Biological test tube storage cabinet
By designing a biological test tube storage cabinet, which combines the cabinet body, electrically controlled sealed door, heat dissipation mesh, and cooling components, the problems of inconvenient storage and retrieval and insufficient refrigeration in existing technologies have been solved. This has enabled convenient storage and retrieval of test tubes and improved refrigeration, thereby enhancing storage quality and practicality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-08
- Publication Date
- 2026-03-06
AI Technical Summary
Existing biological test tube storage cabinets are inconvenient for storage and retrieval, and cannot effectively limit space and refrigerate, affecting the storage quality and convenience of biological test tubes.
A biological test tube storage cabinet was designed, comprising a storage cabinet body, an electrically controlled sealed door, a heat dissipation mesh, test tube storage components, and a cooling component. It employs components such as a circulating fan, a purifier, a cooler, and a cooling controller to achieve the functions of limited storage and refrigeration of test tubes.
It enables convenient storage and retrieval of biological test tubes and restrictive placement, improving the convenience and quality of storage, allowing for refrigeration, and enhancing the practicality of the device.
Smart Images

Figure CN223970013U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of test tube storage cabinet technology, specifically a biological test tube storage cabinet. Background Technology
[0002] Bioengineering is a combination of disciplines such as molecular genetics, microbiology, cell biology, biochemistry, chemical engineering, and energy science. Its applications are extensive, including medicine, food, agriculture and forestry, horticulture, chemical engineering, metallurgy, oil extraction, and environmental protection related to new fermentation technologies and substrates. The application of test tube storage cabinets for biological testing is not limited to the safe storage of test tubes; they also play a vital role in biological testing and scientific research. By providing efficient and convenient test tube management solutions, these storage cabinets promote the efficiency and accuracy of laboratory work and are an indispensable part of laboratory management.
[0003] Existing test tubes, after storing biological reagents, need to be stored in corresponding storage cabinets. Chinese patent application number CN201620528544.X discloses a reagent tube storage cabinet for bioengineering, which facilitates test tube placement, is easy to operate, improves safety, is convenient for experiments, and has a simple structure. However, the aforementioned device is inconvenient for storing and retrieving biological test tubes, hinders the proper placement of biological test tubes, and affects the convenience of storage. Furthermore, the device does not facilitate cooling the stored biological test tubes, which is not conducive to refrigeration and affects the quality of stored biological test tubes. Therefore, we need to provide a biological test tube storage cabinet. Utility Model Content
[0004] This invention provides a biological test tube storage cabinet, which has the advantages of facilitating the storage and retrieval of biological test tubes and refrigerating the stored biological test tubes, thereby solving the problems mentioned in the background art.
[0005] This utility model is achieved through the following technical solution: a biological test tube storage cabinet, the main body of which is a test tube storage mechanism, and the test tube storage mechanism includes a storage cabinet body;
[0006] The front of the storage cabinet body is equipped with a storage control panel and an electrically controlled sealed door. Heat dissipation mesh is installed on both the left and right sides of the storage cabinet body.
[0007] The storage cabinet body is provided with a test tube storage cavity, which is equipped with multiple sets of test tube storage components. The storage cabinet body is also equipped with a storage cooling component for cooling the test tube storage components.
[0008] This invention provides a biological test tube storage cabinet. It has the following beneficial effects:
[0009] This biological test tube storage cabinet enables the storage and retrieval of biological test tubes, facilitating their placement and improving storage convenience. It also allows for cooling of the stored test tubes, promoting refrigeration, enhancing the quality of storage, and increasing the practicality of the device. Attached Figure Description
[0010] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0011] Figure 2 This is a three-dimensional side view of the present invention.
[0012] Figure 3 This is a first partial three-dimensional view of the present invention;
[0013] Figure 4 This is a second partial three-dimensional view of the present invention;
[0014] Figure 5 This is a partial exploded view of the structure of this utility model;
[0015] Figure 6 This is a first partial structural cross-sectional view of the present invention;
[0016] Figure 7 This utility model Figure 6 Enlarged view of the structure at point A in the middle;
[0017] Figure 8 This is a cross-sectional view of the second part of the structure of this utility model.
[0018] In the diagram: 1. Test tube storage mechanism; 11. Storage cabinet body; 12. Storage control panel; 13. Electrically controlled sealing door; 14. Heat dissipation mesh; 15. Test tube storage assembly; 16. Storage cooling assembly; 17. Temperature detector; 18. Detection display panel; 19. Base plate; 20. Support column; 21. Casters; 22. Locking key; 151. Storage base; 152. Storage slide; 153. Electrically controlled telescopic rod; 154. Telescopic controller; 155. 156. Test tube storage tank; 157. Test tube limiting component; 158. Limiting slide groove; 159. Limiting slider; 1501. Limiting column; 1512. Slip ring; 1523. Return spring; 1534. Connecting rod; 1545. Limiting arc plate; 161. Circulating fan; 162. Circulation controller; 163. Exhaust pipe; 164. Purifier; 165. Purification controller; 166. Cooler; 167. Cooling controller; 168. Ventilation pipe. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0020] like Figures 1-8 As shown, a biological test tube storage cabinet has a main body of test tube storage mechanism 1, which includes a storage cabinet body 11.
[0021] The storage cabinet body 11 is provided with a storage control panel 12 and an electrically controlled sealing door 13 on the front side. Heat dissipation mesh 14 is installed on both the left and right sides of the storage cabinet body 11.
[0022] The storage cabinet body 11 has a test tube storage chamber, which is equipped with multiple sets of test tube storage components 15. The storage cabinet body 11 also has a storage cooling component 16 installed inside to cool the test tube storage components 15. Through the arrangement of the test tube storage mechanism 1, storage cabinet body 11, storage control panel 12, electrically controlled sealing door 13, heat dissipation mesh 14, test tube storage components 15, and storage cooling component 16, biological test tubes can be stored and retrieved. This facilitates the placement of biological test tubes in a controlled manner, improving the convenience of storage. Simultaneously, it allows for cooling of the stored biological test tubes, facilitating refrigeration and improving the quality of storage, thus enhancing the practicality of the device.
[0023] Furthermore, the storage cooling component 16 includes a circulating fan 161, a circulating controller 162, an exhaust pipe 163, a purifier 164, a purification controller 165, a cooler 166, a cooling controller 167, and a ventilation pipe 168.
[0024] The storage cabinet body 11 has a ventilation chamber at the bottom, which is located below the test tube storage chamber; the cooler 166, purifier 164 and circulating fan 161 are connected sequentially from left to right through pipes and are all located in the ventilation chamber; the cooling controller 167 is installed on the cooler 166; the purification controller 165 is installed on the purifier 164; and the circulation controller 162 is installed on the circulating fan 161.
[0025] One end of the exhaust pipe 163 is connected to the right end of the circulating fan 161, and the other end of the exhaust pipe 163 passes through the side wall of the storage cabinet body 11 and extends to the bottom of the test tube storage chamber; one end of the ventilation pipe 168 is connected to the left end of the purification controller 165, and the other end of the ventilation pipe 168 passes through the side wall of the storage cabinet body 11 and extends to the top of the test tube storage chamber. Through the arrangement of the circulating fan 161, circulation controller 162, exhaust pipe 163, purifier 164, purification controller 165, cooler 166, temperature controller 167, and ventilation pipe 168, the air inside the storage cabinet body 11 can be circulated, which is beneficial for purifying and cooling the gas, facilitating the control of the temperature inside the storage cabinet body 11, and improving the quality of biological test tube storage.
[0026] Furthermore, the test tube storage assembly 15 includes a storage base 151, a storage slide 152, an electrically controlled telescopic rod 153, a telescopic controller 154, a test tube storage slot 155, a test tube limiting component 156, a limiting slide groove 157, and a limiting slider 158.
[0027] The storage base 151 is fixedly connected to the test tube storage cavity, and the storage slide 152 is slidably installed on the storage base 151; a plurality of electrically controlled telescopic rods 153 are provided in the test tube storage cavity, and the output end of each electrically controlled telescopic rod 153 is fixedly connected to the rear side of the corresponding storage slide 152; the telescopic controller 154 is installed on the electrically controlled telescopic rod 153.
[0028] Multiple test tube storage slots 155 are provided on the storage slide 152, and multiple test tube limiting components 156 are installed inside the storage slide 152, with each test tube limiting component 156 corresponding to a test tube storage slot 155. Limiting grooves 157 are provided on both the left and right side walls of the storage base 151, and limiting sliders 158 are provided on both the left and right side walls of the storage slide 152, with the limiting sliders 158 slidably connected to the limiting grooves 157. Through the arrangement of the storage base 151, storage slide 152, electrically controlled telescopic rod 153, telescopic controller 154, test tube storage slots 155, test tube limiting components 156, limiting grooves 157, and limiting sliders 158, the storage slide 152 can be moved and adjusted, facilitating the adjustment of its position and allowing staff to easily place biological test tubes into the test tube storage slots 155. Furthermore, the placement of the biological test tubes can be limited, improving the storage efficiency of the biological test tubes.
[0029] Furthermore, the test tube limiting component 156 includes two sets of limiting cylinders 1561, a connecting rod 1564 and a limiting arc plate 1565 disposed in the test tube storage groove 155;
[0030] Two limiting arc plates 1565 have concave surfaces facing each other and their ends abutting each other to form a circle. The middle part of the convex surface of the limiting arc plate 1565 is connected to the corresponding connecting rod 1564.
[0031] Two limiting cylinders 1561 are respectively located on the left and right sides of two limiting arc plates 1565, and each limiting cylinder 1561 is equipped with a slip ring 1562 and a return spring 1563. The slip ring 1562 is slidably disposed within the arc plate 1565. The end of the connecting rod 1564 passes through the limiting cylinder 1561 and is connected to the outer side of the corresponding slip ring 1562. The two ends of the return spring 1563 are respectively connected to the inner wall surface of the limiting cylinder 1561 and the inner side surface of the slip ring 1562. This design can support the stored biological test tubes, which is beneficial for limiting the biological test tubes placed in the test tube storage tank 155 and improving the stability of the stored biological test tubes.
[0032] Furthermore, a temperature detector 17 is fixedly installed on the inner wall of the test tube storage chamber, and a detection display panel 18 is installed on the front side of the storage cabinet body 11. The detection display panel 18 is connected to the temperature detector 17. The presence of the temperature detector 17 and the detection display panel 18 allows for the detection of the internal stability of the storage cabinet body 11, facilitating the display of the internal temperature and enabling staff to easily observe the temperature.
[0033] Furthermore, a base plate 19 is fixedly connected to the bottom of the storage cabinet body 11. Support columns 20 are fixedly connected to the four corners of the bottom of the base plate 19. Casters 21 are mounted on the bottom ends of the support columns 20, and locking keys 22 are installed on the surfaces of the casters 21. The base plate 19, support columns 20, casters 21, and locking keys 22 allow for the movement of the storage cabinet body 11, facilitating adjustments to the device's position by operators and enhancing its practicality.
[0034] In use, the operator first opens the locking wheel key 22, then moves the storage cabinet body 11 to the corresponding position using the moving wheel 21. The locking wheel key 22 is then closed to lock the moving wheel 21. The device is then powered on. The operator then controls the electrically controlled sealing door 13 to rotate and open via the storage control panel 12. Next, the telescopic controller 154 is activated via the storage control panel 12 to extend the electrically controlled telescopic rod 153, causing the storage slide 152 to slide on the storage base 151. The storage slide 152 also causes the limiting slider 158 to slide within the limiting groove 157. The operator then places the corresponding biological test tube into the test tube storage slot 155 for storage. The return spring 1563 then supports the slip ring 1562, connecting rod 1564, and limiting arc plate 1565, thus limiting the biological test tube. After the biological test tube is stored, the extension... The retraction controller 154 controls the retraction of the electrically controlled telescopic rod 153, which moves the storage slide 152 to its original position. Then, the electrically controlled sealing door 13 is activated and closed via the storage control panel 12. Subsequently, the storage cooling component 16 and the temperature detector 17 are activated via the storage control panel 12. Then, the circulation controller 162 controls the circulating fan 161, the purification controller 165 controls the purifier 164, and the cooling controller 167 controls the cooler 166 to work. Then, the air inside the storage cabinet body 11 is circulated and cooled through the exhaust pipe 163 and the ventilation pipe 168, thereby lowering the temperature inside the storage cabinet body 11. The temperature detector 17 detects the temperature inside the storage cabinet body 11 and transmits the temperature data to the detection display panel 18 for display, which facilitates the management of the internal temperature of the storage cabinet body 11 by the staff and improves the storage effect of biological test tubes.
[0035] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A biological test tube storage cabinet characterized by, The main body is a test tube storage mechanism (1), which comprises a storage cabinet body (11); The front side of the storage cabinet body (11) is provided with a storage control panel (12) and is installed with an electric control sealing door (13), and the left and right sides of the storage cabinet body (11) are installed with heat dissipation nets (14); The storage cabinet body (11) is internally provided with a test tube storage cavity, which is installed with multiple test tube storage assemblies (15), and the storage cabinet body (11) is internally further installed with a storage cooling assembly (16) for cooling the test tube storage assemblies (15); The storage cooling assembly (16) comprises a circulating fan (161), a circulating controller (162), an air suction pipe (163), a purifier (164), a purification controller (165), a cooler (166), a cooling controller (167) and a ventilation pipe (168); The bottom of the storage cabinet body (11) is provided with a wind circulation cavity, which is arranged below the test tube storage cavity; the cooler (166), the purifier (164) and the circulating fan (161) are sequentially connected from left to right through pipelines and are all arranged in the wind circulation cavity, the cooling controller (167) is installed on the cooler (166), the purification controller (165) is installed on the purifier (164), and the circulating controller (162) is installed on the circulating fan (161); One end of the air suction pipe (163) is connected to the right end of the circulating fan (161), and the other end of the air suction pipe (163) penetrates through the side wall of the storage cabinet body (11) and penetrates to the bottom of the test tube storage cavity; one end of the ventilation pipe (168) is connected to the left end of the purification controller (165), and the other end of the ventilation pipe (168) penetrates through the side wall of the storage cabinet body (11) and penetrates to the top of the test tube storage cavity; The test tube storage assembly (15) comprises a storage base (151), a storage sliding seat (152), an electric control telescopic rod (153), a telescopic controller (154), a test tube storage groove (155), a test tube limiting member (156), a limiting sliding groove (157) and a limiting sliding block (158); The storage base (151) is fixedly connected in the test tube storage cavity, and the storage sliding seat (152) is slidingly installed on the storage base (151); multiple electric control telescopic rods (153) are arranged in the test tube storage cavity, and the output end of each electric control telescopic rod (153) is fixedly connected with the rear side of the corresponding storage sliding seat (152); and the telescopic controller (154) is installed on the electric control telescopic rod (153); Multiple test tube storage grooves (155) are formed in the storage sliding seat (152), multiple test tube limiting members (156) are installed in the storage sliding seat (152), and the test tube limiting members (156) are one-to-one correspondingly matched with the test tube storage grooves (155); limiting sliding grooves (157) are formed in the left and right side walls of the storage base (151), limiting sliding blocks (158) are formed in the left and right side walls of the storage sliding seat (152), and the limiting sliding blocks (158) are slidingly connected with the limiting sliding grooves (157); The test tube limiting member (156) comprises two groups of limiting cylinders (1561) arranged in the test tube storage groove (155), connecting rods (1564) and limiting arc plates (1565); The two limiting arc plates (1565) are concave to each other and have their two ends abutting to form a circle, and the convex surface of the limiting arc plate (1565) is connected with the corresponding connecting rod (1564) in the middle part; The two limiting cylinders (1561) are arranged on the left side and the right side of the two limiting arc plates (1565) respectively, and the limiting cylinder (1561) is provided with a sliding ring (1562) and a reset spring (1563) inside, the sliding ring (1562) is slidingly arranged in the arc plate (1565), the end of the connecting rod (1564) penetrates into the limiting cylinder (1561) and is connected with the outer side of the corresponding sliding ring (1562); the two ends of the reset spring (1563) are connected with the inner wall surface of the limiting cylinder (1561) and the inner side surface of the sliding ring (1562) respectively.
2. The biological test tube storage cabinet according to claim 1, characterized in that: The inner side wall surface of the test tube storage cavity is also fixedly provided with a temperature detector (17), and the front side of the storage cabinet body (11) is provided with a detection display panel (18), and the detection display panel (18) is signal connected with the temperature detector (17).
3. The biological test tube storage cabinet according to claim 1, characterized in that: The bottom of the storage cabinet body (11) is fixedly connected with a bottom plate (19), and the four corners of the bottom plate (19) are fixedly connected with supporting columns (20), the bottom end of the supporting column (20) is provided with a movable wheel (21), and the surface of the movable wheel (21) is provided with a lock wheel key (22).
Citation Information
Patent Citations
Cabinet is placed to reagent pipe for bioengineering
CN205797235U