Full-automatic assembling machine for oxygen humidification bottle

By designing a fully automatic assembly machine for oxygen humidification bottles, which integrates the processes of bottle cap pre-assembly with bottle filling and tightening, the inefficiency problem caused by the dispersion of traditional production lines was solved, and efficient and compact production was achieved.

CN223433253UActive Publication Date: 2025-10-14CHONGQING COSTER MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202422988871.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-10-14
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

Traditional oxygen humidification bottle assembly production lines are too long and scattered, resulting in low production efficiency and difficulty in close collaboration.

Method used

A fully automatic assembly machine for oxygen humidification bottles is designed. By setting up multiple turntables and corresponding assembly devices, the automated integration of processes from bottle cap pre-assembly to bottle filling and tightening is achieved, including bottle cap assembly, stopper assembly and bottle assembly devices.

Benefits of technology

It improves production efficiency, reduces production costs, and achieves efficient and compact integration of processes.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model belongs to the technical field of oxygen humidification bottle production equipment, and particularly relates to a full-automatic assembling machine for an oxygen humidification bottle. Comprising a bottle cap assembling device, the bottle cap assembling device comprises a first rotating disc, and the bottle cap assembling device is used for preassembling bottle caps in the rotating direction of the first rotating disc; the bottle cap overturning device and the rubber plug assembling device are arranged close to the first rotating disc, the rubber plug assembling device comprises a second rotating disc, the bottle cap overturning device is used for overturning bottle caps and then placing the bottle caps on the second rotating disc, and the rubber plug assembling device is used for installing rubber plugs on the bottle caps; the bottle cap conveying device and the bottle body assembling device are arranged close to the second rotating disc, the bottle body assembling device comprises a third rotating disc used for containing bottle bodies, the bottle cap conveying device is used for conveying bottle caps to the position close to the third rotating disc, and the bottle body assembling device is used for filling the bottle bodies and screwing the bottle caps on the bottle bodies. The automatic bottle cap assembling machine can efficiently and compactly integrate assembling procedures from bottle cap pre-assembling to bottle body filling and tightening and the like, greatly improves production efficiency and reduces production cost.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to oxygen humidification bottle production equipment technical field especially relates to a kind of oxygen humidification bottle full-automatic assembly machine. BACKGROUND

[0002] Oxygen humidification bottle, as an indispensable part in medical oxygen supply system, plays the role of providing key oxygen inhalation therapy for patients. In the daily operation of medical institutions, its importance is self-evident. However, in the traditional production mode, the assembly process of oxygen humidification bottle is long and scattered.

[0003] Specifically, the traditional oxygen humidification bottle assembly production line often arranges each assembly process on both sides or one side of a long production line, and each process needs to occupy relatively independent space. This layout not only leads to the length of the whole production line, occupies a large amount of production site, but also the connection between each process is not smooth enough, and there is obvious efficiency bottleneck. In addition, due to the dispersion of process, it is difficult to realize close cooperation and cooperation, so as to affect the overall production efficiency.

[0004] Therefore, an oxygen humidification bottle full-automatic assembly machine capable of efficiently and compactly integrating each assembly process is needed. UTILITY MODEL CONTENTS

[0005] The utility model aims at the deficiency of prior art, and provides an oxygen humidification bottle full-automatic assembly machine, which can efficiently and compactly integrate assembly processes from bottle cap pre-assembly to bottle body filling, tightening and the like, greatly improve production efficiency and reduce production cost.

[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0007] An oxygen humidification bottle full-automatic assembly machine comprises:

[0008] A bottle cap assembly device comprising a first turntable for placing bottle caps upside down, the bottle cap assembly device is used for pre-assembly of the bottle caps along the rotation direction of the first turntable;

[0009] A bottle cap turnover device and a rubber plug assembly device are arranged close to the first turntable, the rubber plug assembly device comprises a second turntable, the bottle cap turnover device is used for placing bottle caps on the second turntable after turning over from the first turntable, and the rubber plug assembly device is used for installing rubber plugs at the air inlet and air outlet of the bottle caps;

[0010] A bottle cap transmission device and a bottle body assembling device are arranged near the second turntable, the bottle body assembling device comprises a third turntable for placing a bottle body, the bottle cap transmission device is used for transmitting the bottle cap from the second turntable to the third turntable, and the bottle body assembling device is used for filling the bottle body and screwing the bottle cap on the bottle body.

[0011] Further, a plurality of first mounting seats are arranged at the edge of the first turntable, and the bottle cap assembling device comprises:

[0012] An upper cap loading mechanism is arranged for placing an upper cap of the bottle cap upside down on the first mounting seat;

[0013] An inner cap loading mechanism is arranged for placing an inner cap of the bottle cap at the inner end face of the upper cap;

[0014] A breather pipe loading mechanism is arranged for installing a breather pipe of the bottle cap at the inner end face of the upper cap through the inner cap;

[0015] A filter tip loading mechanism is arranged for installing a filter tip of the bottle cap at the end of the breather pipe.

[0016] Further, an inner cap fixing mechanism is arranged between the inner cap loading mechanism and the breather pipe loading mechanism, and the inner cap fixing mechanism is used for pressing the inner cap to fix the inner cap relative to the upper cap.

[0017] Further, a plurality of second mounting seats are arranged at the edge of the second turntable, and the bottle cap turning device is used for placing the upside-down bottle cap on the second mounting seat after turning the upside-down bottle cap from the first mounting seat.

[0018] Further, the bottle cap turning device comprises a first vertical moving mechanism and a rotating mechanism arranged on the first vertical moving mechanism, the rotating mechanism is connected with a turning plate, the turning plate is provided with a first clamping jaw for clamping the bottle cap, and the rotating mechanism drives the turning plate to turn between the first turntable and the second turntable.

[0019] Further, the rubber plug assembling device comprises:

[0020] An upper rubber plug loading mechanism is arranged for installing an upper rubber plug at the air inlet of the upper end of the bottle cap;

[0021] A side rubber plug loading mechanism is arranged for installing a side rubber plug at the air outlet of the side end of the bottle cap.

[0022] Further, the bottle cap transmission device comprises a bottle cap grabbing mechanism and a bottle cap transmission mechanism, the bottle cap grabbing mechanism is used for grabbing the bottle cap on the second turntable to the bottle cap transmission mechanism, and the bottle cap transmission mechanism is used for transmitting the bottle cap to the third turntable.

[0023] Further, a plurality of third mounting seats are arranged at the edge of the third turntable, and the bottle body assembling device comprises:

[0024] a bottle body feeding mechanism, which is used for placing the bottle body on the third mounting seat;

[0025] a filling mechanism, which is used for filling the wetting liquid into the bottle body;

[0026] a cover setting mechanism, which is used for grabbing the bottle cap from the bottle cap transmission device and mounting the bottle cap on the bottle body;

[0027] a cap screwing mechanism, which is used for screwing the bottle cap on the bottle body.

[0028] Further, the cap screwing mechanism comprises a second vertical moving mechanism and a cap screwing motor arranged on the second vertical moving mechanism, and a cap setting die is arranged at the power output end of the cap screwing motor, and is used for being set on the bottle cap to screw.

[0029] Further, a discharging device is arranged close to the third turntable, and is used for taking out the oxygen wetting bottle assembled on the third turntable.

[0030] The beneficial effects of the utility model are as follows:

[0031] The utility model discloses a first turntable, a second turntable and a third turntable are arranged, and bottle cap assembling device, rubber plug assembling device and bottle body assembling device are arranged on the periphery, realize the automatic assembly of all processes from bottle cap preassembly to bottle body filling, screwing and the like, realize the automation of bottle cap preassembly through the feeding mechanism of upper cover, the feeding mechanism of inner cover, the feeding mechanism of breather pipe and the feeding mechanism of filter tip along the rotation direction of first turntable, realize the relative fixation between inner cover and upper cover through the setting inner cover fixing mechanism, realize the automatic installation of rubber plug at the air inlet and air outlet of bottle cap through the setting upper rubber plug feeding mechanism and side rubber plug feeding mechanism in rubber plug assembling device, realize the automation of all processes from feeding to filling, cover setting, screwing and the like of bottle body through the setting bottle body feeding mechanism, filling mechanism, cover setting mechanism and cap screwing mechanism along the rotation direction of third turntable, the utility model can efficiently and compactly integrate the assembly processes from bottle cap preassembly to bottle body filling, screwing and the like, greatly improve production efficiency and reduce production cost. BRIEF DESCRIPTION OF DRAWINGS

[0032] ATTACH Figure 1It is a structure schematic view of the oxygen humidifying bottle full-automatic assembling machine of the utility model;

[0033] attached Figure 2 It is a structure schematic view of the bottle cap of the oxygen humidifying bottle of the utility model;

[0034] attached Figure 3 It is a structure schematic view of the bottle cap assembling device of the utility model;

[0035] attached Figure 4 It is a structure schematic view of the bottle cap overturning device of the utility model;

[0036] attached Figure 5 It is a structure schematic view of the rubber plug assembling device and bottle cap transmission device of the utility model;

[0037] attached Figure 6 It is a structure schematic view of the bottle body assembling device of the utility model;

[0038] attached Figure 7 It is a structure schematic view of the cap screwing mechanism of the utility model;

[0039] In the figure, 1 is a bottle cap assembling device, 110 is a first rotating disc, 111 is a first mounting base, 120 is an upper cap feeding mechanism, 130 is an inner cap feeding mechanism, 140 is an inner cap fixing mechanism, 150 is a breather pipe feeding mechanism, and 160 is a filter tip feeding mechanism; 2 is a bottle cap overturning device, 210 is a first vertical movement mechanism, 220 is a rotating mechanism, 230 is an overturning plate, and 240 is a first clamping jaw; 3 is a rubber plug assembling device, 310 is a second rotating disc, 311 is a second mounting base, 320 is an upper rubber plug feeding mechanism, 330 is a side rubber plug feeding mechanism, and 340 is a cap pressing mechanism; 4 is a bottle cap transmission device, 410 is a bottle cap grabbing mechanism, and 420 is a bottle cap transmission mechanism; 5 is a bottle body assembling device, 510 is a third rotating disc, 511 is a third mounting base, 520 is a bottle body feeding mechanism, 530 is a filling mechanism, 540 is a cover sleeving mechanism, 550 is a cap screwing mechanism, 551 is a second vertical movement mechanism, 552 is a cap screwing motor, and 553 is an upper cap mold; 6 is an ejection device; 7 is a bottle cap, 710 is an upper cap, 711 is an air inlet, 712 is an air outlet, 720 is an inner cap, 730 is a breather pipe, 740 is a filter tip, 750 is an upper rubber plug, and 760 is a side rubber plug; and 8 is a bottle body. DETAILED DESCRIPTION

[0040] The embodiments of the utility model are described in detail below, examples of the embodiments are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are intended to explain the utility model, and cannot be understood as a limitation of the utility model.

[0041] In the description of the utility model, it is understood that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the devices or elements indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model.

[0042] In addition, the terms "first" and "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the utility model, the meaning of "multiple" is two or more, unless otherwise specifically limited.

[0043] In the embodiments of the utility model, unless otherwise specifically defined and limited, the terms "mounting", "connection", "connection", "fixing" and the like should be understood in a broad sense, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication or interaction relationship between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0044] Referring to the drawings Figure 1 to the drawings Figure 7 , the drawings show a specific embodiment of the oxygen humidification bottle full-automatic assembly machine provided by the utility model.

[0045] Referring to the drawings Figure 1 , the oxygen humidification bottle full-automatic assembly machine comprises:

[0046] The bottle cap assembly device 1 comprises a first turntable 110 for placing the bottle cap 7 upside down, and the bottle cap assembly device 1 is used for preassembling the bottle cap 7 along the rotation direction of the first turntable 110;

[0047] The bottle cap turnover device 2 and the rubber plug assembly device 3 are arranged close to the first turntable 110, the rubber plug assembly device 3 comprises a second turntable 310, the bottle cap turnover device 2 is used for placing the bottle cap 7 on the second turntable 310 after turning over the bottle cap 7 from the first turntable 110, and the rubber plug assembly device 3 is used for installing the rubber plug at the air inlet 711 and the air outlet 712 of the bottle cap 7;

[0048] The bottle cap transmission device 4 and the bottle body assembling device 5 are arranged close to the second turntable 310, the bottle body assembling device 5 comprises a third turntable 510 for placing the bottle body 8, and the bottle cap transmission device 4 is used for transmitting the bottle cap 7 from the second turntable 310 to the third turntable 510 close to the bottle body assembling device 5.

[0049] Referring to the drawings Figure 1 In the above embodiment, the automatic assembling of the oxygen humidification bottle is realized by arranging the first turntable 110, the second turntable 310 and the third turntable 510, and arranging the bottle cap assembling device 1, the rubber plug assembling device 3 and the bottle body assembling device 5 around the periphery of the first turntable 110. In the first turntable 110, the assembling of the inner end of the bottle cap 7 is carried out along the rotation direction of the first turntable 110; then the bottle cap 7 is flipped by the bottle cap flipping device 2 and placed in the forward direction on the second turntable 310, the rubber plug is installed on the air inlet 711 and the air outlet 712 of the bottle cap 7, and finally the bottle cap 7 is transferred to the third turntable 510; the third turntable 510 simultaneously carries out the feeding and filling of the bottle body, then installs the bottle cap 7 transmitted from the second turntable 310 on the bottle body 8 and tightens it, so as to realize the automatic assembling of all processes from the bottle cap pre-assembling to the bottle body filling and tightening.

[0050] Referring to the drawings Figure 2 and the drawings Figure 3 In the above embodiment, the first turntable 110 is provided with a plurality of first mounting seats 111, and the bottle cap assembling device 1 comprises:

[0051] The upper cap feeding mechanism 120 is used for placing the upper cap 710 of the bottle cap 7 upside down on the first mounting seat 111;

[0052] The inner cap feeding mechanism 130 is used for placing the inner cap 720 of the bottle cap 7 at the inner end face of the upper cap 710;

[0053] The breather pipe feeding mechanism 150 is used for installing the breather pipe 730 of the bottle cap 7 through the inner cap 720 at the inner end face of the upper cap 710;

[0054] The filter tip feeding mechanism 160 is used for installing the filter tip 740 of the bottle cap 7 at the end of the breather pipe 730.

[0055] Referring to the drawings Figure 2 and the drawings Figure 3In the above embodiment, the vibration disc and the linear vibration of the upper cap feeding mechanism 120 move the upper cap 710 to the position close to the first rotary table 110, and the upper cap feeding mechanism 120 places the upper cap 710 in the inverted state, i.e., the inner end face upward, on the first mounting seat 111. The rotation of the first rotary table 110 moves the mounting seat to the position corresponding to the inner cap feeding mechanism 130, and the vibration disc and the linear vibration of the inner cap feeding mechanism 130 move the inner cap 720 to the position close to the first rotary table 110, and the inner cap feeding mechanism 130 installs the inner cap 720 at the inner end face of the upper cap 710. In the embodiment, the inner cap fixing mechanism 140 is further arranged between the inner cap feeding mechanism 130 and the breather pipe feeding mechanism 150, and the inner cap fixing mechanism 140 is used to press the inner cap 720 downward to fix the relative position between the inner cap 720 and the upper cap 710. The rotation of the first rotary table 110 moves the mounting seat to the position corresponding to the inner cap fixing mechanism 140, and the inner cap fixing mechanism 140 presses the inner cap 720 downward from top to bottom, so as to press the inner cap 720 tightly at the inner end face of the upper cap 710. The rotation of the first rotary table 110 moves the mounting seat to the position corresponding to the breather pipe feeding mechanism 150, and the vibration disc and the linear vibration of the breather pipe feeding mechanism 150 move the breather pipe 730 to the position close to the first rotary table 110. The gripper of the breather pipe feeding mechanism 150 clamps the vertical breather pipe 730 and installs it at the center position of the inner cap 720 and the upper cap 710, so that the breather pipe 730 is in communication with the air inlet 711 of the upper cap 710. In order to ensure the installation accuracy, in the embodiment, the breather pipe feeding mechanism 150 is further provided with another gripper for positioning the breather pipe 730 from the middle lower end of the breather pipe 730, so as to ensure that the breather pipe 730 can be accurately installed in the upper cap 710. The rotation of the first rotary table 110 moves the mounting seat to the position corresponding to the filter rod feeding mechanism 160, and the vibration disc and the linear vibration of the filter rod feeding mechanism 160 move the filter rod 740 to the position close to the first rotary table 110. The gripper of the filter rod feeding mechanism 160 clamps the filter rod 740 and installs it at the end of the breather pipe 730, i.e., the top end in the current inverted state. In order to avoid the deformation of the breather pipe 730 during installation, in the embodiment, the filter rod feeding mechanism 160 is further provided with another gripper for clamping and stabilizing the breather pipe 730 from the middle position of the breather pipe 730. After the assembly of the filter rod 740 is completed, the rotation of the first rotary table 110 moves the mounting seat to the position corresponding to the bottle cap turning device 2, and waits for the bottle cap 7 to be turned by the bottle cap turning device 2 and placed on the second rotary table 310.

[0056] Referring to the drawings Figure 4 and the drawings Figure 5In the above embodiment, the second rotary disc 310 is provided with a plurality of second mounting seats 311 at the edge thereof, and the bottle cap turning device 2 is used to turn and place the inverted bottle cap 7 from the first mounting seat 111 to the second mounting seat 311. The bottle cap turning device 2 comprises a first vertical moving mechanism 210 and a rotating mechanism 220 arranged on the first vertical moving mechanism 210, and the rotating mechanism 220 is connected with a turning plate 230 provided with a first clamping jaw 240 for clamping the bottle cap 7, and the rotating mechanism 220 drives the turning plate 230 to turn between the first rotary disc 110 and the second rotary disc 310. In the embodiment, the first mounting seat 111 is used to place the inverted bottle cap 7, and the second mounting seat 311 is used to place the bottle cap 7 in the normal direction. When the bottle cap 7 is completed with the assembly of the filter rod 740, the first rotary disc 110 is rotated to move to the corresponding station of the bottle cap turning device 2, the first vertical moving mechanism 210 drives the rotating mechanism 220 to move downward, and the turning plate 230 is close to the first rotary disc 110. The turning plate 230 is L-shaped, one end of which is connected to the rotating mechanism 220, and the other end is connected to the first clamping jaw 240. The first clamping jaw 240 clamps the inverted bottle cap 7 from the first rotary disc 110, the first vertical moving mechanism 210 drives the turning plate 230 to move upward, and the bottle cap 7 is lifted above the first mounting seat 111; the rotating mechanism 220 is rotated by 180 degrees, so that the bottle cap 7 is turned to the normal direction, and then the first vertical moving mechanism 210 drives the rotating mechanism 220 and the turning plate 230 to move downward and correspond to an empty second mounting seat 311, and the first clamping jaw 240 is released, so as to realize the turning and transferring of the bottle cap 7.

[0057] Referring to the drawings Figure 5In the above embodiment, the rubber plug assembly device 3 comprises, along the rotation direction of the second rotary disc 310, an upper rubber plug feeding mechanism 320 for installing the upper rubber plug 750 at the air inlet 711 of the upper end of the bottle cap 7, and a side rubber plug feeding mechanism 330 for installing the side rubber plug 760 at the air outlet 712 of the side end of the bottle cap 7. In the embodiment, the vibration disc and the straight vibration of the upper rubber plug feeding mechanism 320 cooperate to move the upper rubber plug 750 close to the second rotary disc 310, the upper rubber plug feeding mechanism 320 adsorbs the upper rubber plug 750 on the straight vibration in an adsorbing manner, then moves to the top of the upper cap 710 and is installed at the air inlet 711 of the upper cap 710, the second rotary disc 310 rotates to rotate the bottle cap 7 with the installed upper rubber plug 750 to the position corresponding to the side rubber plug feeding mechanism 330, the vibration disc and the straight vibration of the side rubber plug feeding mechanism 330 cooperate to move the side rubber plug 760 close to the second rotary disc 310, the side rubber plug feeding mechanism 330 adsorbs the side rubber plug 760 on the straight vibration in an adsorbing manner, then rotates 90 degrees to make the side rubber plug 760 transverse, and then is installed transversely at the air outlet 712 of the upper cap 710. In the embodiment, after the bottle cap 7 is flipped by the bottle cap flipping device 2 to the second rotary disc 310, the bottle cap 7 is first pressed by the upper cap pressing mechanism 340 to stably place on the second installation seat 311 of the second rotary disc 310, and then the installation of the upper rubber plug 750 and the side rubber plug 760 is performed, so as to avoid the deviation and misplacement of the bottle cap 7 during the installation.

[0058] Referring to the drawings Figure 5 In the above embodiment, the bottle cap transmission device 4 comprises a bottle cap grabbing mechanism 410 and a bottle cap transmission mechanism 420, the bottle cap grabbing mechanism 410 is used for grabbing the bottle cap 7 on the second rotary disc 310 to the bottle cap transmission mechanism 420, and the bottle cap transmission mechanism 420 is used for transmitting the bottle cap 7 close to the third rotary disc 510. In the embodiment, the bottle cap grabbing mechanism 410 is composed of a cylinder and a clamping jaw arranged above the second rotary disc 310, and the bottle cap transmission mechanism 420 is a transmission track, the cylinder of the bottle cap grabbing mechanism 410 drives the clamping jaw to move downward to clamp the bottle cap 7, then moves to the upper side of the transmission track, and then is placed in the transmission track, and the transmission track transmits the bottle cap 7 close to the third rotary disc 510.

[0059] Referring to the drawings Figure 6 In the above embodiment, the third rotary disc 510 is provided with a plurality of third installation seats 511 at the edge, and the bottle body assembly device 5 comprises, along the rotation direction of the third rotary disc 510, a bottle body feeding mechanism 520 for placing the bottle body 8 on the third installation seat 511;

[0060] a bottle body feeding mechanism 520 for placing the bottle body 8 on the third installation seat 511;

[0061] a filling mechanism 530 for filling the bottle body 8 with humidifying liquid;

[0062] The capping mechanism 540 is used to grab the bottle cap 7 from the bottle cap conveying device 4 and install it on the bottle body 8.

[0063] The capping mechanism 550 is used to tighten the bottle cap 7 on the bottle body 8.

[0064] Referring to the drawings Figure 6 In the above embodiment, the third mounting seat 511 on the third turntable 510 is used to place the bottle body 8, and the vibration disc and straight vibration of the bottle body feeding mechanism 520 cooperate to convey the empty bottle body 8 to the third turntable 510, and the grabbing tool of the bottle body feeding mechanism 520 grabs the bottle body 8 from the bottle mouth and places it on the third mounting seat 511. The third turntable 510 rotates and moves the mounting seat to a position corresponding to the filling mechanism 530, and the filling pipe of the filling mechanism 530 sinks into the bottle body 8 to fill the humidifying liquid. The third turntable 510 rotates and moves the mounting seat to a position corresponding to the capping mechanism 540, and the clamping jaw of the capping mechanism 540 grabs the assembled bottle cap 7 from the track of the bottle cap conveying mechanism 420 and places it on the bottle body 8. The third turntable 510 rotates and moves the mounting seat to a position corresponding to the capping mechanism 550, and the capping mechanism 550 tightens the bottle cap 7 placed on the bottle body 8 to the bottle body 8, thereby completing the full-automatic assembly of the oxygen humidifying bottle.

[0065] Referring to the drawings Figure 7 In the above embodiment, the capping mechanism 550 includes a second vertical movement mechanism 551 and a capping motor 552 arranged on the second vertical movement mechanism 551, and a cap mold 553 is arranged on the power output end of the capping motor 552, used to be sleeved on the bottle cap 7 for screwing. In the embodiment, when the bottle body 8 and the bottle cap 7 are moved to a position corresponding to the capping mechanism 550, the second vertical movement mechanism 551 drives the capping motor 552 to move downward, and the cap mold 553 connected with the capping motor 552 is sleeved on the cap 710. When screwing, the bottle body 8 is fixed relative to the third mounting seat 511 under the limitation of the third mounting seat 511, and the capping motor 552 drives the cap mold 553 to rotate to make the bottle cap 7 rotate relative to the bottle body 8, thereby realizing the tightening of the bottle cap 7 on the bottle body 8. In this embodiment, because the time required for filling and screwing is longer than other processes, two sets of bottle body feeding mechanisms 520, filling mechanisms 530, capping mechanisms 540 and capping mechanisms 550 are provided at the same time, so that two oxygen humidifying bottles can be filled and then screwed at the same time.

[0066] Referring to the drawings Figure 6In the above embodiment, the third rotating disc 510 is also provided with a discharging device 6 near the third rotating disc 510 for taking out the oxygen humidifying bottle which has been assembled on the third rotating disc 510. In the embodiment, the discharging device 6 is composed of a cylinder and a clamping jaw which are arranged near the third rotating disc 510 and extend to the third rotating disc 510, and the two assembled oxygen humidifying bottles are clamped from the two third mounting seats 511, so that the finished product of the oxygen humidifying bottle is discharged.

[0067] In summary, the embodiment provides a full-automatic assembling machine for oxygen humidifying bottle, which realizes automatic assembling of all processes from pre-assembly of the bottle cap to bottle filling, tightening and the like by arranging the first rotating disc 110, the second rotating disc 310 and the third rotating disc 510, and arranging the bottle cap assembling device 1, the rubber plug assembling device 3 and the bottle body assembling device 5 around the rotating discs; realizes automation of pre-assembly of the bottle cap by arranging the upper cap feeding mechanism 120, the inner cap feeding mechanism 130, the breather pipe feeding mechanism 150 and the filter tip feeding mechanism 160 along the rotating direction of the first rotating disc 110; realizes relative fixation between the inner cap 720 and the upper cap 710 by arranging the inner cap fixing mechanism 140; realizes automatic installation of the rubber plugs at the air inlet 711 and the air outlet 712 of the bottle cap 7 by arranging the upper rubber plug feeding mechanism 320 and the side rubber plug feeding mechanism 330 in the rubber plug assembling device 3; realizes automation of all processes from feeding of the bottle body to filling, capping, tightening and the like by arranging the bottle body feeding mechanism 520, the filling mechanism 530, the capping mechanism 540 and the cap tightening mechanism 550 along the rotating direction of the third rotating disc 510; and the embodiment can efficiently and compactly integrate the assembling processes from pre-assembly of the bottle cap to filling, tightening and the like of the bottle body, greatly improves the production efficiency and reduces the production cost.

[0068] The above embodiment is only one of the preferred specific modes of the present application, and the usual changes and replacements made by the technicians within the technical scheme of the present application should be included in the protection scope of the present application.

Claims

1. A fully automatic assembly machine for oxygen humidification bottles, characterized in that: include: A bottle cap assembly device (1) comprises a first turntable (110) for placing bottle caps (7) upside down, the bottle cap assembly device (1) being used to pre-assemble the bottle caps (7) along the rotation direction of the first turntable (110); A bottle cap flipping device (2) and a rubber plug assembly device (3) are arranged near the first turntable (110), the rubber plug assembly device (3) comprising a second turntable (310), the bottle cap flipping device (2) being used to flip the bottle cap (7) from the first turntable (110) and place it on the second turntable (310), and the rubber plug assembly device (3) being used to install rubber plugs at the air inlet (711) and the air outlet (712) of the bottle cap (7); A bottle cap transmission device (4) and a bottle body assembly device (5) are arranged near the second turntable (310), wherein the bottle body assembly device (5) includes a third turntable (510) for placing the bottle body (8), the bottle cap transmission device (4) is used to transmit the bottle cap (7) from the second turntable (310) to a position near the third turntable (510), and the bottle body assembly device (5) is used to fill the bottle body (8) and tighten the bottle cap (7) onto the bottle body (8).

2. The fully automatic assembly machine for oxygen humidification bottles according to claim 1, characterized in that: A plurality of first mounting seats (111) are provided at the edge of the first rotating disk (110), and the bottle cap assembly device (1) comprises: An upper cover loading mechanism (120) is used to place the upper cover (710) of the bottle cap (7) upside down on the first mounting seat (111); An inner cover loading mechanism (130) is used to place the inner cover (720) of the bottle cap (7) onto the inner end surface of the upper cover (710); A vent tube loading mechanism (150) is used to install the vent tube (730) of the bottle cap (7) through the inner cover (720) to the inner end surface of the upper cover (710); The filter tip loading mechanism (160) is used to install the filter tip (740) of the bottle cap (7) onto the end of the ventilation tube (730).

3. The fully automatic assembly machine for oxygen humidification bottles according to claim 2, characterized in that: An inner cover fixing mechanism (140) is further provided between the inner cover feeding mechanism (130) and the vent pipe feeding mechanism (150), and the inner cover fixing mechanism (140) is used to press down the inner cover (720) so that the inner cover (720) and the upper cover (710) are relatively fixed.

4. The fully automatic assembly machine for oxygen humidification bottles according to claim 2, characterized in that: A plurality of second mounting seats (311) are provided at the edge of the second turntable (310), and the bottle cap flipping device (2) is used to flip the inverted bottle cap (7) from the first mounting seat (111) and place it on the second mounting seat (311).

5. The fully automatic assembly machine for oxygen humidification bottles according to claim 4, characterized in that: The bottle cap turning device (2) comprises a first vertical moving mechanism (210) and a rotating mechanism (220) provided on the first vertical moving mechanism (210); the rotating mechanism (220) is connected to a turning plate (230); the turning plate (230) is provided with a first clamping claw (240) for clamping the bottle cap (7); the rotating mechanism (220) drives the turning plate (230) to turn between the first turntable (110) and the second turntable (310).

6. The fully automatic assembly machine for oxygen humidification bottles according to claim 1, characterized in that: The rubber plug assembly device (3) comprises: An upper rubber plug feeding mechanism (320) is used to install the upper rubber plug (750) on the air inlet (711) at the upper end of the bottle cap (7); The side rubber plug feeding mechanism (330) is used to install the side rubber plug (760) at the air outlet (712) at the side end of the bottle cap (7).

7. The fully automatic assembly machine for oxygen humidification bottles according to claim 1, characterized in that: The bottle cap transmission device (4) comprises a bottle cap grabbing mechanism (410) and a bottle cap transmission mechanism (420), wherein the bottle cap grabbing mechanism (410) is used to grab the bottle cap (7) on the second turntable (310) to the bottle cap transmission mechanism (420), and the bottle cap transmission mechanism (420) is used to transmit the bottle cap (7) to a position close to the third turntable (510).

8. The fully automatic assembly machine for oxygen humidification bottles according to any one of claims 1 to 7, characterized in that: A plurality of third mounting seats (511) are provided at the edge of the third rotating disk (510), and the bottle assembly device (5) comprises: A bottle loading mechanism (520) is used to place the bottle (8) on the third mounting seat (511); A filling mechanism (530) is used for filling the bottle (8) with humidifying liquid; a capping mechanism (540) for grabbing the bottle cap (7) from the bottle cap conveying device (4) and mounting it on the bottle body (8); The capping mechanism (550) is used to tighten the bottle cap (7) onto the bottle body (8).

9. The fully automatic assembly machine for oxygen humidification bottles according to claim 8, characterized in that: The capping mechanism (550) comprises a second vertical moving mechanism (551) and a capping motor (552) provided on the second vertical moving mechanism (551). A capping mold (553) is installed at the power output end of the capping motor (552) for being sleeved on the bottle cap (7) for screwing.

10. The fully automatic assembly machine for oxygen humidification bottles according to claim 1, characterized in that: A discharging device (6) is also provided near the third turntable (510) for taking out the oxygen humidification bottles that have been assembled on the third turntable (510).