会议论文详细信息
13th International Conference on Textile Composites
Examination of voids and geometry of bio-based braided composite structures
Melenka, Garrett W.^1 ; Bruni-Bossio, Brianna M.^2 ; Ayranci, Cagri^2 ; Carey, Jason P.^2
Lassonde School of Engineering, York University, 4700 Keele St., North York
ON
M3J 1P3, Canada^1
Mechanical Engineering, University of Alberta, Donadeo Innovation Centre for Engineering, 9211-116 Street NW, Edmonton
AB
T6G 1H9, Canada^2
关键词: Accurate quantifications;    Braided composites;    Conventional materials;    Image processing technique;    Internal microstructure;    Measurement methods;    Microcomputed tomography;    Regenerated cellulose;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/406/1/012012/pdf
DOI  :  10.1088/1757-899X/406/1/012012
来源: IOP
PDF
【 摘 要 】

Braided composites are formed by interlacing continuous fibers into a textile pre-form and then impregnating the pre-form within a matrix material. Braid mechanical properties are manipulated through the selection of matrix, fiber and braid geometry. Braided composites are produced with conventional materials like carbon, aramid and glass fibers; however, they can also be produced using natural fibers such as jute, hemp, flax or regenerated cellulose. The mechanical properties of conventional and natural braided composites are highly affected by voids within the braided structure. The effect of voids on braided structures must be investigated to improve braided composite performance. A high-resolution micro-computed tomography (μCT) measurement method was utilized to quantify the size and distribution of voids within natural fiber-bio resin braided composite structures. Image processing techniques were employed to quantify void, matrix and fiber content within 35° and 45° braid samples. Accurate quantification of fiber, matrix and void volumes are crucial for evaluating the quality and repeatability of the braided composite manufacturing process. Reduction of voids and pores will improve braided composite mechanical properties and performance. Measurement of the constituents within braided composites is also necessary for the development of accurate models for predicting braid mechanical properties. Measurement of the internal microstructure of braided composites will allow for the development of improved analytical and numerical braided composite models.

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