforcementshear-friction

4 tools expose this connector's capabilities to your AI agent.

calculate_flexural_requirements

Determines the necessary steel reinforcement to resist bending moments

calculate_shear_and_friction

Evaluates the need for shear reinforcement and validates the interface stability

verify_design_integrity

Performs a holistic check of the calculated reinforcement against the geometry

calculate_bearing_capacity

Checks if the bearing area is sufficient to prevent concrete crushing under the load

See how to talk to your AI agent using Concrete Corbel Design Tool.

Calculate the reinforcement needed for a corbel with a 50kN vertical load, 10kN horizontal force, 200mm width, 400mm depth, 50mm eccentricity, 30MPa concrete, and 400MPa steel.

The required primary reinforcement area is 450 mm² with an anchorage length of 120 mm.

Check the bearing capacity for a 100kN load on a corbel that is 300mm wide and 300mm deep with 25MPa concrete.

The bearing pressure is 1.11 MPa, which is within the safe limits for 25MPa concrete.

Evaluate the shear and friction for a corbel with 60kN vertical load and 20kN horizontal force, 250mm width and 450mm depth, using 30MPa concrete and 400MPa steel.

The required shear reinforcement area is 115 mm² and the friction resistance is sufficient for the horizontal load.

The `calculate_flexural_requirements` tool accounts for the additional moment created by the horizontal force, ensuring the primary reinforcement is sufficient for combined loading.

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