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Calculating the Durability and Fatigue of Mechanical Components

Fee: $1,595 / Online / Apr 22 - 23, 2027 / Course Code: 17-0424-ONL27

OVERVIEW

Please note, This instructor-led course has specific dates and times:

This course is held online over 2 days on the following schedule (All times in Eastern Time Zone): 9:30 am to 5:30 pm Eastern (Including breaks)

By the end of this course, you will be able to:

  • Evaluate fatigue damage mechanisms across different materials and loading conditions
  • Select and apply appropriate fatigue life prediction methods for low-cycle and high-cycle regimes
  • Analyze the influence of stress concentration, environment, and loading parameters on fatigue performance
  • Assess fatigue behaviour of welded joints and implement strategies to improve service life
  • Apply fracture mechanics principles to estimate crack initiation and propagation under cyclic loading

Description

Mechanical components subjected to cyclic loading can fail unexpectedly if fatigue behaviour is not properly accounted for. In practice, accurately predicting fatigue life requires more than applying standard formulas—it demands a clear understanding of material response, loading conditions, stress concentrations, and environmental effects. Misjudging these factors can lead to premature failure, safety risks, and costly redesigns.

This course addresses the practical challenges of fatigue life assessment in engineering design and analysis. You will examine how intrinsic material properties and extrinsic factors such as geometry, surface condition, and operating environment influence fatigue performance. The course also explores the behaviour of welded joints, cumulative damage, and fatigue performance under elevated temperatures, including creep-fatigue interaction.

Through structured methods and applied examples, you will learn how to evaluate fatigue life using both analytical approaches and finite element results. The course introduces fracture mechanics concepts to support crack propagation assessment, including Paris law behaviour and conditions approaching critical stress intensity. By the end of the course, you will be equipped with practical tools to make informed, defensible decisions about fatigue life and structural integrity in real-world engineering applications.

Who This Course Is For

This course is designed for:

  • Mechanical and structural engineers involved in design, analysis, or failure assessment
  • Engineers and consultants working with fatigue-critical components or systems
  • Engineers in training seeking applied understanding of fatigue and fracture behaviour
  • Technical professionals responsible for assessing reliability, safety, or service life of components
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