Design precision alloys from 16 elements. Run Vickers hardness tests. Control CCT cooling curves. Complete foundry commissions from Apprentice to Journeyman rank.
Download Zkvir MlyznEducational simulation tool. All metallurgical models based on scientific principles. Results are approximations for learning purposes.
Combine up to 16 metallic elements including Iron, Copper, Carbon, and Chromium. Watch real-time temperature readings as your custom alloy reaches 1311°F and beyond.
Perform indent assays measuring force in kiloNewtons. Simulate Pull and Etch testing modes to analyze grain structure and mechanical properties of your created alloys.
Manipulate four-point cooling curves in the Quench module. Select quench medium and run heat treatment simulations based on continuous cooling transformation principles.
Complete real-world metallurgy tasks: bearing race hardening, bell casting resonance, solder joint creation, and coin blank ductility. Progress from Apprentice to Journeyman rank.
Reference BCC lattice diagrams for Iron with detailed property data: density 7.87 g/cm³, melting point 1538°C, and phase elongation measurements at 80 HV.
Built on Hall-Petch hardness equations, Andrews martensite-start calculations, and binary phase diagram interpolation for authentic materials science education.
Zkvir Mlyzn transforms complex materials science into hands-on experimentation. The simulation engine applies authentic metallurgical principles to help engineering students, hobbyists, and curious learners understand how element composition affects final alloy properties without requiring laboratory access or specialized equipment. Each module mirrors real foundry procedures adapted for mobile learning.
The crucible simulation interpolates binary phase diagrams to predict solidification behavior as multiple elements combine. Temperature display updates in real-time based on composition ratios and thermodynamic calculations derived from established materials databases.
Quench curves utilize continuous cooling transformation theory. Drag the four control points to design custom cooling profiles, then select a quench medium. The engine calculates resulting microstructures and properties using Andrews equations for martensite formation temperature.
Assay module implements Hall-Petch relationships to predict hardness from grain size. Indent testing shows Vickers values in HV units. Pull testing simulates tensile strength. Etch testing reveals grain boundary structure through virtual microscopy visualization.
iOS platform | Free download | Educational simulation | Updated 05.10.2026
Download Zkvir MlyznRequires iOS device. Scientific models included. Suitable for materials science education and self-directed learning. No laboratory equipment needed.