Job Stéphane, Santibanez Francisco, Tapia Franco, Melo Francisco
Supmeca, 3 rue Fernand Hainaut 93407 Saint-Ouen, France.
Ultrasonics. 2008 Nov;48(6-7):506-14. doi: 10.1016/j.ultras.2008.03.006. Epub 2008 Mar 16.
A one-dimensional dry granular medium, a chain of beads which interact via the nonlinear Hertz potential, exhibits strongly nonlinear behaviors. When such an alignment further contains some fluid in the interstices between grains, it may exhibit new interesting features. We report some recent experiments, analysis and numerical simulations concerning nonlinear wave propagation in dry and wet chains of spheres. We consider first a monodisperse chain as a reference case. We then analyze how the pulse characteristics are modified in the presence of an interstitial viscous fluid. The fluid not only induces dissipation but also strongly affect the intergrain stiffness: in a wet chain, wave speed is enhanced and pulses are shorter. Simple experiments performed with a single sphere colliding a wall covered by a thin film of fluid confirm these observations. We demonstrate that even a very small amount of fluid can overcome the Hertzian potential and is responsible for a large increase of contact stiffness. Possible mechanisms for wet contact hardening are related to large fluid shear rate during fast elastohydrodynamic collision between grains.
一种一维干颗粒介质,即通过非线性赫兹势相互作用的一串珠子,表现出强烈的非线性行为。当这种排列在颗粒间的间隙中还含有一些流体时,它可能会展现出新的有趣特性。我们报告了一些关于干湿球体链中非线性波传播的近期实验、分析和数值模拟。我们首先将单分散链作为参考案例进行考虑。然后我们分析在存在间隙粘性流体的情况下脉冲特性是如何改变的。这种流体不仅会引起耗散,还会强烈影响颗粒间的刚度:在湿链中,波速会提高,脉冲会更短。用单个球体与覆盖有流体薄膜的壁碰撞进行的简单实验证实了这些观察结果。我们证明,即使是非常少量的流体也能克服赫兹势,并导致接触刚度大幅增加。湿接触硬化的可能机制与颗粒间快速弹性流体动力碰撞过程中的大流体剪切速率有关。