Kim Ji Yeop, Lee Sang Ji, Hong Jung Goo
School of Mechanical Engineering, Kyungpook National University, Bukgu, Daegu 41566, Republic of Korea.
ACS Omega. 2022 Aug 2;7(32):28667-28674. doi: 10.1021/acsomega.2c04002. eCollection 2022 Aug 16.
As a method of fluid atomization via application of a high voltage, electrospraying forms more uniform droplets than other spraying modes. This approach involves various spraying modes depending on the applied voltage. Most previous studies on electrospraying focused on the cone jet mode, which has limited applications since the applied voltage has a narrow range. To overcome this limitation, it is necessary to consider alternative spray modes, which require an in-depth understanding of their characteristics. To compare different spray modes, an investigation was conducted based on experimental parameters and fluid properties. In this study, a total of nine modes were identified, and the droplet characteristics in four modes were compared. The maximum deviation of the Sauter mean diameter (SMD) between the spray modes was approximately 1.7 times, and the SMD standard deviation was up to 2.8 times. In addition, the conditions required to realize Coulomb fission and monodisperse distribution depending on the Rayleigh critical charge (RSD < 6.76) were compared and examined.
作为一种通过施加高电压实现流体雾化的方法,电喷雾比其他喷雾模式能形成更均匀的液滴。这种方法根据施加的电压涉及多种喷雾模式。以往大多数关于电喷雾的研究都集中在锥射流模式上,由于施加电压的范围较窄,其应用受到限制。为克服这一限制,有必要考虑其他喷雾模式,这需要深入了解它们的特性。为比较不同的喷雾模式,基于实验参数和流体特性进行了一项研究。在本研究中,共识别出九种模式,并比较了四种模式下的液滴特性。喷雾模式之间索特平均直径(SMD)的最大偏差约为1.7倍,SMD标准偏差高达2.8倍。此外,还比较并研究了根据瑞利临界电荷实现库仑裂变和单分散分布所需的条件(相对标准偏差<6.76)。