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Research on screening mechanism and parameters optimization of equal thickness screen with variable amplitude based on DEM simulation

机译:基于DEM仿真的可变幅度筛选机理和参数优化研究

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摘要

Screening technology has been widely applied for the classification of granular materials. The equal thickness screen with advantages of high-capacity and effective screening has been widely used in various industries, as a unit operation for separation of particles according to their size. In this work, a novel equal thickness screen was numerically simulated to evaluate its screening mechanism based on EDEM. The velocity of material flow, the variation of layer thickness and the distribution characteristics of particle population on the sieve plate were considered to comparatively analyze the migration regularity of overall feed group under the conditions of equal amplitude and variable amplitude. The influence of various factors including central amplitude (CA), amplitude gradient (AG), ejection angle (beta) and inclination angle (alpha) on screening performance of variable amplitude equal thickness vibrating screening (VAETVS) was studied. Based on Box-Behnken response surface method (BBRSM), the mathematical model of screening efficiency was established. Significance analysis was performed for the effects from both single factors and factor combinations. In addition, parametric majorization and further experimental verification were conducted. The results showed that, compared with equal amplitude vibrating screening (EAVS), the overall speed of granules flow in the process of VAETVS is higher at the feed end and lower at the discharge end, which means that speed of particles decreased gradually along the flow. It can be concluded that both the degree of dispersion and conveying capacity of VAETVS are better. Accordingly, layer thickness on the sieve plate is approximately the same and distribution of coarse and fine particles is more uniform. Therefore, the processing capacity and screening effect of each screen section are better compared to EAVS. There were similar effects from every single factor on the screening performance, and all of them followed the trend of initial increase followed by decrease. The better efficiency 77 was obtained when the CA was 2.65 mm 2.85 mm, AG was 0.1 mm-0.3 mm, beta was 45 degrees-75 degrees, and a was 8 degrees-12 degrees, respectively. The combination factors such as CAxAG, CAx beta, AGx alpha, AGx beta and alpha x beta significantly affected the coal screening performance and the degree of influence of various factors on 77 followed the order: beta alpha AG CA. An actual screening efficiency of 84.01% was achieved when the operating conditions were CA = 2.74 mm, AG = 0.21 mm, alpha = 8.92, and beta = 63.38, indicating a satisfactory screening performance of coal using VAETVS. 2018 Elsevier (C) B.V. All rights reserved.
机译:筛选技术已被广泛应用于粒状材料的分类。具有大容量和有效筛选优点的等厚度已广泛用于各种行业,作为根据其尺寸分离颗粒的单元操作。在这项工作中,数控模拟新颖的等厚屏幕以评估其基于EDEM的筛选机制。认为材料流动的速度,层厚度的变化和筛板上的颗粒群的分布特性被认为是在等幅度和可变幅度的条件下对整个饲料组的迁移规律性进行相对分析。研究了各种因素,包括中心幅度(CA),幅度梯度(Ag),喷射角(β)和倾斜角(α)在筛选振动筛选(VAETV)的筛选性能上的筛选性能的影响。基于Box-Behnken响应曲面法(BBRSM),建立了筛选效率的数学模型。对单一因子和因子组合的影响进行了重要性分析。此外,进行参数化大约和进一步的实验验证。结果表明,与等幅度振动筛选(EAV)相比,VAETV的过程中的颗粒流量的总速度在进料端较高,放电端下降,这意味着颗粒的速度沿流动逐渐降低。可以得出结论,Vaetvs的分散程度和输送能力都更好。因此,筛板上的层厚度大致相同,粗颗粒的分布更均匀。因此,与EAVS相比,每个屏幕部分的处理能力和筛选效果更好。从筛选性能的每一个因素都有类似的影响,并且所有这些因素都遵循初始增加的趋势,然后减少。当Ca为2.65mm 2.85mm时,获得更好的效率77,Ag为0.1mm-0.3mm,β为45度-75度,分别为8摄氏度-12度。诸如CaxAg,Cax Beta,AgXα,Agx Beta和Alpha Xβ的组合因素显着影响了煤炭筛选性能和各种因素的影响程度在77次下方进行:Beta& alpha& ag&加利福尼亚州。当操作条件为Ca = 2.74mm,Ag = 0.21mm,Alpha = 8.92和Beta = 63.38时,实现了84.01%的实际筛选效率,表明使用VAETVS占煤的令人满意的筛选性能。 2018年elestvier(c)b.v.保留所有权利。

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