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Coaxial jets generated from electrified Taylor cones. Scaling laws

机译:由带电的泰勒锥产生的同轴射流。缩放定律

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An experimental investigation on the electrified co-axial jets of two immiscible liquids issuing from a structured Taylor cone (Science 295 (5560) (2002), 1695) has been carried out. The structure of these almost conical electrified menisci consists of an outer meniscus surrounding an inner one. The liquid threads which issue from the vertex of each one of the menisci give rise to a two-concentric layered jet whose eventual breakup results in an aerosol of relatively monodisperse compound droplets with the outer liquid encapsulating the inner one. The effect of the flow rates of both liquids on the current transported by these coaxial jets and on the size of the compound droplets has been investigated. Several couples of liquids have been used to explore the influence on the spraying process of the properties of the liquids: i.e. the electrical conductivity K, dielectric constant beta, interfacial tension of the liquid couple gamma, viscosity mu, etc. We have found that the measurements of the current emitted through the coaxial jet when they are made dimensionless fit satisfactorily the current scaling law of regular electrosprays. Data of the mean diameter of the compound droplets have been obtained using a non-intrusive laser system. As expected the breakup process and therefore the droplet size are strongly dependent on the liquid viscosities and on the ratio of the liquid flow rates.
机译:对结构化的泰勒锥发出的两种不混溶液体的带电同轴射流进行了实验研究(Science 295(5560)(2002),1695)。这些几乎圆锥形的带电弯月面的结构由围绕内部弯月面的外部弯月面组成。从每个弯月面的顶点发出的液体线会产生两同心分层射流,其最终破裂会导致相对单分散的化合物液滴形成气溶胶,而外部液体则包裹内部液滴。已经研究了两种液体的流速对这些同轴射流传输的电流以及化合物液滴尺寸的影响。已经使用了几对液体来研究液体性质对喷涂过程的影响:即电导率K,介电常数β,液体对γ的界面张力,粘度μ等。我们发现使同轴射流无因次匹配时,测量通过同轴射流发射的电流是否令人满意。使用非侵入式激光系统已经获得了化合物液滴平均直径的数据。如所期望的,破碎过程以及因此的液滴尺寸强烈地取决于液体粘度以及液体流速的比率。

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