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首页> 外文期刊>Materials >Effects of Chemically Treated Eucalyptus Fibers on Mechanical, Thermal and Insulating Properties of Polyurethane Composite Foams
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Effects of Chemically Treated Eucalyptus Fibers on Mechanical, Thermal and Insulating Properties of Polyurethane Composite Foams

机译:化学处理桉树纤维对聚氨酯复合泡沫机械,热和绝缘性能的影响

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In this work, rigid polyurethane (PUR) foams were prepared by incorporating 2 wt% of eucalyptus fibers. The eucalyptus fibers were surface-modified by maleic anhydride, alkali, and silane (triphenylsilanol) treatment. The impact of the modified eucalyptus fibers on the mechanical, thermal, and fire performances of polyurethane foams was analyzed. It was observed that the addition of eucalyptus fibers showed improved mechanical and thermal properties and the best properties were shown by silane-treated fibers with a compressive strength of 312 kPa and a flexural strength of 432 kPa. Moreover, the thermal stability values showed the lowest decline for polyurethane foams modified with the silane-treated fibers, due to the better thermal stability of such modified fibers. Furthermore, the flame resistance of polyurethane foams modified with the silane-treated fibers was also the best among the studied composites. A cone calorimetry test showed a decrease in the peak of heat release from 245 to 110 kW?m ?2 by the incorporation of silane-treated fibers. Furthermore, total heat release and total smoke release were also found to decrease remarkably upon the incorporation of silane-treated fibers. The value of limiting oxygen index was increased from 20.2% to 22.1%. Char residue was also found to be increased from 24.4% to 28.3%. It can be concluded that the application of chemically modified eucalyptus fibers has great potential as an additive to incorporate good mechanical, thermal, and fire properties in rigid polyurethane foams.
机译:在这项工作中,通过掺入2wt%的桉树纤维来制备刚性聚氨酯(PUR)泡沫。通过马来酸酐,碱和硅烷(三苯基硅醇)处理,桉树纤维进行表面改性。分析了改良的桉树纤维对聚氨酯泡沫的机械,热和消防性能的影响。观察到桉树纤维的添加显示出改善的机械和热性能,并且通过硅烷处理的纤维显示了最佳性能,具有312kPa的抗压强度和432kPa的弯曲强度。此外,由于这种改性纤维的更好的热稳定性,热稳定性值显示出用硅烷处理的纤维改性的聚氨酯泡沫的最低下降。此外,通过硅烷处理的纤维改性的聚氨酯泡沫的阻燃性也是研究中的最佳的复合材料。通过掺入硅烷处理的纤维,锥形量热试验显示热释放峰值从245至110kW的峰值减少。此外,还发现总热释放和总烟雾释放在掺入硅烷处理的纤维时显着降低。限制氧指数的值从20.2%增加到22.1%。还发现炭渣从24.4%增加到28.3%。可以得出结论,化学改性的桉树纤维的应用具有良好的潜力作为刚性聚氨酯泡沫中的良好机械,热和火特性。

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