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Analysis and experiment on cutting performances of high-stubble maize stalks

机译:高茬玉米秸秆减产性能的分析与试验

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In the cold areas of Northeast China, maize high-stubble cutting is a novel stalk conservation tillage method, in which the maize stalks are under a unilaterally-fixed no-support cutting status. Thus, reducing the cutting resistance and power consumption of maize stalks under this status is very significant for development of high-efficiency high-stubble cutting devices. Based on a self-designed testing system that highly restored the maize high-stubble cutting conditions and by means of experimental design and mathematic statistics, the effects of working parameters (blade angle, blade shape, cutting speed and cutting angle) on the maximum cutting resistance and power consumption were studied. By analyzing stress conditions during the stalk cutting process, six mathematic models were built to express the relationships between individual factors and the maximum cutting resistance or cutting power consumption. Through model optimization, the parameter combination for optimal cutting performance of maize stalks under unilaterally-fixed no-support cutting status was obtained: blade angle is 18°, blade shape is isosceles triangle, cutting speed is 9.5 m/s, and cutting angle is 75°. Field validation experiments under this parameter combination showed that the maximum cutting resistance was (55.23±3.50) N (declined by 11.04%), and power consumption was (11.41±1.04) J (declined by 16.65%). The research findings can be a reference for the design and development of maize high-stubble cutting devices. Keywords: cutting performances, blade angle, working parameters, high-stubble, conservation tillage, mechanism analysis, corn DOI: 10.3965/j.ijabe.20171001.2589 Citation: Zhao J L, Huang D Y, Jia H L, Zhuang J, Guo M Z. Analysis and experiment on cutting performances of high-stubble maize stalks. Int J Agric & Biol Eng, 2017; 10(1): 40-52.
机译:在中国东北的寒冷地区,玉米高茬is割是一种新型的秸秆保护性耕作方法,其中玉米秸秆处于单边固定的无支撑cutting割状态。因此,在这种状态下降低玉米秸秆的切割阻力和功耗对于开发高效高茬切割设备非常重要。基于自行设计的测试系统,该系统高度恢复了玉米的高茬切割条件,并通过实验设计和数学统计,工作参数(叶片角度,叶片形状,切割速度和切割角度)对最大切割的影响研究了电阻和功耗。通过分析秸秆切割过程中的应力状况,建立了六个数学模型来表达各个因素与最大切割阻力或切割功率消耗之间的关系。通过模型优化,获得了单侧固定无支撑切割状态下玉米秸秆最佳切割性能的参数组合:叶片角度为18°,叶片形状为等腰三角形,切削速度为9.5 m / s,切削角度为75°。在该参数组合下的现场验证实验表明,最大切削阻力为(55.23±3.50)N(下降11.04%),功耗为(11.41±1.04)J(下降16.65%)。研究成果可为玉米高茬切割机的设计和开发提供参考。关键词:切削性能,刀片角度,工作参数,高茬,保护性耕作,机理分析,玉米DOI:10.3965 / j.ijabe.20171001.2589引文:赵建龙,黄DY,贾家乐,庄杰,郭明哲。分析进行高茬玉米秸秆切割性能的试验。国际农业与生物工程杂志,2017; 10(1):40-52。

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