Tolerance Stack-up Analysis of GD&T-From Beginners to Stars
Tolerance Stack-up Analysis of GD&T-From Beginners to Stars, available at $59.99, has an average rating of 4.31, with 35 lectures, based on 541 reviews, and has 2877 subscribers.
You will learn about Course participants will be trained to apply tolerance stack-up analysis techniques to a wide variety of assemblies per GD&T requirements of ASME Y14.5-2018, from the very simple to the more complex situations commonly faced in industry today. Both plus and minus and geometrically toleranced assemblies will be examined and stack-up analysis taught and practiced on each. Many different datum structures will be discussed and analyzed. The concepts taught in this course are: loop analysis (also known as circuit diagrams), inner and outer boundaries, minimum gap, maximum wall thickness, maximum interference, minimum and maximum overall dimensions, fixed and floating fastener assembly conditions, projected tolerance zones, the logic of stack-up analysis, statistical tolerancing , and much more. This course is ideal for individuals who are Design Engineer, Product Engineer, Quality and Technical Staff It is particularly useful for Design Engineer, Product Engineer, Quality and Technical Staff.
Enroll now: Tolerance Stack-up Analysis of GD&T-From Beginners to Stars
Summary
Title: Tolerance Stack-up Analysis of GD&T-From Beginners to Stars
Price: $59.99
Average Rating: 4.31
Number of Lectures: 35
Number of Published Lectures: 35
Number of Curriculum Items: 35
Number of Published Curriculum Objects: 35
Original Price: $79.99
Quality Status: approved
Status: Live
What You Will Learn
- Course participants will be trained to apply tolerance stack-up analysis techniques to a wide variety of assemblies per GD&T requirements of ASME Y14.5-2018, from the very simple to the more complex situations commonly faced in industry today. Both plus and minus and geometrically toleranced assemblies will be examined and stack-up analysis taught and practiced on each. Many different datum structures will be discussed and analyzed. The concepts taught in this course are: loop analysis (also known as circuit diagrams), inner and outer boundaries, minimum gap, maximum wall thickness, maximum interference, minimum and maximum overall dimensions, fixed and floating fastener assembly conditions, projected tolerance zones, the logic of stack-up analysis, statistical tolerancing , and much more.
Who Should Attend
- Design Engineer, Product Engineer, Quality and Technical Staff
Target Audiences
- Design Engineer, Product Engineer, Quality and Technical Staff
Course participants will be trained to apply tolerance stack-up analysis techniques to a wide variety of assemblies per GD&T requirements of ASME Y14.5-2018, from the very simple to the more complex situations commonly faced in industry today. Both plus and minus and geometrically toleranced assemblies will be examined and stack-up analysis taught and practiced on each. Many different datum structures will be discussed and analyzed. The concepts taught in this course are: loop analysis (also known as circuit diagrams), inner and outer boundaries, minimum gap, maximum wall thickness, maximum interference, minimum and maximum overall dimensions, fixed and floating fastener assembly conditions, projected tolerance zones, the logic of stack-up analysis, statistical tolerancing , and much more.
Introduction
1 Introduction
Chapter 1 Linear Tolerance Stackup
2 Tolerance Stackup Briefing
3 Linear Tolerance Stackup
4 Case Study#1
5 Assembly Shift Tolerance Stackup
6 Case Study#2
Chapter 2 Geometric Tolerance Stackup
7 Geometric Tolerance Review
8 Profile Tolerance Stackup
9 Case Study#3
10 Position Tolerance Stackup
11 Case Study#4
12 Hole-Shaft Assembly Position Tolerance Stack-up
13 Case Study#5
14 Factors affecting Assembly Shift
Chapter 3 MMC/LMC Modifier Tolerance Stackup
15 MMC Modifier Tolerance Stackup
16 Case Study#6
17 LMC Modifier Tolerance Stackup
18 Case Study#7
Chapter 4 Datum and Tolerance Stackup
19 Form Tolerance of Datum Feature to Tolerance Stackup
20 Orientation Tolerance of Datum Feature to Tolerance Stackup
21 Case Study#8
22 Datum Shift Tolerance Stackup
23 SIM/SEP REQT Tolerance Stackup
24 Case Study#9
Chapter 5 Pattern TOP stackup
25 Projected Tolerance Zone to Tolerance Stackup
26 Pattern and Pattern as Datum
27 Case Study#10
28 Composite Tolerance Stackup
Chapter 6 Runout Tolerance Stackup
29 Runout Tolerance Stackup
30 Case Study#11
Chapter 7 Statistic Tolerance Stackup
31 Statistic Tolerance Stackup
32 Case Study#12
Comprehensive Case Study
33 Case Study#13
Final Exam
34 Final Exam
Course Curriculum
Chapter 1: Introduction
Lecture 1: Introduction
Chapter 2: Chapter 1 Linear Tolerance Stackup
Lecture 1: Tolerance Stackup Briefing
Lecture 2: Linear Tolerance Stackup
Lecture 3: Case Study#1
Lecture 4: Assembly Shift Tolerance Stackup
Lecture 5: Case Study#2
Chapter 3: Chapter 2 Geometric Tolerance Stackup
Lecture 1: Geometric Tolerance Review
Lecture 2: Profile Tolerance Stackup
Lecture 3: Case Study#3
Lecture 4: Position Tolerance Stackup
Lecture 5: Case Study#4
Lecture 6: Hole-Shaft Assembly Position Tolerance Stack-up
Lecture 7: Case Study#5
Lecture 8: Factors affecting Assembly Shift
Chapter 4: Chapter 3 MMC/LMC Modifier Tolerance Stackup
Lecture 1: MMC Modifier Tolerance Stackup
Lecture 2: Case Study#6
Lecture 3: LMC Modifier Tolerance Stackup
Lecture 4: Case Study#7
Chapter 5: Chapter 4 Datum and Tolerance Stackup
Lecture 1: Form Tolerance of Datum Feature to Tolerance Stackup
Lecture 2: Orientation Tolerance of Datum Feature to Tolerance Stackup
Lecture 3: Case Study#8
Lecture 4: Datum Shift Tolerance Stackup
Lecture 5: SIM/SEP REQT Tolerance Stackup
Lecture 6: Case Study#9
Chapter 6: Chapter 5 Pattern TOP stackup
Lecture 1: Projected Tolerance Zone to Tolerance Stackup
Lecture 2: Pattern and Pattern as Datum
Lecture 3: Case Study#10
Lecture 4: Composite Tolerance Stackup
Chapter 7: Chapter 6 Runout Tolerance Stackup
Lecture 1: Runout Tolerance Stackup
Lecture 2: Case Study#11
Chapter 8: Chapter 7 Statistic Tolerance Stackup
Lecture 1: Statistic Tolerance Stackup
Lecture 2: Case Study#12
Chapter 9: Comprehensive Case Study
Lecture 1: Comprehensive Case Study
Chapter 10: Final Exam
Lecture 1: Final Exam
Chapter 11: Bonus Video – Focusing application of knowledge
Lecture 1: Why the parts can not assemble even tolerance stackup is ok
Instructors
-
Michael XU
Professional GD&T Consultant, GDTP certified by ASME
Rating Distribution
- 1 stars: 8 votes
- 2 stars: 9 votes
- 3 stars: 77 votes
- 4 stars: 221 votes
- 5 stars: 226 votes
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