Gorman Catherine M, Hill Robert G
Department of Restorative Dentistry and Periodontology, School of Dental Science, Trinity College Dublin, Lincoln Place, Dublin 2, Ireland.
Dent Mater. 2004 Mar;20(3):252-61. doi: 10.1016/S0109-5641(03)00100-3.
A series of ionomer glasses based on the formula: 4.5SiO2-1.5P2O5-(X)Al2O3-4.5CaO-0.5CaF2, were investigated where X was varied from 3.0 to 1.5 in order to develop heat pressable dental ceramics.
The glasses were heat-pressed and then subjected to different heat-treatment cycles. The mechanical properties of the glass-ceramics were investigated, specimens were tested for hardness, fracture toughness (indentation method) and flexural strength (biaxial method).
Good mechanical properties were obtained for heat-treatments at lower temperatures (i.e. 1150 degrees C). At intermediate heat-treatment temperatures the glass-ceramics were highly crystalline which did not favor the mechanical properties. There appears to be an inverse relationship between fracture toughness and flexural strength. High fracture toughness values of 2.7 (0.4) MPam0.5 were produced for the X = 2.8 glass heat-treated for 8 h at 1150 degrees C, the flexural strength was lowest for this heat-treatment. High flexural strengths of 194.4 (75.0) MPa were obtained by heat-treating the same glass for 1 h at 1150 degrees C. Increasing the hold time increases crystal size thereby increasing the extent of microcracking in the glass-ceramic thus lowering the flexural strength. Microcracks appear to increase the fracture toughness of the glass-ceramics probably by a crack termination mechanism.
Good flexural strength and high fracture toughness are attainable in this system, but appear to be mutually exclusive in the materials studied. With further investigation this system could provide clinically useful materials.
研究了一系列基于4.5SiO₂-1.5P₂O₅-(X)Al₂O₃-4.5CaO-0.5CaF₂配方的离聚物玻璃,其中X的值在3.0至1.5之间变化,以开发可热压的牙科陶瓷。
对这些玻璃进行热压,然后进行不同的热处理循环。研究了玻璃陶瓷的力学性能,对试样进行了硬度、断裂韧性(压痕法)和弯曲强度(双轴法)测试。
在较低温度(即1150℃)下进行热处理可获得良好的力学性能。在中等热处理温度下,玻璃陶瓷具有高度结晶性,这不利于力学性能。断裂韧性和弯曲强度之间似乎存在反比关系。对于在1150℃下热处理8小时的X = 2.8的玻璃,产生了2.7(0.4)MPam0.5的高断裂韧性值,该热处理的弯曲强度最低。通过在1150℃下对同一玻璃进行1小时的热处理,获得了194.4(75.0)MPa的高弯曲强度。延长保温时间会增加晶体尺寸,从而增加玻璃陶瓷中的微裂纹程度,进而降低弯曲强度。微裂纹似乎可能通过裂纹终止机制提高玻璃陶瓷的断裂韧性。
在该体系中可以获得良好的弯曲强度和高断裂韧性,但在所研究的材料中似乎是相互排斥的。通过进一步研究,该体系可以提供临床上有用的材料。