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Influence of spray additives on droplet evaporation and residual patterns on wax and wax-free surfaces

机译:喷雾添加剂对蜡和无蜡表面液滴蒸发和残留图案的影响

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Evaporation time and wetted area of single droplets sizing from 246 to 886 urn at relative humidity (RH) ranging from 30 to 90% were measured with sequential images under controlled laboratory conditions. Droplets were placed inside an environmental-controlled chamber under a stereoscope and a high definition digital camera. The spray mixtures used to form droplets included different combinations of water, a polymer drift retardant, a surfactant, and two insecticides. The droplet evaporation was investigated on the surfaces of crabapple leaf surfaces, hydrophilic and hydrophobic glass slides, respectively. Adding surfactant into spray mixtures greatly increased droplet wetted area while droplet evaporation time was greatly reduced. For a 343 mu m droplet on the crabapple leaf at 60% RH, the evaporation time decreased from 70 to 50 s and the wetted area increased from 0.366 to 0.890 mm~2 after the surfactant was added into the spray mixture containing water and insecticide. Adding the drift retardant into the spray mixture slightly increased the droplet evaporation time and decreased the droplet coverage area. Also, changing the target surface from the hydrophilic slide to the hydrophobic slide greatly increased the droplet coverage area and reduced the droplet evaporation time. Increasing RH could increase the droplet evaporation time greatly but did not change the coverage area. The droplet evaporation time and coverage area increased exponentially as the droplet size increased.
机译:在相对湿度(RH)的蒸发时间和湿润的单液体尺寸的尺寸为30〜90%的液体,在受控实验室条件下的顺序图像测量。在立体镜和高清晰度数码相机下放置在环境控制室内的液滴。用于形成液滴的喷雾混合物包括不同的水,聚合物漂移剂,表面活性剂和两种杀虫剂组合。研究了Crabapple叶片表面,亲水和疏水玻璃载玻片的表面上的液滴蒸发。将表面活性剂添加到喷雾混合物中大大增加了液滴湿润的区域,同时液滴蒸发时间大大降低。对于343微米上在60%RH的海棠叶液滴蒸发时间为70到50秒降低且润湿面积从0.366增加至0.890毫米〜2后的表面活性剂加入到含有水和杀虫剂喷雾混合物。将漂移阻滞剂添加到喷雾混合物中略微增加液滴蒸发时间并降低液滴覆盖区域。而且,将靶表面从亲水性载玻片改变为疏水性载玻片,大大增加了液滴覆盖区域并降低了液滴蒸发时间。增加RH可以大大增加液滴蒸发时间,但没有改变覆盖范围。随着液滴尺寸的增加,液滴蒸发时间和覆盖区域随着液滴尺寸而增加。

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