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Training

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Vibration Test Methods and Calculations

  • Fixed Frequency Vibration Tests
  • Frequency Sweep Vibration Tests
  • Random Vibration Tests
  • Random on Random Vibration Tests
  • Sine on Random Vibration Tests

 

 MIL-STD-167/1 Vibration Tests

  • Frequency Sweep Test Parameters
  • Sinusoidal Durability Test Parameters
  • Test Tolerances

 

MIL-STD-810G Method 514 Vibration Tests

  • Random Vibration Test Parameters
  • Categories

Estimating system response for all types of tests and transmissibility (via Calculation or MBD Analysis), fatigue strength analysis on critical parts (Matching material’s S-N Curves with fatigue stresses calculated with FEA or Cycle Counting Method.) Sample applications.

 

Shock Test Methods and Calculations

  • Classical Pulse Shape Shock Tests
  • SRS based Shock Tests

Estimating system response for all types of tests (via SRS Calculation and/or MBD Analysis) Yield Strength Analysis (Matching FEA and Yield Strength), Sample Applications.

MIL-STD-810G Method 516 Shock Tests

  • Classical Pulse Shape Shock Test Tolerances
  • SRS based Shock Test Tolerances
  • Test Procedures

 

MIL-S-901D Shock Tests

  • Testing Machines
  • Test Parameters
  • Standart Test Fixtures
  • Test Procedures

 

Test Fixture Design

  • Essentials of Designing
  • Dynamic Modes of Fixtures
  • Material Selection
  • Required Geometrical Specifications based on Testing System

 

Practical Shock and Vibration Laboratory Operation

  • Operating a Random Vibration Test on Electrodynamic Shaker
  • Operating a Classical Pulse Shock Test on Electrodynamic Shaker
  • Operating a SRS based Shock Test on Electrodynamic Shaker

 

Evaluation Exam

  • Simple Operations and Evaluation About Shock and Vibration Profiles

 

Taking the necessary precautions for the subcomponents of the system by predicting the acceleration response for a system with a certain shock test profile, evaluating the system response in terms of yield strength of critical areas on the system by providing input to the structural analysis.

Competencies of Education

Taking necessery precautions for sub-components of a system via predicting acceleration response of the system which vibration test profile is predetermined, providing the system response as input to the structural analysis, determining the repetitive strain characteristic of the critical regions on the system and the effect of the force, based on the Wöhler curve of the material, on the fatigue life of the system.

Who Should Attend The Training ?

  • Test Engineers, Design Engineers, Product Engineers
  • Test Laboratories, System Designers and Manufacturers

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