Probing the three-dimensional porous and tortuous nature of absorptive glass mat (AGM) separators

被引:7
|
作者
Shukla, Siddharth [1 ]
Kumar, Vijay [2 ]
Rao, P. V. Kameswara [1 ]
Sharma, Sumit [1 ]
Sebok, Daniel [3 ]
Szenti, Imre [3 ]
Rawal, Amit [1 ]
Kukovecz, Akos [3 ]
机构
[1] Indian Inst Technol Delhi, New Delhi, India
[2] Univ Boras, Boras, Sweden
[3] Univ Szeged, Interdisciplinary Excellence Ctr, Dept Appl & Environm Chem, Rerrich Bela Ter 1, H-6720 Szeged, Hungary
关键词
Fiber orientation; Separator; Pore size; Tortuosity; Porosity; LEAD-ACID-BATTERIES; ELECTROLYTE UPTAKE; FIBER ORIENTATION; PERFORMANCE; DESIGN; COMPRESSION; MODEL; KEY;
D O I
10.1016/j.est.2019.101003
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The valve regulated lead acid (VRLA) battery is a predominant electrochemical storage system that stores energy in a cheap, reliable and recyclable manner for innumerable applications. The absorptive glass mat (AGM) separator is a key component, which is pivotal for the successful functioning of the VRLA battery. Herein, the intricate three-dimensional (3D) porous structure of AGM separators has been unveiled using X-ray micro-computed tomography (microCT) analysis. X-ray microCT has quantified a variety of fiber and structural parameters including fiber orientation, porosity, tortuosity, pore size distribution, pore interconnectivity and pore volume distribution. A predictive model of hydraulic tortuosity has been developed based upon some of these fiber and structural parameters. Moreover, the pore size distribution extracted via X-ray microCT analysis has served as a benchmark for making a comparison with the existing analytical model of the pore size distribution of AGM separators. Pore size distributions obtained via the existing analytical model and through X-ray microCT analysis are in close agreement.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] Unsteady targeted particle delivery in three-dimensional tortuous cerebral artery
    Pawan Kumar Pandey
    Malay Kumar Das
    International Journal of Advances in Engineering Sciences and Applied Mathematics, 2019, 11 : 263 - 279
  • [22] Current sheet formation along three-dimensional magnetic separators
    Longcope, DW
    Cowley, SC
    PHYSICS OF PLASMAS, 1996, 3 (08) : 2885 - 2897
  • [23] Unsteady targeted particle delivery in three-dimensional tortuous cerebral artery
    Pandey, Pawan Kumar
    Das, Malay Kumar
    INTERNATIONAL JOURNAL OF ADVANCES IN ENGINEERING SCIENCES AND APPLIED MATHEMATICS, 2019, 11 (04) : 263 - 279
  • [24] Probing the three-dimensional structure of human calreticulin
    Bouvier, M
    Stafford, WF
    BIOCHEMISTRY, 2000, 39 (48) : 14950 - 14959
  • [25] Virtually probing "Faraday three-dimensional nanoprinting"
    Jung, Yoon-Ho
    Pikhitsa, Peter, V
    Liu, Shirong
    Jung, Wooik
    Shin, Jooyeon
    Liu, Bingyan
    Han, Yaochen
    Kim, Kwang-Yeong
    Choi, Mansoo
    Feng, Jicheng
    ADDITIVE MANUFACTURING, 2021, 48
  • [26] On the nature of three-dimensional magnetic reconnection
    Priest, E. R.
    Hornig, G.
    Pontin, D. I.
    JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 2003, 108 (A7)
  • [27] Three-dimensional nature of the glottal jet
    Triep, Michael
    Bruecker, Christoph
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 2010, 127 (03): : 1537 - 1547
  • [28] Micro-structural design and function of an improved absorptive glass mat (AGM) separator for valve-regulated lead-acid batteries
    Nakayama, Y
    Kishimoto, K
    Sugiyama, S
    Sakaguchi, S
    JOURNAL OF POWER SOURCES, 2002, 107 (02) : 192 - 200
  • [29] Simulation of three-dimensional porous networks
    Cordero, S
    Rojas, F
    Riccardo, JL
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2001, 187 : 425 - 438
  • [30] Three-dimensional flow in a porous channel
    Taylor, C.L.
    Banks, W.H.H.
    Zaturska, M.B.
    Drazin, P.G.
    Quarterly Journal of Mechanics and Applied Mathematics, 1991, 44 (pt 1): : 105 - 133