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纳米填料分数和温度对玻璃纤维增强填充材料聚合收缩的影响。

Effect of nanofiller fractions and temperature on polymerization shrinkage on glass fiber reinforced filling material.

作者信息

Garoushi Sufyan, Vallittu Pekka K, Watts David C, Lassila Lippo V J

机构信息

Department of Prosthetic Dentistry and Biomaterials Science, Institute of Dentistry, University of Turku, Lemminkäisenkatu 2, FI-20520 Turku, Finland.

出版信息

Dent Mater. 2008 May;24(5):606-10. doi: 10.1016/j.dental.2007.06.020. Epub 2007 Aug 6.

Abstract

OBJECTIVES

The aim was to evaluate the effect of different nanofiller fractions and temperature on polymerization shrinkage strain and degree of monomer conversion of short glass fibers reinforced semi-interpenetrating polymer network (semi-IPN)-polymer matrix composite resin.

METHODS

Experimental composite resin was prepared by mixing 22.5 wt% of short E-glass fibers (3 mm in length) to the 22.5 wt% of resin matrix with various weight fractions of nanofillers (0, 10, 20, 30, 40, 50 wt%) and then 55 wt% of silane treated silica filler were added gradually using high speed mixing machine. Another study group contained composite resin prepared by mixing 22.5 wt% of resin matrix (without nanofillers) to 77.5 wt% of filler particles (without fiber fillers). As control material, commercial particulate filler composite resin was used. The shrinkage strain of the specimens was measured using the bonded-disk technique at 26 and 37 degrees C with respect to time. Degree of conversion of the experimental composites containing different nanofiller fractions was measured using FTIR spectroscopy.

RESULTS

ANOVA revealed that fraction of nanofillers and polymerization temperature had significant effect (p<0.05) on the shrinkage strain and degree of conversion of the composite resin. Shrinkage strain correlated with nanofiller fraction and polymerization temperature (r2=0.96 and 0.95).

SIGNIFICANCE

The use of high nanofiller fraction with short fiber fillers and IPN-polymer matrix yielded improved rate of shrinkage strain.

摘要

目的

评估不同纳米填料含量和温度对短玻璃纤维增强半互穿聚合物网络(半互穿网络聚合物)-聚合物基复合树脂聚合收缩应变和单体转化率的影响。

方法

通过将22.5 wt%的短E玻璃纤维(长度为3 mm)与含有不同重量分数纳米填料(0、10、20、30、40、50 wt%)的22.5 wt%树脂基体混合,制备实验复合树脂,然后使用高速混合机逐渐添加55 wt%的硅烷处理二氧化硅填料。另一个研究组包含通过将22.5 wt%的树脂基体(不含纳米填料)与77.5 wt%的填料颗粒(不含纤维填料)混合制备的复合树脂。作为对照材料,使用市售颗粒填料复合树脂。使用粘结圆盘技术在26和37摄氏度下测量试样的收缩应变随时间的变化。使用傅里叶变换红外光谱法测量含有不同纳米填料含量的实验复合材料的转化率。

结果

方差分析表明,纳米填料含量和聚合温度对复合树脂的收缩应变和转化率有显著影响(p<0.05)。收缩应变与纳米填料含量和聚合温度相关(r2 = 0.96和0.95)。

意义

使用高纳米填料含量与短纤维填料以及半互穿网络聚合物-聚合物基体可提高收缩应变率。

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