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含有不同填料含量的二氧化硅熔合陶瓷单晶须的牙科复合树脂。

Dental composite resins containing silica-fused ceramic single-crystalline whiskers with various filler levels.

作者信息

Xu H H

机构信息

Paffenbarger Research Center, American Dental Association Health Foundation, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, USA.

出版信息

J Dent Res. 1999 Jul;78(7):1304-11. doi: 10.1177/00220345990780070401.

Abstract

Currently available direct-filling composite resins are susceptible to fracture and hence are not recommended for use in large stress-bearing posterior restorations involving cusps. 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 use ceramic single-crystalline whiskers as fillers to reinforce composites, and to investigate the effect of whisker filler level on composite properties. Silica particles were fused onto the whiskers to facilitate silanization and to roughen the whiskers, thereby improving retention in the matrix. The composite flexural strength, elastic modulus, hardness, and degree of polymerization conversion were measured as a function of whisker filler mass fraction, which ranged from 0% to 70%. Selected composites were polished simulating clinical procedures, and the surface roughness was measured with profilometry. The whisker composite with a filler mass fraction of 55% had a flexural strength (mean +/- SD; n = 6) of 196+/-10 MPa, significantly higher than 83+/-14 MPa of a microfill and 120+/-16 MPa of a hybrid composite control (family confidence coefficient = 0.95; Tukey's multiple comparison). The composite modulus and hardness increased monotonically with filler level. The flexural strength first increased, then plateaued with increasing filler level. The degree of conversion decreased with increasing filler level. The whisker composite had a polished surface roughness similar to that of a conventional hybrid composite (p>0.1; Student's t). To conclude, ceramic whisker reinforcement can significantly improve the mechanical properties of composite resins; the whisker filler level plays a key role in determining composite properties; and the reinforcement mechanisms appear to be crack pinning by whiskers and friction from whisker pullout resisting crack propagation.

摘要

目前可用的直接充填复合树脂容易断裂,因此不建议用于涉及牙尖的大型承力后牙修复。由于玻璃的脆性和低强度,复合材料中的玻璃填料仅提供有限的增强作用。本研究的目的是使用陶瓷单晶须作为填料来增强复合材料,并研究晶须填料含量对复合材料性能的影响。将二氧化硅颗粒熔合到晶须上,以促进硅烷化并使晶须表面粗糙化,从而提高在基体中的保留率。测量了复合树脂的弯曲强度、弹性模量、硬度和聚合转化率,作为晶须填料质量分数的函数,该质量分数范围为0%至70%。对选定的复合材料进行模拟临床操作的抛光,并使用轮廓仪测量表面粗糙度。填料质量分数为55%的晶须复合材料的弯曲强度(平均值±标准差;n = 6)为196±10 MPa,显著高于微填料复合材料的83±14 MPa和混合复合对照组的120±16 MPa(家族置信系数 = 0.95;Tukey多重比较)。复合材料的模量和硬度随填料含量单调增加。弯曲强度随填料含量增加先升高后趋于平稳。转化率随填料含量增加而降低。晶须复合材料的抛光表面粗糙度与传统混合复合材料相似(p>0.1;Student t检验)。总之,陶瓷晶须增强可以显著改善复合树脂的力学性能;晶须填料含量在决定复合材料性能方面起关键作用;增强机制似乎是晶须的裂纹钉扎和晶须拔出产生的摩擦力阻止裂纹扩展。

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