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Preparation and properties of phosphorus- and silicon-modified phenolic resin with high ablation resistance

机译:高热耐热性磷和硅改性酚醛树脂的制备与性能

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In order to further improve the ablation resistance of common phenolic resins, a modified phenolic resin containing phosphorus and silicon (SPPR) was synthesized and the corresponding properties were evaluated. With phosphorus and silicon involved in the macromolecule, SPPR showed excellent flame retardancy and obviously enhanced value (44.8%) of the limiting oxygen index. The thermal stability and charring performance of SPPR were greatly improved, with maximum decomposition temperature of over 500 degrees C and carbon yield of 60.1% in nitrogen. Differential scanning calorimetry indicated that the curing temperature shifted from 157 degrees C for the conventional phenolic resin to 182 degrees C for SPPR. Moreover, an improvement of impact strength from 4.3 to 16.5 kJ m(-2) confirmed that incorporation of flexible Si Symbol of the Klingon Empire O chain had a noticeable effect on the mechanical properties of SPPR. Such a modified phenolic resin has promising application prospects serving as an ablation material with high performance. (c) 2019 Society of Chemical Industry
机译:为了进一步改善普通酚醛树脂的消融抗性,合成了含有磷和硅(SPPR)的改性酚醛树脂,评价相应的性质。含有磷和硅的磷和硅,SPPR显示出优异的阻燃性,明显增强的限制氧指数值(44.8%)。 SPPR的热稳定性和炭化性能大大提高,最大分解温度超过500摄氏度,氮含量为60.1%。差分扫描量热法表明,固化温度从157摄氏度移位到常规酚醛树脂至182℃的SPPR。此外,从4.3到16.5kJ m(-2)的冲击强度的改善证实,掺入克林顿帝国o链的柔性Si符号对Sppr的机械性能有明显的影响。这种改性酚醛树脂具有希望作为具有高性能的消融材料的应用前景。 (c)2019年化学工业协会

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