Regrind Circuit Designer

Regrind Circuit Designer MCP Connector for Claude

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Design optimal fine grinding circuits by selecting mill types and calculating power and media wear.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing regrind circuits in mineral processing. It allows AI agents to determine the most suitable grinding technology--such as calculate_mill_selection for choosing between IsaMill, Vertimill, or SMD--and calculate critical operational parameters. Users can use estimate_power_requirements to find energy needs, predict_media_consumption to forecast media wear costs, and evaluate_circuit_efficiency to assess the technical viability of a design based on target liberation and throughput.

mineral-processinggrinding-millsmetallurgycircuit-designpower-calculation

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

calculate_mill_selection

Determines the most suitable grinding technology for a specific grinding task

estimate_power_requirements

Calculates the energy needed to achieve the target liberation

evaluate_circuit_efficiency

Provides a high-level summary of the design's viability

predict_media_consumption

Forecasts the volume of grinding media lost to wear during operation

See how to talk to your AI agent using Regrind Circuit Designer.

Which mill should I use for a throughput of 500 tph and a target liberation of 20 microns with an ore hardness of 15?

The most suitable mill for these parameters is the IsaMill.

Calculate the power needed for an SMD mill processing 300 tph at 10 microns with hardness 12.

The total power required for the SMD mill is 4500 kW, with a power consumption of 15 kW per tonne.

Predict the media wear for a Vertimill with 400 tph throughput and an ore abrasiveness of 0.5.

The predicted media consumption rate is 0.02 kg/t, with an estimated annual cost of $12,000.

You can use the `calculate_mill_selection` tool, providing the target liberation, throughput, and ore hardness to find the optimal mill type.

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