Testing device
By using the fixture components for clamping, the automatic button pressing components for pressing, and the temperature measuring components for detection in the testing device, the problem of low efficiency and insufficient accuracy in detecting the heating temperature of aerosol generating devices has been solved, achieving efficient and accurate automated detection.
Patent Information
- Application Number
- CN202520346443.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-02-28
AI Technical Summary
The heating temperature detection efficiency and accuracy of existing aerosol generating devices are low, mainly because the manual button pressing method is inefficient and prone to misjudgment.
A testing device is provided, including a testing platform, a fixture assembly, a pressing assembly, and a temperature measuring assembly. The aerosol generating device is held by the fixture assembly, the pressing assembly automatically presses the button, and the temperature measuring assembly detects the temperature of the heating part, thereby realizing automated testing.
It improves the detection efficiency and accuracy of aerosol generating devices, and solves the problems of low efficiency and low accuracy caused by manual observation and manual pressing.
Smart Images

Figure CN223873302U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The embodiment of the present application relates to the technical field of test equipment, in particular to a test device. BACKGROUND
[0002] The aerosol generating device is a device that heats an aerosol generating article or an aerosol generating liquid by a heating and non-combustion method to generate an aerosol. The aerosol generating device includes a body and a button, the body is provided with a heating portion, and the button is arranged on the body to switch the heating portion between working and non-working.
[0003] In the current technology, before the aerosol generating device is shipped, it is necessary to test whether the heating temperature of the heating portion can rise to the preset temperature within the preset time, and then a worker needs to press the button continuously for a preset number of times to start or stop the aerosol generating device. The above-mentioned test method of manually pressing the button is low in efficiency, and the subjective judgment of the worker on the heating speed is easy to cause misjudgment, resulting in that the defective products are not detected. CONTENT OF THE UTILITY MODEL
[0004] The embodiment of the present application provides a test device, which can effectively improve the detection efficiency and accuracy of the aerosol generating device.
[0005] To solve the above technical problems, one technical scheme adopted by the embodiment of the present application is to provide a test device, which includes a test platform, a jig assembly, a pressing assembly and a temperature measuring assembly. The jig assembly is arranged on the test platform and is configured to clamp the aerosol generating device to be tested. The pressing assembly is arranged on the test platform and is configured to press the button of the aerosol generating device to be tested. The temperature measuring assembly is arranged on the test platform and is configured to detect the temperature of the heating portion of the aerosol generating device to be tested. Through the above structure, the test device can accurately and effectively press the button of the aerosol generating device to be tested and detect the temperature of the heating portion of the aerosol generating device to be tested, thereby effectively solving the problems of low test efficiency and low accuracy caused by manual visual observation and manual pressing.
[0006] In some embodiments, the jig assembly includes a first mounting seat, a first carrier plate and a first carrier. The first mounting seat is fixed to the test platform, the first carrier is fixed to the first carrier plate, the first carrier is provided with a receiving cavity for receiving the aerosol generating device to be tested, the first mounting seat is provided with a first guide portion extending in a first direction, the first carrier plate is provided with a second guide portion extending in the first direction, and the first guide portion is connected with the second guide portion in a matching mode, so that the first carrier plate can move relative to the first mounting seat in the first direction.
[0007] In some embodiments, the jig assembly comprises a first driving member disposed on one of the test platform, the first mounting seat and the first carrier plate, the first driving member driving the first carrier plate to move relative to the first mounting seat in a first direction; and / or the jig assembly comprises a first locking member disposed on the first mounting seat or the first carrier plate, the first locking member fixing the first carrier plate to the first mounting seat or unlocking the first carrier plate from the first mounting seat.
[0008] In some embodiments, the pressing assembly comprises a bracket component and a pressing component, the bracket component is disposed on the test platform, the pressing component is disposed on the bracket component, the bracket component is capable of adjusting the position of the pressing component in a second direction and a third direction, the second direction and the third direction are perpendicular, and the pressing component is capable of pressing the key of the aerosol generating device to be tested in the second direction.
[0009] In some embodiments, the bracket component comprises a second mounting seat, a first guide rod, a third mounting seat and a second guide rod, the second mounting seat is fixed to the test platform, the first guide rod is fixed to the second mounting seat and extends in the second direction, the third mounting seat is provided with a first guide hole and a second guide hole, the first guide rod is connected to the first guide hole, and the second guide rod is connected to the second guide hole and extends in the third direction; the pressing component comprises a sleeve and a telescopic rod, the sleeve is fixed to the second guide rod, and the telescopic rod is movably disposed in the sleeve in the second direction.
[0010] In some embodiments, the bracket component comprises a second locking member connected to the third mounting seat and the first guide rod, the second locking member locking the third mounting seat to the first guide rod or unlocking the third mounting seat from the first guide rod; and / or the bracket component comprises a third locking member connected to the third mounting seat and the second guide rod, the third locking member locking the second guide rod to the third mounting seat or unlocking the second guide rod from the third mounting seat.
[0011] In some embodiments, the temperature measuring assembly comprises a fourth mounting seat, a second carrier plate and a temperature measuring component, the fourth mounting seat is fixed to the test platform, the fourth mounting seat is provided with a third guide portion extending in the second direction, the second carrier plate is provided with a fourth guide portion extending in the second direction, the third guide portion and the fourth guide portion are connected to enable the second carrier plate to move relative to the fourth mounting seat in the second direction; the temperature measuring component is fixed to the second carrier plate, and the temperature measuring component is used to detect the temperature of the heating portion of the aerosol generating device to be tested.
[0012] In some embodiments, the temperature measuring assembly comprises a second driving member, the second driving member is arranged on one of the test platform, the fourth mounting seat and the second carrier plate, and the second driving member drives the second carrier plate to move relative to the fourth mounting seat in a second direction; and / or the temperature measuring assembly comprises a fourth locking member, the fourth locking member is connected between the fourth mounting seat and the second carrier plate, the fourth locking member locks the second carrier plate to the fourth mounting seat, or the fourth locking member unlocks the second carrier plate from the fourth mounting seat.
[0013] In some embodiments, the pressing component is a pneumatic cylinder; and / or the temperature measuring component is an infrared temperature detector.
[0014] In some embodiments, the number of jig assemblies, the number of pressing assemblies and the number of temperature measuring assemblies are multiple, and one jig assembly, one pressing assembly and one temperature measuring assembly correspond to each other to detect the same aerosol generating device to be tested.
[0015] The beneficial effects of the embodiments of the present application are that the embodiments of the present application provide a test device, which comprises a test platform, a jig assembly, a pressing assembly and a temperature measuring assembly. The jig assembly is arranged on the test platform and is configured to clamp an aerosol generating device to be tested. The pressing assembly is arranged on the test platform and is configured to press a key of the aerosol generating device to be tested. The temperature measuring assembly is arranged on the test platform and is configured to detect the temperature of a heating portion of the aerosol generating device to be tested. Through the above structure, the test device can accurately and effectively press test the key of the aerosol generating device to be tested and detect the temperature of the heating portion of the aerosol generating device to be tested, effectively solving the problem of low test efficiency and low accuracy caused by manual visual observation and manual pressing. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the specific embodiments of the present application, the drawings needed in the specific embodiment description will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, each element or part is not necessarily drawn according to the actual scale.
[0017] Figure 1 is an exploded view of the test device of the embodiments of the present application;
[0018] Figure 2 is a schematic view of part of the components of the test device of the embodiments of the present application;
[0019] Figure 3 is an exploded view of the jig assembly of the test device of the embodiments of the present application;
[0020] Figure 4 is an exploded view of the pressing assembly of the test device of the embodiments of the present application;
[0021] Figure 5 is an exploded view of a temperature measuring assembly of a test device according to an embodiment of the present application.
[0022] Reference signs in the detailed description of the embodiments are as follows:
[0023] 100, test device; 10, test platform; 20, jig assembly; 21, first mounting seat; 211, first guide portion; 22, first carrier plate; 221, second guide portion; 23, first driving member; 24, first locking member; 25, first carrier; 251, accommodating cavity; 30, pressing assembly; 31, bracket component; 311, second mounting seat; 312, first guide rod; 313, third mounting seat; 3131, first guide hole; 3132, second guide hole; 314, second guide rod; 315, second locking member; 316, third locking member; 32, pressing component; 321, sleeve; 322, telescopic rod; 40, temperature measuring assembly; 41, fourth mounting seat; 411, third guide portion; 42, second carrier plate; 421, fourth guide portion; 43, temperature measuring component; 44, second driving member; 45, fourth locking member; X, first direction; Y, second direction; Z, third direction; 200, aerosol generating device; 201, button; 202, heating portion. DETAILED DESCRIPTION
[0024] In order to facilitate the understanding of the present application, the present application will be described in more detail below in conjunction with the drawings and specific embodiments. It should be noted that when an element is described as "fixed to" another element, it can be directly on the other element or one or more intervening elements can be present therebetween. When an element is described as "connected to" another element, it can be directly connected to the other element or one or more intervening elements can be present therebetween. The terms "upper", "lower", "inner", "outer", "vertical", "horizontal", and the like used in the specification indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", and the like are only for the purpose of description and cannot be understood as indicating or implying relative importance.
[0025] Unless otherwise defined, all technical and scientific terms used in the specification are the same as those commonly understood by those skilled in the art to which the present application belongs. The terms used in the specification of the present application are only for the purpose of describing the specific embodiments and are not used to limit the present application. The term "and / or" used in the specification includes any and all combinations of one or more related listed items.
[0026] In addition, the technical features involved in the different embodiments of the present application described below can be combined with each other as long as there is no conflict.
[0027] Please refer to Figure 1 and Figure 2 , the present application provides a test device 100, the test device 100 includes a test platform 10, a jig assembly 20, a pressing assembly 30 and a temperature measuring assembly 40. The jig assembly 20 is arranged on the test platform 10, and the jig assembly 20 is configured to clamp the aerosol generating device 200 to be tested. The pressing assembly 30 is arranged on the test platform 10, and the pressing assembly 30 is configured to press the key 201 of the aerosol generating device 200 to be tested. The temperature measuring assembly 40 is arranged on the test platform 10, and the temperature measuring assembly 40 is configured to detect the temperature of the heating part 202 of the aerosol generating device 200 to be tested. Through the above structure, the test device 100 can accurately and effectively press the key 201 of the aerosol generating device 200 to be tested, and detect the temperature of the heating part 202 of the aerosol generating device 200 to be tested, effectively solve the problem of low test efficiency and low accuracy caused by manual visual observation and manual pressing.
[0028] In some embodiments, please refer to Figure 2 and Figure 3 , the jig assembly 20 includes a first mounting seat 21 and a first carrier plate 22, the first mounting seat 21 is fixed to the test platform 10, and the first mounting seat 21 is provided with a first guide part 211 extending along the first direction X, the first carrier plate 22 is provided with a second guide part 221 extending along the first direction X, the first guide part 211 and the second guide part 221 are connected in a matched manner, and the first carrier plate 22 is fixed relative to the first mounting seat 21 or moves along the first direction X. Through the above structure, the first carrier plate 22 can reciprocate relative to the first mounting seat 21 in the first direction X, so that the position of the aerosol generating device 200 to be tested placed on the first carrier plate 22 can be adjusted, so that the pressing assembly 30 can accurately press the key 201 of the aerosol generating device 200, and the temperature measuring assembly 40 can accurately detect the temperature of the heating part 202 of the aerosol generating device 200.
[0029] In further embodiments, the first guide part 211 is a guide groove, and the second guide part 221 is a guide protrusion, and the guide groove and the guide protrusion are arranged in a matched manner, so that the first carrier plate 22 can reciprocate relative to the first mounting seat 21 along the first direction X. In other embodiments, in other directions perpendicular to the first direction X, the guide groove and the guide protrusion restrict each other from moving, so that the first carrier plate 22 can only reciprocate relative to the first mounting seat 21 along the first direction X. It can be understood that the first guide part 211 can be a guide protrusion, and the second guide part 221 can be a guide groove.
[0030] In some embodiments, the jig assembly 20 comprises a first driving member 23, which is arranged on one of the test platform 10, the first mounting base 21 and the first carrier plate 22, and drives the first carrier plate 22 to move relative to the first mounting base 21 along the first direction X. As an example, the first driving member 23 is a first knob with a gear, which is arranged on the first mounting base 21, and the first carrier plate 22 is provided with a rack, which is engaged with the gear. By driving the first knob to rotate by an external force, the first carrier plate 22 can be driven to move relative to the first mounting base 21. By arranging the first driving member 23, the movement amount of the first carrier plate 22 relative to the first mounting base 21 can be adjusted more accurately, and the adjustment accuracy is improved. In other examples, the first driving member 23 can be a motor, which drives the first carrier plate 22.
[0031] In some embodiments, the jig assembly 20 comprises a first locking member 24, which is arranged on the first mounting base 21 or the first carrier plate 22, and fixes the first carrier plate 22 to the first mounting base 21, or unlocks the first carrier plate 22 from the first mounting base 21. As an example, the first locking member 24 is a first screw, which is screwed with the first mounting base 21, and a part of the first screw can directly or indirectly abut against the first carrier plate 22. By rotating the first screw, the first carrier plate 22 can be locked or unlocked.
[0032] In some embodiments, the jig assembly 20 comprises a first carrier 25, which is provided with a receiving cavity 251 for receiving the aerosol generating device 200 to be tested, and is detachably arranged on the first carrier plate 22. Through the above structure, the first carrier 25 can be detached from the first carrier plate 22, which facilitates the installation of the aerosol generating device 200 to be tested, and in addition, when testing different types and sizes of aerosol generating devices 200, the corresponding types and sizes of first carriers 25 can be replaced, which improves the compatibility of the test device 100.
[0033] In some embodiments, please refer to Figure 2 and Figure 4The pressing assembly 30 includes a bracket component 31 and a pressing component 32. The bracket component 31 is arranged on the test platform 10, and the pressing component 32 is arranged on the bracket component 31. The bracket component 31 can adjust the position of the pressing component 32 along the second direction Y and the third direction Z, and the second direction Y and the third direction Z are perpendicular. The pressing component 32 can press the button 201 of the aerosol generating device 200 along the second direction Y. Through the above structure, the bracket component 31 can be adjusted to adjust the position of the pressing component 32 to correspond to the position of the button 201 of the aerosol generating device 200 to be tested, thereby improving the pressing accuracy. In addition, when testing aerosol generating devices 200 of different sizes, the bracket component 31 can be adjusted to make the pressing component 32 correspond to the position of the button 201, thereby improving the compatibility.
[0034] In some embodiments, the bracket component 31 includes a second mounting seat 311, a first guide rod 312, a third mounting seat 313, and a second guide rod 314. The second mounting seat 311 is fixed to the test platform 10, the first guide rod 312 is fixed to the second mounting seat 311, and the first guide rod 312 extends along the second direction Y. The second direction Y is perpendicular to the first direction X. The third mounting seat 313 is provided with a first guide hole 3131 and a second guide hole 3132. The first guide hole 3131 is connected with the first guide rod 312 in a matching manner, so that the second mounting seat 311 can reciprocate along the first guide rod 312. The second guide rod 314 is connected with the second guide hole 3132 in a matching manner, so that the second guide rod 314 can reciprocate relative to the second mounting seat 311. The second guide rod 314 extends along the third direction Z, and the third direction Z is perpendicular to the first direction X and the second direction Y, respectively.
[0035] In some embodiments, the pressing component 32 includes a sleeve 321 and a telescopic rod 322. The sleeve 321 is fixed to the second guide rod 314, and the telescopic rod 322 is movably arranged in the sleeve 321 along the second direction Y. After adjusting the position of the pressing component 32 to correspond to the position of the aerosol generating device 200 to be tested, the telescopic rod 322 is driven to move along the second direction Y, so that the end of the telescopic rod 322 presses the button 201 of the aerosol generating device 200, or the telescopic rod 322 is driven to move along the second direction Y, so that the end of the telescopic rod 322 is separated from the button 201 of the aerosol generating device 200. As an example, the pressing component 32 is a pneumatic cylinder. In other embodiments, the pressing component 32 can be a hydraulic mechanism, or a gear and rack mechanism, or a worm and gear mechanism.
[0036] In some embodiments, the support member 31 comprises a second locking member 315 connecting the third mounting base 313 and the first guide rod 312, the second locking member 315 locking the third mounting base 313 to the first guide rod 312, or the second locking member 315 unlocking the third mounting base 313 from the first guide rod 312. As an example, the second locking member 315 is a second screw, the second screw is rotationally arranged on the third mounting base 313, and a portion of the second screw can directly or indirectly abut the first guide rod 312. By driving the rotation of the second screw, the third mounting base 313 can be locked or unlocked.
[0037] In some embodiments, the support member 31 comprises a third locking member 316 connecting the third mounting base 313 and the second guide rod 314, the third locking member 316 locking the second guide rod 314 to the third mounting base 313, or the third locking member 316 unlocking the second guide rod 314 from the third mounting base 313. As an example, the third locking member 316 is a third screw, the third screw is rotationally arranged on the third mounting base 313, and a portion of the third screw can directly or indirectly abut the second guide rod 314. By driving the rotation of the third screw, the second guide rod 314 can be locked or unlocked.
[0038] In some embodiments, referring to Figure 2 and Figure 5 , the temperature measuring assembly 40 comprises a fourth mounting base 41, a second carrier plate 42, and a temperature measuring member 43. The fourth mounting base 41 is fixed to the test platform 10, the fourth mounting base 41 is provided with a third guide portion 411 extending along the second direction Y, the second carrier plate 42 is provided with a fourth guide portion 421 extending along the second direction Y, and the third guide portion 411 and the fourth guide portion 421 are connected in cooperation to enable the second carrier plate 42 to reciprocate relative to the fourth mounting base 41 along the second direction Y.
[0039] As an example, the third guide portion 411 is a guide groove, and the fourth guide portion 421 is a guide protrusion, the guide groove and the guide protrusion are arranged in cooperation to enable the second carrier plate 42 to reciprocate relative to the fourth mounting base 41 along the second direction Y. In other embodiments, in other directions perpendicular to the second direction Y, the guide groove and the guide protrusion restrict each other from moving, so that the second carrier plate 42 can only reciprocate relative to the fourth mounting base 41 along the second direction Y. It can be understood that the third guide portion 411 can be a guide protrusion, and the fourth guide portion 421 can be a guide groove.
[0040] The temperature measuring component 43 is fixed to the second carrier plate 42 so that the temperature measuring component 43 can move relative to the testing platform 10 in the second direction Y. By adjusting the movement of the first carrier plate 22 in the first direction X and / or adjusting the movement of the second carrier plate 42 in the second direction Y, the position of the temperature measuring component 43 can be corresponded to the position of the heating portion 202 of the aerosol generating device 200 to be tested, and the temperature measuring component 43 is used to detect the temperature of the heating portion 202 of the aerosol generating device 200 to be tested. As an example, the temperature measuring component 43 is an infrared temperature detector.
[0041] In some embodiments, the temperature measuring assembly 40 comprises a second driving member 44, which is arranged on one of the testing platform 10, the fourth mounting seat 41 and the second carrier plate 42, and drives the second carrier plate 42 to move relative to the fourth mounting seat 41 in the second direction Y. As an example, the second driving member 44 is a second knob, which is arranged on the second carrier plate 42, and the end of the second knob can directly or indirectly abut against the fourth mounting seat 41. By rotating the second knob by an external force, the second carrier plate 42 can be reciprocated relative to the fourth mounting seat 41 in the second direction Y, so as to more accurately adjust the movement amount of the second carrier plate 42 relative to the fourth mounting seat 41, and improve the adjustment accuracy. In other examples, the second driving member 44 can be a motor, which drives the second carrier plate 42.
[0042] In some embodiments, the temperature measuring assembly 40 comprises a fourth locking member 45, which is connected between the fourth mounting seat 41 and the second carrier plate 42, and locks or unlocks the second carrier plate 42 relative to the fourth mounting seat 41. As an example, the fourth locking member 45 is a fourth screw, which is arranged on the second carrier plate 42, and a part of the fourth screw can directly or indirectly abut against the fourth mounting seat 41. By driving the rotation of the fourth screw, the second carrier plate 42 can be locked or unlocked.
[0043] In some embodiments, referring to Figure 1 , the number of the jig assemblies 20, the number of the pressing assemblies 30 and the number of the temperature measuring assemblies 40 are multiple, and one jig assembly 20, one pressing assembly 30 and one temperature measuring assembly 40 correspond to each other to detect the same aerosol generating device 200 to be tested. By arranging multiple jig assemblies 20, pressing assemblies 30 and temperature measuring assemblies 40 on one testing platform 10, multiple aerosol generating devices 200 to be tested can be detected at the same time, which effectively improves the detection efficiency.
[0044] The embodiment of the present application provides a test device 100, the test device 100 includes a test platform 10, a jig assembly 20, a pressing assembly 30 and a temperature measuring assembly 40. The jig assembly 20 is arranged on the test platform 10, and the jig assembly 20 is configured to clamp an aerosol generating device 200 to be tested. The pressing assembly 30 is arranged on the test platform 10, and the pressing assembly 30 is configured to press a key 201 of the aerosol generating device 200 to be tested. The temperature measuring assembly 40 is arranged on the test platform 10, and the temperature measuring assembly 40 is configured to detect the temperature of a heating part 202 of the aerosol generating device 200 to be tested. Through the above structure, the test device 100 can accurately and effectively press the key 201 of the aerosol generating device 200 to be tested, and detect the temperature of the heating part 202 of the aerosol generating device 200 to be tested, effectively solve the problem of low test efficiency and low accuracy caused by manual naked eye observation and manual pressing.
[0045] The above is only an embodiment of the present application, and does not limit the patent scope of the present application, and any equivalent structure or equivalent process transformation using the content of the specification and drawings of the present application, or direct or indirect application in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. A testing device (100), characterized in that, include: Test platform (10); A fixture assembly (20) is disposed on the test platform (10), and the fixture assembly (20) is configured to hold the aerosol generating device (200) to be tested; A pressing component (30) is provided on the test platform (10), and the pressing component (30) is configured to press the button (201) of the aerosol generating device (200) to be tested; A temperature measuring component (40) is disposed on the test platform (10) and is configured to detect the temperature of the heating part (202) of the aerosol generating device (200) to be tested.
2. The testing apparatus (100) according to claim 1, characterized in that, The fixture assembly (20) includes a first mounting base (21), a first carrier plate (22), and a first carrier (25). The first mounting base (21) is fixed to the test platform (10), and the first carrier (25) is fixed to the first carrier plate (22). The first carrier (25) is provided with a receiving cavity (251) for accommodating the aerosol generating device (200) to be tested. The first mounting base (21) is provided with a first guide portion (211) extending along a first direction (X), and the first carrier plate (22) is provided with a second guide portion (221) extending along the first direction (X). The first guide portion (211) and the second guide portion (221) are connected to each other so that the first carrier plate (22) can move relative to the first mounting base (21) along the first direction (X).
3. The testing apparatus (100) according to claim 2, characterized in that, The fixture assembly (20) includes a first drive member (23), which is disposed on one of the test platform (10), the first mounting base (21) and the first carrier plate (22). The first drive member (23) drives the first carrier plate (22) to move relative to the first mounting base (21) in a first direction (X). And / or, The fixture assembly (20) includes a first locking member (24) disposed on a first mounting base (21) or a first carrier plate (22). The first locking member (24) fixes the first carrier plate (22) to the first mounting base (21) or unlocks the first carrier plate (22) from the first mounting base (21).
4. The testing apparatus (100) according to any one of claims 1-3, characterized in that, The pressing component (30) includes a support component (31) and a pressing component (32). The support component (31) is set on the test platform (10), and the pressing component (32) is set on the support component (31). The support component (31) can adjust the position of the pressing component (32) along the second direction (Y) and the third direction (Z). The second direction (Y) and the third direction (Z) are perpendicular. The pressing component (32) can press the button (201) of the aerosol generating device (200) to be tested along the second direction (Y).
5. The testing apparatus (100) according to claim 4, characterized in that, The bracket component (31) includes a second mounting base (311), a first guide rod (312), a third mounting base (313), and a second guide rod (314). The second mounting base (311) is fixed to the test platform (10), and the first guide rod (312) is fixed to the second mounting base (311). The first guide rod (312) extends along the second direction (Y). The third mounting base (313) is provided with a first guide hole (3131) and a second guide hole (3132). The first guide hole (3131) is connected to the first guide rod (312), and the second guide rod (314) is connected to the second guide hole (3132). The second guide rod (314) extends along the third direction (Z). The pressing component (32) includes a sleeve (321) and a telescopic rod (322). The sleeve (321) is fixed to the second guide rod (314), and the telescopic rod (322) is movably disposed on the sleeve (321) along the second direction (Y).
6. The testing apparatus (100) according to claim 5, characterized in that, The bracket component (31) includes a second locking member (315), which connects the third mounting base (313) and the first guide rod (312). The second locking member (315) locks the third mounting base (313) to the first guide rod (312), or the second locking member (315) unlocks the third mounting base (313) from the first guide rod (312). And / or, The bracket component (31) includes a third locking member (316) that connects a third mounting base (313) and a second guide rod (314). The third locking member (316) locks the second guide rod (314) to the third mounting base (313) or unlocks the second guide rod (314) from the third mounting base (313).
7. The testing apparatus (100) according to claim 4, characterized in that, The temperature measuring assembly (40) includes a fourth mounting base (41), a second carrier plate (42), and a temperature measuring component (43). The fourth mounting base (41) is fixed to the test platform (10). The fourth mounting base (41) is provided with a third guide portion (411) extending along the second direction (Y). The second carrier plate (42) is provided with a fourth guide portion (421) extending along the second direction (Y). The third guide portion (411) and the fourth guide portion (421) are connected to each other so that the second carrier plate (42) can move relative to the fourth mounting base (41) along the second direction (Y). The temperature measuring component (43) is fixed to the second carrier plate (42) and is used to detect the temperature of the heating part (202) of the aerosol generating device (200) to be tested.
8. The testing apparatus (100) according to claim 7, characterized in that, The temperature measuring component (40) includes a second drive member (44), which is disposed in one of the test platform (10), the fourth mounting base (41), and the second carrier plate (42). The second drive member (44) drives the second carrier plate (42) to move relative to the fourth mounting base (41) in a second direction (Y). And / or, The temperature measuring assembly (40) includes a fourth locking member (45) that connects to a fourth mounting base (41) and a second carrier plate (42). The fourth locking member (45) locks the second carrier plate (42) to the fourth mounting base (41) or unlocks the second carrier plate (42) from the fourth mounting base (41).
9. The testing apparatus (100) according to claim 7, characterized in that, The pressing component (32) is a cylinder; and / or, the temperature measuring component (43) is an infrared temperature detector.
10. The testing apparatus (100) according to claim 1, characterized in that, The number of fixture components (20), pressing components (30) and temperature measuring components (40) are multiple, and one fixture component (20), one pressing component (30) and one temperature measuring component (40) correspond to each other to test the same aerosol generating device (200) to be tested.