Xu H H, Martin T A, Antonucci J M, Eichmiller F C
Paffenbarger Research Center, American Dental Association Health Foundation, Gaithersburg, Maryland 20899, USA.
J Dent Res. 1999 Feb;78(2):706-12. doi: 10.1177/00220345990780021101.
Resin composites currently available are not suitable for use as large stress-bearing posterior restorations involving cusps due to their tendencies toward excessive fracture and wear. The glass fillers in composites provide only limited reinforcement because of the brittleness and low strength of glass. The aim of the present study was to reinforce dental resins with ceramic single-crystalline whiskers of elongated shapes that possess extremely high strength. A novel method was developed that consisted of fusing silicate glass particles onto the surfaces of individual whiskers for a two-fold benefit: (1) to facilitate silanization regardless of whisker composition; and (2) to enhance whisker retention in the matrix by providing rougher whisker surfaces. Silicon nitride whiskers, with an average diameter of 0.4 microm and length of 5 microm, were coated by the fusion of silica particles 0.04 microm in size to the whisker surface at temperatures ranging from 650 degrees C to 1000 degrees C. The coated whiskers were silanized and manually blended with resins by spatulation. Flexural, fracture toughness, and indentation tests were carried out for evaluation of the properties of the whisker-reinforced composites in comparison with conventional composites. A two-fold increase in strength and toughness was achieved in the whisker-reinforced composite, together with a substantially enhanced resistance to contact damage and microcracking. The highest flexural strength (195+/-8 MPa) and fracture toughness (2.1+/-0.3 MPa x m(1/2)) occurred in a composite reinforced with a whisker-silica mixture at whisker:silica mass ratio of 2:1 fused at 800 degrees C. To conclude, the strength, toughness, and contact damage resistance of dental resin composites can be substantially improved by reinforcement with fillers of ceramic whiskers fused with silica glass particles.
目前可用的树脂复合材料由于其易于过度断裂和磨损的倾向,不适合用作涉及牙尖的大型承力后牙修复材料。复合材料中的玻璃填料由于玻璃的脆性和低强度,仅提供有限的增强作用。本研究的目的是用具有极高强度的细长形状的陶瓷单晶须增强牙科树脂。开发了一种新方法,该方法包括将硅酸盐玻璃颗粒熔合到单个晶须表面,有两个好处:(1)无论晶须成分如何,都便于硅烷化;(2)通过提供更粗糙的晶须表面来增强晶须在基体中的保留。平均直径为0.4微米、长度为5微米的氮化硅晶须在650℃至1000℃的温度下,通过将尺寸为0.04微米的二氧化硅颗粒熔合到晶须表面进行涂层。将涂覆的晶须进行硅烷化处理,并通过刮勺与树脂手动混合。进行了弯曲、断裂韧性和压痕测试,以评估晶须增强复合材料与传统复合材料相比的性能。晶须增强复合材料的强度和韧性提高了两倍,同时对接触损伤和微裂纹的抵抗力也大大增强。在晶须与二氧化硅质量比为2:1、在800℃熔合的晶须 - 二氧化硅混合物增强的复合材料中,获得了最高的弯曲强度(195±8 MPa)和断裂韧性(2.1±0.3 MPa·m¹/²)。总之,通过用与二氧化硅玻璃颗粒熔合的陶瓷晶须填料增强,可以显著提高牙科树脂复合材料的强度、韧性和抗接触损伤能力。