首页> 外文期刊>Agricultural Engineering International: CIGR Ejournal >Dynamic performance and ride comfort evaluation of the seat suspension system in a small agricultural tractor to attenuate low-frequency vibration transmission
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Dynamic performance and ride comfort evaluation of the seat suspension system in a small agricultural tractor to attenuate low-frequency vibration transmission

机译:小型农用拖拉机的座椅悬架系统的动态性能和乘坐舒适性评估,可减弱低频振动传递

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To obtain safety and ride-comfort conditions for tractor operators, the tractor seat suspension system was analyzed and modified to attenuate the vibration transmission. Experiments were conducted on a standard test track to investigate the effect of seat vibration on operators using a small 4-wheel tractor, and to develop a suitable seat suspension system following ISO guidelines. Dynamic and ergonomic effects of vibration on operator using conventional seat and the new design were compared ensuing standard test procedures. The supportive observations on ergonomic aspects were also made, viz. the operator heart rate, postural comfort survey, and Cornell ergonomic seating evaluation. The vibration of existing seat in vertical direction had the highest amplitude followed by the lateral and longitudinal components sequentially while the new design could significantly reduce the vertical vibration and performed well within the vibration frequencies between 2 to 8 Hz with variable damping constants 1,177.7, 716.5, 695.5, 334.7 and 69.4 ns m-1, and spring constant of 14,343 N m-1. The operator could be able to work satisfying 8 h fatigue-decreased proficiency limit, whereas the existing seat’s proficiency limit was found slightly below 4 h. Postural comfort and Cornell surveys showed significant improvements in the modified seat transferring it into comfortable zone.
机译:为了获得拖拉机操作员的安全和乘车舒适条件,对拖拉机座椅悬架系统进行了分析和修改,以减弱振动传递。在标准测试跑道上进行了实验,以研究座椅振动对使用小型4轮拖拉机的操作员的影响,并根据ISO指南开发合适的座椅悬架系统。在随后的标准测试程序中,比较了使用传统座椅和新设计的振动对操作员的动态和人体工程学影响。在人体工程学方面也提出了支持性意见,即。操作员心率,姿势舒适度调查和康奈尔人体工学座椅评估。现有座椅在垂直方向上的振动具有最大幅度,其次是横向和纵向分量,而新设计可以显着降低垂直振动,并且在2至8 Hz的振动频率下表现良好,且阻尼常数为1,177.7,716.5, 695.5、334.7和69.4 ns m-1,弹簧常数为14,343 N m-1。操作员可以满足8小时疲劳度降低的熟练度限制,而现有座椅的熟练度限制被发现略低于4小时。姿势舒适度和康奈尔(Cornell)的调查表明,改进后的座椅将其转移到舒适区时有显着改进。

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