首页> 外文期刊>Carbon >MICROSTRUCTURE OF MESOPHASE PITCH-BASED CARBON FIBER AND ITS CONTROL
【24h】

MICROSTRUCTURE OF MESOPHASE PITCH-BASED CARBON FIBER AND ITS CONTROL

机译:中间相沥青基碳纤维的微观结构及其控制

获取原文
获取原文并翻译 | 示例
           

摘要

The macro as well as microscopic structure of four mesophase pitch-based carbon fibers of typical textures is observed using optical, scanning electron, transmission electron, and scanning tunneling microscopes. The four fibers had transverse textures of radial, radial-skin/random-core, random and quasi-onion. High resolution SEM clarified the domains to have typical shapes of linear, bent, multi-fold bent and loop. The shapes and alignment of the domains depended upon the spinning conditions and mesophase pitch properties, which defined the texture in a rather complex manner, varying in the transverse locations of the fibers of any overall textures. Each domain appeared to possess micro-domains which were arranged to define the size and shape of the domain. The shape of the micro-domains was basically unchanged by carbonization and graphitization, while the carbon plane cluster, or graphitic unit grew during carbonization and graphitization within the micro-domain. Such crystal growth brings about shrinkage of the micro-domain to change the size of the domains, strongly influencing overall structure and the properties of the carbon and graphitized fibers. The unique pleat shaped structural units, which are aligned in a zig-zag manner in the longitudinal section of the carbon and graphitized fibers, were found by high resolution SEM and STM. Such structures were formed in the spinning step with the fiber of liquid crystal polymers and mesophase pitch-based carbon fiber. Neither PAN, isotropic pitch-based fibers nor needle coke exhibited such a structure. The size and alignment in the pleat-like structure were also dependent upon the nature of mesophase pitch and spinning conditions, although the formation mechanism is not clarified yet. Such overall structure is briefly compared to the properties of the carbon fiber to find guidelines for the preparation of carbon fibers with better performances. Copyright (C) 1996 Elsevier Science Ltd [References: 26]
机译:使用光学显微镜,扫描电子显微镜,透射电子显微镜和扫描隧道显微镜观察四种具有典型织构的中间相沥青基碳纤维的宏观结构和微观结构。这四根纤维具有放射状,放射状皮肤/无核,无规和准洋葱的横向纹理。高分辨率SEM阐明了这些区域具有线性,弯曲,多重弯曲和环状的典型形状。畴的形状和排列取决于纺丝条件和中间相沥青性质,其以相当复杂的方式限定织构,在任何整体织构的纤维的横向位置中变化。每个域似乎都具有微域,这些微域被安排来定义域的大小和形状。通过碳化和石墨化,微区的形状基本保持不变,而在碳化和石墨化过程中,碳平面簇或石墨单元在微区中生长。这种晶体的生长导致微区的收缩,从而改变了畴的尺寸,强烈影响了碳和石墨化纤维的整体结构和性能。通过高分辨率SEM和STM发现了独特的褶状结构单元,这些单元在碳纤维和石墨化纤维的纵向截面中呈锯齿形排列。这种结构是在纺丝步骤中用液晶聚合物纤维和中间相沥青基碳纤维形成的。 PAN,各向同性沥青基纤维和针状焦都没有表现出这种结构。褶状结构的尺寸和排列方式还取决于中间相沥青的性质和纺丝条件,尽管其形成机理尚未阐明。将这种总体结构与碳纤维的性能进行简要比较,以找到制备具有更好性能的碳纤维的指导原则。版权所有(C)1996 Elsevier Science Ltd [引用:26]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号