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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Fine cohesive powders in rotating drums: Transition from rigid-plastic flow to gas-fluidized regime - art. no. 061301
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Fine cohesive powders in rotating drums: Transition from rigid-plastic flow to gas-fluidized regime - art. no. 061301

机译:转鼓中的细粘性粉末:从硬塑料流到气体流态的过渡-艺术。没有。 061301

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摘要

We investigate the dynamics of fine cohesive powders inside rotating drums. We show that these powders may be fluidized due to entrapment of ambient gas, and we determine the onset of fluidization. Experimental measurements on the bed expansion as a function of the rotation velocity have been performed. Drums of different diameters and fine powders of varying cohesiveness have been tested. We show that (i) fine powders transit directly from a rigid-plastic state to a gas-fluidized state in accordance with the flow regime boundaries predicted elsewhere [A. Castellanos , Phys. Rev. Lett. 82, 1156 (1999)], (ii) the onset of fluidization in the rotating drum is determined by the ratio of the powder kinetic energy per unit volume to its tensile strength, and (iii) once the powder is completely fluidized the average interstitial gas velocity increases proportionally to the rotation velocity. The last two results imply that the required velocity to fluidize a powder, omegaR (omega angular velocity, R radius of the drum), must increase as the square root of its tensile strength, and this has been confirmed by independent measurements and estimations. [References: 15]
机译:我们研究了旋转滚筒内部细小的粘性粉末的动力学。我们表明这些粉末可能由于环境气体的截留而被流化,并且我们确定了流化的开始。已经进行了关于床膨胀随转速变化的实验测量。已经测试了不同直径的鼓和不同凝聚力的细粉。我们显示(i)细粉根据其他地方预测的流动状态边界直接从硬塑性状态过渡到气体流态[A. Castellanos,物理学。牧师82,1156(1999)],(ii)旋转滚筒中流态化的开始取决于单位体积粉末动能与其抗张强度的比值;(iii)一旦粉末完全流态化,平均间隙气体速度与旋转速度成正比。最后两个结果表明,流化粉末所需的速度omegaR(ω角速度,滚筒的R半径)必须随其抗拉强度的平方根增加,并且这已经通过独立的测量和估计得到了证实。 [参考:15]

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