Cell incubator convenient for taking and placing cell culture dishes
By designing components with automatically adjusting clamps and locking blocks in the cell culture incubator, the problems of low fixation efficiency of culture dishes and inconvenient operation of cover plates are solved, realizing an efficient and reliable cell culture process.
Patent Information
- Application Number
- CN202511298874.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-11
- Publication Date
- 2025-10-28
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In existing cell culture incubators, the fixation efficiency of culture dishes is low, requiring the replacement of different fixation components. Furthermore, the cover plate must be held when handling culture dishes, resulting in low efficiency and easy spillage of culture medium, which affects the reliability of cell culture.
An outer wall clamping assembly, a cover plate placement assembly, and an auxiliary installation assembly were designed. Through an electric slide rail and a motor-driven clamping plate and snap-fit block, the tilt angle between the clamping plate and the cover plate is automatically adjusted to achieve the fixation of different culture dishes and the automatic installation and removal of the cover plate.
It improves the efficiency and reliability of cell culture, avoids the installation and removal of the cover plate in manual operation, and reduces the risk of culture failure.
Smart Images

Figure CN120843239A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of cell culture technology, and in particular relates to a cell culture box that facilitates the placement and removal of cell culture dishes. Background Technology
[0002] Cell culture is a method of simulating the in vivo environment in vitro to enable cells to survive, grow, reproduce, and maintain their main structures and functions. Cell culture technology is an important and commonly used technique in cell biology research, and researchers can choose to use a cell culture incubator to perform this task.
[0003] When storing culture dishes in a cell culture incubator, it is usually necessary to use fasteners to secure the dishes within the incubator to prevent them from shifting and causing culture failure. However, culture dishes come in various shapes and sizes, with different angles of inclination on their outer walls. When securing different types of dishes, the corresponding fasteners must be changed, reducing efficiency. Furthermore, when placing a culture dish, the operator must install a cover plate on top of the dish and then snap the clips on both sides of the cover plate onto the outer wall of the dish before placing it in the cell culture incubator. When removing the dish, the cover plate must be removed to observe the cells. However, operators must hold the dish while installing or removing the cover plate, resulting in extremely low efficiency and a risk of spilling the culture medium, affecting cell culture and significantly reducing the efficiency and reliability of cell culture.
[0004] To address these issues, we propose a cell culture incubator that facilitates the placement and removal of cell culture dishes. Summary of the Invention
[0005] To achieve the above objectives, the present invention adopts the following technical solution: A cell culture box for easy placement and removal of cell culture dishes includes a box body. Multiple placement plates are fixedly connected to the inner wall of the box body. Multiple first grooves are formed on the top sidewalls of the placement plates. First electric slide rails are fixedly connected to the inner walls of the first grooves. First sliding plates are slidably connected to the top sidewalls of the first electric slide rails. A fixing plate is fixedly connected to the top sidewall of the first sliding plate. An outer wall clamping assembly for fixing the outer wall of the culture dish is formed on the top sidewall of the fixing plate. A cover plate placement assembly for fixing and installing a cover plate of the culture dish is formed on the sidewall of the fixing plate. An auxiliary installation assembly for engaging the cover plate with the outer wall of the culture dish is formed at the lower end of the cover plate placement assembly.
[0006] Preferably, the outer wall clamping assembly includes a plurality of second grooves formed on the top side wall of the fixed plate, a plurality of third grooves formed on the inner wall of the second grooves, a first motor fixedly connected to one end of the inner wall of each third groove, a rotating rod fixedly connected to the output end of each first motor, one end of the rotating rod being rotatably connected to the inner wall of the third groove, a first electric telescopic rod fixedly connected to the rod wall of the rotating rod, and a first clamping plate fixedly connected to the telescopic end of the first electric telescopic rod.
[0007] Preferably, the cover plate placement assembly includes a fourth groove formed on the side wall of the fixed plate, a second electric slide rail fixedly connected to the inner wall of the fourth groove, a second slide plate slidably connected to one end side wall of the second electric slide rail, a side plate fixedly connected to the side wall of the second slide plate, a fifth groove formed on the side wall of the two side plates at opposite ends, a third electric slide rail fixedly connected to the inner wall of the fifth groove, and a third slide plate slidably connected to the side wall of the third electric slide rail.
[0008] Preferably, the two third sliding plates are fixedly connected to the same support plate at opposite ends of their sidewalls. The bottom sidewall of the support plate is symmetrically fixedly connected to two second electric telescopic rods. The telescopic ends of the second electric telescopic rods are fixedly connected to mounting rings. The bottom sidewall of the mounting rings is provided with multiple sixth grooves. The inner wall of one end of each sixth groove is fixedly connected to a third electric telescopic rod. The telescopic ends of each third electric telescopic rod are fixedly connected to a receiving plate.
[0009] Preferably, the mounting ring has a cavity inside, a first gear is rotatably connected to the inner wall of the bottom end of the cavity, an annular opening communicating with the cavity is opened on the inner wall of the mounting ring, a second gear is rotatably connected to the inner wall of the annular opening, the second gear meshes with the first gear, a second motor is fixedly connected to the top side wall of the mounting ring, and the output end of the second motor passes through the side wall of the mounting ring and is fixedly connected to the side wall of the first gear.
[0010] Preferably, the inner wall of the second gear is fixedly connected to two first U-plates, the inner wall of the first U-plate is rotatably connected to a first round rod, the side wall of the first U-plate is fixedly connected to a third motor, the output end of the third motor passes through the side wall of the first U-plate and is fixedly connected to one end of the first round rod, the rod wall of the first round rod is fixedly connected to a fourth electric telescopic rod, and the telescopic end of the fourth electric telescopic rod is fixedly connected to a second clamping plate.
[0011] Preferably, the auxiliary installation assembly includes a seventh groove formed on the bottom sidewall of the mounting ring, a fourth electric slide rail fixedly connected to the top inner wall of the seventh groove, two fourth sliding plates slidably connected to the bottom sidewall of the fourth electric slide rail, a second U-plate fixedly connected to the bottom sidewall of the fourth sliding plates, a second round rod rotatably connected to the inner wall of the second U-plate, a fourth motor fixedly connected to the sidewall of the second U-plate, the output end of the fourth motor passing through the sidewall of the second U-plate and fixedly connected to one end of the second round rod, a fifth electric telescopic rod fixedly connected to the rod wall of the second round rod, a connecting plate fixedly connected to the telescopic end of the fifth electric telescopic rod, a sixth electric telescopic rod fixedly connected to the sidewall of the connecting plate, and a third U-plate fixedly connected to the telescopic end of the sixth electric telescopic rod.
[0012] Preferably, a third round rod is rotatably connected to the inner wall of the third U-plate, a fifth motor is fixedly connected to the side wall of the third U-plate, the output end of the fifth motor passes through the side wall of the third U-plate and is fixedly connected to one end of the third round rod, a snap-fit block is fixedly connected to the rod wall of the third round rod, a sixth motor is fixedly connected to the bottom side wall of the snap-fit block, a seventh electric telescopic rod is fixedly connected to the output end of the sixth motor, and a pull plate is fixedly connected to the telescopic end of the seventh electric telescopic rod.
[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: The design incorporates an outer wall clamping assembly, a cover plate placement assembly, and auxiliary installation components. When cell culture dishes need to be placed or removed from the cell culture chamber, the tilt angle of the first clamp can be adjusted according to the tilt angle of the outer wall of different types of cell culture dishes. This ensures that the tilt angle of the first clamp matches the tilt angle of the outer wall of the cell culture dish, allowing it to secure cell culture dishes at different tilt angles. This eliminates the need for staff to replace corresponding fasteners, reducing efficiency. Simultaneously, the design ensures that the tilt angle of the second clamp matches the corresponding cover plate's outer wall, allowing the cover plate to be screwed onto the cell culture dish using the second clamp. Above, the initial installation between the cell culture dish and the cover plate is completed. Then, the snap-fit block allows the buckles on the outside of the cover plate to be pressed into the slots on the outer wall of the cell culture dish, thus automatically installing the cover plate on top of the cell culture dish. When it is necessary to remove the cell culture dish, the pull plate is used to pull the buckles out of the slots on the outer wall of the cell culture dish. Then, the second clamp is used to remove the cover plate from the cell culture dish. After that, the staff can directly take away the cell culture dish. This avoids the need for the staff to hold the culture dish to install or remove the cover plate during the process of placing or removing the culture dish, which greatly improves the culture efficiency and reliability of cell culture. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2This is a partial structural diagram of the present invention. Figure 1 ; Figure 3 This is a partial structural diagram of the present invention. Figure 2 ; Figure 4 This is a partial structural diagram of the present invention. Figure 3 ; Figure 5 This is a partial structural diagram of the present invention. Figure 4 ; Figure 6 This is a cross-sectional view of part of the structure of the present invention; Figure 7 For the present invention Figure 6 Enlarged view of part A; Figure 8 This is a partial structural diagram of the present invention. Figure 5 ; Figure 9 This is a partial structural diagram of the present invention. Figure 6 .
[0015] In the diagram: 1. Box body; 2. Placement plate; 3. First groove; 4. First electric slide rail; 5. First sliding plate; 6. Fixing plate; 7. Outer wall clamping assembly; 71. Second groove; 72. Third groove; 73. First motor; 74. Rotating rod; 75. First electric telescopic rod; 76. First clamping plate; 8. Cover plate placement assembly; 81. Fourth groove; 82. Second electric slide rail; 83. Second sliding plate; 84. Side plate; 85. Fifth groove; 86. Third electric slide rail; 87. Third sliding plate; 88. Support plate; 89. Second electric telescopic rod; 810. Mounting ring; 811. Sixth groove; 812. Third electric telescopic rod; 813. Receiving plate; 814. Cavity; 5. First gear; 816. Annular opening; 817. Second gear; 818. Second motor; 819. First U-plate; 820. First round rod; 821. Third motor; 822. Fourth electric telescopic rod; 823. Second clamping plate; 9. Auxiliary installation components; 91. Seventh groove; 92. Fourth electric slide rail; 93. Fourth sliding plate; 94. Second U-plate; 95. Second round rod; 96. Fourth motor; 97. Fifth electric telescopic rod; 98. Connecting plate; 99. Sixth electric telescopic rod; 910. Third U-plate; 911. Third round rod; 912. Fifth motor; 913. Snap-fit block; 914. Sixth motor; 915. Seventh electric telescopic rod; 916. Pull plate. Detailed Implementation
[0016] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0017] The following electrical components are all electrically connected to the external PLC controller.
[0018] Reference Figure 1 - Figure 9 A cell culture box for easy handling of cell culture dishes includes a box body 1. Multiple placement plates 2 are fixedly connected to the inner wall of the box body 1. Multiple first grooves 3 are formed on the top side walls of the multiple placement plates 2. First electric slide rails 4 are fixedly connected to the inner walls of the first grooves 3. First sliding plates 5 are slidably connected to the top side walls of the first electric slide rails 4. A fixing plate 6 is fixedly connected to the top side walls of the first sliding plates 5. An outer wall clamping assembly 7 for fixing the outer wall of the culture dish is formed on the top side wall of the fixing plate 6. A cover plate placement assembly 8 for fixing and installing the cover plate of the culture dish is formed on the side wall of the fixing plate 6. An auxiliary installation assembly 9 for engaging the cover plate with the outer wall of the culture dish is formed at the lower end of the cover plate placement assembly 8.
[0019] In this embodiment, the outer wall clamping assembly 7 includes a plurality of second grooves 71 formed on the top side wall of the fixing plate 6, a plurality of third grooves 72 formed on the inner wall of the second grooves 71, a first motor 73 fixedly connected to one end of the inner wall of each third groove 72, a rotating rod 74 fixedly connected to the output end of each first motor 73, one end of the rotating rod 74 being rotatably connected to the inner wall of the third groove 72, a first electric telescopic rod 75 fixedly connected to the rod wall of the rotating rod 74, and a first clamping plate 76 fixedly connected to the telescopic end of the first electric telescopic rod 75.
[0020] Specifically, when cell culture dishes need to be placed or removed from the cell culture chamber, the tilt angle of the first clamp 76 can be adjusted according to the tilt angle of the outer wall of different types of cell culture dishes, so that the tilt angle of the first clamp 76 can match the tilt angle of the outer wall of the cell culture dish. This allows the first clamp 76 to fix cell culture dishes with different tilt angles, avoiding the need for staff to replace the corresponding fasteners to fix the cell culture dishes, thus reducing efficiency.
[0021] In this embodiment, the cover plate placement assembly 8 includes a fourth groove 81 formed on the side wall of the fixing plate 6. The inner wall of the fourth groove 81 is fixedly connected to a second electric slide rail 82. The side wall of one end of the second electric slide rail 82 is slidably connected to a second slide plate 83. The side wall of the second slide plate 83 is fixedly connected to a side plate 84. The side walls of the two side plates 84 at opposite ends are provided with a fifth groove 85. The inner wall of the fifth groove 85 is fixedly connected to a third electric slide rail 86. The side wall of the third electric slide rail 86 is slidably connected to a third slide plate 87. The two third slide plates 87 are fixedly connected to the same support plate 88 on the side wall of opposite ends. The bottom side wall of the support plate 88 is symmetrically fixedly connected to two second electric telescopic rods 89. The telescopic end of the second electric telescopic rod 89 is fixedly connected to the mounting ring 810. The bottom side wall of the mounting ring 810 is provided with multiple sixth grooves 811. The inner wall of one end of each sixth groove 811 is fixedly connected to a third electric telescopic rod 812. The telescopic end of each third electric telescopic rod 812 is fixedly connected to a receiving plate 813. The mounting ring 810 has a cavity 814 inside. The bottom inner wall of the cavity 814 is rotatably connected to a first gear 815. The inner wall of the mounting ring 810 has an annular opening 816 that communicates with the cavity 814. The inner wall of the annular opening 816 is rotatably connected to a second gear 817. The second gear 817 meshes with the first gear 815. The top side wall of the mounting ring 810 is fixedly connected to a second motor 818. The output end of the second motor 818 passes through the side wall of the mounting ring 810 and is fixedly connected to the side wall of the first gear 815. The inner wall of the second gear 817 is fixedly connected to two first U-plates 819. The inner wall of the first U-plate 819 is rotatably connected to a first round rod 820. The side wall of the first U-plate 819 is fixedly connected to a third motor 821. The output end of the third motor 821 passes through the side wall of the first U-plate 819 and is fixedly connected to one end of the first round rod 820. The rod wall of the first round rod 820 is fixedly connected to a fourth electric telescopic rod 822. The telescopic end of the fourth electric telescopic rod 822 is fixedly connected to a second clamping plate 823. The auxiliary installation component 9 includes a seventh groove 91 opened on the bottom side wall of the mounting ring 810. A fourth electric slide rail 92 is fixedly connected to the top inner wall of the seventh groove 91. Two fourth slide plates 93 are slidably connected to the bottom side wall of the fourth electric slide rail 92. A second U-plate 94 is fixedly connected to the bottom side wall of the fourth slide plate 93. A second round rod 95 is rotatably connected to the inner wall of the second U-plate 94. A fourth motor 96 is fixedly connected to the side wall of the second U-plate 94. The output end of the fourth motor 96 passes through the side wall of the second U-plate 94 and is fixedly connected to one end of the second round rod 95. A fifth electric telescopic rod 97 is fixedly connected to the rod wall of the second round rod 95. A connecting plate 98 is fixedly connected to the telescopic end of the fifth electric telescopic rod 97. A sixth electric telescopic rod 99 is fixedly connected to the side wall of the connecting plate 98. A third U-plate 910 is fixedly connected to the telescopic end of the sixth electric telescopic rod 99. The inner wall of the third U-plate 910 is rotatably connected to the third round rod 911. The side wall of the third U-plate 910 is fixedly connected to the fifth motor 912. The output end of the fifth motor 912 passes through the side wall of the third U-plate 910 and is fixedly connected to one end of the third round rod 911. The rod wall of the third round rod 911 is fixedly connected to the locking block 913. The bottom side wall of the locking block 913 is fixedly connected to the sixth motor 914. The output end of the sixth motor 914 is fixedly connected to the seventh electric telescopic rod 915. The telescopic end of the seventh electric telescopic rod 915 is fixedly connected to the pull plate 916.
[0022] Specifically, the second clamp 823 is tilted at the same angle as the outer wall of the corresponding cover plate, allowing the cover plate to be screwed onto the cell culture dish using the second clamp 823, completing the initial installation between the cell culture dish and the cover plate. Then, the snap-fit block 913 can press the snap-fit on the outside of the cover plate into the slot on the outer wall of the cell culture dish, thus automatically installing the cover plate on top of the cell culture dish. When it is necessary to remove the cell culture dish, the snap-fit is pulled out from the slot on the outer wall of the cell culture dish using the pull plate 916, and then the cover plate is removed from the cell culture dish using the second clamp 823. After that, the staff can directly remove the cell culture dish, avoiding the need for the staff to hold the culture dish to install or remove the cover plate during the process of placing or removing the culture dish, which greatly improves the culture efficiency and reliability of cell culture.
[0023] The operating principle of the present invention is described as follows: In this invention, when a cell culture dish needs to be placed into a cell culture chamber for cell culture, the first electric slide rail 4 above the corresponding placement plate 2 is activated, driving the first sliding plate 5 to move. The first sliding plate 5 then moves the fixing plate 6 outside the chamber 1, positioning the fixing plate 6 outside the chamber 1. The operator then places the cell culture dish into the second groove 71. Next, the first motor 73 in the corresponding third groove 72 is activated, driving the rotating rod 74 to rotate. During the rotation of the rotating rod 74, the first electric telescopic rod 75 and the first clamping plate 76 rotate. After the tilt angle of the first clamping plate 76 is the same as the tilt angle of the outer wall of the cell culture dish in the corresponding second groove 71, the first motor 73 is deactivated. Then, the first electric telescopic rod 75 is deactivated. The retraction rod 75 is activated, moving the first clamping plate 76 to fix the cell culture dish. Then, the operator places the cover plate on top of the corresponding receiving plates 813, which support the cover plate. Next, the third motor 821 is activated, rotating the first round rod 820. During the rotation of the first round rod 820, the fourth electric telescopic rod 822 and the second clamping plate 823 rotate. When the tilt angle of the second clamping plate 823 is the same as the tilt angle of the corresponding cover plate's outer wall, the third motor 821 is closed, completing the fixation of the cover plate. Then, the third electric telescopic rod 812 is retracted, preventing the receiving plate 813 from supporting the cover plate. Finally, the second electric slide rail 82 is activated, moving the second slide rail... The plate 83 moves, causing the side plate 84 and support plate 88 to move the cover plate above the corresponding cell culture dish. Then, the third electric slide rail 86 is activated, moving the third sliding plate 87 to move the cover plate towards the corresponding cell culture dish. Next, the second electric telescopic rod 89 is activated, causing the mounting ring 810 to move downwards, bringing the cover plate into contact with the top of the cell culture dish. At this point, the second motor 818 is activated, driving the first gear 815 to rotate. During the rotation of the first gear 815, the second gear 817, meshing with the first gear 815, rotates, thereby using the second clamping plate 823 to rotate the cover plate. During the rotation of the cover plate, the second electric telescopic rod 89 extends continuously, causing the cover plate to continue moving downwards, thus passing through the cell culture dish. The threads on the outer wall allow the cover plate to be installed above the cell culture dish. After the inner top wall of the cover plate abuts against the upper side wall of the cell culture dish, the cover plate completely covers the threads on the outside of the cell culture dish, completing the initial installation between the cover plate and the cell culture dish. Then, the fourth motor 96 is started, driving the second round rod 95 to rotate 90 degrees and stop, so that the fifth electric telescopic rod 97 faces downward. Then, the fourth electric slide rail 92 is started, driving the two fourth sliding plates 93 to move, so that the locking block 913 is located on the corresponding latching side of the cover plate side wall. Then, the fifth motor 912 is started, driving the third round rod 911 to rotate. The third round rod 911 drives the locking block 913 to rotate. After the tilt angle of the locking block 913 is the same as the tilt angle of the outer wall of the cell culture dish,The fifth motor 912 is turned off, then the fifth electric telescopic rod 97 is activated, aligning the locking block 913 with the outer wall of the cover plate. The sixth electric telescopic rod 99 is then activated, moving the locking block 913 towards the cover plate. The locking block 913 presses the outer wall of the cover plate into the groove on the outer wall of the cell culture dish, completing the sealing between the cover plate and the cell culture dish. The cell culture dish is then placed in the cell culture incubator. Other components are then restored to their original positions, and the same steps are repeated for storing other cell culture dishes. When the cell culture dish needs to be removed from the cell culture incubator, the locking block 913 is repositioned to one side of the cover plate's locking mechanism, aligning the locking block 913 with the outer wall of the cell culture dish. The tilt angles are the same. Then, the sixth electric telescopic rod 99 is activated, causing the locking block 913 to contact the upper outer wall of the buckle. Next, the seventh electric telescopic rod 915 is activated, causing the pull plate 916 to move downwards, positioning it below the buckle. Then, the sixth motor 914 is activated, causing the pull plate 916 to rotate 180 degrees and stop. Next, the seventh electric telescopic rod 915 is retracted, causing the inner wall of the pull plate 916 to contact the bottom side wall of the buckle. At this point, the outer wall of the pull plate 916 is located inside the buckle. Then, the sixth electric telescopic rod 99 is retracted, using the pull plate 916 to pull the buckle out of the slot on the outer wall of the cell culture dish. Then, the second clamping plate 823 is controlled to re-clamp the cover plate, and then the second clamping plate... Rotate 823 in the reverse direction to remove the cover plate from the cell culture dish. Finally, control the first clamp 76 to return to its original position without fixing the cell culture dish, thus easily removing the cell culture dish from the cell culture chamber. When cell culture dishes need to be placed or removed from the cell culture chamber, the tilt angle of the first clamp 76 can be adjusted according to the tilt angle of the outer wall of different types of cell culture dishes. This allows the first clamp 76 to match the tilt angle of the outer wall of the cell culture dish, enabling it to fix cell culture dishes at different tilt angles. This avoids the need for operators to change corresponding fasteners to fix the cell culture dishes, reducing efficiency. Simultaneously, it allows the second clamp 823 to be adjusted to match the tilt angle of the corresponding cover plate's outer wall. Similarly, the second clamp 823 is used to screw the cover plate onto the cell culture dish, completing the initial installation between the cell culture dish and the cover plate. Then, the snap-fit block 913 allows the snaps on the outside of the cover plate to be pressed into the slots on the outer wall of the cell culture dish, automatically installing the cover plate on top of the cell culture dish. When it is necessary to remove the cell culture dish, the pull plate 916 is used to pull the snaps out of the slots on the outer wall of the cell culture dish, and then the second clamp 823 is used to remove the cover plate from the cell culture dish. The operator can then directly remove the cell culture dish, avoiding the need for the operator to hold the culture dish while installing or removing the cover plate, greatly improving the efficiency and reliability of cell culture.
[0024] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A cell culture box for easy handling of cell culture dishes, comprising a box body (1), characterized in that, The inner wall of the box (1) is fixedly connected with multiple placement plates (2). Multiple first grooves (3) are provided on the top side walls of the multiple placement plates (2). The inner wall of each first groove (3) is fixedly connected with a first electric slide rail (4). The top side wall of each first electric slide rail (4) is slidably connected with a first slide plate (5). The top side wall of the first slide plate (5) is fixedly connected with a fixing plate (6). The top side wall of the fixing plate (6) is provided with an outer wall clamping assembly (7) for fixing the outer wall of the culture dish. The side wall of the fixing plate (6) is provided with a cover plate placement assembly (8) for fixing and installing the cover plate of the culture dish. The lower end of the cover plate placement assembly (8) is provided with an auxiliary installation assembly (9) for engaging the cover plate buckle with the outer wall of the culture dish.
2. The cell culture box for easy handling of cell culture dishes according to claim 1, characterized in that, The outer wall clamping assembly (7) includes a plurality of second grooves (71) opened on the top side wall of the fixing plate (6), and a plurality of third grooves (72) opened on the inner wall of the second grooves (71). A first motor (73) is fixedly connected to the inner wall of one end of each third groove (72). A rotating rod (74) is fixedly connected to the output end of each first motor (73). One end of the rotating rod (74) is rotatably connected to the inner wall of the third groove (72). A first electric telescopic rod (75) is fixedly connected to the rod wall of the rotating rod (74). A first clamping plate (76) is fixedly connected to the telescopic end of the first electric telescopic rod (75).
3. The cell culture box for easy handling of cell culture dishes according to claim 1, characterized in that, The cover plate placement assembly (8) includes a fourth groove (81) opened on the side wall of the fixing plate (6). The inner wall of the fourth groove (81) is fixedly connected to a second electric slide rail (82). The side wall of one end of the second electric slide rail (82) is slidably connected to a second slide plate (83). The side wall of the second slide plate (83) is fixedly connected to a side plate (84). The side walls of the two side plates (84) at opposite ends are provided with a fifth groove (85). The inner wall of the fifth groove (85) is fixedly connected to a third electric slide rail (86). The side wall of the third electric slide rail (86) is slidably connected to a third slide plate (87).
4. A cell culture box for easy handling of cell culture dishes according to claim 3, characterized in that, The two third sliding plates (87) are fixedly connected to the same support plate (88) on the sidewalls of opposite ends. The bottom sidewalls of the support plate (88) are symmetrically fixedly connected to two second electric telescopic rods (89). The telescopic ends of the second electric telescopic rods (89) are fixedly connected to an installation ring (810). The bottom sidewalls of the installation ring (810) are provided with multiple sixth grooves (811). The inner wall of one end of each sixth groove (811) is fixedly connected to a third electric telescopic rod (812). The telescopic ends of each third electric telescopic rod (812) are fixedly connected to a receiving plate (813).
5. A cell culture box for easy handling of cell culture dishes according to claim 4, characterized in that, The mounting ring (810) has a cavity (814) inside. A first gear (815) is rotatably connected to the inner wall of the bottom end of the cavity (814). An annular opening (816) communicating with the cavity (814) is opened on the inner wall of the mounting ring (810). A second gear (817) is rotatably connected to the inner wall of the annular opening (816). The second gear (817) meshes with the first gear (815). A second motor (818) is fixedly connected to the top side wall of the mounting ring (810). The output end of the second motor (818) passes through the side wall of the mounting ring (810) and is fixedly connected to the side wall of the first gear (815).
6. A cell culture box for easy handling of cell culture dishes according to claim 5, characterized in that, The inner wall of the second gear (817) is fixedly connected to two first U plates (819). The inner wall of the first U plate (819) is rotatably connected to a first round rod (820). The side wall of the first U plate (819) is fixedly connected to a third motor (821). The output end of the third motor (821) passes through the side wall of the first U plate (819) and is fixedly connected to one end of the first round rod (820). The rod wall of the first round rod (820) is fixedly connected to a fourth electric telescopic rod (822). The telescopic end of the fourth electric telescopic rod (822) is fixedly connected to a second clamping plate (823).
7. A cell culture box for easy handling of cell culture dishes according to claim 1, characterized in that, The auxiliary installation component (9) includes a seventh groove (91) on the bottom sidewall of the mounting ring (810). A fourth electric slide rail (92) is fixedly connected to the inner wall of the top of the seventh groove (91). Two fourth sliding plates (93) are slidably connected to the bottom sidewall of the fourth electric slide rail (92). A second U-plate (94) is fixedly connected to the bottom sidewall of the fourth sliding plate (93). A second round rod (95) is rotatably connected to the inner wall of the second U-plate (94). The sidewall of the second U-plate (94) is fixedly connected to... There is a fourth motor (96), the output end of which passes through the side wall of the second U plate (94) and is fixedly connected to one end of the second round rod (95). The second round rod (95) is fixedly connected to the rod wall of the fifth electric telescopic rod (97). The telescopic end of the fifth electric telescopic rod (97) is fixedly connected to the connecting plate (98). The side wall of the connecting plate (98) is fixedly connected to the sixth electric telescopic rod (99). The telescopic end of the sixth electric telescopic rod (99) is fixedly connected to the third U plate (910).
8. A cell culture box for easy handling of cell culture dishes according to claim 7, characterized in that, The inner wall of the third U-plate (910) is rotatably connected to a third round rod (911). The side wall of the third U-plate (910) is fixedly connected to a fifth motor (912). The output end of the fifth motor (912) passes through the side wall of the third U-plate (910) and is fixedly connected to one end of the third round rod (911). The rod wall of the third round rod (911) is fixedly connected to a snap-fit block (913). The bottom side wall of the snap-fit block (913) is fixedly connected to a sixth motor (914). The output end of the sixth motor (914) is fixedly connected to a seventh electric telescopic rod (915). The telescopic end of the seventh electric telescopic rod (915) is fixedly connected to a pull plate (916).
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