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Preparation of Mesophase Pitch from Coal Tar Pitch for C/C Composites

机译:由煤焦油沥青制备C / C复合材料的中间相沥青

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摘要

Mesophase pitch (MPP) has a high carbon yield and excellent graphitizability, compared with commercial coal tar pitch (CTP), which make it suitable for the preparation of C/C composites. In this paper, two MPP were prepared by heat-treatment of two coal tar pitches (CTP and modified coal tar pitch (MCTP)) in the presence of nitrogen. Elemental analysis and FTIR were used to monitor the change of chemical structures of MPP transition from CTP and MCTP. The pyrolysis behaviors of CTP and MCTP were studied by means of thermal analysis (TG and DSC). The morphologies of MPP were inspected by optical microscope. The structures of the MPP were characterized by XRD. The results show that there are more alkyl functional groups existing in CTP and MCTP than in MPP, and MPP has a higher C/H ratio than CTP and MCTP, which indicate MPP formation predominantly polycondense aromatic and release the alkyl functional groups. An endothermic band due to volatilize light compounds around 290 ℃, two exothermic peaks at 430℃ and 490 ℃ were characteristic of polymerization reactions, exothermic peaks of MCTP are higher than that of CTP because the former has a higher reaction active for its more alkyl side chain. The optical texture of MPP from CTP is mosaics texture, while from the MCTP is flow domains texture. (002), (101) peaks of graphite occur on XRD patterns, the peaks of MPP from MCTP are higher and narrower than MPP from CTP, which indicates the former is more graphitizability than the latter.
机译:与商业煤焦油沥青(CTP)相比,中间相沥青(MPP)具有高碳收率和优异的石墨化性,使其适合于制备C / C复合材料。本文通过在氮气存在下对两个煤焦油沥青(CTP和改性煤焦油沥青(MCTP))进行热处理来制备两个MPP。元素分析和傅立叶变换红外光谱(FTIR)用于监测从CTP和MCTP转变为MPP的化学结构的变化。通过热分析(TG和DSC)研究了CTP和MCTP的热解行为。用光学显微镜检查MPP的形态。 MPP的结构通过XRD表征。结果表明,CTP和MCTP中存在的烷基官能团多于MPP,并且MPP的C / H比值高于CTP和MCTP,这表明MPP的形成主要是缩聚芳烃并释放出烷基官能团。轻度化合物在290℃附近挥发导致的吸热带,在430℃和490℃有两个放热峰是聚合反应的特征,MCTP的放热峰高于CTP,因为前者对烷基更多的一侧具有更高的反应活性链。来自CTP的MPP的光学纹理是镶嵌纹理,而来自MCTP的光学纹理是流域纹理。 (002),(101)的石墨峰出现在XRD图谱上,MCTP的MPP峰比CTP的MPP峰高且窄,这表明前者比后者的石墨化性更高。

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