Portable compound sweetener sweetness detection equipment

By designing a portable sweetness testing device for compound sweeteners, the problem of complex operation and inability to conduct on-site testing for the sweetness of compound sweeteners has been solved, achieving convenient rapid testing and equipment cleaning.

CN224081293UActive Publication Date: 2026-04-03NANCHANG TAIKANG FOOD TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-27
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing procedures for testing the sweetness of compound sweeteners are complex and cannot be performed quickly in non-laboratory environments, thus failing to meet on-site testing needs.

Method used

A portable sweetness testing device for compound sweeteners was designed, comprising a housing, detector, cleaning brush, electronic scale, test tube rack, slider, dropper, micro water pump, stirring mechanism, and other components. The device dilutes the sample by rotating the stirring head driven by a motor, and after filtration by a filter, the sample is extracted by the micro water pump for sweetness testing. The stirring chamber can also be cleaned.

Benefits of technology

It enables rapid on-site sweetness testing of compound sweeteners, meeting the testing needs of different scenarios, and facilitates equipment cleaning and maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of compound sweetener sweetness detection, in particular to portable compound sweetener sweetness detection equipment. The utility model provides portable compound sweetener sweetness detection equipment which can be used for detecting the sweetness of a compound sweetener on site so as to meet the detection requirements of different scenes. Portable compound sweetener sweetness detection equipment comprises a box body, a detector and the like, and the inner side of the left rear part of the box body is connected with the detector. The motor is started, the stirring head is driven to rotate, a sample to be tested and water are stirred to be diluted, the filter screen filters the sample to be tested, after dilution is completed, a test tube on the test tube rack is taken and placed on the sliding block, the position of the sliding block is adjusted, then the second micro water pump is started, the sample to be tested filtered by the filter screen is pumped into the water outlet pipe, and the sample to be tested is filtered by the water outlet pipe. The effect of detecting the sweetness of the compound sweetening agent on site so as to meet the detection requirements of different scenes is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of sweetness detection technology for compound sweeteners, and in particular to a portable sweetness detection device for compound sweeteners. Background Technology

[0002] Compound sweeteners are products made by mixing two or more different types of sweeteners. They aim to combine the advantages of various sweeteners and compensate for the shortcomings of single sweeteners to achieve better taste, stability, cost-effectiveness, and health benefits. With the increasingly widespread use of compound sweeteners in the market, measuring their sweetness has become particularly important. However, current methods for testing the sweetness of compound sweeteners are relatively complex and typically can only be performed in a laboratory environment, failing to meet the need for rapid on-site testing and thus proving inconvenient.

[0003] Therefore, a portable compound sweetener sweetness testing device has now been developed that can detect the sweetness of compound sweeteners on-site to meet the testing needs of different scenarios. Utility Model Content

[0004] To overcome the shortcomings of existing compound sweetener sweetness testing methods, which are relatively complex and can usually only be performed in a laboratory environment, failing to meet the needs of rapid on-site testing and being inconvenient, this utility model provides a portable compound sweetener sweetness testing device that can perform on-site sweetness testing to meet the testing needs of different scenarios.

[0005] The technical implementation scheme of this utility model is as follows: A portable compound sweetener sweetness detection device includes a box, a detector, a cleaning brush, an electronic scale, a test tube rack, a slider, a dropper, a first micro water pump, a second micro water pump, a water outlet pipe, a water tank, and a stirring mechanism. The detector is connected to the inner side of the left rear of the box, the cleaning brush is placed in the front left of the box, the electronic scale is connected to the middle of the box, the test tube rack is connected to the inner side of the front right of the box, the slider is connected to the middle of the test tube rack via a damping sliding mechanism, the dropper is placed at the rear of the test tube rack, the first micro water pump is connected to the middle of the box, the second micro water pump is connected to the middle of the box, the second micro water pump is located in front of the first micro water pump, the water outlet of the second micro water pump is connected to the water outlet pipe, the water tank is connected to the inner side of the right rear of the box, the water inlet of the first micro water pump is connected to the water tank, and a stirring mechanism capable of stirring the solution is provided on the box.

[0006] Optionally, a lid is provided on the upper rear side of the box.

[0007] Optionally, the detector is equipped with a button.

[0008] Optionally, the cleaning brush has a handle on the upper side.

[0009] Optionally, the outlet pipe can be a flexible pipe.

[0010] Optionally, the stirring mechanism includes a stirring chamber, a filter screen, a slide rod, a motor, and a stirring head. The stirring chamber is placed at the front left of the housing. The outlet of the first micro water pump is connected to the stirring chamber, and the inlet of the second micro water pump is connected to the stirring chamber. The filter screen is placed at the bottom of the stirring chamber. The slide rod is connected to the left side of the filter screen. The slide rod is engaged with the stirring chamber and the housing. The motor is connected to the right side of the slide rod. The stirring head is connected to the output shaft of the motor. The stirring head is rotatably connected to the filter screen.

[0011] This utility model has the following advantages: 1. By starting the motor, the stirring head is rotated to stir and dilute the sample to be tested and water. The sample to be tested is filtered by the filter screen. After dilution, the test tubes on the test tube rack are placed on the slider, and the position of the slider is adjusted. Then, the second micro water pump is started to draw the sample to be tested after being filtered into the water outlet pipe. This achieves the effect of being able to test the sweetness of compound sweeteners on site, so as to meet the testing needs of different scenarios.

[0012] 2. This utility model removes the slide bar, which drives the filter screen, motor, and stirring head to detach from the mixing chamber. Then, a cleaning brush is used to clean the mixing chamber and filter screen, which makes it easy to clean the mixing chamber and facilitates subsequent testing. Attached Figure Description

[0013] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0014] Figure 2 This is a partial three-dimensional structural diagram of the present invention.

[0015] Figure 3 This is a three-dimensional structural diagram of the stirring mechanism of this utility model.

[0016] Figure 4 This is a three-dimensional structural diagram of the stirring mechanism of this utility model.

[0017] Figure 5 This is a schematic diagram of the three-dimensional structure of the slider of this utility model.

[0018] The meanings of the labels in the attached diagram are as follows: 1: Box body, 2: Detector, 3: Stirring mechanism, 31: Stirring chamber, 32: Filter screen, 33: Slide rod, 34: Motor, 35: Stirring head, 4: Cleaning brush, 5: Electronic scale, 6: Test tube rack, 7: Slider, 8: Dropper, 9: First micro water pump, 10: Second micro water pump, 11: Water outlet pipe, 12: Water tank. Detailed Implementation

[0019] To make the objectives, technical solutions, and advantages of this utility model clearer, the following will describe this utility model in further detail with reference to the accompanying drawings. It is hereby declared that the terms "up," "down," "left," "right," "front," "back," "inner," and "outer," etc., appearing or about to appear in this document, are based solely on the accompanying drawings and are not intended to specifically limit this utility model.

[0020] A portable device for detecting the sweetness of compound sweeteners, such as Figures 1-5 As shown, the device includes a housing 1, a detector 2, a cleaning brush 4, an electronic scale 5, a test tube rack 6, a slider 7, a dropper 8, a first micro water pump 9, a second micro water pump 10, a water outlet pipe 11, a water tank 12, and a stirring mechanism 3. The detector 2 is connected to the inner left rear part of the housing 1. A rotating lid is provided on the upper rear part of the housing 1 for easy closure. The detector 2 has a button for easy control. The cleaning brush 4 is placed on the front left part of the housing 1, and a handle is provided on the upper side of the cleaning brush for easy handling. The electronic scale 5 is connected to the middle of the housing 1, and the test tube rack 6 is connected to the inner right front part of the housing 1. The test tube rack 6 is connected to the slider 7 in the middle via a damping sliding mechanism. The dropper 8 is placed at the rear of the test tube rack 6. The first micro water pump 9 is connected to the middle of the box 1. The second micro water pump 10 is connected to the middle of the box 1. The second micro water pump 10 is located in front of the first micro water pump 9. The water outlet of the second micro water pump 10 is connected to the water outlet pipe 11. The water outlet pipe 11 is a flexible pipe for easy angle adjustment. The water tank 12 is connected to the inner side of the right rear of the box 1. The water inlet of the first micro water pump 9 is connected to the water tank 12. The stirring mechanism 3 is provided on the box 1.

[0021] like Figures 1-4 As shown, the stirring mechanism 3 includes a stirring chamber 31, a filter screen 32, a slide rod 33, a motor 34, and a stirring head 35. The stirring chamber 31 is placed at the front left of the housing 1. The outlet of the first micro water pump 9 is connected to the stirring chamber 31, and the inlet of the second micro water pump 10 is connected to the stirring chamber 31. The filter screen 32 is placed in the lower part of the stirring chamber 31. The slide rod 33 is connected to the left side of the filter screen 32. The slide rod 33 is engaged with the stirring chamber 31 and the housing 1. The motor 34 is connected to the right side of the slide rod 33. The stirring head 35 is connected to the output shaft of the motor 34. The stirring head 35 is rotatably connected to the filter screen 32.

[0022] When using this invention, first, carry the box 1 to the sweetness detection area of ​​the compound sweetener, then open the box lid, take the test tubes from the test tube rack 6, put the sample to be tested into the test tubes, and then place the test tubes on the electronic scale 5 for weighing. After reaching the specified weight, pour the sample to be tested into the mixing chamber 31, then start the first micro water pump 9 to pump water from the water tank 12 into the mixing chamber 31, then start the motor 34 to drive the stirring head 35 to rotate, stirring and diluting the sample to be tested and water. The filter screen 32 filters the sample to be tested. After dilution, take the test tubes from the test tube rack 6 and place them on the slider 7, then adjust the position of the slider 7, and then start the second micro... The water pump 10 draws the sample to be tested, filtered by the filter screen 32, into the water outlet pipe 11, and then into the test tube on the slider 7. The diluted sample is then drawn onto the detector 2 using the dropper 8 for sweetness testing. This allows for on-site sweetness testing of compound sweeteners, meeting the testing needs of different scenarios. After testing, the slider 33 can be removed, causing the filter screen 32, the motor 34, and the stirring head 35 to detach from the stirring chamber 31. The cleaning brush 4 can then be used to clean the stirring chamber 31 and the filter screen 32, facilitating cleaning of the stirring chamber 31 and subsequent testing.

[0023] Although the present invention has been described in detail with reference to the above embodiments, it will be apparent to those skilled in the art that various changes or modifications can be made to the present invention without departing from the principles and spirit of the present invention as defined by the claims. Therefore, the detailed description of the embodiments in this disclosure is for explanation only and not for limiting the present invention, but rather the scope of protection is defined by the content of the claims.

Claims

1. A portable sweetness detection device for compound sweeteners, characterized in that: The system includes a housing (1), a detector (2), a cleaning brush (4), an electronic scale (5), a test tube rack (6), a slider (7), a dropper (8), a first micro water pump (9), a second micro water pump (10), a water outlet pipe (11), a water tank (12), and a stirring mechanism (3). The detector (2) is connected to the inner side of the left rear of the housing (1). The cleaning brush (4) is placed on the front left of the housing (1). The electronic scale (5) is connected to the middle of the housing (1). The test tube rack (6) is connected to the inner side of the front right of the housing (1). The test tube rack (6) is connected to the middle of the housing via a damped sliding mechanism. A slider (7) is connected, a dropper (8) is placed at the rear of the test tube rack (6), a first micro water pump (9) is connected in the middle of the box (1), a second micro water pump (10) is connected in the middle of the box (1), the second micro water pump (10) is located in front of the first micro water pump (9), the outlet end of the second micro water pump (10) is connected to an outlet pipe (11), a water tank (12) is connected to the inner side of the right rear part of the box (1), the inlet end of the first micro water pump (9) is connected to the water tank (12), and a stirring mechanism (3) capable of stirring the solution is provided on the box (1).

2. A portable compound sweetener sweetness detection device according to claim 1, characterized in that: The upper rear side of the box (1) is equipped with a rotating box cover.

3. A portable compound sweetener sweetness detection device according to claim 1, characterized in that: The detector (2) is equipped with a button.

4. A portable compound sweetener sweetness detection device according to claim 1, characterized in that: The cleaning brush (4) has a handle on the upper side.

5. A portable compound sweetener sweetness detection device according to claim 1, characterized in that: The outlet pipe (11) is a flexible pipe.

6. A portable compound sweetener sweetness detection device according to claim 1, characterized in that: The stirring mechanism (3) includes a stirring chamber (31), a filter screen (32), a slide bar (33), a motor (34), and a stirring head (35). The stirring chamber (31) is placed on the front left side of the housing (1). The outlet of the first micro water pump (9) is connected to the stirring chamber (31), and the inlet of the second micro water pump (10) is connected to the stirring chamber (31). A filter screen (32) is placed in the lower part of the mixing chamber (31), and a slide rod (33) is connected to the left side of the filter screen (32). The slide rod (33) is engaged with the mixing chamber (31), and the slide rod (33) is engaged with the box body (1). A motor (34) is connected to the right side of the slide bar (33), and a stirring head (35) is connected to the output shaft of the motor (34). The stirring head (35) is rotatably connected to the filter screen (32).