Javascript must be enabled to continue!
MECHANICAL CHARACTERIZATION OF ROTATING TRIANGLE SHAPED AUXETIC SKIN GRAFT SIMULANTS
View through CrossRef
The expansion of the skin grafts plays a key role in treating severe burn injuries. Split-thickness skin grafting, which is a well-known technique for stretching donor skin samples beyond its capacity, typically produces expansions which are insufficient to cover large burn areas. In this work, the expansion potential of skin grafts with novel rotating triangle (RT) shaped auxetic incision patterns were investigated extensively. A skin simulant was employed and a range of RT configurations, with internal angles varying from 0° to 135°, were tested through the development of skin graft simulants. Mechanical testing and digital image correlation (DIC) were used to characterize the Poisson’s effect, meshing ratios, and induced stresses of the skin graft simulants, up to 50% strains. The 0° model produced the highest negative Poisson’s effect and areal expansions. As the internal angle of the auxetic was increased, expansions were observed to decrease significantly. Beyond 60°, positive Poisson’s effect and contractions occurred with an increasing trend, and its peak at 105°. At 15° and 120°, the induced strains were observed to be significant, posing risks of skin rupture. Overall, the expansions were observed to be higher at lower strains. Such experimental findings on expansion potentials and estimations of mechanical properties with auxetic skin grafts simulants have not been reported to date, and would be indispensable for further research in skin graft expansion and severe burn injury treatment.
Title: MECHANICAL CHARACTERIZATION OF ROTATING TRIANGLE SHAPED AUXETIC SKIN GRAFT SIMULANTS
Description:
The expansion of the skin grafts plays a key role in treating severe burn injuries.
Split-thickness skin grafting, which is a well-known technique for stretching donor skin samples beyond its capacity, typically produces expansions which are insufficient to cover large burn areas.
In this work, the expansion potential of skin grafts with novel rotating triangle (RT) shaped auxetic incision patterns were investigated extensively.
A skin simulant was employed and a range of RT configurations, with internal angles varying from 0° to 135°, were tested through the development of skin graft simulants.
Mechanical testing and digital image correlation (DIC) were used to characterize the Poisson’s effect, meshing ratios, and induced stresses of the skin graft simulants, up to 50% strains.
The 0° model produced the highest negative Poisson’s effect and areal expansions.
As the internal angle of the auxetic was increased, expansions were observed to decrease significantly.
Beyond 60°, positive Poisson’s effect and contractions occurred with an increasing trend, and its peak at 105°.
At 15° and 120°, the induced strains were observed to be significant, posing risks of skin rupture.
Overall, the expansions were observed to be higher at lower strains.
Such experimental findings on expansion potentials and estimations of mechanical properties with auxetic skin grafts simulants have not been reported to date, and would be indispensable for further research in skin graft expansion and severe burn injury treatment.
Related Results
Preface: phys. stat. sol. (b) 244/3
Preface: phys. stat. sol. (b) 244/3
AbstractThis is the 2nd special issue of physica status solidi (b) dedicated to materials exhibiting negative Poisson's ratio (auxetic) or other unusual or counter‐intuitive physic...
Characterisation of planetary simulants using a rotating drum experiment
Characterisation of planetary simulants using a rotating drum experiment
Many celestial bodies in our Solar System, such as the Moon, Mars and small bodies, are covered with a layer of regolith. Numerous current and upcoming space missions aim to intera...
Simulated Asteroid and Planetary Materials at the CLASS Exolith Lab
Simulated Asteroid and Planetary Materials at the CLASS Exolith Lab
The Exolith Lab at The University of Central Florida’s Center for Lunar and Asteroid Surface Science (CLASS) produces high-mineralogical fidelity asteroid and planetary r...
Planetary Surface Texture Laboratory: Polarimetric Investigation of Lunar Regolith Simulants
Planetary Surface Texture Laboratory: Polarimetric Investigation of Lunar Regolith Simulants
Photometry measures the intensity of light from a source, most commonly used in optics and remote sensing, in order to analyze planetary surfaces and measure brightness, also ...
Woven Fabrics Made of Auxetic Plied Yarns
Woven Fabrics Made of Auxetic Plied Yarns
Auxetic plied yarns are specially constructed with two types of single yarns of different sizes and moduli. This paper investigates how to use these types of yarns to produce woven...
Customized Human Skin Simulants
Customized Human Skin Simulants
A simulant which precisely mimics the linear and non-linear mechanical properties of “the human skin” would be indispensable for assessment of load responses (and discomfort) produ...
The Paradigm of the Iron Triangle
The Paradigm of the Iron Triangle
Background and Originality: The project triangle, also named as the triple constraint, iron triangle, golden triangle, and agile triangle, is a central concept in project managemen...
Triangle Centrality
Triangle Centrality
Triangle centrality is introduced for finding important vertices in a graph based on the concentration of triangles surrounding each vertex. It has the distinct feature of allowing...

