Processing of hybrid shape memory alloy coupled with P(VDF-TrFE) piezoelectric polymer composite for energy harvesting application

被引:2
|
作者
Sukumaran, Sunija [1 ,2 ]
Chatbouri, Samir [2 ]
Badie, Laurent [2 ]
Thiebaud, Frederic [1 ]
Ben Zineb, Tarak [1 ]
Rouxel, Didier [2 ]
机构
[1] Univ Lorraine, CNRS, Arts & Metiers Paris Tech, LEM3, Nancy, France
[2] Univ Lorraine, CNRS, IJL, Nancy, France
关键词
Piezoelectric polymer; P(VDF-TrFE); shape memory effect; NiTi SMA; hybrid composites; energy harvesting; small scale electronic device; PVDF; PERFORMANCE; NANOGENERATORS; NANOCOMPOSITE; FILMS;
D O I
10.1177/1045389X221111550
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Small-scale energy harvesting to power self-powered electronic devices is tremendously increasing. In this context, the ability to combine thermal and mechanical energy harvesting using smart materials deserves more attention for further study. We have presented the feasibility of using P(VDF-TrFE) piezoelectric polymer coupled with NiTi shape memory alloy (SMA) to harvest both mechanical and thermal energy in simple scalable devices. A novel hybrid composite consisting of SMA, and P(VDF-TrFE) has been developed without any complex composites or patterned structures, which couples the piezoelectric effect of the poly(vinylidene fluoride-co-trifluoroethylene) (P(VDF-TrFE)) and the shape memory effects of NiTi SMA. We have also fabricated a multi-layer SMA/PEN/P(VDF-TrFE) device using epoxy as an interface and bonding layer. During bending, the P(VDF-TrFE) device with an active area of 3.68 cm(2) generated an output voltage of 8 V and an output power of 6.25 mu W. When coupled with NiTi SMA to create a hybrid composite thermoelectric material, the device can convert the phase change associated with SMA, and thus thermal energy is converted to mechanical energy and finally into electrical energy. The SMA/P(VDF-TrFE) hybrid composite produced an output voltage of similar to 2 V for one cyclic heating and cooling of the device. This is a promising approach for the further development of coupled hybrid energy harvester devices for the powering of small-scale electronic devices such as sensors, MEMS, or biomedical devices.
引用
收藏
页码:595 / 608
页数:14
相关论文
共 50 条
  • [41] Pyroelectric energy converter using co-polymer P(VDF-TrFE) and Olsen cycle for waste heat energy harvesting
    Nguyen, Hiep
    Navid, Ashcon
    Pilon, Laurent
    APPLIED THERMAL ENGINEERING, 2010, 30 (14-15) : 2127 - 2137
  • [42] Flexible piezoelectric energy harvesters with graphene oxide nanosheets and PZT-incorporated P(VDF-TrFE) matrix for mechanical energy harvesting
    Wu, Qi
    Guo, Huiling
    Sun, Huajun
    Liu, Xiaofang
    Sui, Huiting
    Wang, Fang
    CERAMICS INTERNATIONAL, 2021, 47 (14) : 19614 - 19621
  • [43] A Flexible Piezoelectric-Pyroelectric Hybrid Nanogenerator Based on P(VDF-TrFE) Nanowire Array
    Chen, Xiaoliang
    Shao, Jinyou
    Li, Xiangming
    Tian, Hongmiao
    IEEE TRANSACTIONS ON NANOTECHNOLOGY, 2016, 15 (02) : 295 - 302
  • [44] Self-Polarized P(VDF-TrFE)/Carbon Black Composite Piezoelectric Thin Film
    Muthusamy, Lavanya
    Uppalapati, Balaadithya
    Azad, Samee
    Bava, Manav
    Koley, Goutam
    POLYMERS, 2023, 15 (20)
  • [45] Flexible, bilayered piezoelectric composite based on large-scale inorganic PZT film and organic P(VDF-TrFE) membrane for mechanical energy harvesting
    Lv, Panpan
    Zhan, Hang
    Xin, Le
    Zhang, Shuzhi
    Wang, Jia
    Li, Ruihang
    Li, Cuncheng
    Ren, Luchao
    Zhang, Mingwei
    Cheng, Xin
    SURFACES AND INTERFACES, 2024, 51
  • [46] A wave-shaped hybrid piezoelectric and triboelectric nanogenerator based on P(VDF-TrFE) nanofibers
    Chen, Xuexian
    Han, Mengdi
    Chen, Haotian
    Cheng, Xiaoliang
    Song, Yu
    Su, Zongming
    Jiang, Yonggang
    Zhang, Haixia
    NANOSCALE, 2017, 9 (03) : 1263 - 1270
  • [47] Preparation and properties of electrospun P(VDF-TrFE)/BaTiO3 piezoelectric composite films
    Luo Y.
    Sun Y.
    Zhao Z.
    Wang J.
    Wu Y.
    Gao Xiao Hua Xue Gong Cheng Xue Bao/Journal of Chemical Engineering of Chinese Universities, 2023, 37 (06): : 971 - 979
  • [48] A flexible, wave-shaped P(VDF-TrFE)/metglas piezoelectric composite for wearable applications
    You, Sujian
    Shi, Huaduo
    Wu, Jingen
    Shan, Liang
    Guo, Shishang
    Dong, Shuxiang
    JOURNAL OF APPLIED PHYSICS, 2016, 120 (23)
  • [49] An experimental investigation of piezoelectric P(VDF-TrFE) thick film on flexible substrate as energy harvester
    Keat, Chow Khoon
    Leong, Kok Swee
    Tee, Lau Kok
    INTERNATIONAL TECHNICAL POSTGRADUATE CONFERENCE, 2017, 2017, 210
  • [50] Dielectric, ferroelectric, and energy conversion properties of a KNN/P(VDF-TrFE) composite film
    Xiaofang Zhang
    Weimin Xia
    Yufan Ping
    Rong Wang
    Tianxin Wei
    Junhong Xing
    Journal of Materials Science: Materials in Electronics, 2022, 33 : 12941 - 12952