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通过纳米压痕法研究牙釉质与深度相关的力学性能。

Depth-dependent mechanical properties of enamel by nanoindentation.

作者信息

Zhou Jikou, Hsiung Luke L

机构信息

Lawrence Livermore National Laboratory, U.S. Department of Energy, Livermore, CA 94551, USA.

出版信息

J Biomed Mater Res A. 2007 Apr;81(1):66-74. doi: 10.1002/jbm.a.31012.

Abstract

Nanoindentation has recently emerged to be the primary method to study the mechanical behavior and reliability of human enamel. Its hardness and elastic modulus were generally reported as average values with standard deviations that were calculated from the results of multiple nanoindentation testing. In such an approach, it is assumed that the mechanical properties of human enamel are constant, independent of testing parameters, like indent depth and loading rate. However, little is known if they affect the measurements. In this study, we investigated the dependence of the hardness and elastic modulus of human enamel on the indent depth. We found that in a depth range from 100 to 2000 nm the elastic moduli continuously decreased from approximately 104 to 70 GPa, and the hardnesses decreased from approximately 5.7 to 3.6 GPa. We then considered human enamel as a fiber-reinforced composite, and used the celebrated rule of mixture theory to quantify the upper and lower bounds of the elastic moduli, which were shown to cover the values measured in the current study and previous studies. Accordingly, we attributed the depth dependence of the hardness and modulus to the continuous microstructure evolution induced by the nanoindenter tip.

摘要

纳米压痕术最近已成为研究人类牙釉质力学行为和可靠性的主要方法。其硬度和弹性模量通常报告为平均值,并带有根据多次纳米压痕测试结果计算得出的标准偏差。在这种方法中,假定人类牙釉质的力学性能是恒定的,与诸如压痕深度和加载速率等测试参数无关。然而,对于这些参数是否会影响测量结果却知之甚少。在本研究中,我们研究了人类牙釉质的硬度和弹性模量对压痕深度的依赖性。我们发现,在100至2000纳米的深度范围内,弹性模量从约104吉帕持续下降至70吉帕,硬度从约5.7吉帕下降至3.6吉帕。然后,我们将人类牙釉质视为纤维增强复合材料,并使用著名的混合法则理论来量化弹性模量的上下限,结果表明其涵盖了本研究及先前研究中测得的值。因此,我们将硬度和模量的深度依赖性归因于纳米压痕尖端引起的连续微观结构演变。

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