Moisturizing effect detection device

By designing a detection device including a testing room, fixture assembly, application structure and storage box, the problem of existing skin care products' moisturizing effect detection methods being affected by external factors is solved, and the effect of accurately detecting the moisturizing effect of skin care products under a stable environment is achieved.

CN222939082UActive Publication Date: 2025-06-03GUANGDONG LICHUANG TESTING TECH SERVICE CO LTD
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Patent Information

Application Number
CN202421534252.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-01
Publication Date
2025-06-03
Estimated Expiration
2034-07-01

AI Technical Summary

Technical Problem

The existing skin care products moisturizing effect detection methods are affected by the life activities and environment of the tester, making it difficult to test in a stable environment.

Method used

Design a detection device including a test chamber, fixture assembly, smear structure and storage box. The smeared object is clamped through the fixture assembly. The smeared structure automatically applies the test sample to the smear to the smear, and controls the environment in the test room to avoid interference from external factors.

Benefits of technology

It realizes the moisturizing effect of skin care products under a stable environment, avoids the influence of life activities and environmental factors, and ensures the accuracy of the test results.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a moisturizing efficacy detection device, which comprises a test chamber, a clamp assembly, a smearing structure and a storage box are arranged in the test chamber, the clamp assembly is used for clamping an object to be smeared, the storage box is used for containing a test sample, the smearing structure is arranged between the clamp assembly and the storage box, and the smearing structure is used for smearing the object to be smeared. The smearing structure comprises a smearing body and a driving assembly, the smearing body is connected with the inner wall of the testing chamber through the driving assembly, a spray head is arranged at the storage box, and the spray head faces the smearing body and is used for spraying a testing sample in the storage box onto the smearing body; the smearing body moves in the testing chamber through the driving assembly so as to smear the testing sample on the smearing body on an object to be smeared. A to-be-smeared object is clamped through the clamp assembly, the spray head in the storage box is controlled to spray a test sample towards the smearing body, after the test sample is sprayed to the smearing body, the test sample is smeared on the to-be-smeared object through the smearing body, and the to-be-smeared object can be placed in the test chamber for a test duration. Therefore, the moisturizing effect of the test sample after the test time is detected, and the interference of external factors is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of detection devices, and particularly relates to a detection device for moisturizing effect. Background Art

[0002] When a new type of skin care product is developed, it is necessary to test its moisturizing effect. The current testing method requires applying the skin care product on the hands of the tester, and measuring the humidity of the tester's skin immediately after application and after a certain testing time to obtain the effect of the skin care product. In this testing method, since the tester inevitably needs to carry out normal daily activities, the testing process will be affected by the tester's daily activities and living environment. That is, the test cannot be carried out in a stable environment. Content of the Utility Model

[0003] The utility model solves one of the problems existing in the related art to a certain extent. For this reason, an object of the utility model is to provide a detection device for moisturizing effect.

[0004] The above object is achieved by the following technical solutions:

[0005] A detection device for moisturizing effect includes a test chamber, in which a fixture assembly, an application structure and a storage box are provided. The fixture assembly is used to clamp the object to be applied, the storage box is used to contain the test sample, the application structure is between the fixture assembly and the storage box, the application structure includes an application body and a driving component, the application body is connected to the inner wall of the test chamber through the driving component, a nozzle is provided at the storage box, and the nozzle faces the application body for spraying the test sample in the storage box onto the application body. The application body moves in the test chamber through the driving component to apply the test sample on the application body onto the object to be applied.

[0006] As a further improvement of the utility model, the driving component includes a lead screw assembly, a connecting block and a rotary cylinder. The connecting block is connected to the lead screw assembly to drive the application body to move left and right through the lead screw assembly. The rotary cylinder is installed on the connecting block, and the application body is connected to the rotary cylinder to drive the application body to rotate on the connecting block through the rotary cylinder.

[0007] As a further improvement of the utility model, the fixture assembly includes a first manipulator and a second manipulator. The first manipulator is connected to the left side wall of the test chamber, and the second manipulator is connected to the right side wall of the test chamber to form a clamping gap between the first manipulator and the second manipulator.

[0008] As a further improvement of the present invention, a detection port is further provided on the test chamber, and the detection port faces the clamping gap.

[0009] As a further improvement of the utility model, it also includes a partition, which is between the smearing structure and the storage box to separate the test chamber into a test cavity and a storage cavity, the fixture assembly and the smearing structure are arranged in the test cavity, and the storage box is arranged in the storage cavity.

[0010] As a further improvement of the utility model, a through hole is provided on the partition plate, and a door plate is provided at the through hole, and the door plate is used to open and close the through hole to connect or separate the test cavity and the storage cavity.

[0011] As a further improvement of the utility model, a cleaning box is further provided in the storage cavity, and the cleaning box is provided with a cleaning liquid spray outlet, and the cleaning liquid spray outlet is directed toward the application body through the through hole.

[0012] As a further improvement of the present invention, the upper end surface of the cleaning box is inclined downward from an end away from the through hole to an end close to the through hole.

[0013] As a further improvement of the utility model, a temperature controller and a temperature sensor are also provided in the test cavity.

[0014] Compared with the prior art, the present invention has at least the following beneficial effects:

[0015] 1. The utility model proposes a device for detecting moisturizing effect, which clamps the object to be smeared by a clamp assembly, controls the nozzle in the storage box to spray the test sample toward the smearing body, and after being sprayed onto the smearing body, smears the test sample on the object to be smeared through the smearing body. The object to be smeared can be placed in a test room for a test time to detect the moisturizing effect of the test sample after the test time to avoid interference from external factors. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic diagram of the internal structure of a detection device for moisturizing efficacy in an embodiment;

[0017] Figure 2 is another schematic diagram of the internal structure of a detection device for moisturizing efficacy in an embodiment;

[0018] Figure 3 Schematic diagram of the structure of the coating structure in the embodiment. DETAILED DESCRIPTION

[0019] The following embodiments are used to illustrate the present utility model, but the present utility model is not limited by these embodiments. Modifications to the specific implementation manners of the present utility model or equivalent replacements of some technical features, without departing from the spirit of the present utility model's solution, shall all be covered within the scope of the technical solution claimed by the present utility model.

[0020] For example Figures 1 - 3 , a detection device with a moisturizing effect, including a test chamber 1, in which a fixture assembly 2, an application structure 3 and a storage box 4 are provided. The fixture assembly 2 is used to clamp the object to be applied, the storage box 4 is used to hold the test sample, the application structure 3 is between the fixture assembly 2 and the storage box 4, and the application structure 3 includes an application body 31 and a driving assembly 32. The application body 31 is connected to the inner wall of the test chamber 1 through the driving assembly 32. A nozzle 41 is provided at the storage box 4, and the nozzle 41 faces the application body 31 to spray the test sample in the storage box 4 onto the application body 31. The application body 31 moves in the test chamber 1 through the driving assembly 32 to apply the test sample on the application body 31 to the object to be applied.

[0021] The present utility model provides a detection device with a moisturizing effect. The object to be applied is clamped by the fixture assembly 2, and the nozzle 41 in the storage box 4 is controlled to spray the test sample towards the application body 31. After being sprayed onto the application body 31, the test sample is applied to the object to be applied by the application body 31. The object to be applied can be placed in the test chamber 1 for the test duration to detect the moisturizing effect of the test sample after the test duration.

[0022] The object to be applied can be stably placed in the test chamber 1 for testing. The humidity of the object to be applied just after applying the test sample can be detected, and the humidity of the object to be applied after the test duration can also be detected to obtain the moisturizing effect of the test sample, avoiding the problem that due to the object to be applied experiencing different external environments, the object to be applied is greatly affected by the external environment, resulting in the inability to accurately obtain the moisturizing effect of the test sample.

[0023] In this embodiment, the object to be applied is artificial skin or pig skin.

[0024] It further includes a partition 5, and the partition 5 is between the application structure 3 and the storage box 4 to divide the test chamber 1 into a test cavity 11 and a storage cavity 12. The fixture assembly 2 and the application structure 3 are arranged in the test cavity 11, and the storage box 4 is arranged in the storage cavity 12.

[0025] In this embodiment, the test cavity 11 is formed above the test chamber 1, and the storage cavity 12 is formed below the test chamber 1.

[0026] A through hole 51 is provided on the partition plate 5 , and a door plate 52 is provided at the through hole 51 . The door plate 52 is used to open and close the through hole 51 to connect or disconnect the test cavity 11 and the storage cavity 12 .

[0027] In this embodiment, the door panel 52 is hinged to the edge of the through hole 51 .

[0028] In some embodiments, an abutment edge is provided on the front wall and / or the rear wall of the test chamber 11, and the door panel 52 opens upward. When the door panel 52 is closed, the door panel 52 rotates to abut against the abutment edge, limiting further rotation of the door panel 52 to close the through hole 51.

[0029] An atomization structure and a humidity sensor are provided in the test chamber 11 .

[0030] The atomization structure includes an atomizer, and the atomizer is used to increase the humidity in the test cavity 11; the humidity sensor is used to detect the humidity in the test cavity 11. When the humidity sensor detects the humidity in the test cavity 11, when the humidity sensor detects that the humidity in the test cavity 11 decreases, the atomizer can be controlled to increase the humidity of the environment in the test cavity 11.

[0031] In some embodiments, a dehumidifier is further provided in the test cavity 11 for dehumidification. When the humidity sensor detects that the humidity in the test cavity 11 is too high, the dehumidifier can be used to dehumidify the test cavity 11 to reduce the humidity in the test cavity 11.

[0032] A temperature regulator and a temperature sensor are also provided in the test cavity 11 . The temperature regulator is used to increase or decrease the temperature in the test cavity 11 , and the temperature sensor is used to detect the temperature in the test cavity 11 .

[0033] In some embodiments, the temperature regulator includes a small air conditioner, which can cool down or heat up the test cavity 11 .

[0034] When the temperature sensor detects that the temperature in the test cavity 11 is too low, the temperature regulator can be controlled to increase the temperature in the test cavity 11; when the temperature sensor detects that the temperature in the test cavity 11 is too high, the temperature regulator can be controlled to decrease the temperature in the test cavity 11.

[0035] The test cavity 11 is further provided with a detection port 111 , and a cover plate for opening or closing the detection port 111 is provided on the detection port 111 .

[0036] In this embodiment, the detection port 111 corresponds to the clamping gap between the first clamp and the second clamp.

[0037] The humidity detector can extend into the test chamber 11 through the detection port 111 to detect the humidity of the coated object.

[0038] A cleaning box 6 is further provided in the storage chamber 12. The cleaning box 6 is provided with a cleaning liquid spray outlet, and the cleaning liquid spray outlet faces the coating body 31 through the through hole 51. A cleaning pump is provided in the cleaning box 6, and the cleaning pump is communicated with the cleaning liquid spray outlet.

[0039] In this embodiment, the upper end surface of the cleaning box 6 forms a first mounting surface, and the first mounting surface is inclined downward from the end far away from the through hole to the end close to the through hole. The cleaning liquid spray outlet is provided on the first mounting surface, and the cleaning liquid spray outlet is inclined to face the coating body through the through hole 51.

[0040] In some embodiments, a water tank 7 is further provided in the storage chamber 12. The water tank 7 is used to hold clean water. A cleaning water spray outlet is provided on the water tank 7, and the cleaning water spray outlet faces the coating body 31 through the through hole 51. A water pump is provided in the water tank 7, and the water pump is communicated with the cleaning water spray outlet.

[0041] In this embodiment, the upper end surface of the water tank 7 forms a second mounting surface, and the second mounting surface is inclined downward from the end far away from the through hole to the end close to the through hole. The cleaning water spray outlet is provided on the first mounting surface, and the cleaning water spray outlet is inclined to face the coating body through the through hole 51.

[0042] In this embodiment, a pump is provided in the storage box 4, and the outlet of the pump is communicated with the spray head 41 to spray the test sample in the storage box 4.

[0043] A first waste liquid discharge port 8 is formed between the cleaning box 6 and the storage box 4, and the first waste liquid discharge port is communicated with the storage chamber 12. In this embodiment, a second waste liquid discharge port is formed between the water tank 7 and the storage box 4, and the second waste liquid discharge port is communicated with the storage chamber 12.

[0044] A liquid inlet is further provided at the cleaning box 6, and the liquid inlet is used to supplement the cleaning liquid to the cleaning box 6. The liquid inlet is communicated with a liquid inlet pipe to input external cleaning liquid into the cleaning box 6.

[0045] A water inlet is also provided on the water tank 7, and the water inlet is communicated with an external water pipe to input external water source into the water tank 7.

[0046] In some embodiments, an input port is provided on the storage box 4 and is connected to an external infusion tube through the input port to input an external coating liquid into the storage box 4; a drain port is also provided in the storage box 4, and the drain port can discharge the remaining or excess coating liquid in the storage box 4.

[0047] In some embodiments, a storage tank is provided in the storage box 4. The storage tank can be taken out of the storage box 4, and the coating liquid in the storage box 4 can be replaced by replacing the storage tank in the storage box 4. The pump is arranged in the storage box 4 and outside the storage tank, and the input end of the pump is communicated with the storage tank.

[0048] In this embodiment, the coating structure 3 includes a coating body 31 and a driving assembly 32. Among them, the driving assembly 32 includes a lead screw assembly, a connecting block 323 and a rotary cylinder 324. The lead screw assembly includes a first lead screw 321, a second lead screw 322 and a motor. The motor is used to drive the first lead screw 321 and the second lead screw 322 to rotate, and a gap is formed between the first lead screw 321 and the second lead screw 322. The connecting block 323 is between the first lead screw 321 and the second lead screw 322. The rotary cylinder 324 is installed on the connecting block 323, and the coating body 31 is connected to the rotary cylinder 324, so as to drive the coating body 31 to rotate on the connecting block 323 through the rotary cylinder 324, and the coating body 31 can be driven to rotate to an upward state or a downward state.

[0049] In some embodiments, the driving assembly 32 further includes a first slide rail and a first slider. The first slide rails are respectively installed on the left side wall and the right side wall of the inner side wall of the test chamber 11. The slider is slidably installed on the first slide rail. The left ends and the right ends of the first lead screw 321 and the second lead screw 322 are respectively connected to the first slider, so as to drive the up and down movement of the lead screw assembly through the movement of the first slider on the first slide rail, and move the coating body 31 in the direction close to the object to be coated or in the direction close to the storage box 4, that is, drive the coating body 31 to move in the up and down direction.

[0050] When the rotary cylinder 324 drives the coating body 31 to rotate to the downward state, the test sample in the storage box 4 is sprayed onto the coating body 31 through the nozzle 41; then the rotary cylinder 324 drives the coating body 31 to rotate to the upward state, and the motor drives the rotation of the first lead screw 321 and the second lead screw 322 to drive the left and right movement of the connecting block 323, and the left and right movement of the connecting block 323 drives the left and right movement of the coating body 31, and the test sample on the coating body 31 is smeared onto the object to be coated.

[0051] When it is necessary to clean the coating body 31, the first lead screw 321 and the second lead screw 322 can be rotated by a motor to drive the coating body 31 to move to the first set position, and the cleaning liquid is sprayed onto the coating body 31 through the cleaning liquid spray outlet of the cleaning tank 6, and / or the first lead screw 321 and the second lead screw 322 are rotated by a motor to drive the coating body 31 to move to the second set position, and the cleaning water is sprayed onto the coating body 31 through the cleaning water spray outlet of the water tank 7.

[0052] In some embodiments, when cleaning is required, a cleaning brush can be clamped by a fixture assembly, the cleaning liquid in the cleaning tank 6 is sprayed towards the coating body, and the coating body is driven by a driving assembly to move left and right on the cleaning brush to clean the coating body. Then, the cleaning water is sprayed onto the coating body through the water tank 7 for cleaning, and the waste water after cleaning can be discharged through the first waste liquid discharge port 8.

[0053] In this embodiment, the fixture assembly 2 includes a first manipulator and a second manipulator. The first manipulator is connected to the left side wall of the test chamber 11, and the second manipulator is connected to the right side wall of the test chamber 11 to form a clamping gap between the first manipulator and the second manipulator, so as to clamp the object to be coated by the first manipulator and the second manipulator.

[0054] In some embodiments, the distance that the first manipulator and the second manipulator extend into the test chamber is adjusted to adjust the clamping gap and stably clamp the coating material.

[0055] In this embodiment, the coating body 31 can be a brush or the like.

[0056] The above preferred embodiments should be regarded as examples of the implementation modes of the application solutions. All technical deductions, substitutions, improvements, etc. that are identical, similar to or based on the application solutions should be regarded as within the protection scope of this patent.

Claims

1. A device for detecting moisturizing effect, characterized in that: The invention comprises a test chamber, wherein a clamp assembly, a smearing structure and a storage box are arranged in the test chamber, the clamp assembly is used for clamping the object to be smeared, the storage box is used for containing the test sample, the smearing structure is between the clamp assembly and the storage box, the smearing structure comprises a smearing body and a driving assembly, the smearing body is connected to the inner wall of the test chamber through the driving assembly, a nozzle is arranged at the storage box, and the nozzle faces the smearing body, and is used for spraying the test sample in the storage box onto the smearing body, and the smearing body is moved in the test chamber through the driving assembly to smear the test sample on the smearing body onto the object to be smeared.

2. A moisturizing effect detection device according to claim 1, characterized in that: The driving assembly includes a screw assembly, a connecting block and a rotating cylinder. The connecting block is connected to the screw assembly so as to drive the coating body to move left and right through the screw assembly. The rotating cylinder is installed on the connecting block. The coating body is connected to the rotating cylinder and is driven to rotate on the connecting block through the rotating cylinder.

3. A moisturizing effect detection device according to claim 1, characterized in that: The clamp assembly includes a first manipulator and a second manipulator, wherein the first manipulator is connected to a left side wall of the test chamber, and the second manipulator is connected to a right side wall of the test chamber to form a clamping gap between the first manipulator and the second manipulator.

4. A moisturizing effect detection device according to claim 3, characterized in that: A detection port is also provided on the test chamber, and the detection port faces the clamping gap.

5. A moisturizing effect detection device according to claim 1, characterized in that: It also includes a partition, which is between the smear structure and the storage box to separate the test chamber into a test cavity and a storage cavity. The fixture assembly and the smear structure are arranged in the test cavity, and the storage box is arranged in the storage cavity.

6. A moisturizing effect detection device according to claim 5, characterized in that: A through hole is arranged on the partition plate, and a door plate is arranged at the through hole. The door plate is used to open and close the through hole to connect or separate the test cavity and the storage cavity.

7. A moisturizing effect detection device according to claim 6, characterized in that: A cleaning box is also provided in the storage cavity. The cleaning box is provided with a cleaning liquid spraying port, and the cleaning liquid spraying port is directed toward the smearing body through the through hole.

8. A moisturizing effect detection device according to claim 7, characterized in that: The upper end surface of the cleaning box is inclined downward from an end away from the through hole to an end close to the through hole.

9. A moisturizing effect detection device according to claim 5, characterized in that: A temperature controller and a temperature sensor are also provided in the test chamber.