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Factorial significance on tractor stability under variation of terrain roughness employing the Taguchi method

机译:Taguchi方法在地形粗糙度变化下对拖拉机稳定性的决定性意义

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Tractor rollover accidents remain an issue with the development of agricultural mechanization. Adopting the scale-model-based experimental approach, this study investigated the three most influential geometric factors of tractor in various agricultural ground conditions with improved configuration of force sensing system. The initiation of tractor rollover, associated with the tire-ground contact status, was investigated for various front tire types, ballast weights, and rear track widths. Employing the Taguchi method, the ground reaction forces applied to the tractor’s uphill wheels were measured and evaluated using stability indicators. By taking this approach, the effects and statistical significance of the three factors and their interactions were examined under various agricultural ground conditions. Results showed that the ballast weight significantly affected the ground contact status of the uphill front tire. The significance of the front tire type gradually increased as the road roughness increased, but dramatically decreased for an extremely rough road surface. Furthermore, none of the factors or interactions, except the factor of the rear track width for relatively rough roads, was statistically significant. The study revealed that not all commonly discussed factors consistently affect tractor stability. The results of the present study are thus expected to provide a reference explaining how to explore the necessity and feasibility of parameter adjustment before reconfiguring a tractor for higher stability.
机译:拖拉机翻车事故仍然是农业机械化发展的问题。本研究采用基于比例模型的实验方法,通过改进力传感系统的配置,研究了在各种农业地面条件下拖拉机最有影响力的三个几何因素。针对各种前轮胎类型,压载重量和后履带宽度,研究了与轮胎地面接触状态相关的拖拉机侧翻的开始。使用Taguchi方法,测量并应用稳定性指标评估施加在拖拉机上坡轮上的地面反作用力。通过这种方法,在各种农业基础条件下,研究了这三个因素及其相互作用的影响和统计意义。结果表明,压载重量显着影响上坡前轮胎的地面接触状态。前轮胎类型的重要性随着道路粗糙度的增加而逐渐增加,但对于极其崎rough的路面则显着降低。此外,除了相对崎rough的道路的后车道宽度因素外,没有其他因素或相互作用具有统计学意义。研究表明,并非所有通常讨论的因素都会持续影响拖拉机的稳定性。因此,本研究的结果有望为解释如何在重新配置拖拉机以获得更高稳定性之前探索参数调整的必要性和可行性提供参考。

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