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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Mechanical behavior of mother-of-pearl and pearl with flat and spherical laminations
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Mechanical behavior of mother-of-pearl and pearl with flat and spherical laminations

机译:珍珠母贝和珍珠的力学性能

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摘要

Laminated structure reduces the common inverse relationship of strength and toughness in many biological materials. Here the mechanical behavior of pearl and nacre with spherical and flat laminations was investigated and compared with the geological aragonite counterpart. The biological ceramics demonstrate higher strength, better reliability, and improved damage resistance owing to their laminated arrangement. Kinking and delamination occur in pearl to resist damage in addition to the crack-tip shielding mechanisms as in nacre, such as crack deflection, bridging, and platelet pull-out. The fracture mechanisms were interpreted in terms of the stress state using finite element simulation. This study may help clarify the compressive mechanics of laminated sphere between platens and advance the understanding on the mechanical behavior of biological and bio-inspired laminated materials. (C) 2016 Elsevier B.V. All rights reserved.
机译:层状结构降低了许多生物材料中强度和韧性的常见反比关系。在此研究了球形和扁平层压的珍珠和珍珠质的力学行为,并将其与地质文石对应物进行了比较。由于其层叠结构,生物陶瓷表现出更高的强度,更好的可靠性和改善的抗损伤性。除了珍珠质的裂纹尖端屏蔽机制(如裂纹偏转,桥接和血小板脱落)外,珍珠中还会发生弯折和分层,以抵抗损坏。使用有限元模拟根据应力状态解释了断裂机理。这项研究可能有助于弄清压板之间的层压球的压缩力学,并加深对生物和受生物启发的层压材料的机械性能的了解。 (C)2016 Elsevier B.V.保留所有权利。

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