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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >New toughening concepts for ceramic composites from rigid natural materials.
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New toughening concepts for ceramic composites from rigid natural materials.

机译:刚性天然材料制成的陶瓷复合材料的新增韧概念。

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摘要

The mechanisms underlying the toughening in rigid natural composites exhibited by the concentric cylindrical composites of spicules of hexactinellid sponges, and by the nacre (brick-and-mortar) structure of mollusks such as Haliotis rufescens (red abalone), as well as the crossed-lamellar structure of Strombus gigas (queen conch) show commonalities in the manner in which toughening takes place. It is proposed that crack diversion, a new kind of crack bridging, resulting in retardation of delamination, creation of new surface areas, and other energy-dissipating mechanisms occur in both natural systems. However, these are generally different from the toughening mechanisms that are utilized for other classes of structural materials. Complementary to those mechanisms found in rigid natural ceramic/organic composites, special architectures and thin viscoelastic organic layers have been found to play controlling roles in energy dissipation in these structures.
机译:硬脂酸天然海绵复合材料的同心圆柱复合材料以及软体动物的珍珠质(砖和灰浆)结构(如盐鲍鱼(红鲍鱼))和交叉的硬质天然复合材料增韧的机理巨型海螺(Strombus gigas)的层状结构在增韧过程中表现出共性。建议在两种自然系统中都发生裂缝转移,一种新的裂缝桥接,导致分层延迟,产生新的表面积以及其他耗能机制。但是,这些通常不同于用于其他类结构材料的增韧机制。与刚性天然陶瓷/有机复合材料中发现的那些机理相辅相成,特殊的结构和薄的粘弹性有机层在这些结构的能量耗散中起着控制作用。

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