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Microstructure observation and mechanical behavior modeling for limnetic nacre 被引量:9

Microstructure observation and mechanical behavior modeling for limnetic nacre
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摘要 In the present research, microstructure of akind of limnetic shell (Hyriopsis cumingii) is observed and measured by using the scanning electron microscopy, and mechanical behavior experiments of the shell nacre are carried out by using bending and tensile tests. The dependence of mechanical properties of the shell nacre on its microstructure is analyzed by using a modified shear-lag model, and the overall stress-strain relation is obtained. The experimental results reveal that the mechanical properties of shell nacre strongly depend on the water contents of the limnetic shell. Dry nacre shows a brittle behavior, whereas wetting nacre displays a strong ductility. Compared to the tensile test, the bending test overestimates the strength and underestimates the Young's modulus. The modified shear-lag model can characterize the deformation features of nacre effectively. In the present research, microstructure of akind of limnetic shell (Hyriopsis cumingii) is observed and measured by using the scanning electron microscopy, and mechanical behavior experiments of the shell nacre are carried out by using bending and tensile tests. The dependence of mechanical properties of the shell nacre on its microstructure is analyzed by using a modified shear-lag model, and the overall stress-strain relation is obtained. The experimental results reveal that the mechanical properties of shell nacre strongly depend on the water contents of the limnetic shell. Dry nacre shows a brittle behavior, whereas wetting nacre displays a strong ductility. Compared to the tensile test, the bending test overestimates the strength and underestimates the Young's modulus. The modified shear-lag model can characterize the deformation features of nacre effectively.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2008年第1期83-89,共7页 力学学报(英文版)
基金 the National Natural Science Foundation of China (10432050,10428207 and 10672163) the Chinese Academy of Sciences (KJCX2-YW-M04) the Institute of Mechanics through Innovation Project
关键词 Nacre. Microstructure Shear-lag model .Mechanical property Nacre. Microstructure Shear-lag model .Mechanical property
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