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[HTML][HTML] Mechanical metamaterials based on origami and kirigami
Once merely ancient arts, origami (ie, paper folding) and kirigami (ie, paper cutting) have in
recent years also become popular for building mechanical metamaterials and now provide …
recent years also become popular for building mechanical metamaterials and now provide …
Mechanical metamaterials associated with stiffness, rigidity and compressibility: A brief review
Mechanical metamaterials are man-made structures with counterintuitive mechanical
properties that originate in the geometry of their unit cell instead of the properties of each …
properties that originate in the geometry of their unit cell instead of the properties of each …
Printing, folding and assembly methods for forming 3D mesostructures in advanced materials
A rapidly expanding area of research in materials science involves the development of
routes to complex 3D structures with feature sizes in the mesoscopic range (that is, between …
routes to complex 3D structures with feature sizes in the mesoscopic range (that is, between …
Architected origami materials: how folding creates sophisticated mechanical properties
Origami, the ancient Japanese art of paper folding, is not only an inspiring technique to
create sophisticated shapes, but also a surprisingly powerful method to induce nonlinear …
create sophisticated shapes, but also a surprisingly powerful method to induce nonlinear …
[HTML][HTML] From flat sheets to curved geometries: Origami and kirigami approaches
Transforming flat sheets into three-dimensional structures has emerged as an exciting
manufacturing paradigm on a broad range of length scales. Among other advantages, this …
manufacturing paradigm on a broad range of length scales. Among other advantages, this …
Electronic and optical properties of strained graphene and other strained 2D materials: a review
This review presents the state of the art in strain and ripple-induced effects on the electronic
and optical properties of graphene. It starts by providing the crystallographic description of …
and optical properties of graphene. It starts by providing the crystallographic description of …
[HTML][HTML] Cellular auxetic structures for mechanical metamaterials: A review
Recent advances in lithography technology and the spread of 3D printers allow us a facile
fabrication of special materials with complicated microstructures. The materials are called …
fabrication of special materials with complicated microstructures. The materials are called …
Morphable 3D mesostructures and microelectronic devices by multistable buckling mechanics
Abstract Three-dimensional (3D) structures capable of reversible transformations in their
geometrical layouts have important applications across a broad range of areas. Most …
geometrical layouts have important applications across a broad range of areas. Most …
Sequential self-folding of polymer sheets
Shape plays an important role in defining the function of materials, particularly those found
in nature. Several strategies exist to program materials to change from one shape to …
in nature. Several strategies exist to program materials to change from one shape to …
Programming curvature using origami tessellations
Origami describes rules for creating folded structures from patterns on a flat sheet, but does
not prescribe how patterns can be designed to fit target shapes. Here, starting from the …
not prescribe how patterns can be designed to fit target shapes. Here, starting from the …