Dynastes tityus (D. tityus) is a typical beetle whose elytra are light and strong. The primary function of elytra is to protect beetle’s hindwings. In this paper, D. tityus elytra were selected as the biological prototype for the investigation to obtain bio-inspirations for the design and development of light materials with high ratio of strength to mass. Firstly, the microstructure investigation and quasi-static nanoindentation tests have been carried out on the ten samples of the selected elytra of D. tityus to reveal their mechanical properties and microstructures. Secondly, based on the findings from the microstructure investigation and nanoindentation tests, three models of bio-inspired materials have been proposed for further stu...
The exoskeletal cuticles of insects are made of materials that could have a wide range of material p...
Insect cuticle has drawn a lot of attention from engineers because of its multifunctional role in th...
Biological materials have mechanical properties that have been highly tuned for specific functions. ...
Dynastes tityus (D. tityus) is a typical beetle whose elytra are light and strong. The primary funct...
This is the author accepted manuscript. The final version is available from the National Academy of ...
Quantitative measurements of the mechanical properties of insect cuticle are a useful tool in the de...
The beetle elytra requires not only to be lightweight to make a beetle fly easily, but also to prote...
Biological systems have a remarkable capability of synthesizing multifunctional materials that are a...
Biological composites provide valuable design guidelines to produce the next generation of engineeri...
This work investigates the multiscaled structure and the constitutive behavior of the exoskeleton of...
Living organisms can process natural building blocks into hierarchical architectures under mild envi...
The importance of biological materials has long been recognized from the molecular level to higher l...
Reproducing the structure of biological materials has rendered synthetic materials with remarkable p...
There is an increasing need for the development of multifunctional lightweight materials with high s...
Evolution in nature has produced through adaptation a wide variety of distinctive optical structures...
The exoskeletal cuticles of insects are made of materials that could have a wide range of material p...
Insect cuticle has drawn a lot of attention from engineers because of its multifunctional role in th...
Biological materials have mechanical properties that have been highly tuned for specific functions. ...
Dynastes tityus (D. tityus) is a typical beetle whose elytra are light and strong. The primary funct...
This is the author accepted manuscript. The final version is available from the National Academy of ...
Quantitative measurements of the mechanical properties of insect cuticle are a useful tool in the de...
The beetle elytra requires not only to be lightweight to make a beetle fly easily, but also to prote...
Biological systems have a remarkable capability of synthesizing multifunctional materials that are a...
Biological composites provide valuable design guidelines to produce the next generation of engineeri...
This work investigates the multiscaled structure and the constitutive behavior of the exoskeleton of...
Living organisms can process natural building blocks into hierarchical architectures under mild envi...
The importance of biological materials has long been recognized from the molecular level to higher l...
Reproducing the structure of biological materials has rendered synthetic materials with remarkable p...
There is an increasing need for the development of multifunctional lightweight materials with high s...
Evolution in nature has produced through adaptation a wide variety of distinctive optical structures...
The exoskeletal cuticles of insects are made of materials that could have a wide range of material p...
Insect cuticle has drawn a lot of attention from engineers because of its multifunctional role in th...
Biological materials have mechanical properties that have been highly tuned for specific functions. ...