Combining pneumatics with a hydrogel to create a baromorph鈥攆or soft robotics

Combining pneumatics with a hydrogel to create a baromorph鈥攆or soft robotics
a, Continuous family of equilibrium states obtained for a baromorph under different pressures. b, Corresponding network of channels embedded in the plate. Channels are more concentrated in the central region of the disk, which leads to a spiky structure once inflated. c, Dynamical response: actuation at approximately 3鈥塇z of the pneumatic system (Supplementary Video 6). Scale bars, 2鈥塩m. Credit: Nature Materials (2018). DOI: 10.1038/s41563-018-0219-x

A small team of researchers at ESPCI Paris has come up with a way to combine pneumatics with a hydrogel to create a baromorph for soft robotics applications鈥攁 baromorph is a soft material that self-configures when inflated. In their paper published in the journal Nature Materials, the group describes their research and their geometric creations. Efi Efrati with the Weizmann Institute of Science has written a News and Views on the work done by the team in the same journal issue.

In the never-ending quest to create robots that are ever more capable, roboticists have often been inspired by creatures that nature has designed. Attempting to mimic humans is a popular research area, as is copying four-legged creatures. Efrati notes that most such animals have one thing in common鈥攕tiff parts of their anatomy working against other stiff parts produce motion鈥攂ones in joints, for example. But as Efrati also notes, there is another area of research focused on the development of softer components that are manipulated without stiffer components鈥攍ike jellyfish, for example, or flowers. Unfortunately, progress in this area has been rather slow鈥攕oft machines tend to respond slowly due to actuation issues. And they also tend to have limited degrees of motion and wear out quickly. In this new effort, the researchers have come up with a novel approach to creating soft machines鈥攃ombining the bendability of hydrogels with the power of air pressure. They call their creations baromorphs, and they have demonstrated that they can be used to create soft-machines in wide variety of shapes.

Each baromorph is essentially a sheet of with channels inside of it. In its initial relaxed state, it is typically flat. When air is pumped in, it is routed through the channels in such a way as to inflate the baromoph into a desired shape. The channels are designed using a computer program, which also handles the formation of the resultant product. To prove the viability of their method, the researchers created baromorphs that were shaped like bowls, a saddle and even a human face.

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More information: Emmanuel Si茅fert et al. Bio-inspired pneumatic shape-morphing elastomers, Nature Materials (2018).

Journal information: Nature Materials

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