Glass Composition Calculator

Glass Composition Calculator MCP Connector for Claude

A+

Predict glass properties and calculate batch formulations.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools for glass manufacturing and material science. It allows AI agents to calculate precise batch formulations from target oxide compositions using get_batch_formulation. Users can predict physical behaviors such as flow resistance with calculate_viscosity, estimate thermal expansion via predict_thermal_properties, and evaluate the stability of chemical mixes with analyze_composition_stability to prevent unwanted crystallization.

glasschemistrymaterials-sciencemanufacturingphysics

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

calculate_viscosity

Predicts the flow resistance of a specific glass composition at a specific temperature

analyze_composition_stability

Evaluates if a specific oxide mix will form a stable glass or a crystalline material

get_batch_formulation

Converts a target oxide percentage composition into a practical raw material recipe

predict_thermal_properties

Estimates the thermal expansion behavior of the glass

See how to talk to your AI agent using Glass Composition Calculator.

Calculate the batch formulation for a composition of 70% SiO2 and 30% Na2O using standard sand and soda ash.

To achieve 70% SiO2 and 30% Na2O, you will need 145.2kg of Sand and 62.8kg of Soda Ash for a total batch weight of 208.0kg.

What is the viscosity of a glass with 75% SiO2 at 1200 degrees Celsius?

The predicted viscosity at 1200°C for this composition is 4.52 Pa·s.

Is a composition of 80% SiO2 and 20% CaO stable?

The stability score is 0.92, indicating a highly stable glass with no significant risk of devitrification.

Use the `get_batch_formulation` tool by providing your target oxide percentages and the available raw materials in your inventory.

Related Connectors