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Influence of nanofillers on thermal insulating properties of polyurethane nanocomposites foams

机译:纳米填料对聚氨酯纳米复合泡沫材料隔热性能的影响

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The effect of several nanofillers on thermal insulating properties of polyurethane rigid foams (PUR) was analyzed. The nanofillers used differ for chemical nature and aspect ratio. We used both pristine and organically-modified layered silicates (OMLS) and inorganic spherical nanopowders. The fillers were first dispersed in the polyol component through use of sonication; then doped polyol was mixed with isocyanate. The effect of polyol viscosity and nature (polyether or polyester) on the degree of the dispersion of the filler was also taken into account. The results obtained showed that the chemical nature and viscosity of polyols as well as the kind of compatibilization of the filler play a very important role in favoring the filler dispersion on a nanometer scale; the aspect ratio of the filler is instead not so important. When a good degree of dispersion is achieved, the thermal insulating properties of the foam can be slightly enhanced, as the fillers may act as nucleating agents. Some drawbacks were also found in using nanofillers: the fillers may bring in some cases an increase of the open cell content making the diffusion rate of the blowing agents faster thus leading to a worsening of thermal insulating properties during time.
机译:分析了几种纳米填料对聚氨酯硬质泡沫塑料(PUR)隔热性能的影响。所使用的纳米填料的化学性质和纵横比不同。我们同时使用了原始的和有机改性的层状硅酸盐(OMLS)以及无机球形纳米粉。首先通过使用超声将填料分散在多元醇组分中;然后将其分散。然后将掺杂的多元醇与异氰酸酯混合。还考虑了多元醇粘度和性质(聚醚或聚酯)对填料分散度的影响。所得结果表明,多元醇的化学性质和粘度以及填料的相容性种类对促进纳米级填料的分散起着非常重要的作用。填料的长径比不是那么重要。当达到良好的分散度时,由于填料可以充当成核剂,因此可以稍微提高泡沫的隔热性能。在使用纳米填料时也发现了一些缺点:填料在某些情况下可能导致开孔含量的增加,从而使发泡剂的扩散速度更快,从而导致一段时间内的隔热性能变差。

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