Generative Design & AI in Engineering: Optimization & Innovation Training Course

 

Generative Design & AI in Engineering: Optimization & Innovation Training Course

Introduction

The fields of engineering and product development are undergoing a radical transformation, driven by the power of Generative Design and Artificial Intelligence (AI). This Generative Design & AI in Engineering: Optimization & Innovation Training Course is specifically designed for mechanical engineers, product designers, industrial designers, architects, manufacturing engineers, and R&D professionals who aim to revolutionize their design processes. It explores how AI-driven tools can rapidly explore countless design possibilities, optimize performance, reduce material usage, and accelerate innovation beyond human intuition.

Participants will gain a comprehensive understanding of how to define design goals and constraints, leverage AI algorithms for design exploration and optimization, and integrate these advanced capabilities with additive manufacturing (3D printing). The curriculum delves into practical applications using leading generative design software platforms, covering techniques like topology optimization, lattice structures, and multi-objective optimization. By mastering these cutting-edge methodologies, you will be equipped to create highly innovative, performant, and sustainable products, driving efficiency and competitive advantage in the modern engineering landscape.

Target Audience

  • Mechanical and Aerospace Engineers.
  • Product and Industrial Designers.
  • Architects and Civil Engineers.
  • Manufacturing and Production Engineers.
  • Research & Development (R&D) Professionals.
  • CAD/CAM/CAE Software Users and Administrators.

Duration

10 days

Course Objectives

  1. Understand the fundamental concepts of generative design and its transformative impact on engineering and product development.
  2. Grasp how Artificial Intelligence and Machine Learning algorithms are applied to optimize and explore design solutions.
  3. Gain practical experience using leading generative design software to define design spaces, goals, and constraints.
  4. Master techniques for topology optimization, lightweighting, and creating complex lattice structures.
  5. Learn to design for additive manufacturing (DfAM) specifically using generative design principles.
  6. Implement multi-objective optimization strategies to balance conflicting engineering requirements.
  7. Integrate simulation and analysis tools within generative design workflows for performance validation.
  8. Identify and apply generative design solutions to real-world engineering challenges across various industries.

Physical Training Schedule

Start & End Date

Location

Fee (USD)

Register

July 20- July 31, 2026

Dar es Salaam

4,000

Aug 3- Aug 14, 2026

Nairobi

3,000

Aug 17- Aug 28, 2026

Kigali

4,000

Sep 7- Sept 18, 2026

Nairobi

3,000

Sep 14- Sept 25, 2026

Pretoria

5,950

Oct 5- Oct 16, 2026

Nairobi

3,000

Oct 19- Oct 30, 2026

Mombasa

3,450

Nov 2- Nov 13, 2026

Nairobi

3,000

Nov 16- Nov 27, 2026

Kigali

4,000

Dec 7 – Dec 18, 2026

Nairobi

3,000

Jan 5- Jan 16, 2027

Kigali

4,000

Jan 19- Jan 30, 2027

Nairobi

3,000

Feb 2- Feb 13, 2027

Mombasa

3,450

Feb 16- Feb 27, 2027

Nairobi

3,000

Mar 2- Mar 13, 2027

Kigali

4,000

Mar 16- Mar 27, 2027

Nairobi

3,000

Apr 6- Apr 17, 2027

Dar es Salaam

4,000

Apr 13- Apr 24, 2027

Nairobi

3,000

May 4- May 15, 2027

Pretoria

5,950

May 18- May 29, 2027

Nairobi

3,000

Jun 1- Jun 12, 2027

Mombasa

3,450

Jun 15- Jun 26, 2027

Nairobi

3,000

Jul 6- Jul 17, 2027

Nairobi

3,000

Online Training Schedule

Start & End Date

Fee (USD)

Register

Aug 3 – Aug 14, 2026

1,200

Sept 7 – Sept 18, 2026

1,200

Oct 5 – Oct 16, 2026

1,200

Nov 2 – Nov 13, 2026

1,200

Dec 7 – Dec 18, 2026

1,200

Jan 5- Jan 16, 2027

1,200

Feb 2- Feb 13, 2027

1,200

Mar 2- Mar 13, 2027

1,200

Apr 6- Apr 17, 2027

1,200

May 4- May 15, 2027

1,200

Jun 1- Jun 12, 2027

1,200

Jul 6- Jul 17, 2027

1,200

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