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The effect of varying impaction plate temperature on impactor performance: experimental studies

机译:冲击板温度变化对冲击器性能的影响:实验研究

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This study concerns the effct of impaction plate temperature change on impactor performance.The impaction plate was cooled or heated with a thermoelectric module, and the temperature of the impaction plate was monitored by the thermocouple. The size of used particles ranged from 1 to 10 #mu#m. Finally, a collection efficiency curve was obtained by employing a TSI Aerosizer. The results reveal that cooling the impaction plate makes the impactor collection efficiency higher and the re-endtrainment lower. Therefore, cooling gives a more desirable collection efficiency curve. The increased adhesion effect on the impaction plate explains this. Based on the present investigations, cooling the impaction plate enhances impactor performance without using coating materials. A new type of impactor with a thermoelectrically cooled plate is demonstrated to be useful in this experimental study.
机译:本研究涉及冲击板温度变化对冲击器性能的影响。用热电模块对冲击板进行冷却或加热,并通过热电偶监测冲击板的温度。所用颗粒的尺寸为1至10#μm。最后,通过使用TSI Aerosizer获得收集效率曲线。结果表明,冷却冲击板会使冲击器的收集效率更高,而再捕获则更低。因此,冷却给出了更理想的收集效率曲线。这说明了在冲击板上增加的粘附效果。根据目前的研究,在不使用涂层材料的情况下,冷却冲击板可提高冲击器性能。具有热电冷却板的新型冲击器被证明可用于该实验研究。

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