Analysis of the 3D draping behavior of carbon fiber non-crimp fabrics with eddy current technique

被引:35
作者
Bardl, Georg [1 ]
Nocke, Andreas [1 ]
Huebner, Matthias [1 ]
Gereke, Thomas [1 ]
Pooch, Matthias [2 ]
Schulze, Martin [2 ]
Heuer, Henning [2 ,3 ]
Schiller, Marko [4 ]
Kupke, Richard [5 ]
Klein, Marcus [5 ]
Cherif, Chokri [1 ]
机构
[1] Tech Univ Dresden, Inst Text Machinery & High Performance Mat Techno, Dresden, Germany
[2] Mat Diagnost IKTS MD, Fraunhofer Inst Ceram Technol & Syst, Dresden, Germany
[3] Tech Univ Dresden, Elect Packaging Lab, Chair Sensor Syst Nondestruct Testing, Dresden, Germany
[4] HTS GmbH, Coswig, Germany
[5] SURAGUS GmbH, Dresden, Germany
关键词
Fabrics/textiles; Preform; Non-destructive testing; Forming; Eddy current testing; ELEMENT FORMING SIMULATION; NONDESTRUCTIVE CHARACTERIZATION; COMPOSITE REINFORCEMENT; WOVEN FABRICS; CFRP; VALIDATION; PREFORMS; CHAIN; VISUALIZATION; PERMITTIVITY;
D O I
10.1016/j.compositesb.2017.08.007
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Assessing and controlling the complex deformation behavior of textile reinforcements fabrics remains one of the major challenges in the production of fiber-reinforced plastics. In this paper, the draping of +45 degrees/-45 degrees biaxial non-crimp fabrics to a hemispherical shape is investigated with an eddy current imaging technique. After an automated draping process, the textiles are scanned with a robot-guided eddy current measurement system. From the resulting conductivity maps of the samples, the local yarn directions are extracted by image analysis and the paths of individual yarns are recrinstructed for both the upper and the lower layer. Experiments are carried out for different forming speeds, blank holder forces and different non-crimp fabric parameters (stitch length, stitch type, stitch tension and yarn count). The influences of these parameters are compared and discussed, with the conclusion that blank holder forces have by far the most significant influence on the draping result. Sample experimental results are compared to results from an FEM draping simulation. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:49 / 60
页数:12
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[31]   Eddy Current Testing Based Non-Destructive Inspection for Metal 3D Additive Manufacturing Objects With HTS-SQUID [J].
Kasa, Tomoki ;
Sun, Wenxu ;
Hatsukade, Yoshimi ;
Yonehara, Makiko ;
Ikeshoji, Toshi-Taka ;
Kyogoku, Hideki .
IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2023, 33 (05)
[32]   Path design and compression behavior of 3D printed continuous carbon fiber reinforced composite lattice sandwich structures [J].
Zhang, Peng ;
Han, Zhenyu ;
Ran, Xudong ;
Sun, Shouzheng ;
Fu, Hongya .
COMPOSITE STRUCTURES, 2022, 296
[33]   Use of a Simple Non-Destructive Technique for Evaluation of the Elastic and Vibration Properties of Fiber-Reinforced and 3D Fiber-Metal Laminate Composites [J].
De Cicco, Davide ;
Taheri, Farid .
FIBERS, 2018, 6 (01)
[34]   Nonlinear behavior mechanism of change in electrical resistance on 3D printed carbon fiber/PA6 composites during cyclic tests [J].
Iizuka, Keisuke ;
Todoroki, Akira .
ADVANCED COMPOSITE MATERIALS, 2023, 32 (01) :1-20
[35]   Spatial electric potential distributions and damage mapping in 3D carbon fiber/epoxy angle-interlock woven composites with different current directions [J].
Han, Chaofeng ;
Ke, Yanan ;
Guo, Jinhui ;
Shi, Baohui ;
Yu, Bin ;
Jia, Lin ;
Liu, Jie .
STRUCTURAL HEALTH MONITORING-AN INTERNATIONAL JOURNAL, 2023, 22 (06) :4055-4068
[36]   Damage created by abrasive waterjet and conventional drilling in open-hole and assembled 3D interlock woven carbon fiber-reinforced plastic composites examined by fatigue testing and linear regression analysis [J].
Blais, Philippe ;
Toubal, Lotfi ;
Zitoune, Redouane .
ENGINEERING FAILURE ANALYSIS, 2025, 168