Sonntag, 11. Oktober 2026Unterstützen

Aube.

Nachrichten vom Fortschritt
PrototypEinzelquelle

Paper sensor prototypes self-fold around fingers and forearms

Sprachen dieses Artikels
Original · ENESFRITPT

Originaltext auf Englisch. 5 Sprachen verfügbar, Ihre kommt mit einem Klick dazu.

A flat sheet of paper starts in a standard inkjet printer. At Shibaura Institute of Technology in Japan, Hiroki Shigemune and Yugo Takashima have used that simple starting point to make paper wearable sensor prototypes that self-fold into helical shapes for fingers and forearms.

The process begins with a printable pattern. Angled crease lines make the paper bend and fold gradually into a three-dimensional structure that conforms to the wearer’s body while remaining flexible enough for movement. Copper tape electrodes are integrated into the paper to measure biosignals—signals from the body—without straps or adhesives.

The team’s software does the fitting work before anything is printed. One tool generates a pattern and previews the final shape; another takes dimensions such as the diameter and length of a finger or forearm and automatically calculates the corresponding design. Devices made for fingers and forearms came within 5% of their target dimensions. On a finger, the researchers measured triboelectric signals and galvanic skin response, with performance comparable to conventional strap-based wearable sensors.

Concretely, the payoff is on-demand short-term sensing rather than a replacement for every wearable device. A paper sensor could be customized for a body part and produced where it is needed, then potentially discarded after use. Shigemune’s team points to clinical, home-care and field settings, along with touch sensing and human-machine interfaces, as possible applications. Paper is being explored here because it can offer a cheaper and more sustainable alternative to polymer- or textile-based wearables.

The result remains a prototype demonstration. The study was published in Advanced Sensor Research on July 1, 2026, and the researchers say further testing is needed to evaluate practical use. Their measurements show that the software-to-print method can make a custom-fitting sensor; they do not yet establish deployment in care or field settings.

5%Difference between target and fabricated device dimensions

Quellen — die Originale lesen(Pariser Zeit)

Phys.org — TechnologyEN
0000

Weiterlesen

Kommentare

Der Thread wird geladen…

Melden Sie sich an, um einen Kommentar zu schreiben. Anmelden