Crystalline Structure Course
Gain expertise in FCC and BCC crystal structures, packing efficiency, slip systems, and creep behaviour to forecast density, strength, and performance at high temperatures. Transform atomic-level knowledge into smarter alloy design, failure prediction, and key decisions in advanced materials and chemistry, with practical tools for real-world application.

flexible workload of 4 to 360h
valid certificate in your country
What will I learn?
This course offers a quick, hands-on way to master FCC and BCC lattices, unit cell shapes, coordination numbers, and packing factors. You'll learn to calculate theoretical density, atomic packing factors, and atoms per unit cell, then link them to slip systems, critical resolved shear stress, strength, ductility, creep, and high-temperature properties, using practical examples, tools, and key references for immediate use.
Elevify advantages
Develop skills
- Master lattice geometry: swiftly visualise and analyse FCC and BCC unit cells in 3D.
- Perform density and APF calculations: rapidly determine packing efficiency and theoretical density for FCC and BCC.
- Analyse slip systems: forecast slip activation, CRSS, and ductility patterns in FCC and BCC structures.
- Understand dislocations and creep: connect lattice flaws to material strength and high-temperature creep resistance.
- Grasp basics of turbine alloy design: align crystal structures with creep and oxidation requirements.
Suggested summary
Before starting, you can change the chapters and the workload. Choose which chapter to start with. Add or remove chapters. Increase or decrease the course workloadWhat our students say
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