Experimental investigation of nanoparticles distribution mechanisms and deposition patterns during nanofluid droplet evaporation

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Abstract

Droplet evaporation is fascinating, ubiquitous, and relevant for a wide spectrum of applications, such as printing, drug testing, coating, and biomedical diagnosis. In this paper, the effects of substrate temperature (30 °C, 47 °C, 64 °C, 81 °C) and 20 nm Al2O3 nanoparticles mass fraction (0.05%, 0.1%, 0.2%) on the nanoparticles distribution mechanisms and deposition patterns during the evaporation of Al2O3-H2O nanofluid droplet were experimentally investigated. An experimental device was designed and realized. The self-assembly and Marangoni forces were first highlighted and compared. Two coffee-ring and inner-ring patterns were then identified and analyzed. The evaporation process characteristics were finally determined and discussed.

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Liu, B., Wang, S., Chai, L., El Achkar, G., Chen, A., & Theodorakis, P. E. (2020). Experimental investigation of nanoparticles distribution mechanisms and deposition patterns during nanofluid droplet evaporation. EPJ Applied Physics, 92(1). https://doi.org/10.1051/epjap/2020200168

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