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Some physical phenomena are explained by the principle of least action, such as super-hydrophobic state of the lotus leaf, jumping on water of the water strider, directional motion of the liquid drop and capillary adhesion.

运用最小作用量原理合理地解释了诸如荷叶的超疏水、水黾水面的自由跑跳、液滴的定向运动以及毛细粘附等物理现象。

To understand the effect of structure of riblet surface on properties of wall, the apparent contact angle of riblet surface was measured and drag reducing effect of riblet surface was confirmed by water-tunnel experiment.

为了得到脊状结构对壁面物性的影响,对脊状表面进行了疏水性测试,获得了液滴在脊状表面上的表观接触角,并通过水洞试验验证了脊状表面的减阻效果。

To study the surface hydrophobicity of solid materials with the lattice Boltzmann method , the rough surface is approximately treated with simple periodic rectangular, saw-toothed and semicircular protrusions structure respectively. A two-phase lattice Boltzmann model is used to simulate the changes of surface hydrophobicity by calculating the contact angles of a droplet on rough surfaces.

将固体表面分别近似为具有简单的周期性矩形、三角形和半圆形微粗糙结构表面,建立两相流的晶格玻尔兹曼模型,通过测量不同微粗糙结构表面上液滴的接触角,探讨微结构形状和尺寸的改变对固体材料表面疏水性能的影响。

The mineralization of gold and silver is zoned and closely related to silicification of carbonate and clastic rocks, so siliceous ore dominates in the deposit.

矿化温度主要在300~170 C之间,成矿流体的主要成分为K~-、Na~-、Ca~(2+)、Mg~(2+)、Cl~。金属配合物的分配计算显示,金在成矿热液中主要以疏氢配合物迁移,而银、铁、铅、锌则以氯配合物为主,铁、铅、锌在成矿后期的中性-弱碱性环境下可转变为羟基和硫氢配合物。

According to the fluorescence measurement results from mixed solution, the association constant estimated for thioridazine hydrochloride-BSA binding and the number of the binding site with Scatchard analysis were 1.2×104 L/mol and 0.98, respectively.

将盐酸硫利达嗪与牛血清白蛋白以不同比例混合并在37 ℃下培养,以流动注射透析采样技术从混合液中分离出游离盐酸硫利达嗪,在线氧化为强荧光化合物后测定其浓度;应用Scrathard方程分析所测数据,求得盐酸硫利达嗪和牛血清白蛋白的结合常数为1.2×104 L/mol,结合位点数为0.98;根据热力学参数推断,盐酸硫利达嗪与牛血清白蛋白之间以疏水作用力为主;进一步基于荧光猝灭现象和Fster非辐射能量转移理论,得到盐酸硫利达嗪小分子与牛血清白蛋白之间的能量转移效率( E =0.497)和结合距离( r 0=3.27 nm)。

On the base of the brief description of the drive and control system of micro-fluid and the experimental setting of the technology of micro-injection, a novel process of the hydrophobe treating used to mend the characteristic of the inner and outer surface on micro-pipette is designed, which can improve greatly the injected effect and eliminate the disadvantage such as seepage or regurgitation during injection. The author puts forward the way of measuring the inside diameter of the micropipette. The program of measuring micro injection amount is designed. The original data of the micro injection experiment are explained and interpreted at last in the thesis.

在简要描述微流体驱动控制系统和微注射技术实验条件的基础上,设计了改善微针内外表面特性的疏水化处理工艺,消除了微喷射过程中的渗流、回流现象,改善了微注射过程中的流动特性,提高了微注射效果,得到了数字化微喷射的实验结果;提出了精确测量微针内径的折射率法;设计了纳升级以下的微液滴量的检测方案;最后,论文对微注射技术实验中的原始数据进行了分析。

The result showed that the micro-nano rough structure fulfilled the Wenzel equation. This micro-nano rough structure could be seen by scanning electronic microscope.

结果表明,含氟碳聚丙烯酸酯乳液疏水涂层可产生符合Wenzel方程的微纳米级别的粗糙面。

Equipment has just started work, the air tube through the Y series automatic air unit exhaust emission, low-temperature condensation water to enter the trap, the condensation of water level rise, float up, valve open, the rapid discharge condensate, steam fast access to equipment, equipment, rapid warming, Y series automatic row of air temperature sensing devices, liquid expansion devices automatically turn off the air row.

设备刚启动工作时,管道内的空气经过Y系列自动排空气装置排出,低温凝结水进入疏水阀内,凝结水的液位上升,浮球上升,阀门开启,凝结水迅速排出,蒸汽很快进入设备,设备迅速升温,Y系列自动排空气装置的感温液体膨胀,自动排空气装置关闭。

The active zinc borate, hydrophobic and oleophilic, is prepared, using borax, zinc sulfate, boric acid and fatty acid or its salt as the material and water as the solvent, by controlling the proper reaction temperature, solid-to-liquid ratio, material ratio, reaction time and the addition quantity and time of the fatty acid or its salt and by filtering, drying and pulverizing.

本发明以硼砂、硫酸锌、硼酸和脂肪酸或其盐为原料,以水做溶剂,通过控制适当的反应温度、固液比、物料比、反应时间及脂肪酸或其盐的加入量及加入时间,通过过滤、干燥和粉碎制备出疏水亲油的活性硼酸锌。

Some surface properties of films prepared from these hybrid water dispersions were measured.

初步测定了杂化水分散液成膜后的表面性能,发现它们具有更高的硬度和更好的疏水性能,与成膜过程中硅溶胶在膜表面的富集效应有关。

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