Smoke obstruction automated test device and automated test equipment

By designing an automated smoke resistance testing device, which utilizes a conveyor belt and suction drive components to automatically test the smoke resistance of the cigarette rod, the high cost problem caused by manual operation is solved, and efficient smoke resistance testing and automatic rejection of defective products are achieved.

CN223611089UActive Publication Date: 2025-11-28SHENZHEN XINLINMEI TECH CO LTD
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Patent Information

Application Number
CN202423255122.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-11-28
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

In existing technologies, the smoke resistance testing of electronic cigarettes requires manual operation, resulting in high labor costs and making it difficult to meet the needs of mass production.

Method used

Design an automated smoke resistance testing device that uses a conveyor belt and carrier to automatically transport the smoke rod, combines a suction drive component and a simulated mouthpiece to perform automated smoke resistance testing, and automatically rejects unqualified products through a defective push rod component and a smoke rod pushing component.

Benefits of technology

It has automated the smoke resistance testing of electronic cigarettes, reduced labor costs, improved production efficiency, and enabled large-scale and rapid smoke resistance testing.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223611089U_ABST
Patent Text Reader

Abstract

The present disclosure provides a smoke resistance automatic testing device and an automatic testing equipment, the smoke resistance automatic testing device comprises a smoke resistance testing mechanism, a controller and the smoke resistance testing mechanism are sequentially arranged on the machine body along the movement direction of the conveying belt, a suction driving assembly is arranged on the side wall of the machine body, the suction driving assembly is provided with a mounting cavity, one end of a simulation suction nozzle is connected with the suction driving assembly through the mounting cavity, the other end of the simulation suction nozzle is provided with a suction cavity, the power output end of the suction driving assembly is telescopic in the direction of the carrier, so that the suction nozzle of the smoke rod body penetrates the suction cavity, so that the simulation suction nozzle tests the smoke resistance of the smoke rod body; the suction nozzle of the smoke rod body is located in the suction cavity of the simulation suction nozzle, so as to simulate the smoke resistance test of the smoke rod body, and the operation of automatically testing the smoke resistance of the produced electronic cigarette; so that the produced electronic cigarette can be automatically tested for smoke resistance in large quantities and quickly, and the labor cost of testing is reduced.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of automated production, and particularly relates to a smoke resistance automated testing device and an automated testing equipment. BACKGROUND

[0002] As an electronic product simulating cigarettes, the electronic cigarette has the same smoke and taste as cigarettes. The electronic cigarette provides users with nicotine in the form of vapor through atomization. As a new type of electronic product, the electronic cigarette can change the composition of the internal tobacco tar to reduce the smoking habit of the user and protect the user's body.

[0003] However, the quality of the electronic cigarette is affected by the smoke resistance, which is an important indicator for measuring the quality of the electronic cigarette. At present, the smoke resistance of the electronic cigarette needs to be tested after the production of the electronic cigarette. In the prior art, the smoke resistance test is usually operated manually. The operator needs to manually insert the electronic cigarette into the testing device during the test. However, after a large batch of electronic cigarettes are produced, the electronic cigarettes need to be inserted into the testing device one by one, which makes the operation of the smoke resistance test too cumbersome and greatly increases the labor cost, which is difficult to meet the needs of industrial production. CONTENT OF THE INVENTION

[0004] The purpose of the present disclosure is to overcome the deficiencies in the prior art and provide a smoke resistance automated testing device and an automated testing equipment for testing the smoke resistance of the electronic cigarette.

[0005] The purpose of the present disclosure is achieved by the following technical solutions:

[0006] A smoke resistance automated testing device comprises a machine body, a conveying belt and a plurality of carriers. The conveying belt is slidingly arranged on the machine body. The plurality of carriers are arranged on the conveying belt at intervals. Each carrier is used for placing a smoke rod body.

[0007] The smoke resistance automated testing device further comprises a smoke resistance testing mechanism arranged adjacent to the conveying belt. The smoke resistance testing mechanism comprises a suction driving assembly and a simulated mouthpiece. The suction driving assembly is mounted on the side wall of the machine body. The suction driving assembly is provided with a mounting cavity. One end of the simulated mouthpiece is connected with a power driving shaft of the suction driving assembly through the mounting cavity. The other end of the simulated mouthpiece is provided with a suction cavity. The suction driving assembly drives the simulated mouthpiece to move towards or away from the carriers, so that the suction cavity is arranged at the mouthpiece of the smoke rod body, and the simulated mouthpiece performs smoke resistance test on the smoke rod body.

[0008] In one of the embodiments, the cigarette resistance testing mechanism further comprises a defective cigarette pushing rod assembly, which is arranged on the side wall of the machine body and located at one side of the suction driving assembly. The power output end of the defective cigarette pushing rod assembly extends and retracts towards the carrier to push the unqualified cigarette rod body out of the carrier.

[0009] In one of the embodiments, the cigarette resistance automatic testing device further comprises a cigarette rod pushing assembly. The cigarette rod pushing assembly, the cigarette resistance testing mechanism and the defective cigarette pushing rod assembly are arranged in sequence along the conveying direction of the conveying belt. The cigarette rod pushing assembly is arranged on the machine body. When the carrier is conveyed to the position corresponding to the cigarette rod pushing assembly along the conveying belt, the acting end of the cigarette rod pushing assembly pushes the cap of the cigarette rod body on the carrier to make the cap of the cigarette rod body cover the body of the cigarette rod body.

[0010] In one of the embodiments, the suction driving assembly comprises a power driver and a pushing block. The power driver is fixed to the side wall of the machine body through a driving support. The power output end of the power driver is connected to the pushing block. The pushing block is connected to the simulated mouthpiece.

[0011] In one of the embodiments, the pushing block comprises a mouthpiece mounting block and a connecting block. The mounting block is provided with a mounting boss. The mounting cavity is located in the mounting boss. The simulated mouthpiece is arranged in the mounting cavity. One side of the connecting block is connected to the power output end of the power driver. The other side of the connecting block is connected to the mouthpiece mounting block.

[0012] In one of the embodiments, the defective cigarette pushing rod assembly comprises a fixing block and a pushing rod driver. The fixing block is arranged vertically on the side wall of the machine body. The end of the fixing block is provided with a through hole. The pushing rod driver pushes the cigarette rod body in the carrier through the through hole.

[0013] In one of the embodiments, the cigarette rod pushing assembly comprises a pushing support, a pressing rod block and a pushing driver. One end of the pushing support is arranged on one side wall of the machine body. The other end of the pushing support is arranged on the other side wall of the machine body. The pushing support is provided with a support plate. The pushing driver is mounted on the support plate. The power output end of the pushing driver is connected to the pressing rod block.

[0014] In one of the embodiments, the pushing support frame comprises a first side plate, a second side plate and a vertical plate, the vertical plate is arranged opposite to the support plate, one end of the first side plate is connected to the vertical plate, the other end of the first side plate is connected to the end face of the support plate, one end of the second side plate is connected to the vertical plate, the other end of the second side plate is connected to the end face of the support plate, the first side plate is provided with a first through hole, and the second side plate is provided with a second through hole, and the conveying belt is arranged in the first through hole and the second through hole respectively.

[0015] In one of the embodiments, the smoke resistance automatic testing device further comprises a controller, the controller is electrically connected to the test output end of the simulated mouthpiece and the control end of the cigarette rod pushing assembly respectively.

[0016] An automatic testing equipment comprises the smoke resistance automatic testing device in any of the above embodiments.

[0017] Compared with the prior art, the present disclosure has at least the following advantages:

[0018] The conveying belt is arranged on the machine body in a sliding manner, and a plurality of carriers are arranged at the end face of the conveying belt in a spaced manner, the cigarette rod body is placed in the carrier, so that the conveying belt moves the cigarette rod body in the carrier in the direction of the controller and the smoke resistance testing mechanism; the smoke resistance testing mechanism further comprises a suction driving assembly and a simulated mouthpiece, the simulated mouthpiece is used for sucking the cigarette rod body, so as to test the smoke resistance degree of the cigarette rod body; the suction driving assembly is arranged on the side wall of the machine body, and the suction driving assembly is provided with a mounting cavity, one end of the simulated mouthpiece penetrates through the mounting cavity and is connected to the suction driving assembly, so that when the power output end of the suction driving assembly extends or retracts in the direction of the carrier, the simulated mouthpiece can be driven to move close to or away from the carrier; because the other end of the simulated mouthpiece is provided with a suction cavity, the mouthpiece of the cigarette rod body penetrates through the suction cavity, so that the simulated mouthpiece can suck the smoke of the mouthpiece of the cigarette rod body, thereby testing the smoke resistance degree of the cigarette rod body; the cigarette rod body placed in the carrier is transmitted to the front of the smoke resistance testing mechanism by the conveying belt, and the suction driving assembly pushes the simulated mouthpiece to the mouthpiece of the cigarette rod body, so that the mouthpiece of the cigarette rod body is located in the suction cavity of the simulated mouthpiece, thereby simulating the test of the smoke resistance of the cigarette rod body, and the operation of automatically testing the smoke resistance of the produced electronic cigarette; the electronic cigarette is prevented from being inserted into the testing device one by one manually, so that the good electronic cigarette can be mass-produced and tested automatically, and the labor cost of testing is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present disclosure, the following will briefly introduce the drawings needed in the embodiments. It should be understood that the following drawings only illustrate some of the embodiments of the present disclosure, and therefore should not be considered as limiting the scope. For those skilled in the art, other related drawings can also be obtained without creative labor.

[0020] Figure 1 Structure schematic diagram of smoke resistance automatic testing device of an embodiment of the present disclosure;

[0021] Figure 2 Structure schematic diagram of smoke resistance automatic testing device of an embodiment of the present disclosure; Figure 1 Enlarged view of the part shown at A in the figure;

[0022] Figure 3 Structure schematic diagram of smoke resistance automatic testing device of an embodiment of the present disclosure;

[0023] Reference signs: 10, smoke resistance automatic testing device; 100, machine body; 110, support plate; 200, conveying belt; 210, pushing area; 300, controller; 400, carrier; 500, smoke resistance testing mechanism; 510, suction driving assembly; 5110, mounting cavity; 5120, power driver; 5130, driving support; 5140, pushing block; 5141, suction nozzle mounting block; 5141a, mounting boss; 5142, connecting block; 520, simulated suction nozzle piece; 5210, suction cavity; 530, defective product pushing rod assembly; 5310, fixed block; 5320, pushing rod driver; 600, smoke rod pushing assembly; 610, pushing support; 6110, first side plate; 6111, first through hole; 6120, second side plate; 6121, second through hole; 6130, vertical stand plate; 620, pressing rod block; 630, pushing driver; 700, smoke rod body. DETAILED DESCRIPTION

[0024] In order to facilitate the understanding of the present disclosure, the following will make a more comprehensive description of the present disclosure with reference to the related drawings. The preferred embodiments of the present disclosure are shown in the drawings. However, the present disclosure can be implemented in many different forms, and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present disclosure more thorough and comprehensive.

[0025] It should be noted that when an element is referred to as being "fixed" to another element, it can be directly on the other element or there can be an intervening element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or there can be an intervening element. The terms "vertical", "horizontal", "left", "right", and similar expressions used herein are for illustrative purposes only and are not intended to be limiting.

[0026] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of this disclosure. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0027] To better understand the technical solutions and beneficial effects of this disclosure, the following detailed description is provided in conjunction with specific embodiments:

[0028] like Figures 1 to 2 As shown, an automated smoke resistance testing device according to an embodiment includes a body 100, a conveyor belt 200, a plurality of carriers 400 and a smoke resistance testing mechanism 500. The conveyor belt 200 is slidably disposed on the body 100, and the plurality of carriers 400 are spaced apart on the conveyor belt 200. Each carrier 400 is used to place a smoke rod 700.

[0029] In this example, the smoke resistance testing mechanism 500 is located adjacent to the conveyor belt 200. The smoke resistance testing mechanism 500 includes a suction drive assembly 510 and a simulated mouthpiece 520. The suction drive assembly 510 is installed on the side wall of the body 100 and has an installation cavity 5110. One end of the simulated mouthpiece 520 is connected to the power drive shaft of the suction drive assembly 510 through the installation cavity 5110, and the other end of the simulated mouthpiece 520 has a suction cavity 5210. The suction drive assembly drives the simulated mouthpiece 520 to move closer to or away from the carrier 400 so that the mouthpiece of the cigarette rod 700 passes through the suction cavity 5210, so that the simulated mouthpiece 520 can perform a smoke resistance test on the cigarette rod 700.

[0030] It can be understood that the conveying belt 200 is slidably arranged on the machine body 100, and a plurality of carriers 400 are arranged at the end surface of the conveying belt 200, and the cigarette rod body 700 is placed in the carrier 400, so that the conveying belt 200 moves the cigarette rod body 700 of the carrier 400 in the direction of the controller 300 and the smoke resistance testing mechanism 500; the smoke resistance testing mechanism 500 further comprises a suction driving assembly 510 and a simulation suction nozzle piece 520, the simulation suction nozzle piece 520 is used for sucking the cigarette rod body 700, so as to test the smoke resistance of the cigarette rod body 700; the suction driving assembly 510 is arranged on the side wall of the machine body 100, and the suction driving assembly 510 is provided with a mounting cavity 5110, one end of the simulation suction nozzle piece 520 passes through the mounting cavity 5110 and is connected with the suction driving assembly 510, so that the power output end of the suction driving assembly 510 is close to or away from the carrier 400, and the simulation suction nozzle piece 520 can be driven to move in the direction of the carrier 400; because the other end of the simulation suction nozzle piece 520 is provided with a suction cavity 5210, the suction nozzle of the cigarette rod body 700 passes through the suction cavity 5210, so that the simulation suction nozzle piece 520 can suck the smoke of the cigarette rod body 700, so as to test the smoke resistance of the cigarette rod body 700; the cigarette rod body 700 placed in the carrier 400 is transmitted to the front of the smoke resistance testing mechanism 500 through the conveying belt 200, and the simulation suction nozzle piece 520 is pushed to the suction nozzle of the cigarette rod body 700 by the suction driving assembly 510, so that the suction nozzle of the cigarette rod body 700 is located in the suction cavity 5210 of the simulation suction nozzle piece 520, so as to simulate the test of the smoke resistance of the cigarette rod body 700, and the operation of automatically testing the smoke resistance of the produced electronic cigarette; the electronic cigarette is avoided to be inserted into the testing device one by one manually, so that the good electronic cigarette can be mass-produced and automatically tested for smoke resistance, and the labor cost of testing is reduced.

[0031] In combination Figure 2 With Figure 3As shown, in one embodiment, the smoke resistance testing mechanism 500 further comprises a defective product push rod assembly 530, which is arranged on the side wall of the machine body 100 and located at one side of the suction driving assembly 510. The power output end of the defective product push rod assembly 530 is retractable towards the carrier 400, so that the defective product push rod assembly 530 pushes the unqualified smoke rod body 700 out of the carrier 400. It can be understood that the defective product push rod assembly 530 is arranged on the side wall of the machine body 100 and located at one side of the suction driving assembly 510. After the smoke resistance testing of the smoke rod body 700 by the suction driving assembly 510, the conveyor belt 200 conveys the smoke rod body 700 to the defective product push rod assembly 530. Because the power output end of the defective product push rod assembly 530 is retractable towards the carrier 400, the smoke rod body 700 with substandard smoke resistance is pushed out of the conveyor belt 200 by the power output end of the defective product push rod assembly 530, so as to separate the substandard smoke rod body 700.

[0032] In combination Figure 1 With Figure 3 As shown, in another embodiment, the smoke resistance automatic testing device 10 further comprises a smoke rod pushing assembly 600. The smoke rod pushing assembly 600, the smoke resistance testing mechanism 500, and the defective product push rod assembly 530 are arranged in sequence along the conveying direction of the conveyor belt 200. The smoke rod pushing assembly 600 is arranged on the machine body 100. When the carrier 400 is conveyed to the position corresponding to the smoke rod pushing assembly 600 along the conveyor belt 200, the acting end of the smoke rod pushing assembly 600 pushes the top cover of the smoke rod body 700 on the carrier 400, so that the top cover of the smoke rod body 700 covers the body of the smoke rod body 700. It can be understood that the smoke rod pushing assembly 600 is arranged on the machine body 100 and located between the controller 300 and the smoke resistance testing mechanism 500. When the top cover of the smoke rod body 700 is glued and stitched, the conveyor belt 200 conveys the carrier 400 to the pushing area 210. Because the pushing area 210 is arranged horizontally to the power output end of the smoke rod pushing assembly 600, the power output end of the smoke rod pushing assembly 600 pushes the top cover of the smoke rod body 700, so that the top cover of the smoke rod body 700 is better glued and installed after being glued with glue because of the pushing of the smoke rod pushing assembly 600.

[0033] In combination Figure 1 With Figure 3As shown, in one embodiment, the suction driving assembly 510 includes a power driver 5120 and a pushing block 5140, the power driver 5120 is fixed to the side wall of the machine body 100 through a driving support 5130, the power output end of the power driver 5120 is connected to the pushing block 5140, and the pushing block 5140 is connected with the simulated mouthpiece 520. It can be understood that the driving support 5130 is arranged on the side wall of the machine body 100, the driver and the pushing block 5140 are arranged on the end face of the driving support 5130, and the power output end of the power driver 5120 is connected to the pushing block 5140. When the power output end of the power driver 5120 moves towards the conveying belt 200 of the machine body 100, because the pushing block 5140 is connected with the simulated mouthpiece 520, the simulated mouthpiece 520 is close to the tobacco rod body 700 on the carrier 400 and the suction cavity 5210 of the simulated mouthpiece 520 is arranged at the mouthpiece of the tobacco rod body 700, so as to perform the smoke resistance simulation test of the tobacco rod body 700.

[0034] As shown, Figure 3 In one embodiment, the pushing block 5140 includes a mouthpiece mounting block 5141 and a connecting block 5142. The mounting block 5141 protrudes a mounting boss 5141a, the mounting cavity 5110 is located in the mounting boss 5141a, the simulated mouthpiece 520 is arranged in the mounting cavity 5110, one side of the connecting block 5142 is connected with the power output end of the power driver 5120, and the other side of the connecting block 5142 is connected with the mounting block 5141. It can be understood that the mounting block 5141 protrudes the mounting boss 5141a, the mounting cavity 5110 is in the mounting boss 5141a, the simulated mouthpiece 520 is arranged in the mounting cavity 5110, and the connecting block 5142 is connected with the power output end of the power driver 5120. When the power driver 5120 works and moves, the connecting block 5142 drives the mounting block 5141 to move close to the carrier 400, so that the tobacco rod body 700 on the carrier 400 enters the suction cavity 5210 of the simulated mouthpiece 520 in the mounting boss 5141a, thereby detecting the smoke resistance of the tobacco rod body 700 through the simulated mouthpiece 520.

[0035] In combination with Figure 1 With Figure 3As shown, further, the defective push rod assembly 530 includes a fixed block 5310 and a push rod driver 5320, the fixed block 5310 is vertically arranged on the side wall of the machine body 100, the end of the fixed block 5310 is provided with a through hole, and the push rod driver 5320 pushes the tobacco rod body 700 on the carrier 400 through the through hole. It can be understood that the fixed block 5310 is vertically arranged on the side wall of the machine body 100, which plays a role in firmly supporting the push rod driver 5320, and the end of the fixed block 5310 is provided with a through hole, and the push rod driver 5320 passes through the through hole and pushes the tobacco rod body 700 on the carrier 400, when the smoke resistance test mechanism 500 completes the smoke resistance test on the tobacco rod body 700 through the simulation mouthpiece 520, the controller 300 will judge whether the tobacco rod body 700 meets the standard according to the test result. For the tobacco rod body 700 that does not meet the smoke resistance standard, the controller 300 will activate the defective push rod assembly 530. At this time, after receiving the signal, the push rod driver 5320 starts to work, the push rod driver 5320 of which passes through the through hole of the fixed block 5310, extends forward and contacts the unqualified tobacco rod body 700. The push rod continues to push forward until the unqualified tobacco rod body 700 is pushed out of the conveying belt 200, realizing the automatic rejection of unqualified products.

[0036] As Figure 3As shown, in one embodiment, the cigarette rod pushing assembly 600 includes a pushing support 610, a pressing rod block 620 and a pushing driver 630, one end of the pushing support 610 is arranged on one side wall of the machine body 100, the other end of the pushing support 610 is arranged on the other side wall of the machine body 100; the pushing support 610 is protrudingly provided with a support plate 110, the pushing driver 630 is installed on the support plate 110, the power output end of the pushing driver 630 is connected to the pressing rod block 620. It can be understood that the pushing support 610 is stably connected on the two side walls of the machine body 100, which provides a stable support structure for the pressing rod block 620 and the pushing driver 630, at the same time, the support plate 110 is protrudingly arranged on the machine body 100, the end face of the support plate 110 is in the same horizontal direction with the end face of the conveying belt 200, which ensures the accuracy and stability of the pressing rod block 620 when pushing the top cover of the cigarette rod body 700. At the same time, the pressing rod block 620 and the pushing driver 630 are arranged on the end face of the support plate 110, the power output end of the pushing driver 630 is connected to the pressing rod block 620; when the pressing operation of the top cover of the cigarette rod body 700 is needed, the pushing driver 630 is started after receiving the instruction of the controller 300, the power output end of the pushing driver 630 pushes the pressing rod block to slide along the end face of the support plate 110 and the conveying belt 200, due to the cooperation of the pressing rod block 620 and the end face of the support plate 110 and the conveying belt 200, the pressing rod block 620 stably and accurately contacts the top cover of the cigarette rod body 700 and applies pressure to the top cover of the cigarette rod body 700, thereby ensuring the adhesion and stability of the top cover and the machine body 100 of the cigarette rod body 700.

[0037] As Figure 3As shown, in one embodiment, the pushing bracket 610 includes a first side plate 6110, a second side plate 6120, and a vertical plate 6130. The vertical plate 6130 is disposed opposite to the support plate 110. One end of the first side plate 6110 is connected to the vertical plate 6130, and the other end of the first side plate 6110 is connected to the end face of the support plate 110. One end of the second side plate 6120 is connected to the vertical plate 6130, and the other end of the second side plate 6120 is connected to the end face of the support plate 110. The first side plate 6110 has a first opening 6111, and the second side plate 6120 has a second opening 6121. The conveyor belt 200 passes through the first opening 6111 and the second opening 6121 respectively. It is understood that the vertical plate 6130 is located on the side opposite to the support plate 110, and serves to support and connect the first side plate 6110 and the second side plate 6120. One end of the first side plate 6110 is connected to the vertical plate 6130, and the other end is connected to the end face of the support plate 110. This design allows the first side plate 6110 to be firmly fixed on the body 100 and provides stable guidance for the sliding of the pressure rod assembly 620. Meanwhile, the first opening 6111 on the first side plate 6110 and the conveyor belt 200 allows the carrier 400 (and the tobacco rod 700 placed therein) to smoothly enter the pressing area 210 for the pressing operation of the top cover; and one end of the second side plate 6120 is connected to the vertical plate 6130, and the other end of the second side plate 6120 is connected to the end face of the support plate 110. The first side plate 6110 and the conveyor belt 200 have a second opening 6121, so that the carrier 400 (and the tobacco rod 700 placed therein) can smoothly drive out of the pressing area 210 after the pressing operation of the top cover is completed, so as to carry out subsequent processing procedures.

[0038] like Figure 1 As shown, in one embodiment, the automated smoke resistance testing device 10 further includes a controller 300, which is electrically connected to the test output terminal of the simulated mouthpiece 520 and the control terminal of the smoke rod pushing assembly 600. It can be understood that by electrically connecting the controller 300 to the test output terminal of the simulated mouthpiece 520 and the control terminal of the smoke rod pushing assembly 600, the controller 300 can control the operation of the simulated mouthpiece 520 and the smoke rod pushing assembly 600. Simultaneously, the controller 300 can adjust the smoke resistance test of the smoke resistance testing mechanism 500 according to actual conditions.

[0039] The application also provides an automatic testing device comprising the smoke resistance automatic testing device 10 of any of the above embodiments. It can be understood that the smoke rod body 700 placed in the carrier 400 is transmitted to the front of the smoke resistance testing mechanism 500 through the conveying belt 200, and the suction driving assembly 510 pushes the simulation suction nozzle piece 520 to the suction nozzle of the smoke rod body 700, so that the suction nozzle of the smoke rod body 700 is located in the suction cavity 5210 of the simulation suction nozzle piece 520, thereby simulating the smoke resistance test of the smoke rod body 700, and the operation of automatically testing the smoke resistance of the produced electronic cigarette.

[0040] Compared with the prior art, the present disclosure has at least the following advantages:

[0041] The conveying belt 200 is slidably arranged on the machine body 100, and a plurality of carriers 400 are arranged at intervals on the end surface of the conveying belt 200. The smoke rod body 700 is placed in the carrier 400, so that the conveying belt 200 moves the smoke rod body 700 of the carrier 400 in the direction of the controller 300 and the smoke resistance testing mechanism 500. The smoke resistance testing mechanism 500 further comprises a suction driving assembly 510 and a simulation suction nozzle piece 520. The simulation suction nozzle piece 520 is used to suck the smoke rod body 700, thereby testing the smoke resistance of the smoke rod body 700. The suction driving assembly 510 is arranged on the side wall of the machine body 100, and the suction driving assembly 510 is provided with a mounting cavity 5110. One end of the simulation suction nozzle piece 520 penetrates the mounting cavity 5110 and is connected with the suction driving assembly 510, so that the power output end of the suction driving assembly 510 moves towards or away from the carrier 400, and can drive the simulation suction nozzle piece 520 to move towards the carrier 400. Because the other end of the simulation suction nozzle piece 520 is provided with a suction cavity 5210, the suction nozzle of the smoke rod body 700 penetrates the suction cavity 5210, so that the simulation suction nozzle piece 520 can suck the smoke of the smoke rod body 700, thereby testing the smoke resistance of the smoke rod body 700. The smoke rod body 700 placed in the carrier 400 is transmitted to the front of the smoke resistance testing mechanism 500 through the conveying belt 200, and the suction driving assembly 510 pushes the simulation suction nozzle piece 520 to the suction nozzle of the smoke rod body 700, so that the suction nozzle of the smoke rod body 700 is located in the suction cavity 5210 of the simulation suction nozzle piece 520, thereby simulating the smoke resistance test of the smoke rod body 700, and the operation of automatically testing the smoke resistance of the produced electronic cigarette. The electronic cigarette is inserted into the testing device manually, so that a large number of good electronic cigarettes can be quickly produced for automatic smoke resistance test, and the labor cost of testing is reduced.

[0042] The above-described embodiments only express several implementation manners of the present disclosure, which are described in a more specific and detailed manner, but cannot be understood as a limitation on the scope of the utility model patent. It should be noted that, for ordinary skilled persons in the art, several modifications and improvements can be made without departing from the concept of the present disclosure, which all belong to the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure patent should be subject to the appended claims.

Claims

1. A cigarette resistance automatic testing device, comprising a machine body, a conveying belt and a plurality of carriers, the conveying belt is slidingly arranged on the machine body, and the plurality of carriers are arranged on the conveying belt at intervals, each of the carriers is used for placing a cigarette body; characterized in that The cigarette resistance automatic testing device further comprises a cigarette resistance testing mechanism, the cigarette resistance testing mechanism is arranged adjacent to the conveying belt; the cigarette resistance testing mechanism comprises a suction driving assembly and a simulated mouthpiece, the suction driving assembly is mounted on the side wall of the machine body, the suction driving assembly is provided with a mounting cavity, one end of the simulated mouthpiece is connected with the power driving shaft of the suction driving assembly through the mounting cavity, the other end of the simulated mouthpiece is provided with a suction cavity, and the suction driving assembly drives the simulated mouthpiece to move towards or away from the carriers, so that the suction cavity is arranged at the mouthpiece of the cigarette body, so that the simulated mouthpiece can test the cigarette resistance of the cigarette body.

2. The smoke barrier automated testing device of claim 1, wherein, The cigarette resistance testing mechanism further comprises a defective product push rod assembly, the defective product push rod assembly is arranged on the side wall of the machine body, and the defective product push rod assembly is located on one side of the suction driving assembly; the power output end of the defective product push rod assembly is telescopically moved towards the carriers, so that the defective product push rod assembly pushes the unqualified cigarette body out of the carriers.

3. The smoke barrier automated testing device of claim 2, wherein, The cigarette resistance automatic testing device further comprises a cigarette rod pushing assembly; the cigarette rod pushing assembly, the cigarette resistance testing mechanism and the defective product push rod assembly are sequentially arranged along the conveying direction of the conveying belt, and the cigarette rod pushing assembly is arranged on the machine body; when the carriers are conveyed to the position corresponding to the cigarette rod pushing assembly along with the conveying belt, the acting end of the cigarette rod pushing assembly pushes the top cover of the cigarette body on the carriers, so that the top cover of the cigarette body is covered on the body of the cigarette body.

4. The smoke barrier automation testing device of claim 1, wherein, The suction driving assembly comprises a power driver and a pushing block, the power driver is fixed on the side wall of the machine body through a driving support, the power output end of the power driver is connected with the pushing block, and the pushing block is connected with the simulated mouthpiece.

5. The smoke barrier automation testing device of claim 4, wherein, The pushing block comprises a mouthpiece mounting block and a connecting block, the mounting block is provided with a mounting boss, the mounting cavity is located in the mounting boss, the simulated mouthpiece is arranged in the mounting cavity, one side of the connecting block is connected with the power output end of the power driver, and the other side of the connecting block is connected with the mouthpiece mounting block.

6. The smoke barrier automation testing device of claim 2, wherein, The defective product push rod assembly comprises a fixed block and a push rod driver, the fixed block is vertically arranged on the side wall of the machine body, the end of the fixed block is provided with a through hole, and the push rod driver pushes the cigarette body located in the carriers through the through hole.

7. The smoke barrier automation testing device of claim 3, wherein, The cigarette rod pushing assembly comprises a pushing support, a pressure rod block and a pushing driver, one end of the pushing support is arranged on one side wall of the machine body, and the other end of the pushing support is arranged on the other side wall of the machine body; the pushing support is provided with a support plate, the pushing driver is mounted on the support plate, and the power output end of the pushing driver is connected with the pressure rod block.

8. The smoke barrier automation testing device of claim 7, wherein, The pushing support comprises a first side plate, a second side plate and a vertical stand plate, the vertical stand plate is arranged opposite to the support plate, one end of the first side plate is connected to the vertical stand plate, the other end of the first side plate is connected to the end face of the support plate, one end of the second side plate is connected to the vertical stand plate, the other end of the second side plate is connected to the end face of the support plate, the first side plate is provided with a first through hole, the second side plate is provided with a second through hole, and the conveying belt is respectively arranged in the first through hole and the second through hole.

9. The smoke barrier automation testing device of claim 3, wherein, The smoke resistance automatic testing device further comprises a controller, and the controller is electrically connected with the test output end of the simulation suction nozzle and the control end of the cigarette rod pushing assembly respectively.

10. An automated test equipment, characterized by, The smoke resistance automatic testing device comprises the smoke resistance automatic testing device according to any one of claims 1 to 9.