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Design of air-stream impulse threshing device based on the lawof grain arrangement

机译:基于谷物安排法的空气流脉冲脱粒装置设计

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Maize is the main food in most parts of the world and the third most important cereal grain worldwide, after wheat and rice. The disadvantages in using the traditional method to thresh maize are grain loss, increase of unviable seeds and others. Thispaper therefore used a low damage threshing method which is based on the principles of pre-dispersion and post-threshing to study the working principles of a threshing device. These include beak-like units of a discrete roller and two row air impulse spray nozzle. Two varieties of maize with similar moisture content, Luodan 998 and Denghai 9, were used for the test. The results showed that there was equal distribution of forces between the maize grains, with the grains arranged according to cyclic rulesin the ear. The discrete roller had excellent ability to insert into maize grains, and disperse grains with low damage. Maize variety had little effect on air-stream impulse threshing. However the threshing result was positively correlated with the pressure of the air-stream. Air-stream impulse provided a low damage threshing. The verification test with only air impulse test resulted in zero number of threshed grain. However, the air impulse in combination with the discrete roller had a significant effect on threshing maize ear with low damage rate. The study has provided a new idea on designing maize threshing system with low damage.
机译:玉米是世界上大多数地区的主要食物,以及全球第三大谷物,小麦和米饭。使用传统方法催泪玉米的缺点是颗粒损失,增加的种子和其他种子。此纸纸因此使用了低损坏脱粒方法,该方法基于预分散和脱谷后的原则来研究脱粒装置的工作原理。这些包括离散辊的喙状单元和两个排空气冲击喷嘴。两种具有类似水分含量的玉米,洛丹998和丹海9,用于测试。结果表明,玉米晶体之间的力分布平等,谷物根据循环规则排列耳朵。离散辊具有良好的插入玉米晶粒的能力,以及低损伤的分散颗粒。玉米品种对空气流脉冲脱粒几乎没有影响。然而,脱粒结果与空气流的压力呈正相关。空气流脉冲提供了低损坏阈值。仅具有空气脉冲测试的验证测试导致阈值晶粒数量。然而,与离散辊组合的空气脉冲对损伤玉米耳的损伤率具有显着影响。该研究提供了一个关于设计玉米谷类损伤系统的新想法。

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