HCI meets Material Science: A Literature Review of Morphing Materials for the Design of Shape-Changing Interfaces
Honorable MentionAuthors
With the proliferation of flexible displays and the advances in smart materials, it is now possible to create interactive devices that are not only flexible but can reconfigure into any shape on demand. Several Human Computer Interaction (HCI) and robotics researchers have started designing, prototyping and evaluating shape-changing devices, realising, however, that this vision still requires many engineering challenges to be addressed. On the material science front, we need breakthroughs in stable and accessible materials to create novel, proof-of-concept devices. On the interactive devices side, we require a deeper appreciation for the material properties and an understanding of how exploiting material properties can provide affordances that unleash the human interactive potential. While these challenges are interesting for the respective research fields, we believe that the true power of shape-changing devices can be magnified by bringing together these communities. In this paper we therefore present a review of advances made in shape-changing materials and discuss their applications within an HCI context.
Research Questions / Practical Problems
Question signals indexed for this paper.
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Zippro: The Design and Implementation of An Interactive Zipper
CHI '20· Shape-Changing Interfaces & Soft Robotic Materials
- 100%
PneuMesh: Pneumatic-driven Truss-based Shape Changing System
CHI '22· Shape-Changing Interfaces & Soft Robotic Materials
- 100%
InflatableMod: Untethered and Reconfigurable Inflatable Modules for Tabletop-sized Pneumatic Physical Interfaces
CHI '23· Shape-Changing Interfaces & Soft Robotic Materials
- 100%
Encounter with the Giants: Understanding Interaction with Large-scale Inflatable Soft Robots
CHI '25· Shape-Changing Interfaces & Soft Robotic Materials
- 100%
Designing Plant-Driven Actuators for Robots to Grow, Age, and Decay
DIS '24· Shape-Changing Interfaces & Soft Robotic Materials
- 100%
From Euclidean to Topological: Visual Exploration of Transformations Types in Shape-Changing Interfaces
DIS '25· Shape-Changing Interfaces & Soft Robotic Materials
- 100%
PneuSeries: 3D Shape Forming with Modularized Serial-Connected Inflatables
UIST '21· Shape-Changing Interfaces & Soft Robotic Materials
- 100%
MagneShape: A Non-electrical Pin-Based Shape-Changing Display
UIST '22· Shape-Changing Interfaces & Soft Robotic Materials
- 100%
BIOGEM: A Fully Biodegradable Gelatin-Based McKibben Actuator with Embedded Sensing
UIST '25· Shape-Changing Interfaces & Soft Robotic Materials
Based on Jaccard similarity of research subtopics & professions (≥60%)