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大熊猫的牙釉质:压痕下的结构、力学行为及增韧机制

Giant panda׳s tooth enamel: Structure, mechanical behavior and toughening mechanisms under indentation.

作者信息

Weng Z Y, Liu Z Q, Ritchie R O, Jiao D, Li D S, Wu H L, Deng L H, Zhang Z F

机构信息

Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China.

Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China; Department of Materials Science and Engineering, University of California, Berkeley, CA 94720, USA.

出版信息

J Mech Behav Biomed Mater. 2016 Dec;64:125-38. doi: 10.1016/j.jmbbm.2016.07.029. Epub 2016 Jul 29.

Abstract

The giant panda׳s teeth possess remarkable load-bearing capacity and damage resistance for masticating bamboos. In this study, the hierarchical structure and mechanical behavior of the giant panda׳s tooth enamel were investigated under indentation. The effects of loading orientation and location on mechanical properties of the enamel were clarified and the evolution of damage in the enamel under increasing load evaluated. The nature of the damage, both at and beneath the indentation surfaces, and the underlying toughening mechanisms were explored. Indentation cracks invariably were seen to propagate along the internal interfaces, specifically the sheaths between enamel rods, and multiple extrinsic toughening mechanisms, e.g., crack deflection/twisting and uncracked-ligament bridging, were active to shield the tips of cracks from the applied stress. The giant panda׳s tooth enamel is analogous to human enamel in its mechanical properties, yet it has superior hardness and Young׳s modulus but inferior toughness as compared to the bamboo that pandas primarily feed on, highlighting the critical roles of the integration of underlying tissues in the entire tooth and the highly hydrated state of bamboo foods. Our objective is that this study can aid the understanding of the structure-mechanical property relations in the tooth enamel of mammals and further provide some insight on the food habits of the giant pandas.

摘要

大熊猫的牙齿在咀嚼竹子时具有出色的承载能力和抗损伤能力。在本研究中,对大熊猫牙釉质的层次结构和力学行为进行了压痕试验研究。阐明了加载方向和位置对牙釉质力学性能的影响,并评估了在载荷增加时牙釉质中损伤的演变。探究了压痕表面及其下方损伤的性质以及潜在的增韧机制。压痕裂纹总是沿着内部界面扩展,特别是釉柱之间的鞘,并且多种外在增韧机制,如裂纹偏转/扭曲和未开裂韧带桥接,能够有效地保护裂纹尖端免受外加应力的影响。大熊猫的牙釉质在力学性能上与人类牙釉质相似,但其硬度和杨氏模量优于人类牙釉质,而韧性却低于大熊猫主要食用的竹子,这突出了牙齿底层组织整合以及竹子食物高水合状态的关键作用。我们的目标是,本研究有助于理解哺乳动物牙釉质中的结构-力学性能关系,并进一步为大熊猫的食性提供一些见解。

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