He Li-Hong, Swain Michael V
Department of Oral Rehabilitation, Faculty of Dentistry, University of Otago, New Zealand.
J Dent. 2009 Aug;37(8):596-603. doi: 10.1016/j.jdent.2009.03.019. Epub 2009 Apr 5.
The aim of this study is to illustrate the graded proper properties of enamel from the outer (near occlusal surface) to the inner region (near enamel-dentine junction) in a cross-sectioned surface and discuss how natural design achieve the graded functions.
Nanoindentation, Raman spectroscopes, and SEM were employed to compare the inner and outer regions of the cross-sectioned enamel from different angles, namely mechanical properties such as elastic modulus and hardness, indentation energy absorption ability, indentation creep ability, indentation residual stress distribution pattern, compositional differences, and microstructural differences.
Inner enamel has lower elastic modulus and hardness but higher creep and stress redistribution abilities than outer counterpart, which is related to the gradual compositional change through the enamel.
Enamel can be regarded as a functionally graded natural biocomposite, which will require special attention using numerical analysis to fully appreciate the consequences of such a structure for the mechanical behaviour of teeth and restorations placed therein. Moreover, the smart design of nature can be a good model for us in functional graded materials/coatings design and development.
本研究旨在展示牙釉质在横截面从外层(近咬合面)到内层区域(近釉牙本质界)的分级特性,并探讨自然设计如何实现分级功能。
采用纳米压痕、拉曼光谱仪和扫描电子显微镜从不同角度比较横截面牙釉质的内层和外层区域,即弹性模量和硬度等力学性能、压痕能量吸收能力、压痕蠕变能力、压痕残余应力分布模式、成分差异和微观结构差异。
内层牙釉质的弹性模量和硬度低于外层,但蠕变和应力再分布能力高于外层,这与牙釉质成分的逐渐变化有关。
牙釉质可被视为一种功能梯度天然生物复合材料,在使用数值分析时需要特别注意,以充分认识这种结构对牙齿及其中修复体力学行为的影响。此外,自然的巧妙设计可为我们在功能梯度材料/涂层的设计和开发中提供一个良好的模型。