剪切强度对同步转子内混机混合分散影响的数值模拟与实验研究

Kejuan Chen, D. Xu, Dongzhi Zhang
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引用次数: 0

摘要

在橡胶混炼流变理论的基础上,建立了同步转子内混炼过程中不同初始相对位置和条件下的三维剪切流场,并通过提出分散性指标对其剪切强度进行了分析。仿真结果表明,强剪切截面主要集中在机翼顶部与混合室壁面之间以及长翼与短翼之间。分散指数随剪切作用的增加而增加,与转速成正比。不同初始相对位置下,剪切轴向分布规律基本相同,但抗剪强度有所不同。实验结果与仿真结果吻合较好。在初始相对位置不同的两个转子上,炭黑的分散度相差±1级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Simulation and Experimental Study on the Impact of Shear Strength on Mixing Dispersion in Synchronous Rotor Internal Mixer
Three dimensional shear flow field for synchronous rotor under different initial relative positions and conditions was established in mixing process of synchronous rotor internal mixer on the basis of rheological theory of rubber mixing rheological theory, as well the shear strength was analyzed by presenting a dispersive index. The simulation results show that the strong shearing sections are concentrated in the zone between the top of wing and mixing chamber wall and the zone between long wing and short wing. The dispersive index is increased with the shearing action, directly proportional to the rotate speed. The axial distribution law of shearing is foundationally the same under different initial relative positions, but the shearing strength is different for that. The experimental results are fit to the simulation results. The dispersion degrees of carbon black are different by ±1 level for two rotors placed in different initial relative positions.
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