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Design and Experiment of Pneumatic Roller Type Seed-Metering Device with Small Particle Size

机译:小粒径气动滚筒式种子计量装置的设计与实验

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This paper is aiming at the problems of air tightness and low seeding performance of the current small-grain seed precision seed-metering device, a pneumatic drum-type small-grain seed precision seed metering device that meets precise seeding and goodseed quality device. Parametric design of the seed-metering device, and establish a dynamic model and kinematic model of the seed-metering device seeding process to determine the combination of basic parameters such as the determined hole diameter sizeand roller diameter of the seed-metering device. The effect of the shape of the perforation hole on the airflow field pressure and gas velocity distribution in the negative pressure cavity of the roller is explored through CFD simulation. The multi-groupcomparative analysis is used to optimize the design of the seed metering device to determine the best shape of the perforation hole. Based on the above-mentioned preferred structure, the roller rotation speed and negative pressure are selected as the influencing factors of the performance of the seed-metering device and orthogonal tests are performed. The regression equations for the effects of seeding qualification rate, miss-seeding rate, and over-seeding rate are established with each influencing factor level code as independent variables. Determine the best combination of parameters.
机译:本文旨在目前小谷物种子精密种子计量装置的气密性和低播种性能的旨在,气动滚筒型小粒子精密种子计量装置,符合精确的播种和良好的质量装置。种子计量装置的参数化设计,建立了种子计量装置播种过程的动态模型和运动学模型,以确定基本参数的组合,例如所确定的孔径大小滚子直径的种子计量装置。通过CFD仿真探索穿孔孔对气流场压和气流分布的气流场压和气体速度分布的影响。多集聚分析用于优化种子计量装置的设计,以确定穿孔孔的最佳形状。基于上述优选的结构,选择辊旋转速度和负压作为种子计量装置的性能的影响因素,并且进行正交试验。作为独立变量的每个影响因子级别代码建立了种子鉴定率,错过播种率和过播速率影响的回归方程。确定参数的最佳组合。

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