Working area protection in foundry shops of machinery production

Introduction. The work objection is the investigation of the industrial safety of the foundry. The task to estimate a disperse composition of dust which determines the microclimate of the foundry working area is being solved. The dependence between the particle size and their motion speed under the...

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Main Authors: Elena I. Golovina, Irina A. Ivanova, Maxim V. Manokhin
Format: Article
Language:Russian
Published: Don State Technical University 2017-06-01
Series:Advanced Engineering Research
Subjects:
Online Access:https://www.vestnik-donstu.ru/jour/article/view/159
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spelling doaj-54b00bb8619741a5be24f5e477f36c542021-10-02T16:20:07ZrusDon State Technical UniversityAdvanced Engineering Research2687-16532017-06-0117214114810.23947/1992-5980-2017-17-2-141-147159Working area protection in foundry shops of machinery productionElena I. Golovina0Irina A. Ivanova1Maxim V. Manokhin2Voronezh State Technical UniversityVoronezh State Technical UniversityVoronezh State Technical UniversityIntroduction. The work objection is the investigation of the industrial safety of the foundry. The task to estimate a disperse composition of dust which determines the microclimate of the foundry working area is being solved. The dependence between the particle size and their motion speed under the gravitational or centrifugal forces is revealed. Materials and Methods. The granulometric composition analysis of a powder dust sample is carried out by the laser diffraction method implemented on the laser particle analyzer Fritsch NanoTec “ANALISETTE 22”. Research Results . The data analysis shows that all phases of the process determine the microclimate of the internal environment and, under the emission dispersion, the medium in the intercase zone. The impact degree depends on the dispersion and chemical composition of dust particles. The other harmful airborne substances deposited on dust particles make it more dangerous. For example, an increase in SiO2 content toughens the requirements for clean air in the working area. Therefore, it is necessary to take into account more rigorous values of maximum permissible concentrations (MPC). Discussion and Conclusions. The most dangerous areas of the foundry production in the eco-risk terms are identified; and proposals on the development of the dust-collecting system with water wash are made. The research results can be used in foundries of the machinery production.https://www.vestnik-donstu.ru/jour/article/view/159рабочая зоналитейное производстводисперсностьпыльконцентрациягранулометрический анализworking areafoundrydispersabilitydustconcentrationsgranulometric composition analysis
collection DOAJ
language Russian
format Article
sources DOAJ
author Elena I. Golovina
Irina A. Ivanova
Maxim V. Manokhin
spellingShingle Elena I. Golovina
Irina A. Ivanova
Maxim V. Manokhin
Working area protection in foundry shops of machinery production
Advanced Engineering Research
рабочая зона
литейное производство
дисперсность
пыль
концентрация
гранулометрический анализ
working area
foundry
dispersability
dust
concentrations
granulometric composition analysis
author_facet Elena I. Golovina
Irina A. Ivanova
Maxim V. Manokhin
author_sort Elena I. Golovina
title Working area protection in foundry shops of machinery production
title_short Working area protection in foundry shops of machinery production
title_full Working area protection in foundry shops of machinery production
title_fullStr Working area protection in foundry shops of machinery production
title_full_unstemmed Working area protection in foundry shops of machinery production
title_sort working area protection in foundry shops of machinery production
publisher Don State Technical University
series Advanced Engineering Research
issn 2687-1653
publishDate 2017-06-01
description Introduction. The work objection is the investigation of the industrial safety of the foundry. The task to estimate a disperse composition of dust which determines the microclimate of the foundry working area is being solved. The dependence between the particle size and their motion speed under the gravitational or centrifugal forces is revealed. Materials and Methods. The granulometric composition analysis of a powder dust sample is carried out by the laser diffraction method implemented on the laser particle analyzer Fritsch NanoTec “ANALISETTE 22”. Research Results . The data analysis shows that all phases of the process determine the microclimate of the internal environment and, under the emission dispersion, the medium in the intercase zone. The impact degree depends on the dispersion and chemical composition of dust particles. The other harmful airborne substances deposited on dust particles make it more dangerous. For example, an increase in SiO2 content toughens the requirements for clean air in the working area. Therefore, it is necessary to take into account more rigorous values of maximum permissible concentrations (MPC). Discussion and Conclusions. The most dangerous areas of the foundry production in the eco-risk terms are identified; and proposals on the development of the dust-collecting system with water wash are made. The research results can be used in foundries of the machinery production.
topic рабочая зона
литейное производство
дисперсность
пыль
концентрация
гранулометрический анализ
working area
foundry
dispersability
dust
concentrations
granulometric composition analysis
url https://www.vestnik-donstu.ru/jour/article/view/159
work_keys_str_mv AT elenaigolovina workingareaprotectioninfoundryshopsofmachineryproduction
AT irinaaivanova workingareaprotectioninfoundryshopsofmachineryproduction
AT maximvmanokhin workingareaprotectioninfoundryshopsofmachineryproduction
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