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Research on the Micro-Structural Evolution of Phenol-Formaldehyde Resin Modified by Boron Carbide

机译:碳化硼改性酚醛树脂微结构演化研究

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Phenol-formaldehyde (PF) resin usually could not be applied in the high-temperature environments due to its poor heat-resistance. Many kinds of modification methods had been presented in order to improve its stability of the structures and properties. In this paper, boron carbide (B_4C) was used as the modification additives to improve the residue of PF resin after being treated at high-temperatures. Thermal gravity (TG) and scanning electron microscopy (SEM) were employed to investigate the residue and micro-structural evolution of modified PF resin during the heat-treatment process. TG results demonstrated that the residue of PF resin was improved effectively due to the satisfactory modification effects of B_4C. SEM morphology showed that the distribution of B_4C powders became propertional at the elevated temperatures, and boron oxides (B_2O_3) was formed in the interior of PF resin matrix. These results indicated that there existed complex modification reactions between B_4C and volatiles released from the degradation of PF resin at high-temperatures. By means of the above modification reactions, some volatiles, especially for CO, converted into amorphous carbon and results in the increasing of residue after being treated at high-temperatures.
机译:由于其耐热性差,酚醛 - 甲醛(PF)树脂通常不能在高温环境中应用。已经提出了多种修改方法,以改善其结构和性质的稳定性。本文使用碳化硼(B_4C)作为改性添加剂,以改善在高温下处理后PF树脂的残余物。热重(Tg)和扫描电子显微镜(SEM)用于研究热处理过程中改性PF树脂的残余物和微结构演变。 TG结果表明,由于B_4C的令人满意的改性效应,PF树脂的残留物有效地提高。 SEM形态表明,B_4C粉末的分布变得在升高温度下的性质,并且在PF树脂基质的内部形成氧化硼(B_2O_3)。这些结果表明,在高温下PF树脂的降解释放的B_4C和挥发物之间存在复杂的改性反应。由上述改性反应的手段,一些挥发物,特别是对CO,换算成无定形碳和渣的增加结果在高的温度下处理后。

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