Theoretical and Applied Mechanics Letters (Jul 2017)

Effect of injection angle, density ratio, and viscosity on droplet formation in a microfluidic T-junction

  • Mohammad Yaghoub Abdollahzadeh Jamalabadi,
  • Mohammadreza DaqiqShirazi,
  • Ali Kosar,
  • Mostafa Safdari Shadloo

Journal volume & issue
Vol. 7, no. 4
pp. 243 – 251

Abstract

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The T-junction microchannel device makes available a sharp edge to form micro-droplets from bio-material solutions. This article investigates the effects of injection angle, flow rate ratio, density ratio, viscosity ratio, contact angle, and slip length in the process of formation of uniform droplets in microfluidic T-junctions. The governing equations were solved by the commercial software. The results show that contact angle, slip length, and injection angles near the perpendicular and parallel conditions have an increasing effect on the diameter of generated droplets, while flow rate, density and viscosity ratios, and other injection angles had a decreasing effect on the diameter. Keywords: Microfluidics, Droplet formation, Flow rate ratio, Density ratio