首页> 外文期刊>Applied Engineering in Agriculture >PERFORMANCE ASSESSMENT OF A SELF-PROPELLED PADDY GRAIN THRESHER UNDER DIFFERENT THRESHING FUNCTIONAL PARAMETERS
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PERFORMANCE ASSESSMENT OF A SELF-PROPELLED PADDY GRAIN THRESHER UNDER DIFFERENT THRESHING FUNCTIONAL PARAMETERS

机译:不同脱粒功能参数下自走式稻谷绞具的性能评估

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This research was conducted to assess the performance of a self-propelled mini combine harvester, model number 4LZ-0.8 under different threshing functional parameters such as cylinder speed, concave clearance, and feed rate. An indoor experiment was conducted using the mini combine with an axial flow threshing cylinder and tangential feeding of material. These functional parameters were set at 5 levels each. The responses were obtained in terms of threshing percentage, percentage of unthreshed grains and percentage of broken grains. Response values were analyzed using the response surface tool (rstool) in MATLAB. Analysis of variance was done to determine the significant effects of the factor variations on the response values. MATLAB was used to present response surface graphs that were used to describe the variations of the responses as the factors changed from one level to the other. Results showed that with an increase in cylinder speed from 697 to 1202 rpm, the percentage of broken grains increased significantly from 0.0384% to 3.4052%, respectively. At cylinder speeds of 697 and 1202 rpm, the percentage of unthreshed grains increased from 0.1515% to 0.2162%, respectively. Furthermore, an increase in feed rate decreased the threshing percentage. The highest threshing percentage was obtained at an average concave clearance of 27 mm. Furthermore, it was realized that increasing the concave clearance from 18 to 35 mm, equally increased the percentage of unthreshed grains from 0.1478% to 0.3177%. The percentage of grain damage decreased from 3.2758% to 0.0268% with an increase in concave clearance from 18 to 35 mm, respectively. From the results obtained, it was tested and suggested that operating the threshing cylinder at a cylinder speed of 1100 rpm, concave clearance of 27 mm and feed rate of 0.9 kg s(-1) offered the best machine performance. At these suggested values of the operating parameters, the threshing percentage was 99.9801%, the percentage of broken grains was 0.0134%, and the percentage of unthreshed grains was 0.0199%.
机译:进行该研究以评估自行式迷你组合收割机的性能,在不同脱粒功能参数下,诸如汽缸速度,凹入清除和进料速率的不同脱粒功能参数。使用迷你结合进行室内实验,其具有轴向流脱粒缸和材料的切向进料。这些功能参数每个都设定为5级。根据脱粒百分比,未接触的颗粒的百分比和破碎颗粒的百分比获得的反应。使用MATLAB中的响应表面工具(RSTOOL)分析响应值。对方差分析是为了确定因子变异对响应值的显着影响。 Matlab用于呈现用于描述响应变化的响应表面图,因为因子从一个级别变为另一个级别。结果表明,随着697至1202 rpm的汽缸速度的增加,破碎颗粒的百分比分别从0.0384%增加到3.4052%。在697和1202rpm的气缸速度下,显着的晶粒的百分比分别从0.1515%增加到0.2162%。此外,进料速率的增加降低了脱粒百分比。在27mm的平均凹陷间隙下获得最高的脱裂百分比。此外,实现了将凹入间隙从18〜35mm增加,同等地增加了未接触的谷物的百分比,从0.1478%到0.3177%。晶粒损伤的百分比从3.2758%降至0.0268%,分别增加18至35 mm。从获得的结果中,测试并建议在1100rpm的汽缸速度下操作脱粒缸,凹入间隙为27mm,进给速率为0.9kg s(-1),提供了最佳的机器性能。在这些建议的操作参数的值下,脱粒率为99.9801%,破碎颗粒的百分比为0.0134%,未接触的晶粒的百分比为0.0199%。

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