Design and Development of an Automated Surface Tension Analyzer Based on Bubble Pressure Variations

A low-cost, automated surface tension analyzer was designed and developed based on the maximum bubble pressure method. The system measures the pressure required to form air bubbles through a capillary immersed in a liquid, allowing the surface tension to be determined from the pressure–depth relationship. The experimental setup integrates a pressure sensor solenoid valve, stepper-motor-controlled depth stage, and data acquisition unit. A Python-based software interface was developed for real-time signal processing. Validation was performed using several Newtonian liquids, including water, toluene, methanol, ethanol, and n-hexane, with experimental results showing strong agreement with theoretical values yielding a maximum deviation below 2%. The developed instrument demonstrates excellent repeatability and sensitivity confirming its suitability for research and industrial applications.

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Publication Details

Journal
Inventions
Published
2026-10-08
DOI
https://doi.org/10.3390/inventions11050107
Primary Topic
Fluid Dynamics and Heat Transfer
Type
article
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article

Design and Development of an Automated Surface Tension Analyzer Based on Bubble Pressure Variations

N. Gunawardhana, Dario Zappa, Comini Elisabetta, Achala Pallegedara et al.
Inventions
Fluid Dynamics and Heat Transfer
article

Design and Development of an Automated Surface Tension Analyzer Based on Bubble Pressure Variations

N. Gunawardhana, Dario Zappa, Comini Elisabetta, Achala Pallegedara, Madushani Seneviratne, Kelum Gamage, Migara Karunarathne, Ruwan Jayakantha
article en

Abstract

A low-cost, automated surface tension analyzer was designed and developed based on the maximum bubble pressure method. The system measures the pressure required to form air bubbles through a capillary immersed in a liquid, allowing the surface tension to be determined from the pressure–depth relationship. The experimental setup integrates a pressure sensor solenoid valve, stepper-motor-controlled depth stage, and data acquisition unit. A Python-based software interface was developed for real-time signal processing. Validation was performed using several Newtonian liquids, including water, toluene, methanol, ethanol, and n-hexane, with experimental results showing strong agreement with theoretical values yielding a maximum deviation below 2%. The developed instrument demonstrates excellent repeatability and sensitivity confirming its suitability for research and industrial applications.

InventionsVol. 11(5)
University of Peradeniya (LK), Sri Lanka Technological Campus, University of Glasgow (GB), University of Brescia (IT)
Openalex Percentile: Top 19%
Fluid Dynamics and Heat Transfer
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Design and Development of an Automated Surface Tension Analyzer Based on Bubble Pressure Variations — N. Gunawardhana, Dario Zappa, et al. · Inventions (2026) | TGRS Research Map | TGRS