Storage equipment for immune cells
By setting up clamping devices, shock absorption devices and buffering devices in the immune cell storage device, fixing and shock absorption of reagent tubes, the problem of poor earthquake resistance of existing storage boxes is solved, and the cell viability and seismic performance of storage devices are improved.
Patent Information
- Application Number
- CN202421636053.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-10
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-07-10
AI Technical Summary
The existing immune cell storage chambers have poor anti-seismic effects during transportation, resulting in easy collision of reagent tubes, affecting the integrity of the cell membrane and the survival ability of the cells.
A storage device for immune cells is designed. By setting up a clamping device, shock absorbing device and buffering device, the horizontal and vertical positions of the reagent tube are fixed and shock-absorbing to avoid bumps.
It effectively reduces the shaking and bumping of the reagent tube during transportation, improves the viability of cells and the shock resistance of storage equipment.
Smart Images

Figure CN222973917U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of immune cell storage, in particular to a storage device for immune cells. Background Art
[0002] Immune cell storage is a biomedical technology mainly used to preserve an individual's immune cells for future use. Usually, there are special storage boxes for immune cell storage.
[0003] However, the immune cell storage box may be jolted during transportation. However, the existing immune cell storage box has poor anti-seismic effect, and the immune cell reagent is likely to collide with the inner wall of the box, thus affecting the integrity of the cell membrane and further affecting the viability of the cells. Summary of the Utility Model
[0004] To solve the above technical problems, the utility model provides a storage device for immune cells. By setting this device, the horizontal and vertical positions of the reagent tube can be fixed. When the box body shakes, the clamping device, the shock-absorbing device and the buffer device can shock-absorb the horizontal and vertical directions of the reagent tube, and can shock-absorb and protect the reagent tube to avoid its collision.
[0005] A storage device for immune cells of the utility model comprises a box body, a box cover, a handle, two groups of card seats, two groups of buckles, a limiting plate, multiple groups of clamping devices, a shock-absorbing device, a buffer device and an installation device. The box cover is rotatably installed at the top end of the box body, the handle is installed at the top end of the box cover, two groups of card seats are respectively installed at the left and right sides of the front end of the box cover, two groups of buckles are respectively installed at the upper left side and the upper right side of the front end of the box body, the two groups of buckles are cooperatively clamped with the two groups of card seats, the limiting plate is installed inside the box body through the installation device, multiple through holes are communicatedly arranged on the limiting plate, multiple groups of clamping devices are respectively installed in the multiple through holes of the limiting plate, the shock-absorbing device is installed at the bottom inside the box body, and the buffer device is installed inside the box cover.
[0006] Preferably, the clamping device comprises four groups of first telescopic tubes, four groups of first telescopic rods, four groups of first springs and four groups of arc-shaped clamping plates. Installation grooves are arranged at the front, rear, left and right parts of the through hole of the limiting plate. The four groups of first telescopic tubes are respectively installed in the four installation grooves of the through hole of the limiting plate. The four groups of first telescopic rods are respectively slidably connected with the four groups of first telescopic tubes. The four groups of first telescopic rods are respectively installed at the outer ends of the four groups of arc-shaped clamping plates. The four groups of first springs are respectively sleeved on the four groups of first telescopic rods. One ends of the four groups of first springs are connected with the four groups of first telescopic rods, and the other ends of the four groups of first springs are connected with the four groups of first telescopic tubes.
[0007] Preferably, the shock absorption device includes four sets of second telescopic tubes, four sets of second telescopic rods, four sets of second springs and a support plate. The four sets of second telescopic tubes are respectively installed on the left front side, left and right sides, right front side and right rear side of the inner bottom end of the box body. The four sets of second telescopic rods are respectively installed on the left front side, left rear side, right front side and right rear side of the bottom end of the support plate. The four sets of second telescopic rods are respectively slidably connected with the four sets of second telescopic tubes. The four sets of second springs are respectively sleeved on the four sets of second telescopic rods. One end of the four sets of second springs is connected with the four sets of second telescopic rods, and the other end of the four sets of second springs is connected with the four sets of second telescopic tubes. A plurality of grooves are arranged at the top end of the support plate, and the positions of the plurality of grooves correspond to the positions of the plurality of through holes of the limiting plate.
[0008] Preferably, the buffer device includes four sets of third telescopic tubes, four sets of third telescopic rods, four sets of third springs and a pressing plate. The four sets of third telescopic tubes are respectively installed on the left front side, left rear side, right front side and right rear side of the inner top end of the box cover. The four sets of third telescopic rods are respectively installed on the left front side, left rear side, right front side and right rear side of the top end of the pressing plate. The four sets of third telescopic rods are respectively slidably connected with the four sets of third telescopic tubes. The four sets of third springs are respectively sleeved on the four sets of third telescopic rods. A plurality of grooves are arranged at the bottom end of the pressing plate, and the positions of the grooves correspond to the positions of the plurality of through holes of the limiting plate.
[0009] Preferably, the installation device includes four sets of sliders, four sets of bolts and four sets of fixing plates. Chute grooves are arranged on the front side and rear side of the left end and the right end of the box body. The four sets of sliders are respectively installed on the front side and rear side of the left end and the right end of the limiting plate. The four sets of sliders are respectively slidably connected with the four sets of chute grooves of the box body. Thread grooves are arranged at the bottom ends of the four sets of chute grooves of the box body. Through holes are communicated with the four sets of sliders. The four sets of bolts respectively pass through the through holes of the four sets of sliders and are threadedly connected with the thread grooves of the four sets of chute grooves. The four sets of fixing plates are respectively installed on the front side and rear side of the left end and the right end of the box body, and the four sets of fixing plates are located on the lower side of the four sets of chute grooves of the box body.
[0010] Preferably, sponge pads are arranged at the top end of the support plate and the bottom end of the pressing plate.
[0011] Preferably, a rubber pad is arranged at the inner end of the arc-shaped clamping plate.
[0012] Preferably, a handle sleeve is arranged on the handle.
[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows: Open the box cover, pass multiple groups of reagents through multiple perforations of the limit plate to contact the shock-absorbing device, and multiple clamping devices on the limit plate clamp and fix multiple reagent tubes, thereby fixing the horizontal position of the reagent tubes. Then cover the box cover on the top of the box body, and the buffer device in the box cover contacts the tops of multiple reagent tubes. After that, make two sets of buckles cooperate with two sets of clamping seats for clamping. The cooperation of the buffer device and the shock-absorbing device in the box cover fixes the vertical position of the reagent tubes. By setting this device, the horizontal and vertical positions of the reagent tubes can be fixed. When the box body shakes, the clamping device, the shock-absorbing device and the buffer device shock-absorb the horizontal and vertical directions of the reagent tubes, which can shock-absorb and protect the reagent tubes to prevent them from being knocked. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is the structural schematic diagram of the first perspective of the present utility model;
[0015] Figure 2 is the structural schematic diagram of the second perspective of the present utility model;
[0016] Figure 3 is the structural schematic diagram of the third perspective of the present utility model;
[0017] Figure 4 is the enlarged sectional structural schematic diagram of the box cover;
[0018] Figure 5 is Figure 2 the enlarged structural schematic diagram of A in
[0019] Figure 6 is Figure 2 the enlarged structural schematic diagram of B in
[0020] Reference numerals in the drawings: 1, box body; 2, box cover; 3, handle; 4, clamping seat; 5, buckle; 6, limit plate; 7, first telescopic tube; 8, first telescopic rod; 9, first spring; 10, arc-shaped clamping plate; 11, second telescopic tube; 12, second telescopic rod; 13, second spring; 14, support plate; 15, third telescopic tube; 16, third telescopic rod; 17, third spring; 18, pressing plate; 19, slider; 20, bolt; 21, fixing plate. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0021] The following combines the drawings and embodiments to further describe in detail the specific embodiments of the present utility model. The following embodiments are used to illustrate the present utility model, but are not used to limit the scope of the present utility model.
[0022] As Figures 1 to 6As shown in the figure, a storage device for immune cells of the present utility model includes a box body 1, a box cover 2, a handle 3, two groups of card seats 4, two groups of buckles 5, a limiting plate 6, multiple groups of clamping devices, a shock absorption device, a buffer device and a mounting device. The box cover 2 is rotatably mounted on the top end of the box body 1. The handle 3 is mounted on the top end of the box cover 2. The two groups of card seats 4 are respectively mounted on the left side and the right side of the front end of the box cover 2. The two groups of buckles 5 are respectively mounted on the upper left side and the upper right side of the front end of the box body 1. The two groups of buckles 5 are cooperatively clamped with the two groups of card seats 4. The limiting plate 6 is mounted inside the box body 1 through the mounting device. Multiple through holes are communicated on the limiting plate 6. Multiple groups of clamping devices are respectively mounted in the multiple through holes of the limiting plate 6. The shock absorption device is mounted on the inner bottom of the box body 1. The buffer device is mounted inside the box cover 2;
[0023] Open the box cover 2, pass multiple groups of reagents through the multiple through holes of the limiting plate 6 to contact the shock absorption device. The multiple groups of clamping devices on the limiting plate 6 clamp and fix the multiple groups of reagent tubes, thereby fixing the horizontal position of the reagent tubes. Then cover the box cover 2 on the top end of the box body 1. The buffer device inside the box cover 2 contacts the tops of the multiple groups of reagent tubes. After that, make the two groups of buckles 5 cooperate with the two groups of card seats 4 for clamping. The buffer device and the shock absorption device inside the box cover 2 cooperate to fix the vertical position of the reagent tubes. By setting this device, the horizontal and vertical positions of the reagent tubes can be fixed. When the box body 1 shakes, the clamping device, the shock absorption device and the buffer device shock-absorb the horizontal and vertical directions of the reagent tubes, and can shock-absorb and protect the reagent tubes to prevent them from being knocked.
[0024] As a preference of the above embodiment, the clamping device includes four groups of first telescopic tubes 7, four groups of first telescopic rods 8, four groups of first springs 9 and four groups of arc-shaped clamping plates 10. Installation grooves are provided in the front, rear, left and right parts of the through holes of the limiting plate 6. The four groups of first telescopic tubes 7 are respectively mounted in the four installation grooves of the through holes of the limiting plate 6. The four groups of first telescopic rods 8 are respectively slidably connected with the four groups of first telescopic tubes 7. The four groups of first telescopic rods 8 are respectively mounted on the outer ends of the four groups of arc-shaped clamping plates 10. The four groups of first springs 9 are respectively sleeved on the four groups of first telescopic rods 8. One ends of the four groups of first springs 9 are connected with the four groups of first telescopic rods 8, and the other ends of the four groups of first springs 9 are connected with the four groups of first telescopic tubes 7;
[0025] By setting the first telescopic tube 7, the first telescopic rod 8, the first spring 9 and the arc-shaped clamping plate 10, pass the reagent tube through the four arc-shaped clamping plates 10 of the through hole of the limiting plate 6 to contact the shock absorption device. The four arc-shaped clamping plates 10 clamp and fix the reagent tube under the action of the four groups of first springs 9. When the box body 1 generates horizontal vibration, the four groups of first telescopic rods 8 slide in the four groups of first telescopic tubes 7, and the four groups of first springs 9 generate elastic deformation, thereby shock-absorbing the reagent tube, which not only plays a role in fixing the reagent tube, but also plays a role in horizontally shock-absorbing the reagent tube.
[0026] Preferably, as in the above embodiment, the shock absorption device includes four sets of second telescopic tubes 11, four sets of second telescopic rods 12, four sets of second springs 13 and a support plate 14. The four sets of second telescopic tubes 11 are respectively installed on the left front side, left and right sides, right front side and right rear side of the inner bottom end of the box body 1. The four sets of second telescopic rods 12 are respectively installed on the left front side, left rear side, right front side and right rear side of the bottom end of the support plate 14. The four sets of second telescopic rods 12 are respectively slidably connected with the four sets of second telescopic tubes 11. The four sets of second springs 13 are respectively sleeved on the four sets of second telescopic rods 12. One end of the four sets of second springs 13 is connected with the four sets of second telescopic rods 12, and the other end of the four sets of second springs 13 is connected with the four sets of second telescopic tubes 11. A plurality of grooves are provided at the top end of the support plate 14, and the positions of the plurality of grooves correspond to the positions of the plurality of through holes of the limiting plate 6;
[0027] By providing the second telescopic tube 11, the second telescopic rod 12, the second spring 13 and the support plate 14, a plurality of reagent tubes are respectively placed in the grooves of the support plate 14 after passing through the four arc-shaped clamping plates 10 of each through hole of the limiting plate 6. The cooperation of the four sets of second telescopic tubes 11, the four sets of second telescopic rods 12 and the four sets of second springs 13 supports the plurality of reagent tubes on the support plate 14. When the box body 1 is vertically vibrated, the four sets of second telescopic tubes 11, the four sets of second telescopic rods 12, the four sets of second springs 13 and the buffer device cooperate to shock-absorb the reagent tubes, playing a role in shock-absorbing the reagent tubes.
[0028] Preferably, as in the above embodiment, the buffer device includes four sets of third telescopic tubes 15, four sets of third telescopic rods 16, four sets of third springs 17 and a pressing plate 18. The four sets of third telescopic tubes 15 are respectively installed on the left front side, left rear side, right front side and right rear side of the inner top end of the box cover 2. The four sets of third telescopic rods 16 are respectively installed on the left front side, left rear side, right front side and right rear side of the top end of the pressing plate 18. The four sets of third telescopic rods 16 are respectively slidably connected with the four sets of third telescopic tubes 15. The four sets of third springs 17 are respectively sleeved on the four sets of third telescopic rods 16. A plurality of grooves are provided at the bottom end of the pressing plate 18, and the positions of the grooves correspond to the positions of the plurality of through holes of the limiting plate 6;
[0029] By providing the third telescopic tube 15, the third telescopic rod 16, the third spring 17 and the pressing plate 18, when the box cover 2 is covered on the top end of the box body 1, the four sets of third springs 17 drive the pressing plate 18 to move downward, and the pressing plate 18 adaptively presses the plurality of reagent tubes. When the box body 1 generates vertical vibration, the four sets of second telescopic tubes 11, the four sets of second telescopic rods 12, the four sets of second springs 13, the four sets of third telescopic tubes 15, the four sets of third telescopic rods 16 and the four sets of third springs 17 cooperate to vertically shock-absorb the reagent tubes, playing a role in vertically shock-absorbing the reagent tubes.
[0030] Preferably, as in the above embodiment, the mounting device includes four sets of sliders 19, four sets of bolts 20 and four sets of fixing plates 21. Chutes are provided on the front and rear sides of the left and right ends inside the box body 1. The four sets of sliders 19 are respectively mounted on the front and rear sides of the left and right ends of the limiting plate 6. The four sets of sliders 19 are respectively slidably connected to the four chutes of the box body 1. Threaded grooves are provided at the bottoms of the four chutes of the box body 1. Through holes are communicated with the four sets of sliders 19. The four sets of bolts 20 respectively pass through the through holes of the four sets of sliders 19 and are threadedly connected to the threaded grooves of the four chutes. The four sets of fixing plates 21 are respectively mounted on the front and rear sides of the left and right ends inside the box body 1. The four sets of fixing plates 21 are located below the four chutes of the box body 1;
[0031] By providing the sliders 19, bolts 20 and fixing plates 21, the four sets of sliders 19 on the limiting plate 6 are aligned with the four chutes of the box body 1, so that the four sets of sliders 19 slide in the four chutes of the box body 1 to drive the limiting plate 6 to slide downward. After the four sets of sliders 19 slide to the bottoms of the four chutes of the box body 1, the four sets of fixing plates 21 support the limiting plate 6, and then the four sets of bolts 20 pass through the through holes of the four sets of sliders 19 and are threadedly connected to the four chutes, thereby fixing the limiting plate 6 and facilitating the disassembly and assembly of the limiting plate 6.
[0032] Preferably, as in the above embodiment, sponge pads are provided at the top end of the support plate 14 and the bottom end of the pressing plate 18;
[0033] The shock absorption effect on the reagent tube can be further improved.
[0034] Preferably, as in the above embodiment, a rubber pad is provided at the inner end of the arc-shaped clamping plate 10;
[0035] The fixing effect of the arc-shaped clamping plate 10 on the reagent tube can be improved.
[0036] Preferably, as in the above embodiment, a handle sleeve is provided on the handle 3;
[0037] The friction of the handle 3 can be increased, which is convenient for operation.
[0038] A storage device for immune cells of the present utility model, when in operation, first opens the box cover 2, passes multiple reagent tubes through the four arc-shaped clamping plates 10 of each through-hole of the limit plate 6 and places them in the grooves of the support plate 14. The four arc-shaped clamping plates 10 of each through-hole of the limit plate 6 clamp and fix the reagent tubes under the action of the four first springs 9. Then, the box cover 2 is installed on the top of the box body 1, and the four third springs 17 drive the pressure plate 18 to move downward, and the pressure plate 18 adaptively presses the multiple reagent tubes. When the box body 1 generates lateral vibration, the multiple first telescopic rods 8 slide in the multiple first telescopic tubes 7, and the multiple first springs 9 undergo elastic deformation, thereby damping the multiple reagent tubes. When the box body 1 generates vertical vibration, the four second telescopic tubes 11, the four second telescopic rods 12, the four second springs 13, the four third telescopic tubes 15, the four third telescopic rods 16 and the four third springs 17 cooperate to perform vertical damping on the reagent tubes.
[0039] A storage device for immune cells of the present utility model, its installation method, connection method or setting method are all common mechanical methods, and any method that can achieve its beneficial effects can be implemented.
[0040] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.
Claims
1. A storage device for immune cells, characterized in that: The invention comprises a box body (1), a box cover (2), a handle (3), two groups of clamping seats (4), two groups of buckles (5), a limiting plate (6), multiple groups of clamping devices, a shock absorbing device, a buffer device and a mounting device. The box cover (2) is rotatably mounted on the top of the box body (1), the handle (3) is mounted on the top of the box cover (2), the two groups of clamping seats (4) are respectively mounted on the left and right sides of the front end of the box cover (2), the two groups of buckles (5) are respectively mounted on the upper left and upper right sides of the front end of the box body (1), the two groups of buckles (5) are matched with the two groups of clamping seats (4) for clamping, the limiting plate (6) is mounted inside the box body (1) through the mounting device, the limiting plate (6) is connected with multiple groups of through holes, the multiple groups of clamping devices are respectively mounted in the multiple groups of through holes of the limiting plate (6), the shock absorbing device is mounted on the bottom of the box body (1), and the buffer device is mounted inside the box cover (2).
2. A storage device for immune cells according to claim 1, characterized in that: The clamping device comprises four groups of first telescopic tubes (7), four groups of first telescopic rods (8), four groups of first springs (9) and four groups of arc-shaped clamping plates (10). The front, rear, left and right parts of the through hole of the limit plate (6) are all provided with mounting grooves. The four groups of first telescopic tubes (7) are respectively mounted in the four groups of mounting grooves of the through hole of the limit plate (6). The four groups of first telescopic rods (8) are respectively slidably connected with the four groups of first telescopic tubes (7). The four groups of first telescopic rods (8) are respectively mounted on the outer ends of the four groups of arc-shaped clamping plates (10). The four groups of first springs (9) are respectively sleeved on the four groups of first telescopic rods (8). One end of the four groups of first springs (9) is connected with the four groups of first telescopic rods (8), and the other end of the four groups of first springs (9) is connected with the four groups of first telescopic tubes (7).
3. A storage device for immune cells as claimed in claim 2, characterized in that: The shock absorbing device comprises four groups of second telescopic tubes (11), four groups of second telescopic rods (12), four groups of second springs (13) and a support plate (14). The four groups of second telescopic tubes (11) are respectively mounted on the left front side, left and right sides, right front side and right rear side of the bottom end of the box body (1). The four groups of second telescopic rods (12) are respectively mounted on the left front side, left rear side, right front side and right rear side of the bottom end of the support plate (14). The four groups of second telescopic rods (12) are respectively slidably connected to the four groups of second telescopic tubes (11). The four groups of second springs (13) are respectively sleeved on the four groups of second telescopic rods (12). One end of the four groups of second springs (13) is connected to the four groups of second telescopic rods (12), and the other end of the four groups of second springs (13) is connected to the four groups of second telescopic tubes (11). The top end of the support plate (14) is provided with a plurality of grooves, and the plurality of grooves correspond to the positions of the plurality of through holes of the limiting plate (6).
4. A storage device for immune cells as claimed in claim 3, characterized in that: The buffer device comprises four groups of third telescopic tubes (15), four groups of third telescopic rods (16), four groups of third springs (17) and a pressure plate (18). The four groups of third telescopic tubes (15) are respectively mounted on the left front side, the left rear side, the right front side and the right rear side of the inner top of the box cover (2). The four groups of third telescopic rods (16) are respectively mounted on the left front side, the left rear side, the right front side and the right rear side of the top of the pressure plate (18). The four groups of third telescopic rods (16) are respectively slidably connected to the four groups of third telescopic tubes (15). The four groups of third springs (17) are respectively sleeved on the four groups of third telescopic rods (16). A plurality of grooves are arranged at the bottom end of the pressure plate (18), and the grooves correspond to the positions of the plurality of through holes of the limiting plate (6).
5. A storage device for immune cells as claimed in claim 4, characterized in that: The mounting device comprises four groups of slide blocks (19), four groups of bolts (20) and four groups of fixing plates (21). The front and rear sides of the left and right ends of the box body (1) are provided with slide grooves. The four groups of slide blocks (19) are respectively installed at the front and rear sides of the left and right ends of the limiting plate (6). The four groups of slide blocks (19) are respectively slidably connected with the four groups of slide grooves of the box body (1). The bottom ends of the four groups of slide grooves of the box body (1) are all provided with thread grooves. The four groups of slide blocks (19) are all connected with through holes. The four groups of bolts (20) respectively pass through the through holes of the four groups of slide blocks (19) and are threadedly connected with the thread grooves of the four groups of slide grooves. The four groups of fixing plates (21) are respectively installed at the front and rear sides of the left and right ends of the box body (1). The four groups of fixing plates (21) are located at the lower sides of the four groups of slide grooves of the box body (1).
6. A storage device for immune cells as claimed in claim 5, characterized in that: The top end of the support plate (14) and the bottom end of the pressure plate (18) are both provided with sponge pads.
7. A storage device for immune cells as claimed in claim 6, characterized in that: A rubber pad is provided at the inner end of the arc-shaped clamping plate (10).
8. A storage device for immune cells as claimed in claim 7, characterized in that: The handle (3) is provided with a handle cover.