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Mechanical Metallurgy Course

Mechanical Metallurgy Course
from 4 to 360h flexible workload
valid certificate in your country

What will I learn?

Gain a targeted skill set in mechanical metallurgy focused on turbine blade failure analysis, nickel superalloy performance at elevated temperatures, and interpreting stress-strain data under real service loads. Master deformation processes, essential design verifications, safety evaluations, test planning, and microstructural analysis to support informed material selections.

Elevify advantages

Develop skills

  • Diagnose turbine blade failures by spotting low-cycle fatigue, high-cycle fatigue, creep, and creep-fatigue risks.
  • Interpret nickel superalloy data swiftly from S-N curves, creep charts, and technical datasheets.
  • Extract key design values like yield strength, proof strength, and safety margins from stress-strain curves.
  • Plan high-temperature tests including tensile, creep, low-cycle fatigue, and thermal-mechanical fatigue following ASTM and ISO standards.
  • Estimate component life and safe limits using fatigue and creep analysis methods for turbine blades.

Suggested summary

Before starting, you can change the chapters and workload. Choose which chapter to start with. Add or remove chapters. Increase or decrease the course workload
Workload: between 4 and 360 hours

What our students say

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Very great course. Lots of rich information.
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