Experimental and numerical study of the additively manufactured carbon fibre reinforced polymers including fibre Bragg grating sensors

被引:35
作者
Shafighfard, Torkan [1 ]
Mieloszyk, Magdalena [1 ]
机构
[1] Polish Acad Sci, Inst Fluid Flow Machinery, Fiszera 14 Str, PL-80231 Gdansk, Poland
关键词
Carbon Fibre Reinforced Polymer; Additive manufacturing; Thermal strain; Fibre Bragg Grating sensor; TEMPERATURE; COMPOSITES; STRAIN;
D O I
10.1016/j.compstruct.2022.116027
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Fibre Bragg grating (FBG) sensors have been known as one of the smart localized and globalized Structural Health Monitoring (SHM) devices for various structural applications specifically those utilize composite materials. In recent decades the use of advanced composite materials green manufacturing methods has increased the requirement to provide effective means of performing experimental investigations to support analytical and numerical analyses. The main objective of this article is to analyse the performance of additively manufactured (AM) Carbon Fibre Reinforced Polymer (CFRP) sample with FBG sensors under the influence of environmental factors (temperature, relative humidity). The sample was manufactured using continuous carbon fibre applying Fused Deposition Modelling (FDM) technique. During the AM process one FBG sensor was embedded in the middle of the sample, while the second FBG sensor was attached to the finished sample surface. The environmental tests were conducted to investigate the durability of AM elements and influences of embedded FBG sensors on the composite specimen. Additionally, the behaviour of composite materials under environmental loading was modelled using the Finite Element Method (FEM) through an Abaqus software. It allows to achieve a more complex picture of embedded fibre optic influences on AM composite material durability.
引用
收藏
页数:7
相关论文
共 51 条
[1]  
[Anonymous], 2019, MATLAB VERSION 9 7 R
[2]  
[Anonymous], 2017, ABAQUS STANDARD USER
[3]   High speed measurements using fiber-optic Bragg gratings [J].
Benterou, Jerry ;
May, Chadd ;
Udd, Eric ;
Mihailov, Stephen J. ;
Lu, Ping .
FIBER OPTIC SENSORS AND APPLICATIONS VIII, 2011, 8028
[4]   Tensile and Compressive Behavior in the Experimental Tests for PLA Specimens Produced via Fused Deposition Modelling Technique [J].
Brischetto, Salvatore ;
Torre, Roberto .
JOURNAL OF COMPOSITES SCIENCE, 2020, 4 (03)
[5]   Additive manufacturing of continuous fibre reinforced thermoplastic composites using fused deposition modelling: Effect of process parameters on mechanical properties [J].
Chacon, J. M. ;
Caminero, M. A. ;
Nunez, P. J. ;
Garcia-Plaza, E. ;
Garcia-Moreno, I. ;
Reverte, J. M. .
COMPOSITES SCIENCE AND TECHNOLOGY, 2019, 181
[6]   3D printing technology of polymer-fiber composites in textile and fashion industry: A potential roadmap of concept to consumer [J].
Chakraborty, Samit ;
Biswas, Manik Chandra .
COMPOSITE STRUCTURES, 2020, 248
[7]   Monitoring of temperature and cure-induced strain gradient in laminated composite plate with FBG sensors [J].
Chen, Junlei ;
Wang, Jihui ;
Li, Xiaoyang ;
Sun, Liangliang ;
Li, Shuxin ;
Ding, Anxin .
COMPOSITE STRUCTURES, 2020, 242
[8]   Life cycle assessment in yacht industry: A case study of comparison between hand lay-up and vacuum infusion [J].
Cucinotta, Filippo ;
Guglielmino, Eugenio ;
Sfravara, Felice .
JOURNAL OF CLEANER PRODUCTION, 2017, 142 :3822-3833
[9]   Enhanced Bonding via Additive Manufacturing-Enabled Surface Tailoring of 3D Printed Continuous-Fiber Composites [J].
Dugbenoo, Edem ;
Arif, Muhamad F. ;
Wardle, Brian L. ;
Kumar, Shanmugam .
ADVANCED ENGINEERING MATERIALS, 2018, 20 (12)
[10]   On the Structural Testing Monitoring of CFRP Cockpit and Concrete/CFRP Pillar by FBG Sensors [J].
Fernandez, Rosario ;
Gutierrez, Nicolas ;
Jimenez, Humberto ;
Martin, Fernando ;
Rubio, Luis ;
Jimenez-Vicaria, Jose D. ;
Paulotto, Carlo ;
Lasagni, Fernando .
ADVANCED ENGINEERING MATERIALS, 2016, 18 (07) :1289-1298