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- W2000548665 endingPage "036004" @default.
- W2000548665 startingPage "036004" @default.
- W2000548665 abstract "The highly flexible and stretchable wing skin of bats, together with the skeletal structure and musculature, enables large changes in wing shape during flight. Such compliance distinguishes bat wings from those of all other flying animals. Although several studies have investigated the aerodynamics and kinematics of bats, few have examined the complex histology and mechanical response of the wing skin. This work presents the first biaxial characterization of the local deformation, mechanical properties, and fiber kinematics of bat wing skin. Analysis of these data has provided insight into the relationships among the structural morphology, mechanical properties, and functionality of wing skin. Large spatial variations in tissue deformation and non-negligible fiber strains in the cross-fiber direction for both chordwise and spanwise fibers indicate fibers should be modeled as two-dimensional elements. The macroscopic constitutive behavior was anisotropic and nonlinear, with very low spanwise and chordwise stiffness (hundreds of kilopascals) in the toe region of the stress–strain curve. The structural arrangement of the fibers and matrix facilitates a low energy mechanism for wing deployment and extension, and we fabricate examples of skins capturing this mechanism. We propose a comprehensive deformation map for the entire loading regime. The results of this work underscore the importance of biaxial field approaches for soft heterogeneous tissue, and provide a foundation for development of bio-inspired skins to probe the effects of the wing skin properties on aerodynamic performance." @default.
- W2000548665 created "2016-06-24" @default.
- W2000548665 creator A5036922392 @default.
- W2000548665 creator A5061483002 @default.
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- W2000548665 date "2015-04-21" @default.
- W2000548665 modified "2023-10-15" @default.
- W2000548665 title "Biaxial mechanical characterization of bat wing skin" @default.
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- W2000548665 doi "https://doi.org/10.1088/1748-3190/10/3/036004" @default.
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- W2000548665 hasPublicationYear "2015" @default.
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