Optimization of angular velocity of drum mixers

Drum mixers ensure a high level of uniformity when mixing the components of feed additives. However, the issues on theoretical and experimental substantiation of the structural and kinematic parameters of drum mixers have not been scientifically explored in detail. The aim of this study is to improv...

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Main Authors: Gennadii Golub, Yaroslav Myhailovych, Oksana Achkevych, Viacheslav Chuba
Format: Article
Language:English
Published: PC Technology Center 2019-06-01
Series:Eastern-European Journal of Enterprise Technologies
Subjects:
Online Access:http://journals.uran.ua/eejet/article/view/166944
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spelling doaj-253174d4adb045e5b3a03e127f74f53d2020-11-25T01:30:11ZengPC Technology CenterEastern-European Journal of Enterprise Technologies1729-37741729-40612019-06-0137 (99)647210.15587/1729-4061.2019.166944166944Optimization of angular velocity of drum mixersGennadii Golub0Yaroslav Myhailovych1Oksana Achkevych2Viacheslav Chuba3National University of Life and Environmental Sciences of Ukraine Heroiv Oborony str., 15, Kyiv, Ukraine, 03041National University of Life and Environmental Sciences of Ukraine Heroiv Oborony str., 15, Kyiv, Ukraine, 03041National University of Life and Environmental Sciences of Ukraine Heroiv Oborony str., 15, Kyiv, Ukraine, 03041National University of Life and Environmental Sciences of Ukraine Heroiv Oborony str., 15, Kyiv, Ukraine, 03041Drum mixers ensure a high level of uniformity when mixing the components of feed additives. However, the issues on theoretical and experimental substantiation of the structural and kinematic parameters of drum mixers have not been scientifically explored in detail. The aim of this study is to improve the efficiency of producing feed mixtures by ensuring the optimal angular rotation velocity of a drum mixer. To determine the radial speed of a particle’s motion along a drum blade, we solved a homogeneous differential equation. The numerical value for angular velocity was determined by a computer simulation method. We experimentally studied the uniformity of redistribution of feed components in a mixture of fodder using the designed experimental drum mixer. The mixer included a chamber, a rectangular frame, a supporting frame, and a drive. The mixing chamber included a loading/unloading window with a closed lid. Radial blades were installed inside the chamber along its entire length and evenly along the perimeter. Experiments were conducted using a drum mixer with a drum radius of 0.17 m, which included radial blades with a width of 25 mm, with a chamber’s fill factor of 0.5. It was established that the drum mixer ensures the maximum scattering of a material’s particles on the surface of the working segment at the drum’s angular rotation velocity of 9.69 rad/s. The results of experimental research have established that at rotation frequency of the laboratory plant’s drum of 9.42 rad/s the uniformity of mixture is 92.5‒93 %, which meets acting zootechnical requirements for all types of mixed fodder. In this case, a maximum deviation of the theoretical and experimental data was about 9 %. The results obtained suggest the possibility of determining a numerical value for the angular velocity of drum mixers by using the proposed method of computer simulation.http://journals.uran.ua/eejet/article/view/166944bladeradial velocityfill factormixing timefeed additivescontrol componentmixturedrum radius
collection DOAJ
language English
format Article
sources DOAJ
author Gennadii Golub
Yaroslav Myhailovych
Oksana Achkevych
Viacheslav Chuba
spellingShingle Gennadii Golub
Yaroslav Myhailovych
Oksana Achkevych
Viacheslav Chuba
Optimization of angular velocity of drum mixers
Eastern-European Journal of Enterprise Technologies
blade
radial velocity
fill factor
mixing time
feed additives
control component
mixture
drum radius
author_facet Gennadii Golub
Yaroslav Myhailovych
Oksana Achkevych
Viacheslav Chuba
author_sort Gennadii Golub
title Optimization of angular velocity of drum mixers
title_short Optimization of angular velocity of drum mixers
title_full Optimization of angular velocity of drum mixers
title_fullStr Optimization of angular velocity of drum mixers
title_full_unstemmed Optimization of angular velocity of drum mixers
title_sort optimization of angular velocity of drum mixers
publisher PC Technology Center
series Eastern-European Journal of Enterprise Technologies
issn 1729-3774
1729-4061
publishDate 2019-06-01
description Drum mixers ensure a high level of uniformity when mixing the components of feed additives. However, the issues on theoretical and experimental substantiation of the structural and kinematic parameters of drum mixers have not been scientifically explored in detail. The aim of this study is to improve the efficiency of producing feed mixtures by ensuring the optimal angular rotation velocity of a drum mixer. To determine the radial speed of a particle’s motion along a drum blade, we solved a homogeneous differential equation. The numerical value for angular velocity was determined by a computer simulation method. We experimentally studied the uniformity of redistribution of feed components in a mixture of fodder using the designed experimental drum mixer. The mixer included a chamber, a rectangular frame, a supporting frame, and a drive. The mixing chamber included a loading/unloading window with a closed lid. Radial blades were installed inside the chamber along its entire length and evenly along the perimeter. Experiments were conducted using a drum mixer with a drum radius of 0.17 m, which included radial blades with a width of 25 mm, with a chamber’s fill factor of 0.5. It was established that the drum mixer ensures the maximum scattering of a material’s particles on the surface of the working segment at the drum’s angular rotation velocity of 9.69 rad/s. The results of experimental research have established that at rotation frequency of the laboratory plant’s drum of 9.42 rad/s the uniformity of mixture is 92.5‒93 %, which meets acting zootechnical requirements for all types of mixed fodder. In this case, a maximum deviation of the theoretical and experimental data was about 9 %. The results obtained suggest the possibility of determining a numerical value for the angular velocity of drum mixers by using the proposed method of computer simulation.
topic blade
radial velocity
fill factor
mixing time
feed additives
control component
mixture
drum radius
url http://journals.uran.ua/eejet/article/view/166944
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