Wang Yijun, Lee James J, Lloyd Isabel K, Wilson Otto C, Rosenblum Marc, Thompson Van
Department of Materials Science and Engineering, University of Maryland, College Park, Maryland, USA.
J Biomed Mater Res A. 2007 Sep 1;82(3):651-7. doi: 10.1002/jbm.a.31029.
Results from the study of a novel, high modulus nanopowder filled resin composite are presented. This composite is developed to serve (1) as a high stiffness support to all-ceramic crowns and (2) as a means of joining independently fabricated crown core and veneer layers. Nanosized Al(2)O(3) (average particle size 47 nm) reinforcement provides stiffness across joins. Two systems are examined: Al(2)O(3) with 50:50 bis-GMA:TEGDMA monomers (ALBT) and Al(2)O(3) with pure TEGDMA (ALT). To obtain higher filler levels, surfactant is used to aid mixing and increase maximum weight percent of nanopowder filler from 72 to 80. The loading level of Al(2)O(3) has significant effects on composite properties. The elastic modulus for cured ALBT systems increases from 4.6 GPa (0 wt % filler) to 29.2 GPa (80 wt % filler). The elastic modulus for cured ALT systems increases from 3.0 GPa (0 wt % filler) to 22.9 GPa (80 wt % filler). Similarly, ALBT hardness increases from 200 MPa (0% filler) to 949 MPa (80 wt % filler), and ALT hardness increases from 93 MPa (0% filler) to 760 MPa (80 wt % filler). Our results indicate that with a generally monodispersed nanosized high modulus filler relatively high elastic modulus resin based composite cements are possible.
本文介绍了一种新型高模量纳米粉末填充树脂复合材料的研究结果。这种复合材料的开发目的是:(1)作为全瓷冠的高刚度支撑;(2)作为连接独立制作的冠核和贴面层的一种方法。纳米尺寸的Al₂O₃(平均粒径47nm)增强材料可在连接处提供刚度。研究了两种体系:含有50:50双酚A缩水甘油醚(bis-GMA):三乙二醇二甲基丙烯酸酯(TEGDMA)单体的Al₂O₃(ALBT)和含有纯TEGDMA的Al₂O₃(ALT)。为了获得更高的填料含量,使用表面活性剂辅助混合,并将纳米粉末填料的最大重量百分比从72%提高到80%。Al₂O₃的负载量对复合材料性能有显著影响。固化后的ALBT体系的弹性模量从4.6GPa(0wt%填料)增加到29.2GPa(80wt%填料)。固化后的ALT体系的弹性模量从3.0GPa(0wt%填料)增加到22.9GPa(80wt%填料)。同样,ALBT的硬度从200MPa(0%填料)增加到949MPa(80wt%填料),ALT的硬度从93MPa(0%填料)增加到760MPa(80wt%填料)。我们的结果表明,使用一般单分散的纳米尺寸高模量填料,可以制备出具有相对较高弹性模量的树脂基复合粘结剂。