会议论文详细信息
13th International Conference on Textile Composites
Using micro-CT to quantitatively validate the textile compaction simulation
Wijaya, W.^1 ; Lim, Y.X.^1 ; Kelly, P.A.^1 ; Bickerton, S.^1 ; Ali, M.A.^2 ; Umer, R.^2,3 ; Khan, K.A.^2
Centre for Advanced Composite Materials, University of Auckland, New Zealand^1
Department of Aerospace Engineering, Khalifa University of Science and Technology, United Arab Emirates^2
Centre for Future Materials, University of Southern Queensland, Australia^3
关键词: Compaction experiments;    Compaction models;    Cross sectional parameter;    Image processing technique;    Image slices;    Micro CT;    Quantitative comparison;    Semi-automated;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/406/1/012044/pdf
DOI  :  10.1088/1757-899X/406/1/012044
来源: IOP
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【 摘 要 】

The results of any dry textile compaction simulation have to be validated. Micro-CT is a perfect tool to facilitate such a task. By performing an equivalent dry textile compaction experiment inside a micro-CT, the actual deformation and placement of fibrous tows can be captured within a sample as it deforms. The resulting micro-CT images can readily be used to qualitatively validate a compaction model. This work presents a set of methodologies to facilitate a straight forward quantitative comparison between a micro-CT sample and an equivalent compaction model. The images from the micro-CT and the compaction models are subjected to various image processing techniques that are implemented in MATLAB. The program is designed to allow a user to process the images in a consistent and semi-automated manner while minimising the manual labour time. Various cross-sectional parameters of the tows at each image slice are computed automatically using an algorithm that can handle any arbitrarily shaped cross section. By presenting the computed data as a series of Excel files and 3D plots, this work concludes that micro-CT can be used to conveniently quantitatively validate the result of compaction models.

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