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January 23, 2026Open Access Government0 citations

Materials and structures that interpret signals and react

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ACAlberto CoriglianoFondazione Politecnico di Milano

Key Points

  • To explore and develop materials and structures capable of interpreting signals and responding to stimuli.
  • Investigated the evolution of materials since the mid-20th century, focusing on silicon and polymers.
  • Analyzed advancements in composite materials combining various constituents like polymers and glass fibers.
  • Examined the properties and applications of smart materials, including piezoelectric materials and metamaterials.
  • Identified the potential of composite materials to achieve high performance in various applications.
  • Demonstrated the ability of smart materials to react to different stimuli, enhancing functionality.
  • Highlighted the innovative use of metamaterials to develop products with unprecedented properties, such as sound and vibration filtering.

Abstract

Materials and structures that interpret signals and react Alberto Corigliano, a Full Professor at the Politecnico di Milano, explores the development of sentient materials and structures through the IMMENSE project. Our civilization has progressed in parallel with the invention and use of new materials. Since the mid-20th century, for example, silicon and polymers have been at the forefront of new production methods, the birth of new technologies, and new ways of living. The name Silicon Valley symbolizes the importance given to the principal material of the electronics industry and its impact on our lives. More recently, materials with new performances have been invented and used, such as composite materials that optimally combine the properties of basic constituents, for example, polymers and glass fibers, to obtain new materials with very high performance. Subsequently, there has been an increasingly widespread use in many applications of so-called smart materials, which can react to stimuli of different origins, as in the case of piezoelectric materials that couple the electrical and mechanical worlds. Moreover, the term metamaterials is frequently used by researchers who aim to obtain materials with properties that go beyond those found in commonly used materials. By combining composite, smart, and metamaterials, it is now possible to obtain products with performances that were unthinkable just a few years ago, in some cases truly exceptional, such as the ability to completely filter and thus block vibrations and/or sounds.

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Cite This Study

Alberto Corigliano (2026) studied this question.

synapsesocial.com/papers/69731022c8125b09b0d1fd7ehttps://doi.org/10.56367/oag-049-12330
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