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Impact and wear resistance of polymer nanocomposites at low filler content

机译:低填料含量的聚合物纳米复合材料的耐冲击性和耐磨性

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摘要

It is well known that inorganic filler particles enhance the mechanical and tribological properties of polymers. The stiffness, toughness, and wear performance of the composites are extensively determined by the size, shape, volume content, and especially the dispersion homogeneity of the particles. In the present study, various amounts of micro- and nano-scale particles (titanium dioxide TiO_2,200-400 nm, calcium silicate CaSiO_3, 4-15 mum) were introduced into an epoxy polymer matrix for its reinforcement. The influence of these particles on the impact strength, dynamic mechanical thermal properties, and block-on-ring wear behavior was investigated. Using only the nano-particles, the results demonstrate the best improvement in stiffness, impact strength, and wear resistance of the epoxy at a nano-particle content of 4 vol% TiO_2. Therefore, this nanocomposite was used to act as a matrix for the CaSiO_3 micro-particles, in the hope of finding synergistic effects between the microand the nano-particles. Results show, in fact, a further improvement of wear resistance and stiffness, whereas the impact strength suffers. Geometrical properties of the particles, the homogeneous dispersion state, energy dissipating fracture mechanisms, and a transition of wear mechanisms mostly contribute to the increase in performance.
机译:众所周知,无机填料颗粒增强了聚合物的机械和摩擦学性能。复合材料的刚度,韧性和耐磨性能在很大程度上取决于颗粒的大小,形状,体积含量,尤其是颗粒的分散均匀性。在本研究中,将各种数量的微米和纳米级颗粒(二氧化钛TiO_2,200-400 nm,硅酸钙CaSiO_3,4-15微米)引入环氧聚合物基质中进行增强。研究了这些颗粒对冲击强度,动态机械热性能和环挡磨损性能的影响。仅使用纳米颗粒,结果表明在纳米颗粒含量为4 vol%TiO_2的情况下,环氧树脂的刚度,冲击强度和耐磨性得到了最佳改善。因此,该纳米复合材料被用作CaSiO_3微粒的基质,以期寻求在微粒和纳米颗粒之间的协同作用。结果实际上显示出耐磨性和刚度的进一步改善,而冲击强度受到损害。颗粒的几何特性,均匀的分散状态,耗能的断裂机理以及磨损机理的转变主要有助于提高性能。

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