The compression of soft elastic matter and biological tissue can lead to creasing, an instability where a surface folds sharply into periodic self-contacts. Intriguingly, the unfolding of the surface upon releasing the strain is usually not perfect: small scars remain that serve as nuclei for creases during repeated compressions. Here we present creasing experiments with sticky polymer surfaces, using confocal microscopy, which resolve the contact line region where folding and unfolding occurs. It is found that surface tension induces a second fold, at the edge of the self-contact, which leads to a singular elastic stress and self-similar crease morphologies. However, these profiles exhibit an intrinsic folding-unfolding asymmetry that is c...
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...
A soft elastic material placed under compressive stress can undergo a surface creasing instability i...
This work focuses on understanding deformation mechanisms and responsiveness associated with the wri...
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...
ABSTRACT: When a polymer film that is weakly attached to a rigid substrate is exposed to solvent, sw...
Spontaneous formation of surface patterns such as folds and creases is widely observed in engineered...
Thin elastic solids are easily deformed into a myriad of three-dimensional shapes, which may contain...
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...
A soft elastic material placed under compressive stress can undergo a surface creasing instability i...
This work focuses on understanding deformation mechanisms and responsiveness associated with the wri...
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...
ABSTRACT: When a polymer film that is weakly attached to a rigid substrate is exposed to solvent, sw...
Spontaneous formation of surface patterns such as folds and creases is widely observed in engineered...
Thin elastic solids are easily deformed into a myriad of three-dimensional shapes, which may contain...
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...