Centrifugal Concentrator Design Tool

Centrifugal Concentrator Design Tool MCP Connector for Claude

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Design centrifugal concentrator circuits by calculating unit capacity, circuit configuration, and fluidization parameters.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing centrifugal concentrator circuits, such as Falcon or Knelson units. It allows AI agents to calculate the processing capacity of individual units using calculate_unit_capacity, determine the total number of units required via design_circuit_configuration, optimize water flow and pressure with optimize_fluidization_parameters, and predict operational timing using estimate_operational_cycle. It is designed to bridge mineral processing requirements with automated circuit design.

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

calculate_unit_capacity

Determines the processing capacity of a single concentrator unit based on particle and grade requirements

design_circuit_configuration

You can optionally provide a redundancy factor. Determines the total number of concentrator units and the total system footprint required for a specific throughput

estimate_operational_cycle

Predicts the timing of the concentration cycle and the frequency of concentrate reclamation

optimize_fluidization_parameters

Calculates the required fluidization water flow and pressure to maintain an active bed for a given particle size

See how to talk to your AI agent using Centrifugal Concentrator Design Tool.

Calculate the capacity for a unit with 2% feed grade, 75 micron particles, and 85% target recovery at 60G.

The unit capacity is 12.5 TPH with a recommended G-force of 60G and a theoretical recovery of 85%.

How many units do I need for a 100 TPH feed if each unit handles 25 TPH?

You will need 4 units to process a 100 TPH feed rate.

What are the fluidization requirements for 50 micron particles at 80G and 90% concentrate grade?

The required water flow rate is 45 Lpm with a fluidization pressure of 1.2 Bar, resulting in a bed stability index of 0.85.

You can use the `design_circuit_configuration` tool. Provide the total feed rate and the capacity of a single unit to get the required number of units and the estimated footprint.

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