Yasuaki Seki
University of California, San Diego
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Publication
Featured researches published by Yasuaki Seki.
Journal of The Mechanical Behavior of Biomedical Materials | 2011
Marc A. Meyers; Po-Yu Chen; Maria I. Lopez; Yasuaki Seki; Albert Yu-Min Lin
The approach used by Materials Science and Engineering is revealing new aspects in the structure and properties of biological materials. The integration of advanced characterization, mechanical testing, and modeling methods can rationalize heretofore unexplained aspects of these structures. As an illustration of the power of this methodology, we apply it to biomineralized shells, avian beaks and feathers, and fish scales. We also present a few selected bioinspired applications: Velcro, an Al2O3-PMMA composite inspired by the abalone shell, and synthetic attachment devices inspired by gecko.
Acta Biomaterialia | 2010
Yasuaki Seki; Sara Bodde; Marc A. Meyers
The structure and mechanical behavior of Toco Toucan (Ramphastos toco) and Wreathed Hornbill (Rhyticeros undulatus) beaks were compared. The beak of both species is a sandwich-structured composite, having an exterior, or rhamphotheca, consisting of multiple layers of keratin scales and a core composed of a fibrous network of bony closed-cell foam. The rhamphotheca is an arrangement of approximately 50microm diameter, overlapping, keratin tiles. The hornbill rhamphotheca exhibits a surface morphology on the ridged casque that is distinguishable from that observed on the bill proper. Intermediate filaments in the keratin matrix were observed by transmission electron microscopy. The Youngs modulus measurements of toucan rhamphotheca indicate isotropy in longitudinal and transverse directions, whereas those of hornbill rhamphotheca may suggest anisotropy. The compressive response of beak foam is governed by brittle crushing behavior. The crushing strength of hornbill foam is six times higher than that of toucan foam. Micro- and nanoindentation hardness values were measured for rhamphotheca and foam trabeculae of toucan and hornbill specimens. The sandwich design of beaks was analyzed using the Karam-Gibson and Dawson-Gibson models. The presence of a cellular core increases the bending resistance (Brazier moment) by a factor of 3-6 while decreasing the compressive strength by only 50%.
Journal of The Mechanical Behavior of Biomedical Materials | 2012
Yasuaki Seki; Mason R. Mackey; Marc A. Meyers
Bird beaks are one of the most fascinating sandwich composites in nature. Their design is composed of a keratinous integument and a bony foam core. We evaluated the structure and mechanical properties of a Toucan beak to establish structure-property relationships. We revealed the hierarchical structure of the Toucan beak by microscopy techniques. The integument consists of 50 μm polygonal keratin tiles with ~7.5 nm embedded intermediate filaments. The branched intermediate filaments were visualized by TEM tomography techniques. The bony foam core or trabecular bone is a closed-cell foam, which serves as a stiffener for the beak. The tridimensional foam structure was reconstructed by μ-CT scanning to create a model for the finite element analysis (FEA). The mechanical response of the beak foam including trabeculae and cortical shell was measured in tension and compression. We found that Youngs modulus is 3 (S.D. 2.2) GPa for the trabeculae and 0.3 (S.D. 0.2) GPa for the cortical shell. After obtaining the material parameters, the deformation and microscopic failure of foam were calculated by FEA. The calculations agree well with the experimental results.
Progress in Materials Science | 2008
Marc A. Meyers; Po-Yu Chen; Albert Yu-Min Lin; Yasuaki Seki
JOM | 2006
Marc A. Meyers; Albert Yu-Min Lin; Yasuaki Seki; Po-Yu Chen; Bimal K. Kad; Sara Bodde
Acta Materialia | 2005
Yasuaki Seki; M. S. Schneider; Marc A. Meyers
Materials Science and Engineering: C | 2006
Yasuaki Seki; Bimal K. Kad; David J. Benson; Marc A. Meyers
Materials Science and Engineering: C | 2009
Marc A. Meyers; Chwee Teck Lim; Ang Li; B.R. Hairul Nizam; E.P.S. Tan; Yasuaki Seki; Joanna McKittrick
JOM | 2008
Po-Yu Chen; Albert Yu-Min Lin; A.G. Stokes; Yasuaki Seki; Sara Bodde; Joanna McKittrick; Marc A. Meyers
Journal of Materials Research | 2009
H.J. Yang; Yongbo Xu; Yasuaki Seki; V. F. Nesterenko; Marc A. Meyers