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Ultrasonic Dispersion of Agglomerated Particles in Metal Melt

机译:金属熔体中附聚颗粒的超声波分散

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摘要

This work considers the deagglomeration and wettability of particles by metal melt and proposes a mechanism of particle agglomerate dispersion by ultrasonic cavitation. The main dependences connecting the processing time and intensity with the physical and chemical properties of particles and the melt as well as acoustic parameters are obtained. For the first time found that melt during ultrasonic treatment, inclusive the particles agglomerates proportional to melt viscosity and the size of the agglomerates. It has been established that time ultrasonic treatment melt containing the particles agglomerates is proportional to melt viscosity and the size of the agglomerates. The required time for successful melt infiltration in the agglomerates, wettability and their introduction into the melt takes ten minutes. The suggested equation allows estimating the intensity of ultrasonic radiation, required to destroy the agglomerates of particles in the melt. It was found that intensity of the ultrasound must be inversely proportional to the radius of the agglomerates. The theoretical results are confirmed by comparing with experimental dates.
机译:这项工作考虑了金属熔体的颗粒的直接和润湿性,并提出了通过超声波空化的颗粒聚集分散体的机制。获得连接处理时间和强度与颗粒的物理和化学性质以及熔体以及声学参数的主要依赖性。首次发现在超声处理期间熔化,包括与熔融粘度成比例的颗粒聚集物与附聚物的尺寸成比例。已经确定,含有颗粒附聚物的时间超声处理熔体与熔体粘度和附聚物的尺寸成比例。成功熔融渗透在附聚物,润湿性及其引入中的所需时间需要10分钟。建议的等式允许估计超声辐​​射的强度,以破坏熔体中的颗粒的附聚物。发现超声的强度必须与附聚物的半径成反比。通过与实验日期进行比较确认理论结果。

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