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Effect of Cu/Si Additive on the Microstructure of Pyrolysis Carbon Derived from Phenolic Resin

机译:Cu / Si添加剂对酚醛树脂热解碳微观结构的影响

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Phenolic resin has been widely applied as a carbonaceous binder in the field of carbon composites and carbon materials. The microstructure of pyrolysis carbon that derived from carbonaceous binders played an important role in the properties of carbon-containing refractories. In this study, the effects of copper and silicon on the pyrolysis behavior of phenolic resin and the microstructure of the pyrolysis carbon were investigated by using thermosetting phenolic resin as raw material, and using silicon powder (99%, 200 mesh) as well as copper nitrate (AR, w(Cu(N03)2)>99%) as additives. The results showed that the copper nano-particles in-situ formed from copper nitrate could be served as catalyst in the pyrolysis process of resin. Catalytic synthesis of carbon nanofibers could improve the degree of carbonization with pyrolysis carbon microstructure at low temperature (below 800 °C). The carbon nanofibers had lamellar structure and layered stacking characteristic. Silicon carbide whiskers were produced by Cu-doping phenolic resin with copper and silicon at 1400 °C.
机译:酚醛树脂已被广泛应用于碳复合材料和碳材料领域的碳质粘合剂。衍生自含碳粘合剂的热解碳的微观结构在含碳耐火材料的性质中起重要作用。在该研究中,通过使用热固性酚醛树脂作为原料,研究了铜和硅对酚醛树脂的热解作用的影响和热解碳的微观结构,并使用硅粉(99%,200目)以及铜硝酸盐(Ar,W(NO 3)2)> 99%)作为添加剂。结果表明,由硝酸铜形成的原位铜纳米颗粒可以用作树脂的热解过程中的催化剂。碳纳米纤维的催化合成可以在低温下提高热解碳微观结构的碳化程度(低于800℃)。碳纳米纤维具有层状结构和层状堆叠特性。通过Cu-掺杂酚醛树脂在1400℃下用Cu-掺杂的酚醛树脂制备碳化硅晶须。

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