Occupational vibration in tractor as affected by internal pressure of tires and rolling surface

Detalhes bibliográficos
Autor(a) principal: Viviane Castro dos Santos
Data de Publicação: 2016
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Biblioteca Digital de Teses e Dissertações da UFC
Texto Completo: http://www.teses.ufc.br/tde_busca/arquivo.php?codArquivo=17096
Resumo: The globalized world appreciates the market competition between big companies, having no difference at all when it comes to the agricultural environment, because in order to acquire more customers, the tractor manufacturers tend to invest in technology to increase the machineâs efficiency. These improvements are required and aim to increase production, reduce production costs and to adapt the machines to their users, in order to have more quality within the work. Several factors can influence the machine operation quality, especially noise, temperature and vibration which may directly affect welfare. The present study aimed to evaluate the whole operator body exposure to vibration as well as his hands and arms on a tractor on the following conditions, three different tire air pressure, two different forward speeds and two different shooting surfaces. The experiment was conducted in the experimental area of the Agricultural Machinery Accident Investigation Laboratory belonging to the Department of Agricultural Engineering of the Federal University of CearÃ. The tractor utilized was a 4x2 tractor with auxiliary front wheel drive, Valtra brand, model BM 125i, year 2011 with a power of 91.9 kW (125 HP), maximum speed of 2,300 rotation per minute, equipped with radial tires. The experimental design was a completely randomized factorial 2 x 2 x 3 with two rolling surfaces (uncovered soil and soil covered with (Panicum maximum CV. Mombasa)), two forward speeds (4.3 km. h-1 and 6.4 km h-1), and three different tire air pressure (10, 14 and 18 lbs.pol-2) for the front tires and (12, 16 and 20 lbs.pol-2 ) for the rear tires. The experiment was conducted in accordance with the guidelines determined by the Brazilian operational hygiene standard number 09 and number 10 as well as the international ISO standard 5008, annex A. For the data evaluation, the statistical program ASSISTAT version 7.7 beta was utilized, checked for normality through the symmetry value and kurtosis analysis and consequently subjected to a variance analysis by F test, having the means compared by the Tukey test at 5% significance level. The vibration levels increased due to the increase in speed and the internal air pressure in tires and decreased with the use of the soil covering material. The best working condition was found in the following conditions, operations with soil covering material, at a speed of 4.3 km.h-1, using the tire air pressure at minimum (10 lbs.pol-2 on the front tires and 12 lbs.pol-2 on the rear tires).
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spelling info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/masterThesisOccupational vibration in tractor as affected by internal pressure of tires and rolling surfaceVibraÃÃo ocupacional em trator 4x2 tda em funÃÃo da pressÃo interna dos pneus e da superfÃcie de rolamento 2016-02-16Leonardo de Almeida Monteiro04628612790http://lattes.cnpq.br/1662973235328717Josà Wally MendonÃa Menezes41581679300Daniel Albiero18819883848http://lattes.cnpq.br/412156677372140003514721343 http://lattes.cnpq.br/1578529478604983Viviane Castro dos SantosUniversidade Federal do CearÃPrograma de PÃs-GraduaÃÃo em Engenharia AgrÃcolaUFCBRErgonomia VibraÃÃes de corpo inteiro VibraÃÃes de mÃos e braÃosErgonomics Whole-body vibration Hand-arm vibrationENGENHARIA AGRICOLAThe globalized world appreciates the market competition between big companies, having no difference at all when it comes to the agricultural environment, because in order to acquire more customers, the tractor manufacturers tend to invest in technology to increase the machineâs efficiency. These improvements are required and aim to increase production, reduce production costs and to adapt the machines to their users, in order to have more quality within the work. Several factors can influence the machine operation quality, especially noise, temperature and vibration which may directly affect welfare. The present study aimed to evaluate the whole operator body exposure to vibration as well as his hands and arms on a tractor on the following conditions, three different tire air pressure, two different forward speeds and two different shooting surfaces. The experiment was conducted in the experimental area of the Agricultural Machinery Accident Investigation Laboratory belonging to the Department of Agricultural Engineering of the Federal University of CearÃ. The tractor utilized was a 4x2 tractor with auxiliary front wheel drive, Valtra brand, model BM 125i, year 2011 with a power of 91.9 kW (125 HP), maximum speed of 2,300 rotation per minute, equipped with radial tires. The experimental design was a completely randomized factorial 2 x 2 x 3 with two rolling surfaces (uncovered soil and soil covered with (Panicum maximum CV. Mombasa)), two forward speeds (4.3 km. h-1 and 6.4 km h-1), and three different tire air pressure (10, 14 and 18 lbs.pol-2) for the front tires and (12, 16 and 20 lbs.pol-2 ) for the rear tires. The experiment was conducted in accordance with the guidelines determined by the Brazilian operational hygiene standard number 09 and number 10 as well as the international ISO standard 5008, annex A. For the data evaluation, the statistical program ASSISTAT version 7.7 beta was utilized, checked for normality through the symmetry value and kurtosis analysis and consequently subjected to a variance analysis by F test, having the means compared by the Tukey test at 5% significance level. The vibration levels increased due to the increase in speed and the internal air pressure in tires and decreased with the use of the soil covering material. The best working condition was found in the following conditions, operations with soil covering material, at a speed of 4.3 km.h-1, using the tire air pressure at minimum (10 lbs.pol-2 on the front tires and 12 lbs.pol-2 on the rear tires).O mundo globalizado preza pela concorrÃncia no mercado de grandes empresas e isso nÃo à diferente no meio agrÃcola, para adquirir cada vez mais clientes os fabricantes de trator tendem a investir em tecnologia para aumentar a eficiÃncia de suas mÃquinas. Essas melhorias sÃo necessÃrias nos tratores atuais e visam o aumento da produÃÃo, reduÃÃo de custos de produÃÃo e adequaÃÃo ao usuÃrio para que o mesmo possa desempenhar o trabalho com qualidade. VÃrios fatores podem influenciar na qualidade de operaÃÃo desempenhada pelo operador, principalmente fatores como, ruÃdo, temperatura, vibraÃÃo que interferem diretamente no seu bem estar. O objetivo do trabalho foi avaliar a exposiÃÃo do operador Ãs vibraÃÃes de corpo inteiro e mÃos e braÃos em um trator agrÃcola em funÃÃo da utilizaÃÃo de trÃs pressÃes internas de ar nos pneus, duas velocidades de deslocamento e duas superfÃcies de rolamento. O experimento foi realizado na Ãrea experimental do LaboratÃrio de InvestigaÃÃo de Acidentes com MÃquinas AgrÃcolas, pertencente ao Departamento de Engenharia AgrÃcola da Universidade Federal do CearÃ. O trator utilizado foi um trator 4x2 com traÃÃo dianteira auxiliar (TDA) da marca Valtra modelo BM 125i, ano 2011 com potÃncia do motor de 91,9 kW (125 cv), rotaÃÃo mÃxima de 2300 rpm, equipado com pneus radiais. O delineamento experimental foi inteiramente casualizado, em esquema fatorial 2 x 2 x 3, sendo duas superfÃcies de rolamento dos pneus (solo solto e solo com (Panicum maximum cv. MombaÃa) cobertura vegetal), duas velocidades de deslocamento (4,3 km.h-1 e 6,4 km.h-1), e trÃs pressÃes internas nos pneus, sendo (10, 14 e 18 lb.pol-2) para os pneus dianteiros e (12, 16 e 20 lb.pol-2) para os pneus traseiros. O experimento foi realizado de acordo com as diretrizes determinadas pela NHO â 09, NHO â 10 e o anexo A da norma NBR ISO 5008. Para avaliaÃÃo dos dados foi utilizado o programa estatÃstico ASSISTAT versÃo 7.7 beta, onde atravÃs dos valores de simetria e curtose foi verificada a normalidade e entÃo submetidos à anÃlise de variÃncia pelo teste F, e quando significativas, as mÃdias foram comparadas pelo teste de Tukey, a 5% de significÃncia. Os nÃveis de vibraÃÃes aumentaram em funÃÃo do aumento da velocidade e da pressÃo interna de ar nos pneus e diminuÃram com o uso de material de cobertura no solo. A melhor condiÃÃo de trabalho encontrada foi realizar as operaÃÃes com material de cobertura sobre o solo, na velocidade de 4,3 km.h-1 na pressÃo interna de ar nos pneus mÃnima (10 lb.pol-2 nos rodados dianteiros e 12 lb.pol-2 nos rodados traseiros).Conselho Nacional de Desenvolvimento CientÃfico e TecnolÃgicohttp://www.teses.ufc.br/tde_busca/arquivo.php?codArquivo=17096application/pdfinfo:eu-repo/semantics/openAccessporreponame:Biblioteca Digital de Teses e Dissertações da UFCinstname:Universidade Federal do Cearáinstacron:UFC2019-01-21T11:30:29Zmail@mail.com -
dc.title.en.fl_str_mv Occupational vibration in tractor as affected by internal pressure of tires and rolling surface
dc.title.alternative.pt.fl_str_mv VibraÃÃo ocupacional em trator 4x2 tda em funÃÃo da pressÃo interna dos pneus e da superfÃcie de rolamento
title Occupational vibration in tractor as affected by internal pressure of tires and rolling surface
spellingShingle Occupational vibration in tractor as affected by internal pressure of tires and rolling surface
Viviane Castro dos Santos
Ergonomia
VibraÃÃes de corpo inteiro
VibraÃÃes de mÃos e braÃos
Ergonomics
Whole-body vibration
Hand-arm vibration
ENGENHARIA AGRICOLA
title_short Occupational vibration in tractor as affected by internal pressure of tires and rolling surface
title_full Occupational vibration in tractor as affected by internal pressure of tires and rolling surface
title_fullStr Occupational vibration in tractor as affected by internal pressure of tires and rolling surface
title_full_unstemmed Occupational vibration in tractor as affected by internal pressure of tires and rolling surface
title_sort Occupational vibration in tractor as affected by internal pressure of tires and rolling surface
author Viviane Castro dos Santos
author_facet Viviane Castro dos Santos
author_role author
dc.contributor.advisor1.fl_str_mv Leonardo de Almeida Monteiro
dc.contributor.advisor1ID.fl_str_mv 04628612790
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/1662973235328717
dc.contributor.referee1.fl_str_mv Josà Wally MendonÃa Menezes
dc.contributor.referee1ID.fl_str_mv 41581679300
dc.contributor.referee2.fl_str_mv Daniel Albiero
dc.contributor.referee2ID.fl_str_mv 18819883848
dc.contributor.referee2Lattes.fl_str_mv http://lattes.cnpq.br/4121566773721400
dc.contributor.authorID.fl_str_mv 03514721343
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/1578529478604983
dc.contributor.author.fl_str_mv Viviane Castro dos Santos
contributor_str_mv Leonardo de Almeida Monteiro
Josà Wally MendonÃa Menezes
Daniel Albiero
dc.subject.por.fl_str_mv Ergonomia
VibraÃÃes de corpo inteiro
VibraÃÃes de mÃos e braÃos
topic Ergonomia
VibraÃÃes de corpo inteiro
VibraÃÃes de mÃos e braÃos
Ergonomics
Whole-body vibration
Hand-arm vibration
ENGENHARIA AGRICOLA
dc.subject.eng.fl_str_mv Ergonomics
Whole-body vibration
Hand-arm vibration
dc.subject.cnpq.fl_str_mv ENGENHARIA AGRICOLA
dc.description.sponsorship.fl_txt_mv Conselho Nacional de Desenvolvimento CientÃfico e TecnolÃgico
dc.description.abstract.por.fl_txt_mv The globalized world appreciates the market competition between big companies, having no difference at all when it comes to the agricultural environment, because in order to acquire more customers, the tractor manufacturers tend to invest in technology to increase the machineâs efficiency. These improvements are required and aim to increase production, reduce production costs and to adapt the machines to their users, in order to have more quality within the work. Several factors can influence the machine operation quality, especially noise, temperature and vibration which may directly affect welfare. The present study aimed to evaluate the whole operator body exposure to vibration as well as his hands and arms on a tractor on the following conditions, three different tire air pressure, two different forward speeds and two different shooting surfaces. The experiment was conducted in the experimental area of the Agricultural Machinery Accident Investigation Laboratory belonging to the Department of Agricultural Engineering of the Federal University of CearÃ. The tractor utilized was a 4x2 tractor with auxiliary front wheel drive, Valtra brand, model BM 125i, year 2011 with a power of 91.9 kW (125 HP), maximum speed of 2,300 rotation per minute, equipped with radial tires. The experimental design was a completely randomized factorial 2 x 2 x 3 with two rolling surfaces (uncovered soil and soil covered with (Panicum maximum CV. Mombasa)), two forward speeds (4.3 km. h-1 and 6.4 km h-1), and three different tire air pressure (10, 14 and 18 lbs.pol-2) for the front tires and (12, 16 and 20 lbs.pol-2 ) for the rear tires. The experiment was conducted in accordance with the guidelines determined by the Brazilian operational hygiene standard number 09 and number 10 as well as the international ISO standard 5008, annex A. For the data evaluation, the statistical program ASSISTAT version 7.7 beta was utilized, checked for normality through the symmetry value and kurtosis analysis and consequently subjected to a variance analysis by F test, having the means compared by the Tukey test at 5% significance level. The vibration levels increased due to the increase in speed and the internal air pressure in tires and decreased with the use of the soil covering material. The best working condition was found in the following conditions, operations with soil covering material, at a speed of 4.3 km.h-1, using the tire air pressure at minimum (10 lbs.pol-2 on the front tires and 12 lbs.pol-2 on the rear tires).
O mundo globalizado preza pela concorrÃncia no mercado de grandes empresas e isso nÃo à diferente no meio agrÃcola, para adquirir cada vez mais clientes os fabricantes de trator tendem a investir em tecnologia para aumentar a eficiÃncia de suas mÃquinas. Essas melhorias sÃo necessÃrias nos tratores atuais e visam o aumento da produÃÃo, reduÃÃo de custos de produÃÃo e adequaÃÃo ao usuÃrio para que o mesmo possa desempenhar o trabalho com qualidade. VÃrios fatores podem influenciar na qualidade de operaÃÃo desempenhada pelo operador, principalmente fatores como, ruÃdo, temperatura, vibraÃÃo que interferem diretamente no seu bem estar. O objetivo do trabalho foi avaliar a exposiÃÃo do operador Ãs vibraÃÃes de corpo inteiro e mÃos e braÃos em um trator agrÃcola em funÃÃo da utilizaÃÃo de trÃs pressÃes internas de ar nos pneus, duas velocidades de deslocamento e duas superfÃcies de rolamento. O experimento foi realizado na Ãrea experimental do LaboratÃrio de InvestigaÃÃo de Acidentes com MÃquinas AgrÃcolas, pertencente ao Departamento de Engenharia AgrÃcola da Universidade Federal do CearÃ. O trator utilizado foi um trator 4x2 com traÃÃo dianteira auxiliar (TDA) da marca Valtra modelo BM 125i, ano 2011 com potÃncia do motor de 91,9 kW (125 cv), rotaÃÃo mÃxima de 2300 rpm, equipado com pneus radiais. O delineamento experimental foi inteiramente casualizado, em esquema fatorial 2 x 2 x 3, sendo duas superfÃcies de rolamento dos pneus (solo solto e solo com (Panicum maximum cv. MombaÃa) cobertura vegetal), duas velocidades de deslocamento (4,3 km.h-1 e 6,4 km.h-1), e trÃs pressÃes internas nos pneus, sendo (10, 14 e 18 lb.pol-2) para os pneus dianteiros e (12, 16 e 20 lb.pol-2) para os pneus traseiros. O experimento foi realizado de acordo com as diretrizes determinadas pela NHO â 09, NHO â 10 e o anexo A da norma NBR ISO 5008. Para avaliaÃÃo dos dados foi utilizado o programa estatÃstico ASSISTAT versÃo 7.7 beta, onde atravÃs dos valores de simetria e curtose foi verificada a normalidade e entÃo submetidos à anÃlise de variÃncia pelo teste F, e quando significativas, as mÃdias foram comparadas pelo teste de Tukey, a 5% de significÃncia. Os nÃveis de vibraÃÃes aumentaram em funÃÃo do aumento da velocidade e da pressÃo interna de ar nos pneus e diminuÃram com o uso de material de cobertura no solo. A melhor condiÃÃo de trabalho encontrada foi realizar as operaÃÃes com material de cobertura sobre o solo, na velocidade de 4,3 km.h-1 na pressÃo interna de ar nos pneus mÃnima (10 lb.pol-2 nos rodados dianteiros e 12 lb.pol-2 nos rodados traseiros).
description The globalized world appreciates the market competition between big companies, having no difference at all when it comes to the agricultural environment, because in order to acquire more customers, the tractor manufacturers tend to invest in technology to increase the machineâs efficiency. These improvements are required and aim to increase production, reduce production costs and to adapt the machines to their users, in order to have more quality within the work. Several factors can influence the machine operation quality, especially noise, temperature and vibration which may directly affect welfare. The present study aimed to evaluate the whole operator body exposure to vibration as well as his hands and arms on a tractor on the following conditions, three different tire air pressure, two different forward speeds and two different shooting surfaces. The experiment was conducted in the experimental area of the Agricultural Machinery Accident Investigation Laboratory belonging to the Department of Agricultural Engineering of the Federal University of CearÃ. The tractor utilized was a 4x2 tractor with auxiliary front wheel drive, Valtra brand, model BM 125i, year 2011 with a power of 91.9 kW (125 HP), maximum speed of 2,300 rotation per minute, equipped with radial tires. The experimental design was a completely randomized factorial 2 x 2 x 3 with two rolling surfaces (uncovered soil and soil covered with (Panicum maximum CV. Mombasa)), two forward speeds (4.3 km. h-1 and 6.4 km h-1), and three different tire air pressure (10, 14 and 18 lbs.pol-2) for the front tires and (12, 16 and 20 lbs.pol-2 ) for the rear tires. The experiment was conducted in accordance with the guidelines determined by the Brazilian operational hygiene standard number 09 and number 10 as well as the international ISO standard 5008, annex A. For the data evaluation, the statistical program ASSISTAT version 7.7 beta was utilized, checked for normality through the symmetry value and kurtosis analysis and consequently subjected to a variance analysis by F test, having the means compared by the Tukey test at 5% significance level. The vibration levels increased due to the increase in speed and the internal air pressure in tires and decreased with the use of the soil covering material. The best working condition was found in the following conditions, operations with soil covering material, at a speed of 4.3 km.h-1, using the tire air pressure at minimum (10 lbs.pol-2 on the front tires and 12 lbs.pol-2 on the rear tires).
publishDate 2016
dc.date.issued.fl_str_mv 2016-02-16
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dc.publisher.country.fl_str_mv BR
publisher.none.fl_str_mv Universidade Federal do CearÃ
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