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Mechanical Metallurgy Course

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

What will I learn?

Gain a targeted toolkit in this Mechanical Metallurgy Course to master turbine blade failure analysis, high-temperature performance of nickel-based superalloys, and stress-strain behaviour under real service conditions. Explore critical deformation mechanisms, perform practical design verifications, conduct safety evaluations, and learn to specify tests plus microstructural analysis for robust, evidence-based material choices in engineering applications.

Elevify advantages

Develop skills

  • Diagnose turbine blade failures by spotting LCF, HCF, creep, and creep-fatigue risks.
  • Interpret Ni-superalloy data quickly from S-N curves, creep charts, and datasheets.
  • Extract key design values like yield strength, proof strength, and safety margins from curves.
  • Plan high-temperature tests including tensile, creep, LCF, and TMF following ASTM and ISO standards.
  • Estimate component life and limits using fatigue and creep methods for safe blade loading.

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 workload
Workload: between 4 and 360 hours

What our students say

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