Collecting tube conveying device with continuous sterilization and disinfection structure
By using a combination of ozone generator and ultraviolet lamp sterilization components in the collection tube transportation device, along with the design of the storage component, the problem of uneven disinfection effect during the transportation of collection tubes was solved, achieving a continuous and efficient sterilization effect.
Patent Information
- Application Number
- CN202520142415.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-01-21
AI Technical Summary
Medical collection tubes are difficult to disinfect efficiently and uniformly during transportation. Conventional methods such as ultraviolet lamps and fumigation techniques have problems with poor adaptability or high cost.
The sterilization component combines an ozone generator and a UV lamp. The synergistic effect of ozone and ultraviolet light continuously sterilizes the collection tube. Combined with the design of the storage component, the collection tube is continuously rotated during transportation to enhance the sterilization effect.
This ensures that the collection tubes remain in a qualified disinfection state throughout the transportation process, avoiding uneven disinfection effects and improving sterilization efficiency.
Smart Images

Figure CN223851105U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of medical equipment transportation technology, and specifically relates to a collection tube transportation device with a continuous sterilization and disinfection structure. Background Technology
[0002] When medical collection tubes are exposed to the external environment during transportation, it is difficult to maintain an efficient and uniform sterilization state throughout the entire transportation chain. First, due to the complexity of the logistics process, various transportation conditions (such as temperature, humidity, and the influence of contaminants) may reduce the effectiveness of disinfectants, resulting in uneven sterilization effects. Furthermore, during long-term transportation, the evaporation, depletion, or inactivation of disinfectants means that these collection tubes may no longer be in a properly sterilized state before final use.
[0003] Conventional methods include installing ultraviolet lamps or using fumigation during transportation to improve disinfection effectiveness to some extent. However, these methods have drawbacks: ultraviolet lamps only cover a limited area and have poor adaptability to transportation conditions, potentially failing to achieve the desired effect when the packaging is sealed. Fumigation, on the other hand, requires specialized equipment and operation, increasing costs and management complexity, and may damage certain medical devices. Therefore, we aim to design a novel collection tube transportation device to address this problem. Utility Model Content
[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a collection tube transport device with a continuous sterilization and disinfection structure, so as to solve the problems mentioned in the background technology.
[0005] This utility model is achieved through the following technical solution: a collection tube transportation device with a continuous sterilization and disinfection structure, comprising: a transportation box, a sterilization component and a storage component, wherein a sterilization component for continuously sterilizing and disinfecting the collection tube is installed on the right side of the transportation box, and a storage component for periodically rotating and storing the collection tube is installed inside the transportation box.
[0006] An installation plate is provided on the upper left side of the front end of the transport box. A button is installed on the upper side of the installation plate. A sealing cover is hinged to the rear side of the upper end of the transport box. A sterilization component is installed on the upper side of the front inner wall and the upper side of the rear inner wall of the transport box.
[0007] The sterilization component includes an ozone generator, a connecting pipe, and a collection box. The rear side of the ozone generator is connected to the collection box via the connecting pipe.
[0008] In a preferred embodiment, an exhaust port is provided on the lower left side of the inner wall of the left end of the transport box, an air inlet is provided on the upper side of the inner wall of the right end of the transport box, and a louver is provided on the outside of the exhaust port.
[0009] In a preferred embodiment, the sterilization component includes a corner plate and a UV lamp. The left and right sides of the UV lamp are respectively fixedly connected to a corner plate. The UV lamp is fixed to the inner wall of the transport box through the corner plate. In actual use, the height of the UV lamp is greater than the height of the top of the placement tube.
[0010] In a preferred embodiment, the ozone generator is a ceramic plate ozone generator, the inside of the collection box is connected to the air inlet, and a miniature fan is installed inside the collection box.
[0011] In a preferred embodiment, the storage component includes a base plate, a fixing rod, a drive motor, a fixing cylinder, a placement cylinder, and a separator. A fixing rod is fixed to the left front side and the right rear side of the upper surface of the base plate.
[0012] In a preferred embodiment, a fixing cylinder is fixed between the upper ends of the two fixing rods, and a placement cylinder is rotatably installed inside the fixing cylinder. The upper end of the placement cylinder is provided with a plurality of teeth arranged in a circular structure.
[0013] In a preferred embodiment, each of the fixed rods is fixed with a drive motor on its upper side, and each drive motor is provided with a drive gear on the side near the placement tube. The drive gear is connected to the toothed drive of the upper end of the placement tube. A partition is installed inside the placement tube. In actual use, the two drive motors can drive the placement tube to rotate inside the fixed tube through the drive gears on them, thereby causing the collection tube inside the placement tube to be rotated for sterilization and disinfection, which helps to improve the sterilization and disinfection effect of the collection tube.
[0014] After adopting the above technical solution, the beneficial effects of this utility model are: by setting up a transport box and sterilization components, the collection tube can be continuously disinfected and sterilized on the transport teeth, avoiding the problem that the effectiveness of the disinfectant may decrease under various transport conditions, thereby causing uneven disinfection effect, and ensuring that the collection tube is always in a qualified disinfection state.
[0015] By setting up a storage component, the side collection tubes can be better exposed to ozone and ultraviolet light, which in turn allows the collection tubes inside the placement tube to be rotated for sterilization and disinfection, thus improving the sterilization and disinfection effect of the collection tubes. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0017] Figure 1 This is a schematic diagram of the overall structure of a collection tube transport device with a continuous sterilization and disinfection structure according to the present invention.
[0018] Figure 2 This is a schematic diagram showing the connection between the storage component and the transport box of a collection tube transport device with a continuous sterilization and disinfection structure according to this utility model.
[0019] Figure 3 This is a schematic diagram of the storage component structure of a collection tube transport device with a continuous sterilization and disinfection structure according to the present invention.
[0020] Figure 4 This is a schematic diagram of the sterilization component structure of a collection tube transport device with a continuous sterilization and disinfection structure according to the present invention.
[0021] In the diagram, 100-transport box, 110-mounting plate, 120-button, 130-sterilization component, 131-corner plate, 132-ultraviolet lamp, 140-sealing cover, 150-air inlet, 160-exhaust port;
[0022] 200 - Sterilization component, 210 - Ozone generator, 220 - Connecting pipe, 230 - Collection box;
[0023] 300-Storage component, 310-Base plate, 320-Fixing rod, 330-Drive motor, 340-Fixing cylinder, 350-Placement cylinder, 360-Divider. Detailed Implementation
[0024] 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.
[0025] Please see Figures 1 to 4 The present invention provides a technical solution: a collection tube transportation device with a continuous sterilization and disinfection structure, comprising: a transportation box 100, a sterilization component 200 and a storage component 300. The sterilization component 200 for continuous sterilization and disinfection of the collection tube is installed on the right side of the transportation box 100, and the storage component 300 for periodically rotating and storing the collection tube is installed inside the transportation box 100.
[0026] A mounting plate 110 is provided on the upper left side of the front end of the transport box 100. A button 120 is installed on the upper side of the mounting plate 110. A sealing cover 140 is hinged to the upper rear side of the transport box 100. A sterilization component 130 is installed on the upper side of the front inner wall and the upper side of the rear inner wall of the transport box 100 respectively.
[0027] The sterilization component 200 includes an ozone generator 210, a connecting pipe 220, and a collection box 230. The rear side of the ozone generator 210 is connected to the collection box 230 through the connecting pipe 220.
[0028] Please see Figures 1 to 4 An exhaust port 160 is provided on the lower left side of the inner wall of the left end of the transport box 100, and an air inlet 150 is provided on the upper right side of the inner wall of the transport box 100. A louver is provided on the outside of the exhaust port 160.
[0029] The sterilization component 130 includes a corner plate 131 and a UV lamp 132. The left and right sides of the UV lamp 132 are respectively fixedly connected to a corner plate 131. The UV lamp 132 is fixed to the inner wall of the transport box 100 through the corner plate 131. In actual use, the height of the UV lamp 132 is greater than the height of the upper end of the placement tube 350.
[0030] The ozone generator 210 is a ceramic plate ozone generator. The inside of the collection box 230 is connected to the air inlet 150, and a miniature fan is installed inside the collection box 230.
[0031] As the first embodiment of this utility model, by setting up a transport box 100 and a sterilization component 200, ozone is produced by the ozone generator 210 in the sterilization component 200 during transportation (the ozone generator 210 can be selected to be turned on at a time or continuously according to actual use). The generated ozone enters the collection box 230 through the connecting pipe 220, and the miniature fan inside the collection box 230 can blow the ozone into the transport box 100, so that the ozone can be evenly distributed inside the transport box 100. At the same time, the purple light on the inner wall of the front side and the inner wall of the rear side of the transport box 100 is also emitted. When the UV lamp 132 is turned on (UV lamp 132 is connected to the power supply via wires and button 120; when the sealing cover 140 is closed, button 120 is pressed to automatically turn on UV lamp 132; when the sealing cover 140 is opened, button 120 is reset and UV lamp 132 automatically turns off), the UV light emitted continuously irradiates the collection tube inside the transport box 100, thereby ensuring that the collection tube is continuously disinfected and sterilized on the transport teeth. This avoids the problem of uneven disinfection effect caused by the decrease in the effectiveness of the disinfectant due to various transport conditions, ensuring that the collection tube is always in a qualified disinfection state.
[0032] Please see Figures 1 to 3The storage component 300 includes a base plate 310, a fixing rod 320, a drive motor 330, a fixing cylinder 340, a placement cylinder 350, and a divider 360. A fixing rod 320 is fixed on the left front side and the right rear side of the upper surface of the base plate 310.
[0033] A fixing cylinder 340 is fixed between the upper ends of the two fixing rods 320. A placement cylinder 350 is rotatably installed inside the fixing cylinder 340. The upper end of the placement cylinder 350 is provided with multiple teeth arranged in a circular structure.
[0034] Each fixed rod 320 has a drive motor 330 fixed on its upper side. Each drive motor 330 has a drive gear on the side near the placement tube 350. The drive gear is connected to the toothed drive of the upper end of the placement tube 350. A partition frame 360 is installed inside the placement tube 350. In actual use, the two drive motors 330 can drive the placement tube 350 to rotate inside the fixed tube 340 through the drive gear on them. This causes the collection tube inside the placement tube 350 to be rotated for sterilization and disinfection, which helps to improve the sterilization and disinfection effect of the collection tube.
[0035] As a second embodiment of this utility model, based on the first embodiment described above, the collection tubes placed inside the storage component 300 are rotated 90 degrees inside the fixed cylinder 340 every 30 minutes by the drive motor 330 on the upper side of the two fixed rods 320 through the drive gear on them. This allows the multiple collection tubes placed inside the placement cylinder 350 to change positions, enabling the side collection tubes to better contact ozone and ultraviolet light. This rotation of the collection tubes inside the placement cylinder 350 for sterilization and disinfection helps to improve the sterilization and disinfection effect of the collection tubes.
[0036] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A collection tube transport device having a continuous germicidal disinfection structure, comprising: Transport box (100), sterilization assembly (200) and storage assembly (300), characterized in that the right side of the transport box (100) is provided with a sterilization assembly (200) for continuous sterilization and disinfection of the collection tube, and the inside of the transport box (100) is provided with a storage assembly (300) for periodic rotation and storage of the collection tube; The left upper side of the front end of the transport box (100) is provided with a mounting plate (110), the upper side of the mounting plate (110) is provided with a button (120), the rear side of the upper end of the transport box (100) is hinged with a sealing cover plate (140), and the upper side of the front side inner wall and the upper side of the rear side inner wall of the transport box (100) are respectively provided with a sterilization part (130); The sterilization assembly (200) comprises an ozone generator (210), a connecting pipe (220) and a collection box (230), and the rear side of the ozone generator (210) is communicated with the collection box (230) through the connecting pipe (220).
2. A collection tube transport device having a continuous germicidal disinfection structure as defined in claim 1, wherein: The left lower side of the left end inner wall of the transport box (100) is provided with an exhaust port (160), the upper side of the right end inner wall of the transport box (100) is provided with an air inlet (150), and the outer side of the exhaust port (160) is provided with a louver.
3. A collection tube transport device having a continuous germicidal disinfection structure as defined in claim 1, wherein: The sterilization part (130) comprises an angle plate (131) and a purple light lamp (132), the left side and the right side of the purple light lamp (132) are respectively fixedly connected with an angle plate (131), and the purple light lamp (132) is fixed in the inner wall of the transport box (100) through the angle plate (131).
4. A collection tube transport device having a continuous germicidal disinfection structure as defined in claim 2, wherein: The ozone generator (210) is a ceramic sheet ozone generator, the inner side of the collection box (230) is connected with the air inlet (150), and the inside of the collection box (230) is provided with a micro fan.
5. A collection tube transport device having a continuous germicidal disinfection structure as defined in claim 1, wherein: The storage assembly (300) comprises a bottom plate (310), a fixed rod (320), a drive motor (330), a fixed cylinder (340), a placing cylinder (350) and a partition frame (360), and the upper surface of the bottom plate (310) is provided with a fixed rod (320) on the left front side and the right rear side.
6. A collection tube transport device having a continuous germicidal disinfection structure as defined in claim 5, wherein: The upper ends of the two fixed rods (320) are fixedly connected with a fixed cylinder (340), the inside of the fixed cylinder (340) is rotatably provided with a placing cylinder (350), and the upper end of the placing cylinder (350) is provided with a plurality of teeth distributed in a circular structure.
7. A collection tube transport device having a continuous germicidal disinfection structure as defined in claim 6, wherein: Each fixed rod (320) is provided with a drive motor (330) on the upper side, each drive motor (330) is provided with a drive gear on the side close to the placing cylinder (350), the drive gear is in transmission connection with the teeth on the upper end of the placing cylinder (350), and the inside of the placing cylinder (350) is provided with a partition frame (360).