Vertical Mill Sizing

Vertical Mill Sizing MCP Connector for Claude

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Calculate dimensions, power, and media charge for vertical stirred mills.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for sizing vertical stirred mills like Vertimill or SMD. It allows AI agents to calculate critical parameters including mill diameter and height using calculate_mill_dimensions, determine electrical requirements with calculate_power_requirement, and optimize grinding media using optimize_media_charge. It also includes evaluate_mill_efficiency to assess performance against production targets.

mineral-processinggrindingvertimillsmdmechanical-engineering

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

calculate_mill_dimensions

Determine the physical size (diameter and height) of the mill required to process a specific load

calculate_power_requirement

Determine the electrical and mechanical power necessary to drive the mill

evaluate_mill_efficiency

Assess how well a specific mill configuration meets the grinding target

optimize_media_charge

Find the ideal mass and volume of grinding media to maximize grinding efficiency

See how to talk to your AI agent using Vertical Mill Sizing.

What are the dimensions for a mill processing 50 tph of ore with a work index of 15, target size of 75 microns, and media density of 4500 kg/m3?

The required mill dimensions are a diameter of 2.5 meters and a height of 4.2 meters, with a total volume of 21.1 m3.

How much power is needed for a 3m diameter, 5m high mill grinding ore with a work index of 12 at 15 rpm?

The required power is 450 kW with a motor rating of 500 kW.

Calculate the optimal media charge for a mill with 2.5m diameter and 4m height for an ore with work index 14 and media density 4000 kg/m3.

The optimal media mass is 12,500 kg with a media volume of 3.125 m3, resulting in a fill level of 25%.

To use `calculate_mill_dimensions`, you need the ore work index, target product size, required throughput, and media density.

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