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Fabrication and Characterisation of Polyurethane/Sepiolite Polymer Nanocomposite Foams for Enhanced Energy Absorption

机译:增强能量吸收的聚氨酯/海泡石聚合物纳米复合泡沫的制备与表征

摘要

Polymer nanocomposite foams are unique materials that can be chemically, mechanically and structurally controlled in order to maximise the desired properties. Through size, shape and surface modification, the functionality of the foam can be enhanced or altered. This project looks at the incorporation of sepiolite clay nanorods into a polyurethane foam matrix in order to improve the sound vibration absorption properties of open cell flexible foams. Polyurethane foams are light weight, porous materials that can act as good thermal and sound barriers, while sepiolite nanorods have a high aspect ratio associated with the production of well dispersed composites as well as the possibility for the surface chemistry to be easily modified. The sepiolite rods were incorporated into the foam matrix through the mechanical dispersion of the rods into a foam precursor to allow the in-situ polymerisation of the foam matrix and sepiolite nanofiller. Three different grades of sepiolite clay were explored with varying surface chemistry. Cyclic and static compression testing were used to show how the change in surface treatment of the sepiolite lead to an increase in the energy dissipation of the system.
机译:聚合物纳米复合泡沫材料是独特的材料,可以对其进行化学,机械和结构控制,以使所需的性能最大化。通过尺寸,形状和表面改性,可以增强或改变泡沫的功能。该项目着眼于将海泡石粘土纳米棒掺入聚氨酯泡沫基质中​​,以改善开孔柔性泡沫的吸声性能。聚氨酯泡沫是重量轻的多孔材料,可以起到良好的隔热和隔音作用,而海泡石纳米棒具有高纵横比,与高分散复合材料的生产相关,并且表面化学性质易于改性。通过将海泡石棒机械分散到泡沫前体中,将海泡石棒掺入泡沫基质中​​,以使泡沫基质和海泡石纳米填料就地聚合。探索了具有不同表面化学性质的三种不同等级的海泡石粘土。循环和静态压缩测试用于显示海泡石表面处理的变化如何导致系统能量消耗的增加。

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