Pressurizing bag storage and integration assembly

By designing the integrated components of the pressurized bag storage, the problem of inconvenient storage of the pressurized bag is solved, and efficient and convenient storage and operation of electronic inflatable pumps and pressurized bags is achieved, improving the efficiency of use and portability.

CN223275735UActive Publication Date: 2025-08-29HANGZHOU FIRST PEOPLES HOSPITAL
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Patent Information

Application Number
CN202421282521.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-05
Publication Date
2025-08-29
Estimated Expiration
2034-06-05

AI Technical Summary

Technical Problem

During the use of existing pressurized bags, the storage of electronic inflatable pumps and pressurized bags is inconvenient, resulting in inconvenient portability and operation. The existing equipment lacks regular storage containers, which affects the use efficiency.

Method used

A pressurized bag storage integrated component is designed, including a storage box, an electronic inflation pump and a pressurized bag. The storage box is equipped with a pump slot, a bag slot, a collector and a partition slot. The electronic inflation pump and a pressurized bag are stored regularly through snaps and drawers. Combined with a power bank and a multi-function valve, it can achieve efficient operation and portability.

Benefits of technology

It realizes regular storage of electronic inflatable pumps and pressurized bags, improves operating efficiency, simplifies the use process, avoids insufficient power and gas return, reduces space, and is easy to carry and search.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a pressurizing bag containing and integrating assembly which comprises a containing box, an electronic inflator pump and a plurality of pressurizing bags, and a pump pipe of the electronic inflator pump is connected with a bag pipe of the pressurizing bags, so that the electronic inflator pump can inject air into the pressurizing bags. The storage box is provided with a pump containing groove and a bag containing groove, the pump containing groove is used for clamping the electronic inflator pump, and the bag containing groove is used for clamping the multiple stacked pressurizing bags. And the storage box can be used for regularly storing related articles of the electronic inflator pump and the pressurizing bag, so that carrying and rummaging are convenient.
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Description

Technical Field

[0001] The utility model relates to a medical appliance, in particular to a pressurized bag storage and integration component. Background Art

[0002] Infusion pressure bags are mainly used for rapid pressurized infusion during blood transfusion and infusion, to help bagged liquids such as medicine, plasma, and cardioplegia solution enter the human body as quickly as possible. They are essential items for clinical emergency treatment. They can pressurize and flush the built-in arterial pressure measuring tube to keep the pipeline unobstructed and prevent thrombosis. They are used in various interventional diagnosis and treatment procedures, such as radiofrequency ablation of atrial fibrillation and continuous pipeline pressure flushing during interventional diagnosis and treatment in neurology.

[0003] Traditional method of using a pressurized bag: first place the plasma bag / medicine bag into the interlayer of the pressurized bag and hang it on the hook of the infusion stand; then, squeeze the inflated balloon to inject gas into the pressurized bag, control the amount of gas in the pressurized bag, and adjust the infusion speed; after the infusion is completed, open the vent valve to release the gas from the pressurized bag.

[0004] Traditionally, pressurized bag inflation is a manual process that is time-consuming and labor-intensive. As fatigue increases, manual squeezing efficiency gradually decreases. While existing electronic air pumps can be used to inflate pressurized bags, saving time and effort, there are currently no dedicated containers for storing electronic air pumps and multiple pressurized bags in an organized manner, making them inconvenient to carry and locate.

[0005] Therefore, how to design a storage box that can store electronic air pumps and pressurized bags and related items in an orderly manner has become an urgent problem to be solved in the field of medical devices. Utility Model Content

[0006] The purpose of the utility model is to provide a pressurized bag storage integration component. The storage box can regularly store the electronic air pump and pressurized bag related items, which is convenient for carrying and searching.

[0007] In order to achieve the above-mentioned purpose of the invention, the present invention adopts the following technical solutions:

[0008] A pressurized bag storage assembly includes a storage box, an electronic air pump, and several pressurized bags. The electronic pump tube is connected to the pressurized bag tubes, allowing the electronic pump to inflate the bags. The storage box has a pump slot for mounting the electronic air pump and a bag slot for mounting the stacked pressurized bags.

[0009] Compared with the prior art, the pressurized bag storage integration component using the above technical solution has the following advantages:

[0010] Beneficial effects:

[0011] First, with this new pressurized bag storage and integration assembly, the pump slot conforms to the shape of the electronic air pump, allowing the electronic air pump to snap into place. The bag slot conforms to the shape of the pressurized bag, allowing multiple pressurized bags to be stacked and snapped into place. The pump and bag slots allow the electronic air pump and multiple pressurized bags to be neatly stored within the storage box, making them easy to carry and retrieve.

[0012] 2. In the preferred solution, the electronic air pump can simultaneously inflate multiple pressurized bags through a collector, which greatly improves work efficiency; a one-way valve prevents gas backflow; a single pressurized bag can be deflated through a three-way valve without affecting the operation of other pressurized bags; the electronic air pump battery can be charged at any time through a power bank to avoid the electronic air pump being unable to start due to insufficient power.

[0013] Preferably, the present invention further includes a manifold having a main port and several branch ports, the main port being connected to the branch ports, each of which is equipped with a shutoff valve for opening and closing the branch ports. The electronic air pump tube is connected to the main port, and the pressure bag tubes are connected to the branch ports, respectively. This allows the electronic air pump to simultaneously inflate several pressure bags through the manifold. The storage box is provided with a slot into which the manifold snaps. Medical personnel use the shutoff valve to open the branch port connected to the pressure bag and close the branch port not connected to the pressure bag, allowing the electronic air pump to simultaneously inflate multiple pressure bags through the manifold, significantly improving work efficiency. Parallel pressure bags are easy to operate, allowing medical personnel to add additional pressure bag stations on the manifold without affecting the operation of other pressure bags. The slot surface conforms to the shape of the manifold, allowing the manifold to snap into place. The slot allows the manifold to be neatly stored within the storage box, making it easy to carry and retrieve.

[0014] Preferably, the pressurized bag tube is provided with a three-way valve and a one-way valve. The three-way valve is provided with an air inlet, an air outlet, and an air release port. The air inlet is connected to the collector, the air outlet is connected to the pressurized bag, and the air release port is provided at the junction of the air inlet and the air outlet. The valve core of the three-way valve is T-shaped. By rotating the valve core of the three-way valve, the air inlet is connected to the air outlet through the three-way valve core channel, or the air outlet is connected to the air release port through the three-way valve core channel. The storage box is provided with a plurality of partition slots, which are arranged in an alternating manner. Each partition slot only stores one three-way valve and one one-way valve. When the pressurized bag is inflated, the medical staff rotates the three-way valve core to connect the air inlet and the air outlet, and the gas flows from the air inlet to the air outlet, and the one-way valve prevents gas backflow; when the pressurized bag is deflated, the medical staff rotates the three-way valve core to connect the air outlet and the air outlet, and the gas flows from the air outlet to the air deflation port. The parallel pressurized bag is easy to operate, and the medical staff can deflate a single pressurized bag without affecting the operation of other pressurized bags. The three-way valve and one-way valve in each partition slot can be used for a single pressurized bag. Through several partition slots, several three-way valves and several one-way valves can be neatly stored in the storage box, which is convenient for carrying and searching.

[0015] Preferably, the stop valve core channel is in an "I" shape. By rotating the stop valve core, the stop valve core channel and the branch channel are made collinear, so that the branch channel is opened; or the stop valve core channel is perpendicular to the branch channel, so that the branch channel is closed.

[0016] Preferably, the storage box is provided with a power bank, and the electronic air pump data line connector can be connected to the power bank output interface, so that the power bank can charge the electronic air pump battery. Medical staff can use the power bank to charge the electronic air pump battery at any time, which is convenient to carry and avoids the electronic air pump from being unable to start due to insufficient power.

[0017] Preferably, the pump slot, bag slot, and power bank are located on the top of the storage box. A retractable drawer is provided on the side of the storage box, and the device slot and several partition slots are located on the top of the drawer. Medical staff can directly operate the electronic air pump in the pump slot without having to remove the electronic air pump. The top of the drawer and the top of the storage box are divided into two layers, making the bottom area of ​​the storage box smaller, reducing the space occupied and making it easier to place and carry the storage box. The power bank and electronic air pump are exposed on the top of the storage box, making it easy to operate.

[0018] Preferably, the storage box is covered with a lid, and the inner sidewall of the lid is provided with an anti-slip strip made of elastic rubber. The anti-slip strip is sandwiched between the inner sidewall of the lid and the outer sidewall of the storage box, ensuring a tight fit between the lid and the storage box. When the lid is closed, the electronic air pump and the plurality of pressurized bags are protected from dust and from accidental falling out. The anti-slip strip increases friction, strengthens the fixation of the lid, and prevents the lid from opening accidentally.

[0019] Preferably, a handle is provided on the outer side wall of the storage box, and medical staff can lift the storage box by the handle for easy carrying. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 Schematic diagram of the structure of the storage box when the lid is opened in the embodiment.

[0021] Figure 2 Schematic diagram of the structure of the storage box when the box cover is closed in the embodiment.

[0022] Figure 3 It is a top view of the storage box in the embodiment.

[0023] Figure 4 It is a top view of the drawer in the embodiment.

[0024] Figure 5 Schematic diagram of the use of an electronic air pump connected to several pressurized bags in an embodiment.

[0025] Figure 6 Schematic diagram of the structure of the collector side in the embodiment.

[0026] Figure 7 Schematic diagram of the structure of the other side of the collector in the embodiment.

[0027] Figure 8 2 is a cross-sectional view of the collector in the embodiment.

[0028] Figure 9 It is a cross-sectional view of the one-way valve channel when it is open in the embodiment.

[0029] Figure 10 It is a cross-sectional view of the one-way valve channel when it is closed in the embodiment.

[0030] Figure 11 It is a cross-sectional view of the three-way pipe when deflation occurs in the embodiment.

[0031] Figure 12 This is a cross-sectional view of the tee pipe during gas injection in the embodiment.

[0032] Figure 13 Schematic diagram of the structure of one side of the electronic air pump in the embodiment.

[0033] Figure 14 Schematic diagram of the structure of the other side of the electronic air pump in the embodiment.

[0034] Figure 15 Schematic diagram of the structure of the box cover in the embodiment.

[0035] Figure numerals: 1. Storage box; 11. Bag slot; 12. Pump slot; 13. Power bank; 14. First storage tank; 15. Second storage tank; 16. Third storage tank; 17. Box cover; 18. Anti-slip strip; 19. Handle; 2. Drawer; 21. Container slot; 22. Partition slot; 23. Slot; 3. Electronic air pump; 30. Pump tube; 4. Collector; 40. Stop valve; 41. Main port; 42. Branch port; 5. One-way valve; 50. Three-way valve; 51. Air inlet; 52. Air outlet; 53. Air vent; 6. Pressurized bag; 60. Bag tube. DETAILED DESCRIPTION

[0036] In order to further illustrate the technical means and effects adopted by the present invention to achieve the predetermined purpose of the utility model, the following is a detailed description of the specific implementation method, structure, characteristics and effects of the present invention in combination with the accompanying drawings and preferred embodiments.

[0037] like Figures 1 to 15The illustrated pressurized bag storage assembly includes a storage box 1, an electronic air pump 3, and several pressurized bags 6. The pump tube 30 of the electronic air pump 3 connects to the bag tubes 60 of the pressurized bags 6, allowing the electronic air pump 3 to inflate the pressurized bags 6. The storage box 1 is provided with a pump slot 12 and a bag slot 11. The surface of the pump slot 12 matches the shape of the electronic air pump 3, allowing the electronic air pump 3 to snap into the pump slot 12. The surface of the bag slot 11 matches the shape of the pressurized bags 6, allowing the pressurized bags 6 to be stacked and snapped into the bag slot 11. The pump slot 12 and bag slot 11 allow the electronic air pump 3 and several pressurized bags 6 to be neatly stored within the storage box 1, making them easy to carry and retrieve.

[0038] refer to Figures 5 to 8 The present invention also includes a collector 4, which is provided with a main port 41 and a plurality of branch ports 42. The main port 41 is connected to the plurality of branch ports 42 respectively. The plurality of branch ports 42 are each provided with a stop valve 40 that can open and close the branch ports 42. The pump tube 30 of the electronic air pump 3 is connected to the main port 41, and the bag tubes 60 of the plurality of pressurized bags 6 are respectively connected to the plurality of branch ports 42. The storage box 1 is provided with a placement slot 21, and the collector 4 is clamped in the placement slot 21. Medical personnel use the stop valve 40 to open the branch port 42 connected to the pressurized bag 6 and close the branch port 42 not connected to the pressurized bag 6, so that the electronic air pump 3 can simultaneously inflate multiple pressurized bags 6 through the collector 4, thereby greatly improving work efficiency. The parallel pressurized bags 6 are easy to operate, and medical personnel can add a bag pressing station on the collector 4 without affecting the work of other pressurized bags 6. The shape of the groove surface of the device slot 21 is consistent with the shape of the collector 4, so that the collector 4 can be snapped into the device slot 21. Through the device slot 21, the collector 4 is neatly stored in the storage box 1, which is convenient to carry and search.

[0039] refer to Figure 4 and Figure 8 The valve core channel of the stop valve 40 is in the shape of an "I". The stop valve 40 knob is located on the collector 4. The stop valve 40 knob drives the stop valve 40 valve core to rotate. A pointer is provided on the end face of the stop valve 40 knob. The words "Open" and "Close" are marked on both sides of the stop valve 40 knob on the collector 4. The central angle between the words "Open" and "Close" is 90 degrees: when the stop valve 40 knob pointer is turned to the word "Open", the stop valve 40 valve core and the branch port 42 channel are collinear, so that the branch port 42 channel is open; when the stop valve 40 knob pointer is turned to the word "Close", the stop valve 40 valve core channel is perpendicular to the branch port 42 channel, so that the branch port 42 channel is closed. Medical staff turn the knob to open and close the branch port 42 channel of the stop valve 40 valve core and check the pointer direction, which serves as a reminder. The operation is simple.

[0040] refer to Figure 4 and Figure 5The bag tube 60 of the pressurized bag 6 is provided with a three-way valve 50 and a one-way valve 5. The three-way valve 50 is provided with an air inlet 51, an air outlet 52 and an air release port 53. The air inlet 51 is connected to the collector 4, the air outlet 52 is connected to the pressurized bag 6, and the air release port 53 is provided at the junction of the air inlet 51 and the air outlet 52. The valve core channel of the three-way valve 50 is in a "T" shape. By rotating the valve core of the three-way valve 50, the air inlet 51 is connected to the air outlet 52 through the valve core channel of the three-way valve 50, or the air outlet 52 is connected to the air release port 53 through the valve core channel of the three-way valve 50. The storage box 1 is provided with a plurality of partition grooves 22, and the plurality of partition grooves 22 are arranged at intervals. Each partition groove 22 only stores one three-way valve 50 and one one-way valve 5. As Figure 12 As shown, when the pressurized bag 6 is inflated, the medical staff rotates the valve core of the three-way valve 50 so that the air inlet 51 is connected to the air outlet 52, and the gas flows from the air inlet 51 to the air outlet 52; Figure 11 As shown, to deflate the pressurized bag 6, the medical staff rotates the valve core of the three-way valve 50, connecting the deflation port 53 with the outlet port 52, allowing gas to flow from the outlet port 52 to the deflation port 53. The parallel pressurized bags 6 are easy to operate, allowing the medical staff to deflate a single pressurized bag 6 without affecting the operation of other pressurized bags 6. The three-way valve 50 and one-way valve 5 within each spacer slot 22 are used by a single pressurized bag 6. By using multiple spacer slots 22, multiple three-way valves 50 and one-way valves 5 can be neatly stored within the storage box 1, making them easy to carry and retrieve.

[0041] Among them, a movable valve ball is provided in the valve cavity of the one-way valve 5, such as Figure 9 As shown, when the gas flows from the electronic air pump 3 to the pressurized bag 6, the valve ball moves away from the opening of the one-way valve 5, so that the valve cavity of the one-way valve 5 is connected; Figure 10 As shown, when the gas flows from the pressurized bag 6 to the electronic air pump 3, the valve ball moves to and closes the opening of the one-way valve 5, so that the valve cavity of the one-way valve 5 is not connected. The one-way valve 5 prevents gas from flowing back.

[0042] refer to Figure 3 The storage box 1 is provided with a power bank 13, which is integrally formed with the storage box 1. The data line connector of the electronic air pump 3 can be connected to the output interface of the power bank 13, so that the power bank 13 can charge the battery of the electronic air pump 3. Medical staff can charge the battery of the electronic air pump 3 at any time through the power bank 13, which is convenient to carry and prevents the electronic air pump 3 from being unable to start due to insufficient power.

[0043] refer to Figure 1 、 Figure 3 and Figure 4The storage box 1 is further provided with a first storage slot 14, a second storage slot 15, and a third storage slot 16. The first storage slot 14 is used to store the bag tube 60 of the pressurized bag 6, the second storage slot 15 is used to store the pump tube 30 of the electronic air pump 3, and the third storage slot 16 is used to store the data cable of the power bank 13. Through the first storage slot 14, the second storage slot 15, and the third storage slot 16, the pressurized bag 6, the bag tube 60, the pump tube 30 of the electronic air pump 3, and the data cable of the power bank 13 are neatly stored in the storage box 1, making it convenient to carry and find.

[0044] Among them, the bag placement groove 11, the pump placement groove 12 and the device placement groove 21 are all provided with a groove 23, which provides space for medical staff to insert their fingers, making it easier to take out the pressurized bag 6, the electronic air pump 3 and the collector 4.

[0045] Among them, the bag slot 11, pump slot 12, power bank 13, second storage slot 15 and third storage slot 16 are arranged on the storage box 1. The storage box 1 is provided with a retractable drawer 2 on the side. The device slot 21, first storage slot 14 and several partition slots 22 are arranged on the drawer 2. Medical staff can directly operate the electronic air pump 3 in the pump slot 12 without having to take out the electronic air pump 3 for use. The top of the drawer 2 and the top of the storage box 1 are divided into two layers, making the bottom area of ​​the storage box 1 smaller, reducing the space occupied, and convenient for placing and carrying the storage box 1. The power bank 13 and electronic air pump 3 are exposed on the top of the storage box 1, which is convenient for operation.

[0046] refer to Figure 15 The storage box 1 is covered with a lid 17, and the inner wall of the lid 17 is provided with an anti-slip strip 18, which is made of elastic rubber. The anti-slip strip 18 is sandwiched between the inner wall of the lid 17 and the outer wall of the storage box 1, so that the lid 17 and the storage box 1 are tightly covered. Figure 1 As shown, when in use, medical staff open the top of the storage box 1, and can turn the box cover 17 upside down and cover the bottom of the storage box 1 to reduce the occupied space; Figure 2 As shown, when not in use, medical staff covers the storage box 1 with the box cover 17 to prevent the items in the storage box 1 from being contaminated by dust and prevent the items in the storage box 1 from accidentally falling out; the anti-slip strip 18 increases friction, strengthens the fixation of the box cover 17, and prevents the box cover 17 from opening accidentally.

[0047] refer to Figure 1 A handle 19 is provided on the outer side wall of the storage box 1, and medical staff can carry the storage box 1 by the handle 19 for easy carrying.

[0048] The above description is merely a preferred embodiment of the present invention and does not constitute any form of limitation to the present invention. Although the present invention has been disclosed as a preferred embodiment as above, it is not intended to limit the present invention. Any person skilled in the art can make some changes or modifications to equivalent embodiments using the technical contents disclosed above without departing from the scope of the technical solution of the present invention. However, any brief modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention without departing from the content of the technical solution of the present invention are still within the scope of the technical solution of the present invention.

Claims

1. A pressurized bag storage and integration assembly, characterized by: The invention comprises a storage box (1), an electronic air pump (3) and a plurality of pressurized bags (6), wherein a pump tube (30) of the electronic air pump (3) is connected to a bag tube (60) of the pressurized bag (6), so that the electronic air pump (3) can fill the pressurized bag (6). The storage box (1) is provided with a pump slot (12) and a bag slot (11), wherein the pump slot (12) is used for securing the electronic air pump (3), and the bag slot (11) is used for securing a plurality of stacked pressurized bags (6).

2. The pressurized bag storage and integration assembly according to claim 1, characterized in that: The apparatus further comprises a collector (4), wherein the collector (4) is provided with a main port (41) and a plurality of branch ports (42), wherein the main port (41) is communicated with the plurality of branch ports (42) respectively, and each of the plurality of branch ports (42) is provided with a stop valve (40) capable of opening and closing the branch port (42) channel. The pump pipe (30) of the electronic air pump (3) is connected to the main port (41), and the bag pipes (60) of the plurality of pressurizing bags (6) are respectively connected to the plurality of branch ports (42), so that the electronic air pump (3) can simultaneously inflate the plurality of pressurizing bags (6) through the collector (4). The storage box (1) is provided with a device placement slot (21), and the collector (4) is clamped in the device placement slot (21).

3. The pressurized bag storage and integration assembly according to claim 2, characterized in that: The bag tube (60) of the pressurized bag (6) is provided with a three-way valve (50) and a one-way valve (5) for preventing gas backflow. The three-way valve (50) is provided with an air inlet (51), an air outlet (52) and an air release port (53). The air inlet (51) is connected to the collector (4), the air outlet (52) is connected to the pressurized bag (6), and the air release port (53) is provided at the junction of the air inlet (51) and the air outlet (52). The valve core channel of the three-way valve (50) is in a "T" shape. By rotating the valve core of the three-way valve (50), the air inlet (51) is connected to the air outlet (52) through the valve core channel of the three-way valve (50), or the air outlet (52) is connected to the air release port (53) through the valve core channel of the three-way valve (50). The storage box (1) is provided with a plurality of partition slots (22), and the plurality of partition slots (22) are arranged at intervals, and each partition slot (22) only stores one three-way valve (50) and one one-way valve (5).

4. The pressurized bag storage and integration assembly according to claim 2, wherein: The valve core channel of the stop valve (40) is in an "I" shape. By rotating the valve core of the stop valve (40), the valve core channel of the stop valve (40) and the branch port (42) channel are aligned, thereby opening the branch port (42) channel; or the valve core channel of the stop valve (40) and the branch port (42) channel are perpendicular, thereby closing the branch port (42) channel.

5. The pressurized bag storage and integration assembly according to claim 3, wherein: The storage box (1) is provided with a power bank (13), and the data line connector of the electronic air pump (3) can be connected to the output end interface of the power bank (13), so that the power bank (13) charges the battery of the electronic air pump (3).

6. The pressurized bag storage and integration assembly according to claim 5, characterized in that: The pump placement groove (12), the bag placement groove (11) and the power bank (13) are arranged on the storage box (1); a drawer (2) that can be pulled out is provided on the side of the storage box (1); the device placement groove (21) and a plurality of partition grooves (22) are arranged on the drawer (2).

7. The pressurized bag storage and integration assembly according to claim 6, characterized in that: The storage box (1) is covered with a box cover (17), and the inner wall of the box cover (17) is provided with an anti-slip strip (18). The anti-slip strip (18) is made of elastic rubber material. The anti-slip strip (18) is sandwiched between the inner wall of the box cover (17) and the outer wall of the storage box (1), so that the box cover (17) and the storage box (1) are tightly covered.

8. The pressurized bag storage and integration assembly according to claim 1, wherein: The outer side wall of the storage box (1) is provided with a handle (19) for carrying the storage box (1).