{"title":"Evaluation of vibration reduction isolators for hand transmitted vibration of single-axle tractors","authors":"Hassan A.S., G. N. N., A. B.","doi":"10.5897/ajar2022.16283","DOIUrl":null,"url":null,"abstract":"The walk-behind control of single-axle tractors imposes a great workload on the operators which increases muscular fatigue. Experienced operators were involved during field experiments to investigate and establish the magnitudes of hand-transmitted vibration experienced by single-axle tractor operators with and without vibration reduction isolators during tillage operation. The results indicated that the magnitudes of vibration total values were 5.694 m/s 2 at approximately 1500 rpm on stationary mode, 6.972 and 7.985 m/s 2 at 1.5 and 2.7 km/h respectively during tillage operation. The use of rubber with metallic washers as vibration reduction isolators result in a significant reduction in magnitudes of vibration total values to 3.656 m/s 2 in stationary mode, 4.365 and 4.958 m/s 2 at 1.5 and 2.7 km/h respectively during tillage operation. The National standard TZS 1471 (2018) and ISO 5349-2 (2001) warns that, the exposure to higher magnitudes of vibration presumably carries increased health risk towards vibration-induced disorders and other occupational hazards associated with body fatigue. These call for collaborative efforts among design engineers, researchers, and the research and development organizations to further study the human-machine interaction behaviour of single-axle tractors and human engineering data to ensure human safety, satisfaction of the single-axle tractor operators and ensure safe and healthy working environments.","PeriodicalId":7540,"journal":{"name":"African Journal of Agricultural Research","volume":" ","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2023-07-31","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"African Journal of Agricultural Research","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.5897/ajar2022.16283","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The walk-behind control of single-axle tractors imposes a great workload on the operators which increases muscular fatigue. Experienced operators were involved during field experiments to investigate and establish the magnitudes of hand-transmitted vibration experienced by single-axle tractor operators with and without vibration reduction isolators during tillage operation. The results indicated that the magnitudes of vibration total values were 5.694 m/s 2 at approximately 1500 rpm on stationary mode, 6.972 and 7.985 m/s 2 at 1.5 and 2.7 km/h respectively during tillage operation. The use of rubber with metallic washers as vibration reduction isolators result in a significant reduction in magnitudes of vibration total values to 3.656 m/s 2 in stationary mode, 4.365 and 4.958 m/s 2 at 1.5 and 2.7 km/h respectively during tillage operation. The National standard TZS 1471 (2018) and ISO 5349-2 (2001) warns that, the exposure to higher magnitudes of vibration presumably carries increased health risk towards vibration-induced disorders and other occupational hazards associated with body fatigue. These call for collaborative efforts among design engineers, researchers, and the research and development organizations to further study the human-machine interaction behaviour of single-axle tractors and human engineering data to ensure human safety, satisfaction of the single-axle tractor operators and ensure safe and healthy working environments.
单轴拖拉机的行走控制给操作员带来了巨大的工作量,增加了肌肉疲劳。有经验的操作员参与了现场实验,以调查和确定单轴拖拉机操作员在耕作操作过程中使用和不使用减振器时所经历的手动传递振动的大小。结果表明,在静止模式下,1500转/分左右的振动总量为5.694米/秒2,在1.5和2.7公里/小时时,振动总量分别为6.972和7.985米/秒。使用带金属垫圈的橡胶作为减振器可使振动总量在静止模式下显著降低至3.656 m/s 2,在耕作操作期间,在1.5和2.7 km/h下分别降低至4.365和4.958 m/s 2。国家标准TZS 1471(2018)和ISO 5349-2(2001)警告说,暴露在更高强度的振动中可能会增加振动引起的疾病和其他与身体疲劳相关的职业危害的健康风险。这些要求设计工程师、研究人员和研发组织共同努力,进一步研究单轴拖拉机的人机交互行为和人类工程数据,以确保人类安全和单轴拖拉机操作员的满意度,并确保安全健康的工作环境。