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1.
微矩形凹槽表面液滴各向异性浸润行为的研究   总被引:1,自引:0,他引:1       下载免费PDF全文
受自然界启发,仿生微结构被广泛用于调控固-液界面的性质.研究显示,液滴在微结构表面的各向异性浸润行为可用于实现微流动方向和速度的控制,且其各向异性浸润与微结构的尺寸和分布等密切相关.本文研究了微矩形凹槽尺寸对液滴各向异性浸润行为的影响规律.结果显示,液滴沿平行沟槽的方向具有较小的运动阻力、易铺展,因此具有较小接触角;而垂直于沟槽方向,由于沟槽的阻隔作用具有较大运动阻力,因而具有较大接触角,并且在垂直方向液滴的浸润过程是三相线一系列钉扎和跳跃行为.在微矩形凹槽表面,液滴沿平行方向接触角θ//与肋板宽度R和凹槽宽度G密切相关,其值与表面固体面积比成反比;而垂直于沟槽方向的接触角θ⊥随肋板宽度R和凹槽宽度G变化基本保持不变.同时各向异性液滴的变形比L/W、特征方向接触角比值θ⊥/θ//与表面固体面积比成正比.研究结果有助于加深理解微结构表面浸润行为的机制,并为微矩形凹槽在微流动控制方向的应用提供技术支持.  相似文献   

2.
采用基于Shan-Chen伪势模型的格子Boltzmann方法,对液滴在存在润湿梯度的倾斜表面上克服重力、自下而上运动的过程进行模拟。探究润湿梯度、液滴尺寸、Bond数以及表面倾斜角度对液滴运动的影响。计算结果表明:液滴在运动过程中,内部会出现沿斜面向上的速度矢量,润湿梯度越大,液滴运动速度越快,润湿长度也越长,且动态接触角减小速率越快。液滴尺寸和Bond数对液滴运动的影响较小,但存在临界Bond数,超过该临界Bond数时,液滴将沿梯度润湿表面向下运动。表面倾角对液滴运动有显著影响,倾角增大,液滴运动速度和润湿长度都明显减小。  相似文献   

3.
液滴在梯度微结构表面上的铺展动力学分析   总被引:1,自引:0,他引:1       下载免费PDF全文
林林  袁儒强  张欣欣  王晓东 《物理学报》2015,64(15):154705-154705
本文通过改变肋柱宽度和间距, 构造了二级和多级梯度微结构表面, 采用格子-Boltzmann方法对液滴在两种梯度表面上的铺展过程进行了研究, 探析液滴运动的机理和调控方法. 结果表明, 在改变肋柱间距的二级梯度表面上, 当液滴处于Cassie态时, 接触角滞后大小与粗糙度梯度成正比关系; 当液滴从Cassie态转换为Wenzel态或介于两者之间的不稳定态时, 这一正比关系不再遵循. 在改变肋柱宽度的二级梯度表面上, 接触角滞后大小与粗糙度梯度始终成正比关系. 在多级梯度表面上, 随液滴初始半径增大, 接触角滞后减小, 但液滴平衡位置相较于初始位置偏离增大. 对梯度微结构表面上液滴运动和接触角滞后的定量分析, 可为实现梯度微结构表面液滴运动调控提供理论依据.  相似文献   

4.
The morphology of magnetic fluid droplets on magnetic thin film dots is studied experimentally, including the aspect ratio and the contact angle variation of the droplets. Under a uniform external magnetic field, the droplet's aspect ratio increases with the external field and with the diameter of the magnetic dot due to the concentrated magnetic flux inside the magnetic fluid droplet. Similar to the electrical wetting phenomenon, the induced magnetic dipoles in the magnetic film and in the magnetic fluid near the solid–liquid interface change the solid–liquid interfacial tension, and in consequence reduce the apparent contact angle of the magnetic fluid droplet.  相似文献   

5.
Static and dynamic wetting behaviors of sessile droplet on smooth, microstructured and micro/nanostructured surface under condensation condition are systematically studied. In contrast to the conventional droplet wetting on such natural materials by dropping, we demonstrate here that when dropwise condensation occurs, the sessile droplet will transit from the Cassie-Baxter wetting state to the Wenzel wetting state or partial Cassie-Baxter wetting state on the microstructured surface or the micro/nanostructured surface, which leads to a strong adhesion between the droplet and the substrate. In contrast, the apparent contact angle and the sliding angle on the smooth surface changes a little before and after the condensation because of small roughness. Theoretical analysis shows that the roughness factor controls the adhesion force of the droplet during condensation, and a theoretical model is constructed which will be helpful for us to understand the relationship between the adhesion force and the geometry of the surface.  相似文献   

6.
亲水性微观粗糙表面润湿状态转变性能研究   总被引:1,自引:0,他引:1       下载免费PDF全文
刘思思  张朝辉  何建国  周杰  尹恒洋 《物理学报》2013,62(20):206201-206201
以亲水性微观粗糙表面上不同几何形貌及分布的微柱阵列为对象, 讨论了液滴在亲水性粗糙表面上的润湿过程以及润湿状态的转变阶段. 从能量角度分别考察了微观粗糙结构几何形貌及分布、微柱几何参数、固体表面亲水性、接触角滞后作用等因素对液滴润湿状态转变的影响规律. 研究发现: 在亲水粗糙表面, 正方形微柱呈正六边形阵列分布时, 液滴更容易形成稳定的Cassie状态, 或者液滴仅发生Cassie状态向中间浸润状态的转变; 与此同时, 减小微柱间距、增大方柱宽度或圆柱直径、增大微柱高度、增强固体表面的亲水性将有利于液滴处于稳定的Cassie状态, 或阻止润湿状态向伪-Wenzel或Wenzel状态转变; 然而, 当液滴处于Cassie状态时, 较小的固-液界面面积分数或减弱固体表面亲水性能均有利于增大液滴的表观接触角, 因此在亲水表面设计粗糙结构时应综合考虑润湿状态稳定性和较大表观接触角两方面因素; 此外, 接触角滞后作用对于液滴状态的稳定性以及疏水性能的实现具有相反作用的影响. 研究结果为液滴在亲水表面获得稳定Cassie状态的粗糙结构设计方法提供了理论依据. 关键词: 亲水表面 微观粗糙结构 表面自由能 润湿状态转变  相似文献   

7.
徐威  兰忠  彭本利  温荣福  马学虎 《物理学报》2015,64(21):216801-216801
微小液滴在不同能量表面上的润湿状态对于准确预测非均相核化速率和揭示界面效应影响液滴增长微观机理具有重要意义. 通过分子动力学模拟, 研究了纳米级液滴在不同能量表面上的铺展过程和润湿形态. 结果表明, 固液界面自由能随固液作用强度增加而增加, 并呈现不同液滴铺展速率和润湿特性. 固液作用强度小于1.6的低能表面呈现疏水特征, 继续增强固液作用强度时表面变为亲水, 而固液作用强度大于3.5的高能表面上液体呈完全润湿特征. 受微尺度条件下非连续、非对称作用力影响, 微液滴气液界面存在明显波动, 呈现与宏观液滴不同的界面特征. 统计意义下, 微小液滴在不同能量表面上铺展后仍可以形成特定接触角, 该接触角随固液作用强度增加而线性减小, 模拟结果与经典润湿理论计算获得的结果呈现相似变化趋势. 模拟结果从分子尺度为核化理论中的毛细假设提供了理论支持, 揭示了液滴气液界面和接触角的波动现象, 为核化速率理论预测结果和实验测定结果之间的差异提供了定性解释.  相似文献   

8.
矩形毛细微槽中三角形区域接触线特性的研究   总被引:1,自引:0,他引:1  
利用CCD和宽视场体视显微镜相结合的技术,拍摄了矩形毛细微槽内液体工质在三角形区域的润湿图像,并进行了图像处理,研究结果表明:随着热流密度的增加,三角形区域内的三相接触线向微槽底角收缩,导致三相接触线的长度减小,液膜厚度减小;随着微槽深度的增加,三角形区域的接触线长度减小;随着微槽宽度和倾斜角度的增加,三角形区域内的接触线长度增加,液膜厚度增加.  相似文献   

9.
接触角滞后现象的理论分析   总被引:21,自引:1,他引:20  
在本文的研究中,考虑表面粗糙的影响,通过引入附加“磨擦力”的概念,分别用力学方法和热力学方法导出固体表面上液滴平衡时接触角应满足的条件;并得到了液滴系统自由能-固液接触面积曲线;分析了前进接触角和后退接触角的物理意义;由此给出了接触角滞后现象的一种合理解释.这对于进一步认识接触角的滞后现象,无疑是有积极意义的.  相似文献   

10.
We present a dynamic van der Waals theory. It is useful to study phase separation when the temperature varies in space. We show that, if heat flow is applied to liquid suspending a gas droplet at zero gravity, a convective flow occurs such that the temperature gradient within the droplet nearly vanishes. As the heat flux is increased, the droplet becomes attached to the heated wall that is wetted by liquid in equilibrium. In one case corresponding to partial wetting by gas, an apparent contact angle can be defined. In the other case with larger heat flux, the droplet completely wets the heated wall expelling liquid.  相似文献   

11.
基于固体边缘效应,对碳化硅(SiC)表面激光加工圆环形沟槽的润湿特性进行实验研究,通过分析去离子水在圆环槽上的润湿性能及其在边缘处的铺展行为,获得了环槽深度与环槽宽度对液滴在边缘处最大表观接触角的影响规律.结果表明,SiC圆环槽阻碍液滴铺展,光滑基体表面上接触角为70°,激光加工圆环槽深度为290μm,宽度为1 mm时,接触角可达138.5°.随槽深的增大,接触角呈现先增大后趋于稳定的趋势,临界槽深为80μm.当槽深小于该极值时,接触角随槽深的增大而线性增大;当槽深大于该极值时,液滴处于稳定钉扎状态,接触角趋于稳定,其稳定值符合Gibbs不等式.环槽宽度存在一临界值40μm.当槽宽低于该值时,液滴接触环槽外缘后越过沟槽继续在平面上铺展;当槽宽大于该值时,接触角趋于稳定,液滴沿边缘铺展.  相似文献   

12.
吴兵兵  吴化平  张征  董晨晨  柴国钟 《物理学报》2015,64(17):176801-176801
自然界中的微纳复合结构超疏水表面由于其独特的润湿性质引起了人们的广泛关注, 大量实验研究表明了仿生人工微纳复合结构表面润湿性能的优越性, 然而液滴在微纳复合结构表面的润湿状态和转型过程的理论研究还并不完善. 本文首先用热力学方法分析了液滴在微纳复合结构表面可能存在的所有状态(四种稳定润湿状态和五种亚稳态到稳定态转型中的过渡态), 推导出了相应的能量表达式及表观接触角方程; 基于最小能量原理, 确定液滴在微纳复合结构表面的稳定状态, 较以往模型相比, 能够更好的预测已有的实验结果; 其次研究了微纳结构尺寸对稳定润湿状态和亚稳态到稳定态转型过程的影响; 最后提出了微纳复合结构表面设计原则, 即确定“超疏水稳定区”尺寸范围, 为超疏水表面的制备提供理论依据.  相似文献   

13.
Quan-Yuan Zeng 《中国物理 B》2022,31(4):46801-046801
The impact of droplets on the liquid film is widely involved in industrial and agricultural fields. In recent years, plenty of works are limited to dry walls or stationary liquid films, and the research of multi-droplet impact dynamic films is not sufficient. Based on this, this paper employs a coupled level set and volume of fluid (CLSVOF) method to numerically simulate two-droplet impingement on a dynamic liquid film. In our work, the dynamic film thickness, horizontal central distance between the droplets, droplets' initial impact speed, and simultaneously the flow velocity of the moving film are analyzed. The evolution phenomenon and mechanism caused by the collision are analyzed in detail. We find that within a certain period of time, the droplet spacing does not affect the peripheral crown height; when the droplet spacing decreases or the initial impact velocity increases, the height of the peripheral crown increases at the beginning, and then, because the crown splashed under Rayleigh-Plateau instability, this results in the reduction of the crown height. At the same time, it is found that when the initial impact velocity increases, the angle between the upstream peripheral jet and the dynamic film becomes larger. The more obvious the horizontal movement characteristics, the more restrained the crown height; the spread length increases with the increase of the dynamic film speed, droplet spacing and the initial impact velocity. When the liquid film is thicker, more fluid enters the crown, due to the crown being unstable, the surface tension is not enough to overcome the weight of the rim at the end of the crown, resulting in droplets falling off.  相似文献   

14.
对倾斜均匀表面上非等径液滴的聚合过程及特性进行了可视化实验研究,获得了液滴半径和表面倾角等参数对液滴聚合过程中液滴液桥半径、接触角和接触线变化特性的影响规律,进一步说明了倾斜表面上液滴聚合可以加快液滴的运动.  相似文献   

15.
The sonoprocessing of droplet spreading during the wetting process of molten aluminum droplets on SiC ceramic substrates at 700 °C is investigated in this paper. When wetting is assisted by a 20 kHz frequency ultrasonic field, the wettability of liquid metal gets enhanced, which has been determined by the variations in thermodynamic energy and wetting kinetics. Wetting kinetic characteristics are divided into two stages according to pinning and depinning states of substrate/droplet contact lines. The droplet is static when the contact line is pinning, while it is forced to move when the contact line is depinning. When analyzing the pinning stage, high-speed photography reveals the evidence of oxide films being rapidly crushed outside the aluminum droplet. In this work, atomic models of spherical Al core being wrapped by alumina shell are tentatively built, whose dioxide microstructures are being transformed from face-centered cubic into liquid at the atomic scale. At the same time, the wetting experiment reveals that the oxide films show changes in the period of sonoprocessing from 3rd to 5th second.During the ultrasonic spreading behavior in the late stage, there is a trend of evident expansion of the base contact area. The entire ultrasonic process lasts for no longer than 10 s. With the aid of ultrasonic sinusoidal waves, the wettability of metal Al gets a rapid improvement. Both molecular dynamic (MD) investigations and the experiments results reveal that the precursor film phenomenon is never found unless wetting is assisted by ultrasonic treatments. However, the precursor film appears near the triple line after using ultrasonics in the droplet wetting process, whose formation is driven by ultrasonic oscillations. Due to the precursor film, the ultrasonic wetting contact angle is lower than the non-ultrasonic contact angle. In addition, the time-variant effective ultrasonic energy has been quantitatively evaluated. The numerical expressions of thermodynamic variables are well verified by former ultrasonic spreading test results, which altogether provide an intrinsic explanation of the fast-decreasing contact angle of Al/SiC.  相似文献   

16.
Molecular dynamics (MD) simulations are carried out to study the interaction between a carbon nanotube (CNT) plate and nano-sized water droplet. The cases with or without a quadrupole term acting on the charge sites of the water molecule, are directly compared. The wettability of the CNT plate with different separation distances is studied, and the contact angle on the plates with various separation distances is measured and analyzed. The simulation indicates that the contribution from quadrupole potential is negligible for wetting between twin CNTs and liquid water, while it is significant for holding a sphere-like water droplet and forming a reasonable contact angle.  相似文献   

17.
利用我国返回式实验卫星在空间微重力条件下进行了GaSb熔滴与GaP,BN和GaAs等材料的润湿性能的研究,分析了熔滴与基片之间的界面相互作用,并与重力场下实验结果进行了对比.实验表明,重力因素对润湿性存在影响,空间微重力条件下测得的GaSb熔滴与GaP及BN基片的接触角比地面测量的大.对凝固后的熔滴与基片之间的组织分析显示,重力场下,液固界面的相互作用较强,存在较宽的过渡区,这与地面浮力对流有利于物质输运密切相关.实验结果还表明,空间微重力环境下熔体凝固的组织比重力场下要均匀. 关键词: 微重力 润湿性 液/固界面  相似文献   

18.
聚二甲基硅氧烷润湿各向异性薄膜   总被引:2,自引:0,他引:2  
利用模板技术制备了聚二甲基硅氧烷光盘沟槽微结构薄膜,采用电子显微镜对材料进行表征并对薄膜的润湿性各向异性进行了研究.结果表明:刻录可以使光盘沟槽加深,利用聚二甲基硅氧烷复制的薄膜表面具有与光盘基本一致的表面微结构,但沟槽深度比原光盘有所降低.平行沟槽方向的接触角大于与垂直沟槽方向的接触角,具有明显的润湿各向异性.  相似文献   

19.
ZnO is an important material that is used in a variety of technologies including optical devices, sensors, and other microsystems. In many of these technologies, wettability is of great concern because of its implications in numerous surface related interactions. In this work, the effects of surface morphology and surface energy on the wetting characteristics of ZnO were investigated. ZnO specimens were prepared in both smooth film and nanowire structure in order to investigate the effects of surface morphology. Also, a hydrophobic octadecyltrichlorosilane (OTS) coating was used to chemically modify the surface energy of the ZnO surface. Wettability of the surfaces was assessed by measuring the water contact angle. The results showed that the water contact angle varied significantly with surface morphology as well as surface energy. OTS coated ZnO nanowire specimen had the highest contact angle of 150°, which corresponded to a superhydrophobic surface. This was a drastic difference from the contact angle of 87° obtained for the smooth ZnO film specimen. In addition to the initial contact angle, the evolution of the water droplet with respect to time was investigated. The wetting state of water droplet was analyzed with both Wenzel and Cassie-Baxter models. Spontaneous and gradual spreading, together with evaporation phenomenon contributed to the changing shape, and hence the varying contact angle, of the water droplet over time.  相似文献   

20.
液态镓在石墨烯表面的润湿性及形貌特征   总被引:1,自引:0,他引:1       下载免费PDF全文
王俊珺  李涛  李雄鹰  李辉 《物理学报》2018,67(14):149601-149601
液态Ga及其合金的熔点低、毒副作用小、导电率高,使得这类液态金属能像石墨烯一样被广泛应用于微流器件、柔性电子器件中,制备这些器件的关键在于有效控制各生产环节中液态金属在固体界面上的润湿性及形貌特征.基于Lennard-Jones(L-J)势函数,利用分子动力学模拟方法研究了金属Ga在石墨烯表面的润湿性,根据模拟结果拟合的L-J势参数能正确描述Ga原子与衬底之间的相互作用并得到了与实验值极为接近的润湿角,发现衬底与液膜间相互作用的微小改变都会对最终润湿形态产生极大影响,平衡态的润湿角和脱离衬底速度随着Ga-C间势能的减小而增大,并成功获得了不同厚度的Ga液膜在石墨烯表面的形态演变规律,极为符合液态Ga的基本特性.利用所得L-J势函数参数模拟了液态Ga在粗糙度相同但纳米柱尖端形貌不同的C材料表面的润湿演变,发现纳米柱尖端形貌对液态Ga的润湿过程及状态影响极大.  相似文献   

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