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Bone is a hierarchical material that involves fracture mechanisms at multiple scales ranging from nano- to macroscale.
A plastic model was suggested based on tested failure maps to reveal the plastic deformation of the hierarchical material.
Localization kernels play an important role in the study of hierarchical material systems with well separated length scales.
The analysis is relevant for bone, which is a highly heterogeneous hierarchical material, in which localized plastic deformation has been recently shown to occur at dilatational bands.
The concept of a representative volume element (RVE) is central to the establishment of robust microstructure processing property relationships in all hierarchical material systems.
In contrast, NaOH treatment selectively dissolves framework silica to form mesopore and modify microporous structure through which hierarchical material is constructed with agglomerated crystals.
Similar(48)
Hierarchical materials are organized matter from multilength-scale building blocks.
Hierarchical materials constructed from 2D materials, such as 3D crumpled nanoparticles, nanoflowers, and heterostructures, are highlighted.
Hierarchical materials supported on metal substrates present promising applications in flexible energy storage and conversion devices.
Bioinspired strategy is introduced for its promising potentials toward the rational organization of hierarchical materials.
The ultimate goal of hierarchical materials research is the function-led design.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com