Cathodic Protection Design

Cathodic Protection Design MCP Connector for Claude

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Design electrochemical cathodic protection systems for pipelines and structures using NACE standards.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing cathodic protection (CP) systems. It allows engineers to calculate electrical current requirements, design sacrificial anode configurations, size impressed current systems for large-scale infrastructure, and evaluate compliance with NACE safety standards. Use calculate_current_requirements to determine load, design_sacrificial_anode_system for sacrificial setups, size_impressed_current_system for powered systems, and assess_protection_compliance to verify electrochemical potential against industry thresholds.

nacepipelinecorrosionelectrochemicalengineering

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

assess_protection_compliance

Evaluates if the current design meets NACE safety and protection standards

calculate_current_requirements

Determines the total electrical current needed to protect a specific structure

design_sacrificial_anode_system

Calculates the configuration for a system using sacrificial anodes

size_impressed_current_system

Designs a powered (impressed current) system for large-scale infrastructure

See how to talk to your AI agent using Cathodic Protection Design.

Calculate the current needed for a 500 square meter structure with a 0.9 coating efficiency and 50 mA/m2 current density.

The total required current is 25 mA, with a bare surface area of 50 square meters.

Design a sacrificial anode system for a requirement of 100A in soil with 500 ohm-cm resistivity, using an anode with 2000 capacity, 5 year life, and 0.5 resistance.

The system requires 50 anodes with a total mass of 250 kg and a spacing of 10 meters.

Is a measured potential of -800mV compliant if the NACE threshold is -850mV?

No, the system is not compliant because the measured potential does not meet the required -850mV threshold.

The tool is designed to align with NACE (National Association of Corrosion Engineers) standards for electrochemical protection.

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