Tsitrou Effrosyni A, Northeast Simon E, van Noort Richard
Department of Adult Dental Care, School of Clinical Dentistry, University of Sheffield, Claremont Crescent, S10 2TA Sheffield, UK.
J Dent. 2007 Dec;35(12):897-902. doi: 10.1016/j.jdent.2007.07.002. Epub 2007 Oct 30.
The machinability of a material can be measured with the calculation of its brittleness index (BI). It is possible that different materials with different BI could produce restorations with varied marginal integrity. The degree of marginal chipping of a milled restoration can be estimated by the calculation of the marginal chipping factor (CF). The aim of this study is to investigate any possible correlation between the BI of machinable dental materials and the CF of the final restorations.
The CEREC system was used to mill a wide range of materials used with that system; namely the Paradigm MZ100 (3M/ESPE), Vita Mark II (VITA), ProCAD (Ivoclar-Vivadent) and IPS e.max CAD (Ivoclar-Vivadent). A Vickers Hardness Tester was used for the calculation of BI, while for the calculation of CF the percentage of marginal chipping of crowns prepared with bevelled marginal angulations was estimated.
The results of this study showed that Paradigm MZ100 had the lowest BI and CF, while IPS e.max CAD demonstrated the highest BI and CF. Vita Mark II and ProCAD had similar BI and CF and were lying between the above materials. Statistical analysis of the results showed that there is a perfect positive correlation between BI and CF for all the materials.
The BI and CF could be both regarded as indicators of a material's machinability. Within the limitations of this study it was shown that as the BI increases so does the potential for marginal chipping, indicating that the BI of a material can be used as a predictor of the CF.
材料的可加工性可以通过计算其脆性指数(BI)来衡量。不同脆性指数的不同材料可能会产生边缘完整性各异的修复体。通过计算边缘崩裂因子(CF)可以估计铣削修复体的边缘崩裂程度。本研究的目的是调查可加工牙科材料的脆性指数与最终修复体的边缘崩裂因子之间是否存在任何可能的相关性。
使用CEREC系统铣削该系统所使用的多种材料,即Paradigm MZ100(3M/ESPE)、Vita Mark II(维他)、ProCAD(义获嘉-伟瓦登特)和IPS e.max CAD(义获嘉-伟瓦登特)。使用维氏硬度计计算脆性指数,而对于边缘崩裂因子的计算,则估计制备有斜切边缘角度的牙冠的边缘崩裂百分比。
本研究结果表明,Paradigm MZ100的脆性指数和边缘崩裂因子最低,而IPS e.max CAD的脆性指数和边缘崩裂因子最高。Vita Mark II和ProCAD的脆性指数和边缘崩裂因子相似,介于上述材料之间。结果的统计分析表明,所有材料的脆性指数和边缘崩裂因子之间存在完全正相关。
脆性指数和边缘崩裂因子均可被视为材料可加工性的指标。在本研究的局限性范围内,结果表明,随着脆性指数的增加,边缘崩裂的可能性也增加,这表明材料的脆性指数可作为边缘崩裂因子的预测指标。