Hydrofoil Mast Structural Analysis

Hydrofoil Mast Structural Analysis MCP Connector for Claude

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Calculate mast bending, stress concentration, and material integrity for hydrofoil masts.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides engineering analysis for hydrofoil masts. It uses a cantilever beam model to determine how much a mast will bend under specific loads. Users can use calculate_deflection to find physical displacement, analyze_stress_concentration to identify structural risk points, check_material_integrity to verify safety margins for carbon or aluminum, and predict_return_to_true to estimate geometric recovery after loading.

Available Tools

calculate_deflection_tool, analyze_stress_concentration_tool, check_material_integrity_tool, predict_return_to_true_tool

hydrofoilengineeringcarbon-fiberaluminumstructural-analysisphysics

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

predict_return_to_true_tool

Estimates the mast's ability to recover its original geometry after unloading

analyze_stress_concentration_tool

Identifies the points of maximum structural risk along the mast

calculate_deflection_tool

Determines the physical displacement of the mast caused by an applied load

check_material_integrity_tool

Evaluates whether the specific material construction can safely handle the requested load

See how to talk to your AI agent using Hydrofoil Mast Structural Analysis.

How much will a 90cm carbon mast bend under a 500N load at a 90 degree angle?

The calculated deflection for the 90cm carbon mast is 12.4mm, with a moderate stress level.

Is a 75cm aluminum mast safe for a 1000N load?

The safety margin for the 75cm aluminum mast is 1.4, which is considered recreational usage.

Where is the highest stress on a 100cm mast if the load is applied 20cm from the base?

The peak stress is concentrated at 0cm from the base, with a critical risk factor.

You can use the `calculate_deflection` tool by providing the mast length, material type, applied load in Newtons, and the load angle. Tools available: `calculate_deflection_tool`, `analyze_stress_concentration_tool`, `check_material_integrity_tool`.

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