He Li H, Swain Michael V
Biomaterials Science Research Unit, Faculty of Dentistry, University of Sydney, Surry Hills, NSW 2006, Australia.
Dent Mater. 2007 Jul;23(7):814-21. doi: 10.1016/j.dental.2006.06.017. Epub 2006 Aug 7.
The aim of the study is to investigate the stress-strain response of different dental materials, especially dental brittle materials, and compare them with enamel.
A nano-based indentation system (Ultra Micro-Indentation System, UMIS-2000, CSIRO, Australia) was used to determine the indentation stress-strain response of two kinds of dental ceramics (Cerec 2 Mark II and Vita VM9), one kind of dental alloy (Wiron 99) and healthy enamel. A spherical indenter was used to test the materials with nanometer and micro-Newton displacement and force resolution. Assuming the elastic modulus remained constant, a plot of contact pressure versus contact strain, H-a/R, of each material was obtained.
By comparing the H-a/R curve of the different materials with enamel, it can be concluded that only the metallic alloy, has similar stress-strain response as enamel. Dental ceramics showed much higher yield stress response than enamel. VM9, a porcelain veneer component of crown/bridge structure, is slightly softer than its core, Mark II. The yield point for Mark II and VM9 are nearly 10 and 7GPa, respectively, and approximately 2GPa for Wiron alloy and enamel.
H-a/R curves provide a new method to compare the mechanical properties of different dental materials. From the standpoint of structural reliability, strong and tough materials with primarily elastic response, such as toughened ceramics are required to enable dental crown/bridges to have long term reliability. On the other hand, materials with too high hardness or yield response may damage opposing teeth during occlusal contact. Future studies may establish a relationship between stress and strain property and abrasive wear of dental material.
本研究旨在调查不同牙科材料,尤其是牙科脆性材料的应力-应变响应,并将它们与牙釉质进行比较。
使用基于纳米的压痕系统(超微压痕系统,UMIS-2000,澳大利亚联邦科学与工业研究组织)来确定两种牙科陶瓷(Cerec 2 Mark II和Vita VM9)、一种牙科合金(Wiron 99)和健康牙釉质的压痕应力-应变响应。使用球形压头以纳米和微牛顿的位移及力分辨率对材料进行测试。假设弹性模量保持恒定,获得了每种材料的接触压力与接触应变(H-a/R)的关系图。
通过将不同材料的H-a/R曲线与牙釉质进行比较,可以得出结论,只有金属合金具有与牙釉质相似的应力-应变响应。牙科陶瓷显示出比牙釉质高得多的屈服应力响应。VM9是冠/桥结构的瓷贴面成分,比其核心材料Mark II稍软。Mark II和VM9的屈服点分别约为10GPa和7GPa,Wiron合金和牙釉质的屈服点约为2GPa。
H-a/R曲线提供了一种比较不同牙科材料力学性能的新方法。从结构可靠性的角度来看,需要具有主要弹性响应的强韧材料,如增韧陶瓷,以使牙冠/牙桥具有长期可靠性。另一方面,硬度或屈服响应过高的材料在咬合接触过程中可能会损坏对颌牙齿。未来的研究可能会建立牙科材料的应力和应变特性与磨料磨损之间的关系。