Contact starting device and test system
By periodically activating the atomizer through a contact activation device, the problem of the human body's inability to precisely control the atomizer testing time in existing technologies is solved, thus improving testing efficiency and accuracy.
Patent Information
- Application Number
- CN202520293934.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-02-21
AI Technical Summary
Existing lip-triggered atomizers have limitations in testing, as the human body cannot precisely control the contact time with the mouthpiece, resulting in low testing efficiency.
A contact activation device is provided, including a fixing component, a driving component, and a contact plate. The driving component drives the contact plate to periodically contact and separate from the contact activation part of the atomizer, thereby realizing automated testing of the atomizer.
The lifespan test of the atomizer was achieved, and it has the advantages of high start-up efficiency and precise control of the cycle period.
Smart Images

Figure CN223873301U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of testing devices, in particular to a contact starting device and a testing system. BACKGROUND
[0002] An atomizer is a device for forming an aerosol by heating a heating element to heat an aerosol generating substrate. In the related art, a lip sensing triggered atomizer often adopts a capacitive contact principle, that is, a sensing sheet in the atomizer is arranged at a mouthpiece, and when a hand or a lip contacts the mouthpiece, the capacitance value of the sensing sheet changes, thereby starting the atomizer. When testing the service life of the lip sensing triggered atomizer, the human body usually contacts the mouthpiece to start the atomizer, and the contact time with the mouthpiece cannot be accurately controlled each time, and moreover, the testing efficiency is low. CONTENT OF THE UTILITY MODEL
[0003] The present application provides a contact starting device and a testing system, which are used to solve or partially solve the technical problem that the human body cannot accurately control the contact time with the mouthpiece each time when the existing lip sensing triggered atomizer is tested, and the testing efficiency is low.
[0004] In one embodiment, a contact starting device is provided, which is used to start an atomizer, the atomizer has a contact starting part, and the contact starting device comprises,
[0005] a fixing assembly for fixing the atomizer, at least part of the contact starting part protrudes from the fixing assembly;
[0006] a driving member and a contact plate, the driving member and the contact plate are connected, the driving member drives the contact plate to move towards or away from the contact starting part; and the contact plate is used to contact the contact starting part to trigger the atomizer to start working.
[0007] In one embodiment, the contact starting part entirely protrudes from the fixing assembly, and the contact plate is a conductive material member.
[0008] In one embodiment, the fixing assembly comprises a first fixing member, the first fixing member is used to fix part of the contact starting part, and the remaining part of the contact starting part protrudes from the first fixing member; the contact plate is used to contact the remaining part of the contact starting part; and the first fixing member and the contact plate are conductive material members respectively.
[0009] In one of the embodiments, the fixing assembly comprises a first fixing member, the first fixing member is provided with a first profiling groove facing the surface of the contact plate, the contact plate is provided with a second profiling groove facing the surface of the first fixing member; the atomizer comprises a suction nozzle, the suction nozzle forms the contact starting part, the first profiling groove is used for arranging the suction nozzle, and the second profiling groove is buckled on the part of the suction nozzle protruding from the first profiling groove; or, the atomizer comprises a suction nozzle and a liquid storage bin, at least part of the liquid storage bin close to one end of the suction nozzle forms the contact starting part, the first profiling groove is used for arranging the one end of the liquid storage bin close to the suction nozzle, and the second profiling groove is buckled on the part of the one end of the liquid storage bin close to the suction nozzle protruding from the first profiling groove.
[0010] In one of the embodiments, the fixing assembly comprises,
[0011] a second fixing member, the second fixing member is provided with a third profiling groove facing the surface of the contact plate, and the atomizer is arranged in the third profiling groove away from the suction nozzle;
[0012] a pressing plate connected with the second fixing member, the pressing plate is arranged corresponding to the third profiling groove, and the pressing plate is used for abutting against at least part of the atomizer protruding from the third profiling groove.
[0013] In one of the embodiments, along the first direction, the second fixing member is provided with a first limiting column and a second limiting column respectively on the opposite two side walls;
[0014] one end of the pressing plate is provided with a first connecting plate, and the first connecting plate is provided with a first opening; the other end of the pressing plate is provided with a second connecting plate, and the second connecting plate is provided with a second opening;
[0015] the first limiting column is arranged in the first opening, and the second limiting column is arranged in the second opening, so as to connect the pressing plate with the second fixing member.
[0016] In one of the embodiments, the fixing assembly further comprises a flexible abutting member, the flexible abutting member is connected with the pressing plate, at least part of the flexible abutting member protrudes from the surface of the pressing plate facing the third profiling groove, the surface of the pressing plate facing the third profiling groove is arranged spaced apart from the atomizer, and the flexible abutting member is used for abutting against the atomizer.
[0017] In one of the embodiments, the contact starting device further comprises a flexible plug, the flexible plug is provided with a through hole;
[0018] the atomizer comprises a suction nozzle, the suction nozzle forms the contact starting part, and the suction nozzle is arranged in the through hole; or,
[0019] The atomizer comprises a mouthpiece and a liquid storage bin, the contact starting part is at least partially formed in one end of the liquid storage bin close to the mouthpiece, and the mouthpiece and the one end of the liquid storage bin close to the mouthpiece are arranged in the through hole.
[0020] In one embodiment, the through hole comprises a first hole section and a second hole section, the contact starting part is arranged in the first hole section, the distance between the hole wall of the first hole section and the outer peripheral wall of the flexible plug is less than or equal to 1 mm perpendicular to the center line of the first hole section, and the second hole section is used for being connected with a test device.
[0021] In one embodiment, a test system for testing an atomizer is provided, the test system comprises the contact starting device and a test device, the contact plate of the contact starting device is used for being in contact with the contact starting part of the atomizer to trigger the atomizer to start working, and the test device is arranged corresponding to the contact starting device and is used for being connected with the mouthpiece of the atomizer to test the service life of the atomizer.
[0022] According to the contact starting device of the above-mentioned embodiment, the atomizer can be started periodically, which helps to realize the related test of the atomizer, such as realizing the life test of the atomizer. The contact starting device does not need manual participation when starting the atomizer periodically, and has the advantage of high starting efficiency. Moreover, the contact time of the contact plate and the contact starting part and the separation time of the contact plate and the contact starting part can be accurately controlled, and then the cycle period can be accurately controlled. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is a structural schematic diagram of the front view of the contact starting device in one embodiment;
[0024] Figure 2 It is a structural schematic diagram of the perspective view of the contact starting device in one embodiment;
[0025] Figure 3 It is a structural schematic diagram of the A part in the above-mentioned figure; Figure 2
[0026] Figure 4 It is a structural schematic diagram of the flexible plug in one embodiment;
[0027] Figure 5 It is a structural schematic diagram of the A-A sectional view in the above-mentioned figure; Figure 4
[0028] The following are the signs in the figures:
[0029] 11, first fixing part; 111, first profiling groove; 12, second fixing part; 121, third profiling groove; 122, first limiting column;
[0030] 13, pressing plate; 131, first connecting plate; 132, first opening; 133, second connecting plate; 135, flexible abutting member;
[0031] 20, driving member;
[0032] 30, contact plate; 31, second profiling groove;
[0033] 40, flexible plug; 41, through hole; 42, first section hole; 43, second section hole;
[0034] 50, controller;
[0035] 60, support; 61, operation platform;
[0036] 70, atomizer;
[0037] X, first direction; Y, second direction; Z, third direction. DETAILED DESCRIPTION
[0038] The utility model will be further described in detail below through specific implementation mode combined with the drawings. In different implementation modes, similar elements adopt relevant similar element marks. In the following implementation mode, many details are described in order to make the present application be better understood. However, the person skilled in the art can easily realize that part of the features can be omitted in different cases, or can be replaced by other elements, materials, methods. In some cases, some operations related to the present application are not shown or described in the specification, in order to avoid the core part of the present application being overwhelmed by too much description, and for the person skilled in the art, it is not necessary to describe these related operations in detail according to the description in the specification and the general technical knowledge in the art, and the related operations can be completely understood.
[0039] In addition, the features, operations or characteristics described in the specification can be combined in any appropriate way to form various implementation modes. At the same time, the steps or actions in the method description can also be sequentially replaced or adjusted in a manner that is obvious to the person skilled in the art. Therefore, the order in the specification and the drawings is only for the purpose of clear description of a certain embodiment, and does not mean the necessary order, unless otherwise stated that a certain order must be followed.
[0040] The serial numbers of components in this paper, such as "first", "second", etc., are only used to distinguish the described objects, and have no any order or technical meaning. The "connection", "coupling" in the present application includes direct and indirect connection and coupling, unless otherwise specified.
[0041] In one embodiment, a contact starting device is provided for starting an atomizer 70 to assist a testing device to complete a life test. The atomizer 70 is used to form an aerosol by heating an aerosol generating substrate, and the atomizer 70 has a contact starting portion.
[0042] Please refer to Figures 1 to 4 The contact starting device includes a fixing assembly, a driving member 20, and a contact plate 30. The fixing assembly is used to fix the atomizer 70, and at least part of the contact starting portion protrudes from the fixing assembly. The driving member 20 and the contact plate 30 are connected, and the driving member 20 drives the contact plate 30 to move towards or away from the contact starting portion. The contact plate 30 is used to contact the contact starting portion to trigger the atomizer 70 to start working.
[0043] According to the position of the contact starting portion arranged in the atomizer 70, after the fixing assembly fixes the atomizer 70, in one case, part of the contact starting portion in the atomizer 70 protrudes from the fixing assembly, and the contact plate 30 contacts part of the contact starting portion or all of the contact starting portion. In another case, all of the contact starting portion in the atomizer 70 protrudes from the fixing assembly, and the contact plate 30 contacts part of the contact starting portion or all of the contact starting portion. The contact position and the contact area of the contact plate 30 and the contact starting portion are set according to the starting mode of the atomizer 70.
[0044] In use, the contact starting device of the embodiment sets the atomizer 70 in the fixing assembly. The driving member 20 drives the contact plate 30 to move towards the contact starting portion, and the contact plate 30 contacts the contact starting portion, so that the contact starting portion triggers the atomizer 70 to start working in the case of being contacted. After the contact plate 30 contacts the contact starting portion for a first preset time, the driving member 20 drives the contact plate 30 to move away from the contact starting portion, the contact plate 30 is separated from the contact starting portion, and the atomizer 70 is closed. When the contact plate 30 is separated from the contact starting portion for a second preset time, the contact plate 30 contacts the contact starting portion again. The driving member 20 drives the contact plate 30 to reciprocate towards or away from the contact starting portion, to periodically realize the contact and separation of the contact plate 30 and the contact starting portion.
[0045] The contact starting device of the embodiment can periodically start the atomizer 70, which helps to realize the related test of the atomizer 70, such as the life test of the atomizer 70. The contact starting device periodically starts the atomizer 70 without manual intervention, and has the advantage of high starting efficiency. Moreover, the contact time of the contact plate 30 and the contact starting portion, and the separation time of the contact plate 30 and the contact starting portion can be accurately controlled, and the cycle period is accurately controlled.
[0046] In one embodiment, the driving member 20 is at least one of a driving motor, an electric rod, and a cylinder, and can realize the reciprocating movement of the contact plate 30.
[0047] In one embodiment, the contact starting part is entirely protruded from the fixed assembly, and the contact plate 30 is a conductive material piece.
[0048] For the atomizer 70 with the contact starting part, an inductive sheet is arranged at the contact starting part, and the atomizer 70 is triggered to start when the capacitance value of the inductive sheet changes. The contact between the conductive material piece and the contact starting part can change the capacitance value of the inductive sheet, thereby achieving the purpose of triggering the atomizer 70 to start.
[0049] It can be understood that the conductive material piece has many kinds, and the specific material of the contact plate 30 is not limited in the present application, for example, the contact plate 30 is an aluminum plate, a steel plate, etc.
[0050] In the embodiments of the present application, the contact plate 30 is a conductive material piece, and whether the fixed assembly is conductive and the specific material of the fixed assembly is set according to the use requirement, which is not limited in the embodiments of the present application.
[0051] In another embodiment, the fixed assembly includes a first fixed piece 11, the first fixed piece 11 is used for fixing part of the contact starting part, and the remaining part of the contact starting part is protruded from the first fixed piece 11; the contact plate 30 is used for contacting the remaining part of the contact starting part; and the first fixed piece 11 and the contact plate 30 are conductive material pieces respectively. In the embodiments of the present application, the first fixed piece 11 and the contact plate 30 are respectively contacted with the contact starting part to achieve the purpose of triggering the atomizer 70 to start.
[0052] The specific material of the first fixed piece 11 and the contact plate 30 is not limited in the present application, for example, the first fixed piece 11 and the contact plate 30 are an aluminum plate, a steel plate, etc.
[0053] In one embodiment, the fixed assembly includes a first fixed piece 11, a first profiling groove 111 is arranged on the surface of the first fixed piece 11 facing the contact plate 30, and a second profiling groove 31 is arranged on the surface of the contact plate 30 facing the first fixed piece 11; the atomizer 70 includes a suction nozzle, the suction nozzle forms the contact starting part, the first profiling groove is used for arranging the suction nozzle, and the second profiling groove is buckled on the part of the suction nozzle protruded from the first profiling groove.
[0054] In the embodiments of the present application, the suction nozzle forms the contact starting part, and the opposite sides of the suction nozzle are both provided with the contact starting part. In order to trigger the atomizer 70 to start, the first fixed piece 11 and the contact plate 30 are both conductive material pieces.
[0055] In the embodiment of the present application, the first profiling groove 111 is used for setting the suction nozzle. When the driving member 20 drives the contact plate 30 to move towards the fixed assembly, the second profiling groove 31 is buckled on the part of the suction nozzle protruding from the first profiling groove 111. At this time, the first fixed member 11 and the contact plate 30 can be in contact, and the first fixed member 11 and the contact plate 30 can also have a gap. The first profiling groove 111 and the second profiling groove 31 can not only realize contact with the suction nozzle to trigger the atomizer 70 to start, but also realize the limiting of the suction nozzle.
[0056] In the embodiment of the present application, the first profiling groove 111 is used for setting the suction nozzle. When the driving member 20 drives the contact plate 30 to move towards the fixed assembly, the second profiling groove 31 is buckled on the part of the suction nozzle protruding from the first profiling groove 111. At this time, the first fixed member 11 and the contact plate 30 can be in contact, and the first fixed member 11 and the contact plate 30 can also have a gap. The first profiling groove 111 and the second profiling groove 31 can not only realize contact with the suction nozzle to trigger the atomizer 70 to start, but also realize the limiting of the suction nozzle.
[0057] In one embodiment, in order to ensure that the first profiling groove 111 and the second profiling groove 31 effectively contact the suction nozzle, the surface of the first profiling groove 111 in contact with the suction nozzle is adapted to the shape of the suction nozzle, and the surface of the second profiling groove 31 in contact with the suction nozzle is adapted to the shape of the suction nozzle.
[0058] In another embodiment, the fixed assembly includes the first fixed member 11, and the surface of the first fixed member 11 facing the contact plate 30 is provided with the first profiling groove 111. The surface of the contact plate 30 facing the first fixed member 11 is provided with the second profiling groove 31. The atomizer 70 includes the suction nozzle and the liquid storage bin. At least part of the end of the liquid storage bin close to the suction nozzle forms a contact starting part. The first profiling groove 111 is used for setting the end of the liquid storage bin close to the suction nozzle. The second profiling groove 31 is buckled on the part of the end of the liquid storage bin close to the suction nozzle protruding from the first profiling groove.
[0059] In the embodiment of the present application, at least part of the end of the liquid storage bin close to the suction nozzle forms the contact starting part. One side of the end of the liquid storage bin close to the suction nozzle can form the contact starting part. The contact plate 30 is a conductive material member, and the contact plate 30 is in contact with the contact starting part. The first fixed member 11 can be a conductive material member or a non-conductive material member. The opposite sides of the end of the liquid storage bin close to the suction nozzle both form the contact starting part. In order to trigger the atomizer 70 to start, the first fixed member 11 and the contact plate 30 are both conductive material members.
[0060] In the embodiment of the present application, the first profiling groove 111 is used to set the end of the liquid storage bin close to the suction nozzle. When the driving member 20 drives the contact plate 30 to move towards the fixed assembly, the second profiling groove 31 is buckled on the part of the end of the liquid storage bin close to the suction nozzle which protrudes from the first profiling groove 111. At this time, the first fixed member 11 and the contact plate 30 can be in contact, and the first fixed member 11 and the contact plate 30 can also have a gap. The first profiling groove 111 and the second profiling groove 31 can not only realize the contact with the end of the liquid storage bin close to the suction nozzle to trigger the atomizer 70 to start, but also realize the limiting of the end of the liquid storage bin close to the suction nozzle.
[0061] In one embodiment, in order to ensure that the first profiling groove 111 and the second profiling groove 31 effectively contact the end of the liquid storage bin close to the suction nozzle, the surface of the first profiling groove 111 in contact with the end of the liquid storage bin close to the suction nozzle is adapted to the shape of the end of the liquid storage bin close to the suction nozzle, and the surface of the second profiling groove 31 in contact with the end of the liquid storage bin close to the suction nozzle is adapted to the shape of the end of the liquid storage bin close to the suction nozzle.
[0062] Of course, in the case that at least part of the end of the liquid storage bin close to the suction nozzle forms a contact starting part, the first profiling groove 111 can also be provided with a suction nozzle and the end of the liquid storage bin close to the suction nozzle, and the second profiling groove 31 is buckled on the part of the suction nozzle and the end of the liquid storage bin close to the suction nozzle which protrudes from the first profiling groove.
[0063] In one embodiment, the first profiling groove 111 and the second profiling groove 31 are respectively provided with a plurality of profiling grooves; along the first direction X, the plurality of first profiling grooves 111 are arranged at intervals, and the plurality of second profiling grooves 31 are arranged at intervals. In the above structure of the embodiment of the present application, the first profiling groove 111 and the second profiling groove 31 are respectively provided with a plurality of profiling grooves, so that the contact starting device can be connected with a plurality of atomizers 70 at the same time, and a plurality of atomizers 70 can be started at the same time to improve the efficiency.
[0064] For example, as shown in FIG. 1, the first profiling groove 111 and the second profiling groove 31 are each provided with four profiling grooves. Figure 1
[0065] In one embodiment, the fixed assembly includes a second fixed member 12 and a pressing plate 13. The second fixed member 12 is provided with a third profiling groove 121 on the surface facing the contact plate 30, and the end of the atomizer away from the suction nozzle is arranged in the third profiling groove 121. The pressing plate 13 is connected with the second fixed member 12, and the pressing plate 13 is arranged corresponding to the third profiling groove 121. The pressing plate 13 is used to abut against at least part of the atomizer which protrudes from the third profiling groove 121.
[0066] In the embodiment, the pressing plate 13 is used to abut against at least part of the third profiling groove 121 protruding from the atomizer 70. The pressing plate 13 can press the atomizer 70, so that the atomizer 70 is prevented from being raised or the like when the contact plate 30 contacts the contact starting portion, thereby affecting the starting of the atomizer 70.
[0067] In one embodiment, the position of the pressing plate 13 is set according to the use requirement. For example, referring to FIG. 1, the pressing plate 13 is arranged to abut against the end of the atomizer 70 away from the suction nozzle. Figure 2
[0068] Further referring to FIG. 1, in the second direction Y, the first fixing member 11 and the second fixing member 12 are arranged to be spaced apart from each other, so as to better adapt to the atomizer 70. Figures 1 to 3
[0069] In one embodiment, in the first direction X, the second fixing member 12 is provided with a first limiting column and a second limiting column respectively arranged on opposite side walls of the second fixing member 12. One end of the pressing plate 13 is provided with a first connecting plate 131, and the first connecting plate 131 is provided with a first opening 132. The other end of the pressing plate 13 is provided with a second connecting plate 133, and the second connecting plate 133 is provided with a second opening. The first limiting column is arranged in the first opening 132, and the second limiting column is arranged in the second opening, so as to connect the pressing plate 13 and the second fixing member 12.
[0070] In the embodiment, the assembling process of the second fixing member 12 and the pressing plate 13 is as follows. The first opening 132 is aligned with the first limiting column 122, and the second opening is aligned with the second limiting column. The pressing plate 13 is pushed towards the second fixing member 12 in the second direction Y, so that the first opening 132 is clamped on the first limiting column 122, and the second opening is clamped on the second limiting column, thereby realizing the connection between the pressing plate 13 and the second fixing member 12. The second fixing member 12 and the pressing plate 13 in the embodiment have the advantages of simple and convenient connection.
[0071] In one embodiment, in order to avoid the pressing plate 13 contacting and rubbing the surface of the atomizer 70, the fixing assembly further comprises a flexible abutting member 135 connected with the pressing plate 13. At least part of the flexible abutting member 135 protrudes from the surface of the pressing plate 13 facing the third profiling groove 121. The surface of the pressing plate 13 facing the third profiling groove 121 is arranged to be spaced apart from the atomizer 70, and the flexible abutting member 135 is used to abut against the atomizer 70.
[0072] In the above structure of the embodiment, the surface of the pressing plate 13 facing the third profiling groove 121 is arranged to be spaced apart from the atomizer 70, and the surface of the pressing plate 13 facing the third profiling groove 121 does not contact the atomizer 70, so as to avoid rubbing and scratching the atomizer 70. The pressing plate 13 abuts against the atomizer 70 through the flexible abutting member 135, and the flexible abutting member 135 can press the atomizer 70 and also avoid scratching the atomizer 70.
[0073] Referring to Figure 1 and Figure 3 As shown in the figures, the pressing plate 13 is provided with a mounting hole, and the flexible abutting piece 135 is arranged in the mounting hole, and one end of the flexible abutting piece 135 extends out of the surface of the pressing plate 13 facing the third profiling groove 121.
[0074] The material of the flexible abutting piece 135 can be selected according to the use requirement, for example, the flexible abutting piece 135 is a rubber column.
[0075] In one embodiment, the contact starting device further comprises a flexible plug 40, and the flexible plug 40 is provided with a through hole 41; the atomizer 70 comprises a suction nozzle, the suction nozzle forms a contact starting part, and the suction nozzle is arranged in the through hole 41.
[0076] In the embodiment of the present application, the suction nozzle is arranged in the through hole 41, and the flexible plug 40 can protect the suction nozzle, so that scratches on the suction nozzle caused by the contact between the first fixing part 11 and the contact plate 30 and the suction nozzle can be avoided.
[0077] In one embodiment, the contact starting device further comprises a flexible plug 40, and the flexible plug 40 is provided with a through hole 41; the atomizer 70 comprises a suction nozzle and a liquid storage bin, at least part of the liquid storage bin close to the suction nozzle forms a contact starting part, and the suction nozzle and the liquid storage bin close to the suction nozzle are arranged in the through hole 41.
[0078] In the embodiment of the present application, the suction nozzle and the contact starting part are arranged in the through hole 41, and the flexible plug 40 can protect the suction nozzle and the contact starting part, so that scratches on the contact starting part caused by the contact between the first fixing part 11 and the contact plate 30 and the contact starting part can be avoided.
[0079] The through hole 41 in the flexible plug 40 can also realize the communication between the suction nozzle and the testing device, so that the testing device can test the service life of the atomizer 70. Therefore, the suction nozzle is arranged in the through hole 41, and the flexible plug 40 is used for sealing and connecting the suction nozzle.
[0080] In one embodiment, the material of the flexible plug 40 is selected according to the use requirement, for example, the flexible plug 40 is a silica gel plug.
[0081] In one embodiment, referring to Figure 4 and Figure 5 As shown in the figures, the through hole 41 comprises a first hole section 42 and a second hole section 43, the contact starting part is arranged in the first hole section 42; the distance between the hole wall of the first hole section 42 and the outer peripheral wall of the flexible plug 40 is less than or equal to 1 mm, perpendicular to the center line of the first hole section 42; and the second hole section 43 is used for communication with the testing device.
[0082] In this embodiment, a contact activation part is provided within the first segment hole 42. The contact activation part connects the flexible plug 40, which is located between the hole wall of the first segment hole 42 and the outer peripheral wall of the flexible plug 40, to the first fixing member 11 and the contact plate 30. When the distance between the hole wall of the first segment hole 42 and the outer peripheral wall of the flexible plug 40 is less than or equal to 1 mm, the thickness of this portion of the flexible plug 40 will not affect the contact between the conductive material and the contact activation part, thus preventing a change in the capacitance value of the sensing sheet. In other words, it will not affect the contact between the first fixing member 11 and the contact plate 30 and the contact activation part to trigger the atomizer 70 to start.
[0083] It is understandable that the distance between the wall of the first hole 42 and the outer peripheral wall of the flexible plug 40 can be set according to the usage requirements. For example, the distance between the wall of the first hole 42 and the outer peripheral wall of the flexible plug 40 can be one of 0.1mm, 0.2mm, 0.3mm, 0.4mm, 0.5mm, 0.6mm, 0.7mm, 0.8mm, 0.9mm, 1mm, or any value between the above values.
[0084] In one embodiment, the contact start device further includes a controller 50, which is electrically connected to the drive component 20 and controls the operation of the drive component 20. In the above structure of this application embodiment, the controller 50 controls the operation of the drive component 20, thereby automating the contact start device and enabling precise control.
[0085] In one embodiment, refer to Figures 1 to 4 As shown, the contact start device includes a fixing component, a drive component 20, a contact plate 30, a flexible plug 40, a controller 50, and a bracket 60, with an operating platform 61 mounted on the bracket 60. The first fixing component 11 and the second fixing component 12 of the fixing component are mounted on the operating platform 61. The controller 50 and the drive component 20 are respectively connected to the bracket 60. The contact start device has a first direction X, a second direction Y, and a third direction Z.
[0086] Taking the simultaneous activation of four atomizers 70 by the contact start device, the contact start part being the mouthpiece, and the contact start device assisting the testing device in completing the life test as an example, the usage process of the contact start device is as follows:
[0087] The pressing plate 13 of the fixed assembly is moved in the second direction Y to separate the first opening 132 from the first limiting column 122 and separate the second opening from the second limiting column, and the pressing plate 13 is removed from the second fixed part 12. The four atomizers 70 are respectively placed in the four third profiling grooves 121 of the second fixed part 12, and at this time, the suction nozzles of the atomizers 70 are located in the first profiling grooves 111 of the first fixed part 11. Then, the first opening 132 is aligned with the first limiting column 122, the second opening is aligned with the second limiting column, and the pressing plate 13 is pushed towards the second fixed part 12 in the second direction Y, so that the first opening 132 is clamped on the first limiting column 122 and the second opening is clamped on the second limiting column, and the pressing plate 13 is connected with the second fixed part 12.
[0088] A flexible plug 40 is respectively inserted into each suction nozzle, and the end of the flexible plug 40 away from the suction nozzle is connected with a hose and communicates with the test device through the hose.
[0089] The contact starting device and the test device are started at the same time, and the life test of the atomizer 70 is started.
[0090] The driving part 20 drives the contact plate 30 to move downward in the third direction Z, and after the contact plate 30 contacts the suction nozzle, the driving part 20 drives the contact plate 30 to move upward in the third direction Z and stop, and then move downward to contact the suction nozzle again, and this operation uses a second preset time.
[0091] The driving part 20 drives the contact plate 30 to reciprocate until the life test is completed.
[0092] The first preset time and the second preset time are set according to the use requirement, for example, the first preset time is 2s and the second preset time is 10s.
[0093] The contact starting device of the embodiment can periodically start the atomizer 70, which is helpful to realize the related test of the atomizer 70, such as the life test of the atomizer 70. The contact starting device periodically starts the atomizer 70 without manual participation, and has the advantage of high starting efficiency. Moreover, the contact time of the contact plate 30 with the contact starting part and the separation time of the contact plate 30 from the contact starting part can be accurately controlled, and the cycle period is accurately controlled.
[0094] In an embodiment, a test system is provided for testing the atomizer 70, and the test system comprises the contact starting device and the test device as described above. The contact plate 30 of the contact starting device is used to contact the contact starting part of the atomizer 70, so that the contact starting part triggers the atomizer 70 to start working; the test device is arranged corresponding to the contact starting device, and the test device is used to communicate with the suction nozzle of the atomizer 70 to test the service life of the atomizer 70.
[0095] The test system of the embodiment of the application can complete the life test of the atomizer 70. Since the test system comprises the contact starting device as described above, the contact starting device has the advantages of high starting efficiency of the atomizer 70 and accurate control of the cycle period, so that the test system has the advantages of high test efficiency and accurate test.
[0096] The above describes the application with specific examples, which is only used to help understand the application and does not limit the application. According to the idea of the application, those skilled in the art of the application can make some simple deductions, modifications or substitutions.
Claims
1. A contact activation device for activating an atomizer having a contact activation portion, characterized by, The contact starting device comprises, A fixing assembly for fixing the atomizer, at least part of the contact starting part protruding from the fixing assembly; A driving member and a contact plate, the driving member and the contact plate being connected, the driving member driving the contact plate to move towards or away from the contact starting part; the contact plate being used to contact the contact starting part to trigger the atomizer to start working.
2. The contact actuation device of claim 1, wherein The contact starting part entirely protrudes from the fixing assembly, and the contact plate is a conductive material piece.
3. The contact actuation device of claim 1, wherein, The fixing assembly comprises a first fixing member, the first fixing member being used to fix part of the contact starting part, and the remaining part of the contact starting part protruding from the first fixing member; The contact plate is used to contact the remaining part of the contact starting part; The first fixing member and the contact plate are respectively conductive material pieces.
4. The contact actuation device of claim 1, wherein The fixing assembly comprises a first fixing member, the first fixing member being provided with a first profiled groove on the surface facing the contact plate, and the contact plate being provided with a second profiled groove on the surface facing the first fixing member; The atomizer comprises a suction nozzle, the suction nozzle forming the contact starting part, the first profiled groove being used to set the suction nozzle, and the second profiled groove being buckled on the part of the suction nozzle protruding from the first profiled groove; or, The atomizer comprises a suction nozzle and a liquid storage bin, at least part of the end of the liquid storage bin close to the suction nozzle forming the contact starting part, the first profiled groove being used to set the end of the liquid storage bin close to the suction nozzle, and the second profiled groove being buckled on the part of the end of the liquid storage bin close to the suction nozzle protruding from the first profiled groove.
5. The contact actuation device of claim 1, wherein The fixing assembly comprises: A second fixing member, the second fixing member being provided with a third profiled groove on the surface facing the contact plate, and the atomizer being set in the third profiled groove away from the suction nozzle; A pressing plate connected with the second fixing member, the pressing plate being provided corresponding to the third profiled groove, and the pressing plate being used to abut against at least part of the atomizer protruding from the third profiled groove.
6. The contact actuation device of claim 5, wherein, In the first direction, two opposite side walls in the second fixing member are respectively provided with a first limiting column and a second limiting column; One end of the pressing plate is provided with a first connecting plate, and the first connecting plate is provided with a first opening; the other end of the pressing plate is provided with a second connecting plate, and the second connecting plate is provided with a second opening; The first limiting column is set in the first opening, and the second limiting column is set in the second opening, so as to connect the pressing plate with the second fixing member.
7. The contact actuation device of claim 6, wherein The fixing assembly further comprises a flexible abutting piece, the flexible abutting piece being connected with the pressing plate, at least part of the flexible abutting piece protruding from the surface of the pressing plate facing the third profiled groove, the surface of the pressing plate facing the third profiled groove being spaced apart from the atomizer, and the flexible abutting piece being used to abut against the atomizer.
8. A contact starting device according to any one of claims 1 to 7, characterized in that The contact starting device further comprises a flexible plug, the flexible plug being provided with a through hole; The atomizer comprises a suction nozzle, the suction nozzle forming the contact starting part, and the suction nozzle being set in the through hole; or, The atomizer comprises a suction nozzle and a liquid storage bin, at least part of the end of the liquid storage bin close to the suction nozzle forming the contact starting part, the first profiled groove being used to set the end of the liquid storage bin close to the suction nozzle, and the second profiled groove being buckled on the part of the end of the liquid storage bin close to the suction nozzle protruding from the first profiled groove. The atomizer comprises a suction nozzle and a liquid storage bin, the contact starting part is at least partially formed in one end of the liquid storage bin close to the suction nozzle, and the suction nozzle and the one end of the liquid storage bin close to the suction nozzle are arranged in the through hole.
9. The contact actuation device of claim 8, wherein, The through hole comprises a first section hole and a second section hole, the contact starting part is arranged in the first section hole, and the distance between the hole wall of the first section hole and the outer peripheral wall of the flexible plug is less than or equal to 1 mm perpendicular to the center line of the first section hole. The second section hole is used for being connected with a test device.
10. A test system for testing an atomizer, the test system comprising: The test system comprises, The contact starting device according to any one of claims 1-9, the contact plate of the contact starting device is used for being contacted with the contact starting part of the atomizer to trigger the atomizer to start working; a test device corresponding to the contact starting device, the test device is used for being connected with the suction nozzle of the atomizer to test the service life of the atomizer.