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Numerical Analysisof Blending ProcessesofPlastic Bonded Explosivesby Twin Screw Extruder

机译:双螺杆挤出机与塑料炸药共混过程的数值分析

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摘要

In this study, a CFD model has developed to analyze flow pattern and particles behavior for the blending process of PBX by TSE.The mixing efficiency for particles was evaluated in terms of distributive mixing and dispersive mixing.The motion of particles injected to extruder was shown for distributive mixing and Manas-Zloczower mixing index was introduced for dispersive mixing.Dynamic mesh, immersed boundary method, and Discrete Phase Method (DPM) are used for numerical approach to investigate screw rotation situation and particle motion.Six kinds of screw arrays were assumed for the analysis which are differentiated with respect to kneading block array to show the mixing effect and the role of each kneading element.As a result, we confirmed the screw which has each 515R block, 515N block and 515L block is the optimal design for mixing.Also 515N block showed the maximum mixing efficiency for both mixing scheme.The maximum value of cross sectional averaged mixing index was 0.58.For other kneading blocks, 515L block was better than 515R block in terms of distributive mixing but the maximum value of cross sectional averaged mixing index of 515R block was higher than 515L block as0.01.
机译:本研究建立了一个CFD模型,用于分析TSE对PBX混合过程的流型和颗粒行为,通过分布混合和分散混合评估了颗粒的混合效率,并显示了注入到挤出机中的颗粒的运动。用于分布混合,引入了Manas-Zloczower混合指数用于分散混合。采用动态网格,沉浸边界方法和离散相方法(DPM)进行数值方法研究螺杆旋转情况和粒子运动,并假设了六种螺杆阵列通过对捏合块阵列进行差异化分析,以显示混合效果和每个捏合元素的作用。结果,我们确认具有515R块,515N块和515L块的螺杆是混合的最佳设计515N块在两种混合方案中均显示出最大混合效率。横截面平均混合指数的最大值为0.58。在捏合块中,515L块在分布混合方面优于515R块,但515R块的横截面平均混合指数最大值比515L块高0.01。

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