Devices and methods for sorting droplets by surface tension
US-9823174-B2 · Nov 21, 2017 · US
US2022349802A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2022349802-A1 |
| Application number | US-202217862902-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jul 12, 2022 |
| Priority date | Sep 30, 2020 |
| Publication date | Nov 3, 2022 |
| Grant date | — |
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Disclosed is a method, device, and system for testing the static contact angle of reagent asphalt, the method includes the following steps: acquiring a side image of a stable droplet formed by a test reagent on asphalt surface, and determining the position of a baseline in the side image; cropping the side image to obtain a droplet image, and extracting droplet contour points in the droplet image; screening out effective contour points corresponding to contours of the two sides of the droplet from the droplet contour points; performing cubic polynomial fitting on the effective contour points to obtain curve function of contour curves on both sides; calculating contact angle value from the curve function and the position of the baseline. The beneficial effects of this disclosure are: this disclosure reduces the difficulty of fitting of the droplet contour and thus improves the calculation precision of the contact angle.
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What is claimed is: 1 . A method for testing static contact angle of reagent asphalt, comprising the following steps: acquiring a side image of a stable droplet formed by a test reagent on asphalt surface, and determining the position of a baseline in the side image; cropping the side image to obtain a droplet image, and extracting droplet contour points in the droplet image; screening out effective contour points corresponding to contours of the two sides of the droplet from the droplet contour points; performing cubic polynomial fitting on the effective contour points to obtain curve function of contour curves on both sides; calculating contact angle value from the curve function and the position of the baseline. 2 . The method for testing static contact angle of reagent asphalt according to claim 1 , cropping the side image to obtain a droplet image, specifically including the following steps: taking the height direction of the droplet as longitudinal direction, and taking the vertical direction of the height direction of the droplet as the horizontal direction; setting the ratio of the droplet diameter to the lateral length of the droplet image, and setting the ratio of the droplet height to the vertical height of the droplet image; cropping the side image according to a set ratio to obtain the droplet image. 3 . The method for testing static contact angle of reagent asphalt according to claim 1 , extracting droplet contour points in the droplet image, specifically including the following steps: converting the droplet image to a grayscale image, and increasing the pixel values of all pixels in the grayscale image; performing median filtering on the grayscale image; using Canny operator to extract all contour points in the grayscale image; deleting noise contour points in the contour points according to the size and shape of the droplet to obtain the droplet contour points. 4 . The method for testing static contact angle of reagent asphalt according to claim 1 , screening out effective contour points corresponding to contours of the two sides of the droplet from the droplet contour points, specifically: sorting the droplet contour points according to the coordinate value of the droplet height direction, and selecting the droplet contour points whose coordinate values in the droplet height direction are greater than set threshold to obtain the effective contour points corresponding to the contours on both sides. 5 . The method for testing static contact angle of reagent asphalt according to claim 1 , calculating contact angle value from the curve function and the position of the baseline, specifically: calculating intersection points of the baseline and the contour curves on both sides according to the curve function and the position of the baseline; drawing the tangent to the corresponding side contour curve through the intersection point; calculating the slope of the tangent; calculating the contact angle value of the corresponding side contour curve from the slope; taking the average value of the contact angle of the contours on both sides as the final contact angle value. 6 . The method for testing static contact angle of reagent asphalt according to claim 1 , wherein the method also includes the following step: selecting a variety of test reagents; acquiring multiple droplet images for each test reagent; calculating a contact angle value from each droplet image; calculating the average value of the contact angle corresponding to the multiple droplet images of each test reagent to obtain the contact angle value of the corresponding type of test reagent. 7 . The method for testing static contact angle of reagent asphalt according to claim 1 , wherein the method also includes the following step: calculating the surface energy parameter of the asphalt from the contact angle value. 8 . A device for testing static contact angle of reagent asphalt, comprising a processor and a memory, the memory stores a computer program, and when the computer program is executed by the processor, the method for testing static contact angle of reagent asphalt according to claim 1 is implemented. 9 . A system for testing static contact angle of reagent asphalt, comprising the device for testing static contact angle of reagent asphalt as claimed in claim 8 , the system also comprises an optical contact angle meter; the optical contact angle meter is used for the titration of the test reagent and the photographing of the side image, and the side image is sent to the device for testing static contact angle of reagent asphalt. 10 . A computer storage medium, on which a computer program is stored, when the computer program is executed by a processor, the method for testing static contact angle of reagent asphalt as claimed in claim 1 is realized.
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