Blasting Pattern Design Engine

Blasting Pattern Design Engine MCP Connector for Claude

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Calculate optimized blast parameters for mining operations.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for open-pit and underground mining design. It allows AI agents to calculate critical blast parameters including burden, spacing, and hole depth. Users can determine explosive loading requirements and timing sequences, while ensuring safety through vibration and flyrock risk assessments. Use calculate_pattern_geometry to define hole layouts and validate_safety_constraints to ensure compliance with site limits.

miningexplosivesblast-designsafetygeotechnical

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

analyze_rock_suitability

Evaluates if the selected explosive type is appropriate for the given rock properties

calculate_pattern_geometry

Determines the spatial layout of the blast holes

compute_loading_and_timing

Calculates the amount of explosive needed and the sequence of detonation

validate_safety_constraints

Checks the design against vibration limits and flyrock risks

See how to talk to your AI agent using Blasting Pattern Design Engine.

Calculate the blast pattern geometry for a 10m bench height with a 3m burden and 4m spacing using a 102mm hole diameter.

The calculated pattern includes a burden of 3.0m, spacing of 4.0m, and a hole depth of 10.0m.

Is a charge weight of 50kg per delay safe for a structure 200m away with a vibration limit of 10mm/s and a 3m burden?

Yes, the design is safe with a predicted vibration of 4.2mm/s and a Low flyrock risk.

Determine the explosive loading for a 12m hole with 102mm diameter, 0.85g/cm3 explosive density, and 3m stemming.

The total charge weight is 76.5kg with a timing sequence of [0, 25, 50, 75].

You can use the `calculate_pattern_geometry` tool by providing the burden, spacing, hole diameter, and bench height.

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