The exquisite meso- or micro-structures of natural biomaterials, e.g., brick-mud microstructures of nacre and conch shell, gradient micro-structures of bamboo and antlers, and interlocking meso-structures of beetle shells, can enhance the ability of materials to resist external impact from different aspects. This will provide inspiration for the design, optimization and performance improvement of new bionic impact resistance structures. In this paper, gradient and interlocking structures are introduced into brick-mud structures, and then gradient interlocking and bidirectional interlocking brick-mud structures are designed, and finally samples are prepared by 3D printing technology. The results of pendulum impact experiment show that the la...
Natural impact-resistant biomaterials, with ingenious and exquisite geometric configurations, have r...
Guden, Mustafa/0000-0001-6397-8418WOS: 000445311400043A thin-walled structure inspired from a biolog...
In order to reduce the weight of the panels used in buildings and minimize the use of wood, it is of...
The exquisite meso- or micro-structures of natural biomaterials, e.g., brick-mud microstructures of ...
A novel brick-mud structure was proposed by introducing cell size gradient design into the nacre-lik...
Despite the increasing interest in topological interlocking structures made of identical elements, o...
Inspired by impact-resistant hedgehog spine and beetle's forewing, the thin-walled structures of sim...
Bamboo cell wall exhibits a microscopically graded architecture, and micro-layer distributed cells a...
Masonry construction with interlocking bricks could effectively reduce construction time, minimize l...
Biological materials are often composed of relatively weak constituents yet have evolved complex, hi...
Many materials in nature exhibit excellent mechanical properties. In this study, we evaluated the bi...
Out-of-face gradient sandwich structures have been widely studied for their excellent impact resista...
The focus of this study was to develop manually compressed interlocking mud bricks and study their c...
In this paper, novel bionic sandwich cores are proposed based on the cross section of seagull feathe...
© 2018 Elsevier Ltd Bio-inspired engineering design has drawn considerable attention in the recent y...
Natural impact-resistant biomaterials, with ingenious and exquisite geometric configurations, have r...
Guden, Mustafa/0000-0001-6397-8418WOS: 000445311400043A thin-walled structure inspired from a biolog...
In order to reduce the weight of the panels used in buildings and minimize the use of wood, it is of...
The exquisite meso- or micro-structures of natural biomaterials, e.g., brick-mud microstructures of ...
A novel brick-mud structure was proposed by introducing cell size gradient design into the nacre-lik...
Despite the increasing interest in topological interlocking structures made of identical elements, o...
Inspired by impact-resistant hedgehog spine and beetle's forewing, the thin-walled structures of sim...
Bamboo cell wall exhibits a microscopically graded architecture, and micro-layer distributed cells a...
Masonry construction with interlocking bricks could effectively reduce construction time, minimize l...
Biological materials are often composed of relatively weak constituents yet have evolved complex, hi...
Many materials in nature exhibit excellent mechanical properties. In this study, we evaluated the bi...
Out-of-face gradient sandwich structures have been widely studied for their excellent impact resista...
The focus of this study was to develop manually compressed interlocking mud bricks and study their c...
In this paper, novel bionic sandwich cores are proposed based on the cross section of seagull feathe...
© 2018 Elsevier Ltd Bio-inspired engineering design has drawn considerable attention in the recent y...
Natural impact-resistant biomaterials, with ingenious and exquisite geometric configurations, have r...
Guden, Mustafa/0000-0001-6397-8418WOS: 000445311400043A thin-walled structure inspired from a biolog...
In order to reduce the weight of the panels used in buildings and minimize the use of wood, it is of...