Blood glucose test strip storage box
By designing a linked structure for the storage body, storage box, sliding parts, and sliding groove, the blood glucose test strip storage box can be accurately ejected in a single operation, solving the problem of removing multiple test strips at the same time in existing technologies, and improving the efficiency of use and the accuracy of testing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN UNIV GENERAL HOSPITAL
- Filing Date
- 2025-06-17
- Publication Date
- 2026-05-01
AI Technical Summary
The existing blood glucose test strip storage box cannot take out a single test strip at a time, which makes it inconvenient to use and easily contaminates the test strips, affecting the accuracy of the test results.
Design a blood glucose test strip storage box, comprising a storage body, a storage compartment, a slider, and a sliding groove. Through the coordinated operation of the sealing section, sliding section, and pushing section of the slider, a single test strip can be accurately dispensed in one go.
It improves efficiency, reduces the risk of contamination, ensures the quality and accuracy of the test strips, and provides a good user experience.
Smart Images

Figure CN224184782U_ABST
Abstract
Description
A blood glucose test strip storage box Technical Field
[0001] This application relates to the field of medical device technology, and more particularly to a blood glucose test strip storage box. Background Technology
[0002] Blood glucose test strips are consumables used in conjunction with blood glucose meters. They are widely used by diabetic patients for daily monitoring of glucose concentration in capillary whole blood, helping to achieve more accurate and convenient blood glucose management. For ease of carrying and storage, blood glucose test strips are generally made of plastic with a certain degree of strength.
[0003] However, existing blood glucose test strip storage boxes have relatively simple structures, mostly consisting of sealed, internally-filled containers where test strips are stacked or scattered, lacking effective restraint, guidance, or separation structures. In practical use, users cannot easily remove a single test strip at once, often needing to manually flip or clip them, which can easily lead to multiple strips being removed simultaneously or accidental contact with the test area. This not only affects ease of use but may also contaminate the test area, causing a decrease in glucose oxidase activity and consequently affecting the accuracy of blood glucose test results.
[0004] Therefore, existing technologies have defects and shortcomings, and need further improvement and development. Summary of the Invention
[0005] In view of the shortcomings of the prior art, the purpose of this application is to provide a blood glucose test strip storage box, which aims to solve the problem that the blood glucose test strip storage box in the prior art cannot take out one test strip at a time.
[0006] The technical solution adopted by this application to solve the technical problem is as follows: a blood glucose test strip storage box for storing blood glucose test strips, the blood glucose test strip storage box comprising:
[0007] The storage body has a sliding groove inside; the storage body also has an exposed notch on the top.
[0008] A storage box for storing blood glucose test strips; the storage box is detachably mounted on the inner side of the storage body.
[0009] A sliding member is slidably disposed in the sliding groove; the sliding member has an integrally formed sealing section, sliding section and pushing section, and the pushing section has a pushing groove on the side near the storage box; the wall thickness of the pushing groove is set to the thickness of a blood glucose test strip.
[0010] The sealing section covers the exposed notch; the sliding section is disposed below the storage box; the sliding section is disposed in the sliding groove;
[0011] When the sliding section moves downward, it causes the sealing section to move upward along the sliding groove, opening the exposed notch and pushing the blood glucose test strip pushed out of the storage box through the exposed notch.
[0012] Optionally, the sliding groove has an outer groove edge and an inner groove edge. The inner groove edge has an assembly opening on the side closer to the storage box. Sealing strips are provided on both the inner and outer sides of the assembly opening. The sealing strips are used to cooperate with the outer wall of the storage box for sealing. A push-pull opening is provided on the side of the outer groove edge away from the assembly opening. The exposed notch is provided on the outer groove edge. The exposed notch is located above the assembly opening. The exposed notch is used to assemble the storage box. The arc length of the exposed notch is set to the arc length of a quarter circle.
[0013] Optionally, a sliding cap is provided on the sealing section, the sliding cap is disposed at the exposed notch, the sliding cap is used to seal and open the exposed notch, and the sliding cap slides along one side of the exposed notch.
[0014] Optionally, the sliding cap is provided with an upper arc segment and a lower arc segment, which are connected by a sealing strip; a cavity is provided between the upper arc segment and the lower arc segment, which is used to prevent obstruction of the sliding cap and allow it to slide along one side of the exposed notch.
[0015] Optionally, a plurality of large cylinders are fixedly arranged at even intervals on the side of the slider near the outer groove, and a plurality of small cylinders are fixedly arranged at even intervals on the side of the slider away from the outer groove. Both the large and small cylinders are used to slide in contact with the outer and inner groove edges to maintain the movement trajectory of the slider within the sliding groove.
[0016] Optionally, a push block is provided at the bottom of the push slot, the push block corresponds to the notch of the blood glucose test strip, the thickness of the push block is set to the thickness of a blood glucose test strip, and the push block is used to push the blood glucose test strip.
[0017] Optionally, the top of the storage box is provided with a positioning arc, and the bottom of the storage box is provided with a positioning block corresponding to the push block. The positioning block is used to engage with the notch of the blood glucose test strip, and the positioning arc is used to engage with the arc top of the blood glucose test strip.
[0018] Optionally, the storage box is further provided with a push plate, which is used to push the blood glucose test strip along the trajectory of the positioning block and the positioning arc to slide into the push groove. A spring is provided behind the push plate, one end of the spring is fixedly connected to the push plate, and the other end of the spring is fixedly connected to the rear wall of the storage box.
[0019] Optionally, the blood glucose test strip storage box further includes a pressing button, which is fixedly connected to the slider and extends from the push-pull opening.
[0020] Optionally, the blood glucose test strip storage box further includes an upper retaining block and a lower retaining block. The upper retaining block is disposed on the side of the inner groove away from the exposed notch, and the lower retaining block is disposed below the storage box. The upper retaining block is used to cooperate with the lower retaining block to fix the storage box.
[0021] Compared with existing technologies, this application provides a blood glucose test strip storage box. This storage box, through the arrangement of a storage body, storage compartment, sliding component, sliding groove, and exposed notch, forms a structure capable of accurately ejecting a single blood glucose test strip at a time. The sliding component is integrally formed with a sealing section, a sliding section, and a pushing section, resulting in a compact structure and convenient assembly. The thickness of the pushing groove on the pushing section is limited to the thickness of a single blood glucose test strip, effectively restricting the number of strips ejected—only one strip is ejected at a time. This solves the problem of multiple strips being removed simultaneously in existing blood glucose test strip storage boxes, improving retrieval efficiency and reducing the risk of contamination. Simultaneously, by moving downwards, the sliding section drives the sealing section upwards, opening the exposed notch, and the pushing section simultaneously ejects the blood glucose test strip, achieving automatic ejection and opening linkage operation. The operation process is simple and provides a good user experience. Attached Figure Description
[0022] Figure 1 is a three-dimensional structural diagram of the blood glucose test strip storage box provided in this application;
[0023] Figure 2 is a three-dimensional exploded view of the blood glucose test strip storage box provided in this application;
[0024] Figure 3 is a front view of the blood glucose test strip storage box provided in this application;
[0025] Figure 4 is a cross-sectional view along the I-I direction in Figure 3 provided in this application;
[0026] Figure 5 is an enlarged schematic diagram of point A in Figure 4 provided in this application.
[0027] Figure 6 is a cross-sectional view of the blood glucose test strip storage box provided in this application when a blood glucose test strip is dispensed;
[0028] Figure 7 is a three-dimensional exploded view of the storage body and storage box of the blood glucose test strip storage box provided in this application.
[0029] Explanation of reference numerals in the attached figures:
[0030] 10. Blood glucose test strip storage box; 20. Blood glucose test strip; 11. Storage body; 12. Storage box; 13. Sliding component; 14. Press button; 15. Upper retaining block; 16. Lower retaining block; 111. Exposed notch; 112. Sliding groove; 121. Spring; 122. Positioning block; 123. Push plate; 131. Sealing section; 132. Sliding section; 133. Pushing section; 134. Large cylinder; 135. Small cylinder; 1121. Outer groove edge; 1122. Inner groove edge; 1123. Assembly port; 1124. Push-pull port; 1125. Sealing strip; 1311. Sliding cap; 1312. Upper arc segment; 1313. Lower arc segment; 1314. Sealing strip; 1315. Cavity; 1331. Pushing groove; 1332. Pushing block. Detailed Implementation
[0031] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.
[0032] In the description of this application, it should be understood that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are used only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on this application. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, unless otherwise stated, "a plurality of" means two or more.
[0033] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0034] Referring to Figures 1 to 7, the first embodiment of this application provides a blood glucose test strip storage box 10. The blood glucose test strip storage box 10 includes a storage body 11, a sliding groove 112, an exposed notch 111, a storage box 12, a slider 13, a sliding cap 1311, a push groove 1331, a push block 1332, a positioning block 122, a positioning arc, a push plate 123, a spring 121, a pressing button 14, and an upper clamping block 15 and a lower clamping block 16. The components work together to achieve accurate single-sheet output and sealed preservation of blood glucose test strips 20, solving the problem in the prior art that it is impossible to take out a single blood glucose test strip 20 at a time.
[0035] The main structure of the blood glucose test strip storage box 10 is a storage body 11, with a sliding groove 112 inside and an exposed notch 111 above it. The storage compartment 12 is detachably installed on the inner side of the storage body 11. The storage compartment 12 is used to store multiple blood glucose test strips 20. Multiple blood glucose test strips arranged side by side will not damage the blood glucose test strips. The shape of the blood glucose test strip 20 is that it has a notch at the bottom, a test area is provided at the upper part of the notch, and the top is arc-shaped. The arc-shaped area can be grasped by hand. It is a common structural form of existing blood glucose test strips 20. The top of the storage compartment 12 is provided with a positioning arc and the bottom is provided with a positioning block 1. 22. The positioning block 122 matches the shape of the notch; the sliding member 13 is slidably disposed in the sliding groove 112, and has a sealing section 131, a sliding section 132, and a pushing section 133. A pushing groove 1331 is provided on the pushing section 133, and the wall thickness of the pushing groove 1331 matches the thickness of a test strip. A pushing block 1332 is provided at its bottom. Specifically, the height of the pushing groove 1331 is set to 2 / 3 to 5 / 6 of the height of the blood glucose test strip 20, thereby supporting and fixing the blood glucose test strip 20 with a certain structural strength and preventing the test strip from bending during the push-out process. The shape of the pushing block 1332 can also be adapted to the bottom of the blood glucose test strip 20. The pushing block 1332 corresponds to the notch on the blood glucose test strip 20 and is used to realize single-sheet push-out.
[0036] The blood glucose test strip storage box 10 can be stored in an existing drying box. When needed, the user takes the blood glucose test strip storage box 10 out of the drying box. When the user presses the press button 14 extending from the push-pull port 1124, the slider 13 moves downward, and the sliding section 132 moves down along the sliding groove 112. At the same time, it drives the sealing section 131 and the sliding cap 1311 set on it to slide upward along one side of the exposed notch 111, so that the exposed notch 111 is opened. The pushing section 133 of the slider 13 then acts on the foremost blood glucose test strip 20 located in the pushing groove 1331, and accurately contacts the test strip notch through the pushing block 1332. With the help of the pushing force, a test strip is pushed out from the exposed notch 111. Then, when the press button 14 is retracted, the next blood glucose test strip 20 is pushed into the pushing groove 1331 by the push plate 123, ready for the next round of paper taking operation.
[0037] To achieve accurate paper feeding, the test strips are pressed in the storage compartment 12 by a pusher plate 123. A spring 121 is connected to the rear end of the pusher plate 123. Specifically, multiple springs 121 can be used to ensure sufficient and balanced pushing force from the pusher plate 123. The other end of the spring 121 is fixed to the rear wall of the storage compartment 12. This structure continuously pushes the test strips forward, ensuring that the next test strip automatically positions itself after each push. The top of the test strip engages with the positioning arc, and the bottom engages with the positioning block 122, thus achieving precise positioning and preventing offset and jamming. After use, the test strips can be returned to the existing drying chamber.
[0038] The large cylinder 134 on the slider 13 slides in contact with the outer groove edge 1121, and the small cylinder 135 slides in contact with the inner groove edge 1122, so that the slider 13 moves smoothly in the sliding groove 112 and limits the movement trajectory to prevent shaking. The sliding cap 1311 is composed of an upper arc segment 1312 and a lower arc segment 1313, and a cavity 1315 is provided in the middle. The cavity 1315 can prevent the sliding cap 1311 from being disturbed when sliding, and ensure smooth opening and closing of the exposed notch 111.
[0039] To ensure stable installation of the storage box 12, the storage box is also equipped with an upper retaining block 15 and a lower retaining block 16, which are respectively located on the inner groove edge 1122 and below the storage box 12. The two work together to fix the storage box 12 and prevent the test strips from shaking or falling off during storage. The blood glucose test strip storage box 10 improves ease of use and avoids the problem of multiple strips being taken out at the same time or accidental contact with the test area, effectively ensuring the quality of the test strips and the accuracy of the test.
[0040] Referring to Figures 1 to 4, in some embodiments, the blood glucose test strip storage box 10 includes a storage body 11, a storage compartment 12, and a sliding member 13; the storage body 11 has a sliding groove 112 inside; the storage body 11 also has an exposed notch 111 on its upper part; the storage compartment 12 is used to store blood glucose test strips 20; the storage compartment 12 is detachably disposed on the inner side of the storage body 11; the sliding member 13 is slidably disposed in the sliding groove 112; the sliding member 13 has an integrally formed sealing section 131, a sliding section 132, and a pushing section 133, the pushing section 133 being close to the storage compartment. A push groove 1331 is provided on the side of the storage box 12; the wall thickness of the push groove 1331 is set to the thickness of a blood glucose test strip 20; the sealing section 131 covers the exposed notch 111; the sliding section 132 is located below the storage box 12; the sliding section 132 is located in the sliding groove 112; wherein, when the sliding section 132 moves downward, the sliding section 132 drives the sealing section 131 to move upward along the sliding groove 112, the exposed notch 111 opens, and the push section 133 pushes a blood glucose test strip 20 pushed out from the storage box 12 and protrudes from the exposed notch 111. Thus, by setting the structure of the storage body 11, storage box 12, sliding member 13, sliding groove 112 and exposed notch 111, a structure is formed that can push out a blood glucose test strip 20 at a time. The sliding component 13 is integrally formed with a sealing section 131, a sliding section 132, and a pushing section 133, resulting in a compact structure and convenient assembly. The thickness of the pushing groove 1331 on the pushing section 133 is limited to the thickness of a single blood glucose test strip 20, effectively restricting the number of test strips ejected. Only one test strip is ejected at a time, solving the problem of multiple test strips being removed simultaneously in existing blood glucose test strip 20 storage boxes, improving retrieval efficiency, and reducing the risk of contamination. Simultaneously, by moving downwards, the sliding section 132 drives the sealing section 131 to move upwards, opening the exposed notch 111, and the pushing section 133 simultaneously ejects the blood glucose test strip 20, achieving automatic ejection and opening linkage operation. The operation process is simple and provides a good user experience.
[0041] Referring to Figure 5, in some embodiments, the sliding groove 112 is provided with an outer groove edge 1121 and an inner groove edge 1122. The inner groove edge 1122 has an assembly port 1123 on the side near the storage box 12. Sealing strips 1125 are provided on both the inner and outer sides of the assembly port 1123. The sealing strips 1125 are used to cooperate with the outer wall of the storage box 12 for sealing. Specifically, when the open end of the storage box 12 is inserted into the assembly port 1123, the sealing strips 1125 on both the inner and outer sides of the assembly port 1123... 5 will be press-fitted with the outer wall of the storage box 12 for sealing; a push-pull opening 1124 is provided on the side of the outer groove edge 1121 away from the assembly opening 1123, and a sealing strip 1314 is also provided in the push-pull opening 1124 to prevent moisture from entering from the push-pull opening 1124; the exposed notch 111 is provided on the outer groove edge 1121, the exposed notch 111 is located above the assembly opening 1123, the exposed notch 111 is used to assemble the storage box 12, and the arc length of the exposed notch 111 is set to the arc length of a quarter circle. Furthermore, by setting an outer groove edge 1121 and an inner groove edge 1122 on the sliding groove 112, and setting an assembly port 1123 on the inner groove edge 1122 near the storage box 12, the assembly convenience and sealing performance of the storage box 12 are further improved. The structure with sealing strips 1125 on both the inner and outer sides ensures that the assembly port 1123 can be reliably sealed after being inserted into the storage box 12, reducing the impact of air humidity on the blood glucose test strip 20 and extending the storage time of the test strip. A push-pull port 1124 is set on the side of the outer groove edge 1121 away from the assembly port 1123, so that the pressing button 14 can extend from there without interfering with the assembly operation. The exposed notch 111 is set on the outer groove edge 1121 and above the assembly port 1123, which is conducive to aligning with the test strip outlet of the storage box 12. Its arc length is set to a quarter circle arc length, which not only ensures the sliding space of the sliding cap 1311, but also takes into account the convenience of sealing and opening operations. The overall structure is coordinated, the function is clear, and the balance between sealing and usage efficiency is improved.
[0042] Referring to Figure 5, in some embodiments, a sliding cap 1311 is provided on the sealing section 131. The sliding cap 1311 is located at the exposed notch 111 and is used to seal and open the exposed notch 111. The sliding cap 1311 slides along one side of the exposed notch 111. By providing a sliding cap 1311 on the sealing section 131, and ensuring that the sliding cap 1311 is located at the exposed notch 111 and can slide to seal or open the notch, the sealing performance and operational flexibility of the sealing section 131 are enhanced. The sliding method of the sliding cap 1311 is simple and intuitive; it can be driven by the sliding member 13 to open or close the exposed notch 111, allowing the user to maintain the closed state of the box when not in use, effectively preventing external air or moisture from entering the test strip storage area, further improving the storage safety and environmental adaptability of the blood glucose test strip 20.
[0043] Referring to Figure 5, in some embodiments, the sliding cap 1311 is provided with an upper arc segment 1312 and a lower arc segment 1313, which are connected by a sealing strip 1314. The sealing strip 1314 is used to abut or fit against or fit with the other side of the exposed notch 111 to achieve a sealing effect. The sealing strip 1125 can be made of rubber. A cavity 1315 is provided between the upper arc segment 1312 and the lower arc segment 1313. The cavity 1315 is used to prevent the sliding cap 1311 from sliding along one side of the exposed notch 111. Furthermore, by setting an upper arc segment 1312 and a lower arc segment 1313 on the sliding cap 1311, and directly connecting these two parts with a sealing strip 1314, a reliable sealing structure is formed; a cavity 1315 is set to avoid structural interference, so that the sliding cap 1311 will not be blocked due to structural interference when sliding along the edge of the exposed notch 111, ensuring the smoothness and operability of the sealing and opening process; it has a good sealing function to prevent dust or moisture from entering.
[0044] Referring to Figure 5, in some embodiments, a plurality of large cylinders 134 are fixedly arranged at uniform intervals on the side of the slider 13 near the outer groove edge 1121, and a plurality of small cylinders 135 are fixedly arranged at uniform intervals on the side of the slider 13 away from the outer groove edge 1121. Both the large cylinders 134 and the small cylinders 135 are used to slide in contact with the outer groove edge 1121 and the inner groove edge 1122 to maintain the movement trajectory of the slider 13 in the sliding groove 112. Furthermore, by setting a large cylinder 134 and a small cylinder 135 on the sides of the slider 13 near the outer groove edge 1121 and away from the outer groove edge 1121 respectively, and making them slide in contact with the outer groove edge 1121 and the inner groove edge 1122, a balancing, guiding and limiting effect can be formed during the movement of the slider 13. This setting effectively prevents the slider 13 from shaking or deviating in the sliding groove 112, ensures the stability of the sliding trajectory, improves the accuracy when pushing the test paper and the stable operation capability of the mechanism, and is beneficial to the wear resistance and reliability during long-term repeated use.
[0045] Referring to Figure 6, for ease of observation, the test strips stored in the storage box 12 are hidden in Figure 6. In some embodiments, a push block 1332 is provided at the bottom of the push slot 1331. The push block 1332 corresponds to the notch on the blood glucose test strip 20, and the thickness of the push block 1332 is set to the thickness of one blood glucose test strip 20. The push block 1332 is used to push the blood glucose test strip 20. Furthermore, by providing a push block 1332 at the bottom of the push slot 1331, and by setting the push block 1332 to correspond to the notch on the blood glucose test strip 20, and by setting its thickness to the thickness of one blood glucose test strip 20, it is beneficial to achieve accurate pushing. The push block 1332, through contact with the notch on the test strip, achieves reliable and controllable single-sheet separation and ejection, avoiding the problems of contamination, misoperation, or failure to use that may be caused by traditional flipping or clamping methods, enhancing the adaptability of the structure and the stability in actual use, and further improving the efficiency of using the blood glucose test strip 20.
[0046] Referring to Figure 6, in some embodiments, the top of the storage box 12 is provided with a positioning arc, and the bottom of the storage box 12 is provided with a positioning block 122 corresponding to the push block 1332. The positioning block 122 is used to engage with the notch of the blood glucose test strip 20, and the positioning arc is used to engage with the arc apex of the blood glucose test strip 20. Thus, by providing a positioning arc at the top of the storage box 12 and a positioning block 122 corresponding to the push block 1332 at the bottom, a two-way engagement structure for the blood glucose test strip 20 is formed. The positioning block 122 engages with the notch of the test strip, and the positioning arc engages with the arc apex of the test strip, effectively guiding the arrangement and positioning of the blood glucose test strips 20 within the storage box 12, preventing the test strips from tilting or overlapping, ensuring that each test strip can be smoothly pushed to the push slot 1331, and facilitating the smooth ejection of a single test strip.
[0047] Referring to Figure 6, in some embodiments, a pusher plate 123 is also provided inside the storage box 12. The pusher plate 123 is used to push the blood glucose test strip 20 along the trajectory of the positioning block 122 and the positioning arc towards the push groove 1331. A spring 121 is provided behind the pusher plate 123. One end of the spring 121 is fixedly connected to the pusher plate 123, and the other end of the spring 121 is fixedly connected to the rear wall of the storage box 12. Thus, by setting the pusher plate 123 inside the storage box 12, together with the spring 121, the structure pushes the blood glucose test strip 20 towards the push groove 1331, realizing an automated test strip delivery function. When a test strip is taken out, the pusher plate 123 continues to apply a pushing force under the elastic force of the spring 121, and the next test strip automatically slides to the preset pick-up position. The operation does not require manual intervention, effectively avoiding jamming or manual alignment problems, improving the user experience, and further ensuring the stable operation of the single-sheet push structure.
[0048] Referring to Figure 4, in some embodiments, the blood glucose test strip storage box 10 further includes a press button 14, which is fixedly connected to the slider 13 and extends from the push-pull opening 1124. By providing a press button 14 in the blood glucose test strip storage box 10, fixing the press button 14 to the slider 13, and extending it from the push-pull opening 1124, the user can directly operate the press button 14 externally to achieve the linkage sliding of the slider 13, thereby driving the sliding section 132 to move downward, the sealing section 131 to open, and the pushing section 133 to push, realizing a one-click test strip ejection operation. This simplifies the user's retrieval steps, improves convenience and intelligence, and avoids direct contact between the user's hands and the slider 13, improving hygiene and operational safety.
[0049] Referring to Figure 1, in some embodiments, the blood glucose test strip storage box 10 further includes an upper retaining block 15 and a lower retaining block 16. The upper retaining block 15 is located on the side of the inner groove edge 1122 away from the exposed notch 111, and the lower retaining block 16 is located below the storage box 12. The upper retaining block 15 cooperates with the lower retaining block 16 to fix the storage box 12. Both the upper retaining block 15 and the lower retaining block 16 have a certain degree of elasticity and are provided with corresponding deformation grooves to facilitate the replacement and assembly of the storage box 12. Furthermore, the upper retaining block 15 and the lower retaining block 16 can stably lock the storage box 12 after cooperation, preventing it from loosening or shifting during sliding and operation, thereby further ensuring the stability and positioning accuracy of the paper dispensing action. At the same time, the storage box 12 can be set to be detachable, which facilitates the replacement or replenishment of blood glucose test strips 20 while achieving a firm fixation, taking into account both the reliability of use and the convenience of maintenance.
[0050] In some embodiments, the storage box 12 stores the internal storage cavity of the blood glucose test strip 20, which can be adaptively adjusted according to different shapes of blood glucose test strip 20.
[0051] In some embodiments, the blood glucose test strip storage box 10, which does not store the blood glucose test strip 20, can be sterilized by ultraviolet irradiation, ethylene oxide sterilization, or high-pressure steam sterilization.
[0052] In some embodiments, the storage body 11 and the sliding member 13 can be made of non-toxic and harmless plastic structure, and the outer surface of the sealing strip 1125, the sliding cap 1311 and the sealing strip 1314 can be coated with a layer of rubber material, and the inside is set as a plastic structure with a certain strength, or a rubber structure can be used, so as to achieve a better sealing effect.
[0053] In some implementations, because the blood glucose test strip 20 has a certain strength and thickness, it will not bend during the upward pushing process, thereby achieving the rapid pushing of the blood glucose test strip 20.
[0054] In summary, this application provides a blood glucose test strip storage box, comprising: a storage body with a sliding groove inside; an exposure notch on the top of the storage body; a storage compartment for storing blood glucose test strips; the storage compartment is detachably disposed on the inner side of the storage body; a sliding member slidably disposed in the sliding groove; the sliding member has an integrally formed sealing section, a sliding section, and a pushing section, the pushing section having a pushing groove on its side near the storage compartment; the wall thickness of the pushing groove being set to the thickness of a blood glucose test strip; the sealing section covering the exposure notch; the sliding section disposed below the storage compartment; the sliding section disposed in the sliding groove; wherein, when the sliding section moves downward, the sliding section drives the sealing section to move upward along the sliding groove, the exposure notch opens, and the pushing section pushes a blood glucose test strip ejected from the storage compartment out through the exposure notch; thus, by setting the structure of the storage body, storage compartment, sliding member, sliding groove, and exposure notch, a structure capable of ejecting a single blood glucose test strip is formed. The sliding component is integrally formed with a sealing section, a sliding section, and a pushing section, resulting in a compact structure and easy assembly. The thickness of the pushing groove on the pushing section is limited to the thickness of a single blood glucose test strip, effectively limiting the number of test strips that can be pushed out. Only one test strip is pushed out, solving the problem of multiple test strips being taken out at the same time in existing blood glucose test strip storage boxes, improving retrieval efficiency, and reducing the risk of contamination.
[0055] It should be understood that the application of this application is not limited to the examples above. Those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.
Claims
1. A blood glucose test strip storage box for storing blood glucose test strips, characterized in that, The blood glucose test strip storage box includes: a storage body with a sliding groove inside; an exposure notch on the top of the storage body; a storage compartment for storing blood glucose test strips; the storage compartment is detachably disposed on the inner side of the storage body; a sliding member slidably disposed in the sliding groove; the sliding member has an integrally formed sealing section, a sliding section, and a pushing section, the pushing section having a pushing groove on its side near the storage compartment; the wall thickness of the pushing groove is set to the thickness of a blood glucose test strip; the sealing section covers the exposure notch; the sliding section is disposed below the storage compartment; the sliding section is disposed in the sliding groove; wherein, when the sliding section is moved downward, the sliding section drives the sealing section to move upward along the sliding groove, the exposure notch opens, and the pushing section pushes a blood glucose test strip pushed out from the storage compartment through the exposure notch.
2. The blood glucose test strip storage box according to claim 1, characterized in that, The sliding groove has an outer groove edge and an inner groove edge. The inner groove edge has an assembly opening on the side closer to the storage box. Both the inner and outer sides of the assembly opening are provided with sealing strips. The sealing strips are used to cooperate with the outer side wall of the storage box for sealing. The outer groove edge has a push-pull opening on the side away from the assembly opening. The exposed notch is provided on the outer groove edge. The exposed notch is located above the assembly opening. The exposed notch is used to assemble the storage box. The arc length of the exposed notch is set to the arc length of a quarter circle.
3. The blood glucose test strip storage box according to claim 2, characterized in that, A sliding cap is provided on the sealing section. The sliding cap is located at the exposed notch and is used to seal and open the exposed notch. The sliding cap slides along one side of the exposed notch.
4. The blood glucose test strip storage box according to claim 3, characterized in that, The sliding cap has an upper arc segment and a lower arc segment, which are connected by a sealing strip; a cavity is provided between the upper arc segment and the lower arc segment to prevent obstruction of the sliding cap and allow it to slide along the exposed notch.
5. The blood glucose test strip storage box according to claim 4, characterized in that, A plurality of large cylinders are fixedly arranged at even intervals on the side of the slider near the outer groove, and a plurality of small cylinders are fixedly arranged at even intervals on the side of the slider away from the outer groove. Both the large and small cylinders are used to slide in contact with the outer and inner groove edges to maintain the movement trajectory of the slider within the sliding groove.
6. The blood glucose test strip storage box according to claim 4, characterized in that, A push block is provided at the bottom of the push slot. The push block corresponds to the notch of the blood glucose test strip. The thickness of the push block is set to the thickness of a blood glucose test strip. The push block is used to push the blood glucose test strip.
7. The blood glucose test strip storage box according to claim 6, characterized in that, The top of the storage box is provided with a positioning arc, and the bottom of the storage box is provided with a positioning block corresponding to the push block. The positioning block is used to engage with the notch of the blood glucose test strip, and the positioning arc is used to engage with the arc top of the blood glucose test strip.
8. The blood glucose test strip storage box according to claim 7, characterized in that, The storage box is also equipped with a push plate, which is used to push the blood glucose test strip along the trajectory of the positioning block and the positioning arc to slide into the push groove. A spring is provided behind the push plate, one end of the spring is fixedly connected to the push plate, and the other end of the spring is fixedly connected to the rear wall of the storage box.
9. The blood glucose test strip storage box according to claim 8, characterized in that, The blood glucose test strip storage box further includes a press button, which is fixedly connected to the slider and extends from the push-pull opening.
10. The blood glucose test strip storage box according to claim 2, characterized in that, The blood glucose test strip storage box further includes an upper retaining block and a lower retaining block. The upper retaining block is located on the side of the inner groove away from the exposed notch, and the lower retaining block is located below the storage box. The upper retaining block is used to cooperate with the lower retaining block to fix the storage box.