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A new slurry evaluation technique by using ultrasonic attenuation

机译:利用超声衰减的新型泥浆评估技术

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摘要

The present paper deals with an application of the ultrasonic attenuation technique to evaluate slurry characteristics. Ultrasonic attenuation coefficients were observed for commercial-grade alumina powders with different dispersion/agglomeration conditions controlled by the amount of dispersant added or the pH adjustment. For slurry with relatively low solids content, attenuation increases linearly with an increase in the attenuation distance, suggesting that interaction forces between particles does not play an important role in the attenuation behavior. Experimental results for slurries with high solids content, however, reasonably demonstrated that changes in ultrasonic attenuation should be caused by the interaction forces. A methodological measurement of the amount of attenuation confirms that the ultrasonic attenuation behavior would be mainly affected by the boundary conditions between the particle surface and the surrounding dispersion medium, not by the dynamic conditions at contacts of particles.
机译:本文探讨了超声衰减技术在泥浆特性评估中的应用。对于具有不同分散/附聚条件的工业级氧化铝粉末,观察到超声衰减系数,该条件由添加的分散剂的量或pH值控制。对于固含量相对较低的浆液,衰减随衰减距离的增加而线性增加,这表明颗粒之间的相互作用力在衰减行为中不发挥重要作用。然而,高固含量浆料的实验结果合理地表明,超声波衰减的变化应由相互作用力引起。衰减量的方法学测量证实,超声衰减行为将主要受粒子表面和周围分散介质之间的边界条件的影响,而不是受粒子接触处的动态条件的影响。

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