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Mathematical Model Describing the Influence of Geometrical Parameters of Multichannel Dies on the Limit Force of Dry Ice Extrusion Process

机译:数学模型描述多通道模具的几何参数对干冰挤出过程极限力的影响

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摘要

The article presents a formulated mathematical model that enables the determination of the required compressive force in the extrusion process of dry ice employing multichannel dies. This is the main parameter in the piston-based dry ice extrusion process. The indicated model was developed for the purpose of further improvement of the energy efficiency of this extrusion process. It allows for the determination of the value of compressive force by accounting for 12 variables related to the geometrical parameters of the die and the physical characteristics of dry ice. Furthermore, the paper also provides descriptions of the empirical study methodologies together with the results. These were carried out in order to determine the difference between the results of mathematical modeling and actual measurement results. The final part of the article presents the results of the analysis of the mathematical model’s sensitivity to the change of the physical characteristics of dry ice. The formulated tool may be employed to adapt the geometric parameters of the die in order to obtain the desired compressive force value and dry ice granulation with reduced energy consumption.
机译:该物品呈现了一种配制的数学模型,其能够确定采用多通道模具的干冰挤出过程中所需的压缩力。这是基于活塞的干冰挤出过程中的主要参数。为了进一步提高该挤出过程的能效,开发了所示的模型。它允许通过占与模具的几何参数有关的12个变量和干冰的物理特性来确定压缩力的值。此外,本文还提供了与结果的实证研究方法的描述。进行这些以确定数学建模和实际测量结果之间的差异。本文的最后一部分介绍了分析数学模型对干冰物理特征变化的敏感性的结果。配方工具可以用于适应模具的几何参数,以便获得具有降低的能量消耗的期望的压缩力值和干冰粒化。

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