In-tube bottling and capping packaging structure

By using the limiting design of fixed blocks and limiting posts, the coordination of electric push rods and tracks, the circular arrangement of turntables and molds, and the collaborative work of lifting rods and suction cups, the problems of unstable bottle cap conveying, incomplete sealing, and low detection efficiency have been solved, achieving efficient and accurate sealing and detection, and improving the stability and intelligence of the production process.

CN223721234UActive Publication Date: 2025-12-26WENZHOU MINTECH MASCH TECH CO LTD
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Patent Information

Application Number
CN202520180526.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-05
Publication Date
2025-12-26
Estimated Expiration
2035-02-05

AI Technical Summary

Technical Problem

The cap conveying trajectory in existing capping and packaging equipment is unstable, which can easily lead to jamming or deviation, insufficient capping accuracy, and inaccurate positioning during bottle feeding and filling, affecting production efficiency and product quality. Detection relies on manual or low-precision methods, which poses risks of missed detection and misjudgment.

Method used

The system employs a limiting design combining fixed blocks and limiting posts, along with the sliding cooperation between the electric push rod and the track, to achieve precise delivery and sealing of bottle caps. The annular arrangement of the turntable and mold, combined with air nozzle adsorption and deceleration baffle control, ensures stable bottle feeding. The coordinated operation of the lifting rod and suction cup enables efficient detection and rejection of defective products.

Benefits of technology

It improves the stability and sealing efficiency of bottle cap transmission, ensures the smooth flow of bottles during the feeding process, and enables efficient and accurate detection and automatic rejection of defective products, thereby enhancing the intelligence and reliability of the production process.

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Abstract

The utility model relates to the technical field of packaging, and discloses an in-tube bottling and capping packaging structure which comprises a supporting frame, a first conveying belt and a second conveying belt are arranged on the outer side of the supporting frame and are symmetrically distributed, a plurality of fixing blocks are fixedly connected to the outer side of the first conveying belt, a plurality of limiting columns are fixedly connected to the interiors of the fixing blocks, and the limiting columns are fixedly connected to the outer sides of the first conveying belt and the second conveying belt. And a capping assembly is arranged at the top of the first conveying belt, a discharging assembly and a detecting assembly are arranged in the supporting frame, a material taking assembly is arranged on the outer side of the second conveying belt, and the capping assembly comprises a rail and a first electric push rod. According to the bottle cap conveying device, the limiting design that the fixing blocks and the limiting columns are combined is adopted, the track of the bottle caps in the conveying process is accurately controlled, and the effect of preventing the caps from deviating or turning over is achieved. Compared with the technical scheme that the caps are prone to toppling over during conveying and cannot be smoothly in place in the prior art, the problem that the bottle cap conveying path is unstable is solved, and the cap sealing efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to packing technical field especially relates to bottle in pipe seal cover packing structure. BACKGROUND

[0002] Bottle in pipe seal cover packing structure is widely used in the automatic production line of beverage, medicine, cosmetics and other industries, and is suitable for mass production, high-precision production requirements, and can meet the modern industry's demand for high efficiency and high quality packaging. The main function of the equipment is to complete the whole process operation of bottle unloading, capping, detection and packaging through automation technology, covering the whole link from bottle loading to final product output, providing a stable and efficient solution for enterprises. The effect of the structure not only lies in the significant improvement of production efficiency, but also lies in reducing the dependence on manual operation, greatly reducing the labor cost, and effectively avoiding the human error that may occur in traditional manual operation. In addition, through precise bottle cap conveying, positioning and packaging technology, the equipment ensures the sealing and integrity of the product during capping, thereby significantly improving the quality stability of the product. For the beverage and medicine industry, such high sealing can effectively prevent the content from being contaminated or leaking, and ensure the safety of the product; for the cosmetics industry, it can maintain the integrity and beauty of the appearance package, and improve the product added value.

[0003] In the prior art, there are still some problems in the capping and packaging equipment, such as unstable conveying track of the bottle cap, which is easy to cause jamming, deviation and other situations, thereby affecting the accuracy and efficiency of capping; the positioning accuracy is insufficient during the unloading and filling process of the bottle, which is easy to cause the bottle to tilt or deviate, affecting the subsequent operation; in addition, in the quality detection link, the traditional equipment relies on manual or low-precision detection means, which not only has low efficiency, but also has the risk of missed detection and misjudgment, resulting in unqualified products entering the market, affecting the reputation and production cost of enterprises.

[0004] Therefore, the bottle in pipe seal cover packing structure is proposed to solve the above problems. UTILITY MODEL CONTENT

[0005] In order to make up for the above shortcomings, the utility model provides a bottle in pipe seal cover packing structure, which aims to improve the problems of unstable bottle cap conveying, insufficient capping precision and low efficiency of bottle filling and detection in the prior art.

[0006] In order to achieve the above object, the utility model discloses the following technical scheme: the bottle in pipe is equipped with bottle sealing cover packing structure, including support frame, the support frame outside is provided with transmission belt one and transmission belt two and presents symmetrical distribution, transmission belt one outside fixedly connected with a plurality of fixed blocks, the fixed block is fixedly connected with a plurality of limit posts in the inside, the transmission belt one top is provided with cover assembly, the support frame is provided with unloading assembly and detection assembly in the inside, transmission belt two outside is provided with material taking subassembly,

[0007] The cover assembly includes a track and an electric push rod one, the track is fixedly connected to one end of the transmission belt one close to the support frame, the electric push rod one is installed in the inner bottom wall of the track, the output end of the electric push rod one is fixedly connected with a rubber head, the support frame is fixedly connected with an electric push rod two in the inside, the electric push rod two is fixedly connected with a shell outside, the output end of the electric push rod two is fixedly connected with a thimble, and a sliding groove is formed in the outside of the shell.

[0008] As a further description of the above technical scheme:

[0009] The unloading assembly includes a motor two, the motor two is fixedly connected in the inside of the support frame, the output end of the motor two is fixedly connected with a turntable, the top of the turntable is fixedly connected with a plurality of molds and is distributed in a ring shape, a unloading plate is installed in the inside of the support frame, a plurality of support columns are fixedly connected in the inside of the support frame, the top of the support column is fixedly connected with a motor one, the output end of the motor one is fixedly connected with a base one, the outside of the base one is fixedly connected with a bearing block, and an air nozzle is installed in the inside of the bearing block.

[0010] As a further description of the above technical scheme:

[0011] The detection assembly includes two lifting rods, both the lifting rods are fixedly connected in the inside of the support frame and are symmetrically distributed, a limiting rod is fixedly connected to the middle of the lifting rod, a base two is slidably connected to the outside of the lifting rod, the top of the base two is fixedly connected with an electric push rod three, the bottom of the base two is fixedly connected with a connecting plate, the bottom of the connecting plate is fixedly connected with a motor three, the output end of the motor three is fixedly connected with a fixed plate, and the bottom of the fixed plate is fixedly connected with a suction cup.

[0012] As a further description of the above technical scheme:

[0013] The material taking subassembly includes a support, the top of the support is fixedly connected with a transverse electric guide rail, the output end of the transverse electric guide rail is fixedly connected with a longitudinal electric guide rail, and the output end of the longitudinal electric guide rail is fixedly connected with an electric clamp.

[0014] As a further description of the above technical scheme:

[0015] The rubber head is slidably connected inside the track, and the ejector pin is slidably connected inside the sliding groove.

[0016] As a further description of the above technical solution:

[0017] The electric clamp is provided with an antiskid rubber layer inside the clamping jaw, and the support frame is provided with a plurality of shock-absorbing pads at the bottom.

[0018] As a further description of the above technical solution:

[0019] The speed-reducing baffle is rotatably connected to the inside of the blanking plate.

[0020] As a further description of the above technical solution:

[0021] The limiting rod penetrates through the base two.

[0022] The utility model has the following beneficial effects:

[0023] 1. In the utility model, the trajectory of the bottle cap during the transmission process is accurately controlled through the limiting design of the fixed block and the limiting column combination, so that the effect of avoiding the deviation or overturning of the cap is achieved. Compared with the technical solution in the prior art in which the cap is prone to overturning during transmission and cannot be smoothly positioned, the problem of unstable transmission path of the bottle cap is solved, and the capping efficiency is improved.

[0024] 2. In the utility model, the accurate pushing and capping operation of the cap is realized through the sliding cooperation of the electric push rod in the cap mounting assembly and the track, so that the cap can be stably covered on the bottle mouth. Compared with the technical solution in which the action of the traditional capping equipment is not accurate and the cap is prone to loosening, the problem of loose capping is solved, and the overall quality of the package is improved.

[0025] 3. In the utility model, the stable blanking and filling effect of the bottle is realized through the annular arrangement of the turntable and the mold combined with the air nozzle adsorption and the speed-reducing baffle control. The problem of uncontrollable speed or deviation of the bottle during the blanking process in the prior art is effectively solved, the stable flow of the bottle is ensured, and the reliability of the equipment operation is enhanced.

[0026] 4. In the utility model, the efficient detection of the quality of the bottle and the automatic rejection of defective products are realized through the cooperative work of the lifting rod and the suction cup of the detection assembly. Compared with the technical solution in the prior art which relies on manual detection or unqualified bottles mixed into the subsequent process, the problems of low detection efficiency and defective products affecting the subsequent packaging are solved, so that the entire production process is more intelligent and reliable. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 It is a three-dimensional schematic view of the bottle-in-pipe capping and packaging structure.

[0028] Figure 2 The structural schematic view of the bottle cap conveying assembly of the bottle cap packaging structure of the bottle in the tube is provided by the utility model;

[0029] Figure 3 For Figure 2 The enlarged schematic view of A in the middle;

[0030] Figure 4 The structural schematic view of the feeding assembly of the bottle cap packaging structure of the bottle in the tube is provided by the utility model;

[0031] Figure 5 The structural schematic view of the detection assembly of the bottle cap packaging structure of the bottle in the tube is provided by the utility model.

[0032] Legend:

[0033] 1, support frame; 2, conveying belt one; 3, conveying belt two; 4, fixed block; 5, limiting column; 6, track; 7, electric push rod one; 8, rubber head; 9, shell; 10, electric push rod two; 11, thimble; 12, sliding slot; 13, support column; 14, blanking plate; 15, deceleration baffle; 16, base one; 17, motor one; 18, bearing block; 19, air nozzle; 20, motor two; 21, rotary table; 22, mold; 23, support; 24, transverse electric guide rail; 25, longitudinal electric guide rail; 26, electric clamp; 27, lifting rod; 28, limiting rod; 29, base two; 30, electric push rod three; 31, connecting plate; 32, motor three; 33, fixed plate; 34, suction cup. DETAILED DESCRIPTION

[0034] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0035] With reference to Figure 1 - Figure 5 An embodiment provided by the utility model: the bottle cap packaging structure of the bottle in the tube, including support frame 1, support frame 1 outside is provided with conveying belt one 2 and conveying belt two 3 and is symmetrically distributed, conveying belt one 2 outside is fixedly connected with a plurality of fixed blocks 4, the inside of fixed block 4 is fixedly connected with a plurality of limiting columns 5, conveying belt one 2 top is provided with cap loading assembly, support frame 1 inside is provided with blanking assembly and detection assembly, conveying belt two 3 outside is provided with material taking assembly;

[0036] The cover assembling assembly comprises a track 6 and an electric push rod 7, the track 6 is fixedly connected to the transmission belt 2 near one end of the support frame 1, the electric push rod 7 is installed on the inner bottom wall of the track 6, the output end of the electric push rod 7 is fixedly connected with a rubber head 8, the support frame 1 is fixedly connected with an electric push rod 2 10 inside, the outer side of the electric push rod 2 10 is fixedly connected with a shell 9, the output end of the electric push rod 2 10 is fixedly connected with a thimble 11, the outer side of the shell 9 is provided with a sliding groove 12, the rubber head 8 is slidingly connected in the track 6, and the thimble 11 is slidingly connected in the sliding groove 12. The support frame 1 provides support for the whole structure, ensures the stability of the equipment and the installation position of each component. The outer side of the support frame 1 is provided with the transmission belt 2 and the transmission belt 3 and is symmetrically distributed, the transmission belt 2 is used for conveying the cover, ensuring that the cover can move smoothly along the predetermined path and be sent to the cover assembling assembly. The outer side of the transmission belt 2 is fixedly connected with a plurality of fixed blocks 4, the fixed blocks 4 are used for fixing the limiting columns 5, limiting the movement of the cover, and ensuring that the bottle always keeps on the correct transmission track. The top of the transmission belt 2 is provided with a cover assembling assembly, and the cover assembling assembly is used for capping the bottle. The cover assembling assembly comprises a track 6 and an electric push rod 7, the track 6 is used for providing a sliding path for the electric push rod 7, ensuring the accuracy and stability of the capping process. The electric push rod 7 is installed on the inner bottom wall of the track 6, and the electric push rod 7 is used for driving the rubber head 8 to move through the output end, so that the cover is pushed into the sliding groove 12 in the shell 9. The rubber head 8 is slidingly connected in the track 6, which is used for pushing the cover, so that the thimble 11 can push the cover into the bottle to complete the capping operation. The support frame 1 is fixedly connected with an electric push rod 2 10 inside, the electric push rod 2 10 is used for providing power to push the thimble 11 to perform capping action. The outer side of the electric push rod 2 10 is fixedly connected with a shell 9, the shell 9 is used for protecting the electric push rod 2 10 and providing a sliding track for the thimble 11. The output end of the electric push rod 2 10 is fixedly connected with a thimble 11, and the thimble 11 is used for pressing the bottle cap, ensuring that the bottle cap is firmly packaged on the bottle mouth. The outer side of the shell 9 is provided with a sliding groove 12, and the sliding groove 12 is used for limiting the movement track of the thimble 11, ensuring that the thimble 11 can move up and down along the predetermined path.

[0037] Referring to Figure 1 and Figure 4The blanking assembly comprises a motor 20 fixedly connected inside the support frame 1, a rotating disc 21 fixedly connected to the output end of the motor 20, a plurality of molds 22 fixedly connected to the top of the rotating disc 21 and arranged in a ring shape, a blanking plate 14 installed inside the support frame 1, a plurality of support columns 13 fixedly connected inside the support frame 1, a motor 17 fixedly connected to the top of the support column 13, a base 16 fixedly connected to the output end of the motor 17, a bearing block 18 fixedly connected to the outside of the base 16, an air nozzle 19 installed inside the bearing block 18, and a deceleration baffle 15 rotatably connected to the inside of the blanking plate 14. The motor 20 provides power for the rotation of the rotating disc 21. The rotating disc 21 carries and moves the bottles and performs capping operation. The top of the rotating disc 21 is fixedly connected with a plurality of molds 22 arranged in a ring shape for accommodating and fixing the bottles to ensure that the bottles remain stable during capping and do not tilt or dislocate. The support frame 1 is internally provided with a blanking plate 14 for guiding and supporting the bottles to enable them to smoothly complete the blanking action. The support frame 1 is internally fixedly connected with a plurality of support columns 13 for supporting and fixing the blanking plate 14 to ensure the overall stability of the blanking assembly. The top of the support column 13 is fixedly connected with a motor 17 for driving the base 16 to rotate. The output end of the motor 17 is fixedly connected with a base 16 for providing a mounting base for the bearing block 18 and transmitting the rotating power of the motor 17. The outside of the base 16 is fixedly connected with a bearing block 18 for supporting and fixing the air nozzle 19 to ensure that the air nozzle 19 can work normally. When the bottles fall onto the bearing block 18, the air nozzle 19 tightly adsorbs the bottles on the bearing block 18 through the air supply system, and then the motor 17 rotates to send the bottles into the molds 22 to complete the filling of the bottles. The inside of the blanking plate 14 is rotatably connected with a deceleration baffle 15 for controlling the blanking speed of the bottles to prevent the bottles from being impacted or deviated due to excessive speed during blanking.

[0038] Referring to Figure 1 and Figure 5The detection assembly comprises two lifting rods 27, both of which are fixedly connected inside the support frame 1 and symmetrically distributed, the middle part of the lifting rod 27 is fixedly connected with a limiting rod 28, the outer side of the lifting rod 27 is slidably connected with a base two 29, the top of the base two 29 is fixedly connected with an electric push rod three 30, the bottom of the base two 29 is fixedly connected with a connecting plate 31, the bottom of the connecting plate 31 is fixedly connected with a motor three 32, the output end of the motor three 32 is fixedly connected with a fixed plate 33, the bottom of the fixed plate 33 is fixedly connected with a suction cup 34, and the limiting rod 28 penetrates through the base two 29. Both of the two lifting rods 27 are fixedly connected inside the support frame 1 and symmetrically distributed, the lifting rod 27 provides a supporting path for the up-down movement, and ensures that the lifting operation of the detection assembly is stable and accurate. The middle part of the lifting rod 27 is fixedly connected with a limiting rod 28, the limiting rod 28 limits the sliding range of the base two 29, ensures that the movement trajectory of the detection assembly is accurate and does not deviate, and provides stability in structure. The limiting rod 28 penetrates through the base two 29, further enhancing the connection stability between the base two 29 and the lifting rod 27. The outer side of the lifting rod 27 is slidably connected with the base two 29, the base two 29 serves as a moving base of the detection assembly and realizes the lifting function of the assembly through sliding. The top of the base two 29 is fixedly connected with an electric push rod three 30, the electric push rod three 30 provides power to realize the up-down movement of the fixed plate 33 and the suction cup 34, and completes the detection or taking out operation of the bottle. The bottom of the base two 29 is fixedly connected with a connecting plate 31, the connecting plate 31 fixes the base two 29, the motor three 32 and the related components below together. The bottom of the connecting plate 31 is fixedly connected with a motor three 32, the motor three 32 drives the fixed plate 33 to rotate and provides rotating force for the suction cup 34, ensuring that the suction cup 34 can accurately align with the detection target. The output end of the motor three 32 is fixedly connected with a fixed plate 33, the fixed plate 33 serves as a mounting base of the suction cup 34 and guarantees the stability of the suction cup 34. The bottom of the fixed plate 33 is fixedly connected with a suction cup 34, the suction cup 34 is used to adsorb the surface of the bottle, when the quality of the bottle does not meet the standard, the suction cup 34 takes out the bottle that does not meet the standard or is damaged, preventing some subsequent operations.

[0039] Referring to Figure 1 and Figure 5The taking assembly comprises a support 23, a transverse electric guide rail 24 fixedly connected to the top of the support 23, a longitudinal electric guide rail 25 fixedly connected to the output end of the transverse electric guide rail 24, and an electric clamp 26 fixedly connected to the output end of the longitudinal electric guide rail 25. An antiskid rubber layer is arranged in the clamping jaw of the electric clamp 26. A plurality of shock pads are arranged at the bottom of the support frame 1. The support 23 is used for bearing various parts on the top of the support 23, so that the support 23 can ensure normal operation. The transverse electric guide rail 24 is used for controlling the transverse operation of the longitudinal electric guide rail 25. The longitudinal electric guide rail 25 is used for controlling the longitudinal movement of the electric clamp 26, so that the bottle with the completed cover is taken. The antiskid rubber layer is used for preventing the bottle from falling off when the bottle is clamped and preventing the surface of the bottle from being damaged by the clamp. The shock pads are used for vibration generated by the equipment during operation.

[0040] Working principle: after the equipment is started, the transmission belt one 2 starts to run, and the cover is transported along the predetermined path to the cover assembly position. The fixed block 4 and the limiting column 5 outside the transmission belt one 2 jointly act to ensure that the cover always remains on the correct transmission track and does not deviate or fall. When the cover reaches the cover assembly position, the electric push rod one 7 pushes the rubber head 8 into the chute 12 through the sliding path provided by the track 6, and pushes the cover into the chute 12 in the shell 9. At this time, the electric push rod two 10 installed inside the support frame 1 starts to work, and the stylus 11 at the output end of the electric push rod two 10 slides in the chute 12. The stylus 11 accurately presses the cover on the bottle mouth, and the cover operation is completed.

[0041] At the same time, the blanking assembly starts to work. The motor two 20 drives the rotating disc 21 to rotate, and the molds 22 on the top of the rotating disc 21 are fixedly arranged in a ring shape to fix the bottles and drive the bottles to rotate. The blanking plate 14 provides a stable path for the bottles to be blanked, the support column 13 drives the base one 16 and the bearing block 18 to rotate through the connected motor one 17, the bearing block 18 absorbs the bottles through the air nozzle 19, and the bottles are stably sent into the molds 22, so that the blanking and filling processes are completed. The deceleration baffle 15 further controls the blanking speed of the bottles to prevent impact or deviation caused by too fast.

[0042] The bottle with the completed cover enters the detection assembly area. The lifting rod 27 in the detection assembly provides an upward and downward movement support path, so that the action of the detection assembly is stable. The electric push rod three 30 drives the fixed plate 33 and the suction disc 34 to move up and down through the base two 29. The suction disc 34 absorbs the surface of the bottle, and combines the rotating power provided by the motor three 32 to accurately align the detection target. If the quality of the bottle does not meet the standard, the suction disc 34 takes out the unqualified bottle to avoid entering the subsequent process.

[0043] The qualified bottle is sent to the taking assembly position by the conveying belt two 3. The transverse electric guide rail 24 of the taking assembly drives the longitudinal electric guide rail 25 to run, and the longitudinal electric guide rail 25 controls the precise longitudinal movement of the electric clamp 26. The inside of the clamping jaw of the electric clamp 26 is provided with an antiskid rubber layer, which prevents the bottle from falling off or damaging the surface of the bottle when clamping. After clamping is completed, the bottle is taken out and placed on the conveying belt two 3 and sent to the next process. The shock-absorbing pad at the bottom of the equipment plays a buffering role and reduces the vibration generated during the operation of the equipment.

[0044] Through the above coordinated operation, each assembly efficiently completes the filling, capping, detection and taking out operations of the bottle under the support and protection of the support frame 1, and ensures the stability and precision of the overall work.

[0045] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, it still can be modified to the technical solutions recorded in the foregoing embodiments, or equivalent replacement of some technical features, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application, should be included in the protection scope of the present application.

Claims

1. A bottling capping packaging structure in a tube, comprising a support frame (1), characterized in that: The support frame (1) is provided with a transmission belt one (2) and a transmission belt two (3) and is symmetrically distributed, the transmission belt one (2) is fixedly connected with a plurality of fixed blocks (4) outside, the fixed block (4) is fixedly connected with a plurality of limit posts (5) inside, the transmission belt one (2) is provided with a cover assembly on the top, the support frame (1) is provided with a blanking assembly and a detection assembly inside, the transmission belt two (3) is provided with a material taking assembly outside; The cover assembly comprises a track (6) and an electric push rod one (7), the track (6) is fixedly connected with the transmission belt one (2) close to one end of the support frame (1), the electric push rod one (7) is installed in the inner bottom wall of the track (6), the output end of the electric push rod one (7) is fixedly connected with a rubber head (8), the support frame (1) is fixedly connected with an electric push rod two (10) inside, the outer side of the electric push rod two (10) is fixedly connected with a shell (9), the output end of the electric push rod two (10) is fixedly connected with a thimble (11), and the outer side of the shell (9) is provided with a sliding groove (12).

2. The in-tube bottle capping packaging structure according to claim 1, characterized by: The blanking assembly comprises a motor two (20), the motor two (20) is fixedly connected inside the support frame (1), the output end of the motor two (20) is fixedly connected with a rotating disc (21), the rotating disc (21) is fixedly connected with a plurality of molds (22) on the top and is distributed in a ring shape, a blanking plate (14) is installed inside the support frame (1), a plurality of support columns (13) are fixedly connected inside the support frame (1), the top of the support column (13) is fixedly connected with a motor one (17), the output end of the motor one (17) is fixedly connected with a base one (16), the outer side of the base one (16) is fixedly connected with a bearing block (18), and the bearing block (18) is internally provided with an air nozzle (19).

3. The in-tube bottle capping and packaging structure according to claim 1, characterized in that: The detection assembly comprises two lifting rods (27), both the lifting rods (27) are fixedly connected inside the support frame (1) and are symmetrically distributed, the lifting rod (27) is fixedly connected with a limiting rod (28) in the middle, the outer side of the lifting rod (27) is slidably connected with a base two (29), the top of the base two (29) is fixedly connected with an electric push rod three (30), the bottom of the base two (29) is fixedly connected with a connecting plate (31), the bottom of the connecting plate (31) is fixedly connected with a motor three (32), the output end of the motor three (32) is fixedly connected with a fixed plate (33), and the bottom of the fixed plate (33) is fixedly connected with a suction cup (34).

4. The in-tube bottle capping and packaging structure according to claim 1, characterized by: The material taking assembly comprises a support (23), the top of the support (23) is fixedly connected with a transverse electric guide rail (24), the output end of the transverse electric guide rail (24) is fixedly connected with a longitudinal electric guide rail (25), and the output end of the longitudinal electric guide rail (25) is fixedly connected with an electric clamp (26).

5. The in-tube bottle capping and packaging structure according to claim 1, characterized by: The rubber head (8) is slidably connected inside the track (6), and the thimble (11) is slidably connected inside the sliding groove (12).

6. The in-tube bottle capping and packaging structure according to claim 4, characterized in that: The electric clamp (26) is internally provided with an anti-skid rubber layer, and the support frame (1) is provided with a plurality of shock-absorbing pads at the bottom.

7. The in-tube bottle capping and packaging structure according to claim 2, characterized by: The blanking plate (14) is rotationally connected with a deceleration baffle (15) on the inner side.

8. The in-tube bottle capping and packaging structure according to claim 3, characterized by: The limiting rod (28) penetrates through the base two (29).