The surfaces of growing biological tissues, swelling gels, and compressed rubbers do not remain smooth, but frequently exhibit highly localized inward folds. We reveal the morphology of this surface folding in a novel experimental setup, which permits us to deform the surface of a soft gel in a controlled fashion. The interface first forms a sharp furrow, whose tip size decreases rapidly with deformation. Above a critical deformation, the furrow bifurcates to an inward folded crease of vanishing tip size. We show experimentally and numerically that both creases and furrows exhibit a universal cusp shape, whose width scales like y3/2 at a distance y from the tip. We provide a similarity theory that captures the singular profiles before and a...
We address the folding induced by differential growth in soft layered solids via an elementary model...
Many biological tissues develop elaborate folds during growth and development. The onset of this fol...
Spontaneous formation of surface patterns such as folds and creases is widely observed in engineered...
The surfaces of growing biological tissues, swelling gels, and compressed rubbers do not remain smoo...
The surfaces of growing biological tissues, swelling gels, and compressed rubbers do not remain smoo...
\u3cp\u3eThe surfaces of growing biological tissues, swelling gels, and compressed rubbers do not re...
The surfaces of growing biological tissues, swelling gels, and compressed rubbers do not remain smoo...
The surfaces of growing biological tissues, swelling gels, and compressed rubbers do not remain smoo...
The surfaces of growing biological tissues, swelling gels, and compressed rubbers do not remain smoo...
The surfaces of growing biological tissues, swelling gels, and compressed rubbers do not remain smoo...
The compression of soft elastic matter and biological tissue can lead to creasing, an instability wh...
The compression of soft elastic matter and biological tissue can lead to creasing, an instability wh...
The compression of soft elastic matter and biological tissue can lead to creasing, an instability wh...
Theory and experiment are presented to show that an interface between two soft materials under compr...
Soft tissues growing under constraint often form creases. We adopt the model of growth that factors ...
We address the folding induced by differential growth in soft layered solids via an elementary model...
Many biological tissues develop elaborate folds during growth and development. The onset of this fol...
Spontaneous formation of surface patterns such as folds and creases is widely observed in engineered...
The surfaces of growing biological tissues, swelling gels, and compressed rubbers do not remain smoo...
The surfaces of growing biological tissues, swelling gels, and compressed rubbers do not remain smoo...
\u3cp\u3eThe surfaces of growing biological tissues, swelling gels, and compressed rubbers do not re...
The surfaces of growing biological tissues, swelling gels, and compressed rubbers do not remain smoo...
The surfaces of growing biological tissues, swelling gels, and compressed rubbers do not remain smoo...
The surfaces of growing biological tissues, swelling gels, and compressed rubbers do not remain smoo...
The surfaces of growing biological tissues, swelling gels, and compressed rubbers do not remain smoo...
The compression of soft elastic matter and biological tissue can lead to creasing, an instability wh...
The compression of soft elastic matter and biological tissue can lead to creasing, an instability wh...
The compression of soft elastic matter and biological tissue can lead to creasing, an instability wh...
Theory and experiment are presented to show that an interface between two soft materials under compr...
Soft tissues growing under constraint often form creases. We adopt the model of growth that factors ...
We address the folding induced by differential growth in soft layered solids via an elementary model...
Many biological tissues develop elaborate folds during growth and development. The onset of this fol...
Spontaneous formation of surface patterns such as folds and creases is widely observed in engineered...