Behavioral Patterns of Drop Impingement onto Rigid Substrates with a Wide Range of Wettability and Different Surface Temperatures

被引:29
作者
Li, Xiying [1 ]
Ma, Xuehu [1 ]
Lan, Zhong [1 ]
机构
[1] Dalian Univ Technol, Inst Chem Engn, Dalian 116012, Peoples R China
基金
中国国家自然科学基金;
关键词
droplet impact; lubrication approximation; Marangoni flow; wettability; SELF-ASSEMBLED MONOLAYERS; HEAT-TRANSFER; ADVANCING FRONT; CONTACT-ANGLE; IMPACT; DYNAMICS; MODEL; SOLIDIFICATION; DEPOSITION; WEBER;
D O I
10.1002/aic.11849
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
This article concerns behavioral patterns of droplet impingement onto solid substrates covering a wide range of wettability from hydrophilic to superhydrophobic surfaces heated at different temperatures. For droplet impingement onto partial hydrophobic surfaces (mirror-polished Cu substrate), the maximum heights of receding droplet undergoing a consecutive increment with surface temperature can be explained taking account of Marangoni flow. Also, the relation to predict the increment of droplet heights with surface temperature was manifested in the light of lubrication approximation combined with energy conservation. However, this relation is only valid for droplet impacts onto partial hydrophobic surface, because the recoiling droplet height was observed to be independent of surface temperature for both hydrophilic and superhydrophobic targets. This phenomenon was attributed to inherent wettability accompanying larger contact angle hysteresis for the hydrophilic substrate and to the presence of an adiabatic gas layer between the composite surface and impacting droplet, for the superhydrophobic target. (C) 2009 American Institute of Chemical Engineers AIChe J. 55: 1983-1992, 2009.
引用
收藏
页码:1983 / 1992
页数:10
相关论文
共 51 条
[31]   Direct deposition of silica films using silicon alkoxide solution [J].
Oh, J ;
Imai, H ;
Hirashima, H .
JOURNAL OF NON-CRYSTALLINE SOLIDS, 1998, 241 (2-3) :91-97
[32]   Water spring:: A model for bouncing drops [J].
Okumura, K ;
Chevy, F ;
Richard, D ;
Quéré, D ;
Clanet, C .
EUROPHYSICS LETTERS, 2003, 62 (02) :237-243
[33]   Long-scale evolution of thin liquid films [J].
Oron, A ;
Davis, SH ;
Bankoff, SG .
REVIEWS OF MODERN PHYSICS, 1997, 69 (03) :931-980
[34]   Single drop impaction on a solid surface [J].
Park, H ;
Carr, WW ;
Zhu, JY ;
Morris, JF .
AICHE JOURNAL, 2003, 49 (10) :2461-2471
[35]   Cooling effectiveness of a water drop impinging on a hot surface [J].
Pasandideh-Fard, M ;
Aziz, SD ;
Chandra, S ;
Mostaghimi, J .
INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW, 2001, 22 (02) :201-210
[36]   Capillary effects during droplet impact on a solid surface [J].
PasandidehFard, M ;
Qiao, YM ;
Chandra, S ;
Mostaghimi, J .
PHYSICS OF FLUIDS, 1996, 8 (03) :650-659
[37]   Fabrication of superhydrophobic surfaces by dislocation-selective chemical etching on aluminum, copper, and zinc substrates [J].
Qian, BT ;
Shen, ZQ .
LANGMUIR, 2005, 21 (20) :9007-9009
[38]   Bouncing transitions on microtextured materials [J].
Reyssat, M ;
Pépin, A ;
Marty, F ;
Chen, Y ;
Quéré, D .
EUROPHYSICS LETTERS, 2006, 74 (02) :306-312
[39]   Bouncing water drops [J].
Richard, D ;
Quéré, D .
EUROPHYSICS LETTERS, 2000, 50 (06) :769-775
[40]   Surface phenomena -: Contact time of a bouncing drop [J].
Richard, D ;
Clanet, C ;
Quéré, D .
NATURE, 2002, 417 (6891) :811-811