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Lecture 8: Metals and Cheeses - Uncoventional Pairings
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MIT 22.033 Nuclear Systems Design Project, Fall 2011 - Lecture 8: Metals and Cheeses - Uncoventional Pairings

Explore Innovative Energy Solutions: Dive into Nonconventional Reactors, Process Heat Challenges, and Revolutionary Biofuel Designs with MIT OpenCourseWare!

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What you'll learn

Understand the principles and applications of nonconventional nuclear reactors.
Analyze the major challenges associated with process heat applications.
Design and optimize hydrogen and biofuel production processes.
Apply quality function deployment techniques in engineering design.

This course includes

  • 7.5 hours of video
  • Certificate of completion
  • Access on mobile and TV

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MIT 22.033 Nuclear Systems Design Project, Fall 2011 View the complete course: http://ocw.mit.edu/22-033F11 Instructor: Dr. Michael Short License: Creative Commons BY-NC-SA More information at http://ocw.mit.edu/terms More courses at http://ocw.mit.edu 0:00 Introduction 2:57 What's the Deal? 3:51 Metallic Crystal Structures 4:02 Grains: More Examples 5:18 Intergranular (IG) Fracture 6:12 IG Fracture Side by Side 7:53 Supersaturation, Precipitation 10:07 Phase Precipitation Side by Side 10:41 Phase Precipitation in Steel 13:36 SPPs and Fracture Surfaces 14:03 Creep Lifetime and Failure 21:11 Defects and Stress Concentration 23:56 Crack Stress Concentration Map 24:25 Uniaxial Tensile Cheese Specimen 25:09 Cheese Fracture Surface 27:51 Fracture Surfaces Side by Side 28:31 Sensitization, IG Corrosion 31:41 Sensitization of Stainless Steels 32:39 Sensitization of Alloy 600 33:04 IGSCC of Alloy 600TT 34:26 The Structure of Blue Cheese

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