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Structural model and bundling capacity of crawler picking and baling machine for straw wasted in field

机译:储存秸秆涂料拾气机的结构模型及捆绑能力

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Straw after grain harvested scattered in field would cause serious environmental pollution and waste of resources. It is more conducive to the sustainable development of agricultural environment to pick straw and remove straw from field instead of burning it or landfill it directly. In this paper, in order to reduce the labor intensity of manually picking straw, a crawler picking and baling machine was developed and used to test bundling capacity of straw baler. This crawler picking and baling machine can self-walking in field, pick up scattered straw, compress and bale the straw, and finally move it away from the field. Based on the conceptual model of crawler picking and baling machine, its working mechanism and parameter model were analyzed to develop the structural design model. This structural model can improve driving convenience, picking straw efficiency, compress baler density, and remove baler capacity for straw scattered in filed. This structural design model was used to produce physical of crawler picking and baling machine. Results indicated that, the crawler picking and baling machine can be operated smoothly with a continuous picking and baling productivity of 0.61 hm(2)/h. The bundling mean size of baler was high x width x length 36 x 46 x 66 cm with bale density115-126 kg/m(3). The bundle ratio of baling straw in filed was 99%, which was subject to the reliability of the knotter. The structural design model of crawler picking and baling machine was an important technical support to deal with the straw wasted in field.
机译:秸秆收获在田间散落的田间会造成严重的环境污染和资源浪费。更有利于农业环境的可持续发展,拾取稻草,从场中取出稻草,而不是直接烧毁它或填埋。在本文中,为了减少手动采摘秸秆的劳动力强度,开发了一种履带式拾取和打包机并用于测试秸秆打包机的捆扎能力。这款履带式和捆绑机可以自行走在田野中,拿起散射秸秆,压缩和捆绑稻草,最后将其移开。基于履带式拾取器和打包机的概念模型,分析了其工作机制和参数模型,开发了结构设计模型。该结构模型可以提高推动方便,采摘秸秆效率,压缩打包机密度,并去除涂层散落的秸秆的打包机容量。该结构设计模型用于生产履带式拾取器和捆包机的物理。结果表明,履带式拾取器和布敏机可平稳地操作,连续拣选和母线生产率为0.61 hm(2)/ h。捆绑的平均大小的打包机x宽x长36 x 46 x 66厘米,带有捆包密度115-126 kg / m(3)。提交的捆扎秸秆的束比为99%,这受到了knotter的可靠性。履带式拾取器和捆包机的结构设计模型是处理浪费在田间浪费的稻草的重要技术支持。

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