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1)  volume of oil departure
油滴脱离体积
2)  volume of a drop of oil
油滴体积
1.
This paper introduced the improvement measure method for the volume of a drop of oil and area of the oil film in the experiments of roughly measure molecular size by oil film method.
介绍了“用油膜法估测分子的大小”实验中,对油滴体积和油膜面积测量的改进方法。
3)  oil leaching rate
油滴脱除率
1.
In consideration of the velocity distribution of liquid stream and the distribution of grain diameter between plates, a method of calculating oil leaching rate has been offered.
对于斜板隔油池,考虑到板间液流的速度分布和油滴的粒径分布,提出一个油滴脱除率的计算方法,可用于斜板隔油池的设计计算。
4)  drop volume method
滴体积法
1.
The apparatus of drop volume method was made in this paper,accuracy of which was verified according to the literature value.
采用自制的滴体积法实验装置,以蒸馏水的表面张力作为标准,检验了其精确性。
2.
The dynamic surface tensions(DST) of aqueous cetylpyridinium bromide(CPB)solutions at various concentrations was measured, by using the drop volume method.
滴体积法测定了十六烷基溴化吡啶(CPB)水溶液的动态表面张力。
3.
The dynamic surface tensions(DST)of aqueous cetylpyridinium bromide (CPB)solutions at various concentrations and temperatures were measured by the drop volume method,the effect of concentration and temperature on the dynamic surface tension was discussed.
滴体积法测定了十六烷基溴化吡啶溶液的动态表面张力。
5)  droplet volume
熔滴体积
1.
From the viewpoint of transfer of one droplet per pulse and a constant droplet volume,the paper puts forward a control mode in which the peak current and background current are fixed,while peak timeand background time are presetted by the wire feed rate and adjusted by the peak arc voltage.
基于一个脉冲过渡一个熔滴且熔滴体积不变的思想,提出了在峰值电流和基值电流不变的条件下采用送丝速度预置和峰值弧压调节峰值时间与基值时间的控制方式。
6)  Drop Volume
液滴体积
1.
Image processing technology used for drop volume calculation;
图像处理技术用于计算液滴体积
2.
The drop volume testing is based on the changing capacitive with the drop descending.
液滴体积的测量方法是利用液滴增长过程电容的变化来监测液滴体积的变化,从而实现液滴体积的测量。
补充资料:无柄液滴法、躺滴法、座滴法等
分子式:
CAS号:

性质:又称无柄液滴法、躺滴法、座滴法等。根据液面外形求算表(界)面张力的一种方法。当待测液液滴稳定地停在水平固体表面上,其外形与液体表面张力γ有关。根据巴什弗思–亚当斯(Bashforth-Adams)方程可有以下关系式ρ1和ρ2分别为待测液体及液滴外介质的密度,g为重力加速度,β为形状因子,b为大小因子。当液体与固体表面接触角大于90°时可根据测出的液滴的赤道半径及其与液滴顶点的垂直距离数值查表得出相应的β及b值,从而算出表面张力γ。本法简便,适用于吸附平衡时间长的体系和低表面张力的测定;也能用于测定界面张力及熔融金属的表(界)面张力。

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