Shotcrete Mix Design Engineer

Shotcrete Mix Design Engineer MCP Connector for Claude

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Calculate precise shotcrete mix proportions, fiber dosages, and accelerator requirements.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing shotcrete mixtures used in tunnel support, mining, and slope stabilization. It allows AI agents to calculate core material volumes using calculate_mix_proportions, determine reinforcement needs with calculate_fiber_dosage, and manage chemical additives via calculate_accelerator_dosage. Additionally, it helps account for material waste by using estimate_rebound_loss to adjust total volumes based on application methods like wet or dry mix.

shotcretecivil-engineeringmining-supportmix-designtunneling

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

calculate_accelerator_dosage

Calculate the chemical accelerator requirement based on the application method and environmental factors

calculate_mix_proportions

Determine core material volumes required for a specific shotcrete application

calculate_fiber_dosage

Determine the amount of reinforcement fibers needed to meet ductility requirements

estimate_rebound_loss

Calculate the extra material required to account for waste during spraying

See how to talk to your AI agent using Shotcrete Mix Design Engineer.

Calculate the mix proportions for a wet-mix shotcrete with a required strength of 35 MPa using sand and gravel.

The required mix proportions are: cement content: 420 kg/m³, water content: 185 kg/m³, aggregate content: 1550 kg/m³, for a total volume of 1.0 m³.

What is the fiber dosage for a synthetic fiber reinforcement with a target ductility of 5.0?

The required fiber dosage is 5.5 kg/m³, resulting in a fiber volume fraction of 0.008.

Estimate the rebound loss for a dry-mix application using high-precision nozzle technique.

The estimated rebound is 12% with a volume multiplier of 1.136.

Use the `calculate_mix_proportions` tool, providing the required strength in MPa, the application method (wet or dry), and the available aggregate types.

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