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Additive Manufacturing Provides Infinite Possibilities for Self-Sensing Technology.

Daobing Chen1, Zhiwu Han2, Junqiu Zhang2

  • 1The Institute of Technological Science, Wuhan University, South Donghu Road 8, Wuhan, 430072, China.

Advanced Science (Weinheim, Baden-Wurttemberg, Germany)
|May 20, 2024
PubMed
Summary

Additive manufacturing enables integrated intelligent devices with self-sensing capabilities. This review explores design, materials, and equipment for advanced autonomous systems, highlighting future directions.

Keywords:
additive manufacturingintelligent componentsproprioceptorsself‐sensing

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Area of Science:

  • Materials Science
  • Engineering
  • Robotics

Background:

  • Integrated intelligent devices offer autonomous self-sensing and monitoring capabilities.
  • Applications span smart buildings, advanced robotics, aerospace, and realistic prosthetics.
  • Additive manufacturing (AM) remains underexplored for creating these integrated devices.

Purpose of the Study:

  • To review the integration of additive manufacturing in self-sensing intelligent devices.
  • To highlight design, printing equipment, and material considerations for AM-based integrated systems.
  • To summarize current challenges and propose future research directions.

Main Methods:

  • Literature review focusing on additive manufacturing techniques for integrated devices.
  • Analysis of material science, structural design, and functional integration in AM.
  • Examination of printing equipment and printable materials relevant to self-sensing applications.

Main Results:

  • Additive manufacturing offers a novel approach to fabricating complex integrated intelligent devices.
  • Material selection, structural design, and printing processes are critical for device functionality.
  • The review identifies key advancements and limitations in current AM for integrated systems.

Conclusions:

  • Additive manufacturing holds significant potential for the next generation of self-sensing devices.
  • Further research is needed in materials, design, and printing processes to overcome current challenges.
  • Optimizing the interplay between material, structure, and function is crucial for future development.