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构建从各向同性到各向异性沥青的桥梁以制备具有可调结构和性能的沥青基碳纤维。

Constructing the Bridge from Isotropic to Anisotropic Pitches for Preparing Pitch-Based Carbon Fibers with Tunable Structures and Properties.

作者信息

Yuan Guanming, Xue Zheng, Cui Zhengwei, Westwood Aidan, Dong Zhijun, Cong Ye, Zhang Jiang, Zhu Hui, Li Xuanke

机构信息

The State Key Laboratory of Refractories and Metallurgy, Wuhan University of Science and Technology, Wuhan 430081, China.

Hubei Province Key Laboratory of Coal Conversion & New Carbon Materials, Wuhan University of Science and Technology, Wuhan 430081, China.

出版信息

ACS Omega. 2020 Aug 17;5(34):21948-21960. doi: 10.1021/acsomega.0c03226. eCollection 2020 Sep 1.

Abstract

Synthetic naphthalene pitches (SNPs) with isotropy and anisotropy were prepared by a simple thermal polycondensation method to fabricate pitch-based carbon fibers. The structural characteristic, thermal stability, phase-separation behavior, and melt-spinnability of the SNPs and the structural properties of the derived carbon fibers were systematically investigated. The results show that spinnable SNPs with controllable mesophase contents ranging from 0 to 100 vol % and softening points (210-290 °C) could be easily obtained by a nitrogen-bubbling treatment to improve their thermal stability and melt-spinnability by avoiding the phase separation of liquid crystal (LC) in the pitch. An experimental phase diagram of spinnability and mesophase content is newly proposed for predicting the spinnability of a mesophase-containing pitch. The LC has a significant influence not only on the constituents, structure, and physical properties of the SNPs but also on the final structure and properties of the corresponding pitch-based carbon fibers. The low ash content (less than 0.15 wt %) in the pitch precursor is found to have no obvious effect on the pitch spinnability and the mechanical properties of derivative large-diameter carbon fibers.

摘要

通过简单的热缩聚方法制备了具有各向同性和各向异性的合成萘沥青(SNP),以制造沥青基碳纤维。系统研究了SNP的结构特征、热稳定性、相分离行为和熔体可纺性以及衍生碳纤维的结构性能。结果表明,通过氮气鼓泡处理可以轻松获得具有可控中间相含量(范围为0至100体积%)和软化点(210 - 290°C)的可纺SNP,通过避免沥青中液晶(LC)的相分离来提高其热稳定性和熔体可纺性。新提出了一个可纺性和中间相含量的实验相图,用于预测含中间相沥青的可纺性。液晶不仅对SNP的成分、结构和物理性能有重大影响,而且对相应沥青基碳纤维的最终结构和性能也有重大影响。发现沥青前驱体中的低灰分含量(小于0.15重量%)对沥青可纺性和衍生大直径碳纤维的力学性能没有明显影响。

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