Udemy - 3D Printing Failure Analysis and Process Optimization

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Udemy - 3D Printing Failure Analysis and Process Optimization (Size: 3.7 GB)
  Bonus Resources.txt 102.4 B
  Get Bonus Downloads Here.url 204.8 B
  ~Get Your Files Here !
  1 - Introduction to 3D Printing Failure Analysis
  1. Introduction.mp4 26.4 MB
  2 - Root Cause Analysis Techniques
  3 - Material vs Machine Failure
  10. Machine-Related Failures.mp4 269.4 MB
  11. Environmental Factors.mp4 246.3 MB
  4 - Process Optimization Theory
  12. Parameter Optimization Fundamentals.mp4 152.3 MB
  13. Temperature Management.mp4 127.4 MB
  14. Speed and Flow Rate Optimization.mp4 166.8 MB
  5 - Advanced Failure Modes and Diagnostics
  15. Layer Adhesion Failures.mp4 156.2 MB
  16. Dimensional Accuracy Issues.mp4 182.7 MB
  17. Surface Quality Defects.mp4 158.1 MB
  6 - Real Case Studies and Examples
  18. Case Study 1 Aerospace Component Failure (USA).mp4 177.6 MB
  19. Case Study 2 Medical Device Production (UK).mp4 181 MB
  20. Example 1 Automotive Prototyping (Germany).mp4 143 MB
  21. Example 2 Architectural Model Production (Australia).mp4 155.5 MB
  7 - Check Your Kmowledge
  1. Self Assessment Quiz.html 28.7 KB
  9. Material Properties and Failure Mechanisms.mp4 177.8 MB
  5. The 5-Why Analysis Method.mp4 184.8 MB
  6. Fishbone (Ishikawa) Diagram Analysis.mp4 148.8 MB
  7. Failure Mode and Effects Analysis (FMEA).mp4 188.8 MB
  8. Fault Tree Analysis (FTA).mp4 150.7 MB
  2. Course Overview and Objectives.mp4 356.2 MB
  3. Understanding 3D Printing Technologies.mp4 233.3 MB
  4. Common Failure Categories.mp4 178.2 MB

Description


3D Printing Failure Analysis & Process Optimization
https://WebToolTip.com
Published 7/2026

Created by NextGen 3D

MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch

Level: Beginner | Genre: eLearning | Language: English | Duration: 21 Lectures ( 2h 39m ) | Size: 3.7 GB
Diagnose defects, stop warping & stringing, apply SPC & QA methods, and master FDM troubleshooting with real cases
What you'll learn

⚡ Identify, classify, and diagnose dimensional, surface, and structural 3D printing defects

⚡ Eliminate warping, stringing, oozing, and layer shifting through proven root-cause solutions

⚡ Optimize retraction, temperature, bed adhesion, and mechanical settings for reliable prints

⚡ Apply Statistical Process Control, control charts, and Cpk to maintain process stability

⚡ Implement pre-print, in-process, and post-print quality assurance and inspection workflows

⚡ Build documentation and traceability systems used in regulated, professional manufacturing
Requirements

❗ Access to or basic familiarity with a 3D printer (FDM recommended but not required)

❗ No prior quality control or engineering background needed; concepts explained from the ground up

❗ Willingness to learn troubleshooting, calibration, and process-thinking fundamentals

❗ A notebook or device for recording print settings and quality observations

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