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Organosilicon dental composite restoratives based on 1,3-bis[(p-acryloxymethyl) phenethyl] tetramethyldisiloxane

机译:1,3-双[(对丙烯酰氧基甲基)苯乙基]四甲基二硅氧烷的有机硅牙科复合修复剂

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Objectives. The major concern associated with the use of polysiloxanes as polymer matrices in dental restorative materials, is the generally modest mechanical properties of the polymers. However, it has long been demonstrated that thermal stability, and mechanical properties of polysiloxanes can be substantially modified by incorporation of bulkier substituents such as phenyl groups or more polar groups in the chains. The purpose of this research was to evaluate visible light activated dental composites based on the high molecular weight siloxane monomer 1,3-bis[(p-acryloxymethyl) phenethyl] tetramethyldisiloxane (BAPD). Methods. Hardness, diametral tensile strength (DTS), degree of conversion (DC), water sorption (WS) and polymerization shrinkage of BAPD-based composites and bis-GAAA-based composites were determined and compared. Results. Composites based on BAPD exhibited low WS, high DC, low polymerization shrinkage, and had hardness and DTS values that were not significantly lower than those of dental composites based on bis-GAAA. Significance. BAPD is a high molecular weight monomer (AAW = 511) with a low viscosity. It did not require the use of low molecular weight diluent monomers in formulating composite resins. The DC of BAPD was high, ranging from 86 to 94%. Although the DC of BAPD was significantly higher than the conventional difunctional dental monomers, the polymerization shrinkage of the siloxane composites (1.70-1.81 vol%) was comparable to several composites based on bis-GMA.
机译:目标。与聚硅氧烷作为牙科修复材料中的聚合物基质相关的主要问题是聚合物的一般适度的机械性能。然而,长期以来已经证明,聚硅氧烷的热稳定性和机械性能可以通过在链中掺入更大的取代基如苯基或更多极性基团而基本上得到改变。这项研究的目的是评估基于高分子量硅氧烷单体1,3-双[(对-丙烯酰氧基甲基)苯乙基]四甲基二硅氧烷(BAPD)的可见光活化牙科复合材料。方法。测定并比较了BAPD基复合材料和bis-GAAA基复合材料的硬度,径向拉伸强度(DTS),转化率(DC),吸水率(WS)和聚合收缩率。结果。基于BAPD的复合材料表现出低WS,高DC,低聚合收缩率,并且硬度和DTS值均不明显低于基于bis-GAAA的牙科复合材料。意义。 BAPD是具有低粘度的高分子量单体(AAW = 511)。在配制复合树脂时不需要使用低分子量稀释剂单体。 BAPD的DC高,介于86%至94%之间。尽管BAPD的DC明显高于常规的双官能牙科单体,但硅氧烷复合材料的聚合收缩率(1.70-1.81 vol%)与几种基于bis-GMA的复合材料相当。

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