Incubator frame with interlayer rapid adjusting structure
By introducing an adjustment mechanism into the incubator, using positive and negative threaded rods and connecting rods, the spacing between the partition plates can be quickly and stably adjusted, solving the problem of fixed partition spacing in traditional incubators and improving operational convenience and equipment lifespan.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-24
- Publication Date
- 2026-04-03
AI Technical Summary
Traditional incubators have fixed partition spacing that cannot be adjusted. Existing adjustable partitions are cumbersome and prone to damage, affecting their lifespan.
Design an incubator rack with an adjustment mechanism, including forward and reverse threaded rods, adjustment plates, connecting rods, etc. The spacing between the partition plates is adjusted by a motor drive, and the adjustment mechanism enables rapid adjustment. The cooperation of the connecting rods and guides allows for flexible adjustment of the spacing between the partition plates.
It enables rapid and stable adjustment of the spacing between partition boards, reducing operation time and effort, lowering the risk of equipment damage, and improving service life and ease of operation.
Smart Images

Figure CN224077360U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of incubator auxiliary equipment technology, specifically an incubator rack with a quick-adjustment partition structure. Background Technology
[0002] In scientific research and experimental settings, incubators are key equipment for maintaining the culture environment of cells, microorganisms, etc. Incubators are usually equipped with multiple partitions to hold different culture samples.
[0003] Currently, traditional incubators have certain drawbacks, namely that the spacing between their internal partitions is fixed during manufacturing, making it impossible to adjust the internal partitions. To solve this problem, some incubators have attempted to adopt adjustable partition designs. However, the adjustment method for existing adjustable partition incubators is extremely cumbersome, generally requiring manual disassembly of the partition connectors and repositioning to change the partition spacing. This operation not only consumes a lot of time and effort, but frequent disassembly and reassembly can easily lead to damage to the partitions and connectors, reducing the service life of the incubator. Therefore, this utility model proposes an incubator rack with a quick-adjustment partition structure to solve the above problems. Utility Model Content
[0004] The purpose of this invention is to provide an incubator rack with a quick-adjustment partition structure to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a culture box rack with a quick-adjustment partition structure, comprising a culture box body, wherein the culture box body is provided with multiple sets of partition plates and an adjustment mechanism for adjusting the spacing between the multiple sets of partition plates;
[0006] The adjustment mechanism includes two sets of positioning plates respectively located on both sides of the incubator body. Three sets of adjustment plates are provided between the two sets of positioning plates. The middle set of adjustment plates is fixed in the middle of the two sets of positioning plates and has a first connecting rod. The left and right end adjustment plates have second connecting rods and are movably connected to the first connecting rod of the middle adjustment plate through the second connecting rods. Adjustment blocks extend below the three sets of adjustment plates. The adjustment mechanism also has a positive and negative threaded rod, which passes through the adjustment block of the middle adjustment plate and is connected to the adjustment blocks of the left and right end adjustment plates.
[0007] Multiple sets of the aforementioned partition plates are respectively installed on the extension rods of the adjustment plate.
[0008] Preferably, a guide post is provided between the two sets of positioning plates, and the guide post is connected through the three sets of adjusting plates.
[0009] Preferably, the incubator body is divided into an upper cavity and a lower cavity, wherein the adjustment mechanism is installed in the lower cavity of the incubator body, and multiple sets of partition plates are installed in the upper cavity of the incubator body.
[0010] Preferably, the outer wall of the incubator body is equipped with a controller and an adjusting motor, and the output end of the adjusting motor is connected to the forward and reverse threaded rod.
[0011] Preferably, the upper end of the multiple sets of partition plates is provided with a connecting plate, and the multiple sets of partition plates are mounted on the extension rod at the upper end of the adjustment plate through the connecting plate at the upper end.
[0012] Preferably, the multiple sets of partition plates are provided with a locking cavity, and a perforated mesh plate is engaged at the locking cavity.
[0013] Compared with the prior art, the beneficial effects of this utility model are:
[0014] By coordinating the positive and negative threaded screws, adjusting plates, and connecting rods in the adjustment mechanism, the spacing of multiple sets of partition plates can be quickly adjusted. When the positive and negative threaded screws are rotated, the adjusting plates at both ends move relative to or away from each other under the action of the screws, thereby driving the partition plates mounted on the extension rods of the adjusting plates to move. The size of the partition space can be flexibly and quickly adjusted according to different cultivation needs. At the same time, the three sets of adjusting plates are interconnected through connecting rods, forming a relatively stable structural system. During the adjustment process, the connecting rods can play a supporting and force-transmitting role, making the movement of the adjusting plates more stable and reducing swaying and deviation. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0016] Figure 2 This is a schematic diagram of the partition plate installation structure of this utility model.
[0017] Figure 3 This is a schematic diagram of the adjustment mechanism of this utility model.
[0018] Figure 4 This is a schematic diagram of the installation structure of the perforated mesh plate of this utility model.
[0019] In the diagram: 1. Incubator body; 11. Upper cavity; 12. Lower cavity; 13. Controller; 2. Partition plate; 21. Connecting plate; 22. Perforated mesh plate; 23. Cavity; 3. Adjustment mechanism; 31. Positioning plate; 32. Adjustment plate; 321. Extension rod; 322. Adjustment block; 33. First connecting rod; 34. Second connecting rod; 35. Positive and negative threaded rods; 36. Adjustment motor; 37. Guide column. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0021] Please see Figures 1 to 4 This utility model provides a technical solution: an incubator rack with a quick-adjustment partition structure, including an incubator body 1, a plurality of partition plates 2 inside the incubator body 1, and an adjustment mechanism 3 for adjusting the spacing between the plurality of partition plates 2; the adjustment mechanism 3 includes two sets of positioning plates 31 respectively disposed on both sides of the incubator body 1, and three sets of adjustment plates 32 disposed between the two sets of positioning plates 31, the middle set of adjustment plates 32 being fixed in the middle of the two sets of positioning plates 31, and having a first connecting rod 33 thereon, the left and right end adjustment plates 32 having second connecting rods 34, and being movably connected to the first connecting rod 33 of the middle adjustment plate 32 through the second connecting rods 34, and each of the three sets of adjustment plates 32 having an adjustment block 322 extending below it, the adjustment mechanism 3 also having a positive and negative threaded rod 35, which passes through the adjustment block 322 of the middle adjustment plate 32 and is connected to the adjustment blocks 322 of the left and right end adjustment plates 32. 2. Multiple sets of partition plates 2 are respectively installed on the extension rod 321 of the adjustment plate 32. Through the cooperation of the positive and negative threaded rods 35, the adjustment plate 32, the first connecting rod 33, the second connecting rod 34 and other structures in the adjustment mechanism 3, the spacing of multiple sets of partition plates 2 can be quickly adjusted. When the positive and negative threaded rods 35 are rotated, the adjustment plates 32 at the left and right ends will move relative to each other or away from each other under the action of the positive and negative threaded rods 35, thereby driving the partition plates 2 installed on the extension rod 321 to move. The size of the partition space can be flexibly and quickly adjusted according to different cultivation needs. At the same time, the three sets of adjustment plates 32 are connected to each other through the first connecting rod 33 and the second connecting rod 34 to form a relatively stable structural system. During the adjustment process, the first connecting rod 33 and the second connecting rod 34 can play the role of support and force transmission, making the movement of the adjustment plate 32 more stable and reducing shaking and displacement.
[0022] Please see Figures 1 to 4 A guide post 37 is provided between the two sets of positioning plates 31. The guide post 37 is connected through the three sets of adjusting plates 32. The guide post 37 provides precise guidance for the movement of the adjusting plate 32, ensuring that the adjusting plate 32 can only move in a specific direction when it moves along the guide post 37, without any deviation or shaking, thereby ensuring the accuracy and stability of the spacing adjustment of the partition plate 2.
[0023] Please see Figures 1 to 4The incubator body 1 is divided into an upper chamber 11 and a lower chamber 12. The adjustment mechanism 3 is installed in the lower chamber 12 of the incubator body 1, and multiple sets of partition plates 2 are installed in the upper chamber 11 of the incubator body 1. The adjustment mechanism 3 is installed in the lower chamber 12. When the adjustment mechanism 3 is repaired, maintained or troubleshooted, there is no need to disturb the culture in the upper chamber 11, which reduces the impact on the ongoing culture experiment during operation. At the same time, this layout also makes it convenient for operators to access and operate the adjustment mechanism 3, improving the convenience of maintenance and management.
[0024] Please see Figures 1 to 4 The upper end of the multiple partition plates 2 is provided with a connecting plate 21. The multiple partition plates 2 are installed on the extension rod 321 at the upper end of the adjustment plate 32 through the connecting plate 21 at the upper end. The connecting plate 21 makes the partition plates 2 and the adjustment plate 32 detachable. When it is necessary to maintain or clean the incubator body 1 or adjust the layout of the partition plates 2 according to different culture needs, the partition plates 2 can be easily removed from the extension rod 321. The operation is simple and quick, which improves the convenience and flexibility of the incubator body 1.
[0025] Please see Figures 1 to 4 The multiple partition plates 2 are provided with a cavity 23, and a perforated mesh plate 22 is engaged at the cavity 23. When culturing samples that require air circulation, the numerous small holes on the perforated mesh plate 22 allow air to flow freely in the incubator, which helps to maintain a suitable gas environment, meet the oxygen requirements of aerobic microorganisms or plant seeds and other cultures, and promote their normal growth and metabolism.
[0026] In use, according to actual cultivation needs, the controller 13 drives the adjustment motor 36. Upon receiving a signal, the adjustment motor 36 starts, and its output drives the forward and reverse threaded rods 35 to rotate. When the forward and reverse threaded rods 35 rotate, they interact with the adjustment blocks 322 below the left and right end adjustment plates 32, causing the left and right end adjustment plates 32 to move towards or away from each other along the threaded rod axis. Simultaneously, during the movement, the three sets of adjustment plates 32 maintain a continuous connection with the guide posts 37. The guide posts 37 act as guides, ensuring the smooth movement of the adjustment plates 32 and preventing wobbling and deviation. The middle adjustment plate 32, fixed in the middle of the two sets of positioning plates 31, remains in a constant position. As the left and right end adjustment plates 32 move, the second connecting rod 34 and the middle... The first connecting rod 33 on the adjusting plate 32 rotates relative to each other, realizing the linkage between the adjusting plates 32. The linkage mechanism ensures the coordination of the adjusting plates 32 during the adjustment process, so that the partition plates 2 can change the spacing evenly and smoothly. Multiple sets of partition plates 2 are installed on the extension rod 321 at the upper end of the adjusting plate 32 through the connecting plate 21 at the upper end. When the adjusting plate 32 moves, the partition plates 2 will move synchronously with the adjusting plate 32, thereby realizing the rapid adjustment of the partition spacing. After the partition plates 2 are adjusted to the appropriate spacing, the items to be cultured are placed on the partition plates 2. If the items to be cultured need to be breathable, the perforated mesh plate 22 can be snapped into the slot 23 of the partition plate 2 to provide a good breathable environment for the items to be cultured.
[0027] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A culture box frame with partition quick adjustment structure, comprising a culture box body (1), a plurality of sets of partition plates (2) and an adjustment mechanism (3) for adjusting the distance between the plurality of sets of partition plates (2) are arranged in the culture box body (1), characterized in that: the adjustment mechanism (3) comprises two sets of positioning plates (31) arranged on both sides of the culture box body (1), three sets of adjustment plates (32) are arranged between the two sets of positioning plates (31), the middle one of the three sets of adjustment plates (32) is fixed to the middle part of the two sets of positioning plates (31), a first connecting rod (33) is arranged on the middle one of the three sets of adjustment plates (32), the left and right ends of the middle one of the three sets of adjustment plates (32) are provided with a second connecting rod (34), and the second connecting rod (34) is movably connected with the first connecting rod (33) of the middle one of the three sets of adjustment plates (32), an adjustment block (322) is arranged below each of the three sets of adjustment plates (32), and a positive and negative toothed rod (35) is arranged on the adjustment mechanism (3) and penetrates through the adjustment block (322) of the middle one of the three sets of adjustment plates (32) and is connected with the adjustment blocks (322) of the left and right ones of the three sets of adjustment plates (32); a plurality of sets of the partition plates (2) are arranged on the extension rods (321) of the adjustment plates (32).
2. The incubator rack with a partitioned quick adjustment structure according to claim 1, wherein: guide columns (37) are arranged between the two sets of positioning plates (31) and penetrate through and connect the three sets of adjustment plates (32).
3. The incubator rack with a partitioned quick adjustment structure according to claim 1, wherein: The culture box body (1) is divided into an upper cavity (11) and a lower cavity (12), wherein the adjustment mechanism (3) is arranged in the lower cavity (12) of the culture box body (1), and a plurality of sets of the partition plates (2) are arranged in the upper cavity (11) of the culture box body (1).
4. The incubator rack with a partitioned quick adjustment structure according to claim 1, wherein: A controller (13) and an adjustment motor (36) are arranged on the outer wall of the culture box body (1), and the output end of the adjustment motor (36) is connected with the positive and negative toothed rod (35).
5. The incubator rack with a partitioned quick adjustment structure according to claim 3, wherein: A connecting clamping plate (21) is arranged on the upper end of each of the plurality of sets of the partition plates (2), and each of the plurality of sets of the partition plates (2) is arranged on the extension rod (321) at the upper end of the adjustment plate (32) through the connecting clamping plate (21) at the upper end.
6. The incubator rack with a partitioned quick adjustment structure according to claim 5, wherein: A clamping cavity (23) is arranged on each of the plurality of sets of the partition plates (2), and a through-hole mesh plate (22) is clamped on the clamping cavity (23).