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On the Successful Encapsulation of Water Droplets into Oil Droplets
Chen XD(陈晓东); Sun YN; Xue CD; Yu YD; Hu GQ(胡国庆)
Source PublicationProcedia Engineering
2015
Volume126Pages:725-729
ISSN1877-7058
AbstractCompound water-in-oil microdroplets can serve as microreactors in chemical and biological analyses. The inkjet printing is a useful technique to generate compound microdroplets by droplet impact. To understand the underlying physics during the droplet impact, a combined experimental and numerical study is carried out. The effect of spreading condition, impact velocity, and oil viscosity are investigated. The balance of the tripe-line among the three interfaces dominates primarily the stable morphology of the compound droplet. Reducing oil viscosity can reduce the required impact velocity. High impact velocity is necessary to reduce the side-slipping of the water droplet.
KeywordDroplet Impact Inkjet Printing Microdroplet Spreading Triple-line
DOI10.1016/j.proeng.2015.11.279
Indexed ByEI ; CPCI
Language英语
WOS IDWOS:000380496600141
DepartmentLNM微纳米流体力学
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Document Type期刊论文
Identifierhttp://dspace.imech.ac.cn/handle/311007/59406
Collection非线性力学国家重点实验室
Recommended Citation
GB/T 7714
Chen XD,Sun YN,Xue CD,et al. On the Successful Encapsulation of Water Droplets into Oil Droplets[J]. Procedia Engineering,2015,126:725-729.
APA Chen XD,Sun YN,Xue CD,Yu YD,&Hu GQ.(2015).On the Successful Encapsulation of Water Droplets into Oil Droplets.Procedia Engineering,126,725-729.
MLA Chen XD,et al."On the Successful Encapsulation of Water Droplets into Oil Droplets".Procedia Engineering 126(2015):725-729.
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