Multifunctional detection kit carrier
Patent Information
- Application Number
- CN202521201142.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-12
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-06-12
AI Technical Summary
[0004]上述专利在使用的过程中虽然通过在框架和抽屉底板上布满了通气孔,使得空气流动性好,制冷迅速均匀,但是其在使用时仍存在一定的不足,用于不同实验的检测试剂盒其所需要的温度各不相同,如新型冠状病毒抗原检测试剂盒储存温度应在2-30℃之间、HIV抗体检测试剂盒的储存温度在2-8℃、毒品检测试剂盒的储存温度在15-30℃,而上述专利使用了一体式贯通的通风方式,导致整个载架的温度都相同,无法根据不同的检测试剂盒所需的储存环境和空间,进行单独分区适配,导致其适用性较差
该一种多功能检测试剂盒载柜,通过设置承载板和铰接于承载板上表面的门板套,承载板可调节至合适的位置后通过限位螺栓进行固定,同时外界的制冷装置将冷风通过出风管吹入到对应承载板所处的区域,完成对应承载板所处区域的降温,通过滑动板与固定板通过卡扣连接保证承载板之间的密封性,同时承载板的分隔又保证区域之间互不影响,进而实现载柜内部温度分区调节的目的。
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Figure CN224782644U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical testing technology, specifically a multifunctional test kit carrier. Background Technology
[0002] In medical testing, test kits are widely used. However, the carriers of most common test kits on the market have limited functionality, often only providing basic storage. This leads to numerous problems in actual use.
[0003] An existing patent (publication number: CN214525608U) discloses a reagent kit carrier adapted to a low-temperature refrigerator, including a frame whose length, width and height are slightly smaller than the length, width and height of the low-temperature refrigerator, and several drawers are loaded in the frame. The frame is constructed of U-shaped profiles, with ventilation holes on the web and wing plates of the U-shaped profiles; ventilation holes are evenly distributed on the bottom plate of each drawer.
[0004] While the aforementioned patent achieves good airflow and rapid, even cooling by arranging ventilation holes throughout the frame and drawer bottom, it still has certain shortcomings. Different test kits require different temperatures. For example, the storage temperature for novel coronavirus antigen test kits should be between 2-30℃, HIV antibody test kits between 2-8℃, and drug test kits between 15-30℃. However, the patent uses an integrated, continuous ventilation method, resulting in a uniform temperature throughout the entire rack. This makes it impossible to individually adapt the rack to the storage environment and space requirements of different test kits, leading to poor applicability. Utility Model Content
[0005] To address the shortcomings of existing technologies, this invention provides a multifunctional test kit carrier cabinet with the advantage of temperature zone adjustment, thus solving the problems mentioned in the background section.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a multifunctional test kit carrier cabinet, comprising a cabinet body and a set of guide rails arranged in a matrix on the inner wall of the cabinet body, wherein the cabinet body is provided with multiple support plates and sealing components; Each of the aforementioned carrier plates has a fixed plate fixedly connected to its front bottom, which is arranged vertically downwards. Each carrier plate has a set of locking plates on its upper surface. The front upper surface of the carrier plate has a groove for installing sealing components. Each carrier plate is slidably connected to a set of guide rails. The sealing assembly includes a door panel sleeve and a sliding plate. The sliding plate is slidably inserted into the door panel sleeve. The bottom end of each sliding plate has an inverted T-shaped structure. A handle is installed on the top front of the sliding plate. The end of the door panel sleeve away from the sliding plate is hinged to the groove of the adjacent support plate by a hinge. An air outlet pipe is provided between every two adjacent support plates. Each air outlet pipe is fixedly embedded in the inner wall of the cabinet.
[0007] Furthermore, each of the aforementioned support plates is filled with aerogel.
[0008] The above scheme is used to reduce temperature transfer within cavities of different temperatures, reduce thermal radiation interference between adjacent storage layers, and ensure the temperature independence of the storage environment for each reagent kit.
[0009] Furthermore, a temperature sensor is installed on one side of each of the air outlet ducts. The temperature sensor is connected to an external control system, and each temperature sensor is fixedly connected to the inner wall of the cabinet.
[0010] Through the above scheme, the temperature sensor achieves the purpose of monitoring the temperature of multiple cavities, and the temperature control equipment is controlled by an external control system.
[0011] Furthermore, the front of the cabinet is hinged with a main cabinet door, and a sealing strip is provided on the inner edge of the main cabinet door.
[0012] The above scheme is used to form an airtight sealed structure to prevent external air from seeping in and affecting the temperature stability of each cavity.
[0013] Furthermore, each of the locking plates is fixedly connected to its adjacent guide rail plate by bolts.
[0014] The above solution uses bolts to lock the position of the bearing plate on the guide rail, preventing changes in the storage layer spacing due to equipment vibration or accidental human contact, while also facilitating user adjustment.
[0015] Furthermore, one end of each sliding plate is connected to a nearby fixed plate via a snap-fit mechanism.
[0016] The above solution enables the sliding plate and the fixed plate to close and separate quickly through a snap-fit connection, making it easy for users to quickly open and remove the reagent kit.
[0017] Furthermore, each of the door panel sleeves and sliding plates is of equal length, and the two sides of each of the door panel sleeves and sliding plates are in close contact with the two inner side walls of the cabinet, respectively. Each door panel sleeve and sliding plate has an anti-slip texture structure on the side surface near the support plate.
[0018] The above solution, through equal length design and close contact to form a sealing surface, combined with the aerogel insulation layer to form protection, effectively blocks the air convection path between cavities, ensuring that the environments of each temperature zone do not interfere with each other. Secondly, the anti-slip texture can increase the coefficient of friction and improve the stability of placement when the reagent kit is temporarily placed.
[0019] Compared with the prior art, the technical solution of this utility model has the following beneficial effects: This multifunctional test kit cabinet features a support plate and a door panel hinged to the upper surface of the support plate. The support plate can be adjusted to a suitable position and then fixed by limiting bolts. Simultaneously, an external cooling device blows cold air through an air outlet duct into the area where the corresponding support plate is located, thus cooling that area. The sliding plate and the fixed plate are connected by a snap-fit mechanism to ensure the airtightness between the support plates. At the same time, the partitioning of the support plates ensures that the areas do not interfere with each other, thereby achieving the purpose of zoned temperature regulation inside the cabinet. Attached Figure Description
[0020] Figure 1 This is a three-dimensional structural diagram of the present application; Figure 2 This is a side view of the overall load-bearing plate of this application; Figure 3 This is a side view of the overall door panel frame of this application; Figure 4 This is a rendering of the overall door panel layout of this application. Figure 5 For the purposes of this application as a whole Figure 4 Enlarged schematic diagram of the structure at point A; Figure 6 This is an open view of the entire door panel frame of this application.
[0021] In the picture: 1. Cabinet body; 2. Guide rails; 3. Support plate; 301 aerogel; 4. Sealing components; 401. Door panel sleeve; 402. Sliding plate; 403. Handle; 5. Fixing plate; 6. Locking plate; 7. Air outlet duct; 8. Temperature sensor; 9. Main cabinet door; 10. Sealing strip. Detailed Implementation
[0022] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0023] Please see Figure 1 , Figure 2 and Figure 3 In this embodiment, a multifunctional test kit carrier includes a cabinet body 1 and a set of guide rails 2 arranged in a matrix on the inner wall of the cabinet body 1. The cabinet body 1 is equipped with multiple support plates 3 and sealing components 4.
[0024] Please see Figure 2 , Figure 3 and Figure 4 Each carrier plate 3 has a fixed plate 5 fixedly connected to its front bottom, which is set vertically downward. Each carrier plate 3 has a set of locking plates 6 on its upper surface. The front upper surface of the carrier plate 3 has a groove for installing the sealing component 4. Each carrier plate 3 is slidably connected to a set of guide rails 2, so as to adjust the distance between the two carrier plates 3 according to the quantity requirements of different reagent kits, thereby adjusting the storage space and improving the overall flexibility.
[0025] Please see Figure 3 , Figure 4 and Figure 6 The sealing assembly 4 includes a door panel sleeve 401 and a sliding plate 402. The sliding plate 402 is slidably inserted into the door panel sleeve 401. The bottom end of each sliding plate 402 has an inverted T-shaped structure. This structure cooperates with the limiting groove on the inner wall of the door panel sleeve 401 to form a vertical stroke limit, preventing the sliding plate 402 from completely disengaging from the door panel sleeve 401 while ensuring a smooth and non-offset sliding process. A handle 403 is installed on the top front of the sliding plate 402. The end of the door panel sleeve 401 away from the sliding plate 402 is connected to the groove of the adjacent bearing plate 3. Through the hinge connection, the sliding plate 402 and the door panel sleeve 401 slide into each other, which can adjust the height of the sealing component 4 after adjusting the position of the two support plates 3, thereby achieving the purpose of sealing the cavity between the two adjacent support plates 3. Secondly, after the door panel sleeve 401 is opened and flipped, its surface can abut against the groove wall of the support plate 3 to achieve a ninety-degree limit, which is convenient for users to temporarily place the reagent kit, especially suitable for users to retrieve the reagent kit from the back. Finally, the sliding plate 402 can be pulled out to increase the placement area.
[0026] Please see Figure 2 , Figure 3 and Figure 4 An air outlet duct 7 is provided between each pair of adjacent support plates 3. Each air outlet duct 7 is fixedly embedded in the inner wall of the cabinet 1. The air outlet duct 7 is connected to an external temperature control device, thereby enabling individual control of the cavity temperature between each pair of support plates 3 to suit the different reagent storage environments required by different reagent kits.
[0027] Please see Figure 2 , Figure 3 and Figure 5Each support plate 3 is filled with aerogel 301 to reduce temperature transfer in cavities with different temperatures, reduce thermal radiation interference between adjacent storage layers, and ensure the temperature independence of each reagent kit storage environment. Each air outlet duct 7 is equipped with a temperature sensor 8 on one side. The temperature sensor 8 is connected to an external control system. Each temperature sensor 8 is fixedly connected to the inner wall of the cabinet 1. The temperature sensor 8 monitors the temperature of multiple cavities and controls the temperature control equipment through an external control system.
[0028] The cabinet 1 has a main cabinet door 9 hinged to the front. The inner edge of the main cabinet door 9 is provided with a sealing strip 10 to form an airtight sealed structure to prevent external air from seeping in and affecting the temperature stability of each cavity. Each locking plate 6 is fixedly connected to its adjacent guide rail plate 2 by bolts. The bolt fixing connection realizes the position locking of the bearing plate 3 on the guide rail plate 2, preventing the storage layer spacing from changing due to equipment vibration or human accidental touch, and at the same time facilitating user adjustment.
[0029] One end of each sliding plate 402 is connected to the adjacent fixed plate 5 by a snap-fit. The snap-fit connection enables the sliding plate 402 and the fixed plate 5 to close and separate quickly, making it easy for users to open and take out the reagent kit. Each door cover 401 and sliding plate 402 are of equal length. The two sides of each door cover 401 and sliding plate 402 are in close contact with the two inner side walls of the cabinet 1. The surface of each door cover 401 and sliding plate 402 near the support plate 3 is provided with an anti-slip texture structure. The equal length design and close contact form a sealing surface, which, together with the aerogel 301 heat insulation layer, constitutes protection, effectively blocking the air convection path between cavities and ensuring that the environments of each temperature zone do not interfere with each other. Secondly, the anti-slip texture can increase the coefficient of friction and improve the stability of the reagent kit when it is temporarily placed.
[0030] It should be noted that during use, if there are a large number of reagent kits on the carrier plate 3 and it is necessary to remove the reagent kits located inside the carrier plate 3, the outer reagent kits can be temporarily placed on the flat door panel sleeve 401 and door plate. After the inner reagent kits are removed, the reagent kits on the door panel sleeve 401 and door plate can be put back.
[0031] The working principle of the above embodiment is as follows: Adjust the position of the support plate 3 according to the height of the test kit used, then install the bolts to complete the position adjustment of the support plate 3. Then place the corresponding test kit in the corresponding area. After placement, close the door panel 401. Pull the door panel through the handle 403 so that the sliding plate 402 is engaged with the fixed plate 5 to maintain the sealing of the door panel 401. Then, the external cooling device blows cold air into the area where the corresponding support plate 3 is located through the air outlet 7 to complete the cooling of the area where the corresponding support plate 3 is located. The separation of the support plates 3 ensures that the areas do not affect each other, thereby achieving the purpose of temperature zone adjustment inside the cabinet. By pulling out the door panel, the door panel can be moved and adjusted to adapt to different distances between the two support plates 3. If there are many test kits on the support plate 3 and it is necessary to take out the test kits located inside the support plate 3, the test kits on the outside can be temporarily placed on the flat door panel 401 and door panel. After the test kits on the inside are taken out, the test kits on the door panel 401 and door panel are put back.
[0032] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0033] Although embodiments of this application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of this application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A multifunctional test kit carrier cabinet, comprising a cabinet body (1) and a set of guide rails (2) arranged in a matrix on the inner wall of the cabinet body (1), characterized in that: The cabinet (1) is equipped with multiple support plates (3) and sealing components (4) inside. Each of the aforementioned support plates (3) has a fixed plate (5) fixedly connected to the bottom of its front end, which is arranged vertically downward. Each support plate (3) has a set of locking plates (6) on its upper surface. The upper surface of the front end of the support plate (3) has a groove for installing the sealing component (4). Each support plate (3) is slidably connected to a set of guide rails (2). The sealing assembly (4) includes a door panel sleeve (401) and a sliding plate (402). The sliding plate (402) is slidably inserted into the door panel sleeve (401). The bottom end of each sliding plate (402) is inverted T-shaped. A handle (403) is installed on the top front of the sliding plate (402). The end of the door panel sleeve (401) away from the sliding plate (402) is hinged to the groove of the adjacent bearing plate (3) by a hinge. An air outlet pipe (7) is provided between each pair of adjacent support plates (3), and each air outlet pipe (7) is fixedly embedded in the inner wall of the cabinet (1).
2. The multifunctional detection kit carrier according to claim 1, characterized in that: Each of the aforementioned support plates (3) is filled with aerogel (301).
3. The multifunctional detection kit carrier according to claim 1, characterized in that: A temperature sensor (8) is provided on one side of each of the air outlet pipes (7). The temperature sensor (8) is connected to the external control system. Each temperature sensor (8) is fixedly connected to the inner wall of the cabinet (1).
4. The multifunctional detection kit carrier according to claim 1, characterized in that: The cabinet (1) is hinged to a main cabinet door (9) on the front, and a sealing strip (10) is provided on the inner edge of the main cabinet door (9).
5. The multifunctional detection kit carrier according to claim 1, characterized in that: Each of the locking plates (6) is fixedly connected to its adjacent guide plate (2) by bolts.
6. The multifunctional test kit carrier according to claim 1, characterized in that: One end of each of the sliding plates (402) is connected to the adjacent fixed plate (5) by a snap fastener.
7. The multifunctional detection kit carrier according to claim 1, characterized in that: Each of the door panel sleeves (401) and sliding plates (402) is of equal length. The two sides of each of the door panel sleeves (401) and sliding plates (402) are in close contact with the two inner side walls of the cabinet (1). Each of the door panel sleeves (401) and sliding plates (402) has an anti-slip texture structure on the side surface of each door panel sleeve (401) and sliding plate (402) near the support plate (3).
Citation Information
Patent Citations
Kit carrying frame matched with low-temperature refrigerated container
CN214525608U