Detection equipment of electronic atomizer
By integrating gas detection and power supply functions into one testing device, the problem of limited functionality in electronic atomizer testing equipment has been solved, achieving an efficient testing process, reducing costs, and improving production efficiency and product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-03-27
AI Technical Summary
Existing electronic atomizer testing equipment has limited functionality and requires frequent changes of workstations for different tests, resulting in low production efficiency and a large amount of manual handling, which increases production costs.
A testing device integrating multiple testing functions was designed. The electronic atomizer is stably placed by a fixing mechanism. The first testing mechanism is used for gas detection, and the second testing mechanism is used for power supply and output power detection. The displacement and docking of the mechanism are realized by the first driving mechanism and the second driving mechanism respectively, avoiding frequent changes of workstation.
This improved the testing efficiency of electronic atomizers, reduced the need for manual handling, lowered production costs, and enhanced product quality and user satisfaction.
Smart Images

Figure CN224052143U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of product benign testing, and in particular to a detection device for an electronic atomizer. BACKGROUND
[0002] An electronic atomizer is a device that converts liquid into fine particles, widely used in medical, entertainment and daily consumer product fields, especially as a substitute for traditional cigarettes. Compared with traditional cigarettes, electronic atomizers do not produce open flames during use, thereby greatly reducing the risk of fire and eliminating the need to handle cigarette butts, reducing environmental pollution. In addition, electronic atomizers provide a variety of flavor options, allowing users to adjust the taste and concentration of the smoke according to personal preferences, ensuring that the inhaled smoke is softer and less irritating, providing a more comfortable air environment for the user and those around them.
[0003] In order to ensure that the quality and performance of electronic atomizers meet market standards, they must undergo rigorous functional testing after manufacturing is complete. These tests include, but are not limited to, charging tests and smoke production tests. Charging tests mainly verify whether the device's battery can normally receive and store electrical energy to support long-term stable operation, while smoke production tests verify whether the device can work normally, such as whether the amount of smoke produced meets design requirements. Through this series of tests, it can be ensured that each piece of electronic atomizer leaving the factory has good user experience and safety.
[0004] However, the current detection device for electronic atomizers has some shortcomings, affecting production efficiency and cost control. In the existing detection process, electronic atomizers need to be frequently transferred between multiple different detection stations to complete different test items. This operating method not only increases the workload of manual handling, but also makes the entire detection process time-consuming, resulting in low production efficiency. Therefore, it is particularly important to develop an automated detection device that can integrate multiple testing functions in one. CONTENT OF THE INVENTION
[0005] The detection device for an electronic atomizer provided in the embodiments of the present application solves the technical problem of the detection device in the prior art having a single test function and requiring frequent station changes during testing of the electronic atomizer, and the technical solution is as follows:
[0006] This application provides a detection device for an electronic atomizer, comprising: a fixing mechanism for placing the electronic atomizer; a first detection mechanism capable of displacement relative to the fixing mechanism, the first detection mechanism being able to connect or disconnect from the electronic atomizer, wherein when the first detection mechanism is connected to the electronic atomizer, the first detection mechanism is used to collect gas in the electronic atomizer and perform gas detection; and a second detection mechanism capable of displacement relative to the fixing mechanism, the second detection mechanism being able to connect or disconnect from the electronic atomizer, wherein when the second detection mechanism is connected to the electronic atomizer, the second detection mechanism is used to supply electrical energy to the electronic atomizer and detect the output power.
[0007] In one embodiment, the device further includes: a testing platform, wherein a fixing mechanism is installed on the testing platform to form a fixed workstation on the testing platform; a first driving mechanism, installed on the testing platform and connected to the first testing mechanism, the first driving mechanism driving the first testing mechanism to move closer to or away from the fixing mechanism; and a second driving mechanism, installed on the testing platform and connected to the second testing mechanism, the second driving mechanism driving the second testing mechanism to move closer to or away from the fixing mechanism.
[0008] In one embodiment, the first detection mechanism includes: a first connector mounted on a first drive mechanism and displaced on a detection platform by the drive mechanism; a first mounting base mounted on the first connector and displaced synchronously with the first connector; and a first detection component disposed on the first mounting base for connecting an electronic atomizer.
[0009] In one embodiment, the first detection component includes: a first connector mounted on a first mounting base, the first connector having an air inlet end and an air outlet end, the air inlet end being used to connect with an electronic atomizer; an adapter component communicating with the air outlet end, the adapter component being used to communicate with a negative pressure device; and a sensing component disposed on the adapter component for sensing gas within the adapter component.
[0010] In one embodiment, the first driving mechanism includes: a first driving component mounted on a detection platform, the first driving component having a first output portion capable of linear reciprocating motion; and a first slider slidably mounted on one side surface of the first driving component and connected to the first output portion.
[0011] The first detection mechanism is mounted on the detection platform via a first slider and a first driving component, and the first detection mechanism moves synchronously with the first slider.
[0012] In one embodiment, the second detection mechanism includes: a second connector mounted on the second drive mechanism and displaced on the detection platform by the drive mechanism; a second mounting base mounted on the second connector and displaced synchronously with the second connector; and a second detection component disposed on the second mounting base for connecting an electronic atomizer.
[0013] In an embodiment, the second detection mechanism further comprises: a guide sleeve arranged on the second mounting base, the guide sleeve having a guide through hole penetrating through the second mounting base; and an elastic element elastically supported between the second mounting base and the second detection assembly;
[0014] The second detection assembly comprises: a guide base provided with a guide column on a side close to the second mounting base, the guide column being slidably arranged in the guide through hole; the guide base being provided with a guide block on a side away from the second mounting base, the guide block having a guide surface matched with an external structure of the electronic atomizer; a second connector embedded in the guide block below the guide surface, the guide surface being capable of assisting the second connector to plug the electronic atomizer, the second connector being configured to be electrically connected with the power supply detection device.
[0015] In an embodiment, the second driving mechanism comprises: a second driving component mounted on the detection platform, the second driving component having a second output portion capable of performing linear reciprocating motion; and a second sliding block slidably mounted on a side surface of the second driving component and connected with the second output portion.
[0016] The second detection mechanism is mounted on the detection platform through the second sliding block and the second driving component, and the second detection mechanism is synchronously displaced with the second sliding block.
[0017] In an embodiment, the fixing mechanism comprises: a base mounted on the detection platform; and a fixing base fixed on a top of the base and provided with a mounting groove for placing the electronic atomizer on a side away from the base.
[0018] The groove wall of the mounting groove is provided with a first notch for exposing a mouthpiece of the electronic atomizer, and the groove wall of the mounting groove is provided with a second notch for exposing a charging port of the electronic atomizer.
[0019] In an embodiment, the detection platform comprises: an operation table having a table top on a top thereof, the first driving mechanism and the second driving mechanism being mounted on the table top, the operation table being provided with two start buttons arranged at intervals on a side thereof; a control mechanism connected to a side of the operation table and located above the table top, the control mechanism being configured to control opening and closing of the first driving mechanism and the second driving mechanism, the control mechanism being provided with a touch display screen, an indicator light and an alarm; and safety grates mounted on opposite sides of the operation table and signal-connected with the control mechanism to form an induction area above the table top through the safety grates.
[0020] Compared with the prior art, the detection device of the electronic atomizer in the technical scheme can stably place the electronic atomizer on the fixing mechanism, and realize two function tests on the electronic atomizer at the same position. Specifically, the first detection mechanism and the second detection mechanism can be displaced to be close to the electronic atomizer fixed on the fixing mechanism, wherein the first detection mechanism is connected with the electronic atomizer, and the internal air of the electronic atomizer is drawn to simulate the actual use condition, so as to test whether the electronic atomizer can normally smoke; the second detection mechanism is connected with the charging port of the electronic atomizer, and provides electric energy to the electronic atomizer to evaluate the output power of the electronic atomizer when receiving the electric energy, so as to ensure that the device can be normally charged. The greatest advantage of the present application is that the electronic atomizer can complete the smoke test and the charging test on the fixing mechanism, and does not need to be frequently transported from one detection station to another, so that the test efficiency is significantly improved, the need for manual transportation is reduced, a large amount of human resources is saved, and the production cost is reduced. In summary, the test process of the electronic atomizer is greatly optimized, the work efficiency is improved, the cost is reduced, and the quality of the final product and the user satisfaction are improved.
[0021] The above summary is intended to illustrate, but not limit, the present application in any way. In addition to the illustrative aspects, embodiments and features described above, further aspects, embodiments and features of the present application will be readily apparent to those skilled in the art by reference to the drawings and the following detailed description. BRIEF DESCRIPTION OF DRAWINGS
[0022] In the drawings, like reference numerals refer to same or similar functionalities throughout the several views. The drawings are not necessarily to scale. It is to be understood that the drawings only depict several embodiments of the disclosure and are not to be considered as limiting the scope of the disclosure.
[0023] Figure 1 is a schematic view of the three-dimensional structure of the detection device of the electronic atomizer in the embodiment of the present application;
[0024] Figure 2 is a schematic view of the three-dimensional structure of the detection device of the electronic atomizer in the embodiment of the present application; Figure 1 is an enlarged view of part A of the detection device of the electronic atomizer in the embodiment of the present application;
[0025] Figure 3 is a schematic view of the three-dimensional structure of the fixing mechanism in the embodiment of the present application;
[0026] Figure 4 is a schematic view of the three-dimensional structure of the first detection mechanism and the first driving mechanism in the embodiment of the present application;
[0027] Figure 5 is an exploded schematic view of the first driving mechanism in the embodiment of the present application;
[0028] Figure 6 It is a schematic view of the stereoscopic structure of the second detection mechanism and the second driving mechanism in the embodiment of the application;
[0029] Figure 7 It is an exploded schematic view of the second driving mechanism in the embodiment of the application.
[0030] Reference signs:
[0031] 1, detection platform;
[0032] 11, operation table; 12, control mechanism; 13, safety grating;
[0033] 101, start button; 102, touch display screen; 103, indicator light; 104, alarm;
[0034] 2, fixing mechanism;
[0035] 21, base; 22, fixing seat;
[0036] 221, mounting groove; 222, first notch; 223, second notch;
[0037] 3, first detection mechanism;
[0038] 31, first connecting piece; 32, first mounting seat; 33, first detection assembly;
[0039] 331, first joint; 332, adapter component; 333, sensing component;
[0040] 4, second detection mechanism;
[0041] 41, second connecting piece; 42, second mounting seat; 43, second detection assembly; 44, guide sleeve; 45, guide column; 46, elastic element;
[0042] 431, guide base; 432, guide block; 433, second joint;
[0043] 5, first driving mechanism;
[0044] 51, first driving component; 52, first sliding block; 53, first abutting block; 54, first oil pressure buffering component;
[0045] 511, first output part; 512, first sliding bar; 521, first sliding part; 522, first force receiving part; 523, first sliding groove;
[0046] 6, second driving mechanism;
[0047] 61, second driving component; 62, second sliding block; 63, second abutting block; 64, second oil pressure buffering component;
[0048] 611, second output part; 612, second sliding strip; 621, second sliding part; 622, second force receiving part; 623, second sliding groove. DETAILED DESCRIPTION
[0049] Hereinafter, only certain exemplary embodiments are simply described. As those skilled in the art can recognize, the described embodiments can be modified in various different ways without departing from the spirit or scope of the present application. Therefore, the drawings and the description are considered to be exemplary in nature rather than limiting.
[0050] REFERENCE Figures 1 to 7 As shown, the detection device of the electronic atomizer in the embodiments of the present application can include: a fixing mechanism 2 for placing the electronic atomizer; a first detection mechanism 3 capable of being displaced relative to the fixing mechanism 2, the first detection mechanism 3 being capable of being connected or separated from the electronic atomizer, the first detection mechanism 3 being used for collecting gas in the electronic atomizer and performing gas detection when the first detection mechanism 3 is connected with the electronic atomizer; and a second detection mechanism 4 capable of being displaced relative to the fixing mechanism 2, the second detection mechanism 4 being capable of being connected or separated from the electronic atomizer, the second detection mechanism 4 being used for supplying electric energy to the electronic atomizer and detecting output power when the second detection mechanism 4 is connected with the electronic atomizer.
[0051] Specifically, in the technical scheme adopted in the present application, when the first detection mechanism 3 is close to the fixing mechanism 2, the first detection mechanism 3 can be connected with the electronic atomizer placed on the fixing mechanism 2, specifically, the first detection mechanism 3 can be connected with the mouthpiece of the electronic atomizer in a butt joint manner, so that the first detection mechanism 3 can extract the gas inside the electronic atomizer, thereby detecting the extracted gas to determine whether the electronic atomizer can normally smoke; and when the second detection mechanism 4 is close to the fixing mechanism 2, the second detection mechanism 4 can be connected with the electronic atomizer placed on the fixing mechanism 2, specifically, the second detection mechanism 4 can be connected with the charging port of the electronic atomizer in a plug-in manner, so as to supply electric energy to the electronic atomizer through the second detection mechanism 4, and determine whether the electronic atomizer can normally receive electric energy, i.e., whether it can be normally charged, by detecting the output power of the electric energy.
[0052] In use, the electronic atomizer is placed on the fixing mechanism 2, and the first detection mechanism 3 and the second detection mechanism 4 are located at the initial position, i.e. in a state of separation from the electronic atomizer; the detection device is started, the first detection mechanism 3 can be operated to approach the fixing mechanism 2 through displacement, until the first detection mechanism 3 is connected with the mouthpiece of the electronic atomizer, and the gas in the electronic atomizer is drawn through the mouthpiece to detect whether the gas is smoke; if the detection result is that the gas is smoke, the electronic atomizer passes the test of the first detection mechanism 3, the detection device shows a signal representing that the electronic atomizer is normal in smoke output, otherwise, if the detection result is that the gas is air, the electronic atomizer fails the test of the first detection mechanism 3, the detection device shows a signal representing that the electronic atomizer is abnormal in smoke output, to prompt the operator. The second detection mechanism 4 can also be operated to approach the fixing mechanism 2 through displacement, until the second detection mechanism 4 is connected with the charging port of the electronic atomizer in a plug-in and plug-out manner, the second detection mechanism 4 supplies electric energy to the electronic atomizer through the charging port, and detects the output power of the electric energy, i.e. whether the output voltage and the output current are in the rated range, for example: the rated voltage is 5 volts, and the rated current is 2 amperes; if the detection result is that the output power is in the rated range, the electronic atomizer passes the test of the second detection mechanism 4, the detection device shows a signal representing that the electronic atomizer is normal in charging, otherwise, if the detection result is that the output power exceeds the rated range, the electronic atomizer fails the test of the second detection mechanism 4, the detection device shows a signal representing that the electronic atomizer is abnormal in charging, to prompt the operator. After the detection device of the application is adopted, the frequent replacement of different stations for the smoke output test and the charging test of the electronic atomizer is effectively avoided, not only the efficiency of testing the electronic atomizer is improved, but also the working pressure of the tester is reduced.
[0053] Further, as shown in Figure 1 and Figure 2 In some embodiments, the detection device further comprises: a detection platform 1, the fixing mechanism 2 is installed on the detection platform 1 to form a fixing station on the detection platform 1; a first driving mechanism 5 is installed on the detection platform 1 and connected with the first detection mechanism 3, the first driving mechanism 5 drives the first detection mechanism 3 to approach or move away from the fixing mechanism 2; a second driving mechanism 6 is installed on the detection platform 1 and connected with the second detection mechanism 4, the second driving mechanism 6 drives the second detection mechanism 4 to approach or move away from the fixing mechanism 2.
[0054] Specifically, in the technical scheme adopted in the present application, the fixing mechanism 2, the first detection mechanism 3 and the second detection mechanism 4 are all arranged on the detection platform 1, so that the detection device can be designed to adapt to the height of the operator by the detection platform 1, for example, the height is adjusted to adapt to the standing operator or the height is adjusted to adapt to the sitting operator, and meanwhile, the displacement function of the first detection mechanism 3 and the second detection mechanism 4 can be easily realized. Specifically, the first detection mechanism 3 is arranged on the detection platform 1 and is driven by the first driving mechanism 5 to displace on the detection platform 1, and the second detection mechanism 4 is arranged on the detection platform 1 and is driven by the second driving mechanism 6 to displace on the detection platform 1.
[0055] In one embodiment, the first detection mechanism 3 and the second detection mechanism 4 can be slidingly installed on the detection platform 1, and the first driving mechanism 5 and the second driving mechanism 6 are fixedly installed on the detection platform 1, and the first driving mechanism 5 is connected with the first detection mechanism 3 to drive the first detection mechanism 3 to slide and displace on the detection platform 1, and the second driving mechanism 6 is connected with the second detection mechanism 4 to drive the second detection mechanism 4 to slide and displace on the detection platform 1.
[0056] In the preferred embodiment of the present application, the first driving mechanism 5 and the second driving mechanism 6 can also be fixedly installed on the detection platform 1. The first detection mechanism 3 is slidingly installed on the first driving mechanism 5, and the first detection mechanism 3 is connected with the first output part 511 of the first driving mechanism 5 to drive the first detection mechanism 3 to slide and displace on the first driving mechanism 5 through the first output part 511. The second detection mechanism 4 is slidingly installed on the second driving mechanism 6, and the second detection mechanism 4 is connected with the second output part 611 of the second driving mechanism 6 to drive the second detection mechanism 4 to slide and displace on the second driving mechanism 6 through the second output part 611.
[0057] Further, referring to FIG. 1, Figure 4 In some embodiments, the first detection mechanism 3 includes a first connecting piece 31 installed on the first driving mechanism 5 and driven by the first driving mechanism 5 to displace on the detection platform 1, a first mounting seat 32 installed on the first connecting piece 31 and synchronously displaced with the first connecting piece 31, and a first detection assembly 33 arranged on the first mounting seat 32 and used for connecting the electronic atomizer.
[0058] Specifically, in the technical scheme adopted in the present application, the first connecting piece 31 can be provided in a plate-shaped structure to increase the contact area with the first driving mechanism 5, so as to be installed on one side of the first driving mechanism 5 by means of fasteners, i.e. the side of the first driving mechanism 5 facing away from the detection platform 1, the first driving mechanism 5 being capable of driving the first connecting piece 31 to displace on the detection platform 1, while the first mounting seat 32 can be installed on the side of the first connecting piece 31 facing away from the first driving mechanism 5, and the height of the first mounting seat 32 is adapted to the height of the electronic atomizer on the fixing mechanism 2, and the first detection assembly 33 is arranged on the first mounting seat 32. It should be noted that, in the case of meeting the required height of the first mounting seat 32, the first connecting piece 31 can also be installed on the left side or the right side of the first driving mechanism 5. In use, the first driving mechanism 5 drives the first connecting piece 31 to displace in a sliding manner, driving the first mounting seat 32 to displace synchronously, until the first detection assembly 33 on the first mounting seat 32 is connected with the mouthpiece of the electronic atomizer on the fixing mechanism 2, so that the mouthpiece of the electronic atomizer can be connected with the negative pressure device through the first detection assembly 33, so as to extract the gas in the electronic atomizer and use the gas as the detection medium for the smoke extraction test.
[0059] Further, referring to FIG. 1, Figure 4 In some embodiments, the first detection assembly 33 includes: a first connector 331 installed on the first mounting seat 32, the first connector 331 having an air inlet end and an air outlet end, the air inlet end being used to connect with the electronic atomizer; an adapter component 332 in communication with the air outlet end, the adapter component 332 being used to communicate with the negative pressure device; and a sensing component 333 arranged on the adapter component 332 and used to sense the gas in the adapter component 332.
[0060] Specifically, in the technical scheme adopted in the present application, the first connector 331 has an air inlet end and an air outlet end, and can be installed on the first mounting seat 32 in an embedded manner, so that the air inlet end and the air outlet end of the first connector 331 can be exposed on opposite sides of the first mounting seat 32, the structure of the air inlet end being adapted to the structure of the mouthpiece and being used to connect with the mouthpiece to assist in extracting the gas in the electronic atomizer, and the air outlet end being communicated with the negative pressure device through the adapter component 332. In the present application, the adapter component 332 can be a pipe body capable of conveying gas, one end of the adapter component 332 being communicated with the air outlet end of the first connector 331, and the other end being communicated with the negative pressure device, so as to generate a negative pressure environment in the adapter component 332 through the negative pressure device, to suck the gas in the electronic atomizer into the adapter component 332 through the first connector 331, and the sensing component 333 is arranged on the adapter component 332, which can be a smoke sensor, the sensing component 333 being installed on the outer surface of the adapter component 332 and having a sensing end inserted into the interior of the adapter component 332, so as to be capable of contacting the gas in the interior of the adapter component 332.
[0061] Further, referring to Figure 5 As shown in the drawings, in some embodiments, the first driving mechanism 5 comprises: a first driving component 51 mounted on the detection platform 1, the first driving component 51 having a first output portion 511 capable of linear reciprocating motion; a first sliding block 52 slidably mounted on one side surface of the first driving component 51 and connected with the first output portion 511.
[0062] Wherein, the first detection mechanism 3 is mounted on the detection platform 1 through the first sliding block 52 and the first driving component 51, and the first detection mechanism 3 is synchronously displaced with the first sliding block 52.
[0063] Specifically, in the technical scheme adopted in the present application, the first driving component 51 can be a cylinder, and the first output portion 511 is the piston rod of the cylinder. The cylinder body of the first driving component 51 is fixed on the detection platform 1 by fasteners, and the piston rod of the first driving component 51 can be extended and retracted in the direction of one side of the fixing mechanism 2. In order to realize the sliding displacement of the first detection mechanism 3 on the first driving component 51, a first sliding block 52 is installed on one side of the cylinder body of the first driving component 51. The first sliding block 52 is provided in the form of a plate structure with an L-shaped cross section, so that a first sliding portion 521 and a first stress portion 522 are formed on the first sliding block 52. One side of the first sliding portion 521 is provided with a first sliding groove 523, and one side of the first driving component 51 is provided with a first sliding bar 512, so that the first sliding portion 521 can be installed on one side of the cylinder body of the first driving component 51 through the cooperation of the first sliding groove 523 and the first sliding bar 512. The first stress portion 522 is fixed on the outer end of the piston rod of the first driving component 51, so that when the piston rod of the first driving component 51 is extended and retracted, the first sliding block 52 can be driven to slide on the cylinder body of the first driving component 51. In this embodiment, the first connecting piece 31 of the first detection mechanism 3 can be fixed on the first sliding block 52 by fasteners, specifically on the side of the first sliding portion 521 away from the first driving component 51, so that the first detection mechanism 3 and the first sliding block 52 can be synchronously displaced under the drive of the first driving component 51. When the first driving mechanism 5 and the first detection mechanism 3 are arranged in the manner of this embodiment, the use area of the detection platform 1 is effectively saved, so that when the operator manually adjusts the detection equipment or places the electronic atomizer on the fixing mechanism 2, it is not inconvenient due to the interference of the functional mechanism on the detection platform 1, and it can also make room for other mechanisms, for example, the detection equipment based on the present application continues to add functional mechanisms or detection mechanisms on the detection platform 1.
[0064] Referring to Figure 5As shown, in some embodiments, when the first detection mechanism 3 is in butt joint with the electronic atomizer on the fixing mechanism 2, the displacement speed of the first detection mechanism 3 needs to be limited to avoid damaging the electronic atomizer in the detection process, such as scratches and dents caused by impact. In this embodiment, the first driving mechanism 5 can also be provided with a first buffer assembly, which includes a first oil pressure buffer mounted on the cylinder body of the first driving part 51, and a first abutting block 53 mounted on the first sliding block 52, and the first oil pressure buffer is arranged opposite to the first abutting block 53. In use, when the piston rod of the first driving part 51 drives the first sliding block 52 to displace, the first sliding block 52 drives the first abutting block 53 to displace synchronously, so that the first abutting block 53 can extrude the first oil pressure buffer, and the first oil pressure buffer buffers the force applied by the first abutting block 53 through the internal oil pressure, thereby slowing down the displacement speed of the first sliding block 52. In the butt joint process of the first joint 331 with the mouthpiece of the electronic atomizer, the violent collision between the first joint 331 and the mouthpiece can be avoided to cause damage.
[0065] Further, with reference to Figure 6 As shown, in some embodiments, the second detection mechanism 4 includes a second connecting piece 41 slidably mounted on the second driving mechanism 6 and driven by the second driving mechanism 6 to displace on the detection platform 1, a second mounting seat 42 mounted on the second connecting piece 41 and synchronously displaced with the second connecting piece 41, and a second detection assembly 43 arranged on the second mounting seat 42 and used for connecting the electronic atomizer.
[0066] Specifically, in the technical solution adopted in the present application, the second connecting piece 41 can be provided in a plate-shaped structure to increase the contact area with the second driving mechanism 6, so as to be conveniently mounted on one side of the second driving mechanism 6 by a fastener, i.e. the side of the second driving mechanism 6 facing away from the detection platform 1, and the second driving mechanism 6 can drive the second connecting piece 41 to displace on the detection platform 1, while the second mounting seat 42 can be mounted on the side of the second connecting piece 41 facing away from the second driving mechanism 6, and the height of the second mounting seat 42 is adapted to the height of the electronic atomizer on the fixing mechanism 2, and the second detection assembly 43 is arranged on the second mounting seat 42. It should be noted that, under the condition of meeting the required height of the second mounting seat 42, the second connecting piece 41 can also be mounted on the left side or the right side of the second driving mechanism 6. In use, the second driving mechanism 6 drives the second connecting piece 41 to displace in a sliding manner, driving the second mounting seat 42 to displace synchronously, until the second detection assembly 43 on the second mounting seat 42 is plugged into the charging port of the electronic atomizer on the fixing mechanism 2, so that the electronic atomizer can be electrically connected with the power supply detection device through the second detection assembly 43, and the power supply detection device supplies power to the electronic atomizer to realize the charging test of the electronic atomizer by detecting the rated voltage and the rated current of the output power.
[0067] Further, referring to Figure 6 In some embodiments, the second detection mechanism 4 further comprises a guide sleeve 44 arranged on the second mounting base 42, the guide sleeve 44 having a guide through hole penetrating the second mounting base 42; and a resilient element 46 elastically supported between the second mounting base 42 and the second detection assembly 43.
[0068] The second detection assembly 43 comprises a guide base 431 provided with a guide column 45 on a side close to the second mounting base 42, the guide column 45 being slidably arranged in the guide through hole, the guide base 431 being provided with a guide block 432 on a side away from the second mounting base 42, the guide block 432 having a guide surface matched with an external structure of the electronic atomizer; and a second connector 433 embedded in the guide block 432 below the guide surface, the guide surface being capable of assisting the second connector 433 to be plugged on the electronic atomizer, the second connector being used for electrical connection with the power supply detection device.
[0069] Specifically, in the technical scheme adopted in the present application, in order to realize flexible plugging of the second detection assembly 43 on the charging port of the electronic atomizer, the guide sleeve 44 is embedded in the second mounting base 42, so that the guide column 45 on the guide base 431 is slidably arranged in the guide through hole of the guide sleeve 44, so that the guide base 431 can be limited to move, and the resilient element 46 such as a compression spring is elastically supported between the guide base 431 and the second mounting base 42. In use, the second driving mechanism 6 drives the second detection mechanism 4 to move close to the fixing mechanism 2, until the second detection assembly 43 is in contact with the electronic atomizer, the second detection assembly 43 is subjected to the reaction force of the electronic atomizer, the guide base 431 gradually approaches the second mounting base 42 by cooperation of the guide column 45 and the guide sleeve 44, and the resilient element 46 is compressed, so that the second detection assembly 43 is flexibly plugged with the electronic atomizer. When the second driving mechanism 6 drives the second detection mechanism 4 to move away from the fixing mechanism 2, the resilient element 46 releases the elastic energy to reset the second detection assembly 43.
[0070] Referring to Figure 6As shown, in some embodiments, the guide block 432 is provided on the side of the guide base 431 away from the second mounting base 42, and is used to contact the outer surface of the electronic atomizer, so as to guide the second connector 433 to be in a relative position with the charging port of the electronic atomizer. The guide block 432 is provided with a guide surface matched with the external structure of the electronic atomizer, for example, an arc-shaped surface capable of slidingly guiding and adjusting the electronic atomizer. The second connector 433 is embedded in the guide block 432. In the present embodiment, the guide surface is in contact with the side surface of the electronic atomizer away from the fixing mechanism 2, so that the second connector 433 is arranged below the arc-shaped surface, so that the position of the second connector 433 can be matched with the position of the charging port of the electronic atomizer, and the second connector 433 is guided by the guide block 432 to be inserted into the charging port of the electronic atomizer.
[0071] Referring to Figure 2 As shown, in some embodiments, two groups of second detection mechanisms 4 can be arranged on the detection platform 1 to adapt to electronic atomizers of different models. It should be explained that the positions of the charging ports of electronic atomizers of different models are different, so that one group of second detection mechanisms 4 is arranged in the direction of one side of the fixing mechanism 2, and the other group of second detection mechanisms 4 is arranged in the direction of the other side of the fixing mechanism 2. In use, one of the second detection mechanisms 4 can be used for charging test according to the position of the charging port of the electronic atomizer.
[0072] Further, referring to Figure 7 As shown, in some embodiments, the second driving mechanism 6 includes a second driving component 61 mounted on the detection platform 1, the second driving component 61 having a second output portion 611 capable of performing linear reciprocating motion; and a second sliding block 62 slidably mounted on the side surface of the second driving component 61 and connected with the second output portion 611.
[0073] The second detection mechanism 4 is mounted on the detection platform 1 through the second sliding block 62 and the second driving component 61, and the second detection mechanism 4 is synchronously displaced with the second sliding block 62.
[0074] Specifically, in the technical scheme adopted in the present application, the second driving mechanism 6 and the first driving mechanism 5 adopt the same structure, the second driving component 61 can be a cylinder, and the second output component 611 is a piston rod of the cylinder, the cylinder body of the second driving component 61 is fixed on the detection platform 1 through a fastener, and the piston rod of the second driving component 61 can be telescopic towards the side of the fixing mechanism 2. In order to realize the driving of the second detection mechanism 4 to slide and displace on the second driving component 61, a second sliding block 62 is installed on one side of the cylinder body of the second driving component 61, which is provided in the form of a plate-shaped structure with an L-shaped cross section, so that the second sliding block 62 forms a second sliding part 621 and a second stress part 622, one side of the second sliding part 621 is provided with a second sliding groove 623, and one side of the second driving component 61 is provided with a second sliding bar 612, so that the second sliding part 621 can be installed on one side of the cylinder body of the second driving component 61 through the cooperation of the second sliding groove 623 and the second sliding bar 612, and the second stress part 622 is fixed on the outer end of the piston rod of the second driving component 61, so that when the piston rod of the second driving component 61 is telescopic, the second sliding block 62 can slide on the cylinder body of the second driving component 61. In the present embodiment, the second connecting piece 41 of the second detection mechanism 4 can be fixed on the second sliding block 62 through a fastener, specifically on the side of the second sliding part 621 away from the second driving component 61, so that the second detection mechanism 4 and the second sliding block 62 can be synchronously displaced under the driving of the second driving component 61. When the second driving mechanism 6 and the second detection mechanism 4 are arranged in the manner of the present embodiment, the use area of the detection platform 1 is effectively saved, so that when the operator manually adjusts the detection equipment or places the electronic atomizer on the fixing mechanism 2, it is convenient to avoid the interference of the functional mechanism on the detection platform 1, and it can also make room for other mechanisms, for example, the detection equipment based on the present application continues to add functional mechanisms or detection mechanisms on the detection platform 1.
[0075] Referring to Figure 7As shown, in some embodiments, when the second detection mechanism 4 is connected with the electronic atomizer on the fixing mechanism 2, the displacement speed of the second detection mechanism 4 needs to be limited to avoid damaging the electronic atomizer in the detection process, for example, the charging port is damaged due to excessive impact force, and obvious use marks are formed on the charging port. In this embodiment, the second driving mechanism 6 can also be provided with a second buffer assembly, which includes a second oil pressure buffer installed on the cylinder body of the second driving part 61, and a second abutting block 63 installed on the second sliding block 62, and the second oil pressure buffer is arranged opposite to the second abutting block 63. In use, when the piston rod of the second driving part 61 drives the second sliding block 62 to displace, the second sliding block 62 drives the second abutting block 63 to displace synchronously, so that the second abutting block 63 can press the second oil pressure buffer, and the second oil pressure buffer buffers the force applied by the second abutting block 63 through internal oil pressure, thereby slowing down the displacement speed of the second sliding block 62. In the process of inserting the second joint 433 into the charging port of the electronic atomizer, the second joint 433 and the charging port can be prevented from being damaged due to violent plugging and unplugging.
[0076] Further, with reference to Figure 3 As shown, in some embodiments, the fixing mechanism 2 includes a base 21 installed on the detection platform 1, a fixing seat 22 fixed on the top of the base 21, and an installation groove 221 for placing the electronic atomizer arranged on the side away from the base 21.
[0077] Among them, the first gap 222 is arranged on the groove wall of the installation groove 221 for exposing the mouthpiece of the electronic atomizer; and the second gap 223 is arranged on the groove wall of the installation groove 221 for exposing the charging port of the electronic atomizer.
[0078] Specifically, in the technical scheme adopted in this application, the base 21 can be installed on the detection platform 1 by fasteners, and the fixing seat 22 is installed on the top of the base 21 and the installation groove 221 for placing the electronic atomizer is arranged on the side away from the base 21. In order to facilitate the first joint 331 on the first detection mechanism 3 and the second joint 433 on the second detection mechanism 4 to connect the mouthpiece and the charging port of the electronic atomizer, a plurality of gaps can be formed on the groove wall of the installation groove 221 to expose the mouthpiece and the charging port of different models of electronic atomizers, at least including the first gap 222 for exposing the mouthpiece of the electronic atomizer and the second gap 223 for exposing the charging port of the electronic atomizer. According to the above-mentioned embodiments, a second gap 223 can be additionally arranged on one side of the fixing mechanism 2 to adapt to electronic atomizers of different models. It should be noted that a plurality of second gaps 223 can also be arranged on the groove walls in different directions of the installation groove 221, thereby further adapting to different positions of the charging port on one side of the electronic atomizer.
[0079] Further, referring to Figure 1 As shown in the figure, in some embodiments, the detection platform 1 comprises: an operation table 11 having a table top at the top, the first driving mechanism 5 and the second driving mechanism 6 are installed on the table top, one side of the operation table 11 is configured with two start buttons 101 arranged at intervals; a control mechanism 12 connected to one side of the operation table 11 and located above the table top, used for controlling the opening and closing of the first driving mechanism 5 and the second driving mechanism 6, the control mechanism 12 is configured with a touch display screen 102, an indicator light 103 and an alarm 104; safety grating 13 is installed on the opposite sides of the operation table 11 and is signal connected with the control mechanism 12, so as to form an induction area above the table top through the safety grating 13.
[0080] Specifically, in the technical scheme adopted in the present application, the top of the operation table 11 can be provided with a table top with a certain degree of flattening, and threaded holes are formed in the table top to facilitate the fixation of the first driving mechanism 5 and the second driving mechanism 6 on the table top. Two start buttons 101 are arranged on one side of the operation table 11. When in use, the operator needs to press the two start buttons 101 at the same time, and then the detection equipment of the present application can be operated, so as to ensure that the operator's hands have left the table top of the operation table 11, which can effectively avoid dangerous accidents caused by the operator's continuous adjustment of the table mechanism when operating the detection equipment. The control mechanism 12 is provided with a central controller, and the central controller is connected with the first detection mechanism 3, the second detection mechanism 4, the first driving mechanism 5, the second driving mechanism 6, the start button 101 and the safety grating 13 on the operation table 11, and the control mechanism 12 is also provided with a touch display screen 102, an indicator light 103 and an alarm 104 connected with the central controller. When in use, the touch display screen 102 can be used to send an instruction signal to the central processor to determine the operation mode of the first detection device, the second detection mechanism 4, the first driving mechanism 5 and the second driving mechanism 6. Specifically, considering that some electronic atomizers cannot work when charging, when the detection equipment of the present application faces this problem, the central processor can be controlled by the touch display screen 102 to adjust the order of the smoke test and the charging test. The smoke test can be performed first, and then the charging test can be performed, or the smoke test can be performed first, and then the charging test can be performed, so as to solve the problem that the electronic atomizer cannot work to perform the smoke test during the charging process. When detecting an electronic atomizer that can smoke during charging, the central processor can be controlled by the touch display screen 102 to adjust the smoke test and the charging test to be performed at the same time, so as to improve the test efficiency of the detection equipment. In the embodiment, the indicator light 103 can display at least two colors, for example, red and green. The indicator light 103 displays green, which can indicate that the electronic atomizer passes the test. If the indicator light 103 displays red, it can indicate that the electronic atomizer fails the test, which means that the electronic atomizer cannot smoke normally and / or has charging abnormalities. When it is known that the electronic atomizer fails the test, the alarm also sounds, further prompting the operator. The safety grating 13 can form an induction area above the table top of the operation table 11 according to the principle of emitting and receiving infrared light beams. Once the light beam of the induction area is blocked (i.e. an object enters), the detection equipment is forced to stop running or cut off the power source to avoid accidents. At the same time, the alarm can be started to sound when the detection equipment is forced to stop running or cut off the power source, so as to prompt the operator.
[0081] In the description of the application, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the application. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in one or more embodiments or examples. In addition, different embodiments or examples described in the specification and characteristics of different embodiments or examples can be combined and combined by those skilled in the art without contradiction.
[0082] In addition, the terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the application, the meaning of "multiple" is two or more, unless otherwise specifically limited.
[0083] Any process or method descriptions in flow charts or described elsewhere herein can be understood as representing code modules, segments, or portions of code that include one or more executable instructions for implementing specific logic functions or other processes. And the various embodiments of the application can include additional or fewer steps or processes in comparison to those shown in the figures.
[0084] The logic and / or steps represented in flow charts or otherwise described herein, for example, can be embodied in computer-readable instructions, which can be used to cause one or more processors to perform the actions indicated in the steps. The computer-readable instructions can be stored on one or more storage media or memory devices associated with the one or more processors.
[0085] It should be understood that parts of the application can be implemented in hardware, software, firmware or a combination thereof. In the above-described embodiments, a plurality of steps or methods can be implemented by software or firmware stored in a memory and executed by a suitable instruction execution system. All or part of the steps of the above-described embodiment method can be instructed by a program to complete the relevant hardware, which can be stored in a computer readable storage medium, and the program includes one or a combination of the steps of the method embodiment when executed.
[0086] In addition, each of the function units in each embodiment of the present application can be integrated in one processing module, or each unit can be physically present separately, or two or more units can be integrated in one module. The integrated module can be realized in the form of hardware or in the form of a software function module. When the integrated module is realized in the form of a software function module and sold or used as an independent product, it can also be stored in a computer readable storage medium. The storage medium can be a read-only memory, a magnetic disk or an optical disk, etc.
[0087] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of various changes or replacements within the technical scope disclosed in the present application, and these should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A detection apparatus of an electronic atomizer, characterized in that, The utility model relates to an electronic atomizer detection device, comprising: a fixing mechanism for placing an electronic atomizer; a first detection mechanism capable of displacement relative to the fixing mechanism, the first detection mechanism being connectable to or separable from the electronic atomizer, the first detection mechanism being configured to collect gas in the electronic atomizer and perform gas detection when the first detection mechanism is connected to the electronic atomizer; and a second detection mechanism capable of displacement relative to the fixing mechanism, the second detection mechanism being connectable to or separable from the electronic atomizer, the second detection mechanism being configured to supply electrical energy to the electronic atomizer and detect output power when the second detection mechanism is connected to the electronic atomizer. The utility model further comprises:
2. The detection device of an electronic atomizer according to claim 1, wherein, a detection platform on which the fixing mechanism is installed to form a fixing station; a first driving mechanism installed on the detection platform and connected to the first detection mechanism, the first driving mechanism driving the first detection mechanism to move closer to or away from the fixing mechanism; a second driving mechanism installed on the detection platform and connected to the second detection mechanism, the second driving mechanism driving the second detection mechanism to move closer to or away from the fixing mechanism. The first detection mechanism comprises:
3. The detection device of an electronic atomizer according to claim 2, wherein, a first connecting member installed on the first driving mechanism and driven by the first driving mechanism to displace on the detection platform; a first mounting seat installed on the first connecting member and synchronously displaced with the first connecting member; a first detection assembly arranged on the first mounting seat and configured to connect the electronic atomizer. The first detection assembly comprises:
4. The detection device of an electronic atomizer according to claim 3, characterized in that, a first connector installed on the first mounting seat, the first connector having a gas inlet end and a gas outlet end, the gas inlet end being configured to interface with the electronic atomizer; an adapter member in communication with the gas outlet end, the adapter member being configured to communicate with a negative pressure device; a sensing member arranged on the adapter member and configured to sense gas in the adapter member. The first driving mechanism comprises:
5. The detection device of an electronic atomizer according to claim 2, wherein, a first driving member installed on the detection platform, the first driving member having a first output portion capable of performing linear reciprocating motion; a first sliding block slidably installed on one side surface of the first driving member and connected to the first output portion; wherein the first detection mechanism is installed on the detection platform through the first sliding block and the first driving member, and the first detection mechanism is synchronously displaced with the first sliding block. The second detection mechanism comprises:
6. The detection device of an electronic atomizer according to claim 2, wherein, a second connecting member installed on the second driving mechanism and driven by the second driving mechanism to displace on the detection platform; a second mounting seat installed on the second connecting member and synchronously displaced with the second connecting member; a second detection assembly arranged on the second mounting seat and configured to connect the electronic atomizer. The second detection mechanism further comprises:
7. The detection device of an electronic atomizer according to claim 6, wherein, a guide sleeve arranged on the second mounting seat, the guide sleeve having a guide through hole extending through the second mounting seat; a resilient element elastically supported between the second mounting seat and the second detection assembly; the second detection assembly comprises: The guide base is provided with a guide column on the side close to the second mounting seat, the guide column is slidably arranged in the guide through hole, and the guide base is provided with a guide block on the side away from the second mounting seat, and the guide block is provided with a guide surface matched with the external structure of the electronic atomizer; A second connector is embedded in the guide block and located below the guide surface, the guide surface can assist the second connector to plug the electronic atomizer, and the second connector is used for electrical connection with the power supply detection device.
8. The detection device of an electronic atomizer according to claim 2, wherein, The second driving mechanism comprises: A second driving component is installed on the detection platform, and the second driving component has a second output portion capable of performing linear reciprocating motion; A second sliding block is slidably installed on one side surface of the second driving component and connected with the second output portion; The second detection mechanism is installed on the detection platform through the second sliding block and the second driving component, and the second detection mechanism is synchronously displaced with the second sliding block.
9. The detection device of an electronic atomizer according to claim 2, wherein, The fixing mechanism comprises: A base is installed on the detection platform; A fixing seat is fixed on the top of the base, and the side away from the base is provided with a mounting groove for placing the electronic atomizer; The groove wall of the mounting groove is provided with a first notch for exposing the mouthpiece of the electronic atomizer, and the groove wall of the mounting groove is provided with a second notch for exposing the charging port of the electronic atomizer.
10. The detection device of an electronic atomizer according to claim 2, wherein, The detection platform comprises: An operation table has a table top on the top, the first driving mechanism and the second driving mechanism are installed on the table top, and two start buttons are arranged on one side of the operation table; A control mechanism is connected to one side of the operation table and located above the table top, used for controlling the opening and closing of the first driving mechanism and the second driving mechanism, and the control mechanism is provided with a touch display screen, an indicator light and an alarm; Safety gratings are installed on the opposite sides of the operation table and are signal connected with the control mechanism to form an induction area above the table top through the safety gratings.