Optical method for simultaneously measuring surface tension coefficient and contact angle of liquid

A technology of liquid surface tension and surface tension coefficient, used in surface tension analysis, measurement devices, surface/boundary effects, etc. Simple to use effects

Active Publication Date: 2018-12-07
SHAANXI UNIV OF SCI & TECH
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Problems solved by technology

At present, the ADSA (Axisymmetric Drop Shape Analysis) algorithm is commonly used to calculate the contact angle. The models established by some new methods can measure the surface tension coefficient and the contact angle at the same time. Such methods are often subject to problems such as large measurement limitations and poor operability. troubled

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  • Optical method for simultaneously measuring surface tension coefficient and contact angle of liquid
  • Optical method for simultaneously measuring surface tension coefficient and contact angle of liquid
  • Optical method for simultaneously measuring surface tension coefficient and contact angle of liquid

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Embodiment Construction

[0042] The present invention provides an optical method for synchronously measuring the surface tension coefficient and contact angle of a liquid. Solving the Young-Laplace equation obtains the surface equation of the curved liquid surface, and solves the expressions of the surface tension coefficient and the contact angle respectively. Moreover, the expressions of the surface tension coefficient and the contact angle are independent of each other. When the contact angle between the liquid to be measured and the equipment material is unknown, the surface tension of the liquid can be measured, and the contact angle can also be measured simultaneously.

[0043] In terms of technical operation, this method uses parallel laser beams to vertically irradiate the curved liquid surface, by changing the position of the observation screen, using an area microscopic camera (CCD) and computer image processing to obtain the reflected light field characteristics of the observation screen at d...

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Abstract

The invention discloses an optical method for simultaneously measuring a surface tension coefficient and a contact angle of a liquid. The optical method utilizes parallel laser beams to vertically illuminate the curved liquid surface. Through change of the position of an observation screen, the reflected light field characteristics of the observation screen at different positions are acquired through an area array microscopy camera and computer image processing. Through a Young-Laplace equation, the curved surface equation of the curved liquid surface is calculated. According to the curved surface equation for respectively solving a surface tension coefficient and a contact angle, the liquid surface tension and a contact angle are simultaneously measured when an unknown liquid to be testedcontacts with a device material. The optical method is easy to operate in a test, realizes non-contact measurement and has non-destructive characteristics and strong operability.

Description

【Technical field】 [0001] The invention belongs to, and in particular relates to an optical method for synchronously measuring the surface tension coefficient and contact angle of a liquid. 【Background technique】 [0002] Surface tension and contact angle are two important parameters to describe the properties of fluids and have important applications in fluid mechanics. There are many methods for measuring the surface tension of liquids. The national standard stipulates the plate method or the ring method as the standard for measuring the surface tension coefficient [1]. In addition to the methods specified in the national standard, the common method for measuring the surface tension coefficient is capillary rise method, pendant drop method, drop volume method, maximum bubble pressure method, oscillating jet method, capillary wave method, laser diffraction method, etc. In these surface tension coefficient measurement methods, all rely on the known contact angle of the liqui...

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Application Information

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IPC IPC(8): G01N13/02
CPCG01N13/02G01N2013/0208
Inventor 罗道斌骞来来师博秦毅盼安静岳宗敏
Owner SHAANXI UNIV OF SCI & TECH
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