Liquid storage bag

By designing a liquid storage bag with multiple transparent bag parts and movable light-shielding parts, the problems of complex infusion requirements and drugs need to avoid light in the hospital infusion area are solved, and the efficiency and accuracy of infusion work are achieved.

CN222968958UActive Publication Date: 2025-06-13SHANGHAI CAPE OF GOOD HOPE HOSPITAL CO LTD
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Patent Information

Application Number
CN202421844560.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-06-13
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

In the infusion area of ​​the hospital, the patient's infusion needs are complex, the types of drugs are complex, and it needs to be treated without light, which leads to complicated and easy mistakes in the confirmation, administration and replacement of medical staff.

Method used

A liquid storage bag is designed, including a bag body having an inner cavity, and a plurality of transparent bag storage parts are provided on the outer part. Each bag storage part has an upper end opening and an outlet for the infusion device to pass through. The light shielding part is projected on the bag body, and the bag storage part can be blocked by moving the light shielding part to achieve light protection.

Benefits of technology

Through this liquid storage bag, medical staff can place and replace the infusion bags in sequence, which facilitates observation of the infusion condition, avoids the potion being exposed to sunlight, and improves the efficiency and accuracy of infusion work.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a liquid storage bag, and belongs to the technical field of medical auxiliary tools. The problem of how to meet the infusion requirements of some special patients is solved. The liquid storage bag comprises a bag body with an inner cavity, a plurality of bag storage parts are sequentially arranged on the outer side of the bag body, each bag storage part is made of transparent materials, each bag storage part is provided with a bag storage cavity with an opening in the upper end, and an outlet allowing an infusion apparatus to penetrate through is formed in the bottom of each bag storage cavity. A shading part protrudes from the side portion, where the bag storage part is located, of the bag body, the shading part is made of light-proof flexible materials, and the bag storage part can be shaded by moving the shading part so as to achieve light shielding. Infusion bags (bottles) are arranged in sequence before infusion, then the infusion bags (bottles) are placed in the bag storage parts in sequence, follow-up bottle replacing medical workers directly replace infusion according to the sequence, and the infusion requirement of a patient is met conveniently.
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Description

Technical Field

[0001] The utility model belongs to the technical field of medical auxiliary tools, and relates to a storage bag, in particular to a liquid storage bag. Background Art

[0002] The infusion area in a hospital is a very busy but rigorously orderly diagnosis and treatment area. The number of patients and their mobility are huge, and the diseases and treatment needs of patients vary. In particular, a considerable number of patients have a large number of infusion drugs with diverse categories. Different drugs need to be administered in sequence according to different diseases and priorities. Especially, some drugs need to be protected from light, and some critically ill patients require special care from medical staff. Therefore, for medical staff in the hospital infusion area, the confirmation, administration, and replacement of different patients, different drug types, and different drug sequences are complex and extremely prone to errors.

[0003] In short, the above various situations reflect the pain points in various services, work, and management in the current hospital infusion area. To improve the medical experience of patients in the hospital infusion area, and at the same time facilitate the management of the conditions and corresponding drugs of different patients by medical staff in the hospital infusion area, and improve the work efficiency and job satisfaction of medical staff, it is necessary to design an infusion bag (bottle) storage bag that can meet the aforementioned special needs. Summary of the Invention

[0004] The purpose of the utility model is to address the above problems existing in the prior art and propose a liquid storage bag. The technical problem it solves is how to facilitate the infusion needs of some special patients.

[0005] The purpose of the utility model can be achieved by the following technical solutions:

[0006] A liquid storage bag includes a bag body with an inner cavity. It is characterized in that a plurality of storage parts are sequentially arranged on the outer side of the bag body. Each storage part is made of a transparent material. Each storage part has a storage cavity with an upper opening, and the bottom of the storage cavity has an outlet through which an infusion set can pass. A light-shielding part protrudes on the side of the bag body where the storage parts are located. The light-shielding part is made of an opaque flexible material. By moving the light-shielding part, the storage parts can be shielded to achieve light shielding.

[0007] The liquid storage bag of this application includes a bag body. A plurality of storage parts are sequentially arranged on the surface of the bag body. The plurality of storage parts can place a plurality of infusion bags (bottles) in the infusion order. Before infusion, the infusion bags (bottles) are sorted in order and then placed in each storage part in sequence. Subsequently, the medical staff following up on bottle replacement can directly replace the infusion in order, which facilitates the infusion needs of patients.

[0008] The storage bag portion itself is made of a transparent material. This design enables better observation of the infusion situation of the infusion bag (bottle) placed inside the storage bag portion, facilitating observation to meet certain requirements.

[0009] On the side of the bag body of this application, a light-shielding portion protrudes. The light-shielding portion is made of a light-shielding flexible material (which can be a light-shielding fabric or other light-shielding materials). If the patient's medicine cannot be exposed to light, then the light-shielding portion can be pulled to cover the outside of the storage bag portion for light shielding, preventing the infusion bag (bottle) inside the storage bag portion from being irradiated by sunlight. Of course, since the light-shielding portion is made of a flexible material, a part of the light-shielding portion can be lifted to view the situation of the infusion bag (bottle) inside the light-shielding portion. This design facilitates the patient's infusion needs.

[0010] In the above-mentioned liquid storage bag, the bag body is divided into an upper bag body and a lower bag body. The storage bag portions are all located on the side of the lower bag body. The light-shielding portion is located at the joint between the upper bag body and the lower bag body, and the outer contour of the light-shielding portion is the same as the side contour of the lower bag body. The light-shielding portion can cover the side of the lower bag body when flipped downward, and can be stored when flipped upward.

[0011] The bag body of this application is divided into an upper bag body and a lower bag body, and the light-shielding portion is located at the connection position between the upper bag body and the lower bag body. With this design, when the light-shielding portion is flipped downward, the side of the lower bag body can be covered, that is, all the storage bag portions can be covered for light shielding. When there is no need for light shielding, it can be flipped upward to lean against the surface of the upper bag body for storage to avoid blocking the lower bag body and affecting viewing. This design enables this storage bag to switch states according to needs, facilitating the patient's infusion needs.

[0012] In the above-mentioned liquid storage bag, the surface contours of the upper bag body and the lower bag body are the same, and the light-shielding portion, the upper bag body, and the lower bag body are integrally formed.

[0013] The surface contours of the upper bag body and the lower bag body of this application are the same. With this design, when the light-shielding portion is flipped downward, it can cover the side of the lower bag body, and when flipped upward, it can fit against the side of the upper bag body. This design is ingenious and very practical.

[0014] In the above-mentioned liquid storage bag, there is a detachable positioning structure one between the upper bag body and the light-shielding portion, and a detachable positioning structure two between the lower bag body and the light-shielding portion.

[0015] A positioning structure, namely positioning structure one and positioning structure two, is designed between the light-shielding part of this application and the upper bag body and the lower bag body. Through positioning structure one, when the light-shielding part is in contact with the side of the upper bag body, it can be fixed to prevent the position of the light-shielding part from changing and blocking the lower bag body. Similarly, positioning structure two is used to further fix the light-shielding part to the lower bag body when the light-shielding part covers the side of the lower bag body to prevent its position from changing and affecting the light-shielding effect. Such a design is convenient for use during infusion.

[0016] In the above-mentioned liquid storage bag, the positioning structure one is a snap fastener one, and the positioning structure two is a snap fastener two.

[0017] This is one implementation manner of the positioning structure one and the positioning structure two of this application. In this implementation manner, the positioning structure one and the positioning structure two are snap fasteners. The light-shielding part can be quickly disassembled or quickly connected through the snap fasteners to switch the state, and it is very convenient to use.

[0018] In the above-mentioned liquid storage bag, the positioning structure one is a magic tape one, and the positioning structure two is a magic tape two.

[0019] This is another implementation manner of the positioning structure one and the positioning structure two of this application. In this implementation manner, the positioning structure one and the positioning structure two are magic tapes. The light-shielding part can be quickly disassembled or quickly connected through the magic tapes to switch the state, and it is very convenient to use.

[0020] In the above-mentioned liquid storage bag, the upper bag body is an openable bag structure with an inner cavity, and the lower bag body is a solid sheet structure.

[0021] The upper bag body of the bag body of this application is a normal bag structure with an inner cavity where some diagnosis and treatment information can be placed for medical staff to better judge. The lower bag body is a solid structure, which is more convenient for placing infusion bags (bottles) and fixing various electrical components.

[0022] In the above-mentioned liquid storage bag, an encoder is provided above the lower bag body at each liquid storage part, and the encoder sequentially displays the numbers of each liquid storage bag.

[0023] An encoder is directly provided above the liquid storage part of this application, which can directly display the infusion sequence and is very convenient to use.

[0024] In the above-mentioned liquid storage bag, a buzzer-type photoelectric switch is provided on the outer surface of the lower bag body below the bottom opening of the liquid storage cavity for judging the liquid level situation of the infusion set.

[0025] The bottom of the storage bag of the present application is designed with a buzzer-type photoelectric switch, which is a conventional technology and will not be elaborated here too much. It can help patients better monitor the infusion situation in real time, prevent over-infusion, and is very convenient to use.

[0026] In the above-mentioned liquid storage bag, a control power supply component is installed on the side of the lower bag body facing away from the storage bag part for power supply.

[0027] On the back of the other side of the lower bag body, a power supply element, namely a control power supply component, is installed to supply power to the above-mentioned photoelectric switch and encoder. This design is ingenious and very practical.

[0028] Compared with the prior art, the advantages of this product are as follows:

[0029] 1. The liquid storage bag of the present application includes a bag body. A plurality of storage bag parts are sequentially arranged on the surface of the bag body. The plurality of storage bag parts can place a plurality of infusion bags (bottles) in the infusion order. Before infusion, the infusion bags (bottles) are sorted in order and then placed into each storage bag part in sequence. The medical staff following up for bottle replacement can directly replace the infusion in order, which is convenient for the infusion needs of patients.

[0030] 2. A light-shielding part protrudes from the side of the bag body of the present application. The light-shielding part is made of a light-shielding flexible material (which can be light-shielding fabric or other light-shielding materials). If the patient's medicine cannot be exposed to light, the light-shielding part can be pulled to cover the outside of the storage bag part for light shielding, avoiding the infusion bags (bottles) inside the storage bag part from being directly irradiated by sunlight. Of course, since the light-shielding part is made of a flexible material, a part of the light-shielding part can be lifted to check the situation of the infusion bags (bottles) inside the light-shielding part. This design facilitates the infusion needs of patients. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 is a schematic structural diagram of the present utility model;

[0032] Figure 2 is a schematic structural diagram of the present utility model from another angle.

[0033] In the figure, 1. Bag body; 11. Upper bag body; 12. Lower bag body; 2. Storage bag part; 21. Storage cavity; 22. Outlet; 3. Light-shielding part; 4. Positioning structure one; 5. Positioning structure two; 6. Encoder; 7. Buzzer-type photoelectric switch; 8. Control power supply component. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0034] The following are specific embodiments of the present utility model in combination with the drawings. The technical solutions of the present utility model will be further described, but the present utility model is not limited to these embodiments.

[0035] Example 1

[0036] As Figure 1 and Figure 2 shown, a liquid storage bag includes a bag body 1 with an inner cavity. The top of the bag body 1 has two handles for hanging. A plurality of storage bags 2 are sequentially arranged on the outer side of the bag body 1. Each storage bag 2 is made of a transparent material. Each storage bag 2 has a storage bag cavity 21 with an upper opening, and the bottom of the storage bag cavity 21 has an outlet 22 through which an infusion set can pass. A light-shielding part 3 protrudes on the side of the bag body 1 where the storage bags 2 are located. The light-shielding part 3 is made of an opaque flexible material. By moving the light-shielding part 3, the storage bags 2 can be blocked to achieve light avoidance. The liquid storage bag of the present application includes a bag body 1. A plurality of storage bags 2 are sequentially arranged on the surface of the bag body 1 in order. The plurality of storage bags 2 can place a plurality of infusion bags (bottles) in the infusion order. Before infusion, the infusion bags (bottles) are sorted in order and then placed into the respective storage bags 2 in sequence. The medical staff following up on the bottle change can directly replace the infusion in order, which is convenient for the infusion needs of patients. The storage bag 2 itself is made of a transparent material. Such a design can better observe the infusion situation of the infusion bags (bottles) placed in the storage bag 2 and is convenient for observation to meet some requirements. A light-shielding part 3 protrudes on the side of the bag body 1 of the present application. The light-shielding part 3 is made of a light-shielding flexible material, which can be a light-shielding fabric or other light-shielding materials. If the patient's medicine cannot be exposed to light, then the light-shielding part 3 can be pulled to cover the outside of the storage bag 2 to block light and prevent the infusion bags (bottles) inside the storage bag 2 from being irradiated by sunlight. Of course, since the light-shielding part 3 is made of a flexible material, a part of the light-shielding part 3 can be lifted to view the situation of the infusion bags (bottles) inside the light-shielding part 3. Such a design is convenient for the infusion needs of patients.

[0037] Further, the bag body 1 is divided into an upper bag body 11 and a lower bag body 12. The storage bags 2 are all located on the side of the lower bag body 12. The light-shielding part 3 is located at the joint between the upper bag body 11 and the lower bag body 12, and the outer contour of the light-shielding part 3 is the same as the side contour of the lower bag body 12. When the light-shielding part 3 is turned downward, it can block the side of the lower bag body 12, and when the light-shielding part 3 is turned upward, it can be stored. The bag body 1 of the present application is divided into an upper bag body 11 and a lower bag body 12, and the light-shielding part 3 is located at the connection position between the upper bag body 11 and the lower bag body 12. Such a design allows the light-shielding part 3 to be turned downward to block the side of the lower bag body 12, that is, to cover all the storage bags 2 for light-shielding treatment. When there is no light-shielding requirement, it can be turned upward to abut against the surface of the upper bag body 11 for storage to avoid blocking the lower bag body 12 and affecting viewing. Such a design enables the present storage bag to switch states according to needs, which is convenient for the infusion needs of patients.

[0038] Further, the surface profiles of the upper bag body 11 and the lower bag body 12 are the same, and the light-shielding part 3, the upper bag body 11 and the lower bag body 12 are integrally formed. The surface profiles of the upper bag body 11 and the lower bag body 12 of the present application are the same. With such a design, when the light-shielding part 3 is turned downward, the side part of the lower bag body 12 can be blocked, and when it is turned upward, it can fit the side part of the upper bag body 11. Such a design is ingenious and very practical.

[0039] Further, there is a detachable positioning structure I 4 between the upper bag body 11 and the light-shielding part 3, and a detachable positioning structure II 5 between the lower bag body 12 and the light-shielding part 3. Positioning structures, namely positioning structure I 4 and positioning structure II 5, are designed between the light-shielding part 3 and the upper bag body 11 and the lower bag body 12 of the present application. Through the positioning structure I 4, when the light-shielding part 3 abuts against the side part of the upper bag body 11, it can be fixed to prevent the position of the light-shielding part 3 from changing and blocking the lower bag body 12. Similarly, the positioning structure II 5 is to further fix with the lower bag body 12 when the light-shielding part 3 blocks the side part of the lower bag body 12 to prevent its position from changing and affecting the light-shielding effect. Such a design is convenient for use during infusion.

[0040] This is one implementation manner of the positioning structure I 4 and the positioning structure II 5 of the present application. In this implementation manner, the positioning structure I 4 and the positioning structure II 5 are snap fasteners. The light-shielding part 3 can be quickly disassembled or quickly connected through the snap fasteners to switch the state, which is very convenient to use. A female snap is provided on the light-shielding part 3, a male snap is fixed on the upper end side part of the upper bag body 11, and male snaps are also fixed at symmetrical positions on the bottom of the lower bag body 12. The female snap on the light-shielding part 3 is a double-sided female snap, so that the female snap on the light-shielding part 3 can be buckled with any male snap to maintain a fixed connection state, which is very convenient.

[0041] Further, the upper bag body 11 is an openable bag structure with an inner cavity, and the lower bag body 12 is a solid sheet structure. The upper bag body 11 of the bag body 1 of the present application is a normal bag structure with an inner cavity where some diagnosis and treatment information can be placed for medical staff to judge better. The lower bag body 12 is a solid structure, which is more convenient for placing infusion bags (bottles) and fixing various electrical components.

[0042] Further, an encoder 6 is provided above the lower bag body 12 at each storage bag part 2, and the encoder 6 sequentially displays the numbers of each liquid storage bag.

[0043] A more intuitive encoder 6 is directly provided above the storage bag part 2 of the present application. The encoder 6 can directly display the infusion sequence and is very convenient to use. The encoder 6 can also have more functions. For example, it shows red in the state of no bag placed and green when a bag is placed. Such an encoder 6 is an off-the-shelf component and is a relatively common technology in the art, so it will not be elaborated too much here. Integrating it into the present storage bag in the present application can further enrich the functions of the present storage bag to provide more convenient infusion needs for users.

[0044] Further, a buzzer-type photoelectric switch 7 is provided on the outer surface of the lower bag body 12 below the bottom opening of the liquid storage cavity for judging the liquid level condition of the infusion set. The bottom of the storage bag of the present application is designed with a buzzer-type photoelectric switch 7, which is a conventional technology and will not be elaborated here too much. It can help patients better monitor the infusion situation in real time, prevent over-infusion, and is very convenient to use.

[0045] Further, a control power supply component 8 is installed on the side of the lower bag body 12 opposite to the storage bag part 2 for power supply. On the back of the other side of the lower bag body 12, a power supply element, namely the control power supply component 8, is installed to supply power to the above-mentioned photoelectric switch and encoder 6. This design is ingenious and very practical. The control power supply component 8 includes a circuit board and a lithium battery. The circuit board only needs to be able to achieve basic component control. The circuit board part is not the design focus of this case and comes with a control circuit board when purchasing the above components, which is a conventional technology. Therefore, this part will not be elaborated here too much.

[0046] Embodiment 2

[0047] This is another implementation manner of the positioning structure 1 4 and the positioning structure 2 5 of the present application. In this implementation manner, the positioning structure 1 4 and the positioning structure 2 5 are magic tapes. The light-shielding part 3 is quickly disassembled or quickly connected through the magic tapes to switch the state, and it is very convenient to use.

[0048] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation of the present invention. At the same time, the basic principles, main features and advantages of the present invention are shown and described above. Those skilled in the art should understand.

Claims

1. A liquid storage bag, comprising a bag body (1) having an inner cavity, characterized in that: A plurality of bag storage parts (2) are sequentially arranged on the outer side of the bag body (1), each bag storage part (2) is made of a transparent material, each bag storage part (2) has a bag storage cavity (21) with an upper opening, and the bottom of the bag storage cavity (21) has an outlet (22) for an infusion set to pass through, and a shading part (3) is protruding on the side of the bag body (1) where the bag storage part (2) is located, and the shading part (3) is made of a light-proof flexible material, and the bag storage part (2) can be shielded by moving the shading part (3) to achieve light protection.

2. A liquid storage bag according to claim 1, characterized in that: The bag body (1) is divided into an upper bag body (11) and a lower bag body (12); the bag storage part (2) is located on the side of the lower bag body (12); the shading part (3) is located at the joint between the upper bag body (11) and the lower bag body (12); the outer contour of the shading part (3) is the same as the side contour of the lower bag body (12); the shading part (3) can be turned downward to block the side of the lower bag body (12); and the shading part (3) can be turned upward to store.

3. A liquid storage bag according to claim 1, characterized in that: The upper bag body (11) and the lower bag body (12) have the same surface profile, and the light shielding portion (3), the upper bag body (11) and the lower bag body (12) are integrally formed.

4. A liquid storage bag according to claim 1, 2 or 3, characterized in that: A detachable positioning structure (1) (4) is provided between the upper bag body (11) and the light shielding portion (3), and a detachable positioning structure (2) (5) is provided between the lower bag body (12) and the light shielding portion (3).

5. A liquid storage bag according to claim 4, characterized in that: The first positioning structure (4) is a first snap-on buckle, and the second positioning structure (5) is a second snap-on buckle.

6. A liquid storage bag according to claim 4, characterized in that: The first positioning structure (4) is Velcro 1, and the second positioning structure (5) is Velcro 2.

7. A liquid storage bag according to claim 3, characterized in that: The upper bag body (11) is an openable and closable bag structure with an inner cavity, and the lower bag body (12) is a solid sheet structure.

8. A liquid storage bag according to claim 7, characterized in that: The lower bag body (12) is provided with an encoder (6) located above each bag storage portion (2), and the encoder (6) sequentially displays the serial number of each bag storage portion (2).

9. The liquid storage bag according to claim 3, characterized in that: A buzzer-type photoelectric switch (7) is provided on the outer surface of the lower bag body (12) below the bottom outlet (22) of the liquid storage cavity, for judging the liquid level of the infusion device.

10. The liquid storage bag according to claim 3, characterized in that: A control power supply component (8) is installed on the side of the lower bag body (12) facing away from the bag storage portion (2) for supplying power.