Biological tissues like bone, wood, and sponge possess hierarchical cellular topologies, which are lightweight and feature an excellent energy absorption capability. Here we present a system of bio-inspired hierarchical honeycomb structures based on hexagonal, Kagome, and triangular tessellations. The hierarchical designs and a reference regular honeycomb configuration are subjected to simulated in-plane impact using the nonlinear finite element code LS-DYNA. The numerical simulation results show that the triangular hierarchical honeycomb provides the best performance compared to the other two hierarchical honeycombs, and features more than twice the energy absorbed by the regular honeycomb under similar loading conditions. We also propose ...
For the topological diversity, in-plane hexagonal honeycombs show some interesting mechanical proper...
The main aim of this project was to examine the effects of introducing hierarchy into honeycombs and...
While the separate design of functionally graded and fractal self-similarity structures had shown to...
Nature’s bio-organisms are typically hybrid structures composed of hierarchical and functionally gra...
Both auxetic structures and hierarchical honeycombs are marked with lightweight and excellent mechan...
The ability of a vehicle to protect its occupants from serious injuries in the event of a collision ...
We describe the in-plane compressive performance of a new type of hierarchical cellular structure cr...
AbstractIntroducing hierarchy into structures has been credited with improving elastic properties an...
Periodic honeycombs have been used for their high strength, low weight and multifunctionality. The q...
In this paper, we analytically studied the in-plane elastic and transport properties of a peculiar h...
AbstractCompared with triangular, square and Kagome honeycombs, hexagonal honeycomb has superior hea...
The main aim of this project was to examine the effects of introducing hierarchy into honeycombs and...
Honeycomb structures are widely used in engineering applications mainly due to their high strength t...
Given the significance of energy absorption in various industries, light shock absorbers such as hon...
Higher energy absorption efficiency and better crashworthiness performance are always the key object...
For the topological diversity, in-plane hexagonal honeycombs show some interesting mechanical proper...
The main aim of this project was to examine the effects of introducing hierarchy into honeycombs and...
While the separate design of functionally graded and fractal self-similarity structures had shown to...
Nature’s bio-organisms are typically hybrid structures composed of hierarchical and functionally gra...
Both auxetic structures and hierarchical honeycombs are marked with lightweight and excellent mechan...
The ability of a vehicle to protect its occupants from serious injuries in the event of a collision ...
We describe the in-plane compressive performance of a new type of hierarchical cellular structure cr...
AbstractIntroducing hierarchy into structures has been credited with improving elastic properties an...
Periodic honeycombs have been used for their high strength, low weight and multifunctionality. The q...
In this paper, we analytically studied the in-plane elastic and transport properties of a peculiar h...
AbstractCompared with triangular, square and Kagome honeycombs, hexagonal honeycomb has superior hea...
The main aim of this project was to examine the effects of introducing hierarchy into honeycombs and...
Honeycomb structures are widely used in engineering applications mainly due to their high strength t...
Given the significance of energy absorption in various industries, light shock absorbers such as hon...
Higher energy absorption efficiency and better crashworthiness performance are always the key object...
For the topological diversity, in-plane hexagonal honeycombs show some interesting mechanical proper...
The main aim of this project was to examine the effects of introducing hierarchy into honeycombs and...
While the separate design of functionally graded and fractal self-similarity structures had shown to...