Fin Flex Dynamics Analyzer

Fin Flex Dynamics Analyzer MCP Connector for Claude

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Analyzes fin deformation, recoil timing, and speed vs control balance.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools to analyze the hydrodynamic performance of fins. By inputting material properties and dimensions, you can use get_flex_pattern to determine shape deformation, get_recoil_timing to calculate energy return speed, and get_performance_balance to evaluate the trade-off between speed and control. It also includes analyze_material_compatibility to ensure structural integrity between core and outer materials.

fin-flexhydrodynamicsmaterial-scienceperformancesurfing

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

analyze_material_compatibility

Checks if a specific core material is suitable for the chosen outer fin material

get_flex_pattern

Determines the physical shape deformation characteristics of a fin

get_performance_balance

Evaluates the trade-off between speed and maneuverability/control

get_recoil_timing

Calculates how quickly the fin snaps back to its resting state

See how to talk to your AI agent using Fin Flex Dynamics Analyzer.

What is the flex pattern for a fiberglass fin with a 10cm base and 5mm tip thickness using a carbon core?

The flex pattern for a fiberglass fin with those dimensions and a carbon core is a high-response parabolic deformation with a stiffness rating of Medium-High.

How fast will a fin with a thin tip and elastic core snap back?

A fin with a thin tip and a highly elastic core will have a very fast recoil timing and a high energy return rate.

Is a polyurethane shell compatible with a heavy resin core?

Yes, the materials are compatible, providing high structural integrity and efficient flex performance.

You can calculate the flex pattern, the recoil timing (energy return), the speed vs control balance, and check if different materials are compatible.

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