粉碎干燥植物纤维材料的实验数据

IF 0.1 Q4 ENGINEERING, MULTIDISCIPLINARY Engineering Technologies and Systems Pub Date : 2021-12-30 DOI:10.15507/2658-4123.031.202104.591-608
S. Braginets, O. Bakhchevnikov, A. S. Alferov
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引用次数: 0

摘要

介绍。开发一种高效的纤维性蔬菜原料研磨方法以避免网格堵塞仍然是一项紧迫的任务。本研究的目的是研究干燥植物纤维物料的研磨过程,并评估设备工作特性对研磨质量和过程能量强度的影响。材料与方法。实验装置为转子研磨机。它的工作主体是交替使用的刀和锤。当锤子在运动时,它的三角形边产生了减压区。研究了刀的运动线速度和原料的进给速度对被磨物料的分级组成、磨机生产率和磨比能的影响。研究发现,当转子刀转速增加时,磨产物的分数组成发生变化。生产所需分数成分产品的最佳刀速范围为55-75米/秒。速度的提高导致生产率的提高,但伴随着比功率强度的增长。在转子转速一定的情况下,原料进给量的增加可以提高磨机的生产率,但只能提高到一定的值。在此之后,由于原料过度填充工作腔和格栅堵塞,生产率下降。对于刀速的每个值,都有一个最佳的进给,以确保最大的生产率。较高的刀速值会导致加工过程的能量强度和原料的过度磨削。因此,刀速的最佳范围为55 - 65m /s。讨论与结论。通过较低的研磨过程能量容量和不存在因将颗粒从待磨植物表面分离而导致的炉排堵塞,可以实现原料的有效研磨。
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Experimental Data of Grinding Dried Fibrous Plant Materials
Introduction. Developing a method for energy-efficient grinding of fibrous vegetable raw materials to avoid the clogging of grids remains an urgent task. The aim of the research is to study the process of grinding dried fibrous plant materials and to estimate the influence of the device operating characteristics on the quality of grinding and the process energy intensity. Materials and Methods. The experimental apparatus is a rotor grinder. Its working bodies are alternate knives and hammers. When a hammer is in motion, its triangle side creates the reduced pressure area. There was studied the influence of the linear velocities of knife motion and of feed of raw materials on fractional composition of the grinded materials, grinder productivity, and grinding specific energy capacity. Results. It is found that the change in the fractional composition of the grinded product occurs when the speed of the rotor knives increases. Optimal range of knife speed for producing the product of the required fractional composition is 55‒75 m/s. The increase in the speed leads to increasing productivity, but is accompanied by the growth of specific power intensity. If the rotor speed is constant, the increase of raw material feed increases the grinder productivity, but only up to a certain value. After that, the productivity decreases because of excessive filling of the working chamber with raw materials and clogging of the grates. For each value of the knife speed, there is an optimal feed that ensures the maximum productivity. High values of knife speed lead to significant energy intensity of the process and overgrinding of raw materials. Therefore, the optimal range of knife speed is 55‒65 m/s. Discussion and Conclusion. Effective grinding of raw materials is achieved through lower energy capacity of grinding process and absence of grate clogs resulted from separating particles from the surface of plants to be grinded.
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来源期刊
Engineering Technologies and Systems
Engineering Technologies and Systems ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
29
审稿时长
12 weeks
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