Test tube placement device for biofabrication
The problem of collision damage during test tube storage is solved by using a hydraulic lifting column and a buffer structure, which enables stable storage and easy disassembly of test tubes, thus enhancing the safety and convenience of the test tube placement device for biomanufacturing.
Patent Information
- Application Number
- CN202410549313.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-06
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2044-05-06
AI Technical Summary
Existing test tube racks can only hold test tubes vertically, which causes water droplets to remain and affects their use. Furthermore, test tubes are easily damaged when stored due to large differences in height. Traditional storage boxes do not have tilt adjustment or disassembly functions, and the connecting mechanism is difficult to disassemble.
The system employs a hydraulic lifting column, a connecting ring, and a connecting rod to achieve the lifting and lowering of the test tube and uniform force distribution; it provides buffer protection through a double-layer rubber ring and a buffer pressure column; the tilt adjustment is achieved through an adjusting groove, a rack, and a gear block; and the connecting block, a limiting groove, and a threaded rod enable convenient disassembly.
This invention solves the problem of collision damage during test tube storage, improves the stability and safety of the device, enhances its convenience and ease of disassembly, and adapts to the storage needs of test tubes for different reagents.
Smart Images

Figure CN118494930B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of placing device, and particularly relates to a test tube placing device for biological manufacturing. BACKGROUND
[0002] Biotechnology is a kind of technology that uses scientific technology and biotechnology to transform agriculture or other aspects. Biological drugs refer to the use of research results of microbiology, biology, medicine, biochemistry, etc. from biological bodies, biological tissues, cells, organs, body fluids, etc. Among them, biotechnology is a technology that uses microorganisms, plants and animals to process material raw materials to provide products for the society. Biological technology research and development need to use test tubes. Test tubes are commonly used instruments in chemical laboratories. When using test tubes, they are usually placed on a test tube rack. Sometimes the liquid to be detected in the test tube cannot be detected immediately. After being stored for a period of time, it will be stratified and precipitated, which is not conducive to the subsequent detection of the liquid to be detected.
[0003] In the prior art, a test tube placing device for biological manufacturing is disclosed, which comprises a bearing box, two main shafts are rotatably connected to the inner cavities of the two sides of the bearing box, a bearing plate is fixedly connected between the two main shafts, a plurality of connecting holes are equidistantly formed in the top of the bearing plate, a test tube is slidably connected in the inner cavity of the connecting hole, a bearing groove is formed in the inner wall of the connecting hole on both sides, a positioning plate is slidably connected in the inner cavity of the bearing groove, a rubber plate is fixedly connected to the opposite side of each positioning plate, the side of the rubber plate is in close contact with the test tube, and a positioning rod is fixedly connected to one side of the inner wall of the bearing groove.
[0004] In order to solve the problem that the test tube rack can only place the test tube vertically, so that the water droplets remaining in the test tube will always be stored in the test tube, thereby affecting its next use, the prior art uses a bearing plate that can carry multiple test tubes, and under the action of the positioning plate, the rubber plate and the spring, the test tube on the bearing plate can be clamped and positioned. Turning the bearing plate can make the test tube caliber downward, and the water droplets in the storage box are collected, thereby improving the practical performance. However, the test tube will have a large drop when stored, which will cause the test tube bottom to collide and be damaged, thereby affecting the convenient storage and feeding of the device. SUMMARY
[0005] The present application aims to provide a test tube placing device for biological manufacturing to solve the problems raised in the background art.
[0006] To solve the above technical problems, the technical solution adopted by the present application is:
[0007] The application discloses a test tube placing device for biofabrication, which comprises a test tube storage box, a sealing cover movably arranged on the top of the test tube storage box, a sealing ring fixedly arranged on the inner side of the sealing cover, a sleeve joint block fixedly arranged on the front side of the sealing cover, a clamping block arranged on the bottom of the sleeve joint block, the clamping block being fixedly arranged on the front side of the test tube storage box, an inner plate fixedly arranged in the test tube storage box, and a mounting frame movably arranged on the top of the inner plate.
[0008] A fixed bottom plate is fixedly arranged on the bottom of the inner plate, and a lifting mechanism is movably sleeved on the middle portion of the fixed bottom plate.
[0009] An adjusting groove is formed on one side of the mounting frame, and an adjusting mechanism is movably arranged in the adjusting groove.
[0010] The lifting mechanism comprises a hydraulic lifting column, a sleeve joint ring fixedly arranged on the outer side of the top of the hydraulic lifting column, a connecting rod fixedly arranged on the outer side of the sleeve joint ring, and a top plate fixedly arranged on the top of the connecting rod.
[0011] The hydraulic lifting column, the sleeve joint ring and the connecting rod are matched with each other to achieve the function of lifting and moving.
[0012] The top plate is fixedly arranged on the top of the top plate, a sleeve joint hole is formed on the top of the bearing plate, and a test tube body is movably arranged in the sleeve joint hole.
[0013] The bearing plate, the sleeve joint hole and the test tube body are matched with each other to achieve the function of limiting and sleeving.
[0014] The test tube body is movably arranged on the top of the test tube body, auxiliary plates are movably arranged at two ends of the auxiliary plate, and the two ends of the extension plates are movably arranged on the inner side of the mounting frame.
[0015] The auxiliary plate, the extension plate and the mounting frame are matched with each other to achieve the function of movably connecting, so that the extension plate can drive the auxiliary plate to move and adjust in the mounting frame.
[0016] The sleeve joint hole is fixedly arranged on the top of the sleeve joint hole, a double-layer rubber ring is fixedly arranged on the inner side of the double-layer rubber ring, a buffer pressing column is fixedly arranged on the inner side of the double-layer rubber ring, and a buffer pad is fixedly arranged on the bottom of the double-layer rubber ring.
[0017] The technical scheme is characterized in that the sleeve joint hole, the double-layer rubber ring, the buffer pressure column and the buffer pad are cooperated with each other to achieve the buffering protection function, the double-layer rubber ring and the buffer pad are flexible to buffer and protect the test tube, and when the test tube is pressed downward, the double-layer rubber ring is compressed to buffer the pressure column, and the buffer pressure column is flexible to further buffer the force.
[0018] Further improvement of the technical scheme of the present application is that the adjusting mechanism comprises a rack, one side of the rack is fixedly installed on the inner wall of the adjusting groove, a gear block is engaged on the side surface of the rack, and a transmission rod is fixedly installed on the top of the gear block.
[0019] The technical scheme is characterized in that the rack, the adjusting groove, the gear block and the transmission rod are cooperated with each other to achieve the engagement function, the transmission rod is convenient to drive the gear block to rotate and engage on the rack to achieve the horizontal movement function.
[0020] Further improvement of the technical scheme of the present application is that one side of the top of the mounting frame is provided with a sliding groove, a movable block is movably installed in the sliding groove, a rotating shaft column is movably installed in the movable block, and the bottom of the rotating shaft column is movably installed on the top of the transmission rod.
[0021] The technical scheme is characterized in that the sliding groove, the movable block, the rotating shaft column and the transmission rod are cooperated with each other to achieve the movement adjustment function, and the device is convenient to store the test tube.
[0022] Further improvement of the technical scheme of the present application is that a dismounting plate is movably installed on the outside of the gear block, a connecting block is movably sleeved on one end of the dismounting plate, a limiting groove is formed in one end of the connecting block, a limiting plate is fixedly installed on the top of the inner cavity of the limiting groove, and a threaded rod is arranged on the top of the limiting plate.
[0023] The technical scheme is characterized in that the dismounting plate, the connecting block, the limiting groove, the threaded rod and the limiting plate are cooperated with each other to achieve the threaded connection function, and the device is convenient to install and dismount.
[0024] Further improvement of the technical scheme of the present application is that clamping blocks are movably installed on the two sides of the connecting block, and spring plates are movably installed on the upper and lower ends of the inner side of the clamping blocks.
[0025] The technical scheme is characterized in that the clamping blocks and the spring plates are cooperated with each other to achieve the buffering sleeve joint function, which is conducive to buffering installation of the device and increases the safety performance of the device.
[0026] Further improvement of the technical scheme of the present application is that a fixed bolt is threadedly connected to the top of one side of the auxiliary plate, and the bottom of the fixed bolt extends to the top of the clamping block.
[0027] Due to the adoption of the above technical scheme, the present application has the following technical progress compared with the prior art:
[0028] 1. The present application provides a test tube placing device for biological manufacturing, which solves the problem of test tube damage caused by large drop during storage by the cooperation of the fixed base plate, hydraulic lifting column, sleeve ring, connecting rod and top plate, and achieves the function of lifting and moving. The lifting of the carrier plate is promoted, and the support of multiple connecting rods is matched at the bottom of the carrier plate, so that the bottom of the carrier plate is evenly stressed, facilitating stable storage of the test tube, increasing the safety of the device, and facilitating convenient feeding of the device.
[0029] 2. The present application provides a test tube placing device for biological manufacturing, which solves the problem of poor safety of the carrier plate in receiving the bottom of the test tube, which easily leads to wear of the bottom of the test tube and reduces the service life of the test tube, by the cooperation of the carrier plate, sleeve hole, double-layer rubber ring, buffer pressure column and buffer pad, and achieves the function of buffer protection, facilitating the improvement of safety performance of the storage mechanism.
[0030] 3. The present application provides a test tube placing device for biological manufacturing, which solves the problem of traditional storage box without the function of adjusting the inclination, which leads to the problem that some medicament test tubes cannot be stored, by the cooperation of the adjusting groove, rack, gear block and transmission rod, and achieves the function of rotational adjustment, thereby promoting the movement of the auxiliary plate to one side and driving the top of the test tube to tilt to one side, facilitating the storage of the device for some medicament test tubes, and increasing the convenience of the device.
[0031] 4. The present application provides a test tube placing device for biological manufacturing, which solves the problem of poor disassembly function of the connecting mechanism, which is not conducive to the maintenance and disassembly in the later stage, thereby reducing the service life of the device, by the cooperation of the connecting block, limiting groove, threaded rod, clamping block, spring plate and fixing bolt, and achieves the function of threaded disassembly, facilitating the convenient disassembly of the device, and the stable clamping and installation of the connecting mechanism improve the stability of the device, facilitating the convenient disassembly and installation of the device. BRIEF DESCRIPTION OF DRAWINGS
[0032] Figure 1 The present application is a structural schematic diagram;
[0033] Figure 2 The present application is an installation rack structural schematic diagram;
[0034] Figure 3 The present application is a carrier plate structural schematic diagram;
[0035] Figure 4 The present application is an enlarged view of A;
[0036] Figure 5The schematic view of the sleeve joint hole structure of the present application;
[0037] Figure 6 The enlarged view of B of the present application;
[0038] Figure 7 The schematic view of the adjusting groove structure of the present application;
[0039] Figure 8 The schematic view of the connecting block structure of the present application.
[0040] In the figure: 1, test tube storage box; 2, sealing cover; 3, sealing ring; 4, sleeve joint block; 5, clamping block; 6, inner plate; 7, mounting frame; 71, extension plate; 72, auxiliary plate; 73, test tube main body; 74, bearing plate; 741, sleeve joint hole; 742, double-layer rubber ring; 743, buffer pressure column; 744, buffer pad; 75, sliding groove; 76, movable block; 77, rotating shaft column; 78, dismounting plate; 781, connecting block; 782, limiting groove; 783, threaded rod; 784, clamping block; 785, spring plate; 786, fixing bolt; 79, adjusting groove; 791, rack; 792, gear block; 793, transmission rod; 8, fixed bottom plate; 81, hydraulic lifting column; 82, sleeve joint ring; 83, connecting rod; 84, top plate. DETAILED DESCRIPTION
[0041] The present application will be further described in detail below in combination with examples: Example 1
[0042] As Figures 1-8As shown, the present application provides a test tube placement device for bio-manufacturing, comprising a test tube storage box 1, a sealing cover 2 is movably installed on the top of the test tube storage box 1, a sealing ring 3 is fixedly installed on the inner side of the sealing cover 2, a sleeve block 4 is fixedly installed on the front of the sealing cover 2, a clamping block 5 is arranged at the bottom of the sleeve block 4, the clamping block 5 is fixedly installed on the front of the test tube storage box 1, an inner plate 6 is fixedly installed in the test tube storage box 1, a mounting rack 7 is movably installed at the top of the inner plate 6, a fixed bottom plate 8 is fixedly installed at the bottom of the inner plate 6, a lifting mechanism is movably sleeved at the middle of the fixed bottom plate 8, the lifting mechanism comprises a hydraulic lifting column 81, a sleeving ring 82 is fixedly installed on the outer side of the top of the hydraulic lifting column 81, a connecting rod 83 is fixedly installed on the outer side of the sleeving ring 82, a top plate 84 is fixedly installed on the top of the connecting rod 83, a bearing plate 74 is fixedly installed on the top of the top plate 84, a sleeving hole 741 is formed in the top of the bearing plate 74, a test tube body 73 is movably installed in the sleeving hole 741, an auxiliary plate 72 is movably installed on the top of the test tube body 73, an extension plate 71 is movably installed at both ends of the auxiliary plate 72, the extension plate 71 is movably installed on the inner side of the mounting rack 7, the hydraulic lifting column 81 is extended and retracted to move upwardly with the sleeving ring 82 and the connecting rod 83, so as to push the top plate 84 to lift the bearing plate 74, so that the bearing plate 74 is convenient for storing the test tube, preventing the test tube from falling a long distance and causing the bottom of the test tube to be damaged, then passing through the sleeve opening in the auxiliary plate 72, the bottom of the test tube is sleeved in the sleeving hole 741, which is convenient for the device to conveniently feed, and the four sleeving rings 82 and the connecting rods 83 are fixedly installed around the bottom of the bearing plate 74, which increases the uniform stress on the bottom, so that the bearing plate 74 stably rises and falls, thereby improving the stability of the device, then the hydraulic lifting column 81 is retracted to fall, which is convenient for the bearing plate 74 to drive the test tube to fall to the bottom of the inner plate 6, and then the sealing cover 2 is covered, the sealing ring 3 is clamped on the top of the test tube storage box 1, achieving the function of sealing closure, and then the sleeve block 4 and the clamping block 5 are connected and fixed, so as to conveniently and stably transport the device, and increase the convenience of the device. Example 2
[0043] As Figures 1-8 shown, on the basis of example 1, the present application provides a technical scheme: preferably, a double-layer rubber ring 742 is fixedly installed at the top of the inner cavity of the sleeving hole 741, a buffer pressing column 743 is fixedly installed on the inner side of the double-layer rubber ring 742, and a buffer pad 744 is fixedly installed at the bottom of the double-layer rubber ring 742, when the test tube is placed in the test tube box, the test tube body 73 is sleeved in the sleeving hole 741, the double-layer rubber ring 742 and the buffer pad 744 are used to flexibly buffer and protect the test tube, when the test tube is sleeved and pressed down, the double-layer rubber ring 742 is pushed and compressed to buffer the buffer pressing column 743, the buffer pressing column 743 is used to buffer the force, further buffering and protecting, and improving the safety performance of the device. Embodiment 3
[0044] As Figures 1-8 shown, on the basis of embodiment 1, the application provides a technical solution: preferably, one side of the inner cavity of the mounting frame 7 is provided with an adjusting groove 79, and an adjusting mechanism is movably mounted in the adjusting groove 79. The adjusting mechanism comprises a rack 791, one side of which is fixedly mounted on the inner wall of the adjusting groove 79. The side surface of the rack 791 is engaged with a gear block 792. The top of the gear block 792 is fixedly provided with a transmission rod 793. One side of the top of the mounting frame 7 is provided with a sliding groove 75. An active block 76 is movably mounted in the sliding groove 75. A rotating shaft column 77 is movably mounted in the active block 76. The bottom of the rotating shaft column 77 is movably mounted on the top of the transmission rod 793. The test tube body 73 is placed in the inside of the auxiliary plate 72. The rotating shaft column 77 is manually adjusted to rotate, thereby driving the transmission rod 793 and the gear block 792 to rotate. The gear block 792 moves in engagement with the rack 791, driving the auxiliary plate 72 to slide left and right, so that the extension plate 71 is clamped in the inside of the mounting frame 7. The extension plate 71 is inclined at the bottom, and the test tube body 73 is stored in an inclined manner. The device is suitable for storing part of the reagent test tube. The adjusting function of the device is beneficial to increase the convenience of the device. Embodiment 4
[0045] As Figures 1-8 shown, on the basis of embodiment 1, the application provides a technical solution: preferably, the outer side of the gear block 792 is movably provided with a dismounting plate 78. One end of the dismounting plate 78 is movably sleeved with a connecting block 781. One end of the connecting block 781 is provided with a limiting groove 782. A limiting plate is fixedly mounted on the top of the inner cavity of the limiting groove 782. A threaded rod 783 is arranged on the top of the limiting plate. The two sides of the connecting block 781 are movably provided with clamping blocks 784. Spring plates 785 are movably mounted on the upper and lower ends of the inner side of the clamping blocks 784. A fixed bolt 786 is threadedly connected to the top of one side of the auxiliary plate 72. The bottom of the fixed bolt 786 extends to the top of the clamping block 784. When the equipment is maintained, the threaded rod 783 is manually screwed, so that the bottom of the threaded rod 783 is threadedly withdrawn from the top of the dismounting plate 78, and the limiting connection between the connecting block 781 and the dismounting plate 78 is released. The dismounting plate 78 is conveniently dismounted, and the fixed bolt 786 is threadedly pulled out. The connecting block 781 is conveniently dismounted from the inside of the clamping block 784, thereby achieving the function of dismounting the connecting block 781. When the connecting block 781 is mounted, the spring plates 785 are used for buffering installation, increasing the protection function of the connecting mechanism, and facilitating stable connection and movement of the device.
[0046] The working principle of the test tube placing device for biological manufacturing will be described below.
[0047] As Figures 1-8As shown, by the hydraulic lifting column 81 telescopic movement, push the sleeve ring 82 and connecting rod 83 to move up, so that the push plate 84 lifting bearing plate 74, so that the bearing plate 74 to store the test tube, prevent the test tube fall distance is large, resulting in the test tube bottom collision damage function, and then from the inside of the sleeve mouth auxiliary plate 72 through, the bottom of the test tube sleeve in the sleeve hole 741 inside, the device is convenient and convenient feeding, and cooperate with four sleeve ring 82 and connecting rod 83 fixed installation in the bottom of the bearing plate 74 around, increase the bottom of the uniform stress, so that the bearing plate 74 stable rise and fall, thereby improving the stability of the device, and then cooperate with the hydraulic lifting column 81 telescopic down, easy bearing plate 74 driven test tube fall to the bottom of the inner plate 6, cover the sealing cover 2, sealing ring 3 is connected in the top of the test tube storage box 1, to achieve the sealing function, and cooperate with the sleeve block 4 and the block 5 are connected and fixed, so that the device is stable transportation, the test tube is placed in the test tube box inside, the test tube body 73 sleeve in the sleeve hole 741 inside, the use of double layer rubber ring 742 and the buffer pad 744 flexibility, buffer protection test tube, and the test tube sleeve down pressure, pushing double layer rubber ring 742 compression buffer pressure column 743, the use of buffer pressure column 743 buffering force, further buffering protection, improve the safety performance of the device, and then through the test tube body 73 placed in the auxiliary plate 72 inside, manual adjustment of the rotating shaft column 77 rotation, thereby driving the transmission rod 793 and gear block 792 rotation, gear block 792 in the rack 791 meshing movement, driven auxiliary plate 72 left and right slide, so that the extension plate 71 is connected in the inside of the mounting frame 7, the extension plate 71 and the bottom of the inclined, test tube body 73 inclined storage, convenient device suitable for some of the test tube storage, the use of device adjustment function, is conducive to the device to increase the convenience, the use of artificial twist screw rod 783, so that the bottom of the screw rod 783 from the top of the disassembly plate 78 thread exit, remove the connecting block 781 and the disassembly plate 78 limit connection, convenient disassembly plate 78 convenient disassembly, and cooperate with the fixed bolt 786 thread pull out, convenient connection block 781 from the inside of the clamping block 784 disassembly, so as to achieve the function of disassembly connecting block 781, connecting block 781 installation, the use of spring plate 785 elastic pressure, buffering installation, increase the protection function of the connection mechanism, convenient device stable connection movement.
[0048] The above is a detailed description of the general application, but on the basis of the application, some modifications or improvements can be made, which is obvious to those skilled in the art. Therefore, the modification or improvement without departing from the spirit of the application, is within the scope of the application.
Claims
1. A test tube placement device for biofabrication, comprising a test tube storage box (1), characterized in that: The top of the test tube storage box (1) is movably installed with a sealing cover (2), the inner side of the sealing cover (2) is fixedly installed with a sealing ring (3), the front of the sealing cover (2) is fixedly installed with a sleeve joint block (4), the bottom of the sleeve joint block (4) is provided with a clamping block (5), the side of the clamping block (5) is fixedly installed on the front of the test tube storage box (1), the inside of the test tube storage box (1) is fixedly installed with an inner plate (6), the top of the inner plate (6) is movably installed with a mounting frame (7); The bottom of the inner plate (6) is fixedly installed with a fixed bottom plate (8), the middle of the fixed bottom plate (8) is movably sleeved with a lifting mechanism; One side of the mounting frame (7) is provided with an adjusting groove (79), and the adjusting groove (79) is movably installed with an adjusting mechanism; The adjusting mechanism comprises a rack (791), one side of the rack (791) is fixedly installed on the inner wall of the adjusting groove (79), the side of the rack (791) is meshed with a gear block (792), and the top of the gear block (792) is fixedly installed with a transmission rod (793); The lifting mechanism comprises a hydraulic lifting column (81), the outside of the top of the hydraulic lifting column (81) is fixedly installed with a sleeve ring (82), the outside of the sleeve ring (82) is fixedly installed with a connecting rod (83), and the top of the connecting rod (83) is fixedly installed with a top plate (84); The top of the top plate (84) is fixedly installed with a bearing plate (74), the top of the bearing plate (74) is provided with a sleeve hole (741), and the inside of the sleeve hole (741) is movably installed with a test tube body (73); The top of the test tube body (73) is movably installed with an auxiliary plate (72), both ends of the auxiliary plate (72) are movably installed with an extension plate (71), and both ends of the extension plate (71) are movably installed on the inner side of the mounting frame (7); One side of the top of the mounting frame (7) is provided with a sliding groove (75), the inside of the sliding groove (75) is movably installed with a movable block (76), the inside of the movable block (76) is movably installed with a rotating shaft column (77), and the bottom of the rotating shaft column (77) is movably installed on the top of the transmission rod (793); The outside of the gear block (792) is movably installed with a dismounting plate (78), one end of the dismounting plate (78) is movably sleeved with a connecting block (781), one end of the connecting block (781) is provided with a limiting groove (782), the top of the limiting groove (782) is fixedly installed with a limiting plate, and the top of the limiting plate is provided with a threaded rod (783); Both sides of the connecting block (781) are movably installed with clamping blocks (784), and the inner side of the clamping blocks (784) is movably installed with spring plates (785) at the upper and lower ends; The top of one side of the auxiliary plate (72) is threadedly connected with a fixing bolt (786), and the bottom of the fixing bolt (786) extends to the top of the clamping block (784).
2. The test tube placement device for biofabrication according to claim 1, characterized in that: The top of the inner cavity of the sleeve joint hole (741) is fixedly provided with a double-layer rubber ring (742), the inner side of the double-layer rubber ring (742) is fixedly provided with a buffer pressing column (743), and the bottom of the double-layer rubber ring (742) is fixedly provided with a buffer pad (744).
Citation Information
Patent Citations
Test tube placing device for biological manufacturing
CN214320238U
Constant container box for transporting stem cells
CN217199681U