An ion wind cleaning syringe device
By designing an ion air cleaning needle tube device, using sealed space and positive pressure equipment, the problem of incomplete needle tube cleaning in the prior art is solved, and the rapid and thorough cleaning of the needle tube and high hygiene standards are achieved.
Patent Information
- Application Number
- CN202310124110.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-02-15
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2043-02-15
Smart Images

Figure CN116213377B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical product cleaning devices, and more particularly to an ion wind cleaning syringe device. Background Art
[0002] Syringes are a common tool in the medical industry.
[0003] Before a syringe is used, it needs to be cleaned.
[0004] Existing syringe cleaning is mainly carried out by combining manual labor with cleaning equipment. The syringe cleaning process requires several steps, and each step is manually operated to clean the equipment.
[0005] Although most of the dust and impurities on the syringe are cleaned, since the syringe is exposed to the working environment before being transferred to the next step, and the sanitation level of the working environment is Class B, which is lower than the actual sanitation standard for syringe use, the syringe cleaning is not thorough. Summary of the Invention
[0006] In view of the deficiencies of the existing technology, the purpose of the present invention is to provide an ion wind cleaning syringe device, which has the effect of quickly and thoroughly cleaning the syringe.
[0007] The above technical object of the present invention is achieved through the following technical solutions:
[0008] An ion wind cleaning syringe device includes a device body. The device body includes a chassis, a workbench is provided at the top of the chassis, a support frame is provided on the top of the workbench, several transparent glasses are provided on the outside of the support frame, and the several transparent glasses and the workbench together form a sealed space. A working glove is provided at the position of a working hole opened along the edge direction of the chassis on each of the several transparent glasses, and the working glove is located in the sealed space;
[0009] The sealed space is divided into an unpacking area and a cleaning area.
[0010] In a preferred example of the present invention, it can be further configured that: a placement plate is provided at one end of the chassis, an opening with a movable baffle is opened on one side of the transparent glass close to the placement plate, and the opening faces the placement plate;
[0011] A glass partition is provided in the sealed space close to the placement plate, and the unpacking area is located between the glass partition and the placement plate;
[0012] A positive pressure device is provided on the unpacking area;
[0013] An inlet and outlet is opened on one side of the glass partition.
[0014] In a preferred embodiment, the present invention can be further configured as follows: along the direction from the glass partition to the other end of the chassis, the cleaning and processing area is sequentially provided with an ion wind cleaning area, a syringe arranging area, a silicone oil spraying area, a filling area, and a plugging area.
[0015] In a preferred embodiment, the present invention can be further configured as follows: the ion wind cleaning area includes a storage plate disposed on the workbench, and an ion wind working part is also disposed on the workbench.
[0016] In a preferred embodiment, the present invention can be further configured as follows: two second support frames are arranged in the syringe arranging area, and a plurality of jigs are jointly placed on the two second support frames. A plurality of syringes are vertically and juxtaposedly placed on each jig;
[0017] A Luer connector temporary storage area is arranged on the workbench, and the Luer connector temporary storage area is located in the syringe arranging area.
[0018] By adopting the above technical solution,
[0019] In a preferred embodiment, the present invention can be further configured as follows: a conveying part is arranged on the workbench, and the conveying part passes through the silicone oil spraying area, the filling area, and the plugging area;
[0020] A silicone oil spraying station, a filling station, a plugging station, and a vibrating screen are arranged on the workbench, and the vibrating screen is connected to the plugging station;
[0021] The silicone oil spraying station is located in the silicone oil spraying area;
[0022] The filling station is located in the filling area;
[0023] The plugging station and the vibrating screen are located in the plugging area, and a plurality of rubber plugs are placed on the vibrating screen;
[0024] A sliding track is arranged on the conveying part, and the jig moves on the sliding track;
[0025] The conveying part is located directly below the working ends of the silicone oil spraying station, the filling station, and the plugging station.
[0026] In a preferred embodiment, the present invention can be further configured as follows: a driving-out track part is arranged at one end of the workbench away from the placement plate.
[0027] In summary, the present invention includes at least one of the following beneficial technical effects:
[0028] 1. A sealed space is formed jointly by a workbench and a transparent glass. An unpacking area and a cleaning and treatment area are arranged in the sealed space, so that the syringe remains in the sealed space from cleaning to filling, avoiding interference from dust in the external environment and facilitating the operator to quickly clean the syringe. Description of the Drawings
[0029] Figure 1 It is a schematic diagram of the overall structure of this embodiment.
[0030] In the figure, 1 is the device body; 11 is the chassis; 12 is the workbench; 13 is the transparent glass; 14 is the sealed space; 131 is the station hole; 132 is the glove; 2 is the disassembly area; 3 is the cleaning and treatment area; 4 is the placement plate; 41 is the opening; 42 is the glass partition; 43 is the inlet and outlet; 31 is the ion wind cleaning area; 32 is the syringe sorting area; 33 is the silicone oil spraying area; 311 is the storage plate; 312 is the ion wind working part; 321 is the second support frame; 322 is the fixture; 323 is the temporary storage area for Luer connectors; 5 is the conveying part; 331 is the silicone oil spraying station; 341 is the filling station; 351 is the stopper adding station; 352 is the vibrating screen; 6 is the driving out track part. Detailed Embodiment
[0031] The present invention will be further described in detail below with reference to the accompanying drawings.
[0032] Embodiment:
[0033] Referring to Figure 1 , an ion wind cleaning syringe device disclosed by the present invention includes a device body 1. The top view of the entire device body 1 is in an L shape. The device body 1 includes a chassis 11. A workbench 12 is arranged on the top of the chassis 11. The auxiliary figure of the workbench 12 is in an L shape. A support frame is arranged on the top of the workbench 12. A plurality of transparent glasses 13 are arranged on the outer side and the top of the support frame. A sealed space 14 is formed between the plurality of transparent glasses 13 and the workbench 12.
[0034] The sanitation grade inside the sealed space 14 is Class A. The sanitation grade outside the device body 1 is Class B or Class C. It should be particularly noted that the Class A, Class B, and Class C here are all well-known sanitation grade classifications in the field.
[0035] A plurality of station holes 131 are opened on the upper edge of the transparent glass 13 in a vertical state along the edge direction of the chassis 11.
[0036] A work glove 132 is arranged on each station hole 131. The work glove 132 is located inside the sealed space 14. When the operator inserts his hand into the work glove 132, he can operate the syringe and equipment inside the sealed space 14.
[0037] One end of the chassis 11 is provided with a placement plate 4. The placement plate 4 is a temporary placement area for the operator to remove the outer packaging of the syringe.
[0038] An opening 41 with a baffle installed is provided on one side of the transparent glass 13 close to the placement plate 4. The opening 41 faces the placement plate 4 directly. The syringe with the outer packaging removed enters the sealed space 14 through the opening 41.
[0039] The sealed space 14 is divided into an unpacking area and a cleaning and processing area 3. The opening 41 is located in the unpacking area. A glass partition 42 is provided in the sealed space 14 close to the placement plate 4, and the unpacking area is located between the glass partition 42 and the placement plate 4.
[0040] A positive pressure device (not shown in the figure) is provided in the unpacking area. The positive pressure device blows out a laminar flow with a hygienic grade of A. The laminar flow goes from top to bottom, and some dust that cannot be recognized by the naked eye on the syringe is blown out of the outside of the device body 1 through a pipeline. Due to the action of the positive pressure device, the atmospheric pressure in the unpacking area is greater than the atmospheric pressure in the space where the placement plate 4 is located. The operator then removes the inner packaging of the syringe in the unpacking area. Under the action of the atmospheric pressure, impurities on the syringe flow outside the device body 1 under the action of the atmospheric pressure difference between the inside and outside of the transparent glass 13.
[0041] An inlet and outlet 43 is provided on one side of the glass partition 42.
[0042] In the cleaning and processing area 3, in the direction from the glass partition 42 to the other end of the chassis 11, an ion wind cleaning area 31, a syringe sorting area 32, a silicone oil spraying area 33, a filling area, and a plugging area are arranged in sequence.
[0043] The ion wind cleaning area 31 includes a storage plate 311, the storage plate 311 is arranged on the workbench 12, and an ion wind working part 312 is also arranged on the workbench 12. In the syringe sorting area 32, two second support frames 321 are provided. A number of jigs 322 are placed together on the two second support frames 321, and a number of syringes are placed vertically and side by side on each jig 322. A Luer connector temporary storage area 323 is arranged on the workbench 12, and the Luer connector temporary storage area 323 is located in the syringe sorting area 32.
[0044] A transfer unit 5 is provided on the workbench 12. The transfer unit 5 passes through the silicone oil spraying area 33, the filling area, and the stopper adding area. A silicone oil spraying station 331, a filling station 341, a stopper adding station 351, and a vibrating screen 352 are provided on the workbench 12. The vibrating screen 352 is connected to the stopper adding station 351. The silicone oil spraying station 331 is located within the silicone oil spraying area 33. The filling station 341 is located within the filling area. The stopper adding station 351 and the vibrating screen 352 are located within the stopper adding area. A number of rubber stoppers are placed on the vibrating screen 352. A sliding track is provided on the transfer unit 5, and the fixture 322 moves on the sliding track. The transfer unit 5 is directly below the working ends of the silicone oil spraying station 331, the filling station 341, and the stopper adding station 351. The transfer unit 5 can perform repeated linear motion.
[0045] One end of the workbench 12 away from the placement board 4 is provided with a driving-out track unit 6.
[0046] The implementation principle of the above embodiment is as follows:
[0047] The operator first starts the positive pressure device of the equipment and pre-starts the transfer unit 5, the silicone oil spraying station 331, the filling station 341, the stopper adding station 351, the vibrating screen 352, and the driving-out track unit 6.
[0048] The operator places the syringe on the placement board 4 and removes the outer packaging of the syringe.
[0049] After removing the outer packaging of all syringes, the syringes with the outer packaging removed are placed in the splitting area 2 through the opening 41.
[0050] At this time, each operator takes their place. The operator puts both hands into the corresponding gloves 132.
[0051] The operator at the splitting station removes the inner packaging of the syringe. Under the action of the positive pressure device, impurities attached to the syringe are blown outside the device body 1.
[0052] The operator sends the syringe into the ion wind cleaning area 31. The operator places the syringe vertically directly below the working end of the ion wind working part 312.
[0053] Next, the operator sends the syringe after being cleaned by the ion wind into the syringe sorting area 32. The operator vertically places the syringe on the fixture 322. Eight syringes are placed on each fixture 322.
[0054] The operator places the fixture 322 on the transfer unit 5.
[0055] As the transfer unit 5 moves, the transfer unit 5 moves for a while, stops moving, and then moves again.
[0056] As the jig 322 drives the eight syringe barrels to stay under the silicone oil spraying station 331, the filling station 341 and the stopper adding station 351 in sequence for a period of time.
[0057] The syringe barrels are completely cleaned.
[0058] Finally, the syringe barrels move outside the device body 1 along with the exit track section 6.
[0059] The operator collects and arranges the syringe barrels filled with the solution.
[0060] The embodiments of this specific implementation manner are all preferred embodiments of the present invention, and do not limit the protection scope of the present invention accordingly. Therefore, all equivalent changes made according to the structure, shape and principle of the present invention shall be covered within the protection scope of the present invention.
Claims
1. An ion wind cleaning syringe device, comprising a device body (1), characterized in that, the device body (1) includes a chassis (11), a workbench (12) is arranged on the top of the chassis (11), a support frame (121) is arranged on the top of the workbench (12), a plurality of transparent glasses (13) are arranged on the outside of the support frame (121), and the plurality of transparent glasses (13) and the workbench (12) together form a sealed space (14). A plurality of working gloves (132) are arranged at the working holes (131) opened along the edge direction of the chassis (11) on the plurality of transparent glasses (13), and the working gloves (132) are located in the sealed space (14); the sealed space (14) is divided into an unpacking area (2) and a cleaning and processing area (3); a placement plate (4) is arranged at one end of the chassis (11), and an opening (41) with a movable baffle is arranged on one side of the transparent glass (13) close to the placement plate (4), and the opening (41) faces the placement plate (4); a glass partition (42) is arranged in the sealed space (14) close to the placement plate (4), and the unpacking area (2) is located between the glass partition (42) and the placement plate (4); a positive pressure device is arranged on the unpacking area (2); an inlet and outlet (43) is arranged on one side of the glass partition (42); along the direction from the glass partition (42) to the other end of the chassis (11), the cleaning and processing area (3) is sequentially provided with an ion wind cleaning area (31), a syringe sorting area (32), a silicone oil spraying area (33), a filling area (34) and a stopper adding area (35); two second support frames (321) are arranged in the syringe sorting area (32), and a plurality of jigs (322) are placed together on the two second support frames (321), and a plurality of syringes are vertically arranged side by side on each jig (322); a Luer connector temporary storage area (323) is arranged on the workbench (12), and the Luer connector temporary storage area (323) is located in the syringe sorting area (32); a conveyor (5) is arranged on the workbench (12), and the conveyor (5) passes through the silicone oil spraying area (33), the filling area (34) and the stopper adding area (35); a silicone oil spraying station (331), a filling station (341), a stopper adding station (351) and a vibrating screen (352) are arranged on the workbench (12), and the vibrating screen (352) is connected to the stopper adding station (351); the silicone oil spraying station (331) is located in the silicone oil spraying area (33); the filling station (341) is located in the filling area (34); the stopper adding station (351) and the vibrating screen (352) are located in the stopper adding area (35), and a plurality of rubber stoppers are placed on the vibrating screen (352); a sliding track is arranged on the conveyor (5), and the jig (322) moves on the sliding track; The conveying part (5) is located directly below the working ends in the silicone oil spraying station (331), the filling station (341), and the stopper adding station (351).
2. An ion wind cleaning syringe device according to claim 1, characterized in that: The ion wind cleaning area (31) includes a storage plate (311), the storage plate (311) is arranged on the workbench (12), and an ion wind working part (312) is also arranged on the workbench (12).
3. An ion wind cleaning syringe device according to claim 2, characterized in that: A driving-out track part (6) is arranged at one end of the workbench (12) away from the placement plate (4).
Citation Information
Patent Citations
Intelligent medical instrument recycling system
CN108372184A
Washing after sterilization of ampoule injection weathers device
CN205289172U