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About GD&T Course

GD&T is important in design.

GD&T Course Objectives

To understand tolerances.

Pre-Requisites To Learn GD&T

Basic Engineering Knowledge

Top Career Roles after GD&T Course:

Design Engineer

Course Outline

  • Module 1: Introduction to GD&T

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    • β€’ Course Overview
    • β€’ GD&T Pre-Test Quiz
    • β€’ Introduction to GD&T
    • β€’ Importance of GD&T in Manufacturing
    • β€’ Basic Terminology
    • β€’ Engineering Drawing Standards
    • β€’ Tolerance Concepts
    • β€’ Feature Identification
    • β€’ Applications of GD&T
    • β€’ Industrial Use of GD&T
  • Module 2: GD&T Framework

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    • β€’ Feature Control Frame
    • β€’ GD&T Symbol Fundamentals
    • β€’ The GD&T Basics Framework
    • β€’ Tolerance Representation
    • β€’ Reading Feature Control Frames
    • β€’ Datum References
    • β€’ Tolerance Zones
    • β€’ Engineering Drawing Interpretation
    • β€’ Basic GD&T Calculations
    • β€’ Framework Applications
  • Module 3: Size Tolerances

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    • β€’ Features of Size
    • β€’ Material Conditions
    • β€’ Limits and Fits
    • β€’ Rule #1 – Envelope Principle
    • β€’ Tolerance Stack-Up Basics
    • β€’ Shaft and Hole Tolerances
    • β€’ Size Control Concepts
    • β€’ Virtual Condition
    • β€’ Boundary Conditions
    • β€’ Engineering Applications
  • Module 4: Datums

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    • β€’ Introduction to Datums
    • β€’ Primary Datum Controls
    • β€’ Secondary and Tertiary Datums
    • β€’ Datum Reference Frame
    • β€’ Datum Targets
    • β€’ Datum Feature Symbols
    • β€’ Establishing Datum Systems
    • β€’ Functional Datum Selection
    • β€’ Datum Shift Concepts
    • β€’ Industrial Datum Applications
  • Module 5: Position Tolerance

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    • β€’ Position Tolerance Fundamentals
    • β€’ True Position Concepts
    • β€’ Tolerance Zones
    • β€’ Position vs Coordinate Tolerancing
    • β€’ Hole Pattern Positioning
    • β€’ Bonus Tolerance
    • β€’ Virtual Condition
    • β€’ MMC and Position
    • β€’ Positional Calculations
    • β€’ Industrial Applications of Position
  • Module 6: Orientation Controls

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    • β€’ Orientation Tolerance Concepts
    • β€’ Parallelism of Axis and Midplane
    • β€’ Perpendicularity of Axis and Midplane
    • β€’ Angularity of Axis and Midplane
    • β€’ Orientation Tolerance Zones
    • β€’ Datum Reference Usage
    • β€’ Feature Alignment
    • β€’ Inspection Methods
    • β€’ Engineering Applications
    • β€’ Drawing Interpretation
  • Module 7: Material Modifiers

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    • β€’ Maximum Material Condition (MMC)
    • β€’ Least Material Condition (LMC)
    • β€’ Regardless of Feature Size (RFS)
    • β€’ Bonus Tolerance Concepts
    • β€’ Virtual Condition Calculations
    • β€’ Material Boundary Concepts
    • β€’ Functional Gauging
    • β€’ Tolerance Optimization
    • β€’ Inspection Methods
    • β€’ Industrial Applications
  • Module 8: Surface Profile

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    • β€’ Introduction to Surface Profile
    • β€’ Profile Tolerance Zones
    • β€’ Profile Modifiers
    • β€’ Profile of a Surface
    • β€’ Profile of a Line
    • β€’ Complex Surface Control
    • β€’ Datum Referencing in Profiles
    • β€’ Composite Profiles
    • β€’ Inspection Techniques
    • β€’ Profile Applications
  • Module 9: Surface Orientation

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    • β€’ Surface Parallelism
    • β€’ Surface Perpendicularity
    • β€’ Surface Angularity
    • β€’ Surface Orientation Controls
    • β€’ Tolerance Zone Concepts
    • β€’ Datum Referencing
    • β€’ Flat Surface Alignment
    • β€’ Inspection and Measurement
    • β€’ Manufacturing Considerations
    • β€’ Engineering Applications
  • Module 10: Surface Form Controls

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    • β€’ Straightness of Surface
    • β€’ Flatness of Surface
    • β€’ Circularity
    • β€’ Cylindricity
    • β€’ Form Tolerance Concepts
    • β€’ Tolerance Zone Definitions
    • β€’ Surface Quality Control
    • β€’ Roundness Inspection
    • β€’ Form Error Analysis
    • β€’ Industrial Applications
  • Module 11: Runout Controls

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    • β€’ Circular Runout
    • β€’ Total Runout
    • β€’ Runout Tolerance Concepts
    • β€’ Rotational Control
    • β€’ Datum Axis Establishment
    • β€’ Measurement Techniques
    • β€’ Inspection Setup
    • β€’ Dynamic Feature Control
    • β€’ Manufacturing Applications
    • β€’ Runout Analysis
  • Module 12: Derived Element Controls

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    • β€’ Straightness Derived Median Line (DML)
    • β€’ Flatness Derived Median Plane (DMP)
    • β€’ Concentricity
    • β€’ Symmetry
    • β€’ Derived Feature Concepts
    • β€’ Median Feature Analysis
    • β€’ Tolerance Zone Interpretation
    • β€’ Inspection Methods
    • β€’ Advanced GD&T Controls
    • β€’ Industrial Case Studies

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Amar Patil
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Amar here....just completed my design course in wire hireness domain with catia software....feel confident by this cz im from non electrical field...teachers are excellent and friendly....atmosphere on top...got placed in top company @Haidrabad....Thankyou CADkul Team...kindly suggest if ur looking in CAD or IT courses:)

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Sachin Jadhav
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The Plastic Product Design training at CADkul gave me strong industry exposure. The real-time projects and mould design concepts helped me crack interviews easily.

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Shruti Patil
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I loved the teaching approach β€” simple, clear, and industry-focused. CADKUL’s team guided me through every stage of my Wiring Harness (catia) journey until I got placed @Tech Mahindra Pune

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