Magnetic Separation Design

Magnetic Separation Design MCP Connector for Claude

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Design optimal magnetic separation circuits by calculating field strength, equipment selection, and efficiency.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing magnetic separation circuits. It allows users to determine optimal magnetic field strength, select the correct equipment type (such as LIMS, MIMS, WHIMS, or HGMS), and predict separation efficiency based on mineral susceptibility, particle size, and throughput. Use design_separation_circuit to generate a full design, evaluate_equipment_suitability to verify machinery, or predict_efficiency_loss to account for physical factors like particle size and medium type.

magnetic-separationmineral-processingmetallurgycircuit-designefficiency-prediction

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

compare_wet_vs_dry_parameters

Provides a comparative analysis of how the separation performance would change if switching between wet and dry modes

evaluate_equipment_suitability

Determines if a specific piece of magnetic equipment is capable of handling the provided mineral characteristics

predict_efficiency_loss

Calculates the potential loss of target minerals due to specific environmental or physical factors

design_separation_circuit

Generates a complete magnetic separation design including field strength, equipment type, and predicted efficiency

See how to talk to your AI agent using Magnetic Separation Design.

Design a magnetic separation circuit for a mineral with 0.05 susceptibility, 50 micron particle size, and 100 tons per hour throughput using wet separation.

The recommended design requires a magnetic field strength of 0.8 Tesla using WHIMS equipment, with a predicted separation efficiency of 94.5%.

Is a LIMS equipment suitable for a mineral with 0.5 susceptibility and 200 micron particle size?

Yes, LIMS is suitable for this mineral profile with a high confidence score.

Compare wet vs dry separation for a mineral with 0.1 susceptibility and 40 micron particle size.

Wet separation is recommended for this fine particle size to maximize efficiency, providing a significant advantage over dry separation.

You can use the `design_separation_circuit` tool by providing the mineral susceptibility, particle size, throughput, and whether the process is wet or dry.

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