1.西安交通大学能源与动力工程学院,710049,西安
2.西安热工研究院有限公司,710054,西安
3.北京理工大学机械与车辆学院,100081,北京
收稿:2026-01-22,
修回:2026-05-04,
录用:2026-05-28,
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吴馨, 高铁瑜, 龚建英, 等. 超声波激励下倾斜表面液滴逆重力迁移的润湿特性研究[J/OL]. 西安交通大学学报, 2026.
WU Xin, GAO Tieyu, GONG Jianying, et al. Study on Wetting Properties of Droplets Anti-Gravity Migration on Inclined Surfaces under Ultrasonic Excitation[J/OL]. JOURNAL OF XI’AN JIAOTONG UNIVERSITY, 2026.
为了研究35 kHz超声波激励下液滴在倾斜铝板表面逆重力迁移过程中的动态润湿行为,通过定量分析液滴体积、超声振动速度以及表面倾斜角对液滴直径铺展率及接触角滞后的影响,揭示了超声作用下液滴在倾斜表面逆重力迁移过程中的润湿行为演化规律,建立了液滴微观润湿特性与宏观动力学行为的协同作用关系。进一步基于受力竞争机制构建了包含声学韦伯数和邦德数的综合无量纲数,确立了液滴动力学响应的预测经验关系式。研究结果表明,超声激励可显著增强液滴润湿能力,并驱动液滴在30~90°倾斜表面实现逆重力迁移,其最大位移约为5.04 mm。液滴直径铺展率在超声作用下呈现出“增大-峰值-回缩-稳态”的非线性演变,其最大直径铺展率变化范围为1.16-1.51,且主要受超声振动速度正向调控。此外,超声振动可有效削弱重力诱导的润湿非对称性,推动接触角滞后由重力主导的负值状态向声场主导的正值状态转变,该转变临界值对应的综合无量纲数为18.79。本研究为基于声场的液滴输运与表面润湿调控提供了理论与实验依据。
To investigate the dynamic wetting behavior of droplets during anti-gravity migration on an inclined aluminum plate surface under 35 kHz ultrasonic excitation
the effects of droplet volume
ultrasonic vibration velocity
and surface inclination angle on droplet diameter spreading ratio and contact angle hysteresis were quantitatively analyzed. The evolution of droplet wetting behavior was revealed
and the synergistic relationship between microscopic wetting properties and macroscopic dynamic behavior was established. Furthermore
based on the force competition mechanism
a comprehensive dimensionless number including the acoustic Weber number and the Bond number was constructed
and an empirical relationship for predicting the droplet dynamic response was established. The results show that ultrasonic excitation enhances droplet wetting ability and drives droplets to migrate against gravity on inclined surfaces at angles of 30-90°
with a maximum displacement of approximately 5.04 mm. The droplet diameter spreading ratio exhibits a nonlinear evolution of "increase-peak-retraction-steady" under ultrasonic
with the maximum values ranging from 1.16 to 1.51
primarily positively modulated by vibration velocity. Ultrasonic vibration effectively weakens gravity-induced wetting asymmetry
driving the contact angle hysteresis from a gravity-dominated negative state to an ultrasonic-dominated positive state
and the dimensionless number corresponding to the critical value of this transformation is 18.79. This study provides theoretical and experimental basis for the control of droplet transport and surface wetting based on the ultrasonic field.
刘学 , 赖天伟 , 赵琪 , 强铭琛 , 马斌 , 侯予 , 受限流道沿程参数变化对竖直圆管表面结霜特性影响的实验研究 , 西安交通大学学报 , ( 005) ( 2022 ) 056.
谭海辉 , 陶唐飞 , 徐光华 , 万翔 , 张鑫 , 翅片管式蒸发器超声波除霜理论与技术研究 , 西安交通大学学报 , 49 ( 9) (2015) 9.
褚福强 . 吴晓敏, 陈永根, 疏水表面结霜初期液滴生长的理论分析, 化工学报, 66(S1) ( 2015 ) 60 - 64 .
W. Ling , J. Wu , X. Li , J. Ma , Y. Ding , B. Li , M. Zeng , Numerical prediction of frosting growth characteristics of microchannel louvered fin heat exchanger , Energy , 283 ( 2023 ) 128519 .
P. Vocale , G.L. Morini , M. Spiga , Influence of outdoor air conditions on the air source heat pumps performance , Energy Procedia , 45 ( 2014) 653 - 662 .
L.Y. Yeo , J.R. Friend , Surface acoustic wave microfluidics , Annual review of fluid mechanics , 46 ( 1) (2014) 379 - 406 .
S. Datta , M. Sharma , A.K. Das , Investigation of upward climbing motion of a droplet over an inclined surface using electrowetting , Industrial & Engineering Chemistry Research , 53 ( 16) (2014) 6685 - 6693 .
高安然 , 李铁 , 刘翔 , 焦继伟 , 王跃林 , 基于温度梯度驱动的液滴传输行为研究 , 测试技术学报 , 24 ( 05) (2010) 377 - 380 .
P.P. Seerha , P. Kumar , A.K. Das , S.K. Mitra , Proposition of stair climb of a drop using chemical wettability gradient , Physics of Fluids , 29 ( 7) (2017) .
N.T. Chamakos , G. Karapetsas , A.G. Papathanasiou , How asymmetric surfaces induce directional droplet motion , Colloids and Surfaces A : Physicochemical and Engineering Aspects , 511 ( 2016) 180 - 189 .
Z. Yuan , C. Lu , C. Liu , X. Bai , L. Zhao , S. Feng , Y. Liu , Ultrasonic tweezer for multifunctional droplet manipulation , Science Advances , 9 (16) (2023) eadg2352 .
T. Luo , S. Liu , R. Zhou , C. Zhang , D. Chen , Y. Zhan , Q. Hu , X. He , Y. Xie , Z. Huan , Contactless acoustic tweezer for droplet manipulation on superhydrophobic surfaces , Lab on a Chip , 23 ( 18) (2023) 3989 - 4001 .
P. Brunet , M. Baudoin , O.B. Matar , F. Zoueshtiagh , Droplet displacements and oscillations induced by ultrasonic surface acoustic waves : A quantitative study , PHYSICAL REVIEW E , 81 ( 3) (2010) .
X. Chen , A. Lal , Surface liquid droplet motion on silicon ultrasonic horn actuators , in : Proceedings of 2005 IEEE Ultrasonics Symposium , 2005 , pp. 1032 - 1035 .
M. Sesen , T. Alan , A. Neild , Microfluidic on-demand droplet merging using surface acoustic waves , Lab on a Chip , 14 ( 17) (2014) 3325 - 3333 .
吴馨 , 龚建英 , 靳龙 , 王宇涛 , 黄睿宁 , 超声波激励下铝板表面液滴群输运特性的研究 , 化工学报 , 74 (S 1) (2023) 104 - 112 .
R. Galleguillos-Silva , Y. Vargas-Hernández , L. Gaete-Garretón , Wettability of a surface subjected to high frequency mechanical vibrations , Ultrasonics sonochemistry , 35 ( 2017) 134 - 141 .
J.-J . Guo , X.-P. Chen , L. Shui, Surface wave mechanism for directional motion of droplet on an obliquely vibrated substrate, Physics of Fluids, 32 ( 3 ) (2020) 031701.
M. Trapuzzano , A. Tejada-Martínez , R. Guldiken , N. Crane , Volume and Frequency-Independent Spreading of Droplets Driven by Ultrasonic Surface Vibration , Fluids , 5 ( 1) (2020) 18.
J. Scortesse , J.-F. Manceau , F. Bastien , Displacement of droplets on a vibrating structure , Ultrasonics , 40 ( 1) (2002) 349 - 353 .
T. Fukaya , J. Kondoh , Experimental consideration of droplet manipulation mechanism using surface acoustic wave , Japanese Journal of Applied Physics , 54 ( 7 S 1 ) ( 2015) 07HE06 .
E. De Jong , Y. Wang , J.M. Den Toonder , P.R. Onck , Climbing droplets driven by mechanowetting on transverse waves , Science advances , 5 (6) (2019) eaaw0914 .
P. Sartori , D. Quagliati , S. Varagnolo , M. Pierno , G. Mistura , F. Magaletti , C.M. Casciola , Drop motion induced by vertical vibrations , New Journal of Physics , 17 ( 11) (2015) 113017.
K. Adachi , K. Saiki , H. Sato , T. Ito , Ultrasonic Frost Suppression , Japanese Journal of Applied Physics , 42 ( 2R) (2003) 682.
D. Li , Z. Chen , M. Shi , Effect of ultrasound on frost formation on a cold flat surface in atmospheric air flow , Experimental Thermal and Fluid Science , 34 ( 8) (2010) 1247 - 1252 .
D. Wang , T. Tao , G. Xu , A. Luo , S. Kang , Experimental study on frosting suppression for a finned-tube evaporator using ultrasonic vibration , Experimental Thermal and Fluid Science , 36 ( 2012) 1 - 11 .
M. Amer , C.-C. Wang , Experimental investigation on defrosting of a cold flat plate via ultrasonic vibration under natural convection , Applied Thermal Engineering , 179 ( 2020 ) 115729 .
X. Wu , J. Gong , T. Gao , Y. Wang , R. Huang , J. Hou , Experimental study on dynamic wetting behavior of liquid droplets on the aluminum surfaces excited by ultrasonic waves , Applied Thermal Engineering , 248 ( 2024 ) 123209 .
X. Wu , J. Gong , Z. Jiang , X. Yang , T. Gao , C. Yang , Droplet transport dynamics induced by ultrasonic vibration on horizontal metal surface , Physics of Fluids , 37 ( 7) (2025) .
X. Wu , J. Gong , Y. Wang , X. Li , X. Yang , Motion and rupture properties of droplets on inclined surfaces under ultrasonic excitation , International Journal of Heat and Mass Transfer , 256 ( 2026 ) 128108 .
任政 , 张兴群 , 张蓓乐 , 薛绒 , 陈小砖 , 赖天伟 , 侯予 , - 60℃水平圆管表面结霜特性的实验研究 , 西安交通大学学报, 053 ( 007) (2019) 78 - 83 , 135 .
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