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通过纳米压痕法研究人牙釉质的弹性模量和应力-应变响应。

Elastic modulus and stress-strain response of human enamel by nano-indentation.

作者信息

He Li Hong, Fujisawa Naoki, Swain Michael V

机构信息

Biomaterials Science Research Unit, Faculty of Dentistry, University of Sydney, Sydney Dental Hospital, Slurry Hills, NSW 2010, Australia.

出版信息

Biomaterials. 2006 Aug;27(24):4388-98. doi: 10.1016/j.biomaterials.2006.03.045. Epub 2006 Apr 27.

Abstract

Nano-indentation with a sharp (Berkovich) and two spherical indenters with nominal tip radii of 5 and 20 microm was used to determine the elastic modulus and stress-strain response of human enamel. Indentation tests were made over a wide range of peak loads from 1 to 450 mN in two orthogonal directions, i.e., parallel and perpendicular to enamel prisms. The elastic modulus and hardness (mean contact pressure) versus depth of penetration were determined for the three indenters. From the spherical indentation data, stress-strain curves (H-tantheta curve) of enamel were determined in the two orthogonal directions and were found to be different. The elastic modulus showed load dependence for both orientations of the enamel rod structure that depended on the indenter. However, these differences could be normalized upon considering the contact diameter. The indented sample was imaged with an SEM to investigate the near surface damage. In conclusion, prism-sheath structure played an important role in determining the mechanical properties as well as the localized fracture of enamel.

摘要

使用尖锐的(贝氏)压头以及标称尖端半径分别为5微米和20微米的两个球形压头进行纳米压痕试验,以确定人类牙釉质的弹性模量和应力 - 应变响应。在1至450毫牛的宽峰值载荷范围内,在两个正交方向(即平行和垂直于牙釉质棱柱)上进行压痕试验。测定了三种压头的弹性模量和硬度(平均接触压力)与穿透深度的关系。根据球形压痕数据,确定了牙釉质在两个正交方向上的应力 - 应变曲线(H - 正切θ曲线),发现两者不同。弹性模量显示出对于牙釉质棒结构的两个取向均存在载荷依赖性,且该依赖性取决于压头。然而,考虑接触直径后,这些差异可以归一化。用扫描电子显微镜对压痕样品进行成像,以研究近表面损伤。总之,棱柱 - 鞘结构在决定牙釉质的力学性能以及局部断裂方面起着重要作用。

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