How Things Break: Fatigue (Video On Demand)

Course Number: F-4013V
Credit: 4 PDH
Subject Matter Expert: Raymond M. Burynski, Jr., P.E.
Type: Video on Demand - video is streamed directly to your computer.
Price: $119.80 Use Reward Tokens and Save
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Overview
This Video on Demand course is a recording of a live webinar. As a recording of a live event, you will hear the discussion that occurred between the instructor and those who attended this webinar.

In How Things Break: Fatigue (Video On Demand), you'll learn ...

  • The basic mechanisms of fatigue failure
  • The response of various materials to cyclic loading
  • How designers can estimate and reduce the effects of fatigue
  • Case studies of fatigue failures

Overview

PDHengineer Course Preview

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Credit: 4 PDH

Fatigue occurs when a material experiences repeated applications of a relatively low stress. Designers have long been aware that materials can become “tired,” and as early as 1829 Wilhem Augustus Julius Albert performed the first metal fatigue experiments in response to failures at the Clausthal Mines.

To this day, fatigue remains one of the leading causes of in-service component failure. Since fatigue failures can occur without warning, proper design is critical.

It’s important to understand the difference between failure and fatigue, so that’s where we begin the webinar. After establishing that difference, we’ll explore four design philosophies that engineers use when planning for fatigue:

  • Infinite Life Design
  • Safe Life Design
  • Fail Safe Design
  • Damage Tolerant Design

This course presents an overview of the material fatigue phenomenon, along with the methods used by engineers to estimate component life under cyclic loading.

The study is brought to life with several case studies presented to illustrate the concepts.

Learning Objectives

Upon completion of this course, participants will be able to:

  • Explain the fundamentals of fatigue failure
  • Describe the characteristics of various materials under cyclic loading
  • Identify visual indications of fatigue on fracture surfaces
  • Interpret S-N curves
  • Explain the influence of environment and geometry on fatigue
  • Describe the effect of manufacturing processes on component life
  • Apply calculation methods to estimate component life
  • Identify design practices that can extend the life of cyclically loaded components
  • Analyze case studies of fatigue failures

PDH Credits

Webinars earn PDH credits for engineers in all jurisdictions, unless otherwise stated in the literature for a specific webinar, and are accepted as "live" courses by engineering boards with a requirement for "live" training.

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Board Acceptance
This course is applicable to professional engineers in:
Alabama (P.E.) Alaska (P.E.) Arkansas (P.E.)
Delaware (P.E.) District of Columbia (P.E.) Florida (P.E. Area of Practice)
Georgia (P.E.) Idaho (P.E.) Illinois (P.E.)
Illinois (S.E.) Indiana (P.E.) Iowa (P.E.)
Kansas (P.E.) Kentucky (P.E.) Louisiana (P.E.)
Maine (P.E.) Maryland (P.E.) Michigan (P.E.)
Minnesota (P.E.) Mississippi (P.E.) Missouri (P.E.)
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PDHengineer Course Preview

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Credit: 4 PDH

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