Machine learning-based strain-load prediction of high-performance 3D woven fabrics

被引:0
作者
Li, Mengru [1 ]
He, Jingwei [1 ]
机构
[1] Guangzhou Univ, Sch Fine Arts & Design, 230 WaiHuanXi Rd, Guangzhou 510006, Peoples R China
关键词
Machine learning; strain-load; high-performance; 3D woven fabrics; COMPOSITES; BEHAVIORS; 2D;
D O I
10.1177/15280837241307369
中图分类号
TB3 [工程材料学]; TS1 [纺织工业、染整工业];
学科分类号
0805 ; 080502 ; 0821 ;
摘要
Strain-load is a critical aspect of high-performance textile composites, and testing and application of these materials require significant time, numerous samples, as well as extensive physical experimentation. To address these challenges, this study proposes the construction of machine learning prediction models as an alternative to traditional methods for assessing the strain-load performance of 3D woven fabrics. Four algorithms of Random Forest, Ridge Regressor, K-Nearest Neighbor, and Multi-layer Perceptron were investigated with different feature extraction strategies to predict the strain-load curves of 3D woven fabrics for both warp and weft directions as a whole. A total of 62 datasets sourced from the literature were investigated with 5-fold cross validation in model construction. The results indicate that the strain-load curves can be effectively simulated by different machine learning models basically, and more data with better feature extraction is expected to promote the prediction performance of constructed models in more application cases in future work.
引用
收藏
页数:21
相关论文
共 42 条
  • [1] Bandaru A.K., Sachan Y., Ahmad S., Et al., On the mechanical response of 2D plain woven and 3D angle-interlock fabrics, Composites Part B, 118, pp. 135-148, (2017)
  • [2] Yu B., Bradley R.S., Soutis C., Et al., 2D and 3D imaging of fatigue failure mechanisms of 3D woven composites, Composites Part A Appl Sci Manuf, 77, pp. 37-49, (2015)
  • [3] Dixit A., Mali H.S., Modeling techniques for predicting the mechanical properties of woven-fabric textile composites: a Review, Mech Compos Mater, 49, pp. 1-20, (2013)
  • [4] Sherburn M., Geometric and mechanical modelling of textiles, (2007)
  • [5] Ansar M., Xinwei W., Chouwei Z., Modeling strategies of 3D woven composites: a review, Compos Struct, 93, pp. 1947-1963, (2011)
  • [6] Yang X., Fan W., Ge S., Et al., Advanced textile technology for fabrication of ramie fiber PLA composites with enhanced mechanical properties, Ind Crop Prod, 162, (2021)
  • [7] Koptelov A., Thompson A., Hallett S.R., Et al., A deep learning approach for predicting the architecture of 3D textile fabrics, Mater Des, 239, (2024)
  • [8] Li M., Wang P., Boussu F., Et al., A review on the mechanical performance of three-dimensional warp interlock woven fabrics as reinforcement in composites, J Ind Text, 51, pp. 1009-1058, (2022)
  • [9] Isart N., El Said B., Ivanov D.S., Et al., Internal geometric modelling of 3D woven composites: a comparison between different approaches, Compos Struct, 132, pp. 1219-1230, (2015)
  • [10] Song L., Wang D., Liu X., Et al., Prediction of mechanical properties of composite materials using multimodal fusion learning, Sensors Actuators A Phys, 358, (2023)