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Characterization of the granular-to-fluid state process during mixing by power evolution in a planetary concrete mixer

机译:在行星式混凝土搅拌机中通过功率演化对混合过程中的颗粒到流体状态过程进行表征

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摘要

Adding product into the mixer exerts a strong and rapid impact during concrete mixing. Experimental data obtained from a planetary mixer in a full-scale concrete plant under laboratory conditions show that the state of mixture progress with mixing time is well described by the mixing power evolution. More specifically, a reliable method for detecting the time corresponding to the transformation of a mixture from a cohesive granular material into a granular paste (i.e. the so-called "transition time"), through use of a mixing power measurement, will be presented herein. Moreover, once this transition has been achieved, mixing power consumption will be related to mixture rheology and then to mixer geometry by means of a simplified hypothesis. This equation can also be obtained via a dimensionless analysis. Lastly, it will be shown that mixture behavior beyond the transition point is well fitted by a hyperbolic equation. The corresponding mixing power evolution can then be predicted by the level of power at this transition time. These results are suitable for application to online process monitoring. (c) 2008 Elsevier Ltd. All rights reserved.
机译:在混凝土搅拌过程中,将产品添加到搅拌机中会产生强烈而快速的影响。在实验室条件下,从大型混凝土搅拌机中的行星式搅拌机获得的实验数据表明,随着搅拌时间的变化,搅拌的进展状态可以很好地描述搅拌功率的变化。更具体地,将在本文中提出一种可靠的方法,该方法用于通过使用混合功率测量来检测与混合物从粘性粒状材料转变成粒状糊剂的时间相对应的时间(即所谓的“转变时间”)。 。此外,一旦实现了这种过渡,混合功率消耗将与混合物的流变性有关,然后通过简化的假设与混合器的几何形状有关。也可以通过无量纲分析获得该方程式。最后,将表明,双曲线方程很好地拟合了过渡点以外的混合行为。然后可以通过该过渡时间的功率水平来预测相应的混合功率演变。这些结果适用于在线过程监控。 (c)2008 Elsevier Ltd.保留所有权利。

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