Evaluating polyacrylonitrile precursor structure effects on carbon fiber production

被引:0
作者
Ye Cui
Xia Hua
Li-Zhi Liu
Sanxi Li
Ying Shi
机构
[1] Shenyang University of Technology,Advanced Manufacturing Institute of Polymer Industry
[2] Shenyang University of Chemical Technology,undefined
来源
Polymer Bulletin | 2023年 / 80卷
关键词
Polyacrylonitrile; Carbon fiber; SAXS; WAXD; Microstructure;
D O I
暂无
中图分类号
学科分类号
摘要
Polyacrylonitrile (PAN) precursor fiber with different draft ratios can affect the crystal and microporous structure of the produced carbon fiber. A high draft ratio for PAN fiber preparation was revealed beneficial for high crystal orientation and few defects in the fiber. In this research, pre-oxidation PAN fibers and carbon fibers were investigated with differential scanning calorimetry (DSC) and synchrotron radiation (wide-angle X-ray diffraction (WAXD)/small-angle X-ray scattering (SAXS)). The thermal analysis of DSC profiles indicated that PAN fiber with a high draft ratio is beneficial for the cyclization reaction. The WAXD data demonstrated that PAN fiber with a large draft ratio is beneficial for high crystal orientation; however, the resulting carbon fiber has reduced orientation. This is due to PAN fiber with a high draft ratio having a smaller crystal size, and the crystal structure is not well maintained during the simulated pre-oxidation process. SAXS data reveal that a high draft ratio results in PAN fiber micropores with a large aspect ratio and high orientation. However, the micropore structure could not be maintained in the pre-oxidation process, resulting in corresponding carbon fiber with a decreased aspect ratio and lower crystal orientation. These findings contribute to our understanding of the relationship between PAN fiber production and carbon fiber structure, demonstrating that PAN fiber structural maintenance is also important when producing carbon fiber.
引用
收藏
页码:8321 / 8338
页数:17
相关论文
共 120 条
[1]  
Kobayashi T(2013)Stress concentration in carbon fiber revealed by the quantitative analysis of X-ray crystallite modulus and Raman peak shift evaluated for the variously-treated monofilaments under constant tensile forces Carbon 53 29-37
[2]  
Sumiya K(2012)Stress-induced microstructural changes and crystallite modulus of carbon fiber as measured by X-ray scattering Carbon 50 1163-1169
[3]  
Fujii Y(2021)In-situ SAXS study on pore structure change of PAN-based carbon fiber during graphitization MicroporI Mesopor Mat 323 259-269
[4]  
Fujie M(2019)Mesopores variation in polyacrylonitrile fibers during dry-jet wet spinning process Iran Polym J 28 2394-2409
[5]  
Takahagi T(2009)Small-angle X-ray scattering investigation of carbon nanotube-reinforced polyacrylonitrile fibers during deformation J Polym Sci Pol Phys 47 23059-23066
[6]  
Tashiro K(2020)Effect of spinning speed on microstructures and mechanical properties of polyacrylonitrile fibers and carbon fibers Ceram Int 46 1-13
[7]  
Kobayashi T(2019)Preparation of high-quality polyacrylonitrile precursors for carbon fibers through a high drawing ratio in the coagulation bath during a dry-jet wet spinning process J Macromol Sci B 58 2267-2273
[8]  
Sumiya K(2007)Investigating the jet stretch in the wet spinning of PAN fiber J Appl Polym Sci 106 1-9
[9]  
Fujii Y(2017)Structural and thermal property changes of plasticized spinning polyacrylonitrile fibers under different spinning speeds J Appl Polym Sci 134 2923-2927
[10]  
Fujie M(2013)Synchrotron radiation SAXS study of microvoids structure of PAN fiber during spinning process Adv Mater Res 634 1070-4969