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ICRA 2024

Environment-Modulated Self-Assembly by Changes in Modules' Buoyancy

Conference Paper Accepted Paper Artificial Intelligence ยท Robotics

Abstract

While many inkjet printers employ only four types of ink (i. e. CKMY) to produce a wide range of colors, numerous technical challenges still exist for contemporary 3D printers to fabricate various materials and generate composite products such as electric devices. Conversely, there have been attempts and endeavors to make things through self-assembly of parts, analogous to the autonomous and decentralized development process of the human body from just 20 types of amino acids. In our previous work, we proposed a method for the rapid production of 3D objects using the centimeter-sized modules (referred to as Roblets) capable of generating a 2D structure and subsequently self-folding themselves into a 3D configuration, akin to origami. To further leverage the capability of generating a wide variety of different types of structures by combining different modules, this research studies a method of automatically selecting and supplying modules using environmental cues. More precisely, we developed a mechanism to couple different modules corresponding to three different environments (on a flat surface, on low-dense saline, and on saturated saline) and yielded different module configurations. The process of self-assembly necessitated the application of perturbation, which was realized by imparting magnetic torque originating from an external magnetic field onto the magnets embedded in the modules.

Authors

Keywords

  • Self-assembly
  • Three-dimensional displays
  • Torque
  • Buoyancy
  • Production
  • Magnetic fields
  • Printers
  • Moderate Changes
  • Magnetic Field
  • 3D Printing
  • External Magnetic Field
  • Variety Of Different Types
  • Different Types Of Structures
  • Magnetic Torque
  • Module Configuration
  • Time Step
  • Centroid
  • Transition State
  • Center Of Mass
  • Water Level
  • Kinetic Model
  • Assembly Process
  • Types Of Modes
  • Magnetic Moment
  • Manufacturing Technology
  • 3D Shape
  • Self-assembly Process
  • Vertical Magnetic Field
  • High Water Levels
  • Collision Happens
  • Dimer Configuration
  • Chain Configuration
  • Vertical Field
  • Collision Frequency
  • Original Pattern
  • Individual Modules
  • Loop Structure

Context

Venue
IEEE International Conference on Robotics and Automation
Archive span
1984-2025
Indexed papers
30179
Paper id
188531978941769826
v2026.09.13