A multifunctional column for laboratory bench

CN224749128UActive Publication Date: 2026-09-15HENAN SHIMING INTELLIGENT EQUIPMENT CO LTD
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Patent Information

Application Number
CN202522272047.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-28
Publication Date
2026-09-15
Estimated Expiration
2035-10-28

AI Technical Summary

Technical Problem

[0004]而对于此类的实验台在实际应用过程中,因容置架位于工作台上,导致占用了工作台有效的工作区域,减少了工作人员有效操作区域的面积,且在实际应用中,对于部分检验工作,需要多名操作人员同步协同进行,因工作台有效工作区域较小,此类实验台难以满足上述需求,且在工作人员检测过程中,实验药剂存在溅射至容置架上的情况,进而导致实验药剂存在被污染的情况,存在改进空间

Benefits of technology

[0015] 1. A work area is formed by several uprights arranged at intervals along the length of the main pole. Several shelves are set at intervals along the height of the uprights in the work area to make full use of the space in the longitudinal area of ​​the uprights. Experimental reagents or instruments required for experiments are stored on the shelves, which have good storage capacity. In another work area adjacent to the shelves, there are hanging cabinets. Experimental reagents or instruments not needed for the current experiment can be stored in the hanging cabinets, which are easy to access and highly convenient. At the same time, the uprights are equipped with gas and water pipes to facilitate the staff to obtain water and gas during the experiment. In addition, because the work area is set with work positions on both sides of the width of the uprights, the staff can operate on both sides of the width of the uprights to meet the purpose of multiple staff working together to conduct experiments.

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Abstract

The application relates to a multifunctional column for an experiment table, which comprises a main rod and a plurality of stands arranged at intervals along the length direction of the main rod, a working area is formed between two adjacent stands, a working position is arranged in the working area about the middle line in the width direction of the stand, a plurality of layer plates are arranged at intervals in the height direction of the stand in the working area, a hanging cabinet is arranged in another working area adjacent to the current working area, a waterway control assembly and an airway control assembly are arranged on the stand, airway pipelines and waterway pipelines are preset in the stand, the airway pipelines are connected to the airway control assembly, the waterway pipelines are connected to the waterway control assembly, a plurality of power supply interfaces are arranged on the stand, and the application has the effect of improving the convenience of workers when performing inspection work.
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Description

Technical Field

[0001] This application relates to the field of experimental equipment technology, and in particular to a multifunctional column for an experimental platform. Background Technology

[0002] Laboratory benches are widely used in medical and laboratory settings. They can be used for clinical sample testing, surgical instrument sterilization, and pathological analysis. In the laboratory, laboratory benches can support experiments such as chemical synthesis, cell culture, and material analysis. They also have antibacterial, corrosion-resistant, high-temperature resistant, and easy-to-clean properties, providing a stable and efficient operating platform for scientific research and testing.

[0003] An experimental platform is provided, comprising a frame and a workbench mounted on the frame. The frame is equipped with a storage rack along the length of the workbench for storing experimental reagents and equipment. The workbench is also equipped with gas supply lines and water supply lines, allowing staff to complete the required testing work on the experimental platform.

[0004] In practical applications, this type of experimental platform occupies the effective working area of ​​the workbench because the storage rack is located on the workbench, reducing the area of ​​effective operation space for staff. In addition, some testing tasks require multiple operators to work together simultaneously, and this type of experimental platform cannot meet the above requirements due to the small effective working area of ​​the workbench. Furthermore, during the testing process, experimental reagents may splash onto the storage rack, resulting in contamination of the experimental reagents. Therefore, there is room for improvement. Utility Model Content

[0005] The purpose of this utility model is to provide a multifunctional column for laboratory benches to improve the convenience of staff when conducting inspection work.

[0006] To achieve the above objectives, this application provides a multifunctional column for an experimental platform, employing the following technical solution:

[0007] A multifunctional column for an experimental bench includes a main pole and several uprights spaced apart along the length of the main pole. A working area is formed between two adjacent uprights. Work positions are respectively set in the working area about the centerline of the width direction of the uprights. Several shelves are spaced apart along the height direction of the uprights in the working area. A hanging cabinet is set in another working area adjacent to the current working area. A water circuit control component and a gas circuit control component are set on the uprights. Gas circuit pipes and water circuit pipes are pre-installed in the uprights. The gas circuit pipes are connected to the gas circuit control component, and the water circuit pipes are connected to the water circuit control component. Several power interfaces are set on the uprights.

[0008] Preferably, the outer wall of the support frame is provided with a sliding groove along the height direction, and a fixing block is provided in the sliding groove. The shelf is detachably connected to the fixing block.

[0009] Preferably, the bottom of the support frame is provided with a mounting plate.

[0010] Preferably, the water circuit control component includes a water valve switch and a water circuit pagoda connector, with one end of the water valve switch connected to the water circuit pipeline and the other end of the water valve switch connected to the water circuit pagoda connector.

[0011] Preferably, there are two sets of wall cabinets, and the height of the wall cabinets is adjustable along the upright. The two sets of wall cabinets are symmetrically arranged on both sides of the upright about the center line of the width direction of the upright, and the two sets of wall cabinets are not connected to each other.

[0012] Preferably, a residual current device (RCD) is installed on the support frame, and the RCD is connected to the power interface.

[0013] Preferably, the shelf is provided with a baffle at its circumferential edge.

[0014] Compared with the prior art, this utility model provides a multifunctional column for an experimental platform, which has the following beneficial effects:

[0015] 1. A work area is formed by several uprights arranged at intervals along the length of the main pole. Several shelves are set at intervals along the height of the uprights in the work area to make full use of the space in the longitudinal area of ​​the uprights. Experimental reagents or instruments required for experiments are stored on the shelves, which have good storage capacity. In another work area adjacent to the shelves, there are hanging cabinets. Experimental reagents or instruments not needed for the current experiment can be stored in the hanging cabinets, which are easy to access and highly convenient. At the same time, the uprights are equipped with gas and water pipes to facilitate the staff to obtain water and gas during the experiment. In addition, because the work area is set with work positions on both sides of the width of the uprights, the staff can operate on both sides of the width of the uprights to meet the purpose of multiple staff working together to conduct experiments.

[0016] 2. Because there are fixed blocks in the chute, the shelves can be detachably connected to the fixed blocks, so that the shelves can be adjusted along the height of the stand to meet the storage needs of instruments or experimental reagents of different heights. Moreover, the staff can flexibly adjust the shelves along the height of the stand according to their own height, which is highly flexible.

[0017] 3. The bottom of the stand is equipped with a mounting plate, which allows the stand to be quickly installed on the experimental platform. The installation method is simple and can be improved based on the existing mounting platform without replacing the entire experimental platform. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of a multifunctional column for an experimental platform according to an embodiment of this application.

[0019] Figure 2 This is a schematic diagram of the structure of a hanging cabinet in a multifunctional column used in an experimental bench, according to an embodiment of this application.

[0020] Figure 3 yes Figure 1 A magnified structural diagram of part A in the middle.

[0021] Explanation of reference numerals in the attached diagram: 1. Main pole; 2. Stand; 3. Working area; 4. Working position; 5. Shelf; 6. Hanging cabinet; 61. Cabinet door; 7. Water circuit control assembly; 71. Water valve switch; 72. Water circuit pagoda connector; 8. Gas circuit control assembly; 81. Gas circuit switch; 82. Gas circuit pagoda connector; 9. Power interface; 10. Slide groove; 11. Fixing block; 12. Mounting plate; 13. Residual current device; 14. Baffle; 15. Waist-shaped groove. Detailed Implementation

[0022] The following is in conjunction with the appendix Figure 1-3 This application will be described in further detail.

[0023] This application discloses a multifunctional column for an experimental platform. (Refer to...) Figure 1 , Figure 2 as well as Figure 3 A multifunctional column for an experimental bench includes a main rod 1 and several uprights 2 arranged at intervals along the length of the main rod 1. A working area 3 is formed between two adjacent uprights 2. Working positions 4 are respectively set in the working area 3 about the center line of the width direction of the uprights 2. Several shelves 5 are arranged at intervals along the height direction of the uprights 2 in the working position 4. A hanging cabinet 6 is set in another working area 3 adjacent to the current working area 3. A water circuit control component 7 and a gas circuit control component 8 are set on the uprights 2. Gas circuit pipes and water circuit pipes are pre-set in the uprights 2. The gas circuit pipes are connected to the gas circuit control component 8, and the water circuit pipes are connected to the water circuit control component 7. Several power interfaces 9 are set on the uprights 2.

[0024] First, it should be noted that the number of uprights 2 can be increased or decreased according to the size of the experimental table and design requirements. In this embodiment, preferably, three sets of uprights 2 are set. The three sets of uprights 2 are arranged at the same interval along the length of the main rod 1. Thus, two sets of working areas 3 are formed by isolating each other through the three sets of uprights 2. Since any upright 2 is connected to the main rod 1 and the experimental table in the same way, for ease of explanation, one of the uprights 2 will be described in detail below.

[0025] Furthermore, the outer wall of the support frame 2 is provided with a sliding groove 10 along the height direction, and a fixing block 11 is provided in the sliding groove 10. The number of shelves 5 can be increased or decreased according to the number of experimental reagents and experimental instruments to be placed and the height of the support frame 2. The shelves 5 and the fixing block 11 are detachably connected.

[0026] The slide 10 has a T-shaped cross-sectional profile, and the outer profile of the fixing block 11 is adapted to the cross-sectional profile of the slide 10, so that the slider can slide smoothly along the slide 10. The fixing block 11 has a threaded hole through it along the thickness direction, and the layer plate 5 and the fixing block 11 are fixedly connected by bolts through the threaded hole.

[0027] Therefore, when it is necessary to adjust the height of the shelf 5 along the support frame 2, first loosen the bolts so that the fixing block 11 can be adjusted along the height of the slide groove 10. After the support frame 2 supports the fixing block 11 and slides to the designated position of the support frame 2, tighten the bolts again so that the support frame 2 can be stably suspended at the current position. The adjustment method is simple.

[0028] Meanwhile, the bottom of the stand 2 is provided with a mounting plate 12, which is fixedly connected to the stand 2 by bolts. The mounting plate 12 has a fixing hole through the surface along the thickness direction, and the stand 2 is fixed to the experimental table by bolts through the mounting plate 12.

[0029] There are two feasible ways to assemble it: for example, producing an experimental platform that matches the size of the stand 2, or improving upon the existing experimental platform without replacing the entire platform, which has good versatility.

[0030] Reference Figure 1 and Figure 3 The water circuit control component 7 includes a water valve switch 71 and a water circuit pagoda connector 72. One end of the water valve switch 71 is connected to the water circuit pipeline, and the other end of the water valve switch 71 is connected to the water circuit pagoda connector 72.

[0031] The components of the water circuit control component 7 and the air circuit control component 8 are the same as those of the support frame 2. The air circuit control component 8 includes an air circuit switch 81 and an air circuit pagoda connector 82. The water circuit control component 7 will be described in detail below.

[0032] Specifically, the inside of the support frame 2 is hollow, forming a chamber for the installation of the water circuit control component 7 and the water circuit pipes. The water valve switch 71 is installed on the outer wall of the support frame 2, the water circuit pagoda connector 72 is installed on the support frame 2 below the water valve switch 71, and the water circuit pipes are installed inside the support frame 2, with the end of the water circuit pipes away from the end connected to the water valve switch 71 connected to an external water source.

[0033] Therefore, when staff need to draw water, they can quickly connect the water-using equipment (such as a faucet) through the water pipe pagoda connector 72 and lock it with a hose clamp. This method is highly stable and easy to install and disassemble. Then, by controlling the water valve switch 71, the water valve switch 71 is opened to achieve the water drawing operation.

[0034] Furthermore, a residual current device (RCD) 13 is installed on the support frame 2. The RCD 13 is connected to the power interface 9. The RCD 13 is installed above the water valve switch 71, and the connection section of the RCD 13 is connected to the mains power.

[0035] The number of power interfaces 9 can be increased or decreased according to design requirements. In this embodiment, preferably, four power interfaces 9 are provided to meet the power supply requirements of experimental instruments when staff are conducting experiments.

[0036] Reference Figure 1 and Figure 2 There are two sets of wall cabinets 6, and the height of the wall cabinets 6 is adjustable along the upright 2. The two sets of wall cabinets 6 are symmetrically arranged on both sides of the upright 2 about the center line of the width direction of the upright 2, and the two sets of wall cabinets 6 are not connected to each other.

[0037] Specifically, since the two sets of wall cabinets 6 are connected to the frame in the same way, in this embodiment, the connection method of one set of wall cabinets 6 and the upright frame 2 will be described in detail. The wall cabinets 6 are formed by stamping and bending metal sheets and then fixing them together with bolts. The wall cabinets 6 are equipped with cabinet doors 61, which are connected to the wall cabinets 6 by hinges, so that the cabinet doors 61 can be smoothly opened or closed along the wall cabinets 6.

[0038] Furthermore, both sets of hanging cabinets 6 are in an independent state, so that staff can store experimental reagents or experimental equipment in separate areas.

[0039] The inner wall of the wall cabinet 6, which abuts against the upright frame 2, is provided with a waist-shaped groove 15 along the height direction of the wall cabinet 6. At the same time, the upright frame 2 is provided with several adjustment holes along the height direction. The adjustment holes are evenly distributed along the height direction of the upright frame 2. The wall cabinet 6 uses bolts to engage with the adjustment holes through the waist-shaped groove 15. When it is necessary to adjust the height of the wall cabinet 6 along the upright frame 2, the bolts are removed, the wall cabinet 6 is raised along the upright frame 2 to the required adjustment height, and then the bolts are used to fix the wall cabinet 6 again. The operation is simple.

[0040] In addition, a baffle 14 is provided at the circumferential edge of the shelf 5. The baffle 14 encloses the shelf 5, thereby keeping the edge of the shelf 5 closed, reducing the probability of the experimental reagent on the shelf 5 falling off the shelf 5. It also effectively avoids the probability of the experimental reagent on the shelf 5 accidentally tipping over and dripping onto the experimental table.

[0041] The implementation principle of a multifunctional column for an experimental table according to an embodiment of this application is as follows: a working area 3 is formed by several uprights 2 arranged at intervals along the length of the main column 1. Several shelves 5 are arranged at intervals along the height of the uprights 2 in the working area 3 to make full use of the space in the longitudinal area of ​​the uprights 2. Experimental reagents or experimental instruments are stored on the shelves 5, which has good storage capacity. In another working area 3 adjacent to the shelves 5, there is a hanging cabinet 6. The hanging cabinet 6 can store experimental reagents or experimental instruments that are not needed in the current experiment, and it is easy to retrieve and put away, which is highly convenient. At the same time, the uprights 2 are pre-set with gas pipes and water pipes to facilitate the staff to obtain water and gas during the experiment. In addition, since the working area 3 is set with work positions 4 about the center line of the width direction of the uprights 2, the staff can operate on both sides of the width direction of the uprights 2 to meet the purpose of multiple staff to conduct experiments together.

[0042] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A multifunctional column for an experimental platform, characterized in that: The system includes a main pole (1) and several uprights (2) arranged at intervals along the length of the main pole (1). A working area (3) is formed between two adjacent uprights (2). The working area (3) is provided with working positions (4) about the center line of the width direction of the uprights (2). Several shelves (5) are arranged at intervals along the height direction of the uprights (2) in the working area (3). A hanging cabinet (6) is provided in another working area (3) adjacent to the current working area (3). A water circuit control component (7) and a gas circuit control component (8) are provided on the uprights (2). Gas circuit pipes and water circuit pipes are pre-installed in the uprights (2). The gas circuit pipes are connected to the gas circuit control component (8), and the water circuit pipes are connected to the water circuit control component (7). Several power interfaces (9) are provided on the uprights (2).

2. The multifunctional column for an experimental platform according to claim 1, characterized in that: The outer wall of the support frame (2) is provided with a sliding groove (10) along the height direction, and a fixing block (11) is provided in the sliding groove (10). The shelf (5) is detachably connected to the fixing block (11).

3. A multifunctional column for an experimental platform according to claim 2, characterized in that: The bottom of the support frame (2) is provided with an installation plate (12).

4. A multifunctional column for an experimental platform according to claim 1, characterized in that: The water circuit control component (7) includes a water valve switch (71) and a water circuit pagoda connector (72). One end of the water valve switch (71) is connected to the water circuit pipe, and the other end of the water valve switch (71) is connected to the water circuit pagoda connector (72).

5. A multifunctional column for an experimental platform according to claim 4, characterized in that: The wall cabinet (6) is provided in two sets, and the height of the wall cabinet (6) is adjustable along the upright (2). The two sets of wall cabinets (6) are symmetrically arranged on both sides of the upright (2) about the center line of the width direction of the upright (2), and the two sets of wall cabinets (6) are not connected to each other.

6. A multifunctional column for an experimental platform according to claim 1, characterized in that: A leakage current protector (13) is installed on the support frame (2), and the leakage current protector (13) is connected to the power interface (9).

7. A multifunctional column for an experimental platform according to claim 3, characterized in that: The shelf (5) is provided with a baffle (14) at its circumferential edge.