Improving the performance of vibration feeders with an electromagnetic vibration drive and a combined vibration system

Vibration loading devices are widely used in various branches of mechanical engineering to load piece blanks of automatic machines and automatic lines as well as robotic systems, automated systems and flexible automated production. Vibration devices for transportation and loading of miniature, small...

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Main Authors: A. L. Bespalov, I. G. Svidrak, O. O. Boiko
Format: Article
Language:English
Published: Stepan Gzhytskyi National University of Veterinary Medicine and Biotechnologies Lviv 2020-05-01
Series:Науковий вісник Львівського національного університету ветеринарної медицини та біотехнологій імені С.З. Ґжицького. Серія: Харчові технології
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Online Access:https://nvlvet.com.ua/index.php/food/article/view/3932
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spelling doaj-c78ef168be1a4376878cda6d5a4b97802020-11-25T01:49:53ZengStepan Gzhytskyi National University of Veterinary Medicine and Biotechnologies LvivНауковий вісник Львівського національного університету ветеринарної медицини та біотехнологій імені С.З. Ґжицького. Серія: Харчові технології2519-268X2707-58852020-05-012293263010.32718/nvlvet-f93053932Improving the performance of vibration feeders with an electromagnetic vibration drive and a combined vibration systemA. L. Bespalov0I. G. Svidrak1O. O. Boiko2National University “Lviv Polytechnic”, Lviv, UkraineNational University “Lviv Polytechnic”, Lviv, UkraineNational University “Lviv Polytechnic”, Lviv, UkraineVibration loading devices are widely used in various branches of mechanical engineering to load piece blanks of automatic machines and automatic lines as well as robotic systems, automated systems and flexible automated production. Vibration devices for transportation and loading of miniature, small and medium-sized products are the most widely used. Modern designs of vibratory feeders, made according to the classical dynamic scheme and having a two-mass oscillating system, do not fully use the energy of the vibratory exciter to perform useful work. In addition, due to the presence of a heavy reactive mass, they have a fairly large weight. When the vibrating feeder is operating, the energy of the vibration exciter is spent on pumping both the hopper, which performs useful work, and the reactive plate, which performs idle vibrations. Thus, part of the energy of the vibration exciter is not used for performing useful work, but is spent idly. To increase the efficiency of the device, increase its performance and reduce its weight and metal consumption, it is necessary to change the design of the vibratory feeder and some of its elements, which affect the redistribution of the oscillation amplitudes of the working (hopper) and reactive mass of the vibratory feeder. Modern production involves the creation of new models of machines with high technical and economic indicators, therefore, improving the efficiency of existing equipment and the development of new schemes of machines is an important task for designers and manufacturers of technological equipment, as the minimum improvement of its technological and operational performance can lead to a tangible economic effect. To solve this problem we developed a new design vibrating hopper feeder, in which the increase of the horizontal component of the oscillation amplitude of the working element (hopper) is not at the expense of increased power of the vibratory exciter, but due to internal redistribution of energy between the elements of the oscillating system that makes better use of the energy of the vibratory exciter to perform useful work, i.e. to increase the coefficient of useful action. In addition, the weight and metal content of the vibrating feeder structure are simultaneously reduced.https://nvlvet.com.ua/index.php/food/article/view/3932vibrating transportation, performance, vibratory feeder, efficiency, energy redistribution, vibrational system, efficiency factor.
collection DOAJ
language English
format Article
sources DOAJ
author A. L. Bespalov
I. G. Svidrak
O. O. Boiko
spellingShingle A. L. Bespalov
I. G. Svidrak
O. O. Boiko
Improving the performance of vibration feeders with an electromagnetic vibration drive and a combined vibration system
Науковий вісник Львівського національного університету ветеринарної медицини та біотехнологій імені С.З. Ґжицького. Серія: Харчові технології
vibrating transportation, performance, vibratory feeder, efficiency, energy redistribution, vibrational system, efficiency factor.
author_facet A. L. Bespalov
I. G. Svidrak
O. O. Boiko
author_sort A. L. Bespalov
title Improving the performance of vibration feeders with an electromagnetic vibration drive and a combined vibration system
title_short Improving the performance of vibration feeders with an electromagnetic vibration drive and a combined vibration system
title_full Improving the performance of vibration feeders with an electromagnetic vibration drive and a combined vibration system
title_fullStr Improving the performance of vibration feeders with an electromagnetic vibration drive and a combined vibration system
title_full_unstemmed Improving the performance of vibration feeders with an electromagnetic vibration drive and a combined vibration system
title_sort improving the performance of vibration feeders with an electromagnetic vibration drive and a combined vibration system
publisher Stepan Gzhytskyi National University of Veterinary Medicine and Biotechnologies Lviv
series Науковий вісник Львівського національного університету ветеринарної медицини та біотехнологій імені С.З. Ґжицького. Серія: Харчові технології
issn 2519-268X
2707-5885
publishDate 2020-05-01
description Vibration loading devices are widely used in various branches of mechanical engineering to load piece blanks of automatic machines and automatic lines as well as robotic systems, automated systems and flexible automated production. Vibration devices for transportation and loading of miniature, small and medium-sized products are the most widely used. Modern designs of vibratory feeders, made according to the classical dynamic scheme and having a two-mass oscillating system, do not fully use the energy of the vibratory exciter to perform useful work. In addition, due to the presence of a heavy reactive mass, they have a fairly large weight. When the vibrating feeder is operating, the energy of the vibration exciter is spent on pumping both the hopper, which performs useful work, and the reactive plate, which performs idle vibrations. Thus, part of the energy of the vibration exciter is not used for performing useful work, but is spent idly. To increase the efficiency of the device, increase its performance and reduce its weight and metal consumption, it is necessary to change the design of the vibratory feeder and some of its elements, which affect the redistribution of the oscillation amplitudes of the working (hopper) and reactive mass of the vibratory feeder. Modern production involves the creation of new models of machines with high technical and economic indicators, therefore, improving the efficiency of existing equipment and the development of new schemes of machines is an important task for designers and manufacturers of technological equipment, as the minimum improvement of its technological and operational performance can lead to a tangible economic effect. To solve this problem we developed a new design vibrating hopper feeder, in which the increase of the horizontal component of the oscillation amplitude of the working element (hopper) is not at the expense of increased power of the vibratory exciter, but due to internal redistribution of energy between the elements of the oscillating system that makes better use of the energy of the vibratory exciter to perform useful work, i.e. to increase the coefficient of useful action. In addition, the weight and metal content of the vibrating feeder structure are simultaneously reduced.
topic vibrating transportation, performance, vibratory feeder, efficiency, energy redistribution, vibrational system, efficiency factor.
url https://nvlvet.com.ua/index.php/food/article/view/3932
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