Heavy metal ion capturing agent detection workbench
By designing a height-adjustable table plate and placement mechanism on the heavy metal ion trap detection workbench, the adaptability problem of detecting personnel at different heights is solved, operating convenience and work efficiency are improved, and physical burden is reduced.
Patent Information
- Application Number
- CN202421591432.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-08
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-07-08
AI Technical Summary
The existing heavy metal ion trap detection workbench is fixed in height and cannot adapt to detectors of different heights, causing the inspectors to bend over or cushion their feet for a long time, causing physical discomfort.
A heavy metal ion trap detection workbench with arc-shaped edges and angles on four sides of the table plate, with lifting mechanism and placement mechanism, is designed. The table plate is height-adjusted through electric telescopic columns and telescopic rods, and is equipped with drawers and placement racks to facilitate the placement of items and recorded data.
It improves the operation convenience and work efficiency of staff, reduces physical burden, ensures the stability and safety of the workbench, and improves the quality of inspection work.
Smart Images

Figure CN223130640U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of substance detection, in particular to a detection workbench for heavy metal ion capturers. Background Art
[0002] A heavy metal ion capturer is a chemical substance used to remove heavy metal ions in water or other solutions. Heavy metal ions include harmful metal ions such as lead, mercury, cadmium, and chromium to humans and the environment. Common heavy metal ion capturers include iron hydroxide, activated carbon, ion exchange resins, etc. These capturers can adsorb heavy metal ions and play an important role in environmental governance and industrial production. For the detection of heavy metal ion capturers, common methods include atomic absorption spectrometry, inductively coupled plasma spectrometry, fluorescence spectrometry, etc. These detection methods usually need to be carried out in a laboratory and analyzed on a workbench using relevant instruments and equipment.
[0003] However, the existing workbench has the following problems: The heights of the detection personnel are quite different. When detecting, they need to stay beside the workbench for a long time. Since the height of the workbench is fixed and cannot adapt to detection personnel of different heights, when detecting, they need to bend down or stand on tiptoe for a long time, causing physical discomfort to the detection personnel. Content of the Utility Model
[0004] The purpose of the utility model is to solve the shortcomings in the prior art that the heights of the detection personnel are quite different. When detecting, they need to stay beside the workbench for a long time. Since the height of the workbench is fixed and cannot adapt to detection personnel of different heights, when detecting, they need to bend down or stand on tiptoe for a long time, causing physical discomfort to the detection personnel, and to propose a detection workbench for heavy metal ion capturers.
[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0006] A detection workbench for heavy metal ion capturers, including a tabletop. The four corners of the tabletop are all set to be arc-shaped. Two rectangular grooves for placing items and recording materials are opened on the front side of the tabletop. A controller for facilitating the lifting of the tabletop is fixedly connected to the bottom of the tabletop. Four telescopic rods for supporting the tabletop are fixedly connected to the four corners of the bottom of the tabletop. The bottoms of the four telescopic rods are all fixedly connected to a bottom plate, and mounting holes for fixing the table body are opened on the four bottom plates;
[0007] A lifting mechanism is arranged on the telescopic rod for lifting the tabletop;
[0008] A placing mechanism is arranged on the tabletop for placing items.
[0009] In a possible design, the lifting mechanism includes two electric telescopic columns, four collars, and two connecting blocks. The four collars are respectively fixedly sleeved on the outer sides of the fixed ends of the four telescopic rods. The two sides of the two connecting blocks are respectively fixedly connected to the outer sides of the four collars. The fixed ends of the two electric telescopic columns are respectively fixedly connected to the tops of the two connecting blocks. The telescopic ends of the two electric telescopic columns are respectively fixedly connected to both sides of the bottom of the same tabletop. Threaded holes for fixing the height of the tabletop are provided on both of the two connecting blocks.
[0010] In a possible design, the placing mechanism includes two drawers, four T-shaped sliders, four T-shaped chutes, four sliding blocks, and four sliding grooves. The two sides of the two drawers are respectively fixedly connected to one side of the four T-shaped sliders. The four T-shaped chutes are respectively arranged on the inner walls of both sides of the two rectangular grooves. The four T-shaped sliders are slidably connected to the four T-shaped chutes. The four sliding grooves are respectively arranged on both sides of the inner walls of the bottoms of the two rectangular grooves. The tops of the four sliding blocks are respectively fixedly connected to one side of the bottoms of the two drawers. The four sliding blocks are respectively slidably connected to the four sliding grooves.
[0011] In a possible design, connecting plates are fixedly connected to the front sides of the two drawers. Pulling plates are fixedly connected to the front sides of the two connecting plates. Grooves for facilitating the opening of the drawers are provided on both of the two pulling plates.
[0012] In a possible design, threaded columns are threadedly connected to the threaded holes of the two connecting blocks. One ends of the two threaded columns are fixedly connected to top blocks. The tops of the two top blocks are respectively in close contact with both sides of the bottom of the same tabletop. The other ends of the two threaded columns are respectively fixedly connected to turning handles for facilitating the rotation of the threaded columns.
[0013] In a possible design, a placing rack for facilitating the placement of reagents and solutions is fixedly connected to the top of the tabletop. A plurality of placing holes and placing grooves of different sizes are provided on the placing rack.
[0014] In this application, during use, when the height of the staff member does not match the height of the tabletop, the electric telescopic column is activated through the controller. The telescopic end of the electric telescopic column drives the tabletop to rise and fall, and at the same time drives the telescopic ends of the four telescopic rods to move. When it moves to a suitable position, the movement stops. Then, through the rotating handle, the top block at one end of the threaded column is tightly attached to the bottom of the tabletop, thereby fixing the height of the tabletop. After the staff member finishes working, the drawer can be pulled out through the pulling plate and the connecting plate. The sliding blocks on both sides of the drawer and the sliding blocks at the bottom slide in the sliding grooves and the sliding slots respectively. After the drawer is pulled out, it is convenient to place the detection supplies and record files, and it is also convenient to search for them. During detection, various reagents and solutions can be conveniently placed through the placement rack, which facilitates the smooth progress of the detection and improves the practicality of the workbench.
[0015] The beneficial effects of the present utility model are as follows:
[0016] In the present utility model, through the lifting mechanism and the placement mechanism, the convenience of the staff's operation is considered, and at the same time, the stability and safety of the workbench are ensured. It can effectively improve work efficiency and work quality, reduce the physical burden of the staff, and improve the assistance to the detection work. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is the front view structural schematic diagram of the present utility model;
[0018] Figure 2 is the bottom view structural schematic diagram of the present utility model;
[0019] Figure 3 is the partial structure explosion diagram of the present utility model;
[0020] Figure 4 is the bottom view schematic diagram of the drawer of the present utility model.
[0021] In the figure: 1, tabletop; 2, placement rack; 3, telescopic rod; 4, collar; 5, bottom plate; 6, connecting block; 7, sliding block; 8, controller; 9, connecting plate; 10, electric telescopic column; 11, threaded column; 12, drawer; 13, T-shaped slider; 14, pulling plate; 15, rectangular groove; 16, sliding slot; 17, T-shaped sliding groove. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments.
[0023] Embodiment 1
[0024] Refer to Figures 1-4, a workbench, including a tabletop 1:
[0025] The four corners of the tabletop 1 are all set to be arc-shaped. This design makes the edge of the tabletop 1 smoother and reduces the possible damage caused by collisions. Two rectangular slots 15 are opened on the front side of the tabletop 1. These two rectangular slots 15 are used to place items and record materials, enabling the staff to conveniently access these items and materials during the detection process. A controller 8 is fixedly connected to the bottom of the tabletop 1. The controller 8 is used to control the lifting function of the tabletop 1. Four telescopic rods 3 are fixedly connected to the four corners of the bottom of the tabletop 1. These four telescopic rods 3 provide stable support for the tabletop 1. The bottom of each telescopic rod 3 is fixedly connected to a bottom plate 5. Installation holes are opened on the bottom plate 5 for fixing the entire workbench on a plane.
[0026] The lifting mechanism includes two electric telescopic columns 10, four collars 4 and two connecting blocks 6. The collars 4 are fixedly sleeved outside the fixed ends of the telescopic rods 3. Both sides of the connecting blocks 6 are fixedly connected to the outside of the collars 4. The fixed ends of the electric telescopic columns 10 are fixedly connected to the tops of the connecting blocks 6, and the telescopic ends of the electric telescopic columns 10 are fixedly connected to both sides of the bottom of the tabletop 1. When the electric telescopic columns 10 expand and contract, they can drive the tabletop 1 to lift, so as to adapt to staff with different heights or work requirements. In addition, threaded holes are opened on the connecting blocks 6 for fixing the height of the tabletop 1 later.
[0027] The placement mechanism is arranged on the tabletop 1 and is used for placing items. The placement mechanism includes two drawers 12, four T-shaped sliders 13, four T-shaped chutes 17, four sliding blocks 7 and four sliding grooves 16. Both sides of the drawers 12 are fixedly connected to one side of the T-shaped sliders 13. The T-shaped sliders 13 are slidably connected to the T-shaped chutes 17, which enables the drawers 12 to slide smoothly in the rectangular slots 15. The tops of the sliding blocks 7 are fixedly connected to one side of the bottoms of the drawers 12. The sliding blocks 7 are slidably connected to the sliding grooves 16, further ensuring the stability of the drawers 12. A connecting plate 9 and a pulling plate 14 are also fixedly connected to the front side of the drawers 12, facilitating the staff to open the drawers 12.
[0028] This application can be used in the field of substance detection and also in other fields applicable to this application.
[0029] Embodiment 2
[0030] Reference Figures 1-4 , on the basis of Embodiment 1, an improved heavy metal ion capturing agent detection workbench, including:
[0031] To fix the height of the tabletop 1, we threadedly connect a threaded post 11 to the threaded hole of the connecting block 6. One end of the threaded post 11 is fixedly connected with a top block, and the top block is in close contact with both sides of the bottom of the tabletop 1. When the threaded post 11 is rotated, the top block will press tightly against the tabletop 1, thereby achieving the fixation of the height of the tabletop 1. The other end of the threaded post 11 is fixedly connected with a rotating handle for the convenience of the staff to operate.
[0032] A placement rack 2 is also fixedly connected to the top of the tabletop 1 for placing reagents and solutions. Multiple placement holes and placement grooves of different sizes are provided on the placement rack 2, and they can be flexibly placed according to the sizes and shapes of different reagents and solutions.
[0033] However, as is well known to those skilled in the art, the working principles and wiring methods of the controller 8 and the electric telescopic column 10 are common knowledge, and they both belong to conventional means or well-known common sense, so they will not be elaborated here. Those skilled in the art can make arbitrary selections according to their needs or convenience. The controller 8 and the electric telescopic column 10 are connected to each other through a circuit and are powered by the circuit and an external power source.
[0034] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.
Claims
1. A detection workbench for heavy metal ion capturer, characterized in that, It includes a tabletop (1), the four corners of the tabletop (1) are all set as arcs, two rectangular slots (15) for placing items and record materials are provided on the front side of the tabletop (1), a controller (8) for facilitating the lifting of the tabletop (1) is fixedly connected to the bottom of the tabletop (1), four telescopic rods (3) for supporting the tabletop (1) are fixedly connected to the four corners of the bottom of the tabletop (1), the bottoms of the four telescopic rods (3) are all fixedly connected to a bottom plate (5), mounting holes for fixing the table body are provided on the four bottom plates (5), a placement rack (2) for placing reagents and solutions is fixedly connected to the top of the tabletop (1), and a plurality of placement holes and placement grooves of different sizes are provided on the placement rack (2); A lifting mechanism is provided on the telescopic rods (3) for lifting the tabletop (1). The lifting mechanism includes two electric telescopic columns (10), four collar rings (4) and two connecting blocks (6). The four collar rings (4) are respectively fixedly sleeved on the outer sides of the fixed ends of the four telescopic rods (3). The two sides of the two connecting blocks (6) are respectively fixedly connected to the outer sides of the four collar rings (4). The fixed ends of the two electric telescopic columns (10) are respectively fixedly connected to the tops of the two connecting blocks (6). The telescopic ends of the two electric telescopic columns (10) are respectively fixedly connected to the two sides of the bottom of the same tabletop (1). Threaded holes for fixing the height of the tabletop (1) are provided on the two connecting blocks (6). Threaded columns (11) are threadedly connected to the threaded holes of the two connecting blocks (6). One ends of the two threaded columns (11) are fixedly connected to a top block. The tops of the two top blocks are respectively in close contact with the two sides of the bottom of the same tabletop (1). The other ends of the two threaded columns (11) are both fixedly connected to a rotating handle for facilitating the rotation of the threaded column (11); A placement mechanism is provided on the tabletop (1) for placing items.
2. The heavy metal ion scavenger detection workbench according to claim 1, wherein, The placement mechanism includes two drawers (12), four T-shaped sliders (13), four T-shaped chutes (17), four sliding blocks (7) and four sliding grooves (16). The two sides of the two drawers (12) are respectively fixedly connected to one side of the four T-shaped sliders (13). The four T-shaped chutes (17) are respectively arranged on the inner walls of the two sides of the two rectangular slots (15). The four T-shaped sliders (13) are slidably connected to the four T-shaped chutes (17). The four sliding grooves (16) are respectively arranged on the two sides of the inner walls of the bottoms of the two rectangular slots (15). The tops of the four sliding blocks (7) are respectively fixedly connected to one side of the bottoms of the two drawers (12). The four sliding blocks (7) are respectively slidably connected to the four sliding grooves (16).
3. The heavy metal ion scavenger detection workbench according to claim 2, characterized in that, Connecting plates (9) are fixedly connected to the front sides of the two drawers (12). Pulling plates (14) are fixedly connected to the front sides of the two connecting plates (9). Grooves for facilitating the opening of the drawers (12) are provided on the two pulling plates (14).