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首页> 外文期刊>Journal of Applied Polymer Science >Polyurethane-Solid Wood Composites. II. Flammability Parameters
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Polyurethane-Solid Wood Composites. II. Flammability Parameters

机译:聚氨酯-实木复合材料。二。可燃性参数

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Polyurethane (PU)-solid wood composites with good mechanical properties and dimensional stability have been prepared in the presence Of four amine catalysts. Cone calorimetry and scanning electron microscopy (SEM) have been employed to characterize and evaluate the effects of the catalyst species on the flammability of the PU-wood composites. The results indicated that the PU-wood composites prepared in the presence of various catalysts had somewhat better flame resistance than the untreated wood control, as manifested in various flammability parameters (longer time to Sustained ignition and time to peak heart rate release, larger mass and fire performance index (FPI), and lower mean HRR, mass loss rate, and peak HRR). The variations in the flame resistances of the PU-wood composites can be attributed to the various morphologies of the PU resin and the wood that resulted from the use of the Various catalysts, as indicated by SEM micrographs. The PU-wood composite prepared in the presence of N-methylmorpholine (NMM) as catalyst showed the best flame resistance, since the PU resin formed abundant PU team that extended throughout the wood. This foam was effective in retarding the transfers of heat and combustible substances as well as the pyrogenation. In terms of FPI values, the flame resistances of these PU-wood composites decreased according to the Catalyst used in the order NMM, triethanolamine, diethylenetriamine, and triethylenediamine.
机译:在四种胺催化剂的存在下,制备了具有良好机械性能和尺寸稳定性的聚氨酯(PU)-实木复合材料。锥量热法和扫描电子显微镜(SEM)已用于表征和评估催化剂种类对PU-木材复合材料可燃性的影响。结果表明,在各种催化剂存在下制备的PU-木材复合材料的阻燃性比未处理的木材对照要好一些,表现在各种可燃性参数中(更长的持续燃烧时间和达到峰值心律释放时间,更大的质量和更大的耐燃性)。防火性能指标(FPI),以及较低的平均HRR,质量损失率和峰值HRR)。 PU-木复合材料的阻燃性的变化可归因于由于使用各种催化剂而导致的PU树脂和木材的各种形态,如SEM显微照片所示。在N-甲基吗啉(NMM)作为催化剂的情况下制备的PU木材复合材料显示出最佳的阻燃性,因为PU树脂形成了丰富的PU团并延伸到整个木材。这种泡沫有效地阻止了热量和可燃物质的传递以及热解。就FPI值而言,这些PU-木材复合材料的阻燃性根据以NMM,三乙醇胺,二亚乙基三胺和三亚乙基二胺的顺序使用的催化剂而降低。

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