A medicine bottle silica gel hose head for animals

By introducing metering tubes, sealing components, and valve components into animal medicine bottles, the problem of difficult drug dosage control has been solved, enabling quantitative drug delivery, improving treatment efficacy, and simplifying operation procedures.

CN117401300BActive Publication Date: 2025-12-05KONSKA PHARM TECH (HANGZHOU) CO LTD
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Patent Information

Application Number
CN202311347583.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-17
Publication Date
2025-12-05
Estimated Expiration
2043-10-17

AI Technical Summary

Technical Problem

Existing animal medication bottles do not allow for monitoring of the dosage when dispensing medication, leading to either too much or too little medication, which affects the treatment effect.

Method used

A silicone tubing head for animal medicine bottles was designed, comprising a metering tube, a sealing component, and a valve component. This design enables quantitative control of the drug dosage and quantitative delivery of the drug through the sealing component and the pusher component.

Benefits of technology

It enables quantitative delivery of medication, improves treatment outcomes in animals, reduces operational steps, and makes it easier for staff to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the field of medicine bottles, and relates to an animal medicine bottle silica gel hose head, which comprises a medicine bottle, the top of the medicine bottle is threadedly connected with a bottle cap, an outlet hole is arranged on the end face of the bottle cap, a fixed connection of a dosing tube which is in communication with the outlet hole is arranged on the end face of the bottle cap, a silica gel hose head is fixedly connected to the end of the dosing tube away from the bottle cap, and the dosing tube and the silica gel hose head are mutually penetrated; a plugging component for closing the outlet hole is arranged on the bottle cap, and a valve component for closing the inlet of the silica gel hose head is arranged in the dosing tube. The application improves the poor treatment effect of animals.
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Description

Technical Field

[0001] This application relates to the field of medicine bottles, and more particularly to a silicone tubing head for animal medicine bottles. Background Technology

[0002] Currently, when treating an animal's ear, the medication is placed in a bottle with a cone-shaped tip at the top. The cone-shaped tip is inserted into the animal's ear canal to drip the medication into the ear.

[0003] In related technologies, the silicone tube head for animal medicine bottles includes a medicine bottle with a cap threaded to the opening at the top. A dispensing hole is provided on the end face of the cap, and a dispensing tube, communicating with the dispensing hole, is fixedly connected to the end face of the cap. The dispensing tube is conical, with its diameter gradually increasing from the end furthest from the cap to the end closest to the cap. The medicine in the bottle is squeezed out through the dispensing hole and the dispensing tube. A silicone tube head is fitted onto the dispensing tube. The silicone tube head is also conical, with its diameter gradually increasing from the end furthest from the cap to the end closest to the cap. The silicone tube head can be inserted into the animal's ear canal, allowing the medicine to drip into the animal's ear.

[0004] Regarding the aforementioned technologies, during the drug extrusion process, the amount of drug extruded cannot be observed from the outside by the staff. If the drug dosage is too high, it may cause discomfort to the animal; if the drug dosage is too low, the treatment effect on the animal will be poor. Summary of the Invention

[0005] To improve the poor treatment outcomes in animals, this application provides a silicone tubing head for animal medicine bottles.

[0006] The technical solution provided in this application for a silicone tubular head for animal medicine bottles is as follows:

[0007] A silicone flexible tube head for animal medicine bottles includes a medicine bottle with a cap threaded to its top. A dispensing hole is formed on the end face of the cap. A metering tube communicating with the dispensing hole is fixedly connected to the end face of the cap. A silicone flexible tube head is fixedly connected to the end of the metering tube away from the cap, and the metering tube and the silicone flexible tube head communicate with each other. A sealing component for closing the dispensing hole is installed on the cap, and a valve component for closing the inlet of the silicone flexible tube head is installed in the metering tube.

[0008] By adopting the above technical solution, when it is necessary to administer medication to animals, the sealing component is first opened, and then the medication in the bottle is squeezed into the metering tube through the dispensing hole. When the metering tube is full, the sealing component is closed, and then the valve component is opened, allowing the medication in the metering tube to enter the silicone tube head, which is then dripped into the animal's ear, thus improving the problem of poor treatment results in animals.

[0009] Preferably, the bottom of the medicine bottle is open, and a sealing plate for sealing the bottom of the medicine bottle is horizontally arranged inside the medicine bottle. The outer peripheral surface of the sealing plate is in contact with the inner wall of the medicine bottle, and the sealing plate can slide in the medicine bottle. A pusher component for pushing the sealing plate is installed at the bottom of the medicine bottle.

[0010] By adopting the above technical solution, the sealing component is opened, the pushing component can push the sealing plate to move, and the sealing plate can drive the medicine in the medicine bottle to move, so that the medicine bottle is squeezed into the metering tube through the medicine outlet, which is convenient for the staff to operate.

[0011] Preferably, the feeding component includes a feeding cap installed at the bottom of the medicine bottle and a feeding spring fixedly connected to the inner wall of the feeding cap; the end of the feeding spring away from the feeding cap abuts against a sealing plate.

[0012] By adopting the above technical solution, the pusher spring is compressed during the process of sealing the medicine outlet by the sealing component. When the sealing component is opened, the pusher spring can push the sealing plate to move, reducing the number of operation steps for the staff.

[0013] Preferably, the sealing component includes a rotating shaft rotatably mounted on the inner wall of the dispensing hole, a sealing plate fixedly connected to the rotating shaft, and a sealing spring fixedly connected to the sealing plate; the sealing plate fits into the dispensing hole, the end of the sealing spring away from the sealing plate is fixedly connected to the inner wall of the dispensing hole, and a locking component for locking the sealing plate is installed on the bottle cap.

[0014] By adopting the above technical solution, when the medicine in the metering tube is used up, the locking component releases the locking of the sealing plate. At this time, there is a liquid level difference between the metering tube and the medicine bottle. The push spring can push the sealing plate to move, and at the same time, the medicine will exert a force on the sealing plate, causing the sealing plate to flip and compress the sealing spring, so that the medicine enters the metering tube. When the medicine in the metering tube is full, the liquid level difference between the metering tube and the medicine bottle disappears, and the sealing spring can drive the sealing plate to flip, so that the sealing plate closes the medicine outlet. At the same time, the locking component locks the sealing plate. When the valve component is opened, the medicine in the medicine bottle will not enter the metering tube, thus allowing for metered dripping of medicine to animals.

[0015] Preferably, an installation groove is provided on the inner wall of the dispensing hole, and the locking component includes a locking spring fixedly connected to the inner wall of the installation groove and a locking block placed in the installation groove; the locking spring is fixedly connected to the locking block, a locking groove for inserting the locking block is provided on the side wall of the sealing plate, a locking inclined surface is formed on the end of the locking block facing the sealing plate, the locking inclined surface can contact the side of the sealing plate, and a control component for controlling the locking block to be pulled out of the locking groove is installed in the metering tube.

[0016] By adopting the above technical solution, during the dripping process on animals, when the medication in the metering tube is completely depleted, the control component can control the locking block to be pulled out of the locking groove, releasing the locking block from the sealing plate. The medication can then enter the metering tube from the medicine bottle. When the metering tube is full of medication, the sealing spring can drive the sealing plate to flip. When the sealing plate contacts the locking inclined surface, the sealing plate pushes the locking block to move. At this time, the locking spring is compressed. When the locking block is opposite to the locking groove, the locking spring pushes the locking block to be inserted into the locking groove, and the locking block locks the sealing plate again. No operator intervention is required.

[0017] Preferably, the control component includes a guide rod fixedly connected to the end face of the bottle cap and a float sleeved on the guide rod. The end face of the bottle cap has a connecting groove that communicates with the mounting groove. A connecting rod is placed in the connecting groove. One end of the connecting rod can contact the float, and the other end of the connecting rod is inserted into the mounting groove. The side wall of the locking block has an insertion groove for the connecting rod to be inserted. An insertion slope is formed on the inner wall of the insertion groove near the locking spring. The insertion slope can contact the side of the connecting rod.

[0018] By adopting the above technical solution, as the medicine in the metering tube gradually disappears, the float gradually descends. When the float contacts the connecting rod, the float moves the connecting rod by its own weight. The connecting rod pushes the locking block through the inclined plate, causing the locking block to be pulled out of the locking groove without the need for operator intervention. When the medicine enters the metering tube, the float gradually rises due to the buoyancy of the medicine, and the float separates from the connecting rod, releasing the limiting effect of the connecting rod on the locking block.

[0019] Preferably, the metering tube includes a first metering tube fixedly connected to the bottle cap and a second metering tube fixedly connected to the silicone tube head, wherein the first metering tube and the second metering tube are fixedly connected by a corrugated tube.

[0020] By adopting the above technical solution, the second quantitative tube is moved, and the second quantitative tube drives the corrugated tube to extend and retract, thereby adjusting the volume of the quantitative tube and increasing the applicable range of the quantitative tube.

[0021] Preferably, the valve component includes an operating shaft rotatably mounted on the inner wall of the metering tube and a raft plate fixedly connected to the operating shaft; the operating shaft extends to the outside of the metering tube, and the raft plate is capable of sealing the inlet of the silicone tubing head.

[0022] By adopting the above technical solution, the operating shaft is rotated, which in turn drives the raft plate to rotate, thereby releasing the raft plate from the silicone hose inlet, allowing the medicine to enter the silicone hose head, which is convenient for operators to carry out operations.

[0023] Preferably, the push cap is fitted onto the medicine bottle, the inner circumferential surface of the push cap is provided with an internal thread, and the outer circumferential surface of the bottom of the medicine bottle is provided with an external thread that cooperates with the internal thread.

[0024] By adopting the above technical solution, the pusher cover can be installed and disassembled by rotating it, which is convenient for staff to operate.

[0025] Preferably, a limiting ring is fixedly connected to the inner wall at the bottom of the medicine bottle.

[0026] By adopting the above technical solution, the limiting ring limits the sealing plate, reducing the occurrence of the sealing plate detaching from the medicine bottle.

[0027] In summary, this application includes at least one of the following beneficial technical effects:

[0028] 1. This application, by setting up a metering tube, a sealing component, and a valve component, allows the following procedure when medication needs to be administered to an animal: first, the sealing component is opened, and then the medication in the medicine bottle is squeezed into the metering tube through the dispensing hole. When the metering tube is full, the sealing component is closed, and then the valve component is opened, allowing the medication in the metering tube to enter the silicone tubing head, which is then dripped into the animal's ear, thus improving the problem of poor treatment results in animals.

[0029] 2. This application opens the sealing component by setting a sealing plate and a pushing component. The pushing component can push the sealing plate to move, and the sealing plate can drive the medicine in the medicine bottle to move, so that the medicine bottle is squeezed into the metering tube through the medicine outlet, which is convenient for the staff to operate.

[0030] 3. By setting a pusher cover and a pusher spring, the pusher spring is compressed during the process of the sealing component sealing the medicine outlet. When the sealing component is opened, the pusher spring can push the sealing plate to move, reducing the number of operation steps for the staff. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of the overall structure of the silicone tubing head of the animal medicine bottle according to an embodiment of this application.

[0032] Figure 2 This is a cross-sectional structural diagram of a medicine bottle according to an embodiment of this application.

[0033] Figure 3 This is a schematic diagram of the structure of the quantitative tube according to an embodiment of this application.

[0034] Figure 4 This is a schematic diagram of the pusher component in an embodiment of this application.

[0035] Figure 5 This is a schematic diagram of the sealing component according to an embodiment of this application.

[0036] Explanation of reference numerals in the attached drawings: 1. Medicine bottle; 11. Bottle cap; 111. Medicine outlet; 112. Mounting groove; 113. Connecting groove; 12. Silicone hose head; 13. Sealing plate; 14. Limiting ring; 15. External thread; 2. Metering tube; 21. First metering tube; 22. Second metering tube; 23. Corrugated tube; 3. Sealing component; 31. Rotating shaft; 32. Sealing plate; 321. Locking groove; 33. Sealing spring; 4. Valve component; 41. Operating shaft; 42. Raft plate; 5. Pushing component; 51. Pushing cover; 511. Internal thread; 52. Pushing spring; 6. Locking component; 61. Locking spring; 62. Locking block; 621. Locking ramp; 622. Insertion groove; 623. Insertion ramp; 7. Control component; 71. Guide rod; 72. Float; 73. Connecting rod. Detailed Implementation

[0037] The following is in conjunction with the appendix Figure 1-5 This application will be described in further detail.

[0038] This application discloses a silicone tubing head for animal medicine bottles. (See also...) Figure 1 and Figure 2 The animal medicine bottle silicone tube head includes a medicine bottle 1, a metering tube 2, a sealing component 3, a valve component 4, and a feeding component 5. The top of the medicine bottle 1 is threaded with a cap 11, and a medicine outlet 111 is opened on the end face of the cap 11. A silicone tube head 12 is provided on the cap 11. The bottom of the medicine bottle 1 is open. A sealing plate 13 is horizontally arranged inside the medicine bottle 1. The sealing plate 13 can seal the bottom of the medicine bottle 1. A limiting ring 14 is fixedly connected to the inner wall of the bottom of the medicine bottle 1. The limiting ring 14 limits the sealing plate 13 and reduces the occurrence of the sealing plate 13 detaching from the medicine bottle 1. The metering tube 2 is located between the cap 11 and the silicone tube head 12 and can connect the cap 11 and the silicone tube head 12. The medicine in the medicine bottle 1 first enters the metering tube 2 through the medicine outlet 111 to meter the medicine entering the animal's ear, and then enters the silicone tube head 12, and finally enters the animal's ear.

[0039] Reference Figure 2 and Figure 3 The metering tube 2 includes a first metering tube 21, a second metering tube 22, and a corrugated tube 23. The first metering tube 21 is fixedly connected to the top of the bottle cap 11 and communicates with the dispensing hole 111. A sealing component 3 is installed on the bottle cap 11 and can seal the dispensing hole 111. When the sealing component 3 is opened, the medicine in the medicine bottle 1 can enter the first metering tube 21 through the dispensing hole 111. The second metering tube 22 is fixedly connected to the end of the silicone tube head 12 facing the medicine bottle 1 and communicates with the silicone tube head 12. The valve component 4 is installed in the second metering tube 22 and can seal the inlet of the silicone tube head 12. When the valve component 4 is opened, the medicine in the second metering tube 22 can enter the silicone tube head 12. The corrugated tube 23 is placed between the first metering tube 21 and the second metering tube 22. The two ends of the corrugated tube 23 are fixedly connected to the first metering tube 21 and the second metering tube 22 respectively. The corrugated tube 23 can expand and contract, thereby adjusting the volume of the metering tube 2 and increasing the applicable range of the metering tube 2.

[0040] Reference Figure 2 and Figure 4 The pusher component 5 is installed at the bottom of the medicine bottle 1. The pusher component 5 includes a pusher cover 51 and a pusher spring 52. The pusher cover 51 is sleeved on the bottom of the medicine bottle 1. The inner circumferential surface of the pusher cover 51 is provided with an internal thread 511, and the outer circumferential surface of the bottom of the medicine bottle 1 is provided with an external thread 15. The external thread 15 and the internal thread 511 are used in conjunction to facilitate the installation and removal of the pusher cover 51. The pusher spring 52 is fixedly connected to the inner wall of the pusher cover 51. The end of the pusher spring 52 away from the pusher cover 51 abuts against the sealing plate 13. The pusher spring 52 is in a compressed state. When the sealing component 3 is opened, the pusher spring 52 can push the sealing plate 13 to move. The sealing plate 13 can drive the medicine in the medicine bottle 1 to move, so that the medicine bottle 1 is squeezed into the metering tube 2 through the medicine outlet 111, which is convenient for the staff to operate.

[0041] Reference Figure 3 The valve component 4 includes an operating shaft 41 and a raft plate 42. The operating shaft 41 is rotatably mounted on the inner wall of the metering tube 2 and extends to the outer side of the metering tube 2. The raft plate 42 is sleeved on the operating shaft 41 and is fixedly connected to the operating shaft 41. The shape of the raft plate 42 is the same as the shape of the inlet of the silicone hose head 12. The raft plate 42 closes the inlet of the silicone hose head 12. When the operating shaft 41 is rotated, the operating shaft 41 drives the raft plate 42 to rotate, thereby releasing the raft plate 42 from closing the inlet of the silicone hose head 12.

[0042] Reference Figure 3 and Figure 5The sealing component 3 includes a rotating shaft 31, a sealing plate 32, and a sealing spring 33. The rotating shaft 31 is rotatably mounted on the inner wall of the dispensing hole 111. The sealing plate 32 is sleeved on the rotating shaft 31 and fixedly connected to it. The shape of the sealing plate 32 is the same as that of the dispensing hole 111, and the sealing plate 32 can seal the dispensing hole 111. A locking component 6 is installed on the bottle cap 11, which can lock the sealing plate 32. When the medicine in the metering tube 2 is used up, the locking component 6 is released from locking the sealing plate 32. At this time, there is a liquid level difference between the metering tube 2 and the medicine bottle 1, and the push spring 5... 2. Push the sealing plate 13 to move, and at the same time, the medicine will exert a force on the sealing plate 32, causing the sealing plate 32 to flip and the medicine to enter the metering tube 2; the sealing spring 33 is fixedly connected to the side wall of the sealing plate 32, and the end of the sealing spring 33 away from the sealing plate 32 is fixedly connected to the inner wall of the medicine outlet 111. The sealing spring 33 is compressed. When the medicine in the metering tube 2 is full, the liquid level difference between the metering tube 2 and the medicine bottle 1 disappears, and the sealing spring 33 can drive the sealing plate 32 to flip, so that the sealing plate 32 seals the medicine outlet 111. At the same time, the locking component 6 locks the sealing plate 32.

[0043] Reference Figure 3 and Figure 5 A horizontal mounting groove 112 is provided on the inner wall of the medicine outlet 111. The locking component 6 includes a locking spring 61 and a locking block 62. The locking spring 61 is fixedly connected to the inner wall of the mounting groove 112. The locking block 62 is placed horizontally in the mounting groove 112 and is fixedly connected to the locking spring 61. A locking groove 321 is provided on the side wall of the sealing plate 32. The locking block 62 can be inserted into the locking groove 321. A locking inclined surface 621 is formed on the end of the locking block 62 facing the sealing plate 32. The locking inclined surface 621 is inclined upward. During the process of the sealing spring 33 driving the sealing plate 32 to flip, the sealing plate 32 first contacts the locking inclined surface 621 and then pushes the locking block 62 to move. At this time, the locking spring 61 is compressed. When the locking block 62 is opposite to the locking groove 321, the locking spring 61 pushes the locking block 62 to insert into the locking groove 321, and the locking block 62 locks the sealing plate 32.

[0044] Reference Figure 3 and Figure 5The top of the bottle cap 11 has a vertically extending connecting groove 113 that communicates with the mounting groove 112. A control component 7 is installed in the metering tube 2. The control component 7 includes a guide rod 71, a float 72, and a connecting rod 73. The guide rod 71 is vertically placed in the metering tube 2 and is a telescopic rod. One end of the guide rod 71 is fixedly connected to the top of the bottle cap 11, and the other end is fixedly connected to the inner wall of the metering tube 2. The float 72 is fitted onto the guide rod 71 and can slide vertically. When the medication in the metering tube 2 gradually disappears, the float 72 gradually descends. When the medication enters the metering tube 2, the float 72 gradually rises due to the buoyancy of the medication. The connecting rod 73 is vertically placed in the connecting... In groove 113, the top of connecting rod 73 can contact float 72, and the bottom of connecting rod 73 is inserted into mounting groove 112. The top of locking block 62 is provided with insertion groove 622. Insertion slope 623 is formed on the inner wall of insertion groove 622 near locking spring 61. Insertion slope 623 is inclined upward. When float 72 descends, float 72 drives connecting rod 73 to move by its own weight. Connecting rod 73 pushes locking block 62 through insertion slope 623, so that locking block 62 is pulled out from locking groove 321 without the need for operation by personnel. When the medicine enters metering tube 2, float 72 gradually rises and float 72 separates from connecting rod 73.

[0045] The implementation principle of the silicone flexible tube head for animal medicine bottles in this embodiment is as follows: When it is necessary to administer medication to an animal, the metering tube 2 is already full of medication. First, the silicone flexible tube head 12 is positioned downwards, and the operating shaft 41 is rotated. The operating shaft 41 drives the raft plate 42 to rotate, releasing the raft plate 42 from sealing the inlet of the silicone flexible tube head 12. The medication is then gradually dripped into the animal's ear through the silicone flexible tube head 12, at which point the medication in the metering tube 2 gradually disappears. After the medication in the metering tube 2 has been completely administered, the operating shaft 41 is moved forward... The operating shaft 41 drives the raft plate 42 to rotate, causing the raft plate 42 to seal the inlet of the silicone tube head 12 and set the silicone tube head 12 upward. The float 72 moves downward under its own weight. When the float 72 contacts the connecting rod 73, the float 72 drives the connecting rod 73 to move. The connecting rod 73 pushes the locking block 62 through the insertion inclined surface 623, compressing the locking spring 61, so that the locking block 62 is pulled out of the locking groove 321. Since there is liquid between the metering tube 2 and the medicine bottle 1 at this time... The difference in level causes the pusher spring 52 to move the sealing plate 13, while the medication exerts a force on the sealing plate 32, causing it to flip and compress the sealing spring 33. The medication gradually enters the metering tube 2, and the float 72 rises gradually due to the buoyancy of the medication. The float 72 separates from the connecting rod 73, releasing the limiting effect of the connecting rod 73 on the locking block 62. When the metering tube 2 is full of medication, the level difference between the metering tube 2 and the medicine bottle 1 disappears, and the sealing spring 33 can then drive the sealing plate 32 to move further. When the sealing plate 32 is flipped over and comes into contact with the locking ramp 621, the sealing plate 32 pushes the locking block 62 to move. At this time, the locking spring 61 is compressed. When the locking block 62 is opposite to the locking groove 321, the locking spring 61 pushes the locking block 62 to insert into the locking groove 321. The locking block 62 locks the sealing plate 32 again, so that the sealing plate 32 closes the medicine outlet 111. When the valve component 4 is opened again, the medicine in the medicine bottle 1 will not enter the metering tube 2, thus allowing for metered dripping of medicine to the animal.

[0046] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A silicone tube head for an animal medicine bottle, comprising a medicine bottle (1), wherein a cap (11) is threadedly connected to the top of the medicine bottle (1), and a dispensing hole (111) is provided on the end face of the cap (11), characterized in that: A metering tube (2) communicating with the dispensing hole (111) is fixedly connected to the end face of the bottle cap (11). A silicone tube head (12) is fixedly connected to the end of the metering tube (2) away from the bottle cap (11). The metering tube (2) and the silicone tube head (12) are interconnected. A sealing component (3) for sealing the dispensing hole (111) is installed on the bottle cap (11). A valve for sealing the inlet of the silicone tube head (12) is installed in the metering tube (2). Component (4), the bottom of the medicine bottle (1) is open, and a sealing plate (13) for sealing the bottom of the medicine bottle (1) is horizontally arranged inside the medicine bottle (1). The outer peripheral surface of the sealing plate (13) is in contact with the inner wall of the medicine bottle (1). The sealing plate (13) can slide in the medicine bottle (1). A pushing component (5) for pushing the sealing plate (13) to move is installed at the bottom of the medicine bottle (1). The pushing component (5) includes a pusher installed at the bottom of the medicine bottle (1). The material cover (51) and the push spring (52) fixedly connected to the inner wall of the push cover (51); the end of the push spring (52) away from the push cover (51) abuts against the sealing plate (13); the sealing component (3) includes a rotating shaft (31) rotatably mounted on the inner wall of the medicine outlet (111), a sealing plate (32) fixedly connected to the rotating shaft (31), and a sealing spring (33) fixedly connected to the sealing plate (32); the sealing plate (32) and the medicine outlet (111) are connected to the sealing plate (13). The sealing spring (33) is fixedly connected to the inner wall of the medicine outlet (111) at one end away from the sealing plate (32). The bottle cap (11) is equipped with a locking component (6) for locking the sealing plate (32). The inner wall of the medicine outlet (111) is provided with an installation groove (112). The locking component (6) includes a locking spring (61) fixedly connected to the inner wall of the installation groove (112) and a locking block (62) placed in the installation groove (112).The locking spring (61) is fixedly connected to the locking block (62). A locking groove (321) for inserting the locking block (62) is provided on the side wall of the sealing plate (32). A locking inclined surface (621) is formed at one end of the locking block (62) facing the sealing plate (32). The locking inclined surface (621) can contact the side of the sealing plate (32). A control component (7) for controlling the locking block (62) to be pulled out of the locking groove (321) is installed in the metering tube (2). The control component (7) includes a guide rod (71) fixedly connected to the end face of the bottle cap (11) and a float sleeved on the guide rod (71). 72) A connecting groove (113) communicating with the mounting groove (112) is provided on the end face of the bottle cap (11). A connecting rod (73) is placed in the connecting groove (113). One end of the connecting rod (73) can contact the float (72), and the other end of the connecting rod (73) is inserted into the mounting groove (112). A insertion groove (622) for inserting the connecting rod (73) is provided on the side wall of the locking block (62). An insertion inclined surface (623) is formed on the inner wall of the insertion groove (622) near the locking spring (61). The insertion inclined surface (623) can contact the side of the connecting rod (73).

2. The silicone tubing head for animal medicine bottles according to claim 1, characterized in that: The metering tube (2) includes a first metering tube (21) fixedly connected to the bottle cap (11) and a second metering tube (22) fixedly connected to the silicone tube head (12). The first metering tube (21) and the second metering tube (22) are fixedly connected by a corrugated tube (23).

3. The silicone tubing head for animal medicine bottles according to claim 1, characterized in that: The valve component (4) includes an operating shaft (41) rotatably mounted on the inner wall of the metering tube (2) and a raft plate (42) fixedly connected to the operating shaft (41); the operating shaft (41) extends to the outside of the metering tube (2), and the raft plate (42) is capable of sealing the inlet of the silicone tube head (12).

4. The silicone tubing head for animal medicine bottles according to claim 1, characterized in that: The pusher cap (51) is fitted onto the medicine bottle (1). The inner circumferential surface of the pusher cap (51) is provided with an internal thread (511), and the outer circumferential surface of the bottom of the medicine bottle (1) is provided with an external thread (15) that cooperates with the internal thread (511).

5. The silicone tubing head for animal medicine bottles according to claim 1, characterized in that: A limiting ring (14) is fixedly connected to the inner wall at the bottom of the medicine bottle (1).

Citation Information

Patent Citations

  • Multi-bin medicine bottle and installation and use method thereof

    CN108657600A

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