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Thermo-mechanical properties of polysulfone based nanocomposites with well dispersed silica nanoparticles

机译:聚砜基纳米复合材料与分散良好的二氧化硅纳米粒子的热机械性能

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摘要

The effect of the filler on the thermo-mechanical properties of polysulfone filled nanocomposites was studied considering different loads of silica nanoparticles (0,1,2,5 and 10 wt%). Thermal characterization showed that: (ⅰ) the degradation temperature slightly increases with the content of particles; (ⅱ) glass transition temperature is not affected by the presence of the particles, suggesting a weak interaction between the matrix and the particles. Although thermogravimetric analysis indicate there may be certain favorable interactions between the polymer and the filler, they must not be so important as to reduce chain mobility nearby the surface of the particles. Mechanical properties (modulus of rupture, hardness, indentation modulus, etc.) remain almost constant up to relatively high contents of nanoparticles (5 wt%). A significant increase was only observed for the sample with 10% of nanoparticles suggesting that, in this system, interconnection between particles must exist to efficiently modify the polysulfone properties.
机译:考虑到二氧化硅纳米粒子的不同负载量(0、1、2、5和10 wt%),研究了填料对聚砜填充的纳米复合材料热机械性能的影响。热表征表明:(ⅰ)降解温度随​​颗粒含量的增加而略有增加; (ⅱ)玻璃化转变温度不受颗粒的存在的影响,表明基质与颗粒之间的相互作用弱。尽管热重分析表明聚合物和填料之间可能存在某些有利的相互作用,但是它们必须不那么重要以降低颗粒表面附近的链迁移率。机械性能(断裂模量,硬度,压痕模量等)几乎保持恒定,直到相对较高的纳米颗粒含量(5 wt%)。仅对于具有10%纳米颗粒的样品才观察到显着增加,这表明,在该系统中,必须存在颗粒之间的相互连接才能有效地改变聚砜的性质。

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