Gradient structures with enhanced performance are ubiquitously observed in nature and in engineering materials. In this paper, we studied the impact resistance of two types of broadly used honeycomb structures (HCSs), a hexagonal HCS and an auxetic HCS. We developed a neural network (NN) which could effectively help to find an optimal gradient design for energy absorption of HCSs in contrast with their uniform counterpart. The optimal density gradient for both hexagonal HCS and auxetic HCS was identified, which are 66% and 40% higher in energy absorption than their respective uniform control. Followed finite-element analysis revealed that density gradient of HCSs enables loading transfer among a greater deformation zone, consequentially mor...
Given the significance of energy absorption in various industries, light shock absorbers such as hon...
Honeycomb structures are widely used in applications that require excellent strain energy mitigation...
Double arrowhead honeycombs (DAHs) are a type of cellular materials showing auxetic behavior (i.e., ...
Gradient structures with enhanced performance are ubiquitously observed in nature and in engineering...
A novel bi-graded honeycomb was proposed by introducing both in-plane and out-of-plane thickness gra...
Nature’s bio-organisms are typically hybrid structures composed of hierarchical and functionally gra...
Introducing gradient into cellular materials has been envisioned as an effective way to improve thei...
This study focuses on the nature-inspired gradient-based approach to re-designing re-entrant anti-tr...
Density gradation has been analytically and experimentally proven to enhance the load-bearing and en...
Higher energy absorption efficiency and better crashworthiness performance are always the key object...
Gradient aluminum honeycomb structure is an effective energy-absorbing structure. According to the c...
While the separate design of functionally graded and fractal self-similarity structures had shown to...
Density gradation has been analytically and experimentally proven to enhance the load-bearing and en...
Honeycomb lattices exhibit remarkable structural properties and novel functionalities, such as high ...
Enhancing the energy absorption characteristics of a material/structure without compromising its str...
Given the significance of energy absorption in various industries, light shock absorbers such as hon...
Honeycomb structures are widely used in applications that require excellent strain energy mitigation...
Double arrowhead honeycombs (DAHs) are a type of cellular materials showing auxetic behavior (i.e., ...
Gradient structures with enhanced performance are ubiquitously observed in nature and in engineering...
A novel bi-graded honeycomb was proposed by introducing both in-plane and out-of-plane thickness gra...
Nature’s bio-organisms are typically hybrid structures composed of hierarchical and functionally gra...
Introducing gradient into cellular materials has been envisioned as an effective way to improve thei...
This study focuses on the nature-inspired gradient-based approach to re-designing re-entrant anti-tr...
Density gradation has been analytically and experimentally proven to enhance the load-bearing and en...
Higher energy absorption efficiency and better crashworthiness performance are always the key object...
Gradient aluminum honeycomb structure is an effective energy-absorbing structure. According to the c...
While the separate design of functionally graded and fractal self-similarity structures had shown to...
Density gradation has been analytically and experimentally proven to enhance the load-bearing and en...
Honeycomb lattices exhibit remarkable structural properties and novel functionalities, such as high ...
Enhancing the energy absorption characteristics of a material/structure without compromising its str...
Given the significance of energy absorption in various industries, light shock absorbers such as hon...
Honeycomb structures are widely used in applications that require excellent strain energy mitigation...
Double arrowhead honeycombs (DAHs) are a type of cellular materials showing auxetic behavior (i.e., ...