Closed pressing sterile Aneriodide cotton swab tank
By designing a sealed, press-operated, sterile An'er iodine swab container, the problems of volatility and contamination during the use of An'er iodine swabs were solved, achieving aseptic operation and a sealed effect, ensuring thorough disinfection and the rational use of the liquid.
Patent Information
- Application Number
- CN202520157100.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-01-23
AI Technical Summary
The existing Aner iodine swab dispenser is prone to contamination due to the volatility of the swabs, which exposes them to the air. Furthermore, it cannot be kept sealed, resulting in incomplete disinfection or insufficient liquid.
A sealed, press-type sterile iodine swab container was designed. Through the combination structure of the swab container base, the swab container body, the pressing groove, the pull spring, and the swab sealing bag, sterile operation and a sealing effect are achieved, preventing the evaporation of iodine liquid and ensuring that an appropriate amount of iodine swabs can be obtained each time.
This allows for the use of Aner iodine swabs under sterile conditions, avoiding liquid evaporation and contamination, ensuring the effectiveness and efficiency of each use, and preventing issues of too much or too little liquid.
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Figure CN223765050U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of can pressing technology, specifically a sealed, pressable, sterile Aner iodine swab can. Background Technology
[0002] An'er iodine has a wide range of clinical applications. It attacks bacteria at multiple targets, has strong bactericidal power, and helps prevent bacteria from developing resistance. Its core components can break down biofilms, allowing the disinfectant to fully penetrate the bacteria within the membrane and achieve a thorough sterilization effect. It is often used clinically for skin disinfection.
[0003] In the existing technology, because iodine is volatile, the cotton swab container needs to be opened when used clinically, which exposes all the cotton swabs to the air. Moreover, the need to handle them one by one by hand can easily cause contamination. If the cotton swab container is not sealed after opening, the iodine will evaporate quickly. When used again, there may be insufficient iodine liquid, or when it is opened for the first time, there may be too much iodine liquid, which may require too long to dry, resulting in incomplete disinfection. Utility Model Content
[0004] The purpose of this invention is to provide a sealed, press-fit sterile iodine swab container to solve the problems caused by the volatility of iodine. Currently, clinical use requires opening the container, exposing all swabs to the air. Furthermore, handling each swab individually by hand can easily lead to contamination. Additionally, if the container is not sealed after opening, the iodine evaporates quickly, resulting in insufficient iodine solution upon reuse, or too much iodine solution requiring excessive drying time upon initial opening, both of which can lead to incomplete sterilization.
[0005] To achieve the above objectives, a sealed, press-fit sterile iodine swab dispenser is provided, comprising a swab dispenser base, a swab dispenser body fixed inside the base, the swab dispenser body extending to the top of the base, an information strip affixed to the outer surface of the swab dispenser body, a swab insert plate fixed inside the swab dispenser body, multiple swab insertion holes penetrating the top surface of the insert plate, multiple pressing grooves evenly distributed downwards on the top surface of the swab dispenser body, a return spring fixed to the bottom of each pressing groove, a lower plate elastically connected to the top of the return spring, a sleeve fixed to the top of the lower plate, sleeve blocks fitted onto the outer surface of each sleeve, a pressing ring slidably connected to the inner wall of the top side of the swab dispenser body, multiple sleeve blocks fixedly connected to the pressing ring, an upper plate provided on the top surface of each pressing groove, both the upper and lower plates slidably connected to the inner wall of the pressing groove, a swab sealing bag provided inside the pressing ring, and an adhesive strip fixed to one end of each swab sealing bag.
[0006] According to the described sealed, pressable, sterile iodine swab container, a blocking ring is fixed at the bottom of the pressing ring, and the overall height of the blocking ring is smaller than the overall height of the pressing ring.
[0007] According to the described sealed, pressable, sterile iodine swab container, the outer surface of the swab container body is provided with multiple arc-shaped adhesive grooves, and the introduction strip is pasted on the outer side of the multiple arc-shaped adhesive grooves.
[0008] According to the aforementioned sealed, pressable, sterile iodine swab container, the inner wall of the swab container body is uniformly provided with multiple sliding grooves, and each of the multiple sliding grooves corresponds one-to-one with the pressing groove.
[0009] According to the described sealed, press-fit sterile iodine swab container, the multiple pull-back springs have good elasticity.
[0010] According to the described sealed, press-fit sterile iodine swab container, the base of the swab container is fixed with a protective bottom plate, and the diameter of the protective bottom plate is the same as the diameter of the base of the swab container.
[0011] According to the described sealed, press-fit sterile iodine swab container, both the base of the swab container and the outer surface of the swab container body are moisture-proof.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows: First, tear off the adhesive strip to open the cotton swab bag. Then, pour the An'er iodine liquid into the cotton swab container. Next, insert multiple An'er iodine cotton swabs into the cotton swab insert plate on the inner wall of the container. Then, seal the cotton swab bag, ensuring the entire operation remains aseptic. When using the An'er iodine cotton swabs, since the overall height of the cotton swabs is significantly lower than the overall height of the cotton swab container, you can press down on the upper plate of the multiple pressing grooves with your palm. Furthermore, the upper and lower plates... All components are slidably connected to the inner wall of the pressing groove. Under the condition that the pressing ring slides against the inner wall of the top side of the cotton swab container, the pressing ring can be made to slide downwards. When it slides to the top side of the An'er iodine cotton swab, the adhesive strip can be torn off and the An'er iodine cotton swab can be taken out. After taking it out, by utilizing the elastic action of the return springs at the bottom of the inner side of the multiple pressing grooves, the lower plate, the sleeve column, the upper plate, and the pressing ring are all made to spring back upwards and seal into the cotton swab bag. This can further promote the sealing effect of the cotton swab container and also prevent too much An'er iodine liquid from causing the drying time to be too long.
[0013] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments;
[0015] Figure 1 This is a schematic diagram of the overall structure of the sealed, press-fit sterile iodine swab container of this utility model;
[0016] Figure 2This is a horizontally laid longitudinal cross-section of the sealed, press-fit sterile Aner iodine swab container of this utility model.
[0017] Figure 3 This is an enlarged schematic diagram of point A of the sealed, press-fit sterile iodine swab container of this utility model;
[0018] Figure 4 This is a longitudinal cross-sectional view of the sealed, press-fit sterile iodine swab container of this utility model, taken at an angle.
[0019] In the diagram: 1. Cotton swab container base; 2. Cotton swab container body; 3. Cotton swab insertion plate; 4. Cotton swab insertion hole; 5. Pressing groove; 6. Pull-back spring; 7. Lower plate; 8. Sleeve column; 9. Sleeve block; 10. Pressing ring; 11. Upper plate; 12. Cotton swab sealing bag; 13. Adhesive strip; 14. Blocking ring; 15. Arc-shaped adhesive groove; 16. Sliding groove; 17. Protective base plate. Detailed Implementation
[0020] 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 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.
[0021] Please see Figure 1-4This utility model provides a technical solution: a sealed, pressable, sterile iodine swab container, including a swab container base 1, a swab container body 2 fixed inside the base 1, the swab container body 2 extending to the top of the base 1, an introduction strip affixed to the outer surface of the swab container body 2, a swab insertion plate 3 fixed inside the swab container body 2, multiple swab insertion holes 4 penetrating the top surface of the insertion plate 3, multiple pressing grooves 5 evenly distributed downwards on the top surface of the swab container body 2, a return spring 6 fixed to the bottom of each pressing groove 5, a lower plate 7 elastically connected to the top of the return spring 6, and a sleeve post 8 fixed to the top of the lower plate 7, with multiple sleeve posts 8 having an outer surface evenly distributed downwards. The cotton swab container 2 is fitted with a sleeve block 9. A pressing ring 10 is slidably connected to the inner wall of the top side of the container body 2. Multiple sleeve blocks 9 are fixedly connected to the pressing ring 10. Multiple pressing grooves 5 are provided with upper plates 11 on their top surfaces. Multiple upper plates 11 and lower plates 7 are slidably connected to the inner wall of the pressing grooves 5. Cotton swab sealing bags 12 are provided inside the pressing ring 10. Adhesive strips 13 are fixed to one end of multiple cotton swab sealing bags 12. In the existing technology, because An'er iodine is volatile, it is currently necessary to open the cotton swab container during clinical use, causing all cotton swabs to be exposed to the air. Moreover, it is easy to cause contamination by handling them individually by hand. If the cotton swab container is not sealed after opening, An'er iodine will... The rapid evaporation of cotton swabs can lead to insufficient An'er iodine solution upon reuse, or excessive An'er iodine solution requiring a long drying time upon initial opening, both of which can result in incomplete disinfection. To address these issues, the adhesive strip 13 can be peeled off beforehand, the cotton swab bag 12 opened, and the An'er iodine solution poured into the cotton swab container 2. Multiple An'er iodine-soaked cotton swabs are then inserted into the cotton swab insert plate 3 on the inner wall of the container 2. The cotton swab bag 12 is then sealed, ensuring the entire operation remains aseptic. When using An'er iodine-soaked cotton swabs, since the overall height of the swabs is significantly lower than the overall height of the container 2, the palm of the hand can be used to guide the swabs downwards. Pressing the upper plate 11 on the top surface of the multiple pressing grooves 5, and with the upper plate 11 and lower plate 7 slidingly connected to the inner wall of the pressing grooves 5, and the pressing ring 10 sliding against the inner wall of the top side of the cotton swab container body 2, can cause the pressing ring 10 to slide downwards. When it slides to the top side of the iodine cotton swab, the adhesive strip 13 can be torn off and the iodine cotton swab can be taken out. After taking it out, by utilizing the elasticity of the return spring 6 at the bottom of the inner side of the multiple pressing grooves 5, the lower plate 7, the sleeve 8, the upper plate 11, and the pressing ring 10 are all caused to rebound upwards, sealing the cotton swab bag 12, thereby further ensuring that the cotton swab container body 2 maintains a sealed effect.
[0022] A blocking ring 14 is fixed to the bottom of the pressing ring 10. The overall height of the blocking ring 14 is smaller than that of the pressing ring 10, so that the blocking ring 14 can squeeze out excess iodine solution. Multiple arc-shaped adhesive grooves 15 are opened on the outer surface of the cotton swab container body 2. The introduction strip is pasted on the outer side of the multiple arc-shaped adhesive grooves 15, so as to further reinforce the adhesion of the introduction strip. Multiple sliding grooves 16 are evenly opened on the inner wall of the cotton swab container body 2. The multiple sliding grooves 16 correspond one-to-one with the pressing grooves 5, so as to facilitate the sliding of the sleeve block 9, thereby ensuring that the pressing ring 10 can rebound.
[0023] Multiple pull-back springs 6 have good elasticity, thereby improving the rebound effect of the pressing ring 10. The cotton swab container base 1 is fixed with a protective base plate 17. The diameter of the protective base plate 17 is the same as that of the cotton swab container base 1. The protective base plate 17 is used to protect the cotton swab container body 2. Both the cotton swab container base 1 and the outer surface of the cotton swab container body 2 are moisture-proof to prevent them from getting damp and affecting the use effect of the iodine liquid inside the cotton swab container body 2.
[0024] Working principle: First, tear off the adhesive strip 13 and open the cotton swab sealing bag 12. Then, pour the An'er iodine liquid into the cotton swab container body 2. Next, insert multiple An'er iodine cotton swabs into the cotton swab insertion plate 3 on the inner wall of the cotton swab container body 2. At this time, seal the cotton swab sealing bag 12 to keep the entire operation under sterile conditions. When An'er iodine cotton swabs are needed, since the overall height of the An'er iodine cotton swabs is significantly lower than the overall height of the cotton swab container body 2, you can press down on the upper plate 11 on the top surface of the multiple pressing grooves 5 with your palm. The upper plate 11 and the lower plate 7 slide against the inner wall of the pressing groove 5. Under the condition that the pressing ring 10 slides against the inner wall of the top side of the cotton swab container body 2, the pressing ring 10 can be made to slide downwards. When it slides to the top side of the iodine cotton swab, the adhesive strip 13 can be torn off and the iodine cotton swab can be taken out. After taking it out, by utilizing the elastic action of the return spring 6 at the bottom of the inner side of the multiple pressing grooves 5, the lower plate 7, the sleeve 8, the upper plate 11, and the pressing ring 10 are all made to rebound upwards and seal the cotton swab bag 12. This can further promote the sealing effect of the cotton swab container body 2 and also prevent too much iodine liquid from causing the drying time to be too long.
[0025] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.
Claims
1. A sealed, press-fit sterile iodine swab container, comprising a swab container base (1), a swab container body (2) fixed inside the swab container base (1), the swab container body (2) extending to the top of the swab container base (1) with an overall height, an introduction strip pasted on the outer surface of the swab container body (2), a swab insert plate (3) fixed inside the swab container body (2), and multiple swab insertion holes (4) penetrating the top surface of the swab insert plate (3), characterized in that: The cotton swab tank body (2) top surface is uniformly provided with a plurality of pressing grooves (5), a plurality of the pressing grooves (5) are fixed with a pull-back spring (6) on the inner bottom, the pull-back spring (6) top is elastically connected with a lower plate (7), the lower plate (7) top is fixed with a sleeve column (8), a plurality of the sleeve column (8) outer surface is sleeved with a sleeve block (9), the cotton swab tank body (2) top side inner wall is slidably connected with a pressing ring (10), a plurality of the sleeve block (9) are fixedly connected with the pressing ring (10), a plurality of the pressing grooves (5) top surface is provided with an upper plate (11), a plurality of the upper plate (11) and the lower plate (7) are slidably connected with the pressing groove (5) inner wall, the pressing ring (10) inner side is provided with a cotton swab bag (12), a plurality of the cotton swab bag (12) one end is fixed with a sticky strip (13).
2. The closed, push-to-dispense, aseptically sterilized, iodine-impregnated swab container of claim 1, wherein: The pressing ring (10) bottom is fixed with a blocking ring (14), the blocking ring (14) overall height is smaller than the overall height of the pressing ring (10).
3. The closed, push-to-dispense, aseptically sterilized, iodine-impregnated swab container of claim 1, wherein: The cotton swab tank body (2) outer surface is provided with a plurality of arc-shaped sticky grooves (15), the introduction strip is pasted on the outer side of a plurality of arc-shaped sticky grooves (15).
4. The closed, push-to-dispense, aseptically sterilized, iodine-impregnated swab container of claim 1, wherein: The cotton swab tank body (2) inner wall is uniformly provided with a plurality of sliding grooves (16), a plurality of the sliding grooves (16) are one-to-one corresponding with the pressing grooves (5).
5. The closed push-button aseptically sterile iodine swab jar of claim 1 wherein: A plurality of the pull-back spring (6) has good elastic performance.
6. The closed, push-to-open, aseptically sterilized, iodine-impregnated swab jar of claim 1, wherein: The cotton swab tank base (1) is fixed with a protection bottom plate (17), the protection bottom plate (17) diameter is consistent with the diameter of the cotton swab tank base (1).
7. The closed, push-to-dispense, aseptically sterilized, iodine-impregnated swab container of claim 1, wherein: The cotton swab tank base (1) and the cotton swab tank body (2) outer surface are both moisture-proof.