Practical training in materials

Learn to select and apply innovative materials in real projects, mastering properties and manipulation techniques.

Design adapted to each industry

Discover how material design principles are applied in sectors such as automotive, construction, or electronics.

Active learning methodology

Participate in workshops and case studies that encourage experimentation and problem-solving, accelerating your understanding.

Innovation and sustainability

Integrate ecological and efficiency criteria into your projects, using recycled materials and low environmental impact processes.

+500trained students
12industries covered
98%satisfaction rate
40practical projects

Training plans in materials design

Choose the package that best suits your learning pace and professional goals.

Access period: 6 months

Starter

Basic level

49 €

Access to the fundamentals of materials design.

  • Introductory modules
  • Q&A forum
  • Certificate of participation

Professional

Intermediate level

89 €

Complete training with practical projects and tutorials.

  • Everything in the Starter plan
  • Guided projects
  • Weekly tutorials
  • Access to resource library

Expert

Advanced level

149 €

Full immersion with personalized mentoring and real cases.

  • Everything in the Professional plan
  • Individual mentoring
  • Industry case studies
  • Advanced certificate
  • Priority access to new courses
IndustryDesign ApplicationKey Result
AutomotiveSelection of lightweight composite materials for bodyworkWeight reduction and improved energy efficiency
HealthcareDesign of antimicrobial surfaces for medical equipmentGreater hygiene and durability in clinical environments
ConstructionDevelopment of self-healing concrete with microcapsulesIncreased lifespan of structures
ElectronicsIntegration of conductive polymers in flexible devicesLighter and more adaptable devices
TextileShape-memory fabrics for sportswearImproved comfort and performance

Training process in materials design

Discover how we transform learning into applied innovation through a structured and practical method.

1

Needs analysis

We identify the specific objectives of each industry and the technical requirements of the material to be designed.

2

Training plan design

We structure a personalized learning itinerary, combining theory and real practical cases.

3

Practical implementation

Participants apply the concepts in supervised projects, using real tools and materials.

4

Evaluation and feedback

We measure progress through key indicators and adjust the process to maximize knowledge assimilation.

5

Result and application

Students integrate the new knowledge into their industrial processes, driving innovation in their organizations.

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