郭 慧, 陈 志, 贾洪雷, 郑铁志, 王 刚, 王 奇. 锥形轮体结构的覆土镇压器设计与试验[J]. 农业工程学报, 2017, 33(12): 56-65. DOI: 10.11975/j.issn.1002-6819.2017.12.008
    引用本文: 郭 慧, 陈 志, 贾洪雷, 郑铁志, 王 刚, 王 奇. 锥形轮体结构的覆土镇压器设计与试验[J]. 农业工程学报, 2017, 33(12): 56-65. DOI: 10.11975/j.issn.1002-6819.2017.12.008
    Guo Hui, Chen Zhi, Jia Honglei, Zheng Tiezhi, Wang Gang, Wang Qi. Design and experiment of soil-covering and soil-compacting device with cone-shaped structure of wheel[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2017, 33(12): 56-65. DOI: 10.11975/j.issn.1002-6819.2017.12.008
    Citation: Guo Hui, Chen Zhi, Jia Honglei, Zheng Tiezhi, Wang Gang, Wang Qi. Design and experiment of soil-covering and soil-compacting device with cone-shaped structure of wheel[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2017, 33(12): 56-65. DOI: 10.11975/j.issn.1002-6819.2017.12.008

    锥形轮体结构的覆土镇压器设计与试验

    Design and experiment of soil-covering and soil-compacting device with cone-shaped structure of wheel

    • 摘要: 为简化机具结构,同时解决传统播种作业过程中覆土及镇压作业稳定性不佳的问题,该文设计了一种兼具覆土和镇压功能的覆土镇压器,该装置由左右2个具有锥形结构的覆土镇压轮组成。通过对覆土镇压作业过程种沟土壤受力情况和运动过程的分析,明确了该装置的覆土和镇压作用机理,及覆土镇压器主要结构参数和作业参数(外径、覆土镇压器宽度、内倾角和载荷)的取值范围,同时确定了影响覆土和镇压性能的3个主要影响因素(外载荷、左右覆土镇压轮间距和内倾角)。通过三因素三水平Box-Benhnken试验,以作业后的覆土厚度和种沟上方距离地表5 cm处土壤紧实度为试验指标,得到了影响土壤紧实度的各因素的主次顺序为:载荷、左右覆土镇压轮间距、内倾角,影响覆土厚度的各因素的主次顺序为:内倾角、载荷、左右覆土镇压轮间距。通过Design-Expert软件获得了覆土镇压器最佳参数组合为:载荷900 N,左右覆土镇压轮间距为13 mm,内倾角为16?。最佳参数组合的验证试验得出,作业后种沟上方距离地表5 cm处土壤紧实度均值为(43.8?1.9) kPa,变异系数为4.3%;覆土厚度均值为(32.9?2.3) mm,变异系数为6.9%。满足既定的设计目标,且具有较好的作业稳定性,该研究可为播种机覆土镇压器的设计提供参考。

       

      Abstract: Abstract: The soil-covering and press wheel are the main parts of the corn planter, and their performances are directly related to the growth and the output of the corn. The device with the functions of soil covering and soil compaction can improve the soil moisture content after planting and simplify the structure of machine. The squeeze-type coverer is a typical device with the functions of soil covering and soil compaction. But due to that the contact area is too small to bring the poor stability of soil-covering and soil-compacting during work process, the squeeze-type coverer is often used on no-till planter. A new type of soil-covering and soil-compacting device for corn planter was designed in this paper. The device was composed of 2 soil-covering-pressing wheels with cone-shaped structure, and realized the functions of soil-covering and soil-compacting depending on the extrusion force of soil produced by soil-covering-pressing wheel during planting. The main structure parameters of the soil-covering and soil-compacting device were determined through theoretical analysis and experiment of double-disk opener, which were mean diameter of 350 mm, width of the horizontal part of single soil-covering-pressing wheel of 20 mm, width of the inclined surface of single cover-press wheel of 70 mm, and the value range of horizontal interval of left and right soil-covering-pressing wheel of less than 29 mm. The leaning angle of soil-covering-pressing wheel was determined through theoretical analysis of soil-covering process based on the shape of soil furrows, which meant the leaning angle was about less than 20°. Based on the agronomic requirement of soil-compacting, the range of external load was about 609-790 N. Through analyzing, it was found that the external load, the horizontal interval between left and right soil-covering-pressing wheel and the leaning angle were the main influencing factors on the functions of soil-covering and soil-compacting of the device. Taking the 3 indices as the experimental factors using Design-Expert software, the Box-Benhnken experiments of 3 factors and 3 levels were conducted, and the results showed that the order of the influence of the factors on the soil compactness in the top 5 cm soil layer of the seed furrow from high to low was the external load, the horizontal interval between left and right soil-covering-pressing wheel and the leaning angle. The order of the influence of the factors on thickness of covering soil was the leaning angle, the load and the horizontal interval between left and right soil-covering-pressing wheel. The optimal parameter combination of the device was the external load of 900 N, the horizontal interval between left and right soil-covering-pressing wheel of 13 mm and the leaning angle of 16°. Verification testing indicated that the soil compactness in the top 5 cm soil layer of the seed furrow was (43.8±1.9) kPa, the coefficient of variation was 4.3%, and the thickness of covering soil was (32.9±2.3) mm with the coefficient of variation of 6.9%. The soil-covering and soil-compacting device designed in this paper has good performance of soil-covering, soil-compacting and working stability. This study can provide a reference for the design of planters.

       

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