HomeElectronics NewsShape-Changing Devices With 3D-Printed Blocks

Shape-Changing Devices With 3D-Printed Blocks

3D-printed blocks maintain electrical connections as structures change shape, enabling devices to detect configurations without external wires or external controllers.

These rows show just a portion of the wide variety of configurations the Bifur-circuits can make.
Credits:
Credit: Courtesy of the researchers
These rows show just a portion of the wide variety of configurations the Bifur-circuits can make. Photo Credit: Courtesy of the researchers

Shape-changing devices could be designed using a 3D-printed modular structure that maintains electrical connections as it changes form. Researchers at MIT and collaborating universities developed the system using modular blocks called “bifur-circuits,” which can be connected and rotated into different configurations while built-in conductive paths maintain connectivity.

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The system can detect its configuration and send that information to an electronic system without external wires. Possible applications include robotic grippers, rehabilitation equipment, interactive furniture, and reconfigurable antennas.

The researchers demonstrated the concept with a chair that could transform into a table with storage and flatten for storage. It detected its configuration and sent the information to a display. They also built a controller that selected video games based on its shape.

The bifur-circuits use mechanical metamaterials based on repeating geometric units. The team uses auxetic structures, which expand sideways when stretched. Earlier work used similar structures to build antennas with three shapes, each operating at a different frequency range. The new design allows more configurations by connecting and rotating blocks, with the number increasing as more blocks are added.

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The system uses mechanical bifurcation, where a structure switches between stable states when a force reaches a critical point, similar to a plastic ruler suddenly buckling when bent. In bifur-circuits, blocks move around pivot points and settle into different positions.

Conductive material inside the blocks creates different electrical paths as the blocks are connected and rotated. These circuits reveal how the components are arranged, allowing the physical shape to carry information.

Keeping the conductive paths working while the structure bends was a key design challenge. The researchers compressed the structures more than 10,000 times without degradation in electrical connectivity.

They also developed software to design and simulate bifur-circuit structures and generate fabrication instructions for a multimaterial 3D printer, allowing mechanical and conductive elements to be produced together.

The approach could also enable antennas to change operating frequency and sensing or communication characteristics by changing shape. Other uses include rehabilitation devices, adaptive robotic grippers, and deployable structures. The researchers plan to test other metamaterial geometries and add more interactive functions.

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Nidhi Agarwal
Nidhi Agarwal
Nidhi Agarwal is a Senior Technology Journalist at Electronics For You, specialising in embedded systems, development boards, and IoT cloud solutions. With a Master’s degree in Signal Processing, she combines strong technical knowledge with hands-on industry experience to deliver clear, insightful, and application-focused content. Nidhi began her career in engineering roles, working as a Product Engineer at Makerdemy, where she gained practical exposure to IoT systems, development platforms, and real-world implementation challenges. She has also worked as an IoT intern and robotics developer, building a solid foundation in hardware-software integration and emerging technologies. Before transitioning fully into technology journalism, she spent several years in academia as an Assistant Professor and Lecturer, teaching electronics and related subjects. This background reflects in her writing, which is structured, easy to understand, and highly educational for both students and professionals. At Electronics For You, Nidhi covers a wide range of topics including embedded development, cloud-connected devices, and next-generation electronics platforms. Her work focuses on simplifying complex technologies while maintaining technical accuracy, helping engineers, developers, and learners stay updated in a rapidly evolving ecosystem.

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