Conveying device for tobacco tar production
By introducing a combination of plasma wind to eliminate static electricity and a multi-angle cleaning brush in the e-liquid production conveying device, the problem of low dust cleaning efficiency of the groove of the e-liquid bottle handle is solved, efficient cleaning and stable transportation are achieved, and the quality and production efficiency of the e-liquid product are improved.
Patent Information
- Application Number
- CN202510730504.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-03
- Publication Date
- 2025-07-01
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing e-liquid production and delivery devices are inefficient when cleaning the static dust absorption at the grooves of the e-liquid bottle handle, resulting in a decrease in the quality of e-liquid products.
A conveyor device for production of e-liquid was designed, using a groove cleaning mechanism to eliminate static electricity through plasma air, and cleaning with a cleaning brush and air guide box for multi-angle cleaning. The elastic clamping plate of the auxiliary clamping mechanism was used to stabilize the e-liquid bottle to ensure stability during the cleaning process.
It realizes efficient cleaning of dust in the grooves of the e-liquid bottle, improves the quality of the e-liquid product, ensures the stability and automated operation of the cleaning process, and improves production efficiency.
Smart Images

Figure CN120229558A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of oil fume production and transportation, and particularly relates to a transportation device for oil fume production. Background Art
[0002] E-liquid (also known as e-cigarette liquid, vape juice or e-juice) is the core special liquid of e-cigarettes (e-vaporizers), which produces mist for users to inhale after heating. As the key carrier of e-cigarettes, e-liquid can meet the need of substituting cigarettes and provide a rich taste experience by scientifically blending various ingredients.
[0003] In the production process of e-liquid, complex processes such as filling, capping, labeling, film sleeving, heat shrinkage, boxing and coding need to be completed in sequence. There is a drawback in the transportation of plastic e-liquid bottles in a Chinese utility model patent with the publication number CN212024045U. After the e-liquid is filled into the special plastic e-liquid bottle and enters the transportation link, due to the dust particles suspended in the air of the production workshop and the frequent friction between the bottom of the e-liquid bottle and the rubber conveyor belt, static electricity is easily generated. Especially for the e-liquid bottle with a hand-held shape design, dust and other impurities will quickly accumulate at the handle groove due to the electrostatic adsorption effect. The traditional cleaning methods of manual wiping or simple blowing are difficult to thoroughly clean the inside of the groove, which not only affects the appearance of the e-liquid bottle, but also the residual impurities may threaten the quality of the e-liquid product and reduce the product quality and market competitiveness.
[0004] Therefore, a transportation device for oil fume production is designed to solve the above problems. Summary of the Invention
[0005] The purpose of the present invention is to solve the disadvantages existing in the background art, and to provide a transportation device for oil fume production.
[0006] To achieve the above object, the technical solution adopted by the present invention is: a transportation device for oil fume production, including a support frame, a conveyor belt is arranged inside the support frame, a plurality of e-liquid bottles are sequentially transported on the upper surface of the conveyor belt, a stabilizing mechanism is jointly arranged on the front and rear sides of the conveyor belt, and a groove dust cleaning mechanism is arranged at the front side of the support frame and near the left end; The groove dust cleaning mechanism includes a cleaning seat and a moving seat, a cleaning brush is fixedly installed on the right side of the cleaning seat, a wind guiding box is fixedly sleeved on the outside of the cleaning seat and near the right end, and the cleaning brush cooperates with the wind guiding box to first eliminate static electricity, then clean at multiple angles and synchronously suck dust at multiple grooves on the left side of the e-liquid bottle in sequence; Auxiliary clamping mechanisms are arranged on both sides of the moving seat. Each auxiliary clamping mechanism includes two clamping plates that can rotate at multiple angles. A horizontal protective ring and a vertical protective ring are sequentially arranged on the left side of each clamping plate. The two clamping plates can correspondingly clamp the front and rear sides of the e-liquid bottle, and the horizontal protective ring and the vertical protective ring can cooperate to provide elastic protection for the e-liquid bottle at multiple angles.
[0007] Preferably, the stabilizing mechanism includes two groups of fixed seats and two groups of support seats. The two groups of fixed seats are respectively fixedly installed on the front and rear sides of the support frame. Lifting rods with threaded fit are inserted into the middle two fixed seats, and movable rods are slidably inserted into the remaining fixed seats. Moving rods with threaded fit are inserted into the middle two support seats, and push rods are slidably inserted into the remaining support seats. Stable attaching plates are respectively fixedly connected to the inner sides of the two groups of push rods, and the inner ends of the two moving rods are rotatably matched with the corresponding outer sides of the two stable attaching plates.
[0008] Preferably, the groove dust cleaning mechanism further includes a mounting frame and a lifting frame. The rear side of the bottom end of the mounting frame is fixedly connected to the front side of the support frame. A sliding rod and a lead screw are respectively arranged inside the mounting frame. The two ends of the sliding rod are fixedly connected to the inner side of the mounting frame near the left end, and the two ends of the lead screw are rotatably connected to the inner side of the mounting frame near the right end. The upper end of the lead screw passes through the upper side of the mounting frame and is fixedly connected to a servo motor. The left side of the servo motor is fixedly installed at the top end of the mounting frame through a mounting member.
[0009] Preferably, the left end of the lifting frame is slidably matched with the outer surface of the sliding rod, and the right end of the lifting frame is threadedly matched with the outer surface of the lead screw. A first telescopic cylinder and a first guide rod are fixedly installed in the middle of the lifting frame. The telescopic end of the first telescopic cylinder and the movable end of the first guide rod are jointly fixedly connected to a connecting seat. A second telescopic cylinder and a second guide rod are fixedly installed inside the connecting seat. The telescopic end of the second telescopic cylinder and the movable end of the second guide rod are jointly fixedly connected to the left side of the moving seat.
[0010] Preferably, a first drive shaft is rotatably installed at the right end inside the moving seat. The rear end of the first drive shaft is fixedly connected to the output shaft of a first motor. The upper side of the first motor is fixedly installed at the upper side of the moving seat through a mounting member. A first motor is fixedly installed at the upper side of the moving seat. The output shaft of the first motor is coaxially and fixedly connected to the first drive shaft. The upper side of the first motor is fixedly installed at the rear end of the moving seat through a mounting member. A rotating seat is fixedly sleeved on the outer surface of the first drive shaft. A second drive shaft is rotatably installed inside the rotating seat. The upper end of the second drive shaft is fixedly connected to the output shaft of a second motor. The output shaft of the second motor is coaxially and fixedly connected to the second drive shaft. The rear side of the second motor is fixedly installed at the upper side of the rotating seat through a mounting member. The left end of a cleaning seat is fixedly connected to the outer surface of the second drive shaft.
[0011] Preferably, a first telescopic hose is fixedly installed at the left side near the bottom end of the air guide box. The left end of the first telescopic hose is fixedly connected to a first adapter. The first adapter is fixedly installed at the right bottom end of the connecting seat. The front end of the first adapter is fixedly connected to a second telescopic hose. The front end of the second telescopic hose is fixedly connected to a second adapter. The second adapter is fixedly installed at the right end of the lifting frame. The bottom end of the second adapter is fixedly connected to a telescopic pipe. The bottom end of the telescopic pipe passes through the bottom of the mounting frame and is fixedly connected to a T-shaped conduit. An electric three-way ball valve is arranged inside the T-shaped conduit. The rear side of the electric three-way ball valve is fixedly installed at the front end of the mounting frame through a mounting member.
[0012] Preferably, the auxiliary clamping mechanism further includes two third telescopic cylinders and two third guide rods. The two third telescopic cylinders and the two third guide rods are symmetrically installed inside the moving seat respectively. The telescopic end of the third telescopic cylinder and the movable end of the third guide rod are jointly fixedly connected to a clamping seat. A first rotating shaft is rotatably installed at the right end of the clamping seat. Both ends of the first rotating shaft are fixedly connected to a rotating connecting member. A second rotating shaft is rotatably installed at the right end of the rotating connecting member. Both ends of the second rotating shaft are fixedly connected to the left end of a clamping plate.
[0013] Preferably, the transverse protection ring is fixedly installed at the right end inside the clamping seat. The inner part of the rotating connecting member is in sliding fit with the outer surface of the transverse protection ring. A transverse arc spring is sleeved on the outer surface of the transverse protection ring. Both ends of the transverse arc spring are arranged at the front rotating part of the clamping seat and the rotating connecting member. The vertical protection ring is fixedly installed at the right end inside the rotating connecting member. The inner left end of the clamping plate is in sliding fit with the outer surface of the vertical protection ring. A vertical arc spring is sleeved on the outer surface of the vertical protection ring. Both ends of the vertical arc spring are arranged at the upper rotating part of the rotating connecting member and the clamping plate.
[0014] Compared with the prior art, the present invention has the following beneficial effects: The groove dust cleaning mechanism provided by the present invention first uses plasma wind to quickly remove static electricity from the dust electrostatically adsorbed at the left groove of the e-liquid bottle, creating good conditions for subsequent cleaning operations. Subsequently, it rotates the cleaning brush at multiple angles with small amplitudes for cleaning, and then, in cooperation with the synchronous dust suction operation of the air guide box, it realizes the efficient cleaning of the dust in the groove of the e-liquid bottle.
[0015] When the clamping plate in the auxiliary clamping mechanism elastically clamps the e-liquid bottle, the vertical arc-shaped spring on the vertical protection ring can provide up-and-down buffering, and the horizontal arc-shaped spring on the horizontal protection ring can provide left-and-right buffering. This multi-angle elastic protection can effectively address the problem of the e-liquid bottle shaking that may be caused by the multi-directional rotation of the cleaning brush, ensuring the stability of the e-liquid bottle during the cleaning process and reducing the situation where the dust in the left groove of the e-liquid bottle is not thoroughly cleaned due to shaking.
[0016] The groove dust cleaning mechanism and the auxiliary clamping mechanism cooperate closely. First, the elastic clamping plate is used to stabilize the e-liquid bottle, and then, through static electricity elimination, multi-angle rotational cleaning, and dust suction, it completes the efficient dust removal of the dust in the groove of the e-liquid bottle. After cleaning, it automatically releases and transfers, and the whole process realizes automated cyclic operation, seamlessly connecting subsequent production processes such as film covering, thus improving the overall efficiency of e-liquid production. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a schematic diagram of the overall structure of a conveying device for e-liquid production according to the present invention; Figure 2 is a schematic diagram of the structure of the groove dust cleaning mechanism, the auxiliary clamping mechanism, and the e-liquid bottle in a conveying device for e-liquid production according to the present invention; Figure 3 is a schematic diagram of the structure of the groove dust cleaning mechanism and the auxiliary clamping mechanism in a conveying device for e-liquid production according to the present invention; Figure 4 is a schematic diagram of the structure of a partial groove dust cleaning mechanism in a conveying device for e-liquid production according to the present invention; Figure 5 is a schematic diagram of the structure at the air guide box of a conveying device for e-liquid production according to the present invention; Figure 6 is a schematic diagram of the structure of the auxiliary clamping mechanism of a conveying device for e-liquid production according to the present invention; Figure 7 is a schematic diagram of a conveying device for e-liquid production according to the present invention Figure 3 and is an enlarged schematic diagram of the structure at A therein; Figure 8 is a schematic diagram of the structure of the e-liquid bottle in a conveying device for e-liquid production according to the present invention.
[0018] In the figure: 1, support frame; 2, conveyor belt; 3, e-liquid bottle; 4, cleaning seat; 5, cleaning brush; 6, air guide box; 7, moving seat; 8, clamping plate; 9, horizontal protection ring; 10, vertical protection ring; 11, fixed seat; 12, lifting rod; 13, movable rod; 14, support seat; 15, sliding rod; 16, stable attachment plate; 17, mounting frame; 18, lead screw; 19, servo motor; 20, lifting frame; 21, first telescopic cylinder; 22, first guide rod; 23, connecting seat; 24, second telescopic cylinder; 25, second guide rod; 26, first motor; 27, first drive shaft; 28, rotating seat; 29, second drive shaft; 30, first telescopic hose; 31, first adapter; 32, second telescopic hose; 33, second adapter; 34, telescopic pipe; 35, T-shaped conduit; 36, electric three-way ball valve; 37, third telescopic cylinder; 38, third guide rod; 39, clamping seat; 40, first rotating shaft; 41, rotating connecting piece; 42, second rotating shaft; 43, horizontal arc spring; 44, moving rod; 45, vertical arc spring; 46, pushing rod; 47, second motor. Specific implementation manner
[0019] The following description is used to disclose the present invention so that those skilled in the art can implement the present invention. The preferred embodiments in the following description are only examples, and those skilled in the art can think of other obvious variations.
[0020] As Figures 1-8 shown, a conveying device for e-liquid production includes a support frame 1. Inside the support frame 1, there is a conveyor belt 2. On the upper surface of the conveyor belt 2, a plurality of e-liquid bottles 3 are successively conveyed. A stabilizing mechanism is jointly arranged on the front and rear sides of the conveyor belt 2. The stabilizing mechanism includes two groups of fixed seats 11 and two groups of support seats 14. The two groups of fixed seats 11 are respectively fixedly installed on the front and rear sides of the support frame 1. Inside the middle two fixed seats 11, there is a lifting rod 12 with a threaded fit. Inside the remaining fixed seats 11, there is a movable rod 13 inserted in a sliding manner. Inside the middle two support seats 14, there is a moving rod 44 with a threaded fit. Inside the remaining support seats 14, there is a pushing rod 46 inserted in a sliding manner. The inner sides of the two groups of pushing rods 46 are respectively fixedly connected with a stable attachment plate 16. The inner ends of the two moving rods 44 are respectively in rotational fit with the corresponding outer sides of the two stable attachment plates 16. By rotating the lifting rod 12 and the moving rod 44, the distance between the two stable attachment plates 16 is adjusted to an appropriate width to ensure that when the conveyor belt 2 conveys the e-liquid bottles 3, the front and rear sides of the e-liquid bottles 3 can be effectively attached and stabilized, preventing the occurrence of tipping.
[0021] A groove dust cleaning mechanism is provided at the front side of the support frame 1 and near the left end. The groove dust cleaning mechanism includes a cleaning seat 4 and a moving seat 7. A cleaning brush 5 is fixedly installed on the right side of the cleaning seat 4. A wind guiding box 6 is fixedly sleeved on the outer side of the cleaning seat 4 and near the right end. The cleaning brush 5 cooperates with the wind guiding box 6 to sequentially eliminate static electricity, clean at multiple angles and synchronously suck dust at multiple grooves on the left side of the e-liquid bottle 3. The groove dust cleaning mechanism further includes a mounting frame 17 and a lifting frame 20. The rear side of the bottom end of the mounting frame 17 is fixedly connected to the front side of the support frame 1. A sliding rod 15 and a lead screw 18 are respectively arranged inside the mounting frame 17. Both ends of the sliding rod 15 are fixedly connected to the inner side of the mounting frame 17 near the left end. Both ends of the lead screw 18 are rotatably connected to the inner side of the mounting frame 17 near the right end. The upper end of the lead screw 18 passes through the upper side of the mounting frame 17 and is fixedly connected to a servo motor 19. The left side of the servo motor 19 is fixedly installed at the top end of the mounting frame 17 through a mounting member. The left end of the lifting frame 20 is slidably matched with the outer surface of the sliding rod 15, and the right end of the lifting frame 20 is threadedly matched with the outer surface of the lead screw 18. A first telescopic cylinder 21 and a first guide rod 22 are fixedly installed at the middle of the lifting frame 20. The telescopic end of the first telescopic cylinder 21 and the movable end of the first guide rod 22 are jointly fixedly connected to a connecting seat 23. A second telescopic cylinder 24 and a second guide rod 25 are fixedly installed inside the connecting seat 23. The telescopic end of the second telescopic cylinder 24 and the movable end of the second guide rod 25 are jointly fixedly connected to the left side of the moving seat 7. When the servo motor 19 is started, the servo motor 19 drives the lead screw 18 to rotate, and the lead screw 18 then drives the mounting frame 17 and the mechanisms installed on the mounting frame 17 to move up and down. The first telescopic cylinder 21 drives the connecting seat 23 and the mechanisms installed on the connecting seat 23 to move back and forth. The second telescopic cylinder 24 drives the moving seat 7 and the mechanisms installed on the moving seat 7 to move left and right.
[0022] At the right end inside the moving seat 7, a first drive shaft 27 is rotatably installed. The rear end of the first drive shaft 27 is fixedly connected to the output shaft of a first motor 26. The upper side of the first motor 26 is fixedly installed at the upper side of the moving seat 7 through a mounting member. A first motor 26 is fixedly installed at the upper side of the moving seat 7. The output shaft of the first motor 26 is coaxially and fixedly connected to the first drive shaft 27. The upper side of the first motor 26 is fixedly installed at the rear end of the moving seat 7 through a mounting member. A rotating seat 28 is fixedly sleeved on the outer surface of the first drive shaft 27. A second drive shaft 29 is rotatably installed inside the rotating seat 28. The upper end of the second drive shaft 29 is fixedly connected to the output shaft of a second motor 47. The output shaft of the second motor 47 is coaxially and fixedly connected to the second drive shaft 29. The rear side of the second motor 47 is fixedly installed at the upper side of the rotating seat 28 through a mounting member. The left end of the cleaning seat 4 is fixedly connected to the outer surface of the second drive shaft 29. A first telescopic hose 30 is fixedly installed near the bottom on the left side of the air guide box 6. The left end of the first telescopic hose 30 is fixedly connected to a first adapter 31. The first adapter 31 is fixedly installed at the right bottom of the connecting seat 23. The front end of the first adapter 31 is fixedly connected to a second telescopic hose 32. The front end of the second telescopic hose 32 is fixedly connected to a second adapter 33. The second adapter 33 is fixedly installed at the right end of the lifting frame 20. The bottom end of the second adapter 33 is fixedly connected to a telescopic pipe 34. The bottom end of the telescopic pipe 34 passes through the bottom of the mounting frame 17 and is fixedly connected to a T-shaped conduit 35. An electric three-way ball valve 36 is arranged inside the T-shaped conduit 35. The rear side of the electric three-way ball valve 36 is fixedly installed at the front end of the mounting frame 17 through a mounting member; The two ends of the T-shaped conduit 35 are respectively connected to a plasma air delivery pipe and a dust suction pipe. When the first telescopic cylinder 21 and the electric three-way ball valve 36 are started, the first telescopic cylinder 21 drives the air guide box 6 installed at the rear side to move to the left side of the e-liquid bottle 3. At the same time, the electric three-way ball valve 36 turns on the blowing mode, so that the plasma air is sequentially delivered to the air guide box 6 through the T-shaped conduit 35, the telescopic pipe 34, the second telescopic hose 32, and the first telescopic hose 30. When the e-liquid bottle 3 is about to move out of the stable sticking plate 16 area, the servo motor 19 rotates forward to drive the lead screw 18 to rotate, so that the lifting frame 20 and the connected air guide box 6 perform a rapid plasma blowing and static elimination operation on the dust electrostatically adsorbed at the left groove of the e-liquid bottle 3.
[0023] Auxiliary clamping mechanisms are arranged on both sides of the moving seat 7. The auxiliary clamping mechanisms include two clamping plates 8 that can rotate at multiple angles. A horizontal protective ring 9 and a vertical protective ring 10 are sequentially arranged on the left side of each clamping plate 8. The two clamping plates 8 can clamp the front and rear sides of the e-liquid bottle 3 correspondingly, and the horizontal protective ring 9 and the vertical protective ring 10 can cooperate to provide elastic protection for the e-liquid bottle 3 at multiple angles. The auxiliary clamping mechanisms also include two third telescopic cylinders 37 and two third guide rods 38. The two third telescopic cylinders 37 and the two third guide rods 38 are symmetrically installed inside the moving seat 7 respectively. The telescopic end of the third telescopic cylinder 37 and the movable end of the third guide rod 38 are fixedly connected to a clamping seat 39 together.
[0024] When the e-liquid bottle 3 is about to reach the position of the clamping plate 8, the two third telescopic cylinders 37 are quickly started to elastically clamp the front and rear sides of the e-liquid bottle 3. At the same time, the electric three-way ball valve 36 is switched to the dust suction mode. The servo motor 19 rotates in reverse to drive the air guide box 6 and the cleaning brush 5 installed inside it to move upward along the left groove of the e-liquid bottle 3. The first motor 26 and the second motor 47 cooperate to drive the cleaning brush 5 to rotate and clean at multiple small angles up and down and left and right. The air guide box 6 performs dust suction operation synchronously. After each area is cleaned, when the cleaning brush 5 moves upward, the two third telescopic cylinders 37 synchronously control the two clamping plates 8 to moderately loosen the e-liquid bottle 3. When the cleaning brush 5 moves upward to the next groove to be cleaned, the two clamping plates 8 clamp and fix the e-liquid bottle 3 again.
[0025] A first rotating shaft 40 is rotatably installed at the right end of the clamping seat 39. Rotating connectors 41 are fixedly connected to both ends of the first rotating shaft 40. A second rotating shaft 42 is rotatably installed at the right end of the rotating connector 41. Both ends of the second rotating shaft 42 are fixedly connected to the left end of the clamping plate 8. The horizontal protective ring 9 is fixedly installed inside the clamping seat 39 near the right end. The inner part of the rotating connector 41 is in sliding fit with the outer surface of the horizontal protective ring 9. A horizontal arc spring 43 is sleeved on the outer surface of the horizontal protective ring 9, and both ends of the horizontal arc spring 43 are arranged at the front rotating part of the clamping seat 39 and the rotating connector 41. The vertical protective ring 10 is fixedly installed inside the rotating connector 41 near the right end. The inner left part of the clamping plate 8 is in sliding fit with the outer surface of the vertical protective ring 10. A vertical arc spring 45 is sleeved on the outer surface of the vertical protective ring 10, and both ends of the vertical arc spring 45 are arranged at the upper rotating part of the rotating connector 41 and the clamping plate 8. To cope with the problem of the possible shaking of the e-liquid bottle 3 caused by the multi-directional rotation of the cleaning brush 5, the vertical arc spring 45 of the vertical protective ring 10 provides up and down buffering, and the horizontal arc spring 43 of the horizontal protective ring 9 provides left and right buffering, ensuring the stability of the e-liquid bottle 3 during the cleaning process.
[0026] During use, first adjust the distance between the two stable attachment plates 16 to an appropriate width by rotating the lifting rod 12 and the moving rod 44, so as to ensure that the front and rear sides of the e-liquid bottle 3 can be effectively attached and stabilized during the transportation by the conveyor belt 2, preventing the occurrence of tipping. This conveyor belt 2 is specifically used to transport the e-liquid bottles 3 that have completed the film pasting operation. By precisely controlling the horizontal distance between the e-liquid bottles 3, the next e-liquid bottle 3 can arrive in time after the current e-liquid bottle 3 completes the dust cleaning of the groove at the leftmost end of the conveyor belt 2. When the device is working, the left and right ends of the T-shaped conduit 35 are respectively connected to the plasma wind delivery pipe and the dust suction pipe. After the first telescopic cylinder 21 and the electric three-way ball valve 36 are started, the first telescopic cylinder 21 drives the air guide box 6 installed at the rear to move to the left side of the e-liquid bottle 3. At the same time, the electric three-way ball valve 36 opens the blowing mode, so that the plasma wind is sequentially delivered to the air guide box 6 through the T-shaped conduit 35, the telescopic pipe 34, the second telescopic hose 32, and the first telescopic hose 30. When the e-liquid bottle 3 is about to move out of the area of the stable attachment plate 16, the servo motor 19 rotates forward to drive the lead screw 18 to rotate, so that the lifting frame 20 and its connected air guide box 6 perform a rapid plasma blowing and static elimination operation on the dust electrostatically adsorbed at the left groove of the e-liquid bottle 3, creating good conditions for subsequent cleaning operations. Subsequently, when the e-liquid bottle 3 is about to reach the clamping plate 8 position, the two third telescopic cylinders 37 are quickly started to elastically clamp the front and rear sides of the e-liquid bottle 3. At the same time, the electric three-way ball valve 36 is switched to the dust suction mode. The servo motor 19 rotates reversely to drive the air guide box 6 and the cleaning brush 5 installed inside it to move upward along the left groove of the e-liquid bottle 3. The first motor 26 and the second motor 47 cooperate to drive the cleaning brush 5 to rotate cleanly at small angles in multiple directions up and down and left and right. The air guide box 6 synchronously performs the dust suction operation. After each area is cleaned, when the cleaning brush 5 moves upward, the two third telescopic cylinders 37 synchronously control the two clamping plates 8 to moderately loosen the e-liquid bottle 3. When the cleaning brush 5 moves upward to the next groove that needs to be cleaned, the two clamping plates 8 clamp the e-liquid bottle 3 again and fix it. To cope with the problem of the possible shaking of the e-liquid bottle 3 caused by the multi-directional rotation of the cleaning brush 5, the vertical arc spring 45 of the vertical protection ring 10 provides up and down buffering, and the horizontal arc spring 43 of the horizontal protection ring 9 provides left and right buffering, ensuring the stability of the e-liquid bottle 3 during the cleaning process.
[0027] After the single e-liquid bottle 3 is cleaned, two third telescopic cylinders 37 and the second telescopic cylinder 24 are started synchronously. The third telescopic cylinder 37 drives the clamping plate 8 to release the e-liquid bottle 3, and the second telescopic cylinder 24 pushes the moving seat 7 to move leftward. Subsequently, the third telescopic cylinder 37 is started again to reset the clamping plate 8. Finally, the first telescopic cylinder 21 is started to push the connecting seat 23 and the mechanism on its right side forward, so that the cleaned e-liquid bottle 3 is conveyed to the next production step through the conveyor belt 2 for film covering operation. After the subsequent mechanism automatically resets to the starting state, the above operations are repeated to clean the dust at the left groove of the next e-liquid bottle 3.
[0028] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification is only the principle of the present invention. Without departing from the spirit scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection required by the present invention is defined by the appended claims and their equivalents.
Claims
1. A conveying device for e-liquid production, comprising a support frame (1), characterized in that: Inside the support frame (1), a conveyor belt (2) is provided. On the upper surface of the conveyor belt (2), a plurality of e-liquid bottles (3) are sequentially conveyed. A stabilizing mechanism is commonly provided on the front and rear sides of the conveyor belt (2). At the front side of the support frame (1) and near the left end, a groove dust cleaning mechanism is provided; The groove dust cleaning mechanism includes a cleaning seat (4) and a moving seat (7). On the right side of the cleaning seat (4), a cleaning brush (5) is fixedly installed. On the outer side of the cleaning seat (4) and near the right end, a wind guiding box (6) is fixedly sleeved. The cleaning brush (5) cooperates with the wind guiding box (6) to first eliminate static electricity, then perform multi-angle cleaning and synchronous dust suction operations on multiple grooves on the left side of the e-liquid bottle (3) in sequence; On both sides of the moving seat (7), an auxiliary clamping mechanism is provided. The auxiliary clamping mechanism includes two clamping plates (8) that can rotate at multiple angles. On the left side of each clamping plate (8), a horizontal protective ring (9) and a vertical protective ring (10) are sequentially provided. The two clamping plates (8) can clamp the front and rear sides of the e-liquid bottle (3) correspondingly, and the horizontal protective ring (9) and the vertical protective ring (10) can cooperate to provide elastic protection for the e-liquid bottle (3) at multiple angles.
2. The conveying device for e-liquid production according to claim 1, characterized in that: The stabilizing mechanism includes two groups of fixed seats (11) and two groups of support seats (14). The two groups of fixed seats (11) are respectively fixedly installed on the front and rear sides of the support frame (1). Inside the middle two fixed seats (11), a lifting rod (12) with a threaded fit is inserted. Inside the remaining fixed seats (11), a movable rod (13) is slidably inserted. Inside the middle two support seats (14), a moving rod (44) with a threaded fit is inserted. Inside the remaining support seats (14), a pushing rod (46) is slidably inserted. On the inner sides of the two groups of pushing rods (46), stabilizing plates (16) are respectively fixedly connected. The inner ends of the two moving rods (44) are rotatably fitted with the corresponding outer sides of the two stabilizing plates (16).
3. A conveying device for e-liquid production according to claim 1, characterized in that: The groove dust cleaning mechanism further includes a mounting frame (17) and a lifting frame (20). The rear side of the bottom end of the mounting frame (17) is fixedly connected to the front side of the support frame (1). Inside the mounting frame (17), a sliding rod (15) and a lead screw (18) are respectively provided. The two ends of the sliding rod (15) are fixedly connected to the inner side of the mounting frame (17) near the left end. The two ends of the lead screw (18) are rotatably connected to the inner side of the mounting frame (17) near the right end. The upper end of the lead screw (18) passes through the upper side of the mounting frame (17) and is fixedly connected to a servo motor (19). The left side of the servo motor (19) is fixedly installed at the top end of the mounting frame (17) through a mounting member.
4. A conveying device for e-liquid production according to claim 3, characterized in that: The left end of the lifting frame (20) is in sliding fit with the outer surface of the sliding rod (15), the right end of the lifting frame (20) is in threaded fit with the outer surface of the lead screw (18), a first telescopic cylinder (21) and a first guide rod (22) are fixedly installed at the middle of the lifting frame (20), a connecting seat (23) is fixedly connected to the telescopic end of the first telescopic cylinder (21) and the movable end of the first guide rod (22) together, a second telescopic cylinder (24) and a second guide rod (25) are fixedly installed inside the connecting seat (23), and the telescopic end of the second telescopic cylinder (24) and the movable end of the second guide rod (25) are fixedly connected to the left side of the moving seat (7) together.
5. The conveying device for e-liquid production according to claim 1, characterized in that: A first drive shaft (27) is rotatably installed at the right end inside the moving seat (7), a first motor (26) is fixedly installed at the upper side of the moving seat (7), the output shaft of the first motor (26) is fixedly connected to the first drive shaft (27) coaxially, the upper side of the first motor (26) is fixedly installed at the rear end of the moving seat (7) through a mounting member, a rotating seat (28) is fixedly sleeved on the outer surface of the first drive shaft (27), a second drive shaft (29) is rotatably installed inside the rotating seat (28), the upper end of the second drive shaft (29) is fixedly connected to a second motor (47), the output shaft of the second motor (47) is fixedly connected to the second drive shaft (29) coaxially, the rear side of the second motor (47) is fixedly installed at the upper side of the rotating seat (28) through a mounting member, and the left end of the cleaning seat (4) is fixedly connected to the outer surface of the second drive shaft (29).
6. The conveying device for e-liquid production according to claim 5, wherein: A first telescopic hose (30) is fixedly installed at the left side near the bottom of the air guide box (6), the left end of the first telescopic hose (30) is fixedly connected to a first adapter (31), the first adapter (31) is fixedly installed at the right bottom of the connecting seat (23), the front end of the first adapter (31) is fixedly connected to a second telescopic hose (32), the front end of the second telescopic hose (32) is fixedly connected to a second adapter (33), the second adapter (33) is fixedly installed at the right end of the lifting frame (20), the bottom end of the second adapter (33) is fixedly connected to a telescopic pipe (34), the bottom end of the telescopic pipe (34) passes through the bottom of the mounting frame (17) and is fixedly connected to a T-shaped conduit (35), an electric three-way ball valve (36) is arranged inside the T-shaped conduit (35), and the rear side of the electric three-way ball valve (36) is fixedly installed at the front end of the mounting frame (17) through a mounting member.
7. A conveying device for e-liquid production according to claim 1, characterized in that: The auxiliary clamping mechanism further includes two third telescopic cylinders (37) and two third guide rods (38). The two third telescopic cylinders (37) and the two third guide rods (38) are symmetrically installed inside the moving seat (7) respectively. The telescopic end of the third telescopic cylinder (37) and the movable end of the third guide rod (38) are fixedly connected to a clamping seat (39) together. A first rotating shaft (40) is rotatably installed at the right end of the clamping seat (39). Both ends of the first rotating shaft (40) are fixedly connected to a rotating connecting piece (41). A second rotating shaft (42) is rotatably installed at the right end of the rotating connecting piece (41). Both ends of the second rotating shaft (42) are fixedly connected to the left end of the clamping plate (8).
8. The conveying device for e-liquid production according to claim 7, wherein: The transverse protection ring (9) is fixedly installed near the right end inside the clamping seat (39). The inner part of the rotating connecting piece (41) is slidably matched with the outer surface of the transverse protection ring (9). A transverse arc spring (43) is sleeved on the outer surface of the transverse protection ring (9), and both ends of the transverse arc spring (43) are arranged at the front-side rotation part of the clamping seat (39) and the rotating connecting piece (41). The vertical protection ring (10) is fixedly installed near the right end inside the rotating connecting piece (41). The left end inside the clamping plate (8) is slidably matched with the outer surface of the vertical protection ring (10). A vertical arc spring (45) is sleeved on the outer surface of the vertical protection ring (10), and both ends of the vertical arc spring (45) are arranged at the upper-side rotation part of the rotating connecting piece (41) and the clamping plate (8).
Citation Information
Patent Citations
Oil bottle conveying device
CN212024045U