Post Graduate Program in Manufacturing Design

BY
Skill Lync

Enrol to the Master's Certification Programme in Manufacturing Design conducted by Skill Lync and upgrade your engineering career to the next level.

Lavel

Beginner

Mode

Online

Duration

6 Months

Quick Facts

particular details
Medium of instructions English
Mode of learning Self study
Mode of Delivery Video and Text Based

Course overview

The Post Graduate Program in Manufacturing Design conducted by Skill Lync is an intensive programme aiming to Mechanical and Automotive engineers to train them in all the essential concepts and tools of engineering. These concepts and tools are essential to get into top OEMs. This intensive programme has a duration of 6 months. There will be a total of six courses and each course will be carrying one or more projects with it. 

The domain of the Post Graduate Program in Manufacturing Design is design. By learning manufacturing design candidates will be upgrading their engineering career. Here in this programme, the training is very intense and industry friendly so that candidates will be well moulded for big industries after the completion of the programme. Skill Lync follows a project- based learning system. From technical experts, candidates will be learning industry relevant skills as well. 

The highlight of the Master's certification programme in manufacturing design is that all the candidates will be getting a certificate of completion after the programme. The e-certificate is shareable to LinkedIn. Skill Lync has so many success stories so far. Many alumni have got placements with attractive salary packages. Skill Lync works to get jobs for the candidates. Enrolling for the programme will be a good choice for all the candidates.

The highlights

  • Project based learning
  • 6-month online programme
  • Programme led by industrial experts
  • Job oriented programme

Program offerings

  • Completion certificate to all candidates
  • Projects based learning
  • Placement
  • Continual learning
  • Technical support

Course and certificate fees

The fees for the course Post Graduate Program in Manufacturing Design is -

HeadAmount
Programme feesRs. 2,75,000
EMIRs. 14,375/month

 

certificate availability

Yes

certificate providing authority

Skill Lync

Eligibility criteria

Certification Qualifying Details

The completion certificate of the Master's certification programme in manufacturing design will be provided to all the candidates participating. Candidates have to complete the 6-month programme entirely for getting qualified. It contains 6 courses and projects.

Top 5 percent candidates will be awarded a merit certificate. Those are selected according to their performance in the programme.

What you will learn

Knowledge of engineering

After completing the Post Graduate Program in Manufacturing Design candidates will be learning these in depth:

  • Wiring harness using CATIA V5
  • BIW fixture design using CATIA V5
  • Automotive sheet metal design using NX CAD
  • Model designing using SolidWork
  • Geometric dimensioning and tolerancing using NX CAD
  • Moldflow analysis of plastic injection molding.

The syllabus

Automotive Plastic Design using CATIA V5

Design Overview In Automotive Industry
  • Product Life Cycle
  • Design Life Cycle
Plastics in Automotive Industry
  • Types of plastics (Thermoset Plastics, Thermoplastic)
  • Engineering plastic Materials
  • Manufacturing Process
  • Injection Molding
Introduction to CATIA
  • Basic commands and operation
  • Save feature, pan feature, rotate feature, etc
Sketcher workbench
  • Commands
  • Rules to follow
  • Working in exercise
Part Design Workbench
  • Pad and pocket
  • Working on exercise
Advanced part design
  • Boolean operations
  • How to work on a Boolean exercise
  • How to work on After Tool Go modification on Automotive components. (OEM Working procedures)
2D Drawing creation
  • Create a PCB Bracket using Boolean operations
Basic Surface Design Workbench
  • Commands (Types of Sweep)
  • Working on exercise
  • Draft analysis
  • How to work on a surface exercise
Advanced Surface Design Workbench
  • Commands 
  • Creation of Closed body, Thickened body
  • A parting line and parting surface
Creation of Door Switch Bezel and adding thickness to it
  • How to create tooling direction and do the draft analysis to ensure the part can be taken out of the tool?
  • Adding the right thickness to the part and solving the issues.
  • Create the parting line for the bezel.
Tooling Feasibility
  • What is a mounting feature?
  • How to create a locator and dog house?
  • Integrating the mounting features to the base part with Boolean operations
Modeling Exercise
  • The Clip mounting feature is in Plastic design.
  • Design considerations for creating this feature
  • Tooling analysis for the clip feature
Drafting Workbench
  • Drafting workbench
  • Creation of detail drawing for the Components
  • Views creations (basic view & section views)
  • Application of GD&T in drawings
  • Template settings
Mold Design Considerations
  • Creation of Paring line
  • Creation of Tooling axis
  • What is undercut and how to solve it
Complex Mold Design Parameters
  • Creation of simple mold for the Rear quarter trim Cupholder
  • What are core and cavity
  • Stripper, ejection, and system
  • Draft analysis  

Automotive Sheet Metal Design using Siemens NX CAD / CATIA V5

Vehicle development cycle
  • Basics of automobiles along with different models of car bodies.
  •  Different stages of vehicle development that a car will go through before reaching the customer.
  • Three years of development activity that precedes the development of an automotive model.
Basics of Automotive Body in White
  •  Basics of automotive BIW.
  •  Basics of steel and its properties in detail.
  •  Steps that are followed in the selection of the material.
  •  introduction to cross-functional teams that exist in an organization.
Design Methodology of a Hood, Fender, Roof, Back Doors, and Side Doors
  • Design Requirements
  • Functional Requirements
  • Regulations
  • Gap and Flushness Requirements
  • Safety Requirements
Case study - Converting - Backdoor/Tailgate Inner Panel
Design of key mechanism - Lock and Striker
  •  Anatomy of a Locker and Striker mechanism.
Case study Process and challenges with supplier manufactured parts

Automotive Wiring Harness using CATIA V5

Basics of Vehicle Electrical Distribution System & Wiring Harness
  • Introduction to Vehicle Electrical Distribution System (EDS) 
  • Introduction to wiring harness assembly
  • Wiring harness design process for New Product Development (NPD)
  • Introduction to CATIA V5 electrical workbench
Introduction to CATIA V5 Electrical Workbench & Electrical Part Design
  • Customized settings for electrical environment
  • Wiring harness routing process for CATIA V5
  • CATIA V5 – electrical part design
Electrical Part Design
  • Clip/clamps/support part definition
  • Backshell definition
  • Protective covering definition
Harness Assembly & Installation – Part 1
  • Preparation of harness assembly
  • Creating the wire harness geometrical bundle
  • Inserting harness components into a geometrical bundle
  • Positioning your inserted electrical parts
  • Connecting & Disconnecting electrical components
  • Defining the wiring harness routing
Harness Assembly & Installation – Part 2
  • Wiring harness routing on external references 
  • Modifying the wire harness bundle segments
  • Wire harness protective coverings
  • Use of electrical splices
  • Bundle continuity check/analysis
  • Geometrical bundle warnings
  • 3D annotation
Harness Assembly & Installation – Part 3
  • Modifying the wire harness bundle segments
  • Modifying the branch point location
  • Deleting bundle segment
  • Bundle continuity check/analysis
  • Geometrical bundle warnings
  • 3D annotations
  • Important commands, tips, & techniques
Wiring Harness Flattening
  • Wiring harness flattening workbench
  • Flattening workbench settings
  • Flattening the 3D harness assembly
  • Modify flatten assembly
  • Saving the flatten files
  • Drawing, creation & contents
Component Specifications & Selection Guide
  • Wiring harness component specifications & selection parameters
  • Available suppliers in the market (India)
Wiring Harness Routing & Packaging Basics – Session 1
  • Definitions
  • Routing & packaging process
  • Design criteria (generic) for wiring harness 
  • Packaging rules & best practices
  • Guidelines for battery cables routing
Wiring Harness Routing & Packaging Basics – Session 2
  • Clearance management
  • Water ingress protection
  • Thermal protection management
  • Chaffing protection
  • Vibration protection
  • Routing on/near dynamic parts ( engine, wheel)
  • Harness bending rules (harness & battery cables)
  • Interconnection connector parking

Geometric Dimensioning and Tolerancing

Introduction to GD&T
  • Difference between traditional dimensioning and GD&T
  • Benefits of GD&T
  • How to read a feature control frame
  • Technical standards- ASME Y14.5M-2009
  • Different symbols used in GD&T, cover, and feature of size
Rules, Symbols, and Form Tolerances
  • Rule No. 1 (i.e. Taylor principle a.k.a envelope principle)
  • Rule No. 2 (Regardless of feature size)
  • 14 symbols used in GD&T
  • Flatness, straightness, cylindricity, and circularity tolerances
  • MMC, LMC, and RFS conditions
  • Various examples for form tolerances
Datums, Modifiers, Virtual Condition
  • What are datums and how to apply datums to parts
  • Datum reference features
  • Datum feature modifiers
  • How to calculate virtual condition
  • Conjugated datums
Orientation Tolerance and Profile Tolerance
  • Profile of a surface and profile of a line
  • Perpendicularity tolerance, parallelism tolerance, and angularity tolerance
  • Composite profile tolerance
  • Various examples for orientation and profile tolerances
Position Tolerance
  • Understanding true position
  • Projected tolerance
  • Composite tolerances
  • Tolerance zones- cylindrical, rectangular, spherical
  • Examples of position tolerance
Co-axiality, Symmetricity, Run-outs
  • Coaxiality
  • Symmetricity
  • Circular and Total Run Outs
  • Examples
Understanding GD&T Drawing
  • complex GD&T drawings and understand every individual tolerance and the message the tolerance conveys.

Automotive BIW Fixture Design using CATIA V5

Introduction to BIW-Fixture
  • Definition of BIW, Jigs, & Fixture
  • BIW-Nomenclature
  • Types of Fixtures & their applications
  • BIW stations & their uses
  • Basic terminologies
BIW-Fixture Basics
  • Project activities
  • Different welding processes
  • 3-2-1 Principle
  • Body planes
Pre-Design Processes
  • Design methodology
  • Structuring a design tree
  • Different types of fixture units
Units Design-1
  • Different types of Pin Unit Design
  • Different types of Clamp Unit Design
  • Different types of Rest Unit Design
Units Design-2
  • Dump Unit Design
  • Slide Unit Design
  • Base Unit Design
Finishing of the design
  • 3D-finish
  • Rough locators
  • Pneumatic routing
  • Valve banks & selection
  • Gun study
  • Sensors & selection
2D-Detailing Basics
  • Drawing templates
  • Angles of projection
  • Basic GD&T used in fixturing
  • Scaling & views
  • Various detailing patterns
2D-Detailing
  • Key Sheet detailing
  • Unit detailing
  • Child parts detailing
2D-Detailing - Child Part & BOM
  • Child parts detailing
  • Material selection
  • BOM Preparation
Documentations, Sequence Sheet & Process Sheets
  • Creation of BOM sheets 
  • Creation of BOP sheets

Admission details


Filling the form

Candidates willing to apply for the Master's certification programme in manufacturing design are required to follow the steps.

Step 1: Log on to the website.

Step 2: Click on the “Enrol” button.

Step 3: There will be 3 options to select: 6 months, 12 months and lifetime access. Choose according to your interest.

Step 4: Candidates have to register with their name, email ID and phone number.

Step 5: Now candidates have to pay the course fee. After payment registration will be successfully completed.

How it helps

The Master's certification programme in manufacturing design is a training programme for Mechanical and Automotive engineers. By completing the programme candidates will be experts in manufacturing design. This will be making them eligible for high paying jobs. With a 6-month programme, candidates will be upgrading their career. Professionals could get a salary hike or promotion with its certificate. If the candidates are fresher, they will be getting a good job with an attractive salary package. 

Skill Lync has a very good placement history. Within the last 12 months, 200 plus candidates are placed in top companies. Along with that some candidates have got over USD 500,000 in scholarships. The training programme is highly industry friendly so that candidates will be ready to be part of industries after the completion of the programme. 

After the successful completion of the course Skill Lync will be helping candidates to find their dream job.

FAQs

Why should I enrol for the programme?

By enrolling to the programme candidates can master in manufacturing design in just 6 months. There are many job opportunities after the completion of the course. 

Will Skill Lync help me to get a job?

Skill Lync works to get jobs for their students. Within the last 12 months, 200+ students have been placed in top companies.

What kind of training is provided in the programme?

Project based learning system is followed by Skill Lync. The intense training is carried out online. Candidates will get to interact with industrial experts. Which will be helpful for them in their industrial career.

Why are there different plans in the fee section?

This is according to the access provided for the candidates. 6 months, 12 months, and lifetime access are available. According to the access, increases benefits also increase.

What if I have issues during the programme?

Skill Lync provides dedicated technical support to all students. The technical support team will assist all the students whenever they have needs.

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