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Effect of water content on the nanomechanical properties and microtribological behaviour of human tooth enamel

机译:含水量对人牙釉质纳米力学性能和微摩擦学行为的影响

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摘要

Human tooth enamel exhibits excellent wear-resistance in mouth. It consists of 92-96% inorganic substances, 1-2% organic materials, and 3-4% water by weight. The contribution of water content to its wear mechanism has not been fully understood yet. In this paper, nano-indentation and scratch tests were performed on human tooth enamel after different drying time to study the effect of water content on the nanomechanical properties and microtribological behaviour. The recovery of enamel's tribological properties in water was also investigated by immersing the dried enamel specimens in deionized water. Results showed that the water content within enamel had a significant influence on its nanomechanical properties and microtribological performance. The nanoindentation hardness of enamel increased with the increase of drying time, but its elastic modulus decreased. The friction coefficient and wear loss of enamel also increased. Moreover, an increasing fluctuation occurred to the friction coefficient of enamel as the drying time increased. Microscopic examinations showed that a few micro-voids appeared on the worn surface of dried enamel, and the voids became more and more obvious with the increase of drying time. Additionally, both the friction coefficient and wear loss of the dried enamel specimen were found to significantly decrease after being immersed in water. These results indicated that the water content within human tooth enamel could reduce the value and fluctuation of friction force on the surface and protect the surface from wear damage. The anti-wear properties of enamel decreased with the decrease of its water content. The results would be helpful to extend an understanding of the relationship between the enamel chemical composition and its tribological properties and then develop new dental materials.
机译:人牙釉质在口腔中具有出色的耐磨性。它由92-96%的无机物,1-2%的有机物和3-4%的水组成。水分对其磨损机理的贡献尚不完全清楚。本文在不同的干燥时间后对人牙釉质进行了纳米压痕和划痕测试,以研究含水量对纳米力学性能和微摩擦学行为的影响。通过将干燥的瓷釉样本浸入去离子水中,还研究了瓷釉在水中的摩擦学特性的恢复。结果表明,搪瓷中的水分含量对其纳米力学性能和微生物学性能具有重要影响。搪瓷的纳米压痕硬度随着干燥时间的增加而增加,但其弹性模量下降。搪瓷的摩擦系数和磨损损失也增加了。而且,随着干燥时间的增加,搪瓷的摩擦系数出现增加的波动。显微镜检查表明,在干燥的瓷釉的磨损表面上出现了一些微孔,并且随着干燥时间的增加,空隙变得越来越明显。另外,发现将干燥的搪瓷样品浸入水中后,其摩擦系数和磨损损失均显着降低。这些结果表明,人牙釉质中的水含量可降低表面上的摩擦力值和波动,并保护表面免受磨损损害。搪瓷的抗磨性能随其含水量的减少而降低。该结果将有助于扩展对牙釉质化学成分与其摩擦学特性之间关系的理解,然后开发新的牙科材料。

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