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Classroom

Talent Development

To upskill GETs and young professionals in vehicle body design through hands-on, industry-focused upskilling training programs. Bridging the gap between academic knowledge and real-world industry-oriented automotive engineering needs.

The training equips GETs and young professionals with practical design skills, CAD expertise, and industry workflows in vehicle body engineering. It enhances their job readiness, boosts confidence to handle real-world projects, and opens up faster growth opportunities in automotive R&D, design, and manufacturing roles.

Classroom

Why Leameng Solution?

Industry-Relevant Curriculum
Focused on vehicle body engineering, BIW design, and automotive product development.
Hands-On Workshops
Practical sessions with real-world case studies and 3D design tools
Customizable Modules
Training content tailored to specific company needs and project requirements

Accelerate Skills with Our Automotive Design Workshops
Intensive Design Workshops – Learn by Doing

Objective: 
 

The objective of the 3–5 day corporate technical training program is to enhance the domain understanding and design thinking capabilities of GET and young engineering professionals involved in automotive product design & development. The program is designed to provide a structured overview of vehicle body design processes, material selection, DFM/DFA principles, benchmarking, and project lifecycle—from concept ideation to manufacturing readiness.
 

It aims to bridge the gap between academic knowledge and industry application by offering real-world insights, process methodologies, and best practices derived from 25+ years of field experience.

plastic design
BIW

Automotive Interior / Exterior Trims Product Design & Development

Plastic Trims Design & Engineering

Introduction to Automotive Design | Plastic Product Design | Automotive Materials | Tool Design & Checking Gauges | GD&T/DFM/DFA/DFMEA/VA-VE | Automotive Regulations

Salient Features: 

Modular & Flexible: 

Modules are tailor-made based on Client requirements: new hire onboarding, project kickoff, technical upskilling, etc.

Duration: 
Program Scripted for 3–5 days with clear learning milestones

Delivery Modes: 

Available onsite, virtual live, or blended

Certification-Based: 
Attendees receive recognition based on completion and performance

Key Learning Outcomes: 

By the end of this workshop, participants will be able to:

  • Understand the Automotive Product Development Lifecycle.

  • Apply Vehicle Body System Design Fundamentals.

  • Interpret and Use Benchmarking & Master Section Techniques.

  • Recognize the Importance of DFM/DFA/DFMEA Principles.

  • Gain Awareness of Material Selection & Lightweighting Approaches.

  • Understand Global Safety & Regulatory Considerations.

  • Communicate Design Intent Effectively.

EV Platform BIW Structural Design & Lightweighting Strategies

BIW structure Design & Engineering

Introduction to Sheet metal Design | automotive body structure Design | Automotive Materials | Dimensional management | FEA analysis & Regulations | press Tool Design & Checking Gauge

Salient Features: 

Modular & Flexible: 

Modules are tailor-made based on Client requirements: new hire onboarding, project kickoff, technical upskilling, etc.

Duration: 
Program Scripted for 3–5 days with clear learning milestones

Delivery Modes: 

Available onsite, virtual live, or blended

Certification-Based: 
Attendees receive recognition based on completion and performance

Key Learning Outcomes: 

By the end of this workshop, participants will be able to:

  • Understand BIW Architecture & Vehicle Body Load Paths

  • Apply Design Principles for Crashworthiness & Stiffness

  • Incorporate Design for Manufacturing (DFM) and Assembly (DFA)

  • Analyze Material Choices for Lightweighting

  • Implement Joining & Assembly Techniques in Lightweight BIW

  • Interpret Benchmarking & Master Section for BIW Design

  • Understand Cost, Mass, and Performance Trade-offs

  • Enhance Communication & Design Review Skills

Lightweighting by Design: Steel-to-Composite Solutions for Mobility Components

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Foundations of Composite Design for Mobility | Design Methodology for Composite Components | Material Selection & Functional Integration | Tooling & Manufacturing Considerations | Validation, Costing & Industry Readiness

Salient Features: 

Modular & Flexible: 

Modules are tailor-made based on Client requirements: new hire onboarding, project kickoff, technical upskilling, etc.

Duration: 
Program Scripted for 3–5 days with clear learning milestones

Delivery Modes: 

Available onsite, virtual live, or blended

Certification-Based: 
Attendees receive recognition based on completion and performance

Key Learning Outcomes: 

By the end of this workshop, participants will be able to:

  • Understand the Fundamentals of Composite Materials in Mobility Design

  • Redesign Automotive Components for Lightweighting Using Composites

  • Select Suitable Materials Based on Functional and Environmental Requirements

  • Design for Manufacturability and Tooling in Composite Processes

  • Collaborate Effectively in a Cross-Functional Composite Development Workflow

  • Apply Cost–Benefit Analysis and Design Validation Techniques

Essentials of Product Design & Development Standards in Mobility Engineering

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Introduction to ISO/TS16949 for PD | Design Evolution Tools | DFMEA/DFA/DFM/VAVE | Prototyping & Validation | NVH Considerations | Design Best Practices and Standards

Salient Features: 
 

Program Objective:

To equip engineers with a strong foundation in structured product design and development practices using globally accepted methods such as DFM, DFA, DFMEA, VAVE, and regulatory frameworks, ensuring product readiness from concept to production aligned with ISO/TS 16949.


Modular & Flexible: 
Modules are tailor-made based on Client requirements: new hire onboarding, project kickoff, technical upskilling, etc.

Duration: 
Program Scripted for 2–3 days with clear learning milestones

Delivery Modes: 

Available onsite, virtual live, or blended

Certification-Based: 
Attendees receive recognition based on completion and performance


Key Learning Outcomes: 

By the end of this workshop, participants will be able to:

  • Understand the Product Development Framework Aligned with ISO/TS 16949

  • Apply Benchmarking and Concept Development Techniques

  • Incorporate DFM, DFA, and DFMEA Principles into the Design Cycle

  • Introduce Cost Optimization Using VAVE

  • Recognize NVH Design Considerations in Early Development

  • Plan for Prototyping and Product Validation

  • Understand Design Verification through FE Tools and Checking Gauges

  • Connect Design Activities with ISO/TS 16949 Requirements

Composite
PDD

Clients and Partners

p2p
Connectwell
able-design-engineering
Renata Precision
Mak fitness

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