Companies Home Search Profile

Tolerance Stack Ups for Mechanical engineers with Six-Sigma

Focused View

Santiago Aguillón

3:59:25

238 View
  • 1 - Intro.mp4
    02:40
  • 2 - Intro.pdf
  • 2 - What is tolerance analysis Stack up.mp4
    06:18
  • 3 - Fundamentals definitions.mp4
    10:10
  • 4 - Standard deviation.mp4
    10:54
  • 5 - Dimensioning methods.mp4
    06:18
  • 6 - Steps to perform a tolerance analysis.mp4
    07:10
  • 7 - Example of sketch creation.mp4
    08:16
  • 8 - Instructions for the following homeworks.mp4
    07:05
  • 9 - What is the WorstCase approach.mp4
    02:30
  • 9 - Worst-Case-approach.pdf
  • 10 - Mathematical definition of WC.mp4
    04:19
  • 11 - Example WC.mp4
    06:01
  • 12 - Template in excel for WC.mp4
    04:32
  • 12 - WC.xlsx
  • 13 - ASSY-III-WC.pdf
  • 13 - ASSY-II-WC.pdf
  • 13 - ASSY-IV-WC.pdf
  • 13 - ASSY-I-WC.pdf
  • 13 - ASSY-V-WC.pdf
  • 13 - Practice problems WC watch before the following videos.mp4
    05:15
  • 14 - Solution Assembly I.mp4
    08:16
  • 15 - Solution Assembly II.mp4
    06:51
  • 16 - Solution Assembly III.mp4
    12:44
  • 17 - Solution Assembly IV.mp4
    09:54
  • 18 - Solution Assembly V.mp4
    08:12
  • 19 - Room-Sum-Squared-RSS-approach.pdf
  • 19 - What is RSS approach.mp4
    03:35
  • 20 - Mathematical definition of RSS.mp4
    10:57
  • 21 - Example RSS.mp4
    14:31
  • 21 - Ztable-1.pdf
  • 22 - Stack-up-RSS.xlsx
  • 22 - Template in Excel for RSS.mp4
    08:41
  • 23 - ASSY-III-RSS.pdf
  • 23 - ASSY-II-RSS.pdf
  • 23 - ASSY-IV-RSS.pdf
  • 23 - ASSY-I-RSS.pdf
  • 23 - ASSY-V-RSS.pdf
  • 23 - Practice problems RSS watch before the following videos.mp4
    03:11
  • 24 - Solution Assembly I.mp4
    05:03
  • 25 - Solution Assembly III.mp4
    08:42
  • 26 - Solution Assembly IV.mp4
    07:16
  • 27 - Solution Assembly V.mp4
    03:57
  • 28 - Six-Sigma-approach.pdf
  • 28 - What is SixSigma approach.mp4
    04:19
  • 29 - Mathematical definition for mixed distributions.mp4
    06:07
  • 30 - Example using mixed distributions.mp4
    04:34
  • 31 - Mathematical definition for process capability.mp4
    07:11
  • 32 - Example using process capability.mp4
    02:54
  • 33 - Mathematical definition for dynamic shift.mp4
    04:30
  • 34 - Example using dynamic shif.mp4
    03:11
  • 35 - General equation for tolerance analysis.mp4
    06:06
  • 36 - Stack-Up-Six-Sigma.xlsx
  • 36 - Template in Excel for SixSigma approach.mp4
    07:15
  • 37 - ASSY-III-SS.pdf
  • 37 - ASSY-II-SS.pdf
  • 37 - ASSY-IV-SS.pdf
  • 37 - ASSY-I-SS.pdf
  • 37 - ASSY-V-SS.pdf
  • 37 - Practice problems SixSigma watch before the following videos.html
  • 38 - Solution Assembly I.html
  • 39 - Solution Assembly III.html
  • 40 - Solution Assembly IV.html
  • 41 - Solution Assembly V.html
  • Description


    Estimate the quality level of your assembly as a PRO to predict Defects + Examples + Homeworks + Templates

    What You'll Learn?


    • Worst-Case approach
    • Statistical approach (RSS)
    • Six-Sigma approach
    • Create the loop for tolerance analysis in 2D
    • Estimate the quality level of the assembly
    • Estimate the expected Defects Per Million of Opportunities (DPMO)
    • Inflation factors for non-normal distributions (Ci)
    • Process capablity index (Cp) from manufacturing
    • Dynamic shift (k) for loss of performance over time
    • Understand trade-offs for tolerance analysis
    • Customer requirements (LSL, USL)

    Who is this for?


  • Mechanical designers (entry level)
  • Mechanical engineers
  • Students of mechanical engineering
  • More details


    Description

    Stack up and Tolerance Design is all about quality, or in other words, the allowable parts to be rejected during the process. In escence, this results in an iterative process between the design department, manufacturing and the customer. In this course you will learn the concepts to master plus/minus tolerance stack ups in 2D. At then end, you will become a valuable member for your company because you will be capable to assess assemblies and propose changes to meet critical requirements. Although currently there are several software which run complex tolerance analysis in 3D, in my experience, most of the times you can simplify the problem with a 2D analysis, so as mechanical designer YOU MUST be capable of performing 2D analysis in order to save valuable resources to the company.

    First, you will learn the basics: The definition of nominal value, tolerance, standard deviation, normal distribution and the importance of tolerance analysis in mechanical design.

    Then. you will learn how to create the sketch (loop) to follow in the calculation of tolerance analysis. Several exercises will be provided so you can practice this process.

    Next you will Learn how to perform a linear stack ups with three approaches:

    • Worst Case: When no rejections are allowed. This apporach results in the most expensive, but it is used in critical applications.

    • Statistical: Some rejections are allowed. The costs are reduced because some defects will always be presented.

    • Six-Sigma: Complex considerations such as process distributions, process caapability and loss of performance are taken into account to improve the design at different quality levels.

    Finally, for each approach I will provide you five assemblies with different requirements. You will need to apply the concepts to find the suitable design which meet the quality levels and solve the critical clearances. A template in excel will allow you to perform these calculations.

    Please note: We will cover ONLY plus/minus tolerances. But the knowledge is also applicable for geometric tolerances.

    This course is based in my own experience as designer in the aerospace industry for 10 years. I used this methods everyday to discuss initial changes with customer, find a suitable provider and reduce costs with manufacturing.

    Who this course is for:

    • Mechanical designers (entry level)
    • Mechanical engineers
    • Students of mechanical engineering

    User Reviews
    Rating
    0
    0
    0
    0
    0
    average 0
    Total votes0
    Focused display
    Santiago Aguillón
    Santiago Aguillón
    Instructor's Courses
    Perfil Inversionista:Desde el 2014 tenía curiosidad de invertir en el mercado de acciones por lo que comencé a estudiar por mi cuenta y leer obras clásicas como el "inversor inteligente de B. Graham o "Un paso por delante de la bolsa" de Peter Lynch. Desde el 2016 me sentí preparado para comenzar mi aventura y destinar gran parte de mis ingresos y conocimientos adquiridos en el mercado de acciones. Desde entonces he tenido rendimientos anuales en promedio del 21%. Además, logré desarrollar una estrategia rentable de trading rentable en el mercado de las criptomonedas que me permite generar ingresos pasivos mes con mes. Durante este tiempo me he dado cuenta que muchos buscan invertir en este tipo de mercados, pero tristemente terminan en estafas o comprando cursos a costos muy elevados. Por esta razón, he creado una serie de cursos  accesibles (y de buena calidad) con el objetivo de compartir todo mi conocimiento y experiencia. Perfil ingeniero:Soy ingeniero aronáutico con una maestría en diseño de aeronaves por la universidad de Cranfield, UK. Tengo experiencia en el sector aeroespacial acumulada de 10 años, trabajando y participando en proyectos industriales con empresas reconocidas como GE Aerospace, Honeywell, entre otras. Mi campo de expertise es definición de producto, modelado CAD, GD&T y diseño preliminar de aeronaves y componentes mecánicos. Temas que muy pronto estarán disponibles en esta plataforma.
    Students take courses primarily to improve job-related skills.Some courses generate credit toward technical certification. Udemy has made a special effort to attract corporate trainers seeking to create coursework for employees of their company.
    • language english
    • Training sessions 36
    • duration 3:59:25
    • Release Date 2023/02/22

    Courses related to Six Sigma

    Courses related to Lean Six Sigma Green Belt

    Courses related to Six Sigma Green Belt

    Subtitle
    Lean Six Sigma Foundations
    Pluralsight Frederico Aranha
    Frederico Aranha
    Lean Six Sigma Foundations
    2:30:47
    English subtitles
    10/10/2023