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QUALITY OF MECHANICAL SOYBEAN HARVESTING AT TWO TRAVEL SPEEDS

机译:两种行程速度采集机械大豆的质量

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ABSTRACT: Soybean harvesting is the last operation performed in the field and therefore has high added value. Quantitative losses during this process should therefore be minimized to achieve maximum quality and increase the sustainability of the production system. The aim of the present study was to determine and characterize the quantitative losses and operational characteristics of an axial-flow combine harvester, using tools from Statistical Quality Control to determine the quality of the harvesting operation. The experiment was designed in accordance with the assumptions of statistical process control, with a total of 40 sampling points monitored over time. Quality indicators of harvester performance and crop agronomic characteristics were evaluated at two harvester travel speeds (5 and 7 km h -1 ). The stability of the process was confirmed for the variables indicated by the analysis of run charts for the variables engine water temperature at a travel speed of 5 km h -1 ; engine oil pressure, fuel consumption and cutting height at a travel speed of 7 km h -1 ; and losses at both speeds, indicating that these were only affected by natural causes.
机译:摘要:大豆收获是该字段中执行的最后一次操作,因此具有高附加值。因此,应尽量减少在该过程中的定量损失,以实现最大质量并提高生产系统的可持续性。本研究的目的是确定和表征轴流组合收割机的定量损失和操作特性,使用统计质量控制的工具来确定收获操作的质量。该实验是根据统计过程控制的假设设计的,随着时间的推移,总监测了40个采样点。在两个收割机行进速度(5和7公里H -1)中评估收割机性能和作物农业特征的质量指标。确认该过程的稳定性用于通过分析变量发动机水温的运行图表,以5km H -1的行驶速度分析的变量;发动机油压,燃油消耗和切削高度,以7km H H -1;两种速度的损失,表明这些只是受到自然原因的影响。

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    《Engenharia Agrícola》 |2017年第6期|共页
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