Medicine bottle disinfection device
By using a fan to blow ozone into the medicine bottle sterilization device and using absorbent cotton to absorb the disinfection waste liquid, the problem of incomplete sterilization of narrow-mouth medicine bottles by traditional sterilization boxes is solved, achieving efficient sterilization of the inside of the medicine bottle and treatment of waste liquid.
Patent Information
- Application Number
- CN202520202670.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-02-10
AI Technical Summary
Traditional disinfection boxes cannot thoroughly disinfect narrow-necked medicine bottles, and they also result in a significant waste of disinfection resources.
Design a medicine bottle disinfection device that uses a fan to blow ozone generated by an ozone generator into the medicine bottle through a disinfection tube, and uses absorbent cotton to absorb the disinfection waste liquid. The fan dries the absorbent cotton for reuse.
It achieves thorough disinfection of the inside of medicine bottles, reduces waste of disinfection resources, improves disinfection efficiency, and enables the collection and treatment of waste liquid.
Smart Images

Figure CN223668359U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of medical devices, and more particularly to a medicine bottle disinfection device. BACKGROUND
[0002] Ozone can oxidize and decompose the enzymes required by bacteria to degrade glucose, causing the TCA cycle to fail, thus causing the ATP required for cell life activities to be unable to be supplied, causing the bacteria to be inactivated and die, or directly acting on bacteria and viruses, destroying their organelles and DNA, RNA, causing the metabolism of bacteria to be destroyed, leading to the death of bacteria. Using ozone for disinfection and sterilization has the advantages of mild conditions and rapid sterilization, and is especially suitable for medical tools and drugs that cannot be sterilized by high temperature, and is an excellent sterilization method.
[0003] In related technologies, traditional disinfection boxes all spray ozone or disinfectant into the entire box to disinfect medicine bottles. However, since most medicine bottles are designed in a constricted structure, the inside of the medicine bottle can only enter a small amount of ozone or disinfectant due to the influence of the pressure and gas flow in the disinfection box. This can cause incomplete disinfection of the medicine bottle, and also waste disinfection resources. CONTENT OF THE INVENTION
[0004] Therefore, the embodiments of the present application provide a medicine bottle disinfection device to solve the problem that the disinfection box in related technologies cannot completely disinfect medicine bottles by spraying ozone or disinfectant into the entire box.
[0005] In order to achieve the above purpose, the embodiments of the present application provide the following technical solutions:
[0006] A medicine bottle disinfection device comprises:
[0007] A cabinet body, a plurality of fans are arranged on the side wall of the cabinet body, and the fans are used to blow air into the cabinet body;
[0008] A plurality of shelves are arranged vertically in the cabinet body, the shelves are used to divide the cabinet body into a plurality of storage bodies, and an ozone generator is arranged in the storage body at the bottom end of the cabinet body;
[0009] A plurality of disinfection tubes are arranged vertically on the upper surface of the shelf, and the disinfection tubes are connected to the ozone generator through a connecting tube; and a medicine bottle to be disinfected is arranged outside the disinfection tube.
[0010] A plurality of water-absorbing cottons are arranged outside the disinfection tube, and the water-absorbing cottons are arranged at the bottom end of the disinfection tube.
[0011] In some possible implementation manners, the upper surface of the layer plate is provided with an inclined surface which gradually inclines downward toward the back plate direction of the cabinet body.
[0012] The back surface of the cabinet body is provided with a collection bin in communication therewith.
[0013] In some possible implementation manners, the side surface of the water-absorbing cotton is provided with a plurality of notches which are equidistantly distributed along the circumferential direction of the water-absorbing cotton.
[0014] In some possible implementation manners, the upper surface of the layer plate has a plurality of annular grooves which are arranged around the water-absorbing cotton.
[0015] The plurality of annular grooves are in communication with each other through straight grooves.
[0016] In some possible implementation manners, the side wall of the cabinet body is further provided with a plurality of air permeable holes which are located on the opposite side of the fan.
[0017] In some possible implementation manners, the top end of the water-absorbing cotton has a smaller size than the bottom end.
[0018] The pharmaceutical bottle disinfection device provided by the embodiment of the present application has at least the following beneficial effects:
[0019] In the pharmaceutical bottle disinfection device provided by the embodiment of the present application, the pharmaceutical bottle is clamped outside the disinfection tube in the cabinet body, and the disinfection tube is directly connected with the ozone generator. Thus, the ozone generator can directly discharge the oxygen product into the pharmaceutical bottle and disinfect the interior of the pharmaceutical bottle. The disinfection waste liquid generated in the disinfection process can be absorbed by the water-absorbing cotton, and the fan can dry the water-absorbing cotton to enable the water-absorbing cotton to be reused. By using the above structure design, the disinfection tube can be inserted into the pharmaceutical bottle and disinfect the same, thereby solving the problem that the pharmaceutical bottle cannot be completely disinfected in the related art, and the water-absorbing cotton can be used to collect and treat the disinfection waste liquid. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.
[0021] Fig. 1 The structure diagram of the pharmaceutical bottle disinfection device provided by the embodiment of the present application;
[0022] Fig. 2This is a schematic diagram of the internal structure of the medicine bottle sterilization device provided in the embodiments of this application.
[0023] In the picture:
[0024] 100. Cabinet body; 110. Ventilation hole; 200. Fan; 300. Shelf; 400. Compartment; 500. Disinfection tube; 510. Micro-hole; 600. Absorbent cotton; 610. Notch; 700. Inclined surface; 800. Annular groove; 900. Straight groove. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. 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 skilled in the art without creative effort are within the protection scope of the present utility model.
[0026] like Figs. 1-2 As shown in the embodiment of this application, the medicine bottle disinfection device includes a cabinet 100, shelves 300, disinfection tubes 500, and absorbent cotton 600. The cabinet 100 is a container for disinfecting medicine bottles. Multiple fans 200 are installed on the side wall of the cabinet 100, blowing air into the cabinet 100. Multiple ventilation holes 110 are located opposite the fans 200. Multiple shelves 300 are also installed inside the cabinet 100, vertically distributed within the cabinet 100, dividing the cabinet 100 into multiple compartments 400. Each compartment 400 can disinfect medicine bottles. An ozone generator is installed in the bottom compartment 400 of the cabinet 100, providing oxygen for disinfection.
[0027] Each compartment 400 of the cabinet 100 is equipped with multiple disinfection tubes 500. Each disinfection tube 500 has a micro-hole 510 on its outer wall that communicates with its interior. The disinfection tube 500 is connected to an ozone generator inside the compartment 400 via a connecting pipe (not shown in the figure). Therefore, the ozone generator can supply oxygen-generating material for disinfection and sterilization into the disinfection tube 500 through the connecting pipe. A medicine bottle to be disinfected is fitted onto the outside of the disinfection tube 500. The disinfection tube 500 sprays a mist of oxygen-generating material into the medicine bottle through the micro-hole 510, thereby disinfecting and sterilizing the medicine bottle.
[0028] In the embodiment, the annular water-absorbing cotton 600 is arranged at the peripheral bottom end of each sterilization tube 500 and is sleeved outside the sterilization tube 500. The sterilization tube 500 is directly connected with the ozone generator by being buckled outside the sterilization tube 500 in the cabinet 100. Thus, the ozone generator can directly discharge the oxygen product into the medicine bottle and sterilize the inside of the medicine bottle. The sterilization waste liquid generated in the sterilization process can be absorbed by the water-absorbing cotton 600, and the fan 200 can air-dry the water-absorbing cotton 600 to make the water-absorbing cotton 600 reusable. By using the above structure, the sterilization tube 500 can be inserted into the medicine bottle and sterilized, thereby solving the problem that the medicine bottle cannot be completely sterilized in the related art, and the water-absorbing cotton 600 can be used to collect and treat the sterilization waste liquid.
[0029] In some embodiments, the upper surface of the layer plate 300 is provided as an inclined surface 700 that gradually inclines downward from the front surface of the cabinet 100 toward the back plate, and the back surface of the cabinet 100 is further provided with a collection bin that is in communication with the inside of the cabinet 100. This makes the sterilization waste liquid that falls onto the upper surface of the layer plate 300 slide in the direction of the inclined surface 700 toward the collection bin, and finally realize directional collection and treatment of the sterilization waste liquid.
[0030] In some embodiments, the side surface of the water-absorbing cotton 600 is provided with a plurality of notches 610 that are equidistantly distributed along the circumferential direction of the water-absorbing cotton 600. By providing the side surface of the water-absorbing cotton 600 with a plurality of notches 610, the area in contact with the wind force can be increased to further accelerate the air-drying efficiency of the water-absorbing cotton 600.
[0031] In some embodiments, the upper surface of the layer plate 300 is further provided with a plurality of annular grooves 800 that are arranged around the water-absorbing cotton 600, and the plurality of annular grooves 800 are in communication with each other through a straight groove 900. When the water-absorbing cotton 600 is in a saturated absorption state, the excess sterilization waste liquid around the water-absorbing cotton 600 can flow into the straight groove 900 through the annular grooves 800 to realize directional collection of the sterilization waste liquid. Preferably, the top end of the water-absorbing cotton 600 is smaller in size than the bottom end, so that the excess sterilization waste liquid can slide into the annular grooves 800, thereby improving the collection effect of the sterilization waste liquid.
[0032] The embodiments or implementations in the specification are described in a progressive manner, and each embodiment focuses on the difference from other embodiments. The same or similar parts between the embodiments can be mutually referred to.
[0033] It should be noted that the use of "one embodiment," "an embodiment," "certain embodiments," "some embodiments," etc., in the specification, does not necessarily refer to the same embodiment, although it can. In other words, the use of these phrases in the specification is not intended to necessarily limit the scope of the claimed subject matter to the embodiment being described by such phrases. Further, the use of these phrases is not intended to limit the scope of the claimed subject matter to a particular embodiment or to a particular set of embodiments described in the specification.
[0034] In general, terminology can be understood at least in part from usage in context. For example, terms, such as "one or more" as used herein, can be taken to mean that at least one, or there is equivalent to at least one, and that there are one or more, or there is equivalent to one or more. Further, such terminology can include single uses thereof and
[0035] It will be readily understood that the terms "on," "above," and "over," when used in the present disclosure, should not be construed as requiring any particular orientation of the apparatus, unless otherwise specified. For example, "on" can encompass both orientations of a device placed on top of another device, for example, a device placed on top of another device, or a device placed underneath another device, for example, a device placed on a substrate with another device placed on top of the device. In addition, "above" and "over" can encompass both orientations of a device placed above another device, for example, a device placed on a substrate with another device placed on top of the device, or a device placed underneath another device, for example, a device placed on a substrate with another device placed on top of the device. In addition, "above" and "over" can encompass both orientations of a device placed above another device, for example, a device placed on a substrate with another device placed on top of the device, or a device placed underneath another device, for example, a device placed on a substrate with another device placed on top of the device.
[0036] In addition, spatially relative terms, such as "beneath", "below", "lower", "above", "upper", and the like, can be used herein for ease of description to describe one element or feature's relationship to another element(s) or feature(s) as illustrated in the figures. The spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientations depicted in the figures. The devices can be otherwise oriented (rotated 90 degrees or at other orientations) and the spatially relative descriptors used herein interpreted accordingly.
[0037] The term "substrate" as used herein refers to a material on which a subsequent layer of material is added. The substrate itself can be patterned. The material added on top of the substrate can be patterned or can remain unpatterned. In addition, the substrate can include a wide range of materials, such as silicon, germanium, gallium arsenide, indium phosphide, etc. Alternatively, the substrate can be made of a non-conductive material, such as glass, plastic, or sapphire wafer, etc.
[0038] As used herein, the term "layer" can refer to a portion of material that includes a region having a thickness. A layer can extend over an entire underlying or overlying structure, or can have a scope less than the scope of the underlying or overlying structure. Further, a layer can be a region of a continuous structure that is uniform or non-uniform in composition, and that has a thickness less than the thickness of the continuous structure. For example, a layer can be between or at any pair of lateral planes between a top surface and a bottom surface of the continuous structure. A layer can extend laterally, vertically, and / or along a tapered surface. A substrate can be a layer, can include one or more layers therein, and / or can have one or more layers thereon, thereabove, and / or therebelow. A layer can include a plurality of layers. For example, an interconnect layer can include one or more conductor and contact layers (within which contacts, interconnect lines, and / or vias are formed) and one or more dielectric layers.
[0039] Finally, it should be noted that the above-described embodiments are merely intended to illustrate the technical solutions of the present application, but not to limit the same; even though the present application has been described in detail with reference to the above-described embodiments, those skilled in the art should understand that the technical solutions recorded in the above-described embodiments can still be modified, or some or all of the technical features thereof can be replaced equivalently; and these modifications or replacements do not cause the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. A vial sterilization device, comprising: The utility model relates to a cabinet for disinfecting medicine bottles, comprising: a cabinet body (100), the side wall of the cabinet body (100) is provided with a plurality of fans (200) for blowing air into the cabinet body (100); a plurality of layer plates (300) vertically arranged in the cabinet body (100), the layer plates (300) are used to divide the cabinet body (100) into a plurality of storage bodies (400), and the storage body (400) at the bottom end of the cabinet body (100) is provided with an ozone generator; a plurality of disinfection tubes (500), the outer wall of the disinfection tube (500) is provided with a plurality of micro-holes (510) in communication with the inside of the disinfection tube (500); the disinfection tube (500) is vertically arranged on the upper surface of the layer plate (300), and the disinfection tube (500) is connected to the ozone generator through a connecting tube; the disinfection tube (500) is sleeved with a medicine bottle to be disinfected; a plurality of water-absorbing cottons (600), the number of the water-absorbing cottons (600) is equal to the number of the disinfection tubes (500), the water-absorbing cotton (600) is sleeved outside the disinfection tube (500), and the water-absorbing cotton (600) is located at the bottom end of the disinfection tube (500).
2. The vial sterilization device of claim 1, wherein: The upper surface of the layer plate (300) is provided with an inclined surface (700) gradually inclined downward toward the back plate of the cabinet body (100); the back of the cabinet body (100) is provided with a collection bin in communication therewith.
3. The vial sterilization device of claim 1, wherein: The side surface of the water-absorbing cotton (600) is provided with a plurality of notches (610), and the notches (610) are equidistantly distributed along the circumferential direction of the water-absorbing cotton (600).
4. The vial sterilization device of claim 1, wherein: The upper surface of the layer plate (300) has a plurality of annular grooves (800), and the annular grooves (800) are arranged around the water-absorbing cotton (600); the annular grooves (800) are connected by straight grooves (900).
5. The vial sterilization device of claim 1, wherein: The side wall of the cabinet body (100) is also provided with a plurality of air holes (110), and the air holes (110) are located on the opposite side of the fan (200).
6. The vial sterilization device of claim 1, wherein: The top end of the water-absorbing cotton (600) is smaller than the bottom end.