窄行平播种机单沟双行开沟器的设计与试验

IF 0.6 Q4 AGRICULTURAL ENGINEERING
Qichao Li, Jinlong Feng, Xianglan Ming
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引用次数: 2

摘要

为了改进播种机的开沟器及其轻量化结构,设计了一种新型开沟器。分析了单沟双排开沟机的总体结构和工作原理,并对截土刀和导土板的结构参数进行了设计和优化。以弯刀割土的穿透角和导土板的夹角为试验因素,进行了田间试验。以工作阻力、播种变异系数和深度变异系数为试验指标,分析了开沟机的开沟效果。结果表明,就工作阻力而言,弯刀刀刃的穿透角和土壤导板的夹角极为显著,并且就影响程度而言,夹角大于穿透角。就播种变异系数而言,穿透角显著,夹角极显著。关于深度变化系数,渗透角非常显著,导土板的夹角非常显著。通过使用Design Expert 8.0.6进行优化分析,发现当穿透角和夹角分别为50.03°和42.36°时,开启器的性能最佳。工作阻力、播种变异系数和深度变异系数分别为61.47N、6.49%和4.22%。经验证,结果基本一致,播种挖沟性能符合农艺要求。本研究可为开沟技术和开沟机的设计与开发提供依据和技术参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DESIGN AND EXPERIMENT ON THE SINGLE-DITCH AND DOUBLE-ROW OPENER FOR NARROW ROW FLAT SEEDER
In order to improve the opener of the seeder and its lightweight structure, a new type of opener is designed. The overall structure and working principle of a single-ditch double-row opener are analyzed, and the structural parameters of machete cutting soil and the soil guide board are designed and optimized. Using the penetration angle of machete cutting soil and the included angle of the soil guide board as test factors, field experiments were conducted. As the test indexes, the working resistance, the sowing coefficient of variation, and the depth coefficient of variation were used to analyze the effect of the opener. The results showed that in terms of working resistance, the penetration angle of the machete cutting edge and the included angle of the soil guide board were extremely significant, and the included angle was greater than the penetration angle regarding the influence degree. In terms of the sowing coefficient of variation, the penetration angle was significant, and the included angle was extremely significant. Regarding the depth coefficient of variation, the penetration angle was extremely significant, and the included angle of the guide soil board was significant. Based on the optimization analysis by using the Design Expert 8.0.6, it is found that the performance of the opener is optimal when the penetration angle and the included angle are 50.03° and 42.36°, respectively. The working resistance, the sowing coefficient of variation, and the depth coefficient of variation are 61.47N, 6.49% and 4.22%, respectively. After verification, the results are basically consistent, and the seeding and trenching performance meets the agronomic requirements. This study can provide a basis and technical reference for the design and development of the ditching technology and opener.
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来源期刊
INMATEH-Agricultural Engineering
INMATEH-Agricultural Engineering AGRICULTURAL ENGINEERING-
CiteScore
1.30
自引率
57.10%
发文量
98
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