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Weeding performance of a spring-tine harrow as affected by timing and operational parameters

机译:由时序和操作参数影响的春季拖船的杂草性能

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The spring-tine harrow is gaining popularity for mechanical weeding. However, its weeding performance and mechanism have not been well understood. A spring-tine harrow was first tested in a controlled indoor soil bin at four different travel speeds (4, 6, 8, and 10 km h(-1)) with three different spring-loading settings (low, medium, and high). Then the harrow was tested in a wheat (Triticum aestivum L.) field at the same spring-loading settings at three different weeding timings (early, middle, and late) in 2019 and 2020. Soil cutting forces (draft and vertical), soil displacements (forward and lateral), soil working depth, weed control efficacy, weed density, and crop damage were measured. The results showed that the spring-loading setting had a more dominant effect on working depth and soil cutting forces than the speed. The soil displacements were more dependent on the speed compared with the spring-loading setting. Treatment effects on weeding performance indicators in the field were similar across years. Adjusting the spring-loading setting from low to high improved the weeding efficacy from 44.9% to 73.9% in 2019 and from 51.6% to 78.1% in 2020. Consequently, the final weed density was minimized at the high loading setting, with the reduction in 2020 being significant. The middle weeding timing caused the least crop damage, while reducing the final weed density by approximately one-third compared with the control (without mechanical weeding), which was the most desired outcome among the three timings tested.
机译:由于机械除草,春耙越来越受欢迎。然而,人们对其除草性能和除草机理还没有很好的了解。首先在受控室内土壤仓中,以四种不同的行驶速度(4、6、8和10 km h(-1))和三种不同的弹簧载荷设置(低、中、高)对弹簧耙进行了试验。然后,在2019年和2020年的三个不同除草时间(早、中、晚),在相同的春季负荷设置下,在小麦(Triticum aestivum L.)田间对耙子进行了测试。测量了土壤切削力(吃水和垂直)、土壤位移(向前和横向)、土壤工作深度、杂草防治效果、杂草密度和作物损害。结果表明,与速度相比,弹簧加载设置对工作深度和土壤切削力的影响更为显著。与弹簧荷载设置相比,土壤位移更依赖于速度。多年来,处理对田间除草性能指标的影响相似。将弹簧负载设置从低调整到高将除草效率从2019年的44.9%提高到73.9%,并从51.6%提高到2020年的78.1%。因此,最终杂草密度在高负荷设置下最小化,2020年的减少非常显著。中间除草时间对作物造成的损害最小,同时与对照(无机械除草)相比,最终杂草密度降低约三分之一,这是三个试验时间中最理想的结果。

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