Resistance value detection device and detection equipment

Through the design of the support frame and test platform, combined with the drive components and positioning parts, the stable electrical connection of the atomized core electrode is achieved, which solves the problems of low detection efficiency and low accuracy in the prior art, and improves the efficiency and accuracy of the atomized core resistance detection.

CN223180296UActive Publication Date: 2025-08-01HG INNOVATION LTD
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Patent Information

Application Number
CN202422218874.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-08-01
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

In the prior art, the atomized core resistance detection efficiency is low and the detection accuracy is not high, making it difficult to ensure the consistency of the output effect of the product.

Method used

The resistance value detection device is adopted, including a support frame, a test platform and a drive assembly. Through the coordination of the positioning member and the test platform, a stable electrical connection of the atomized core electrode is realized, a closed detection circuit is constructed, and a detector is used for detection.

Benefits of technology

It improves the efficiency and accuracy of the resistance detection of atomized core, ensuring the consistency of product inspection results and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a resistance value detection device and detection equipment, the resistance value detection device is matched with a detector for use and is used for detecting an atomization core, and the resistance value detection device comprises a support frame, a test platform for placing the atomization core and a driving assembly; the test platform is arranged on the support frame and is electrically connected with the detector; the driving assembly is installed on the supporting frame and arranged on one side of the testing platform. The driving assembly comprises a driving piece and a positioning piece, and the driving piece is connected with the positioning piece and drives the positioning piece to be close to or away from the testing platform so that the atomization core can be positioned between the positioning piece and the testing platform; the detector is configured to detect the resistance value of the atomization core through the test platform. According to the invention, the efficiency and quality control of atomization core detection can be improved.
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Description

Technical Field

[0001] This application relates to the technical field of resistance value detection, and particularly relates to a resistance value detection device and a detection device. Background Art

[0002] Many products have high requirements for the resistance values inside them. Different resistance values result in different output powers, thus leading to different production effects of the products. Taking an atomizing device as an example, the resistance value in the atomizing core affects the atomizing taste of the product, and further affects the user experience.

[0003] The conventional method for detecting the resistance of the atomizing core is to use the test chuck on the detection instrument to clamp the electrode and then conduct the detection. Such a detection method is inefficient and it is difficult to ensure the detection accuracy. Utility Model Content

[0004] This application provides a resistance value detection device and a detection device, which are used to solve the problems of low efficiency and low accuracy in the resistance value detection process.

[0005] In one embodiment, a resistance value detection device is provided, which is used in cooperation with a detector and is used to detect an atomizing core, including: a support frame; a test platform for placing the atomizing core, the test platform is arranged on the support frame, and the test platform is electrically connected to the detector; a driving component installed on the support frame and arranged on one side of the test platform; the driving component includes a driving member and a positioning member, the driving member is connected to the positioning member and drives the positioning member to approach or move away from the test platform; the positioning member includes a detection position, when the positioning member is at the detection position, the atomizing core on the test platform is electrically connected to the test platform; the detector is configured to detect the resistance value of the atomizing core through the test platform.

[0006] In some embodiments, the positioning member further has an operation position, the detection position is located between the operation position and the test platform, and the driving member drives the positioning member to reciprocate between the operation position and the detection position; when the positioning member is at the operation position, the positioning member is spaced from the test platform.

[0007] In some embodiments, the test platform includes a first test part and a second test part, the atomizing core includes a first electrode and a second electrode, when the atomizing core is electrically connected to the test platform, the first test part is electrically connected to the first electrode, and the second test part is electrically connected to the second electrode.

[0008] In some embodiments, the support frame includes a base and a mounting seat, the mounting seat is detachably arranged on the base, and the test platform is detachably arranged on the mounting seat.

[0009] In some embodiments, the support frame further includes a bracket, the bracket is detachably disposed on the base, and the driving member is detachably disposed on the bracket.

[0010] In some embodiments, the driving member includes a cylinder, the positioning member includes a connecting portion and a pressing portion, the connecting portion is connected between the cylinder and the pressing portion, and the cylinder drives the pressing portion to reciprocate relative to the positioning member through the connecting portion.

[0011] In some embodiments, the driving assembly further includes a driving switch, the driving switch is electrically connected to the driving member and is used to control the operation of the driving member, and the driving switch includes a foot-operated switch.

[0012] In some embodiments, the resistance value detecting device further includes a reminding module, the reminding module is electrically connected to the detector, and the reminding module is used to send out corresponding prompt information according to the detection result of the detector.

[0013] In some embodiments, the reminding module includes an indicator light, and the indicator light is used to send out corresponding light source prompt information according to the detection result of the detector;

[0014] And / or, the reminding module further includes a buzzer, and the buzzer is used to send out corresponding sound prompt information according to the detection result of the detector.

[0015] A detection device is provided, and the detection device includes a detector and the resistance value detecting device in any of the above embodiments.

[0016] According to the resistance value detecting device of the above embodiment, by providing a test platform and a driving assembly, the cooperation of the two can clamp the electrode of the atomizing core between the test platform and the positioning member. During the detection process, the closure of the detection circuit can be efficiently achieved, the detection operation can be completed, the operation is simple, and the detection efficiency can be improved. Through the pressing of the positioning member, relatively stable electrical connection between the electrode of the atomizing core and the test platform can be achieved, avoiding the phenomenon of poor contact between the electrode and the test platform, and improving the accuracy of the detection. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a partial structural schematic diagram of a resistance value detecting device in an embodiment;

[0018] Figure 2 is Figure 1 The structural schematic diagram when the resistance value detecting device shown detects the electrode of the atomizing core;

[0019] Figure 3 is Figure 1Schematic diagram of the electrical connection between the driving component and the driving switch in

[0020] Figure 4 is a schematic diagram of the electrical connection of some modules of the detection device in an embodiment;

[0021] The reference numerals are as follows:

[0022] 1 - Resistance detection device; 10 - Support frame; 11 - Base; 12 - Mounting seat; 13 - Bracket; 14 - Mounting plate; 20 - Driving assembly; 21 - Driving component; 22 - Positioning component; 221 - Connecting part; 222 - Pressing part; 23 - Driving switch; 30 - Test platform; 31 - First test part; 32 - Second test part; 40 - Reminder module; 41 - Indicator light; 42 - Buzzer; 2 - Atomization core; 201 - First electrode; 202 - Second electrode; 3 - Detector. Detailed implementation manners

[0023] The present application will be further described in detail below in conjunction with the accompanying drawings through specific implementation manners. Similar elements in different implementation manners adopt related similar element numbers. In the following implementation manners, many details are described to enable a better understanding of the present application. However, those skilled in the art can easily recognize that some of the features can be omitted in different situations, or can be replaced by other elements, materials, and methods. In some cases, some operations related to the present application are not shown or described in the specification, which is to avoid the core part of the present application being overwhelmed by excessive description. For those skilled in the art, it is not necessary to describe these related operations in detail, and they can fully understand the related operations based on the description in the specification and the general technical knowledge in the art.

[0024] In addition, the features, operations, or characteristics described in the specification can be combined in any appropriate manner to form various implementation manners. At the same time, the steps or actions in the method description can also be reordered or adjusted in an obvious manner by those skilled in the art. Therefore, the various sequences in the specification and drawings are only for clearly describing a certain embodiment and do not mean a necessary sequence unless it is stated that a certain sequence must be followed.

[0025] The serial numbers assigned to the components herein, such as "first", "second", etc., are only used to distinguish the described objects and do not have any sequential or technical meaning. The "connection" and "coupling" mentioned in the present application, unless otherwise specified, both include direct and indirect connection (coupling).

[0026] Such as Figure 1 and Figure 2As shown in the figure, the present application provides a resistance value detection device 1, which can be used in cooperation with a detector 3 to detect the resistance value of the atomization core 2 in a product. The resistance value detection device 1 includes a support frame 10, a driving component 20, and a test platform 30. Among them, the support frame 10 is used to install the driving component 20 and the test platform 30. The test platform 30 is electrically connected to the detector 3 to form an unclosed detection circuit. The atomization core 2 can be placed on the test platform 30. The detector 3 can be configured to detect the resistance value of the atomization core 2 through the test platform 30. When the atomization core 2 is placed on the test platform 30 and the positioning member 22 is located at the detection position, the atomization core 2 is connected to the unclosed detection circuit to form a closed circuit. At this time, the detector 3 can detect the resistance value of the atomization core 2. The driving component 20 is used to relatively stably position the atomization core 2 on the test platform 30 when detecting, that is, when the positioning member 22 is located at the detection position, to ensure the stability of the atomization core 2 during the resistance value detection process and the accuracy of the detection by the test platform 30.

[0027] Refer to together Figure 4 , the test platform 30 is arranged on the support frame 10 and is used to be electrically connected to the electrodes of the atomization core 2 respectively. The detector 3 is electrically connected to the test platform 30, and the two are connected to form an unclosed detection circuit. When the positioning member 22 is located at the detection position and the test platform 30 is electrically connected to the atomization core 2, a closed detection circuit is formed. At this time, the detector 3 can detect the resistance value of the atomization core 2.

[0028] The driving component 20 is arranged on one side of the test platform 30 and includes a driving member 21 and a positioning member 22. Among them, the positioning member 22 is arranged at an interval from the test platform 30 and is connected to the driving member 21. The driving member 21 can drive the positioning member 22 to move, approaching or moving away from the test platform 30.

[0029] Among them, the detection position is included in the moving path of the positioning member 22. When the positioning member 22 is located at the detection position, the atomization core 2 located on the test platform 30 is electrically connected to the test platform 30. In one embodiment, the positioning member 22 can press the electrodes of the atomization core 2 onto the test platform 30. It can enable the electrodes of the atomization core 2 to be positioned between the positioning member 22 and the test platform 30 to maintain the stability of the atomization core 2 during the resistance value detection process and ensure the accuracy of the resistance value detection.

[0030] In one embodiment, the atomization core 2 includes an atomization resistor and two electrodes, and the two electrodes are electrically connected to the two poles of the atomization resistor respectively. When detecting the resistance value of the atomization core 2, the two electrodes of the atomization core 2 are positioned on the test platform 30 by the positioning member 22 to form a closed detection circuit, and the detector 3 can detect the resistance value of the atomization core 2.

[0031] Among them, the "resistance value of the atomization core 2" can be understood to include the resistance values of the atomization resistor and the two electrodes.

[0032] For example, taking the atomizer core 2 in the atomizer device as an example, one of the components of the atomizer core 2 may include an atomizer tube, a liquid guide and a heating element, wherein the liquid guide is installed in the atomizer tube, and the heating element is installed inside the liquid guide; the types of heating elements include glass fiber rope heating wire, cotton-wrapped heating wire, cylindrical ceramic core, thick film printed ceramic core, steel sheet inlaid ceramic core, etc.; the heating element mainly includes an atomizer resistor and two electrodes, and the atomizer resistor includes a heating wire, a heating sheet, a heating net, a heating ceramic, etc. The two electrodes are electrically connected to the two poles of the atomizer resistor respectively, and the atomizer resistor is heated by the two electrodes. The atomizer resistor contacts the liquid guide to heat the aerosol matrix on the atomizer liquid guide and atomize to form an aerosol.

[0033] When using the test chuck on the existing detector to clamp the electrodes of the atomizer core 2 for testing, the operator needs to manually clamp and connect the two test chucks to the two electrodes of the atomizer core 2 for each atomizer core 2, which is inefficient. When the test chuck clamps the electrodes of the atomizer core 2, the two are not relatively fixed in a certain position. When the operator picks up the two test chucks separately, it is easy to pull the electrode leads of the atomizer core 2, which leads to the potential risk of deformation of the connected resistor (resistance wire or other deformable resistors), which can easily lead to an increase in product defective rate. Furthermore, in the process of clamping the electrode with the test chuck, since the electrodes of the atomizer core 2 are very small and the clamping surface of the chuck is generally a corrugated surface, there is a potential risk of poor contact between the electrode and the chuck, resulting in inaccurate testing. At the same time, the aging of the chuck, changes in the clamping position and force will also increase the probability of inaccurate testing.

[0034] This application sets up a test platform 30 and cooperates with the detector 3 to construct a non-closed detection loop. When the detection process needs to be carried out, it is only necessary to place the electrodes of the atomizer core 2 on the test platform 30 so that they are in contact with each other, so as to achieve the closure of the detection loop and carry out the detection operation. At the same time, by setting up a relatively fixed support frame 10, it can be ensured that the position of the test platform 30 is relatively fixed. During the detection process, the electrodes of the atomizer core 2 can be placed on it. Such a structural setting does not require the use of a freely movable chuck to clamp the electrodes, causing deformation of the atomizer core 2. It also indirectly improves the quality control of the atomizer core 2, and for the atomization device, it can further ensure the consistency of the user's inhalation taste.

[0035] By providing the drive assembly 20, the present application can achieve a relatively stable electrical connection between the atomizer core 2 and the test platform 30 by pressing the atomizer core 2 through the positioning member 22 during the detection process, thereby avoiding the occurrence of poor electrical contact between the test platform 30 and the atomizer core 2, thereby improving the accuracy of the detection.

[0036] In the present application, the test platform 30 cooperates with the drive assembly 20 to control the pressing of the drive assembly 20 and the test platform 30 on the electrodes of the atomizer core 2 to achieve electrical connection, which can reduce the operation steps of connecting the test chuck to the two electrodes of the atomizer core 2 respectively, realize the rapid electrical connection and detection of the electrodes of the atomizer core 2, and improve the working efficiency.

[0037] In some embodiments, the movement path of the positioning member 22 also includes an operating position, and the driving member 21 can drive the positioning member 22 to move between the detection position and the operating position. The detection position is located between the operating position and the test platform 30, and is closer to the test platform 30 than the operating position. When the positioning member 22 is in the operating position, the positioning member 22 is spaced apart from the test platform 30. In other words, when the positioning member 22 is in the operating position, the atomizer core 2 can be placed on or removed from the test platform 30.

[0038] It should be understood that since the electrodes of the atomizer core 2 are solid structures with certain spatial dimensions, when they are sandwiched between the positioning member 22 and the test platform 30 (when the positioning member 22 is in the "detection position"), a small gap exists between the positioning member 22 and the test platform 30. The width of the gap is adapted to the dimensions of the electrodes of the atomizer core 2. If the positioning member 22 is configured as an elastic structure, it can also be positioned in a flush fit with the test platform 30 when in the "detection position."

[0039] It should be understood that the phrase "when the positioning member 22 is in the operating position, the positioning member 22 is spaced apart from the testing platform 30" does not include the situation where the electrode of the atomizer core 2 is clamped between the positioning member 22 and the testing platform 30, resulting in a slight gap between the positioning member 22 and the testing platform 30. In other words, when the positioning member 22 is in the operating position, the spacing between the positioning member 22 and the testing platform 30 must ensure that the electrode of the atomizer core 2 can be freely removed and placed in the space between the positioning member 22 and the testing platform 30.

[0040] It should be understood that the "detection position" and "operation position" of the positioning member 22 are not limited to a single fixed position. Due to the different electrode structures of different atomizer cores 2, when they are pressed between the positioning member 22 and the testing platform 30, the spacing between the positioning member 22 and the testing platform 30 will also vary. In other words, the detection position needs to be flexibly set for different atomizer cores 2. The operation position can be selected at any position within the travel range of the positioning member 22. At this position, the electrodes of the atomizer core 2 can be freely placed between the positioning member 22 and the testing platform 30.

[0041] In some embodiments, the test platform 30 includes a first test unit 311 and a second test unit 312. Among them, the first test unit 311 and the second test unit 312 are arranged at intervals on the support frame 10 and are respectively used for electrically connecting with two electrodes of the atomization core 2. The detector 3 is respectively connected to the first test unit 311 and the second test unit 312, and the three are connected to form an open detection circuit. The interval between the first test unit 311 and the second test unit 312 is equivalent to the open part in the open detection circuit.

[0042] The electrodes of the atomization core 2 include a first electrode 201 and a second electrode 202. The first test unit 311 can be electrically connected to the first electrode 201, and the second test unit 312 can be electrically connected to the second electrode 202.

[0043] In this embodiment, both the first test unit 311 and the second test unit 312 are sheet-shaped, and the driving assembly 20 is located on the side of the first test unit 311 and the second test unit 312 away from the support frame 10. During the detection process, first, it is necessary to control the driving member 21 to drive the positioning member 22 to move to the operation position. At this time, the operator can place the two electrodes of the atomization core 2 on the first test unit 311 and the second test unit 312 respectively.

[0044] Further, the operator controls the driving member 21 to drive the positioning member 22 to move from the operation position to the detection position, so that the first electrode 201 of the atomization core 2 is respectively clamped between the positioning member 22 and the first test unit 311, and the second electrode 202 is clamped between the positioning member 22 and the second test unit 312.

[0045] At this time, the resistance value detected by the detector 3 can be read, and it can be regarded as the resistance value of the atomization core 2.

[0046] Further, the operator controls the driving member 21 to drive the positioning member 22 to move from the detection position to the operation position, take out the detected atomization core 2, and then put in a new atomization core 2 to be detected, and repeat the above steps to achieve rapid and efficient detection of the resistance values of multiple atomization cores 2.

[0047] By setting the first test unit 311 and the second test unit 312 as sheet-shaped, the contact area between the test platform 30 and the electrodes of the atomization core 2 is expanded, and the universality and compatibility of the resistance value detection device 1 are improved. It is applicable to the electrodes with different interval distances of atomization cores 2 of different sizes.

[0048] In some other alternative embodiments, the first testing part 311 and the second testing part 312 can also be in various shapes or irregular blocks, or can be in the shape of a plate with a certain arc or corrugation, etc. When the first testing part 311 and the second testing part 312 are set to shapes other than sheet-like, the shape of the positioning member 22 needs to be adapted to the surface shape of the atomizing core 2 where the first testing part 311 and the second testing part 312 can place the atomizing core 2, so as to ensure the stability of the electrode pressing of the atomizing core 2 between the two, and achieve a stable electrical connection between the electrode and the testing platform 30.

[0049] As Figure 1 shown, in this embodiment, taking the angle at which the resistance detection device 1 is placed during the normal detection process as a reference, the driving assembly 20 is located on the top side of the testing platform 30 (that is, Figure 1 the upper end side at this angle), and the positioning member 22 moves back and forth in the vertical direction. Such an angle setting can facilitate the operation of the operator, and at the same time, the atomizing core 2 can be easily placed under its own gravity.

[0050] In some other alternative embodiments, the first testing part 311 and the second testing part 312 can also be set on the top of the driving assembly 20, and the driving assembly 20 is set at the bottom position. Or the driving assembly 20 is set on one side of the first testing part 311 and the second testing part 312, and by driving the horizontal movement of the positioning member 22, the positioning member 22 is made to approach and move away from the first testing part 311 and the second testing part 312.

[0051] In some embodiments, the support frame 10 includes a base 11 and a mounting seat 12. Among them, the mounting seat 12 is detachably provided on the base 11, and the first testing part 311 and the second testing part 312 are detachably provided on the mounting seat 12.

[0052] By setting the first testing part 311 and the second testing part 312 to be detachably mounted on the mounting seat 12, new first testing part 311 and second testing part 312 can be replaced according to the specific use situation of the resistance detection device 1. By setting the mounting seat 12 to be detachably connected to the base 11, the user can replace the mounting seat 12 with different heights according to the specific situation, so that the first testing part 311 and the second testing part 312 can be flexibly at various horizontal heights, so as to ensure the portability for the operator to use.

[0053] Furthermore, the support frame 10 further includes a bracket 13, which is detachably provided on the base 11 and is used to mount the driving member 21. The driving member 21 is detachably provided on the bracket 13 to achieve the vertical spacing positional relationship between it and the first testing part 311 and the second testing part 312.

[0054] In this embodiment, the bracket 13 is in the shape of a longitudinally elongated plate, which is erected on the base 11 and located on one side of the mounting seat 12. Based on the angle at which the resistance detection device 1 is placed during the normal detection process, the bracket 13 can be located at the rear side of the mounting seat 12 for easy operation. The driving member 21 is installed on the side surface of the top end of the bracket 13, and both the driving member 21 and the mounting seat 12 are located on the same side of the bracket 13.

[0055] By detachably arranging the bracket 13 and the driving member 21, different driving members 21 can be replaced according to the specific detection situation. For example, if the vertical distance between the mounting seat 12 and the driving member 21 is too far, a driving member 21 with a greater driving distance for the positioning member 22 can be replaced, etc.

[0056] In some embodiments, the support frame 10 may further include a mounting plate 14, which is arranged on the bracket 13 and used for mounting the driving member 21.

[0057] By setting the mounting plate 14, the relative positional relationship between the driving member 21 and the mounting seat 12 can be changed to ensure that when the positioning member 22 connected to the driving member 21 is in the detection position, it can be arranged in contact with the first test portion 311 and the second test portion 312 on the mounting seat 12.

[0058] In this embodiment, the driving member 21 is a cylinder.

[0059] Specifically, the cylinder is fixed on the bracket 13, and its moving end (i.e., the piston) is connected to the positioning member 22. By the expansion and contraction of the piston, the movement of the positioning member 22 is realized.

[0060] In some other alternative embodiments, the driving member 21 can also be set as a lead screw structure or a guide rail structure. By mounting the positioning member 22 on the nut seat of the lead screw or arranging it on the moving structure of the guide rail and setting driving components such as a motor, the driving of the positioning member 22 can also be realized.

[0061] In some embodiments, the positioning member 22 includes a connecting portion 221 and a pressing portion 222. Among them, the connecting portion 221 is arranged between the driving member 21 and the pressing portion 222, and is respectively connected to the driving member 21 and the pressing portion 222. When the driving member 21 is a cylinder, the piston of the cylinder is connected to the connecting portion 221, and the pressing portion 222 is driven to reciprocate relative to the positioning member 22 through the connecting portion 221. When the positioning member 22 is in the detection position, the pressing portion 222 cooperates with the first test portion 311 and the second test portion 312 respectively to press the electrodes of the atomization core 2 from opposite sides.

[0062] In this embodiment, with the angle at which the resistance detection device 1 is placed during the normal detection process as the reference, the connecting portion 221 is located at the top of the pressing portion 222. The side of the connecting portion 221 facing away from the pressing portion 222 is connected to the end of the cylinder piston. The side of the pressing portion 222 facing away from the connecting portion 221 faces the first test portion 311 and the second test portion 312.

[0063] It should be understood that components such as the mounting base 12 and the pressing portion 222 that can directly contact the electrodes of the atomization core 2 need to be made of insulating materials.

[0064] Specifically, the pressing portion 222 can be made of polyurethane elastomer (commonly known as U-force glue), which has slightly elastic properties and also has insulating properties. It can not only avoid damaging the electrodes of the atomization core 2 during the pressing process but also achieve a tight and stable pressing effect. The mounting base 12 can be made of bakelite with insulating properties.

[0065] In some other alternative embodiments, the pressing portion 222 and / or the mounting base 12 can also be made of other insulating materials, and rigid materials can also be selected as long as they have insulating properties.

[0066] It should be understood that the pressing portion 222 and the connecting portion 221 can be set to be detachably connected to facilitate the replacement of the pressing portion 222 and ensure its pressing effect.

[0067] The connecting portion 221 can be made of a material with relatively weak elastic properties in some embodiments to ensure relatively stable support and connection and avoid different pressing forces at different positions during the pressing process.

[0068] As Figure 3 shown, in some embodiments, the driving assembly 20 further includes a driving switch 23, which is electrically connected to the driving member 21 and is used to control the operation of the driving member 21 to realize the driving of the positioning member 22 by the driving member 21.

[0069] Furthermore, in this embodiment, the driving switch 23 adopts an existing foot-operated switch, which is placed beside the operator's feet during use. The operator steps on it to realize the switching operation of the driving member 21. Such a setting method can further reduce the operation difficulty of the operator and facilitate the operator to perform fast and efficient detection operations.

[0070] As Figure 4 shown, in some embodiments, the resistance detection device 1 further includes a reminder module 40, which is electrically connected to the detector 3 and is used to send corresponding prompt information according to the detection result of the detector 3.

[0071] By providing a reminder module 40, during the detection process, operators can quickly obtain the detection results based on the prompt information, shortening the judgment time and improving the detection efficiency. In addition, there is no need for operators to frequently check the values on the detector 3 and manually determine whether the resistance value of the atomizing core 2 meets the product requirements, reducing the work pressure and fatigue of the operators, reducing the detection accuracy problems caused by operation errors, and further improving the quality control of the atomizing core 2.

[0072] Specifically, the reminder module 40 may include an indicator light 41 and a buzzer 42. Among them, the indicator light 41 and the buzzer 42 are respectively electrically connected to the detector 3. The indicator light 41 is used to emit corresponding light source prompt information according to the detection result of the detector 3. The buzzer 42 is used to emit corresponding sound prompt information according to the detection result of the detector 3.

[0073] By providing the indicator light 41 and the buzzer 42, a dual reminder effect can be achieved, strengthening the reminder effect on operators and further reducing the potential for misjudgment. At the same time, it can also reduce the interference caused by external factors such as the voices (or lights) of other operators to the operators.

[0074] Specifically, as Figure 1 and Figure 2 shown, in this embodiment, the indicator light 41 is arranged at the top of the bracket 13, and the buzzer 42 is arranged on the base 11. During detection, the setting position of the indicator light 41 can be closer to the operator's eyes, facilitating the operator's observation.

[0075] In some other alternative embodiments, the indicator light 41 and the buzzer 42 can also be arranged on any component such as the support frame 10 (even the driving member 21, the detector 3). The indicator light 41 and the buzzer 42 can be arranged on the same component or on different components.

[0076] In some other alternative embodiments, only the indicator light 41 or only the buzzer 42 can be provided.

[0077] In some other alternative embodiments, the reminder module 40 can also be set as a display screen or other reminder components that can play a reminder function.

[0078] It should be understood that the "detection result of the detector 3" can be understood as whether the resistance value of the atomizing core 2 detected by the detector 3 falls within the target range.

[0079] On this premise, "the indicator light 41 is used to emit corresponding light source prompt information according to the detection result of the detector 3", which may be that when the resistance value of the atomizing core 2 detected by the detector 3 falls within the target range, light source prompt information is emitted. It may also be that when the resistance value of the atomizing core 2 detected by the detector 3 does not fall within the target range, light source prompt information is emitted. It may also be that when the resistance value of the atomizing core 2 detected by the detector 3 falls within the target range, one type of light source prompt information is emitted, and when the resistance value of the atomizing core 2 detected by the detector 3 does not fall within the target range, another type of light source prompt information is emitted. The same applies to "the buzzer 42 is used to emit corresponding sound prompt information according to the detection result of the detector 3", which will not be elaborated here.

[0080] For the "target range", it may refer to an interval formed by combining the ideal resistance value of the atomizing core 2 as the benchmark and the reasonable error value generated during the production process as the floating value. Since the ideal resistance values of the atomizing cores 2 in different batches, different products, and different models are different, and the reasonable error values generated during the production process are also different, the target range is not fixed. No specific limitation is made here.

[0081] It should be understood that the detector 3 can select a type whose target range can be preset, so as to generate different target ranges for different resistance ranges.

[0082] It should be understood that the detector 3 can achieve the above effects by selecting existing technologies. For example, an existing detector 3 with numerical preset can be directly selected. For another example, a resistance detection device without numerical preset can also be selected and electrically connected to a comparator that can perform numerical preset. The two together constitute the detector 3 in this embodiment. There are many available existing technologies, which will not be listed one by one here, nor will they be limited.

[0083] During the specific use process, first, the power switches of the driving member 21 and the detector 3 need to be turned on to make them in the startup standby state. For the atomizing cores 2 of the same batch, the target range is preset on the detector 3.

[0084] Further, the operator steps on the driving switch 23 to control the driving member 21 to drive the positioning member 22 to move to the operation position. At this time, the operator can place the two electrodes of the atomizing core 2 on the first test part 311 and the second test part 312 respectively.

[0085] Further, the operator steps on the driving switch 23 again to control the driving member 21 to drive the positioning member 22 to move from the operation position to the detection position, so that the first electrode 201 is tightly clamped between the positioning member 22 and the first test part 311, and the second electrode 202 is tightly clamped between the positioning member 22 and the second test part 312.

[0086] Further, the operator determines whether the detection result of the atomization core 2 is qualified (falls within the target resistance range) according to the prompt information given by the indicator light 41 and the buzzer 42.

[0087] Further, the operator steps on the drive switch 23 again to control the drive member 21, driving the positioning member 22 to move from the detection position to the operation position, taking out the detected atomization core 2, and then putting in a new atomization core 2 to be detected, and repeating the above steps.

[0088] It should be understood that in this embodiment, the atomization core 2 in the atomization core of a certain atomization device is used to exemplarily illustrate the present application, and it cannot be regarded as a limitation to the present application and its application. That is, the resistance detection device 1 constructed in the present application can also be applied to detect the resistance of the atomization core 2 in other products.

[0089] As Figure 4 shown, the present application also constructs a detection device, including a detector 3 and the resistance detection device 1 in any of the above embodiments.

[0090] The above uses specific examples to elaborate on the present application, which is only used to help understand the present application and is not intended to limit the present application. For those skilled in the technical field to which the present application belongs, according to the idea of the present application, several simple deductions, deformations or substitutions can also be made.

Claims

1. A resistance value detection device, used in cooperation with a detector (3) for detecting an atomization core (2), characterized in that Comprising: A support frame (10); A test platform (30) for placing the atomization core (2), the test platform (30) is arranged on the support frame (10), and the test platform (30) is electrically connected to the detector (3); A driving assembly (20), mounted on the support frame (10) and arranged on one side of the test platform (30); the driving assembly (20) includes a driving member (21) and a positioning member (22), the driving member (21) is connected to the positioning member (22) and drives the positioning member (22) to approach or move away from the test platform (30); the positioning member (22) includes a detection position, when the positioning member (22) is at the detection position, the atomization core (2) on the test platform (30) is electrically connected to the test platform (30); the detector (3) is configured to detect the resistance value of the atomization core (2) through the test platform (30).

2. The resistance value detection device according to claim 1, characterized in that The positioning member (22) further has an operation position, the detection position is located between the operation position and the test platform (30), and the driving member (21) drives the positioning member (22) to reciprocate between the operation position and the detection position; when the positioning member (22) is at the operation position, the positioning member (22) is spaced from the test platform (30).

3. The resistance value detection device according to claim 1, characterized in that The test platform (30) includes a first test part (311) and a second test part (312), the atomization core (2) includes a first electrode (201) and a second electrode (202), when the atomization core (2) is electrically connected to the test platform (30), the first test part (311) is electrically connected to the first electrode (201), and the second test part (312) is electrically connected to the second electrode (202).

4. The resistance value detection device according to claim 1, characterized in that The support frame (10) includes a base (11) and a mounting seat (12), the mounting seat (12) is detachably arranged on the base (11), and the test platform (30) is detachably arranged on the mounting seat (12).

5. The resistance value detection device according to claim 4, wherein The support frame (10) further includes a bracket (13), the bracket (compatible with the test platform (30).

6. The resistance value detection device according to claim 1, characterized in that, The driving member (21) includes a cylinder, the positioning member (22) includes a connecting portion (221) and a pressing portion (222), the connecting portion (221) is connected between the cylinder and the pressing portion (222), and the cylinder drives the pressing portion (222) to reciprocate relative to the positioning member (22) through the connecting portion (221).

7. The resistance value detection device according to claim 1, characterized in that, The driving assembly (20) further includes a driving switch (23), the driving switch (23) is electrically connected to the driving member (21) for controlling the operation of the driving member (21), and the driving switch (23) includes a foot-operated switch.

8. The resistance value detection device according to claim 1, wherein The resistance value detection device further includes a reminder module (40), the reminder module (40) is electrically connected to the detector (3), and the reminder module (40) is used to send corresponding prompt information according to the detection result of the detector (3).

9. The resistance value detection device according to claim 8, characterized in that, The reminder module (40) includes an indicator light (41), and the indicator light (41) is used to send corresponding light source prompt information according to the detection result of the detector (3); And / or, the reminder module (40) further includes a buzzer (42), and the buzzer (42) is used to send corresponding sound prompt information according to the detection result of the detector (3).

10. A detection device, characterized in that, The detection device includes a detector (3) and the resistance value detection device (1) according to any one of claims 1-9.