CN214514715U - Central experiment table based on internet of things control - Google Patents

Central experiment table based on internet of things control Download PDF

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Publication number
CN214514715U
CN214514715U CN202022698491.5U CN202022698491U CN214514715U CN 214514715 U CN214514715 U CN 214514715U CN 202022698491 U CN202022698491 U CN 202022698491U CN 214514715 U CN214514715 U CN 214514715U
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China
Prior art keywords
suspension cabinet
cabinet
lifting
internet
test
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CN202022698491.5U
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Chinese (zh)
Inventor
姜自兰
张克兵
李修明
邵明祥
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Shandong Oupu Branch Trade Co ltd
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Shandong Oupu Branch Trade Co ltd
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Abstract

The utility model discloses a central experiment table based on control of the internet of things, which comprises a test table, wherein a storage table lifting device is arranged at the middle position of the test table, the lifting device comprises a storage cabinet, a lifting screw rod, a lifting bracket, a lifting motor and a plurality of limit switches, a left suspension cabinet and a right suspension cabinet are arranged at two sides of the lower end of the test table, a socket and an internet of things control box are arranged at the upper layer in the left suspension cabinet, the storage cabinet is arranged at the lower layer of the left suspension cabinet, the right suspension cabinet is a multilayer suspension cabinet, the left suspension cabinet and the right suspension cabinet are arranged at the lower end of the table top of the test table through a moving rail, the moving rail is arranged at the lower surface of the test table, the moving motor is arranged on the moving rail, the experiment operation can be conveniently completed through the central experiment table, and the orderly progress of the experiment can be ensured in the test process, the test table top is ensured to be neat and orderly, and the mess in the test process is reduced.

Description

Central experiment table based on internet of things control
Technical Field
The utility model relates to a test bench technical field especially relates to a central experiment platform based on thing networked control.
Background
The intermediate position that the laboratory was arranged in to central test platform is fit for, be the main platform of carrying out experimental activity, traditional central test platform is equipped with the test bench on the mesa, the test bench includes a plurality of supports, platform through horizontal arrangement between support and the support links to each other, be used for placing test reagent on the platform, be equipped with a plurality of interfaces that are used for connecting the platform at the support vertically usually, the platform can be installed according to actual altitude needs corresponding interface of selection, but because various supports just occupy most with limited test bench, influence experimental orderly the going on, especially when doing the experiment a great variety of medicine, be particularly unfavorable for doing the experiment, cause central test bench mixed and disorderly simultaneously, the test bench is fixed simultaneously, can not adjust.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a central authorities laboratory bench based on thing networked control to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a central experiment table based on Internet of things control comprises a test table, wherein a lifting device is installed in the middle of the test table and comprises a storage table, a lifting screw, a lifting support, a lifting motor and a plurality of limit switches, lifting blocks are arranged on two sides of the lower end of the storage table and sleeved on the lifting screw in a sliding mode, the lifting screw is installed on the lifting support, the lower end of the lifting screw is connected with the lifting motor in a rotating mode, the upper end of the lifting screw is installed on the lifting support through a shaft seat, the upper end of the lifting support is connected with the upper end of the storage table in a sliding mode, the storage table is arranged into a multi-layer platform, and the lifting support is provided with a plurality of limit switches;
the limit switch is respectively and correspondingly arranged at the upper end of the multilayer platform of the storage platform, the two ends of the front side of the test bed are provided with a left suspension cabinet and a right suspension cabinet, the upper layer in the left suspension cabinet is provided with a socket and an Internet of things control box, the lower layer of the left suspension cabinet is provided with a storage cabinet, the right suspension cabinet is a multilayer suspension cabinet, the left suspension cabinet and the right suspension cabinet are arranged at the lower end of the table top of the test bed through a moving rail, the right suspension cabinet is divided into an upper suspension cabinet and a lower suspension cabinet, the lower suspension cabinet is arranged at the lower side of the upper suspension cabinet, the lower suspension cabinet is opened through rotating a rotating rod, the moving rail is arranged at the lower surface of the test bed, the moving rail is provided with a moving motor, a processor, a wireless control module and a controller are arranged in the Internet of things control box, the wireless control module is electrically connected with the processor, the controller is electrically connected with the processor, the wireless control module is in induction connection with the wireless remote control, and the wireless remote control controls the processor through the wireless control module; install the storing platform in the test bench lower part through elevating gear, can go up and down the storing sales counter at the test bench middle part through elevating gear, can carry out the lift number of piles of control test bench according to the experimental articles for use quantity of experiment simultaneously, freely set for according to the number of piles of difference like this, can guarantee that the test bench table surface is clean and tidy, the orderly the going on of assurance test, the while left side suspension is provided with socket and thing networked control box on the cabinet upper strata, can carry out the use of effective control and socket when experimental like this, lower floor's test bench can rotate simultaneously, place various experimental apparatus from one side, the right side suspension cabinet sets up the multilayer upper strata and can not rotate, the lower floor can rotate and place article.
Preferably, the multilayer platform is a four-layer platform, the limit switches are four limit switches, the four limit switches are arranged at the upper end of each corresponding platform, and the limit switches are induction proximity switches; can deal with different experimental needs through four layers of platforms, better completion like this is right, can control elevating gear through wireless remote control simultaneously according to experimental difference, guarantees through limit switch and thing networked control box that the position that rises out to every layer of platform is accurate.
Preferably, the upper end of the lifting support is provided with a sliding wheel, the sliding wheel is connected with the upper end of the storage table in a sliding manner, and the sliding wheel is arranged on two sides of the storage table at the upper end of the lifting support; in the process of lifting the storage table by the lifting device, the storage table is stably lifted, a sliding wheel is arranged between the lifting support and the storage table, and the sliding storage table is lifted and lowered by the sliding wheel.
Preferably, sliding blocks are arranged on the upper layer of the cabinet body of the left suspension cabinet and the right suspension cabinet, the sliding blocks are connected to the moving rail in a sliding mode, and the sliding blocks are driven by the moving motor; the cabinet body edge upper end on left side suspension cabinet and right side suspension cabinet upper strata is provided with the sliding block, sliding block and removal rail sliding connection drive left side suspension cabinet and the business turn over of right side suspension cabinet simultaneously through the removal motor.
Preferably, the wireless remote control controls the lifting of the storage platform and the entrance and exit of the left suspension cabinet and the right suspension cabinet through the wireless control module; therefore, the operation of personnel is simplified in the experimental process, various test tools can be taken at any time and any place, and the operation is convenient and fast.
Compared with the prior art, the beneficial effects of the utility model are that: the central test bed is convenient for completing the experiment operation, and simultaneously, the orderly proceeding of the experiment is ensured in the test process, so that the test table top is ensured to be neat and orderly, the busy and mess in the test process is reduced, and meanwhile, the experiment can be completed by the tester more conveniently during the operation.
Drawings
Fig. 1 is the overall structure schematic diagram of the central test bed of the utility model.
Fig. 2 is the structure diagram of the storage table of the central experiment table of the utility model.
Fig. 3 is the left suspension cabinet structure diagram of the central test bed of the present invention.
Fig. 4 is the structural schematic diagram of the right suspension cabinet of the central test stand of the present invention.
Fig. 5 is a schematic diagram of the rotating rod structure of the right suspension cabinet of the present invention.
In the figure: 1. the test bench, 2, elevating gear, 3, storing platform, 4, lifting screw, 5, lifting support, 6, elevator motor, 7, limit switch, 8, elevator, 9, left side suspension cabinet, 10, right side suspension cabinet, 11, socket, 12, thing networking control box, 13, locker, 14, removal rail, 15, mobile motor, 16, movable pulley, 17, sliding block, 18, multilayer platform, 19, lower floor's suspension cabinet, 20, dwang, 21, upper strata suspension cabinet.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
As shown in fig. 1, 2 and 5, a central experiment table based on internet of things control comprises a test table 1, wherein a lifting device 2 is installed in the middle of the test table 1, the lifting device 2 comprises a storage table 3, a lifting screw 4, a lifting support 5, a lifting motor 6 and a plurality of limit switches 7, lifting blocks 8 are arranged on two sides of the lower end of the storage table 3, the lifting blocks 8 are slidably sleeved on the lifting screw 4, the lifting screw 4 is installed on the lifting support 5, the lower end of the lifting screw 4 is rotatably connected with the lifting motor 6, the upper end of the lifting screw 4 is installed on the lifting support 5 through a shaft seat, the upper end of the lifting support 5 is slidably connected with the upper end of the storage table 3, the storage table 3 is arranged into a multilayer platform, and the lifting support 5 is provided with the plurality of limit switches 7;
limit switch 7 corresponds the setting respectively 3 multilayer platform 18 upper ends of storing platform, 1 front side both ends of test bench are provided with left side suspension cabinet 9 and right side suspension cabinet 10, upper strata is provided with socket 11 and thing networked control box 12 in the suspension cabinet 9 of left side, 9 lower floors of left side suspension cabinet are provided with locker 13, right side suspension cabinet 10 is multilayer suspension cabinet, left side suspension cabinet 9 with right side suspension cabinet 10 install in the mesa lower extreme of test bench 1 through removing rail 14, right side suspension cabinet 10 divide into upside suspension cabinet 21 and lower floor suspension cabinet 19, lower floor suspension cabinet 19 is installed to upper strata suspension cabinet 21 downside, lower floor suspension cabinet 19 passes through dwang 20 rotatory opening, remove rail 14 install in 1 lower surface of test bench, be provided with moving motor 15 on removing rail 14, install treater in the thing networked control box 12, The wireless control module is electrically connected with the processor, the controller is electrically connected with the processor, the wireless control module is in induction connection with a wireless remote control, and the wireless remote control controls the processor through the wireless control module; the storage platform 3 is arranged at the lower part of the test bed 1 through the lifting device 2, the storage platform 3 can be lifted in the middle of the test bed through the lifting device 2, meanwhile, the lifting layer number of the test bed 1 can be controlled according to the number of experimental articles to be tested, so that the lifting layer number can be freely set according to different layer numbers, the cleanness of the table top of the test bed can be ensured, the orderly performance of the test can be ensured, meanwhile, the socket 11 and the internet of things control box 12 are arranged on the upper layer of the left suspension cabinet 9, so that the socket can be effectively controlled and used in the test, various test tools can be placed from one side, the multilayer suspension cabinet is arranged on the right suspension cabinet 10, the upper suspension cabinet 21 can not rotate, the lower suspension cabinet 19 can rotate to place articles, the lower suspension cabinet 19 is driven to rotate by a rotating rod 20 arranged at one side of the upper suspension cabinet 21.
The multilayer platform 18 is a four-layer platform, the limit switches 7 are arranged to be four limit switches, the four limit switches 7 are arranged at the upper end of each corresponding platform, and the limit switches are induction proximity switches; can deal with different experimental needs through four layers of platforms, better completion like this is right, can control elevating gear through wireless remote control simultaneously according to experimental difference, guarantees through limit switch 7 and thing networked control box 12 that the position that rises out to every layer of platform is accurate.
The upper end of the lifting support 5 is provided with a sliding wheel 16, the sliding wheel 16 is connected with the upper end of the storage table 3 in a sliding manner, and the sliding wheel 16 is arranged on two sides of the storage table at the upper end of the lifting support 5; in the process of lifting the storage table 3 by the lifting device 2, the stable lifting of the storage table 3 is ensured, the sliding wheel 16 is arranged between the lifting support 5 and the storage table 3, and the lifting and the falling of the sliding storage table 3 are completed by the sliding wheel 16.
As shown in fig. 3 and 4, sliding blocks 17 are disposed on the upper cabinet body edges of the left suspension cabinet 9 and the right suspension cabinet 10, the sliding blocks 17 are slidably connected to the moving rails 14, and the sliding blocks 17 are driven by the moving motor 15; the cabinet body edge upper strata of left side suspension cabinet 9 and right side suspension cabinet 10 is provided with sliding block 17, sliding block 17 and 14 sliding connection of removal rail, drive left side suspension cabinet 9 and the business turn over of right side suspension cabinet 10 simultaneously through moving motor 15.
The wireless remote control controls the lifting of the storage table 3 and the inlet and outlet of the left suspension cabinet 9 and the right suspension cabinet 10 through the wireless control module; therefore, the operation of personnel is simplified in the experimental process, various test tools can be taken at any time and any place, and the operation is convenient and fast.
The utility model has the advantages that: the central test bed is convenient for completing the experiment operation, and simultaneously, the orderly proceeding of the experiment is ensured in the test process, so that the test table top is ensured to be neat and orderly, the busy and mess in the test process is reduced, and meanwhile, the experiment can be completed by the tester more conveniently during the operation.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and variations may be made in these embodiments without departing from the principles and spirit of the invention, in which a processor, wireless control module, wireless remote control and controller are elements of the prior art, the scope of which is defined in the appended claims and their equivalents.

Claims (5)

1. A central experiment table based on Internet of things control comprises a test table and is characterized in that a lifting device is mounted in the middle of the test table and comprises a storage table, a lifting screw, a lifting support, a lifting motor and a plurality of limit switches, lifting blocks are arranged on two sides of the lower end of the storage table and sleeved on the lifting screw in a sliding mode, the lifting screw is mounted on the lifting support, the lower end of the lifting screw is connected with the lifting motor in a rotating mode, the upper end of the lifting screw is mounted on the lifting support through a shaft seat, the upper end of the lifting support is connected with the upper end of the storage table in a sliding mode, the storage table is arranged into a multi-layer platform, and the lifting support is provided with the limit switches;
the limit switch is respectively and correspondingly arranged at the upper end of the multilayer platform of the storage platform, the two ends of the front side of the test bed are provided with a left suspension cabinet and a right suspension cabinet, the upper layer in the left suspension cabinet is provided with a socket and an internet of things control box, the lower layer of the left suspension cabinet is provided with a storage cabinet, the right suspension cabinet is a multilayer suspension cabinet, the left suspension cabinet and the right suspension cabinet are arranged at the lower end of the table top of the test bed through a moving rail, the right suspension cabinet is divided into an upper suspension cabinet and a lower suspension cabinet, the lower suspension cabinet is arranged at the lower side of the upper suspension cabinet, the lower suspension cabinet is opened through rotating a rotating rod, the moving rail is arranged at the lower surface of the test bed, the moving rail is provided with a moving motor, a processor, a wireless control module and a controller are arranged in the internet of things control box, the wireless control module is electrically connected with the processor, the controller is electrically connected with the processor, the wireless control module is in induction connection with the wireless remote control module, and the wireless remote control module controls the processor.
2. The central experiment table based on the internet of things control as claimed in claim 1, wherein the multi-layer platform is a four-layer platform, the limit switches are set to be four limit switches, the four limit switches are arranged at the upper end of each corresponding platform, and the limit switches are inductive proximity switches.
3. The central experiment table based on the internet of things control as claimed in claim 1, wherein a sliding wheel is arranged at the upper end of the lifting support, the sliding wheel is connected with the upper end of the storage table in a sliding manner, and the sliding wheel is arranged at two sides of the storage table at the upper end of the lifting support.
4. The central experiment table based on the internet of things control as claimed in claim 1, wherein sliding blocks are arranged on the upper cabinet body edges of the left suspension cabinet and the right suspension cabinet, the sliding blocks are slidably connected to the moving rail, and the sliding blocks are driven by the moving motor.
5. The central experiment table based on the internet of things control as claimed in claim 1, wherein the wireless remote control controls the lifting of the storage table, the entrance and exit of the left suspension cabinet and the right suspension cabinet through the wireless control module.
CN202022698491.5U 2020-11-20 2020-11-20 Central experiment table based on internet of things control Active CN214514715U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022698491.5U CN214514715U (en) 2020-11-20 2020-11-20 Central experiment table based on internet of things control

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022698491.5U CN214514715U (en) 2020-11-20 2020-11-20 Central experiment table based on internet of things control

Publications (1)

Publication Number Publication Date
CN214514715U true CN214514715U (en) 2021-10-29

Family

ID=78287552

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022698491.5U Active CN214514715U (en) 2020-11-20 2020-11-20 Central experiment table based on internet of things control

Country Status (1)

Country Link
CN (1) CN214514715U (en)

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