Efficient combined experiment table
By designing a high-efficiency modular experimental platform with placement tanks, connecting tanks, temporary storage tanks, and discharge tanks, combined with support bars and guide plates, the problem of liquid material container tipping was solved, achieving improvements in safety and flexibility.
Patent Information
- Application Number
- CN202520320479.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-02-27
AI Technical Summary
When operating in the chemical industry, existing laboratory benches are prone to tipping over due to accidental contact or bumping of liquid material containers, resulting in waste and safety hazards.
A highly efficient modular experimental platform was designed, comprising a placement tank, a connecting tank, a temporary storage tank, and a discharge tank. The container is supported by support bars and guide plates to prevent tipping, and the liquid is guided and collected through the cooperation of limit seats, screws, and plugs to avoid mixing and safety accidents.
It effectively prevents containers from tipping over, reduces liquid waste, lowers safety hazards, improves operational safety, and enhances structural flexibility and capacity utilization.
Smart Images

Figure CN223945715U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of experiment table, concretely is a kind of efficient combined experiment table. BACKGROUND
[0002] Experiment table is a product with particularly wide application range, mainly used in hospital, school, chemical synthesis, biopharmaceutical, scientific research and development and various detection agencies etc., can be carried out various experiments on it, place various instruments, according to function can be divided into central table, side table, washing table, instrument table, chromatography table, purification table, physical table etc., according to material can be divided into all-steel experiment table, stainless steel experiment table, PP experiment table etc.
[0003] The existing experiment table when carrying out experiment in chemical industry field, various solvents, medicaments etc. Liquid material is usually taken out from storage area and placed on table top, in order to facilitate operation, but experiment personnel when operating equipment, instrument and raw material, it can be caused by mistake, accidental touch etc. Cause not to cover the storage bottle, beaker etc. Container tilt even pour, thereby cause the liquid in container to flow out, first cause waste, second is very easy to cause pollution or harm. INVENTION CONTENTS
[0004] Based on this, the purpose of the utility model is to provide a kind of efficient combined experiment table, to solve the technical problem mentioned in the above background art.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a kind of efficient combined experiment table, including experiment table main body, the experiment table main body one side is connected with shell, and shell outer surface and back portion are connected with four limit seats respectively;The inside of shell is provided with placing groove, communicating groove, temporary storage groove and discharge groove from top to bottom respectively, the inside lower portion of placing groove is provided with support strip and deflector respectively, the lower portion of one side of shell is provided with recess, and the recess is connected with screw rod in the inside, and the one end of screw rod is connected with plug.
[0006] Through the above technical scheme, in the process of the experiment, the staff can put the unsealed container containing liquid into the placing groove, at this time the container is supported by the supporting strip to avoid the container being inclined due to the contact with the inclined surface of the flow guide plate; after the container is placed, the outer wall of the shell is limited to avoid the large-size container from being overturned; if the small-size container is overturned in the placing groove, the outflowing liquid is guided to the communicating groove by the flow guide plate, so that the liquid passes through the communicating groove and is temporarily stored in the temporary storage groove, avoiding the phenomenon that the liquid flows on the main body of the experiment table due to the overturning of the container, which causes a safety hazard; meanwhile, the five placing grooves, the communicating groove and the temporary storage groove are separated by the inner wall of the shell to avoid safety accidents caused by the reaction of mixed liquids; when it is necessary to clean the liquid in the temporary storage groove, the staff can reverse the limiting seat so that the limiting seat no longer abuts against the main body of the experiment table, at this time the shell can be taken off from the main body of the experiment table; then the staff places the shell on the recycling container or the waste liquid container and corresponds to one of the discharge grooves; at this time the staff rotates the screw to displace the plug to end the limiting of the discharge groove, so that the inclined surface inside the temporary storage groove pours the liquid into the discharge groove, and then the liquid passes through the discharge groove and enters the recycling container or the waste liquid container, so as to be recycled or conveniently processed subsequently; then the staff can flush and dry the inside of the shell to avoid residues; after flushing and drying, the staff reverses the screw to reversely displace the plug to plug the discharge groove, avoiding the liquid received in the temporary storage groove from directly flowing on the ground through the discharge groove; and the recess is arranged to facilitate the screw to completely enter the inside of the shell without affecting the operation; if the plug is not reset, the screw will be exposed from the side of the shell, and when the shell is installed back on the main body of the experiment table, the screw will abut against the outer wall of the main body of the experiment table, so that the shell cannot be tightly attached to the outer wall of the main body of the experiment table, so as to facilitate the staff to find that the plug is not reset, which plays a foolproof role to increase safety; after the plug is reset, the staff can attach the shell to two sides or the back of the main body of the experiment table, which can be installed at different positions according to the needs, or all the three surfaces are placed to increase the capacity; after the shell is placed, the staff rotates the limiting seat to make the limiting seat abut against the main body of the experiment table, at this time the friction force between the limiting seat and the main body of the experiment table avoids the shell from falling off.
[0007] Further, the limiting seat is threadedly connected with the shell and abuts against the main body of the experiment table.
[0008] Through the above technical scheme, when it is necessary to clean the liquid in the temporary storage groove, the staff can reverse the limiting seat so that the limiting seat no longer abuts against the main body of the experiment table, at this time the shell can be taken off from the main body of the experiment table; after the shell is cleaned, the shell is placed back, and then the staff rotates the limiting seat to make the limiting seat abut against the main body of the experiment table, at this time the friction force between the limiting seat and the main body of the experiment table avoids the shell from falling off.
[0009] Further, the communication groove is in communication with the placing groove and the temporary storage groove respectively, and the discharge groove is in communication with the temporary storage groove.
[0010] By adopting the above technical scheme, the staff can put the unsealed container filled with liquid into the placing groove. If the small-sized container is tilted in the placing groove, the liquid flowing out is guided to the communication groove by the flow guide plate, so that the liquid passes through the communication groove and is temporarily stored in the temporary storage groove. When cleaning, the liquid is poured into the discharge groove by the inclined surface at the bottom of the temporary storage groove, and then the liquid passes through the discharge groove and enters the recycling container or the waste liquid container, so as to facilitate recycling or subsequent unified treatment.
[0011] Further, the support strips and the flow guide plates are provided in multiple, and the multiple support strips and the multiple flow guide plates are staggered.
[0012] By adopting the above technical scheme, the container is supported by the support strip, so as to avoid the contact between the container and the inclined surface of the flow guide plate, thereby preventing the container from tilting and improving the stability.
[0013] Further, the cross section of the flow guide plate is triangular, and the bottom of the temporary storage groove is inclined.
[0014] By adopting the above technical scheme, the liquid flowing out is guided to the communication groove by the flow guide plate, so that the liquid passes through the communication groove and enters the temporary storage groove. The liquid is poured into the discharge groove by the inclined surface at the bottom of the temporary storage groove, and then the liquid passes through the discharge groove and enters the recycling container or the waste liquid container.
[0015] Further, the placing grooves, the communication grooves, the temporary storage grooves, the discharge grooves, the recesses, the plugs and the screws are provided in five, and the multiple support strips and the multiple flow guide plates are divided into five groups, and the five placing grooves, the five communication grooves, the five temporary storage grooves, the five discharge grooves, the five recesses, the five plugs, the five screws, the five groups of support strips and the five groups of flow guide plates are distributed equidistantly.
[0016] By adopting the above technical scheme, by increasing the number of structures, five containers can be placed in the shell, and the capacity is increased for convenient use.
[0017] Further, the experimental table main body is connected with a storage cabinet in the middle of the bottom, and the storage cabinet is connected with a drawer cabinet on both sides.
[0018] By adopting the above technical scheme, the materials and tools used in the test process can be placed in the storage cabinet and the drawer cabinet, and the instruments can be placed on the experimental table main body for the staff to conduct experimental work.
[0019] Further, the hollow support posts are connected with the first placing racks through the first sockets and hooks.
[0020] By adopting the above technical scheme, the first placing racks are convenient for placing some materials and tools that are frequently used, and the staff can quickly take and place the materials and tools.
[0021] Further, the support plate is connected between the two hollow support posts, and the support plate is provided with a plurality of second sockets arranged in a rectangular array on the outer surface.
[0022] By adopting the above technical scheme, the placing hooks and the second placing racks are convenient for placing some materials and tools that are frequently used, and the staff can quickly take and place the materials and tools.
[0023] In summary, the utility model mainly has the following beneficial effects:
[0024] 1. The utility model discloses a placing groove, a communicating groove, a temporary storage groove, a supporting strip and a flow guide plate, and an unsealed container containing liquid can be placed in the placing groove, the container is supported by the supporting strip, and the container is prevented from being inclined due to the contact between the container and the inclined surface of the flow guide plate. At this time, the outer wall of the shell is limited to prevent the large-size container from being poured. If the small-size container is poured in the placing groove, the liquid flowing out can be guided to the communicating groove by the flow guide plate, so that the liquid passes through the communicating groove and is temporarily stored in the temporary storage groove, thereby preventing the liquid from flowing on the experiment table main body due to the pouring of the container, and the safety hazard is avoided. At the same time, the five placing grooves, the communicating groove and the temporary storage groove are separated by the inner wall of the shell, so that the different liquids are prevented from mixing and reacting to cause a safety accident. The large-size container can be effectively prevented from being poured, and the liquid can be collected if the small-size container is poured, so that the waste is reduced, and the safety hazard is reduced.
[0025] 2, the utility model discloses a shell, limit seat, drain groove, recess, plug and screw rod's setting, when needing to clean the liquid in the temporary storage groove, can rotate limit seat and make limit seat no longer resist experimental table main body, at this moment can take off the shell from experimental table main body, after placing the shell on the recovery container or waste liquid container and with one of drain groove corresponds, at this moment through the rotation screw rod makes the displacement of plug end to limit drain groove, makes the inclined plane under the inside of temporary storage groove pour the liquid into drain groove, after the liquid passes through drain groove and enters recovery container or waste liquid container, in order to recycle or facilitate subsequent unified processing, after then can flush and dry the inside of shell and avoid remaining, after flushing and drying, reverse screw rod makes plug reverse displacement and blocks drain groove, avoids the liquid of subsequent temporary storage groove and directly passes through drain groove and flows on the ground, and through the recess of setting, the screw rod can enter the inside of shell completely and does not affect operation, if plug does not reset, then there will be screw rod from the side of shell, when taking off the shell experimental table main body, the screw rod will be with the outer wall of experimental table main body, makes the shell unable to be tightly attached to the outer wall of experimental table main body, in order to facilitate staff to find the situation that plug does not reset, plays the role of preventing and increases safety, after resetting plug, can attach the shell with the side or back of experimental table main body, can be installed at different positions according to demand, increases flexibility, or places to increase capacity, after placing the shell, reverse limit seat makes limit seat and resist experimental table main body, avoids the shell from falling off through the friction between limit seat and experimental table main body, convenient to disassemble and clean, and can be installed on two sides or back, increases flexibility. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 It is experimental table main body structure schematic diagram of the utility model;
[0027] Figure 2 It is support plate structure schematic diagram of the utility model;
[0028] Figure 3 It is shell side surface structure schematic diagram of the utility model;
[0029] Figure 4 It is shell cross section structure schematic diagram of the utility model;
[0030] Figure 5 It is first rack structure schematic diagram of the utility model;
[0031] Figure 6 It is second rack structure schematic diagram of the utility model.
[0032] In the figure: 1, the main body of the experiment table; 2, the storage cabinet; 3, the drawer cabinet; 4, the hollow support column; 5, the first jack; 6, the support plate; 7, the second jack; 8, the first placing rack; 9, the hook; 10, the placing hook; 11, the second placing rack; 12, the shell; 13, the limiting seat; 14, the placing groove; 15, the communication groove; 16, the temporary storage groove; 17, the discharge groove; 18, the recess; 19, the support strip; 20, the flow guide plate; 21, the plug; 22, the screw rod. DETAILED DESCRIPTION
[0033] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present application, and cannot be understood as a limitation on the present application.
[0034] The embodiments of the present application will be described below according to the overall structure of the present application.
[0035] Embodiment one
[0036] A high-efficiency combined experiment table, such as Figures 1-4As shown, including experimental bench body 1, one side of experimental bench body 1 is connected with shell 12, the outer surface and back of shell 12 are connected with four limit seats 13 respectively, limit seat 13 is screwed with shell 12, limit seat 13 abuts with experimental bench body 1, when needing to clean the liquid in temporary storage groove 16, staff can reverse limit seat 13 to make limit seat 13 no longer abut against experimental bench body 1, at this time, shell 12 can be taken off from experimental bench body 1; The inside of shell 12 is provided with placing groove 14, communication groove 15, temporary storage groove 16 and discharge groove 17 from top to bottom respectively, communication groove 15 is communicated with placing groove 14 and temporary storage groove 16 respectively, discharge groove 17 is communicated with temporary storage groove 16, the inside of temporary storage groove 16 is ramp-shaped at the lower part, staff can place the unsealed container with liquid in placing groove 14, if small size container appears to pour in placing groove 14, through deflector 20, the liquid flowing out is guided to communication groove 15, so that the liquid passes through communication groove 15 and enters temporary storage groove 16 to store temporarily, when cleaning, the inclined surface in the inside of temporary storage groove 16 pours the liquid into discharge groove 17, then the liquid passes through discharge groove 17 and enters the recycling container or waste liquid container, so as to recycle or facilitate subsequent unified treatment; The inside of placing groove 14 is provided with support strip 19 and deflector 20 respectively at the lower part, support strip 19 and deflector 20 are all provided with multiple, multiple support strips 19 and multiple deflectors 20 are staggered distribution, the cross section of deflector 20 is triangular, through support strip 19, the container is supported, avoiding the container and the inclined surface of deflector 20 contact to cause the container to tilt, through deflector 20, the liquid flowing out is guided to communication groove 15; The lower part of one side of shell 12 is provided with recess 18, screw rod 22 is connected in the inside of recess 18, one end of screw rod 22 is connected with plug 21, after flushing and drying, staff reverses screw rod 22 to make plug 21 reverse displacement to block discharge groove 17, avoiding the liquid accepted in temporary storage groove 16 directly passing through discharge groove 17 and flowing on the ground; And through the setting of recess 18, screw rod 22 can completely enter the inside of shell 12 without affecting the operation, if plug 21 is not reset, screw rod 22 will be exposed from the side of shell 12, when shell 12 is put back to experimental bench body 1, screw rod 22 will abut against the outer wall of experimental bench body 1, so that shell 12 cannot be tightly fitted with the outer wall of experimental bench body 1, so as to facilitate staff to find the situation that plug 21 is not reset, to prevent mistake and increase safety; Placing groove 14, communication groove 15, temporary storage groove 16, discharge groove 17, recess 18, plug 21 and screw rod 22 are all provided with five, multiple support strips 19 and deflectors 20 are divided into five groups, and five placing grooves 14, five communication grooves 15, five temporary storage grooves 16, five discharge grooves 17, five recesses 18, five plugs 21, five screw rods 22, five groups of support strips 19 and five groups of deflectors 20 are distributed at equal intervals, so as to place five containers in one shell 6, increase capacity to facilitate use.
[0037] Referring to Figure 1 andFigure 2 In the above embodiment, the experimental bench body 1 is connected with a storage cabinet 2 in the middle of the bottom, and drawer cabinets 3 are connected on both sides of the storage cabinet 2. The storage cabinet 2 and the drawer cabinets 3 are arranged to facilitate the placement of materials and tools used in the experiment. The experimental bench body 1 can be placed with instruments to facilitate the experimental work of the staff.
[0038] Embodiment two
[0039] On the basis of the above embodiment one, in order to increase the placement space, the following arrangement is made.
[0040] Referring to Figure 1 , Figure 2 , Figure 5 and Figure 6 , in the above embodiment, the experimental bench body 1 is connected with a hollow support 4 on both sides of the top, and a plurality of first insertion holes 5 are arranged at equal intervals on the outer surface of the two hollow supports 4. The first insertion holes 5 are connected with a first placement rack 8 through a hook 9. The first placement rack 8 is detachably connected with the hollow support 4 through the first insertion holes 5 and the hook 9. There are a plurality of first insertion holes 5. The staff can adjust the first placement rack 8 to different heights through the hook 9 and the first insertion holes 5, or increase or decrease the number of the first placement rack 8. A support plate 6 is connected between the two hollow supports 4. A plurality of second insertion holes 7 are arranged in a rectangular array on the outer surface of the support plate 6. A placement hook 10 and a second placement rack 11 are respectively connected below the outer surface of the support plate 6. The placement hook 10 and the second placement rack 11 are detachably connected with the support plate 6 through the second insertion holes 7. The support plate 6 and the second insertion holes 7 form a hole plate. The staff can adjust the positions of the placement hook 10 and the second placement rack 11 through the plurality of second insertion holes 7, or increase or decrease the number of the placement hook 10 and the second placement rack 11. The structure can be randomly combined according to the needs, and has good flexibility and is convenient to use. The first placement rack 8, the placement hook 10 and the second placement rack 11 facilitate the placement of some materials and tools that are often used, and are convenient for the staff to quickly take and place.
[0041] The implementation principle of the utility model discloses: first, through the setting of storage cabinet 2 and drawer cabinet 3, the material and tool used in the test process can be placed, and the instrument can be placed on the test bench main body 1 to facilitate the experimental work of the staff;And through the first placing rack 8, the placing hook 10 and the second placing rack 11, some materials and tools that are often used can be placed, and the staff can quickly take and place;And the first jack 5 has multiple, the staff can adjust the first placing rack 8 to different heights by cooperating with the first jack 5, or increase or decrease the number of the first placing rack 8;The support plate 6 and the second jack 7 constitute a hole plate, and the staff can adjust the position of the placing hook 10 and the second placing rack 11 through multiple second jacks 7, or increase or decrease the number of the placing hook 10 and the second placing rack 11;The structure can be combined at will according to the demand, and the flexibility is good and convenient to use;
[0042] In the process of experiment, the staff can put the unsealed container containing liquid into the placing groove 14, at this time, the container is supported by the supporting strip 19, avoiding the container from tilting due to the contact with the inclined surface of the flow guide plate 20;After the container is placed, the outer shell 12 inner wall is limited to avoid the large size container from toppling over;
[0043] If the small size container appears toppling over in the placing groove 14, the liquid flowing out is guided to the communication groove 15 by the flow guide plate 20, so that the liquid passes through the communication groove 15 and is temporarily stored in the temporary storage groove 16, avoiding the phenomenon that the liquid flows on the test bench main body 1 due to the container toppling over, causing safety hazards;At the same time, the five placing grooves 14, the communication groove 15 and the temporary storage groove 16 are separated by the outer shell 12 inner wall, avoiding the safety accidents caused by the reaction of the mixed different liquids;
[0044] When it is necessary to clean the liquid in the temporary storage groove 16, the staff can reverse the limiting seat 13 so that the limiting seat 13 no longer abuts against the test bench main body 1, at this time, the outer shell 12 can be taken off from the test bench main body 1;After that, the staff places the outer shell 12 on the recovery container or waste liquid container, and corresponds to one of the discharge grooves 17;At this time, the staff rotates the screw rod 22 to displace the plug 21 to end the limiting of the discharge groove 17, so that the inclined surface inside the temporary storage groove 16 pours the liquid into the discharge groove 17, and then the liquid passes through the discharge groove 17 and enters the recovery container or waste liquid container, so as to facilitate recycling or subsequent unified treatment;After that, the staff can flush and dry the inside of the outer shell 12 to avoid residue;
[0045] After flushing and drying, the staff reverses the screw 22 to reverse the displacement of the plug 21 to block the discharge groove 17, to avoid the liquid received in the subsequent temporary storage groove 16 directly flowing to the ground through the discharge groove 17; and the recess 18 is arranged to facilitate the screw 22 to completely enter the inside of the shell 12 without affecting the operation, if the plug 21 is not reset, the screw 22 will be exposed from the side of the shell 12, and when the shell 12 is placed back to the experimental bench body 1, the screw 22 will be in contact with the outer wall of the experimental bench body 1, so that the shell 12 cannot be tightly attached to the outer wall of the experimental bench body 1, so as to facilitate the staff to find that the plug 21 is not reset, and the foolproof function is increased to increase the safety; after resetting the plug 21, the staff can attach the shell 12 to the two sides or the back of the experimental bench body 1, which can be installed at different positions according to the needs, or placed on three sides to increase the capacity; after placing the shell 12, the staff rotates the limiting seat 13 to make the limiting seat 13 abut against the experimental bench body 1, at this time, the friction force between the limiting seat 13 and the experimental bench body 1 avoids the shell 12 from falling off.
[0046] Although the embodiments of the utility model have been shown and described, the specific embodiments are only an explanation of the utility model, and are not a limitation of the utility model, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner, and the person skilled in the art can make modifications, replacements and variations of the embodiments without creative contribution after reading the specification without departing from the principles and purposes of the utility model, but as long as it is within the scope of the claims of the utility model, it is protected by the patent law.
Claims
1. A high-efficiency combined experiment table, comprising an experiment table main body (1), characterized in that: The experimental bench body (1) one side is connected with the shell (12), and the shell (12) outer surface and back part are connected with four limit seats (13) respectively;The shell (12) inside is provided with placing groove (14), communication groove (15), temporary storage groove (16) and discharge groove (17) from top to bottom respectively, the placing groove (14) inside lower part is provided with support strip (19) and guide plate (20) respectively, the shell (12) one side lower part is provided with recess (18), and the recess (18) inside is connected with screw rod (22), the screw rod (22) one end is connected with plug (21).
2. The high efficiency combination lab bench of claim 1, wherein: The limit seat (13) is connected with the shell (12) threadedly, and the limit seat (13) is abutted with the experimental bench body (1).
3. The high efficiency modular lab station of claim 1, wherein: The communication groove (15) is connected with the placing groove (14) and the temporary storage groove (16) respectively, and the discharge groove (17) is connected with the temporary storage groove (16).
4. The high efficiency modular lab station of claim 1, wherein: The support strip (19) and the guide plate (20) are all provided with multiple, and multiple support strips (19) and multiple guide plates (20) are staggered distribution.
5. The high efficiency modular lab station of claim 4, wherein: The guide plate (20) cross section is triangle, and the lower part inside the temporary storage groove (16) is inclined.
6. The high efficiency modular lab station of claim 5, wherein: The placing groove (14), communication groove (15), temporary storage groove (16), discharge groove (17), recess (18), plug (21) and screw rod (22) are all provided with five, and multiple support strips (19) and guide plates (20) are divided into five groups, and five placing grooves (14), five communication grooves (15), five temporary storage grooves (16), five discharge grooves (17), five recesses (18), five plugs (21), five screw rods (22), five groups of support strips (19) and five groups of guide plates (20) are equidistant distribution.
7. The high efficiency modular lab station of claim 1, wherein: The experimental bench body (1) bottom middle is connected with the storage cabinet (2), and the storage cabinet (2) both sides are connected with the drawer cabinet (3).
8. The high efficiency modular lab station of claim 7, wherein: The experimental bench body (1) top both sides are connected with the hollow support column (4), and the two hollow support columns (4) outer surfaces are all provided with multiple first jack (5) of equidistant distribution, the first jack (5) outer surface is connected with the first placing rack (8) through the hook (9), and the first placing rack (8) is detachably connected with the hollow support column (4) through the first jack (5) and the hook (9).
9. The high efficiency modular lab station of claim 8, wherein: The two hollow support columns (4) are connected with the support plate (6), and the support plate (6) outer surface is provided with multiple second jack (7) of rectangular array distribution, the support plate (6) outer surface lower part is connected with the placing hook (10) and the second placing rack (11) respectively, and the placing hook (10) and the second placing rack (11) are all detachably connected with the support plate (6) through the second jack (7).