Cuboid type infusion bottle storage box with magnetic attraction and infusion device

CN224711275UActive Publication Date: 2026-09-04LAIBIN PEOPLES HOSPITAL
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Patent Information

Application Number
CN202521973296.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-12
Publication Date
2026-09-04
Estimated Expiration
2035-09-12

AI Technical Summary

Technical Problem

[0003]然而老旧医院改造中,天花板作为楼栋的主要承重体,已不宜再钻孔打钉,天花板难以用于安装吊钩

Benefits of technology

[0007] Compared with existing technologies, the beneficial effects of this application include: the cube-shaped storage box facilitates landing on the wall panel and provides a stable gripping surface for robots; the two side walls of the cube can also be provided with finger-positioning recesses to further facilitate manual or robotic gripping; in addition, it frees up ceiling space, allowing direct contact with the wall to avoid obstruction and collisions in passageways, making it especially suitable for narrow wards or corridors; furthermore, it eliminates the need to drill into the ceiling, making it suitable for upgrading old hospitals.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of square body magnetic type infusion bottle storage box, bottle body clamp for clamping infusion bottle bottle body is arranged in square box, the bottom plate of square box is provided with the outlet mouth for allowing infusion bottle nozzle to protrude, the backboard of square box is provided with permanent magnet sheet, permanent magnet sheet is used for magnetic suction wallboard or floor, box cover is used to cover the operating port of square box.Compared with prior art, square storage box, facilitate landing wallboard, also provide the stable gripping plane of robot;In addition, liberate ceiling space, without drilling punch ceiling, suitable for old hospital upgrading.
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Description

Technical Field

[0001] This utility model relates to infusion devices, and more particularly to a cuboid magnetic infusion bottle storage box. Background Technology

[0002] Suspended infusion: The current method of infusion involves hooking the bottom of the infusion bottle to a hook on the ceiling.

[0003] However, in the renovation of old hospitals, the ceiling, as the main load-bearing structure of the building, is no longer suitable for drilling and nailing, and it is difficult to use the ceiling for installing hooks. Therefore, it is necessary to design a device more suitable for placing infusion bottles in old hospitals. Utility Model Content

[0004] The present invention aims to solve at least one of the aforementioned technical problems by providing a cuboid magnetic infusion bottle storage box, which facilitates the placement of infusion bottles on a wall or floor, avoiding the need for drilling and nailing during the renovation of old hospitals.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0006] A cuboid magnetic infusion bottle storage box includes a box and a lid. The front and / or top of the box are open as an operating port for assembling and disassembling the infusion bottle. The box contains bottle grippers for holding the infusion bottle body. The bottom plate of the box has an outlet for allowing the infusion bottle nozzle to protrude. The back plate of the box has a permanent magnet for magnetically attracting the wall panel or floor. The lid is used to cover the operating port.

[0007] Compared with existing technologies, the beneficial effects of this application include: the cube-shaped storage box facilitates landing on the wall panel and provides a stable gripping surface for robots; the two side walls of the cube can also be provided with finger-positioning recesses to further facilitate manual or robotic gripping; in addition, it frees up ceiling space, allowing direct contact with the wall to avoid obstruction and collisions in passageways, making it especially suitable for narrow wards or corridors; furthermore, it eliminates the need to drill into the ceiling, making it suitable for upgrading old hospitals.

[0008] As an improvement to the above technical solution, the front and top of the square box are both open, the box lid is hinged to the square box, and the box lid is provided with a flange for locking the square box.

[0009] As an improvement to the above technical solution, a handle protruding from the square box is provided at the end of the box cover away from its hinge part.

[0010] As an improvement to the above technical solution, the bottle gripper is integrally formed with a base plate, an S-shaped finger, and an S-shaped mirror finger. The base plate is used to connect the square box, and the S-shaped finger and the S-shaped mirror finger are used to jointly grip the body of the infusion bottle.

[0011] As an improvement to the above technical solution, the square box and the box lid are made of plastic, the bottle body grippers are made of metal, and the back plate of the square box is connected to the middle of the bottom plate by a screw.

[0012] As an improvement to the above technical solution, the square box is provided with reinforcing ribs, two of which define a limiting groove for fastening the bottom piece.

[0013] As an improvement to the above technical solution, at least two grooves are provided on the outer side of the back plate of the square box, and the grooves are used to attach the permanent magnet sheet one by one.

[0014] As an improvement to the above technical solution, the inner wall of the groove is provided with at least two bottom protrusions, and the side of the permanent magnet sheet that is attached to the square box is provided with positioning notches that correspond one-to-one with the bottom protrusions. The permanent magnet sheet is used to snap into the groove based on the correspondence between the bottom protrusions and the positioning notches.

[0015] As an improvement to the above technical solution, the permanent magnet sheet is provided with a snap-fit ​​on the side away from the square box that corresponds one-to-one with the bottom protrusion. The bottom protrusion is also used to fasten the snap-fit, so that the permanent magnet sheet is fastened in the groove during operation or gelation.

[0016] On the other hand, an infusion device includes the aforementioned cuboid magnetic infusion bottle storage box, and also includes the aforementioned wall panel or floor panel. The wall panel and floor panel are provided with magnetic flux detection plates for magnetic attraction with the permanent magnet plate. The magnetic flux detection plates are used to detect whether the storage box is attracted to the wall panel or floor panel. Attached Figure Description

[0017] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, wherein:

[0018] Figure 1 This is a schematic diagram of the structure of the cuboid magnetic infusion bottle storage box according to an embodiment of the present invention. Figure 1 ;

[0019] Figure 2 for Figure 1 This diagram shows the structure of the cuboid magnetic infusion bottle storage box when it is opened.

[0020] Figure 3 for Figure 2 A partial sectional view of a cuboid magnetic infusion bottle storage box is shown, with only the box cut in half.

[0021] Figure 4 for Figure 1 A three-dimensional structural diagram of a cuboid magnetic infusion bottle storage box is shown;

[0022] Figure 5This is a schematic diagram of the structure of the cuboid magnetic infusion bottle storage box according to an embodiment of the present invention. Figure 2 Hide the corresponding box lid;

[0023] Figure 6 for Figure 3 A schematic diagram of the bottle clamp structure of the cuboid magnetic infusion bottle storage box is shown.

[0024] The accompanying drawings are only one specific embodiment of this utility model, and the form and structure of this specific embodiment should not limit the extension of other embodiments.

[0025] Square box 100, reinforcing rib 110, limiting groove 120, groove 130, bottom protrusion 131;

[0026] Box lid 200, flange 210, handle piece 220;

[0027] Bottle gripper 300, bottom plate 310, S-shaped finger 320, S-shaped mirror finger 330, trumpet-shaped guide buckle 340;

[0028] Bottleneck gripper 400;

[0029] 500 elastic retraction structure;

[0030] Permanent magnet 600, positioning notch 610, bayonet 620;

[0031] 700 IV bottles. Detailed Implementation

[0032] 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.

[0033] It is understandable that ceilings (rooftops) and reinforced concrete columns are load-bearing structures of the building, and after renovation, it is not advisable to drill holes or nail into the ceiling.

[0034] Reference Figures 1 to 5 This utility model provides a square magnetic infusion bottle storage box, including a square box 100 and a box lid 200. The front end and / or top end of the square box 100 are open as an operation port for disassembling and assembling infusion bottles 700. The square box 100 is provided with bottle body grippers 300 for gripping the body of the infusion bottle 700. The bottom plate of the square box 100 is provided with an outlet for allowing the bottle mouth of the infusion bottle 700 to protrude. The back plate of the square box 100 is provided with a permanent magnet 600 for magnetically attracting the wall panel or the floor. The box lid 200 is used to close the operation port.

[0035] It is understandable that the wall panels and the box placement area on the floor are made of magnetically attractive metal or permanent magnet materials.

[0036] The permanent magnet sheet 600 is preferably made of permanent magnets, which have both high magnetism and the rigidity of iron.

[0037] Understandably, based on the placement of the storage box during infusion, its front, back, top, and bottom walls can be referenced. Figures 1 to 5 The lower wall is the bottom plate, and the rear wall is the back plate.

[0038] According to general knowledge about infusion bottles, the diameter of 250ml, 500ml, and 1000ml bottles is approximately 63mm, 80mm, and 95mm, respectively.

[0039] The operation process of this utility model can be as follows:

[0040] The process involves detaching the storage box from the wall panel or floor panel, inserting the infusion bottle 700, with the bottle nipple of the infusion bottle 700 passing through the outlet of the square box 100. The bottle gripper 300 then holds the body of the infusion bottle 700. It's understood that when a person or robot handles the storage box, they need to overcome the magnetic force. Specifically, the square box and lid are thin-walled components made of lightweight, hard plastic, while the bottle gripper 300 is a thin steel sheet, such as stainless steel. The largest infusion bottle 700 is 1000ml (approximately 95mm outer diameter). 1000ml of liquid weighs approximately 1 jin (500g), so the storage box containing the infusion bottle 700 will weigh approximately 1.3 jin (0.65kg, 6.37N).

[0041] The process involves manually or robotically attaching the bottled storage boxes to wall panels or floorboards. Robots can use conventional smart vision to identify marked boxes on the wall panels or floorboards.

[0042] When administering an IV, the doctor inserts the IV tube plug into the exposed bottle nozzle in the storage box after the patient is near the wall panel or on the floor.

[0043] Compared with the prior art, the beneficial effects of this application include: the cube storage box facilitates landing on the wall panel and provides a stable gripping plane for the robot; the two side walls of the cube 100 can also be provided with finger-positioning recesses to further facilitate manual or robotic gripping; in addition, it frees up ceiling space, allowing direct contact with the wall to avoid obstruction and collisions in passageways, making it especially suitable for narrow wards or corridors; furthermore, it eliminates the need to drill into the ceiling, making it suitable for upgrading old hospitals.

[0044] Reference Figure 2 , Figure 3 and Figure 5In some embodiments of this utility model, a neck gripper 400 is also included. The neck gripper 400 is used to grip the neck of the infusion bottle 700 and to support the infusion bottle 700. The infusion bottle 700 may have only a small protrusion of the nozzle. It is understood that the nozzle size of infusion bottles 700 of various sizes is very similar, about 20-26mm. The neck gripper 400 is smaller than the bottle body gripper 300 without a large deformation. The neck gripper 400 can be used to support the shoulder of the infusion bottle.

[0045] Reference Figure 5 In some embodiments of this utility model, an elastic retraction structure 500 is provided inside the square box 100. The elastic retraction structure 500 is used to drive the empty infusion bottle 700 to retract upwards, so that the infusion bottle 700 is disengaged from the neck clamp 400. Specifically, the bottom of the infusion bottle 700 itself is designed with a lifting lug, and the outer end of the elastic retraction structure 500 can be connected to the lifting lug; the elastic retraction structure 500 can be a spring, coil spring, etc.

[0046] Reference Figure 5 The elastic retraction structure 500 is a coil spring, with a clip at its outer end. This clip is used to secure the lifting lugs at the bottom of the infusion bottle 700. Specifically, the elastic retraction structure 500 is used for both 500ml and 1000ml infusion bottles 700. For example, if only the most common 500ml bottle is used, the elastic retraction structure 500 is used to pull back the empty infusion bottle 700, disengaging it from the neck clamp 400. Smaller capacity infusion bottles 700 are relatively smaller and are held more lightly by the bottle body clamp 300. Smaller capacity infusion bottles 700 are easier to assemble and disassemble and do not require the corresponding elastic retraction structure 500.

[0047] Reference Figure 2 , Figure 3 and Figure 5 In some embodiments of this utility model, the opening ends of the bottle body gripper 300 and / or the bottle neck gripper 400 are configured as flared guide openings 340.

[0048] In some embodiments of this utility model, the lid 200 is provided with a viewing window made of transparent material. The lid 200 may also be made entirely of transparent material, with the entire lid 200 serving as a viewing window.

[0049] Reference Figures 1 to 4In some embodiments of this utility model, the front and top of the square box 100 are open, allowing the infusion bottle 700 to be inserted into or removed from the bottle clamp 300 in a near-vertical extension position. This means the infusion bottle 700 can be inserted into and removed from the bottle clamp 300 more easily. The lid 200 is hinged to the square box 100 and has a flange 210 for engaging the square box 100. The locking force between the lid 200 and the square box 100 is moderate, making the storage box easy to open and close, and the engagement secure.

[0050] Reference Figures 1 to 4 In some embodiments of this utility model, the end of the box cover 200 away from its hinge is provided with a handle piece 220 protruding from the square box 100, which facilitates opening and closing the storage box.

[0051] Reference Figure 2 , Figure 3 , Figure 5 and Figure 6 In some embodiments of this utility model, the bottle gripper 300 is integrally formed with a base plate 310, an S-shaped finger 320, and an S-shaped mirror finger 330. The base plate 310 is used to connect to the square box 100, and the S-shaped finger 320 and the S-shaped mirror finger 330 are used to jointly grip the bottle body of the infusion bottle 700. The opening and closing deformation of the bottle gripper 300 is larger than that of a simple U-shaped gripper, and the bottle gripper 300 of this utility model is suitable for infusion bottles 700 of a larger size range; the S-shaped finger 320 and the S-shaped mirror finger 330 reliably grip the infusion bottle 700 of a larger size range in a holding manner.

[0052] In some embodiments, the square box 100 is made of plastic, making it lightweight and inexpensive. The bottle gripper 300 is made of metal, with its base 310 embedded in the square box 100. When the bottle gripper 300 deforms, it uses only the base of its fingers as a fulcrum, resulting in insufficient flexibility in its opening and closing deformation. In this configuration, the molding of the square box 100 is constrained by the bottle gripper 300, making the molding and shaping process more complex and expensive. While this method provides a more secure installation of the bottle gripper 300, its opening and closing deformation (flexibility) remains insufficient.

[0053] In some embodiments of this utility model, the square box 100 and the lid 200 are made of plastic, the bottle gripper 300 is made of metal, and the back plate of the square box 100 is connected to the center of the base plate 310 by a screw. The opening and closing deformation of the bottle gripper 300 is further improved. (Refer to...) Figure 2 , Figure 3 and Figure 5Furthermore, the square box 100 is provided with reinforcing ribs 110, two of which define limiting grooves 120 for the snap-fit ​​base plate 310. In this utility model, the square box 100 is relatively rigid and can be gripped forcefully by a robotic arm. The bottle gripper 300 accommodates a large opening and closing deformation while being firmly installed, and the S-shaped fingers 320 and S-shaped mirror fingers 330 are not easily bent laterally.

[0054] Reference Figure 4 In some embodiments of this utility model, at least two grooves 130 are provided on the outer side of the back plate of the square box 100, and the grooves 130 are used to attach the permanent magnet sheet 600 one by one.

[0055] Specifically, the entire back of the storage box may be used for landing wall panels or flooring, and the groove 130 may be recessed on the outer side of the back panel of the square box 100; in some embodiments, the outer side of the back panel of the square box 100 may be provided with a circumferential edge for landing wall panels or flooring, and the circumferential edge defines the groove 130.

[0056] Reference Figure 4 In some embodiments of this utility model, the inner wall of the groove 130 is provided with at least two bottom protrusions 131, that is, protrusions that are off the bottom of the groove 130. The permanent magnet sheet 600 is provided with a positioning notch 610 on the side of the square box 100 that corresponds one-to-one with the bottom protrusions 131. The permanent magnet sheet 600 is used to snap into the groove 130 based on the correspondence between the bottom protrusions 131 and the positioning notch 610.

[0057] Reference Figure 4 In some embodiments of this utility model, the permanent magnet sheet 600 has a latch 620 on the side facing away from the square box 100, which corresponds one-to-one with the bottom protrusion 131. The bottom protrusion 131 is also used to fasten the latch 620, so that the permanent magnet sheet 600 is fastened in the groove 130 during operation or gelation. The gelation process is the process of adhesive solidification and adhesion.

[0058] An infusion device includes the aforementioned storage box and a wall panel or floor panel. The wall panel and floor panel are equipped with magnetic flux detection plates for magnetic attraction with a permanent magnet plate 600. These magnetic / ferrous components are essentially Hall effect sensors. The magnetic flux detection plates are electrically connected to a corresponding processor, such as a microcontroller. The magnetic flux detection plates are used to detect whether the storage box is attracted to the wall panel or floor panel. Hall effect sensors and their detection principles are standard knowledge.

[0059] Furthermore, the wall panels and floor are provided with marking frames for placing storage boxes, and the magnetic flux detection plate is placed in the marking frames.

[0060] The above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Any modifications or equivalent substitutions that do not depart from the spirit and scope of this utility model should be covered within the scope of the technical solution of this utility model.

Claims

1. A cuboid magnetic infusion bottle storage box, characterized in that, include: A square box (100) has an open front end and / or top end for assembling and disassembling an infusion bottle (700). The square box (100) is provided with a bottle body gripper (300) for gripping the body of the infusion bottle (700). The bottom plate of the square box (100) is provided with an outlet for allowing the bottle mouth of the infusion bottle (700) to protrude. The back plate of the square box (100) is provided with a permanent magnet (600) for magnetically attracting the wall panel or floor. A lid (200) is used to cover the operating port.

2. The cuboid magnetic infusion bottle storage box according to claim 1, characterized in that, The front and top of the box (100) are open, and the lid (200) is hinged to the box (100). The lid (200) is provided with a flange (210) for locking the box (100).

3. The cuboid magnetic infusion bottle storage box according to claim 2, characterized in that, The lid (200) is provided with a handle piece (220) protruding from the square box (100) at one end away from its hinge.

4. The cuboid magnetic infusion bottle storage box according to any one of claims 1 to 3, characterized in that, The bottle gripper (300) is integrally formed with a base plate (310), an S-shaped finger (320), and an S-shaped mirror finger (330). The base plate (310) is used to connect the square box (100), and the S-shaped finger (320) and the S-shaped mirror finger (330) are used to grip the body of the infusion bottle (700).

5. The cuboid magnetic infusion bottle storage box according to claim 4, characterized in that, The box (100) and the lid (200) are made of plastic, the bottle gripper (300) is made of metal, and the back plate of the box (100) is connected to the center of the bottom plate (310) by a screw.

6. The cuboid magnetic infusion bottle storage box according to claim 5, characterized in that, The box (100) is provided with reinforcing ribs (110), two of which define a limiting groove (120) for snapping the base plate (310).

7. The cuboid magnetic infusion bottle storage box according to any one of claims 1 to 3, characterized in that, The back plate of the square box (100) has at least two grooves (130) on the outside, which are used to attach the permanent magnet sheet (600) one by one.

8. The cuboid magnetic infusion bottle storage box according to claim 7, characterized in that, The inner wall of the groove (130) is provided with at least two bottom protrusions (131). The permanent magnet (600) is provided with a positioning notch (610) on the side of the box (100) that corresponds one-to-one with the bottom protrusions (131). The permanent magnet (600) is used to snap into the groove (130) based on the correspondence between the bottom protrusions (131) and the positioning notch (610).

9. The cuboid magnetic infusion bottle storage box according to claim 8, characterized in that, The permanent magnet sheet (600) has a snap-fit ​​(620) on the side opposite to the square box (100) that corresponds one-to-one with the bottom protrusion (131). The bottom protrusion (131) is also used to press the snap-fit ​​(620) so that the permanent magnet sheet (600) is fastened in the groove (130) during operation or gelation.

10. An infusion device, characterized in that, include: The cuboid magnetic infusion bottle storage box according to any one of claims 1 to 9; The wall panel or floor according to any one of claims 1 to 9, wherein the wall panel and floor are provided with a magnetic flux detection plate for magnetic attraction with the permanent magnet (600), the magnetic flux detection plate being used to detect whether the storage box is attracted to the wall panel or floor.