聚酰胺增强分子复合树脂力学性能研究。Oct-PPTA和st - ppta的分子运动及Oct-PPTA- pmma和st - ppta - pmma的热性能和动态粘弹性[j]。

S Higuchi
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引用次数: 0

摘要

以聚甲基丙烯酸甲酯(PMMA)树脂为基体,聚酰胺为刚性核分子,制备了一种具有改良口腔材料性能的义齿基托聚合物。以甲基亚砜基碳负离子钠为原料,采用金属化法制备n取代聚酰胺,并在二甲亚砜中与相应的辛基溴和/或硬脂酰溴反应。在这些分子复合树脂(简称Oct-PPTA-PMMA和st - ppta -PMMA)中,n -辛烷化- ppta (Oct-PPTA)和/或n -甾烷化- ppta (st - ppta)与PMMA的复配量为3wt %,其牙科材料性能依次为Oct-PPTA-PMMA大于st - ppta -PMMA大于或等于PMMA。采用核磁共振(NMR)、热重(TG)和动态机械热分析(DMTA)等方法,从分子水平分析了它们的聚合物性质。CDCl3中的T1(反转恢复法)NMR谱证明Oct-PPTA的甲基分子运动受到刚性主链的约束,而Ste-PPTA的甲基分子运动不受影响。热重分析表明,复合材料的热性能表现为Oct-PPTA-PMMA > st - ppta -PMMA > PMMA; DMTA作用下,复合材料从橡胶状态到粘性流动状态的动态存储模量表现为Oct-PPTA-PMMA > st - ppta -PMMA > PMMA。
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[On mechanical behavior of molecular composite resins reinforced with polyaramides. Molecular motion of Oct-PPTA and Ste-PPTA and thermal properties and dynamic viscoelasticity of Oct-PPTA-PMMA and Ste-PPTA-PMMA].

Molecular composites, composed of polymethylmethacrylate (PMMA) resin as matrix reinforced with polyaramides as a rigid core molecule have been developed to produce a denture base polymer with improved dental material properties. N-substituted polyaramides were prepared via metalation using sodium methylsulfinylcarbanion, followed by the reaction with corresponding octyl bromide and/or stearyl bromide in dimethyl sulfoxide. In these molecular composite resins (called Oct-PPTA-PMMA and Ste-PPTA-PMMA short) compounding 3 wt% of N-octylated-PPTA (Oct-PPTA) and/or N-stearylated-PPTA (Ste-PPTA) to PMMA, their dental material properties were in the order of Oct-PPTA-PMMA greater than Ste-PPTA-PMMA greater than or equal to PMMA. Their polymer properties were analyzed to molecular level, using nuclear magnetic resonance (NMR) spectroscopy, thermogravimetric (TG) analysis and dynamic mechanical thermal analysis (DMTA). The molecular motion of the methyl group of Oct-PPTA proved to be constrained for the rigid main chain by T1 (inversion recovery method) NMR spectra in CDCl3 while that of Ste-PPTA was not affected. The thermal properties of the composites were in the order of Oct-PPTA-PMMA greater than Ste-PPTA-PMMA greater than PMMA by TG analysis, and the dynamic storage modulus values were Oct-PPTA-PMMA greater than Ste-PPTA-PMMA greater than PMMA in the region from rubbery state to viscous flow state by DMTA.

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