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Design and experiment on atomizer parameter of impinging low-speed centrifugal atomization sprayer

机译:撞击低速离心雾化喷雾器雾化器参数的设计与试验

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Atomizers were designed with different atomization parameters to obtain droplets that satisfy optimal particle size requirements for an impinging-type low-speed centrifugal atomizing sprayer. The main factors affecting droplet size are turntable speed, the number of teeth and the tooth shape of the toothed disc. Winner318 software was used to evaluate droplet sizes for different structures and the working parameters of the atomizer. The response surface method and Design-Expert were used to analyze the effect of each factor. The response surface analysis of the effect of structural and working parameters of the atomizer on the interaction between the volume medium diameter of the droplet and the spectral width of the droplet size was used to establish the atomizer droplet Granular spectrum prediction model. Optimal design fitting formulas are obtained, and the droplet sizes required for pesticides to control flying insect pests, to control the growth of reptile larvae, and the use of spraying fungicides to prevent crop damage were determined. This research provides a product not only similar to those in the market, but also the theoretical basis and references for innovation, development, and optimization of centrifugal atomization technology.
机译:雾化器设计有不同的雾化参数,以获得满足撞击式低速离心雾化喷雾器的最佳粒度要求的液滴。影响液滴尺寸的主要因素是转盘速度,齿数和齿形盘的齿形。 Winner318软件用于评估不同结构的液滴尺寸和雾化器的工作参数。响应面方法和设计专家用于分析每个因素的效果。使用雾化器结构和工作参数对液滴的体积介质直径与液滴尺寸的光谱宽度之间的相互作用作用的响应面分析。液体液滴粒度谱预测模型。获得了最佳设计配合公式,并且杀虫剂所需的液滴尺寸控制飞虫害虫,以控制爬行动物幼虫的生长,并确定喷射杀菌剂以防止作物损害的使用。本研究提供了不仅与市场上相似的产品,也提供了对离心雾化技术的创新,开发和优化的理论依据和参考。

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