复合树脂成分对电刷磨损的影响。填料粒径及含量的影响[j]。

S Yuasa
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引用次数: 0

摘要

采用不同基体树脂、填料尺寸和含量的复合树脂,考察了复合树脂的组成对复合树脂耐磨性的影响。磨损试验采用本实验室研制的实验牙刷磨损试验机进行。对三个系列的热固化复合树脂进行了测试。其中一个系列由双mpepp或UDMA单体和二氧化硅填料组成,平均粒径分别为0.04、1.9、3.8、4.3、7.5、13.8和14.1微米。该系列的填料含量恒定在45 wt%。第二个系列含有4.3微米的二氧化硅填料,其含量从35%到75%不等。第三系列含有微填料(0.04微米)和宏填料(4.3微米),总含量为45 wt%。在这个系列中,微填料逐渐被5%、15%、25%和45%的宏填料所取代。结果表明,复合树脂的耐磨性受无机填料的控制,主要是填料的大小和含量。磨损损失不随基体树脂的不同而变化。当填料粒径小于5微米时,随着填料粒径的减小,耐磨性明显降低。含有0.04微米或1.9微米填料的复合树脂比未填充的基体树脂更耐牙刷磨损。然而,当微填料与宏填料联合使用时,虽然耐磨性随着微填料浓度的增加而降低,但也有助于耐磨性。填料含量的增加明显提高了复合材料的耐磨性。通过对这些结果的分析和对刷样表面的SEM观察表明,牙刷的磨损是由牙膏中的磨料引起的三体磨损,并且受磨料与填料之间的粒度差异以及填料颗粒间距离的影响。
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[Influences of composition on brush wear of composite resins. Influences of particle size and content of filler].

The influences of the composition on abrasion resistance of composite resins were examined using various experimental composite resins which had various matrix resin, filler size and content. The abrasion test was conducted by the experimental toothbrush abrasion testing machine developed in our laboratory. Three series of heat-curing composite resins were tested. One series was made from a Bis-MPEPP or UDMA monomer, and a silica filler with an average particle size of 0.04, 1.9, 3.8, 4.3, 7.5, 13.8 and 14.1 microns. The filler content of this series was constant at 45 wt%. The second series contained a silica filler of 4.3 microns in a content ranging from 35 to 75 wt%. The third series contained a microfiller (0.04 microns) and macrofiller (4.3 microns) in total content of 45 wt%. In this series, the microfiller was gradually replaced by 5, 15, 25 and 45 wt% of the macrofiller. The results obtained for these three series indicated that the abrasion resistance of composite resins was controlled by the inorganic filler, mainly filler size and content. The abrasion loss did not vary with the difference of matrix resin. When the particle size of the filler was below about 5 microns, the abrasion resistance decreased markedly with the decrease in filler size. The composite resin which contained a 0.04 or 1.9 micron filler was less resistant to toothbrush wear than the unfilled matrix resin. However, the microfiller also contributed to abrasion resistance when used in combination with the macrofiller, although abrasion resistance decreased with the increase in the microfiller concentration. The increase of filler content clearly improved the abrasion resistance when used the macrofiller. The analysis of these results and SEM observations of the brushed surfaces of samples suggested that the toothbrush abrasion was three-body abrasion caused by the abrasive in the toothpaste, and affected by the difference in the particle size between abrasive and filler, and between the abrasive size and the interparticle distance of the filler.

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