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Design and materials for sustainable lightweight structures

  • Ingegneria/Engineering, Ingegneria dei materiali/Materials engineering

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Design and materials for sustainable lightweight structures

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Information

Course tags
Ingegneria/Engineering, Ingegneria dei materiali/Materials engineering
Language
English
Price
Free
Type
Online
Modality
Self paced
Course open
December 2025
Training hours
12
Certificate
Attendance Certificate

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Description

The course aims to provide the basis for a design oriented towards sustainability and lightening of mechanical structures made with conventional and innovative materials such as light aluminum alloys and advanced polymer matrix composites.

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Educators

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Franco Bonollo

I am Metallurgy Professor at Padova University, with research focussed on processing & characterization of Aluminium alloys. I coordinated EU & Italian Research & Standardization projects in this area.

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Paolo Andrea Carraro

I am professor of Mechanical Design at the University of Padova. My research focuses on the characterization and modelling of the structural and multi-functional behaviour of advanced composite materials. I took part and coordinated research projects in the field, cooperating with public infrastructures and companies.

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Paolo Ferro

Paolo Ferro is a Full Professor of Metallurgy and Materials Selection at the University of Padua, Italy. His research primarily focuses on the analytical and numerical modelling of welding, heat treatment, and additive manufacturing processes, with particular attention to residual stress assessment and its influence on the structural integrity of metallic components. Professor Ferro holds several key roles in scientific organizations: he is a member of the Centre for Mechanics of Biological Materials (CMBM), an Executive Committee (ExCo) member of the Italian Group of Fracture, a member of the ESIS Technical Committee 15 (Structural Integrity of Additive Manufactured Components), and the Principal Chairman of ESIS Technical Committee 18 (Structural Integrity of Welded Joints). He has also coordinated significant research initiatives, serving as the Scientific Coordinator of the Italian national program on laser welding and repair of Nickel-based alloys and as the Coordinator of the European project about design of components in a critical raw materials perspective.

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Marino Quaresimin

Professor of Design with Composite Structures at University of Padova. Research interest on the structural response and the damage mechanics of composites. Editor in Chief of Composites Science and Technology, former president of the European Society for Composite Materials.

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Course outline

Design and materials for sustainable lightweight structures

How to follow the course
Welcome to the course
1.1 Microstructure and Classification
1.2 Processes
1.3 Mechanical and Technological Properties (Weldability)
1.4 Industrial Applications and Future Prospects
Extend your learning
Test your knowledge
2.1 Microstructure and Classification
2.2 Processes
2.3 Mechanical and Technological Properties
2.4 Industrial Applications and Future Prospects
Extend your learning
Test your knowledge
3.1 Microstructure and Classification
3.2 Production and Processing Methods
3.3 Mechanical and Technological Properties
3.4 Industrial Applications and Future Perspectives
Extend your learning
Test your knowledge
4.1 Materials
4.2 Processes
4.3 Properties
Extend your learning
Test your knowledge
5.1 Damage mechanics under quasi-static and cyclic loads
5.2 Failure criteria and design approaches
Extend your learning
Test your knowledge
6.1 Objectives and methodologies of structural health monitoring
6.2 Structural health monitoring using electrical methods
Extend your learning
Test your knowledge
Summing up the course
Final test of the course
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Learning outcomes

By the end of the course, participants will be able to:

  • Select appropriate metallic alloys for lightweight design applications, considering mechanical properties, processing methods, and performance requirements.
  • Evaluate and compare manufacturing technologies to identify the most suitable processes for producing high-performance metallic or composite components.
  • Design innovative structural components using metallic alloys and polymer matrix composites, optimizing their structural response and material efficiency.
  • Assess the advantages, limitations, and mechanical characterization methodologies of metallic and composite materials to make informed design and material selection decisions.

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Target audience

PHDs, Students in undergraduate and master's degree programs in Engineering, Professionals.

Progetto finanziato dall’Unione europea - NextGenerationEU – Piano Nazionale di Ripresa e Resilienza (PNRR) - Missione 4 Componente 2 Investimento 1.4 – Progetto CN_00000023 denominato Sustainable Mobility Center CUP C93C22002750006.

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Attendance certificate

At the end of the course, after completing the required activities, the participant will receive an attendance certificate.

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