Automatic humidification bottle production line

By designing an automatic production line for humidification bottles, fully automated production of humidification bottles is achieved, solving the problems of high labor costs and low production efficiency. The use of laser welding technology reduces processing costs and improves production efficiency and welding accuracy.

CN223407487UActive Publication Date: 2025-10-03ZHONGSHAN JINGQI AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202422881688.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-25
Publication Date
2025-10-03
Estimated Expiration
2034-11-25

AI Technical Summary

Technical Problem

The existing humidification bottle production process has high labor costs and low production efficiency, especially in the bottle cap sealing connection link, which is difficult to automate.

Method used

An automatic production line for humidification bottles is designed, including a feeding turntable, a bottle body loading mechanism, a bottle cap loading mechanism and a laser welding device. Through automated conveying, filling, capping and welding, the fully automatic production of humidification bottles is achieved, and laser welding is used instead of threaded connection.

Benefits of technology

It reduces labor costs, improves production efficiency, reduces the use of sealing rings, reduces processing costs, and improves welding accuracy and production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of humidification bottle production and processing, and particularly relates to an automatic humidification bottle production line which comprises a processing platform, a feeding rotary disc rotationally arranged on the processing platform, and a bottle body feeding mechanism, a bottle cap feeding mechanism and a laser welding device which are sequentially arranged on the peripheral side of the feeding rotary disc in the circumferential direction. The bottle body feeding mechanism conveys bottle bodies and places the bottle bodies on the feeding rotary disc, the bottle bodies are filled, the bottle bodies are conveyed to the corresponding positions of the bottle cap feeding mechanism in the circumferential direction through the feeding rotary disc, and the bottle cap feeding mechanism conveys bottle caps and covers the bottle bodies on the feeding rotary disc. The feeding rotating disc conveys the closed bottle cap and bottle body to the corresponding position of the laser welding device in the circumferential direction, and finally the laser welding device welds the closed position of the bottle body and the bottle cap, so that automatic production of the humidification bottle is achieved, the labor cost is reduced, and the production efficiency is improved.
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Description

Technical field

[0001] The utility model belongs to the technical field of humidification bottle production and processing, in particular to an automatic production line for humidification bottles. [Background Technology]

[0002] Humidifier bottles play an important role in medical equipment and are essential equipment for oxygen therapy in hospital emergency rooms, wards, and patients. They are usually used in conjunction with oxygen inhalers to ensure the humidification and safe use of oxygen.

[0003] In the existing humidification bottle production process, the bottle body is first filled, and then the humidification bottle cap is manually closed on the bottle body and sealed. This not only has high labor costs but also low production efficiency. [Utility Model Content]

[0004] The utility model aims to provide an automatic production line for humidifying bottles which can reduce labor costs and improve production efficiency.

[0005] The utility model is realized by the following technical solutions:

[0006] An automatic production line for humidifying bottles, comprising:

[0007] Processing platform;

[0008] A feeding turntable is rotatably mounted on the processing platform and is used to place the humidification bottles and transport the humidification bottles in a circumferential direction;

[0009] The bottle body feeding mechanism is arranged on the side of the feeding turntable and is used to transport the bottle body and place the bottle body on the feeding turntable;

[0010] The bottle cap feeding mechanism is arranged on the peripheral side of the feeding turntable and is used to transport the bottle caps and put the bottle caps on the bottle bodies on the feeding turntable;

[0011] The laser welding device is arranged on the peripheral side of the feeding turntable and is used to weld the capping position of the bottle body and the bottle cap.

[0012] As described above, in an automatic production line for humidification bottles, the feeding turntable is provided with a bottle body fixture for placing the bottle body of the humidification bottle, and multiple bottle body fixtures are arranged in a circumferential direction. A turntable driving component for driving the feeding turntable to rotate is provided between the processing platform and the feeding turntable.

[0013] In the automatic production line for humidifier bottles as described above, the feed turntable is provided with a fixture mounting hole for mounting a bottle body fixture, and the bottle body fixture includes a lower mounting ring embedded in the fixture mounting hole, and an upper support ring for supporting the humidifier bottle body.

[0014] In the above-mentioned automatic production line for humidifying bottles, the bottle loading mechanism includes:

[0015] Bottle conveying line, which is used to convey the bottle bodies to the side of the feeding turntable;

[0016] The bottle body transfer assembly is used to grab the bottle body on the bottle body conveyor line and transfer the bottle body to be placed on the feeding turntable. The bottle body transfer assembly includes a bottle body grabbing piece for grabbing the bottle body and a first lifting and transverse movement mechanism for driving the bottle body grabbing piece to lift, lift and transverse movement.

[0017] In the above-mentioned automatic production line for humidifying bottles, the bottle conveying line comprises:

[0018] Bottle conveyor rack, which is installed on the processing platform;

[0019] A bottle conveying wheel is rotatably mounted on the bottle conveying frame;

[0020] A bottle conveyor belt is sleeved on the bottle conveyor wheel, and is provided with a plurality of conveyor belt connecting holes arranged along the conveying direction;

[0021] The bottle conveying jig is fixed on the bottle conveying belt and is used for placing the bottle. The bottle conveying jig is provided with a jig connection hole corresponding to the conveying belt connection hole.

[0022] In the above-mentioned automatic production line for humidifying bottles, the bottle cap feeding mechanism includes:

[0023] The bottle cap conveying line is used to convey the bottle caps to the side of the feeding turntable;

[0024] The bottle cap transfer assembly is used to grab the bottle caps on the bottle cap conveyor line and transfer the bottle caps to the bottle bodies on the feeding turntable. The bottle cap transfer assembly includes a bottle cap grabbing member for grabbing the bottle caps and a second lifting and transverse movement mechanism for driving the bottle cap grabbing member to lift, lift and transverse movement.

[0025] The automatic production line for humidifying bottles as described above further includes a material unloading mechanism provided on the periphery of the feeding turntable, the material unloading mechanism including:

[0026] Unloading conveyor line, which is used to convey the processed humidified bottles;

[0027] The unloading and transferring assembly is used to grab the humidification bottle on the feeding turntable and transfer the humidification bottle to the unloading conveyor line. The unloading and transferring assembly includes a humidification bottle grabbing piece for grabbing the humidification bottle and a third lifting and transverse movement mechanism for driving the humidification bottle grabbing piece to lift, lower and transverse movement.

[0028] In the above-mentioned automatic production line for humidifier bottles, the laser welding device comprises:

[0029] A rotary drive mechanism, which is provided on the processing platform and is used to fix and drive the humidification bottle to rotate;

[0030] The laser welding mechanism comprises a laser mounting frame arranged on a processing platform and a laser head arranged on the laser mounting frame, wherein the laser emission port of the laser head faces the joint between the body of the humidifying bottle and the bottle cap.

[0031] In the above-mentioned automatic production line for humidifier bottles, the rotary drive mechanism includes:

[0032] A rotating mounting frame, which is arranged on the processing platform;

[0033] An upper pressing rotating assembly is provided on the rotating mounting frame and is located at the upper end of the humidifying bottle;

[0034] A lower pressing and rotating assembly is provided on the processing platform and is located at the lower end of the humidifying bottle, and is used to cooperate with the upper pressing and rotating assembly to press and fix the humidifying bottle;

[0035] The rotary drive assembly is arranged on the upper pressing rotating assembly or the lower pressing rotating assembly and is used to drive the humidification bottle fixed between the upper pressing rotating assembly and the lower pressing rotating assembly to rotate.

[0036] In the automatic production line for humidification bottles as described above, a peristaltic pump is provided on the processing platform, and the peristaltic pump is used to fill the solution into the bottle bodies placed on the feeding turntable.

[0037] Compared with the prior art, the utility model has the following advantages:

[0038] The utility model provides an automatic production line for humidifying bottles, comprising a processing platform, a feeding turntable rotatably arranged on the processing platform, and a bottle body loading mechanism, a bottle cap loading mechanism, and a laser welding device sequentially arranged on the circumferential side of the feeding turntable in a circumferential direction. During production, the bottle body loading mechanism conveys the bottle body and places the bottle body on the feeding turntable, the bottle body is filled, and the bottle body is conveyed along the circumferential direction to the corresponding position of the bottle cap loading mechanism via the feeding turntable. The bottle cap is conveyed by the bottle cap loading mechanism and capped on the bottle body on the feeding turntable. The capped bottle cap and the bottle body are then conveyed together by the feeding turntable along the circumferential direction to the corresponding position of the laser welding device. Finally, the laser welding device welds the capped position of the bottle body and the bottle cap, thereby realizing automatic production of humidifying bottles, reducing labor costs, and improving production efficiency.

[0039] A laser welding device is used to realize automatic welding of the bottle body and the bottle cap, replacing the existing threaded connection method of the bottle body and the bottle cap. There is no need to use a sealing ring, and the processing cost is lower.

Brief Description of the Drawings

[0040] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments.

[0041] Figure 1This is a structural diagram of an automatic production line for humidifying bottles in a specific embodiment of the present invention;

[0042] Figure 2 This is a schematic diagram of the exploded structure of the feeding turntable in a specific embodiment of the present utility model;

[0043] Figure 3 This is a structural diagram of a bottle conveying line in a specific embodiment of the present invention;

[0044] Figure 4 This is a schematic structural diagram of a laser welding device in a specific embodiment of the present invention;

[0045] Figure 5 This is a structural diagram of the rotary drive mechanism in a specific embodiment of the present utility model;

[0046] Figure 6 It is a structural schematic diagram of the laser welding mechanism in a specific embodiment of the present utility model. [Specific implementation method]

[0047] In order to make the technical problems, technical solutions and beneficial effects solved by the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0048] When the embodiments of the present invention mention ordinal numbers such as "first" and "second", unless they do express the meaning of order according to the context, they should be understood as being merely for the purpose of distinction.

[0049] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.

[0050] Specific embodiments, such as Figure 1-6The automatic production line for humidification bottles shown in the figure includes: a processing platform 1; a feeding turntable 3, which is rotatably arranged on the processing platform 1 and is used to place the humidification bottles and transport the humidification bottles in a circumferential direction; a bottle body loading mechanism 4, which is arranged on the side of the feeding turntable 3 and is used to transport the bottle body and place the bottle body on the feeding turntable 3; a bottle cap loading mechanism 5, which is arranged on the side of the feeding turntable 3 and is used to transport the bottle cap and cover the bottle cap on the bottle body on the feeding turntable 3; a laser welding device 2, which is arranged on the side of the feeding turntable 3 and is used to weld the covering position of the bottle body and the bottle cap. During production, the bottle loading mechanism transports the bottle body and places the bottle body on the feeding turntable, the solution is filled into the bottle body manually or by a pump, and the bottle body is transported along the circumferential direction to the corresponding position of the bottle cap loading mechanism through the feeding turntable, the bottle cap is transported by the bottle cap loading mechanism and capped on the bottle body on the feeding turntable, and then the feeding turntable transports the capped bottle cap and the bottle body together along the circumferential direction to the corresponding position of the laser welding device, and finally the laser welding device welds the capping position of the bottle body and the bottle cap, thereby realizing the automated production of humidification bottles, reducing labor costs and improving production efficiency; and the laser welding device is used to realize automatic welding of the bottle body and the bottle cap, replacing the existing threaded connection method of the bottle body and the bottle cap, without the need for sealing rings, and lowering the processing cost.

[0051] Specifically, the feeding turntable 3 is provided with a bottle body jig 6 for placing the humidification bottle body. Multiple bottle body jigs 6 are arranged along the circumferential direction. A turntable driving member 7 for driving the feeding turntable 3 to rotate is provided between the processing platform 1 and the feeding turntable 3. The bottle body jig 6 is provided to place and fix the bottle body to prevent the bottle body from tipping over or shifting.

[0052] In addition, the feed turntable 3 is provided with a fixture mounting hole 8 for mounting a bottle body fixture 6. The bottle body fixture 6 includes a lower mounting ring 9 embedded in the fixture mounting hole 8 and an upper support ring 10 for supporting the humidification bottle body. The bottle body fixture 6 is detachable and easy to use, maintain and replace.

[0053] Furthermore, the bottle loading mechanism 4 includes a bottle conveyor line 41 for conveying bottles to the side of the feed turntable 3; a bottle transfer assembly 42 for grabbing bottles from the bottle conveyor line 41 and transferring them to the feed turntable 3. The bottle transfer assembly 42 includes a bottle gripper 421 for grabbing bottles, and a first lifting and transverse movement mechanism 422 for driving the bottle gripper 421 in both vertical and horizontal directions. The first lifting and transverse movement mechanism 422 is a conventional structure driven by a robotic arm and will not be described in detail here. This achieves automated bottle loading and improves production efficiency.

[0054] More specifically, the bottle body conveyor line 41 includes: a bottle body conveyor rack 411, which is arranged on the processing platform 1; a bottle body conveyor wheel 412, which is rotatably arranged on the bottle body conveyor rack 411; a bottle body conveyor belt 413, which is sleeved on the bottle body conveyor wheel 412, and the bottle body conveyor belt 413 is provided with a plurality of conveyor belt connecting holes 4131 arranged along the conveying direction; a bottle body conveying jig 414, which is fixed on the bottle body conveyor belt 413 for placing the bottle body, and the bottle body conveying jig 414 is provided with a jig connecting hole 4141 corresponding to the conveyor belt connecting hole 4131. During use, a motor is used to drive the bottle conveying wheel 412 to rotate, thereby driving the bottle conveyor belt 413 to transmit, and then driving the bottle conveying jig 414 and the bottle on the bottle conveying jig 414 to move. The bottle is positioned and fixed by the bottle conveying jig 414, and the bottle conveying jig 414 is fixed to the bottle conveyor belt 413 with screws to avoid deviation and ensure accurate bottle conveying.

[0055] Furthermore, the bottle cap loading mechanism 5 includes: a bottle cap conveyor line 51, which is used to convey bottle caps to the side of the feeding turntable 3; a bottle cap transfer assembly 52, which is used to grab bottle caps on the bottle cap conveyor line 51 and transfer the bottle caps to the bottle bodies on the feeding turntable 3. The bottle cap transfer assembly 52 includes a bottle cap grabbing member 521 for grabbing bottle caps, and a second lifting and transverse movement mechanism 522 for driving the bottle cap grabbing member 521 to move up and down and laterally. The second lifting and transverse movement mechanism 522 is a structure driven by an existing robotic arm for lifting and transverse movement, which will not be described in detail here. This realizes automated bottle cap loading and improves production efficiency.

[0056] Furthermore, the automatic humidifier bottle production line also includes a feeding mechanism 11 disposed around the feeding turntable 3. The feeding mechanism 11 includes a feeding conveyor line 111 for conveying processed humidifier bottles; a feeding transfer assembly 112 for grabbing humidifier bottles on the feeding turntable 3 and transferring them to the feeding conveyor line 111. The feeding transfer assembly 112 includes a humidifier bottle grabbing member 1121 for grabbing the humidifier bottles, and a third lifting and transverse movement mechanism 1122 for driving the humidifier bottle grabbing member 1121 to move upward, downward, and laterally. This achieves automatic feeding and improves production efficiency.

[0057] In addition, a peristaltic pump 12 is provided on the processing platform 1, and the peristaltic pump 12 is used to fill the solution into the bottle body placed on the feeding turntable 3. Automatic filling and higher processing efficiency.

[0058] Specifically, the laser welding device 2 includes a rotary drive mechanism 21, which is provided on the processing platform 1 and is used to fix and drive the humidification bottle to rotate; a laser welding mechanism 22, which includes a laser mounting frame 221 provided on the processing platform 1, and a laser head 222 provided on the laser mounting frame 221, wherein the laser emission port of the laser head 222 faces the joint between the bottle body and the bottle cap of the humidification bottle. During use, the bottle cap of the humidification bottle is placed on the bottle body and fixed by the rotary drive mechanism. At this time, the laser emission port of the laser head faces the joint between the bottle body and the bottle cap of the humidification bottle, and the laser head performs laser welding on the joint between the bottle body and the bottle cap. At the same time, the rotary drive mechanism drives the humidification bottle to rotate to achieve automatic welding of the bottle body and the bottle cap, which has higher processing efficiency, does not require a sealing ring, and has lower processing costs. In addition, the laser welding process is more precise, produces less impurities, and reduces contamination in the humidification bottle.

[0059] Specifically, the rotary drive mechanism 21 includes: a rotary mounting frame 211, which is provided on the processing platform 1; an upper pressing rotating assembly 212, which is provided on the rotary mounting frame 211 and located at the upper end of the humidifying bottle; a lower pressing rotating assembly 213, which is provided on the processing platform 1 and located at the lower end of the humidifying bottle, and is used to cooperate with the upper pressing rotating assembly 212 to press and fix the humidifying bottle; a rotary drive assembly 214, which is provided on the upper pressing rotating assembly 212 or the lower pressing rotating assembly 213, and is used to drive the humidifying bottle fixed between the upper pressing rotating assembly 212 and the lower pressing rotating assembly 213 to rotate. When in use, the humidifying bottle cap is closed on the bottle body, the bottle body and the bottle cap are pressed and fixed by the lower pressing rotating assembly 213 and the upper pressing rotating assembly 212, and the rotary drive assembly 214 drives the rotation to achieve automatic laser welding.

[0060] In addition, the upper compression rotation assembly 212 includes: an upper compression mounting plate 2121; an upper compression member 2122, which is rotatably mounted on the upper compression mounting plate 2121; and an upper compression driving member 2123, which is mounted on the rotating mounting frame 211 and has a driving end connected to the upper compression mounting plate 2121, and is used to drive the upper compression member 2122 to move toward or away from the upper end of the humidification bottle in a vertical direction. Optionally, the upper compression driving member 2123 adopts a telescopic cylinder, which drives the upper compression member 2122 to press down or move up and away through its telescopic end to achieve the fixation of the humidification bottle. At the same time, the upper compression member 2122 is rotatably mounted on the upper compression mounting plate 2121, so that the humidification bottle cap can rotate when it is closed on the bottle body.

[0061] Furthermore, a buffer mechanism 23 is provided between the upper clamping driver 2123 and the upper clamping mounting plate 2121. This buffer mechanism 23 comprises a driver pressing plate 231, located at the driving end of the upper clamping driver 2123; a buffer guide rod 232, one end of which is connected to the upper clamping mounting plate 2121 and the other end of which moves through the driver pressing plate 231; and a linear bearing 233, mounted on the driver pressing plate 231 and sleeved around the buffer guide rod 232. This not only provides a buffering effect, protecting the humidifier bottle, but also ensures a more stable fixation, prevents misalignment, and improves welding accuracy. Specifically, a buffer spring is sleeved around the buffer guide rod 232.

[0062] More specifically, an upper pressing rotating bearing 24 is provided between the upper pressing mounting plate 2121 and the upper pressing member 2122, so that the humidifying bottle can rotate more smoothly and the welding accuracy can be improved.

[0063] Furthermore, the lower pressing rotating assembly 213 includes: a lower pressing mounting plate 2131; a lower pressing member 2132, which is rotatably arranged on the lower pressing mounting plate 2131; a lower pressing driving member 2133, which is arranged on the rotating mounting frame 211 and has a driving end connected to the lower pressing mounting plate 2131, and is used to drive the lower pressing member 2132 to move closer to or away from the lower end of the humidifying bottle in the vertical direction. Optionally, the lower pressing driving member 2133 adopts a telescopic cylinder, which drives the lower pressing member 2132 to press up or move down and disengage through its telescopic end, so as to cooperate with the upper pressing member 2122 to press down and realize the fixation of the humidifying bottle. At the same time, the lower pressing member 2132 is rotatably arranged on the lower pressing mounting plate 2131, so as to facilitate the rotation of the humidifying bottle cap when it is closed on the bottle body.

[0064] Furthermore, the rotary drive assembly 214 includes a rotary drive platform 2141, which is rotatably mounted on the lower clamping mounting plate 2131 and connected to the lower clamping member 2132; and a rotary drive member 2142, which is mounted on the lower clamping mounting plate 2131 and is used to rotate the rotary drive platform 2141. The rotary drive member 2142 can be a rotary cylinder or a rotary motor to drive the rotary drive platform 2141, thereby rotating the humidification bottle clamped between the lower clamping member 2132 and the upper clamping member 2122, thereby achieving automated laser welding.

[0065] Specifically, the laser welding mechanism 22 further includes a laser fixing frame 223 disposed on the laser mounting frame 221 for fixing the laser head 222, and an XYZ axis displacement platform 224 disposed between the laser fixing frame 223 and the laser mounting frame 221. The XYZ axis displacement platform 224 allows the position of the laser head 222 to be adjusted, making it more flexible and convenient to use.

[0066] The above is an implementation method provided in conjunction with specific content, and does not necessarily mean that the specific implementation of this utility model is limited to these descriptions. At the same time, due to differences in industry nomenclature, it is not limited to the above nomenclature, nor is it limited to English nomenclature. Any method, structure, etc. similar to or identical to the method, structure, etc. of this utility model, or any technical deduction or replacement based on the concept of this utility model, shall be considered within the scope of protection of this utility model.

Claims

1. An automatic production line for humidification bottles, characterized in that: include: Processing platform (1); A feeding turntable (3) is rotatably arranged on the processing platform (1) and is used to place the humidification bottles and transport the humidification bottles in a circumferential direction; A bottle loading mechanism (4) is provided on the peripheral side of the feeding turntable (3) and is used for conveying the bottle and placing the bottle on the feeding turntable (3); A bottle cap loading mechanism (5) is provided on the peripheral side of the feeding turntable (3) and is used for conveying the bottle caps and capping the bottle caps on the bottles on the feeding turntable (3); A laser welding device (2) is arranged on the peripheral side of the feeding turntable (3) and is used for welding the capping positions of the bottle body and the bottle cap.

2. The automatic production line for humidifier bottles according to claim 1, characterized in that: The feeding turntable (3) is provided with a bottle body jig (6) for placing the humidification bottle body, and a plurality of the bottle body jigs (6) are arranged along the circumferential direction. A turntable driving member (7) for driving the feeding turntable (3) to rotate is provided between the processing platform (1) and the feeding turntable (3).

3. The automatic production line for humidifier bottles according to claim 2, characterized in that: The feeding turntable (3) is provided with a jig mounting hole (8) for mounting a bottle body jig (6), and the bottle body jig (6) comprises a lower mounting ring (9) embedded in the jig mounting hole (8), and an upper supporting ring (10) for supporting the humidifying bottle body.

4. The automatic production line for humidifier bottles according to claim 1, characterized in that: The bottle loading mechanism (4) comprises: A bottle conveying line (41) is used to convey the bottle bodies to the side of the feeding turntable (3); The bottle body transfer assembly (42) is used to grab the bottle body on the bottle body conveyor line (41) and transfer the bottle body to be placed on the feeding turntable (3). The bottle body transfer assembly (42) includes a bottle body grabbing member (421) for grabbing the bottle body and a first lifting and transverse movement mechanism (422) for driving the bottle body grabbing member (421) to lift, lift and transverse movement.

5. The automatic production line for humidifier bottles according to claim 4, characterized in that: The bottle conveying line (41) comprises: A bottle conveying rack (411) is provided on the processing platform (1); A bottle conveying wheel (412) is rotatably mounted on the bottle conveying frame (411); A bottle conveyor belt (413) is sleeved on the bottle conveyor wheel (412), and the bottle conveyor belt (413) is provided with a plurality of conveyor belt connection holes (4131) arranged along the conveying direction; A bottle conveying jig (414) is fixedly mounted on the bottle conveyor belt (413) for placing the bottle. The bottle conveying jig (414) is provided with a jig connection hole (4141) corresponding to the conveyor belt connection hole (4131).

6. The automatic production line for humidifier bottles according to claim 1, characterized in that: The bottle cap feeding mechanism (5) comprises: A bottle cap conveying line (51) is used to convey the bottle caps to the periphery of the feeding turntable (3); A bottle cap transfer assembly (52) is used to grab bottle caps on a bottle cap conveying line (51) and transfer the bottle caps to fit onto bottles on a feeding turntable (3). The bottle cap transfer assembly (52) comprises a bottle cap grabbing member (521) for grabbing the bottle caps and a second lifting and transverse movement mechanism (522) for driving the bottle cap grabbing member (521) to lift, lift and transversely move.

7. The automatic production line for humidifier bottles according to claim 1, characterized in that: The machine further comprises a material unloading mechanism (11) provided on the peripheral side of the feeding turntable (3), wherein the material unloading mechanism (11) comprises: A material unloading conveying line (111) for conveying the processed humidified bottles; The unloading and transferring assembly (112) is used to grab the humidification bottle on the feeding turntable (3) and transfer the humidification bottle to the unloading conveyor line (111). The unloading and transferring assembly (112) includes a humidification bottle grabbing member (1121) for grabbing the humidification bottle, and a third lifting and transverse movement mechanism (1122) for driving the humidification bottle grabbing member (1121) to move up, down, and transversely.

8. The automatic production line for humidifier bottles according to claim 1, characterized in that: The laser welding device (2) comprises: A rotary drive mechanism (21) is provided on the processing platform (1) and is used to fix and drive the humidification bottle to rotate; The laser welding mechanism (22) comprises a laser mounting frame (221) arranged on the processing platform (1), and a laser head (222) arranged on the laser mounting frame (221), wherein the laser emission port of the laser head (222) faces the joint between the humidification bottle body and the bottle cap.

9. The automatic production line for humidifier bottles according to claim 8, characterized in that: The rotary drive mechanism (21) comprises: A rotating mounting frame (211) is provided on the processing platform (1); An upper pressing rotating assembly (212) is provided on the rotating mounting frame (211) and is located at the upper end of the humidifying bottle; A lower pressing rotating assembly (213) is provided on the processing platform (1) and is located at the lower end of the humidifying bottle, and is used to cooperate with the upper pressing rotating assembly (212) to press and fix the humidifying bottle; The rotary drive assembly (214) is provided on the upper pressing rotating assembly (212) or the lower pressing rotating assembly (213) and is used to drive the humidification bottle fixed between the upper pressing rotating assembly (212) and the lower pressing rotating assembly (213) to rotate.

10. The automatic production line for humidifier bottles according to claim 1, characterized in that: A peristaltic pump (12) is provided on the processing platform (1), and the peristaltic pump (12) is used to fill the solution into the bottle body placed on the feeding turntable (3).