Non-Newtonian Behavior of Ballistic Gelatin at High Shear Rates

被引:0
|
作者
G. Subhash
J. Kwon
R. Mei
D. F. Moore
机构
[1] University of Florida,Department of Mechanical and Aerospace Engineering
[2] LS Cable & System Ltd.,Department of Neurology
[3] Energy System Research Center,undefined
[4] Tulane University School of Medicine,undefined
来源
Experimental Mechanics | 2012年 / 52卷
关键词
Power-law fluid model; High shear rate; Split Hopkinson pressure bar; Ballistic gelatin;
D O I
暂无
中图分类号
学科分类号
摘要
A coordinated modeling and experimental effort to investigate the shear stress-shear strain rate response of ballistic gelatin is presented. A power-law constitutive model that captures non-Newtonian shear-thickening behavior, the evolution of viscosity, and the momentum diffusion at high shear rates is adopted. A simple asymptotic relationship between the maximum wall shear stress and the maximum striking wall velocity is derived in the high diffusion rate regime for a shear flow between two parallel plates. Experimental investigation is conducted on double lap-shear test fixture with gelatin specimens of different thicknesses subjected to high strain rate input on the inner surface, generated by a polymer split Hopkinson pressure bar. This test fixture allows measurement of transmitted shear stress as well as visualization of momentum diffusion through gelatin when imaged by a high speed camera. Gelatin specimens of various thicknesses were used for extracting the power-law model parameters. It is found that ballistic gelatin behaves as a shear-thickening fluid at high shear rates with a power-law exponent of 2.22.
引用
收藏
页码:551 / 560
页数:9
相关论文
共 50 条
  • [41] DYNAMICS OF SHEAR-FLOW OF A NON-NEWTONIAN FLUID
    MALKUS, DS
    NOHEL, JA
    PLOHR, BJ
    JOURNAL OF COMPUTATIONAL PHYSICS, 1990, 87 (02) : 464 - 487
  • [42] Shear rate projection schemes for non-Newtonian fluids
    Deteix, J.
    Yakoubi, D.
    COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 2019, 354 : 620 - 636
  • [43] SHEAR-AUGMENTED DISPERSION IN NON-NEWTONIAN FLUIDS
    SHARP, MK
    ANNALS OF BIOMEDICAL ENGINEERING, 1993, 21 (04) : 407 - 415
  • [44] VISCOELASTIC AND NON-NEWTONIAN EFFECTS IN SHEAR-FLOW
    DUFTY, JW
    PHYSICAL REVIEW A, 1984, 30 (01): : 622 - 623
  • [45] Evaluating the Foaming Behavior of High-Viscosity Non-Newtonian Fluids
    Zhang, Jiahao
    Zhu, Zhendong
    Wang, Feihong
    Feng, Wenhui
    Wei, Hongyuan
    Dang, Leping
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2024, : 11776 - 11789
  • [46] THIN LIQUID LAYERS IN SHEAR - NON-NEWTONIAN EFFECTS
    RABIN, Y
    HERSHT, I
    PHYSICA A, 1993, 200 (1-4): : 708 - 712
  • [47] SUPERPOSITION OF OSCILLATORY ON STEADY SHEAR FOR NON-NEWTONIAN SUSPENSIONS
    EASTWOOD, AR
    BARNES, HA
    RHEOLOGICA ACTA, 1975, 14 (09) : 795 - 800
  • [48] Flocking particles in a non-Newtonian shear thickening fluid
    Mucha, Piotr B.
    Peszek, Jan
    Pokorny, Milan
    NONLINEARITY, 2018, 31 (06) : 2703 - 2725
  • [49] ON SOME NONLINEAR SHEAR FLOWS OF NON-NEWTONIAN FLUIDS
    PASCAL, JP
    PASCAL, H
    INTERNATIONAL JOURNAL OF NON-LINEAR MECHANICS, 1995, 30 (04) : 487 - 500
  • [50] SHEAR RATE DEPENDENCE OF NON-NEWTONIAN VISCOSITY OF FLUIDS
    EU, BC
    JOURNAL OF CHEMICAL PHYSICS, 1983, 79 (05): : 2315 - 2324