Towards in-situ acoustic emission-based health monitoring in bio-based composites structures: Does embedment of sensors affect the mechanical behaviour of flax/epoxy laminates?

Composites Part B: Engineering - Tập 236 - Trang 109787 - 2022
Guillem Seychal1, Emmanuel Ramasso1, Patrice Le Moal1, Gilles Bourbon1, Xavier Gabrion1, Vincent Placet1
1Univ. Bourgogne Franche-Comté, FEMTO-ST Institute, UFC/CNRS/ENSMM/UTBM, Department of Applied Mechanics, F-25000, Besançon, France

Tài liệu tham khảo

Wambua, 2003, Natural fibres: can they replace glass in fibre reinforced plastics?, Compos Sci Technol, 63, 1259, 10.1016/S0266-3538(03)00096-4 Bourmaud, 2018, Towards the design of high-performance plant fibre composites, Prog Mater Sci, 97, 347, 10.1016/j.pmatsci.2018.05.005 Yan, 2014, Flax fibre and its composites – a review, Compos B Eng, 56, 296, 10.1016/j.compositesb.2013.08.014 Mitsheal, 2017, vol. 57 Williams, 1978, Acoustic emission monitoring of fiber composite materials and structures, J Compos Mater, 12, 348, 10.1177/002199837801200402 De Rosa, 2009, Acoustic emission for monitoring the mechanical behaviour of natural fibre composites: a literature review, Compos Part Appl Sci Manuf, 40, 1456, 10.1016/j.compositesa.2009.04.030 Maria I, Rosa D, Santulli C, Sarasini F. Natural fiber composites monitored by acoustic emission n.d. Tuloup, 2019, On the use of in-situ piezoelectric sensors for the manufacturing and structural health monitoring of polymer-matrix composites: a literature review, Compos Struct, 215, 127, 10.1016/j.compstruct.2019.02.046 Dziendzikowski, 2016, In situ Barely Visible Impact Damage detection and localization for composite structures using surface mounted and embedded PZT transducers: a comparative study, Mech Syst Signal Process, 78, 91, 10.1016/j.ymssp.2015.09.021 Mall, 1998, Monotonic and fatigue loading behavior of quasi-isotropic graphite/epoxy laminate embedded with piezoelectric sensor, Smart Mater Struct, 7, 822, 10.1088/0964-1726/7/6/010 Mall, 2002, Integrity of graphite/epoxy laminate embedded with piezoelectric sensor/actuator under monotonic and fatigue loads, Smart Mater Struct, 11, 527, 10.1088/0964-1726/11/4/307 Mall S, Hsu TL. Electromechanical fatigue behavior of graphite/epoxy laminate embedded with piezoelectric actuator n.d.:vol. 8. Masmoudi, 2017, Effect of piezoelectric implant on the structural integrity of composite laminates subjected to tensile loads, Appl Compos Mater, 24, 39, 10.1007/s10443-016-9513-4 Masmoudi, 2015, Use of piezoelectric as acoustic emission sensor for in situ monitoring of composite structures, Compos B Eng, 80, 307, 10.1016/j.compositesb.2015.06.003 Masmoudi, 2014, Mechanical behavior and health monitoring by Acoustic Emission of unidirectional and cross-ply laminates integrated by piezoelectric implant, Appl Acoust, 86, 118, 10.1016/j.apacoust.2014.04.011 De Rosa, 2010, Use of PVDF as acoustic emission sensor for in situ monitoring of mechanical behaviour of glass/epoxy laminates, Polym Test, 29, 749, 10.1016/j.polymertesting.2010.04.006 Ghezzo, 2009, Onset of resin micro-cracks in unidirectional glass fiber laminates with integrated SHM sensors: experimental results, Struct Health Monit, 8, 477, 10.1177/1475921709340976 Ghezzo, 2010, Integration of networks of sensors and electronics for structural health monitoring of composite materials, Adv Civ Eng, 1 Tripathi, 2016, Flax fibers – epoxy with embedded nanocomposite sensors to design lightweight smart bio-composites, Nanocomposites, 2, 125, 10.1080/20550324.2016.1227546 Butaud, 2020, Towards a better understanding of the CMUTs potential for SHM applications, Sens Actuators Phys, 313, 10.1016/j.sna.2020.112212 Cadu, 2018, What are the key parameters to produce a high-grade bio-based composite? Application to flax/epoxy UD laminates produced by thermocompression, Compos B Eng, 150, 36, 10.1016/j.compositesb.2018.04.059 Jeannin, 2019, About the fatigue endurance of unidirectional flax-epoxy composite laminates, Compos B Eng, 165, 690, 10.1016/j.compositesb.2019.02.009 Kharrat, 2016, A signal processing approach for enhanced Acoustic Emission data analysis in high activity systems: application to organic matrix composites, Mech Syst Signal Process, 70, 1038, 10.1016/j.ymssp.2015.08.028 Berges, 2016, Influence of moisture uptake on the static, cyclic and dynamic behaviour of unidirectional flax fibre-reinforced epoxy laminates, Compos Part Appl Sci Manuf, 88, 165, 10.1016/j.compositesa.2016.05.029 Passieux, 2021 Passieux, 2019, Classic and inverse compositional Gauss‐Newton in global DIC, Int J Numer Methods Eng, 119, 453, 10.1002/nme.6057 Liang, 2015, Quasi-static behaviour and damage assessment of flax/epoxy composites, Mater Des, 67, 344, 10.1016/j.matdes.2014.11.048 Sala, 2021, Influence of the stress level and hygrothermal conditions on the creep/recovery behaviour of high-grade flax and hemp fibre reinforced GreenPoxy matrix composites, Compos Part Appl Sci Manuf, 141, 10.1016/j.compositesa.2020.106204 Blanchard, 2019, Comparative design of E-glass and flax structures based on reliability, Compos Struct, 225, 10.1016/j.compstruct.2019.111037 2019 Viala, 2018, Compos Part Appl Sci Manuf, 106, 91, 10.1016/j.compositesa.2017.12.018 César dos Santos, 2020, Ageing of autoclaved epoxy/flax composites: effects on water absorption, porosity and flexural behaviour, Compos B Eng, 202, 10.1016/j.compositesb.2020.108380 Moudood, 2019, Environmental effects on the durability and the mechanical performance of flax fiber/bio-epoxy composites, Compos B Eng, 171, 284, 10.1016/j.compositesb.2019.05.032 Van Vuure, 2015, Compressive properties of natural fibre composites, Mater Lett, 149, 138, 10.1016/j.matlet.2015.01.158 Jeannin, 2019, Influence of hydrothermal ageing on the fatigue behaviour of a unidirectional flax-epoxy laminate, Compos B Eng, 174, 10.1016/j.compositesb.2019.107056 Liu T. Multi-scale damping characterization of plant fiber composite materials n.d.:214. De Beus, 2019, Natural fibres show outstandingly low CO2 footprint compared to glass and mineral fibres, Renew Carbon News