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New drop weight analysis for surface tension determination of liquids

机译:用于确定液体表面张力的新型液滴重量分析

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摘要

The validity of the existing drop weight analyses for determining surface tension could be influenced by the liquid properties. This study aimed to verify the validity of the Harkins-Brown correction factors and the Bond number correlation, as well as to develop a new drop weight analysis that is insensitive to liquid properties. The liquid samples of known surface tension and viscosity were chosen and classified into six different groups. Validation was done by comparing the data compiled in this study with the existing correlations as well as by dimensionless analysis. Results show that the existing drop weight analyses are valid for most liquid groups provided I hat the surface tension number (N-gamma) exceeds 10(-1) or the Ohnersorge number (Oh) is below 10(2). This, however, confirms the influence of liquid properties on the validity of the analyses. The LCP coefficient method was developed to eliminate this problem by using the drop weight results generated from multiple tips of different sizes. The surface tension could then be calculated by using a semi-empirical linear correlation. Error analysis shows that the LCP coefficient method gives the best reliability and accuracy among various drop weight analyses.
机译:现有的液滴重量分析用于确定表面张力的有效性可能会受到液体性质的影响。这项研究旨在验证Harkins-Brown校正因子和Bond数相关性的有效性,以及开发一种对液体特性不敏感的新型液滴重量分析。选择已知表面张力和粘度的液体样品,并将其分为六个不同的组。通过比较本研究中收集的数据与现有相关性以及无量纲分析来进行验证。结果表明,只要表面张力值(N-γ)超过10(-1)或Ohnersorge值(Oh)低于10(2),现有的液滴重量分析对大多数液体组都是有效的。但是,这证实了液体性质对分析有效性的影响。开发了LCP系数方法来解决此问题,方法是使用从不同大小的多个尖端产生的液滴重量结果。然后可以通过使用半经验线性相关性来计算表面张力。误差分析表明,LCP系数法在各种液滴重量分析中提供了最佳的可靠性和准确性。

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