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Variability Among Electronic Cigarettes in the Pressure Drop, Airflow Rate, and Aerosol Production

机译:电子烟之间的压降,气流速率和气溶胶产量之间的差异

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This study investigated the performance of electronic cigarettes (e-cigarettes), compared different models within a brand, compared identical copies of the same model within a brand, and examined performance using different protocols. Airflow rate required to generate aerosol, pressure drop across e-cigarettes, and aerosol density were examined using three different protocols. First 10 puff protocol: The airflow rate required to produce aerosol and aerosol density varied among brands, while pressure drop varied among brands and between the same model within a brand. Total air hole area correlated with pressure drop for some brands. Smoke-out protocol: E-cigarettes within a brand generally performed similarly when puffed to exhaustion; however, there was considerable variation between brands in pressure drop, airflow rate required to produce aerosol, and the total number of puffs produced. With this protocol, aerosol density varied significantly between puffs and gradually declined. Consecutive trial protocol: Two copies of one model were subjected to 11 puffs in three consecutive trials with breaks between trials. One copy performed similarly in each trial, while the second copy of the same model produced little aerosol during the third trial. The different performance properties of the two units were attributed to the atomizers. There was significant variability between and within brands in the airflow rate required to produce aerosol, pressure drop, length of time cartridges lasted, and production of aerosol. Variation in performance properties within brands suggests a need for better quality control during e-cigarette manufacture.
机译:这项研究调查了电子烟(电子烟)的性能,比较了品牌内的不同型号,比较了品牌内相同型号的相同副本,并使用了不同的协议检查了性能。使用三种不同的方案检查了产生气溶胶所需的气流速率,电子烟上的压降以及气溶胶密度。前10次抽吸法:产生气雾剂和气溶胶密度所需的气流速率在品牌之间有所不同,而压降在品牌之间以及品牌内相同型号之间却有所不同。对于某些品牌,总气孔面积与压降相关。抽烟方案:品牌内的电子烟在用尽时通常表现出相似的效果;但是,品牌之间的压降,生产气雾剂所需的空气流速以及生产的粉扑总数之间存在很大差异。有了这个协议,粉扑之间的气溶胶密度变化很大,并逐渐下降。连续试验方案:在三个连续试验中,将一个模型的两个副本进行11次抽吸,试验之间会间隔。在每个试验中,一个拷贝的表现相似,而在第三次试验中,相同模型的第二个拷贝几乎没有产生气溶胶。这两个单元的不同性能特性归因于雾化器。在品牌之间和品牌内部和内部,产生气雾剂所需的空气流速,压降,持续使用时间长短以及产生气雾剂的差异都很大。品牌内性能特性的变化表明,在电子烟制造过程中需要更好的质量控制。

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