Snowboard Laminate Analyzer

Snowboard Laminate Analyzer MCP Connector for Claude

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Calculates snowboard performance metrics like stiffness, torsional rigidity, and impact resistance based on laminate layup.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides advanced mechanical analysis for snowboard construction. By inputting layer thicknesses, fiber orientations, and material types, you can use get_stiffness_profile to determine longitudinal flex, get_torsional_rigidity to evaluate twist resistance, and get_impact_resistance_rating to assess durability. It also includes analyze_layup_composition for a high-level structural summary.

snowboardcompositelaminatemechanical-analysiscarbon-fiber

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

analyze_layup_composition

Provides a high-level summary of the material distribution and structural balance

get_impact_resistance_rating

Evaluates the durability and energy absorption capacity of the laminate stack

get_stiffness_profile

Determines the longitudinal flex characteristics of the board based on the layup

get_torsional_rigidity

Calculates how much the board will resist twisting during high-speed turns

See how to talk to your AI agent using Snowboard Laminate Analyzer.

What is the stiffness profile for a layup with three 0.5mm carbon layers at 0 degrees?

The total longitudinal stiffness is high, resulting in a Stiff flex category.

Calculate the torsional rigidity for a layup with 0.5mm fiberglass layers at 45 degrees.

The torsional rigidity score is 0.75, providing a High twist resistance level.

Summarize this layup: 2mm of carbon at 0 degrees and 1mm of fiberglass at 45 degrees.

The total thickness is 3.0mm, with a carbon ratio of 0.66 and a fiberglass ratio of 0.33 across 2 layers.

You can use the `get_stiffness_profile` tool by providing the thickness, orientation, and material for each layer in your layup.

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