Design of Roll-over Protection Structure for an Orchard Sprayer
Tae-Gyoung Kang, Chai-Sik Lee, Hyeon-Jong Jun, Duck-Kyu Choi, Suk-Ho Park, Hyeok-Ju Kim, Tae-Hwan Kang
Abstract
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Tae-Gyoung Kang, Chai-Sik Lee, Hyeon-Jong Jun, Duck-Kyu Choi, Suk-Ho Park, Hyeok-Ju Kim, Tae-Hwan Kang
Abstract
Open-access reader
Damage to agricultural production caused by insects and diseases affects farming yields. The orchard sprayer is mainly used in the country to protect the fruit in a large area, with less effort and at minimum cost. The excellent performance of the air blast spray increases the fruit protection. Chemical application in orchards has been accomplished by the orchard sprayers with air assist nozzles and a axial fan in Korea. However, the orchard sprayers without ROPS resulted in severe injury or death when operators drive the sprayers improperly on hilly orchard or farming road. This study was to develop a ROPS for the orchard sprayers improving farmer's safety. In this study, the accident case was used in analysing the design and building TOP structure of the orchard sprayer. The maximum impact, body torsion frame structures including the driver's protection are also analysed for adherence to safety regulations. The ROPS safety regulations according to the strength test results were established.
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Damage to agricultural production caused by insects and diseases affects farming yields. The orchard sprayer is mainly used in the country to protect the fruit in a large area, with less effort and at minimum cost. The excellent performance of the air blast spray increases the fruit protection. Chemical application in orchards has been accomplished by the orchard sprayers with air assist nozzles and a axial fan in Korea. However, the orchard sprayers without ROPS resulted in severe injury or death when operators drive the sprayers improperly on hilly orchard or farming road. This study was to develop a ROPS for the orchard sprayers improving farmer's safety. In this study, the accident case was used in analysing the design and building TOP structure of the orchard sprayer. The maximum impact, body torsion frame structures including the driver's protection are also analysed for adherence to safety regulations. The ROPS safety regulations according to the strength test results were established.
Key concepts: Sprayer, Orchard, Agricultural engineering, Environmental science, Agricultural machinery, Agriculture, Engineering, Toxicology