Conveying bottle sealing structure of medical intelligent logistics system
By designing a sealing structure in the transfer bottle of the medical intelligent logistics system, and using rubber cushioning pads and sealing components, the problem of the lack of sealing in the transfer bottle is solved, achieving efficient waterproof and dustproof effects and rapid installation, thus improving the practicality of item protection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU SINGLE SPARK TECH CO LTD
- Filing Date
- 2025-06-24
- Publication Date
- 2026-05-15
AI Technical Summary
The transfer bottles in existing medical intelligent logistics systems lack a sealing structure, resulting in low waterproof and dustproof capabilities. This makes them unable to effectively protect the cleanliness and integrity of the items inside the transfer bottles, thus reducing their practicality.
A sealing structure comprising a transfer bottle body and a bottle cap was designed. A buffer pad and a transfer bottle belt made of rubber material are used for cushioning and shock absorption. The sealing components consist of a sealing ring, a lip, and a skeleton. Positioning and limiting are achieved through positioning blocks and buckles to ensure sealing and waterproofing.
It improves the sealing and waterproofing of the transfer bottle, protects the cleanliness and integrity of the internal items, reduces vibration damage to the bottle body, and improves installation efficiency and practicality.
Smart Images

Figure CN224242196U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical logistics, specifically a sealing structure for a transfer bottle in a medical intelligent logistics system. Background Technology
[0002] Medical intelligent logistics systems utilize intelligent technologies to automate the transportation of hospital supplies. They efficiently handle the transfer of medicines, specimens, consumables, and other items, improving hospital logistics efficiency and reducing labor costs. These systems include various transport modes. Box-type logistics systems use loaded containers that run on tracks, suitable for transporting larger items. Pneumatic logistics systems use airflow to drive containers through pipes, commonly used for the rapid transport of small items. In pneumatic logistics systems, the core load-bearing component is the pneumatic transfer bottle. As a sealed container, it safely and stably loads small items such as medicines and test specimens, rapidly moving them between different areas of the hospital under the influence of airflow, making it a key component for achieving efficient pneumatic logistics transport.
[0003] Chinese Utility Model Patent Publication No. CN221796223U discloses a pneumatic fluid sample transfer bottle. The specification of this pneumatic fluid sample transfer bottle states that, through the design of the inner shell of the transfer bottle, samples can be placed inside the inner shell. A first telescopic rod and a damping spring can absorb and buffer vibrations caused by collisions during transport of the outer shell of the transfer bottle, protecting the integrity of the samples inside the inner shell and further enhancing the shock absorption effect of the pneumatic fluid sample transfer bottle. However, although this pneumatic fluid sample transfer bottle can transport items, it lacks a sealed structure, resulting in low overall waterproof and dustproof capabilities. This makes it difficult to protect the cleanliness and integrity of the items inside the transfer bottle, leading to poor practicality and hindering its widespread use. Summary of the Invention
[0004] The technical problem to be solved by this utility model is to provide a sealing structure for the transfer bottle of a medical intelligent logistics system. It can effectively solve the problem that although the existing technology can transport items, it does not have a sealing structure, resulting in low overall waterproof and dustproof functions, which makes it difficult to protect the cleanliness and integrity of the items inside the transfer bottle, and thus has poor practicality and is not easy to promote and use.
[0005] The technical solution adopted by this utility model is: a sealing structure for a transfer bottle in a medical intelligent logistics system, including a transfer bottle body and bottle caps at both ends of the transfer bottle body. A positioning block and an insert block are fixedly installed on the side of the bottle caps near the transfer bottle body. A positioning groove is opened at the end of the transfer bottle body near the bottle cap. A fixing block one is fixedly installed on the outer edge of the bottle cap. A buckle is fixedly installed at the end of the fixing block one near the transfer bottle body. A fixing block two is fixedly installed at the end of the transfer bottle body near the bottle cap. A through groove and a slot are opened on the outer wall of the fixing block two. An insert block is fixedly installed on the side of the bottle cap near the transfer bottle body. An installation groove three is opened on the outer wall of the insert block. A sealing component is provided on the inner edge of the installation groove three.
[0006] Preferably, the transfer bottle body has a first mounting groove near the bottle cap, and a transfer bottle belt is provided along the inner edge of the first mounting groove. The bottle cap has a second mounting groove away from the transfer bottle body, and a buffer pad is provided along the inner edge of the second mounting groove. Both the buffer pad and the transfer bottle belt are made of rubber material.
[0007] The above technical solution utilizes a buffer pad and conveyor belt made of rubber material, which have excellent elasticity, good cushioning and shock absorption effect, and can absorb the impact force during the transmission process. It also has a certain degree of water resistance. When the conveyor bottle body is hit, it can play a buffering role, reduce the damage of external impact force to the bottle body, and prevent the contents of the bottle from breaking, leaking or being damaged due to vibration. It is highly practical.
[0008] Preferably, the positioning block is inserted into the positioning slot, and the insertion block is adapted to the body of the transfer bottle.
[0009] With the above technical solution, the staff inserts the insert block into the inside of the transfer bottle body and the positioning block into the inside of the positioning slot, which can realize the rapid positioning of the bottle cap. Without complicated calibration operations, it can ensure the accurate relative position of the mounting part and the mounting base, improve installation efficiency, and reduce labor and time costs.
[0010] Preferably, the buckle and the through slot are plug-in installed, and the buckle and the slot are adapted to each other.
[0011] Through the above technical solution, during the process of quickly positioning the bottle cap, when the buckle comes into contact with the second fixing block, the buckle deforms. When the buckle passes through the through groove, the buckle returns to its original shape, so that the buckle is engaged in the inside of the groove. This can realize the quick positioning of the bottle cap, and it is easy to quickly disassemble and assemble during use or assembly, making it highly practical.
[0012] Preferably, the sealing assembly includes a sealing ring, a first lip, a second lip, a fourth mounting groove, a skeleton, a groove, and an elastic ring. The first lip and the second lip are fixedly installed on the side of the sealing ring away from the insert block. The fourth mounting groove is formed on the inner wall of the sealing ring, and a skeleton is provided on the inner wall of the fourth mounting groove. The second lip is formed on the side near the sealing ring, and an elastic ring is provided on the inner wall of the groove. The cross-section of the combined first and second lips is an inverted "V" shape. Both the first and second lips are made of rubber.
[0013] With the above technical solution, when water is encountered, the first lip first blocks the water, making it less likely to leak out and improving the overall sealing performance. When the water passes through the first lip, the second lip blocks it again, further improving the overall sealing performance. Through the cooperation of the first and second lips, a double sealing effect is achieved, resulting in high sealing performance.
[0014] Preferably, the cross-section of the skeleton is L-shaped, and the cross-section of the elastic ring is ring-shaped.
[0015] Through the above technical solution, the design of the skeleton and elastic ring can reduce the impact force on the seal during a collision, making it less prone to damage, thereby improving the strength and toughness of the seal and making it highly practical.
[0016] Preferably, there are three identical sealing components, which are distributed at equal intervals.
[0017] The above technical solution, through the design of three sealing components, further improves the overall sealing performance, protects the cleanliness and integrity of the internal items, and has high practicality.
[0018] Compared with the prior art, this utility model provides a sealing structure for the transfer bottle of a medical intelligent logistics system, which has the following beneficial effects:
[0019] 1. The sealing structure of the transfer bottle in this medical intelligent logistics system improves the overall sealing performance through the design of sealing components. The design of three sealing components further enhances the overall sealing performance, protecting the cleanliness and integrity of the internal items. It has high practicality. Through the design of the skeleton and elastic ring, it can reduce the impact force in the event of a collision, making it less prone to damage, thereby improving the strength and toughness of the sealing ring. It has high practicality.
[0020] 2. The sealing structure of the transfer bottle in this medical intelligent logistics system uses a rubber-made buffer pad and transfer bottle belt, which have excellent elasticity and shock absorption effect. It can absorb the impact force during the transmission process and also has a certain degree of water resistance. When the transfer bottle body is impacted, it can play a buffering role, reducing the damage to the bottle body from external impact forces and preventing the contents of the bottle from breaking, leaking or being damaged due to vibration. It has high practicality. Through the cooperation of positioning blocks, positioning grooves and inserts with the transfer bottle body, the bottle cap can be quickly positioned. Through the cooperation of buckles, through grooves and slots, the bottle cap can be quickly limited. It is easy to quickly disassemble and assemble during use or assembly, and has high practicality. Attached Figure Description
[0021] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0022] Figure 2 This is a schematic diagram of the disassembled structure of this utility model;
[0023] Figure 3 Schematic diagram of the sealing assembly installation structure of this utility model Figure 1 ;
[0024] Figure 4 Schematic diagram of the sealing assembly installation structure of this utility model Figure 2 ;
[0025] Figure 5 This is a schematic diagram of the bottle cap installation structure of this utility model;
[0026] Figure 6 This utility model Figure 5 Enlarged structural diagram at point A in the middle;
[0027] Figure 7 This is a schematic diagram of the installation structure of the conveyor belt and buffer pad of this utility model.
[0028] The components are as follows: 1. Transfer bottle body; 2. Bottle cap; 3. Mounting slot one; 4. Transfer bottle belt; 5. Mounting slot two; 6. Buffer pad; 7. Positioning block; 8. Positioning slot; 9. Fixing block one; 10. Buckle; 11. Fixing block two; 12. Through groove; 13. Snap groove; 14. Insert block; 15. Mounting slot three; 16. Sealing assembly; 1601. Sealing ring; 1602. Lip one; 1603. Lip two; 1604. Mounting slot four; 1605. Skeleton; 1606. Groove; 1607. Elastic ring. Detailed Implementation
[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0030] Example 1:
[0031] like Figure 1-7 As shown, the present invention provides a sealing structure for a transfer bottle in a medical intelligent logistics system, comprising a transfer bottle body 1 and bottle caps 2 disposed at both ends of the transfer bottle body 1. A positioning block 7 and an insert block 14 are fixedly installed on the side of the bottle cap 2 near the transfer bottle body 1. A positioning groove 8 is provided at the end of the transfer bottle body 1 near the bottle cap 2. A fixing block 9 is fixedly installed on the outer edge of the bottle cap 2. A buckle 10 is fixedly installed on the end of the fixing block 9 near the transfer bottle body 1. A fixing block 11 is fixedly installed on the end of the transfer bottle body 1 near the bottle cap 2. A through groove 12 and a slot 13 are provided on the outer wall of the fixing block 11. An insert block 14 is fixedly installed on the side of the bottle cap 2 near the transfer bottle body 1. An installation groove 15 is provided on the outer wall of the insert block 14. A sealing component 16 is disposed on the inner edge of the installation groove 15.
[0032] Specifically, the transfer bottle body 1 has a mounting groove 3 near the bottle cap 2, and a transfer bottle belt 4 is installed along the inner edge of the mounting groove 3. The bottle cap 2 has a mounting groove 5 away from the transfer bottle body 1, and a buffer pad 6 is installed along the inner edge of the mounting groove 5. Both the buffer pad 6 and the transfer bottle belt 4 are made of rubber. The advantages are that the rubber-made buffer pad 6 and transfer bottle belt 4 have excellent elasticity, good cushioning and shock absorption, and can absorb the impact force during transmission. They also have a certain degree of water resistance. When the transfer bottle body 1 is impacted, they can buffer the impact, reduce damage to the bottle body from external impact forces, and prevent the contents of the bottle from breaking, leaking, or being damaged due to vibration. Therefore, they are highly practical.
[0033] Specifically, the positioning block 7 is inserted into the positioning slot 8, and the insert block 14 is adapted to the transfer bottle body 1. The advantage is that when the operator inserts the insert block 14 into the interior of the transfer bottle body 1 and simultaneously inserts the positioning block 7 into the interior of the positioning slot 8, the bottle cap 2 can be quickly positioned without complicated calibration operations. This ensures the accurate relative position of the mounting parts and the mounting base, improves installation efficiency, and reduces labor and time costs.
[0034] Specifically, the buckle 10 and the through groove 12 are installed by plugging in, and the buckle 10 and the slot 13 are compatible. The advantage is that during the process of quickly positioning the bottle cap 2, when the buckle 10 contacts the fixing block 11, the buckle 10 deforms. When the buckle 10 passes through the through groove 12, the buckle 10 returns to its original shape, so that the buckle 10 is engaged in the interior of the slot 13. This can realize the quick positioning of the bottle cap 2, and it is easy to quickly disassemble and assemble during use or assembly, making it highly practical.
[0035] Example 2:
[0036] like Figure 2-7 As shown, as an improvement on the previous embodiment, in order to further improve the overall sealing performance, the sealing component 16 specifically includes a sealing ring 1601, a first lip 1602, a second lip 1603, a fourth mounting groove 1604, a skeleton 1605, a groove 1606, and an elastic ring 1607. The first lip 1602 and the second lip 1603 are fixedly installed on the side of the sealing ring 1601 away from the insert block 14. The fourth mounting groove 1604 is provided on the inner wall of the sealing ring 1601, and the skeleton 1605 is provided on the inner wall of the fourth mounting groove 1604. The groove 1606 is provided on the side of the second lip 1603 near the sealing ring 1601, and the elastic ring 1607 is provided on the inner wall of the groove 1606. The cross-section of the combination of the first lip 1602 and the second lip 1603 is an inverted "V" shape. Both the first lip 1602 and the second lip 1603 are made of rubber. The advantage is that when water is encountered, lip 1602 first blocks the water, making it less likely to leak out and improving the overall sealing performance. When water passes through lip 1602, lip 2 1603 blocks it again, further improving the overall sealing performance. Through the cooperation of lip 1602 and lip 2 1603, a double sealing effect is achieved, resulting in high sealing performance.
[0037] Specifically, the cross-section of the skeleton 1605 is L-shaped, and the cross-section of the elastic ring 1607 is ring-shaped. The advantage is that the design of the skeleton 1605 and the elastic ring 1607 reduces the impact force during a collision, making it less prone to damage, thereby improving the strength and toughness of the sealing ring 1601 and making it highly practical.
[0038] Specifically, three identical sealing components 16 are provided, and the three sealing components 16 are distributed at equal intervals. The advantage is that the design of three sealing components 16 further improves the overall sealing performance, protects the cleanliness and integrity of the internal items, and has high practicality.
[0039] Working principle: During installation, the operator inserts the insert block 14 into the inside of the transfer bottle body 1 and simultaneously inserts the positioning block 7 into the inside of the positioning groove 8. This enables rapid positioning of the bottle cap 2 without complex calibration operations, ensuring accurate relative positioning between the mounting parts and the mounting base, improving installation efficiency, and reducing labor and time costs. During the rapid positioning of the bottle cap 2, when the latch 10 contacts the fixing block 11, the latch 10 deforms. When the latch 10 penetrates the through groove 12, it returns to its original shape, allowing it to engage with the groove 13, thus achieving rapid positioning of the bottle cap 2. This facilitates quick assembly and disassembly during use or assembly, making it highly practical. In use, when water is encountered, the lip 1602 first blocks the water, preventing leakage and improving overall sealing. When water passes through the lip 1602, the lip 1603 further blocks it. The system further enhances the overall sealing performance. The cooperation of lip 1602 and lip 1603 achieves a double sealing effect, resulting in high sealing performance. The design of the skeleton 1605 and elastic ring 1607 reduces the impact force during collisions, making it less prone to damage. This improves the strength and toughness of the sealing ring 1601, making it highly practical. The design of three sealing components 16 further enhances the overall sealing performance, protecting the cleanliness and integrity of the internal items, also offering high practicality. The buffer pad 6 and conveyor belt 4, made of rubber, have excellent elasticity and shock absorption, absorbing impact forces during transmission. They also possess a certain degree of water resistance. When the conveyor bottle body 1 is impacted, they act as a buffer, reducing damage to the bottle body from external impacts and preventing the internal items from breaking, leaking, or being damaged due to vibration, further enhancing its practicality.
[0040] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A sealing structure for a transfer bottle in a medical intelligent logistics system, comprising a transfer bottle body (1) and bottle caps (2) disposed at both ends of the transfer bottle body (1), characterized in that: A positioning block (7) and an insert block (14) are fixedly installed on the side of the bottle cap (2) near the body of the transfer bottle (1). A positioning groove (8) is provided at one end of the body of the transfer bottle (1) near the bottle cap (2). A fixing block one (9) is fixedly installed on the outer edge of the bottle cap (2). A buckle (10) is fixedly installed at one end of the fixing block one (9) near the body of the transfer bottle (1). A fixing block two (11) is fixedly installed at one end of the body of the transfer bottle (1) near the bottle cap (2). A through groove (12) and a slot (13) are provided on the outer wall of the fixing block two (11). An insert block (14) is fixedly installed on the side of the bottle cap (2) near the body of the transfer bottle (1). An installation groove three (15) is provided on the outer wall of the insert block (14). A sealing component (16) is provided on the inner edge of the installation groove three (15).
2. The sealing structure of the transfer bottle in a medical intelligent logistics system according to claim 1, characterized in that: The transfer bottle body (1) has an installation groove 1 (3) at one end near the bottle cap (2), and a transfer bottle belt (4) is provided on the inner edge of the installation groove 1 (3). The bottle cap (2) has an installation groove 2 (5) on the side away from the transfer bottle body (1), and a buffer pad (6) is provided on the inner edge of the installation groove 2 (5). Both the buffer pad (6) and the transfer bottle belt (4) are made of rubber material.
3. The sealing structure of the transfer bottle in a medical intelligent logistics system according to claim 1, characterized in that: The positioning block (7) is inserted into the positioning groove (8), and the insertion block (14) is adapted to the body of the transfer bottle (1).
4. The sealing structure of the transfer bottle in a medical intelligent logistics system according to claim 1, characterized in that: The buckle (10) and the through groove (12) are installed by plugging in, and the buckle (10) and the groove (13) are compatible.
5. The sealing structure of the transfer bottle in a medical intelligent logistics system according to claim 1, characterized in that: The sealing assembly (16) includes a sealing ring (1601), a first lip (1602), a second lip (1603), a fourth mounting groove (1604), a frame (1605), a groove (1606), and an elastic ring (1607). The first lip (1602) and the second lip (1603) are fixedly installed on the side of the sealing ring (1601) away from the insert block (14). The fourth mounting groove (1604) is provided on the inner wall of the sealing ring (1601). The inner wall of the mounting groove four (1604) is provided with a skeleton (1605), and the side of the second lip (1603) near the sealing ring (1601) is provided with a groove (1606). The inner wall of the groove (1606) is provided with an elastic ring (1607). The cross section of the combination of the first lip (1602) and the second lip (1603) is an inverted "V" shape. Both the first lip (1602) and the second lip (1603) are made of rubber.
6. The sealing structure of the transfer bottle in a medical intelligent logistics system according to claim 5, characterized in that: The cross-section of the skeleton (1605) is L-shaped, and the cross-section of the elastic ring (1607) is ring-shaped.
7. The sealing structure of the transfer bottle in a medical intelligent logistics system according to claim 5, characterized in that: The sealing assembly (16) is provided in three identical parts, and the three sealing assemblies (16) are distributed at equal intervals.