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首页> 外文期刊>American journal of applied sciences >Determination of Kinetic Parameters of a Super Heavy Chisel Plow Under Various Operating Conditions | Science Publications
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Determination of Kinetic Parameters of a Super Heavy Chisel Plow Under Various Operating Conditions | Science Publications

机译:各种工况下超重型凿犁动力学参数的确定科学出版物

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> Problem statement: Tillage is a process of creating a desirable soil condition for seed germination and growth. The tillage of soil is considered to be one of the biggest farm operations as the tillage operation requires the most energy on the farm. Chisel plow is widely used by farmers as a primary tillage tool. Performance data for chisel plow operation is essential in order to reduce the cost of tillage operation. Approach: Field experiments were conducted using a fully instrumented MS 3090 tractor to measure the draft of a super heavy chisel plow in a sandy soil over wide ranges of plowing depths and forward speeds. The data were measured and recorded using an instrumentation system and data logger. Results: The effects of plowing depth and forward speeds on draft, unit draft, vertical specific draft, horizontal specific draft and coefficient of pull were evaluated. The results indicated that increasing the plowing depth and/or the forward speed increased the draft, unit draft and vertical specific draft. Also, increasing the plowing depth increased the horizontal specific draft and the coefficient of pull, while increasing the forward speed decreased the horizontal specific draft and the coefficient of pull. Conclusion: About 21.8% of the draft force was directed towards cutting the soil and 78.2% was consumed in pulverization of soil particles. The values of the vertical specific draft were much higher than those of the horizontal specific draft for all plowing depths and forward speeds. The plowing depth had more pronounced effect on the draft, unit draft, specific draft and coefficient of pull than the forward speed. The optimum forward speed was 1.75 m sec-1. The recommended plowing depth should be based on the type of crop (depth of the root system).
机译: > 问题陈述:耕作是为种子发芽和生长创造理想土壤条件的过程。土壤耕作被认为是最大的农场经营活动之一,因为耕作操作对农场的能源消耗最大。凿犁被农民广泛用作主要耕作工具。凿犁操作的性能数据对于降低耕作成本至关重要。 方法:使用功能齐全的MS 3090拖拉机进行田间试验,以在宽范围的耕作深度和前进速度下测量沙质土壤中超重凿犁的吃水深度。使用仪器系统和数据记录仪测量并记录数据。 结果:评估了犁深和前进速度对吃水,单位吃水,垂直特定吃水,水平特定吃水和拉力系数的影响。结果表明,增加耕作深度和/或前进速度会增加吃水深度,单位吃水深度和垂直特定吃水深度。同样,增加耕作深度会增加水平比吃水和拉力系数,而增加前进速度会降低水平比吃水和拉力系数。 结论:大约21.8%的吃水力直接用于切割土壤,而78.2%的力被消耗在粉碎土壤颗粒中。对于所有耕作深度和前进速度,垂直特定吃水深度的值都比水平特定吃水深度的值高得多。犁深比前进速度对吃水,吃水,比吃水和拉力系数的影响更大。最佳前进速度为1.75 m sec -1 。推荐的耕作深度应基于农作物的类型(根系深度)。

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