用x射线衍射评价碳纤维增强聚酰胺6的纤维取向

IF 0.3 4区 工程技术 Q4 MATERIALS SCIENCE, TEXTILES Journal of Fiber Science and Technology Pub Date : 2020-06-15 DOI:10.2115/fiberst.2020-0024
A. Yamanaka, M. Terada, M. Ichiki, Yukitane Kimoto, Koji Shiraki, Mikio Nagata, Daisuke Shimamoto, Y. Hotta
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引用次数: 7

摘要

:纤维取向对碳纤维增强热塑性塑料(CFRTP)的发展很重要。本工作的目的是开发一种简单有效的技术,在短时间内分析碳纤维在CFRTP中的取向。为此,我们研究了通过X射线衍射(XRD)观察到的聚酰胺6(PA6)增强的CFRTP中的CF取向,并讨论了XRD用于测量CFRTP中CF取向的适用性。PA6的200、002和202反射;并且在CFRTPs的XRD图案中观察到石墨的002反射。单向CFRTP(UD-CFRTP)在衍射角(2θ)为25~33的范围内的XRD图谱几乎完全由CF的贡献所主导。在25~33范围内的2θ范围内,002 XRD强度与UD-CFRTP和布状CFRTP的方位角(I(φ))的依赖性显示了其中的CF取向。基于XRD获得的I(φ),可以估计不连续CF增强热塑性塑料(D-CFRTP)中CF取向的方向和分布。每个试件都显示出CF取向的变化方向和分布。通过D-CFRTP和UD-CFRTP的XRD获得的I(φ)估计了D-CFRTPs的纤维取向有序参数。D-CFRTP中的CF几乎沿着成型方向定向。拉伸模量与根据D-CFRTP的XRD图谱估计的取向次序参数相关。我们可以通过使用通用XRD系统对UD-CFRTP、c-CFRTP和D-CFRTP进行10分钟的简单测量来研究这些结果。因此,XRD可能是估算PA6增强CFRTP中CF取向的最有效方法之一。
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Evaluation of Fiber Orientation by X-Ray Diffraction on Carbon Fiber Reinforced Polyamide 6
: Fiber orientation is important for the development of carbon fiber reinforced thermoplastics (CFRTPs). The purpose of this work is the development of an easy and effective technique to analyze carbon fiber (CF) orientation in CFRTPs in a short time. For this purpose, we investigated the CF orientations in CFRTPs reinforced with polyamide 6 (PA6) as observed by X-ray diffraction (XRD), and discuss the suitability of XRD for the measurement of the CF orientation in CFRTPs. The 200, 002, and 202 reflections of PA6; and the 002 reflection of graphite were observed in the XRD pattern of the CFRTPs. The XRD pattern of uni-directional CFRTP (UD-CFRTP) in the diffraction angle ( 2 θ ) range from 25̊ to 33̊ was almost entirely dominated by contributions from CF. The dependence of the 002 XRD intensity in the 2 θ range from 25̊ to 33̊ on the azimuth ( I(φ) ) of UD-CFRTP and cloth CFRTP (c-CFRTP) showed the CF orientations in those. The direction and distribution of the CF orientations in the discontinuous CF reinforced thermoplastics (D-CFRTP) could be estimated based on the I(φ) obtained by the XRD. Each test piece showed a variable direction and distribution of CF orientation. Fiber orientation order parameters of D-CFRTPs were estimated by I(φ) obtained from the XRD of D-CFRTP and that of UD-CFRTP. The CFs in the D-CFRTP were almost oriented along the molding direction. The tensile modulus was correlated with the orientation order parameters estimated from the XRD patterns of the D-CFRTP. We could obtain these results from studying a UD-CFRTP, a c-CFRTP and a D-CFRTP with performing easy measurements using a general XRD system for 10min. Therefore, XRD may be the one of the most effective methods for the estimation of CF orientations in CFRTPs reinforced with PA6.
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来源期刊
Journal of Fiber Science and Technology
Journal of Fiber Science and Technology Materials Science-Materials Science (miscellaneous)
CiteScore
0.50
自引率
0.00%
发文量
17
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