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Reloading mechanized tree planting devices fasterudusing a seedling tray carousel

机译:重新加载机械化植树设备的速度更快 ud使用育苗盘转盘

摘要

On Nordic clearcuts, today’s tree planting machines produce high-quality but costly regenerations. Much of this high cost is attributable to the planting machines’ low productivity. One promising way of raising productivity is to lessen the time spent manually reloading seedlings onto the carousels of crane-mounted planting devices. Using MagMat, a carousel test-rig designed by engineering students, we studied how much faster tray-wise seedling reloading is on the Bracke Planter compared to reloading with today’s seedling-wise-loaded carousel. The MagMat test-rig held eight Hiko cultivation trays from which seedlings were deplugged individually and dropped into the planting tube. The time study confirmed that seedling reloading was on average twice as fast with MagMat compared to today’s seedling carousel, thereby increasing assumed planting machine productivity by 8-9% depending on the planting device used. MagMat’s cost-efficiency was analysed to be particularly reliant on its added investment cost, mechanical availability and how quickly trays can be switched automatically. Nevertheless, MagMat’s field performance illustrated the overall potential of tray-wise loading compared to piecewise seedling loading for increasing the productivity of crane-mounted planting devices. Also, deplugging proved to be a reliable method of extracting seedlings from the rigid, copper-painted Hiko cultivation trays even when performed at the excavator’s boom-tip during mounding work. We conclude that, rather than piecewise seedling loading, tray-wise loading combined with deplugging seedlings from suitable cultivation trays is a reliable and much more time-efficient method to feed seedlings on probably any type of tree planting machine.
机译:今天的植树机采用北欧砍伐的方式生产出高质量但昂贵的再生植物。这种高成本的大部分归因于种植机的低生产率。一种提高生产率的有前途的方法是减少手动将幼苗重新装载到吊装式种植设备的转盘上的时间。我们使用了由工程专业学生设计的圆盘传送带试验台MagMat,研究了Bracke Planter上的托盘式秧苗重新装载与今天的按种子轻量的传送带装载相比要快多少。 MagMat试验台上装有八个Hiko栽培盘,从中分别拔出幼苗并滴入种植管中。这项时间研究证实,使用MagMat进行播种的平均速度是当今播种转盘的两倍,从而使假定的播种机生产率提高了8-9%,具体取决于所使用的播种设备。据分析,MagMat的成本效率特别依赖于其增加的投资成本,机械可用性以及托盘自动切换的速度。尽管如此,MagMat的现场性能显示了与逐段苗盘装载相比,逐盘装载的整体潜力,从而提高了吊装式种植设备的生产率。此外,即使在土堆工作期间在挖掘机的动臂末端进行挖土,也证明了从坚固的铜制Hiko栽培盘中拔出幼苗是一种可靠的方法。我们得出的结论是,逐块装载而不是从合适的栽培托盘上拔下幼苗,而不是分批装载幼苗,是一种可靠且省时得多的方法,可以在任何类型的植树机上喂苗。

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