Atmospheric pollution prevention and control sampling device and method and control panel

By using a combination structure of an outer tube and an inner support column in the air pollution sampling equipment, along with a motor and gear system, automatic height adjustment and stability of the sampling body are achieved. This solves the problems of complex installation and inconvenient movement of existing equipment, and improves the ease of operation and safety.

CN120969648APending Publication Date: 2025-11-18NORTH CHINA GRID MEASUREMENT CENT
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Patent Information

Application Number
CN202511102248.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-07
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

Existing air pollution sampling equipment is complex to install and fix, cumbersome to disassemble and assemble, inconvenient to move, and uneven manual height adjustment can easily cause the device to tip over and be damaged.

Method used

The device employs multiple outer sleeves for sliding installation of internal support columns within the housing. The height of the sampling body is automatically adjusted by controlling a multi-output shaft motor and gear structure via a control panel. Combined with casters and brake pads, the device ensures stability and easy movement.

Benefits of technology

It achieves automatic height adjustment of the sampling body, is easy to operate, highly stable, simple to assemble and disassemble, convenient to move, and avoids damage to the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an air pollution prevention and control sampling device and method and a control panel. The device comprises a box body, an outer sleeve, an inner supporting column, a supporting plate, a sampling body and the control panel, a plurality of outer sleeves are arranged in the box body, and an inner supporting column is installed in each outer sleeve in a sliding mode. The top of the inner supporting column penetrates out of the top of the box body. A supporting plate is arranged at the top of the inner supporting column; the sampling body is arranged on the supporting plate; the control panel is arranged on the box body and is connected with the sampling body; the control panel is used for controlling the sampling body to carry out air sampling, the control panel is used for carrying out lifting control on the outer sleeves which are slidably provided with the inner supporting columns, the height of the sampling body is automatically adjusted, the operation is convenient, the stability is relatively high, and the safety of the sampling device is ensured; the sampling body is simple to disassemble and assemble and convenient to move.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of atmospheric sampling, in particular to an atmospheric pollution prevention and treatment sampling device, method and control panel. BACKGROUND

[0002] Atmospheric pollution is a phenomenon that certain substances enter the atmosphere due to human activities or natural processes, present a sufficient concentration, reach a sufficient time, and thus endanger the comfort, health and welfare of human beings or the environment. Before preventing and treating atmospheric pollution, the degree of atmospheric pollution needs to be sampled and checked. In the related art, the atmospheric sampling equipment is installed and fixed in the outdoor environment through a support column, the installation and fixing process is complex, which leads to the cumbersome disassembly and removal of the atmospheric sampling equipment. Alternatively, the atmospheric sampling equipment is installed in the outdoor environment through a tripod, but the tripod needs to be manually adjusted in height, which is relatively troublesome to operate, and the manual adjustment force is uneven, which is easy to cause the device to overturn and cause damage to the device. SUMMARY

[0003] One object of the present application is to provide an atmospheric pollution prevention and treatment sampling device, which automatically adjusts the height of the sampling body by controlling the outer sleeve pipe with multiple inner support columns through the control panel, is convenient to operate, has high stability, and ensures the safety of the sampling device. The sampling body is simple to disassemble and remove, and is convenient to move. Another object of the present application is an atmospheric pollution prevention and treatment sampling method. Another object of the present application is to provide an atmospheric pollution prevention and treatment sampling device. Another object of the present application is to provide a computer readable medium. Another object of the present application is to provide a computer device.

[0004] To achieve the above objects, the present application discloses an atmospheric pollution prevention and treatment sampling device, comprising: a box body, an outer sleeve pipe, an inner support column, a support plate, a sampling body and a control panel.

[0005] The box body is internally provided with multiple outer sleeve pipes, and each outer sleeve pipe is internally slidably provided with an inner support column.

[0006] The top of the inner support column penetrates out of the top of the box body.

[0007] The top of the inner support column is provided with a support plate.

[0008] The sampling body is arranged on the support plate.

[0009] The control panel is arranged on the box body, and the control panel is connected with the sampling body.

[0010] The control panel is used for controlling the sampling body to perform air sampling.

[0011] Preferably, the device further comprises a multi-output shaft motor and a plurality of gear structures, the number of the gear structures corresponding to the number of the output shafts of the multi-output shaft motor;

[0012] The multi-output shaft motor is arranged at the top of the box body;

[0013] The plurality of output shafts of the multi-output shaft motor are connected with a gear structure respectively.

[0014] Preferably, the gear structure comprises a gear box, a gear and a rack;

[0015] The plurality of output shafts of the multi-output shaft motor are connected with a gear box respectively.

[0016] The output shaft of the gear box is connected with the gear;

[0017] The rack is arranged on the inner support column;

[0018] A through hole is arranged on the side wall of the sleeve tube, and the position of the through hole corresponds to the gear, so that the gear is engaged with the rack through the through hole.

[0019] Preferably, the control panel is connected with the multi-output shaft motor;

[0020] The control panel is used to control the start and stop of the multi-output shaft motor;

[0021] When the multi-output shaft motor is started, the gear is controlled to rotate through the gear box, the rack is controlled to lift through the rotation of the gear, the inner support column is controlled to lift through the lifting of the rack, and the support plate is controlled to carry the sampling body to lift through the lifting of the inner support column.

[0022] Preferably, the control panel comprises a display screen;

[0023] The display screen is connected with the sampling body;

[0024] The display screen is used to receive a control instruction;

[0025] The display screen is further used to visually display the sampling result sent by the sampling body.

[0026] Preferably, the device further comprises a universal wheel;

[0027] The universal wheel is arranged at the bottom of the box body;

[0028] The universal wheel is used to carry the box body and move under the action of an external force.

[0029] Preferably, the universal wheel is provided with a brake pad;

[0030] The device is fixed through the brake pad.

[0031] Preferably, the device further comprises a box body handle;

[0032] The box handle is arranged on the side of the box body;

[0033] The box handle is used for providing a force point for the application of external force.

[0034] Preferably, the device further comprises a box door;

[0035] The box door is arranged on the box body;

[0036] The box door is used for providing an external passage for the internal space of the box body.

[0037] The application further discloses a method for preventing and treating atmospheric pollution, which is applied to the atmospheric pollution prevention and treatment sampling device and comprises the following steps:

[0038] The sampling signal is received;

[0039] The sampling body is controlled to perform air sampling in response to the sampling signal.

[0040] Preferably, the method further comprises the following steps:

[0041] The motor control signal is received, and the motor control signal comprises a motor starting signal and a device sampling height;

[0042] The multi-output-shaft motor is controlled to start according to the motor starting signal, the gear is controlled to rotate through the gear box, the rack is controlled to lift, the inner support column is controlled to lift, and the support plate is controlled to lift the sampling body to the device sampling height.

[0043] Preferably, the method further comprises the following steps:

[0044] The sampling signal and the motor control signal are received through the display screen;

[0045] The sampling result sent by the sampling body is received through the display screen, and the sampling result is visually displayed.

[0046] The application further discloses a control panel, which comprises:

[0047] A receiving unit is arranged and used for receiving a sampling signal;

[0048] A control unit is arranged and used for controlling a sampling body to perform air sampling in response to the sampling signal.

[0049] Preferably, the receiving unit is further arranged and used for receiving a motor control signal, and the motor control signal comprises a motor starting signal and a device sampling height;

[0050] The control unit is further arranged and used for controlling a multi-output-shaft motor to start according to the motor starting signal, controlling a gear to rotate through a gear box, controlling a rack to lift, controlling an inner support column to lift, and controlling a support plate to lift the sampling body to the device sampling height.

[0051] Preferably, the control panel further comprises a display unit.

[0052] The receiving unit is specifically configured to receive the sampling signal and the motor control signal through the display screen, and receive the sampling result sent by the sampling body through the display screen.

[0053] The display unit is configured to visually display the sampling result.

[0054] The application further discloses a computer readable medium, which stores a computer program, and the program is executed by a processor to realize the method.

[0055] The application further discloses a computer device, which comprises a memory and a processor, the memory is used for storing information comprising program instructions, and the processor is used for controlling execution of the program instructions, and the processor realizes the method when executing the program.

[0056] The application further discloses a computer program product, which comprises computer program / instructions, and the computer program / instructions are executed by a processor to realize the method.

[0057] The atmospheric pollution prevention and sampling device comprises a box body, an outer sleeve, an inner support column, a support plate, a sampling body and a control panel. The box body is internally provided with a plurality of outer sleeves, and the inner support column is slidingly installed in each outer sleeve. The top of the inner support column penetrates out of the top of the box body. The top of the inner support column is provided with the support plate. The sampling body is arranged on the support plate. The control panel is arranged on the box body and connected with the sampling body. The control panel is used for controlling the sampling body to sample air. The outer sleeves slidingly installed with the inner support columns are controlled in lifting by the control panel, so that the height of the sampling body is automatically adjusted. The atmospheric pollution prevention and sampling device is convenient to operate, high in stability and high in safety. The sampling body is simple in disassembly and assembly and convenient to move. BRIEF DESCRIPTION OF DRAWINGS

[0058] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor based on these drawings.

[0059] Figure 1 An external structure schematic diagram of the atmospheric pollution prevention and sampling device provided by the embodiment of the present application;

[0060] Figure 2 An internal structure schematic diagram of the atmospheric pollution prevention and sampling device provided by the embodiment of the present application;

[0061] Figure 3 A flowchart of an air pollution control sampling method provided in an embodiment of the present invention;

[0062] Figure 4 A flowchart illustrating another atmospheric pollution control sampling method provided in this embodiment of the invention;

[0063] Figure 5 This is a schematic diagram of the structure of an air pollution control sampling device provided in an embodiment of the present invention;

[0064] Figure 6 This is a schematic diagram of the structure of a computer device provided in an embodiment of the present invention. Detailed Implementation

[0065] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0066] To facilitate understanding of the technical solution provided in this application, the relevant content of the technical solution will be explained below. During use, the air pollution control sampling device needs to collect gas at different altitudes for separate testing. This application improves the convenience of the air pollution control sampling device, making it not only simple to fix, reliable to support, and easy to move, but also easy to adjust in height.

[0067] Figure 1 This is a schematic diagram of the external structure of an air pollution control sampling device provided in an embodiment of the present invention, as shown below. Figure 1 As shown, the external components of the device include: a housing 1, a housing door 2, a housing handle 3, casters 4, an internal support column 6, a support plate 8, a sampling body 9, and a control panel 13.

[0068] The embodiment of the present invention is shown with two internal support columns 6, as follows: Figure 1 As shown, the tops of the two inner support columns 6 extend from the top of the housing 1; a support plate 8 is provided on the top of the inner support columns 6; the sampling body 9 is mounted on the support plate 8. The support plate 8 is used to support the sampling body 9. The sampling body 9 can sample the air and detect the collected air to generate sampling results.

[0069] In this embodiment of the invention, the sampling body is supported by a support plate, which can improve the stability of the device, ensure the safety of the device, and prevent the device from tipping over and being damaged.

[0070] In the embodiment of the present application, the control panel 13 is arranged on the box body 1, and the control panel 13 is in communication connection with the sampling body 9; the control panel 13 is used for controlling the sampling body 9 to carry out air sampling. Specifically, the output end of the control panel 13 is in communication connection with the controlled end of the sampling body 9, so as to realize the control of the sampling body 9 to carry out air collection.

[0071] In the embodiment of the present application, by arranging the control panel 13 on the box body 1, it can be avoided that the sampling body 9 is too high after height adjustment and cannot be controlled.

[0072] In the embodiment of the present application, the control panel 13 comprises a display screen, the display screen is electrically connected with the output end of the sampling body 9; the display screen is used for receiving the control instruction input by the collector; the display screen is also used for visually displaying the sampling result sent by the sampling body 9, and the result of the sampling inspection of the sampling body 9 is displayed in real time, so as to facilitate the viewing of the real-time collected sample monitoring pollution degree.

[0073] As shown in Figure 1 , the device further comprises: a universal wheel 4.

[0074] The universal wheel 4 is arranged at the bottom of the box body 1; the universal wheel 4 is used for bearing the box body 1 and moving under the action of external force. As an optional solution, four universal wheels 4 are arranged at the positions of the four corners of the bottom of the box body 1, which improves the convenience of moving in each direction and also ensures the stability of the device.

[0075] Further, the universal wheel 4 is provided with a brake pad, and the device can be fixed through the brake pad, and the stability of the fixed device is ensured.

[0076] As shown in Figure 1 , the device further comprises: a box body handle 3.

[0077] The box body handle 3 is arranged on the side surface of the box body 1; the box body handle 3 is used for providing a force point for the application of external force. The sampling personnel can realize the push-pull of the atmospheric pollution prevention and control sampling device through the box body handle 3, and move the atmospheric pollution prevention and control sampling device to the preset sampling position.

[0078] As shown in Figure 1 , the device further comprises: a box door 2;

[0079] The box door 2 is arranged on the box body 1; the box door 2 is used for providing an external passage for the internal space of the box body 1. The sampling personnel can take and place tools and appliances and other articles in the internal space of the box body 1 by opening the box door 2.

[0080] Figure 2 An internal structure schematic diagram of an atmospheric pollution prevention and control sampling device provided in the embodiment of the present application is shown in Figure 2As shown, the device includes an outer sleeve 5, a multi-output shaft motor 10, and multiple gear structures.

[0081] The housing 1 has multiple outer tubes 5 inside, and an inner support column 6 is slidably installed inside each outer tube 5. The inner support column 6 can slide within the outer tube 5, thereby achieving lifting and lowering.

[0082] In this embodiment of the invention, the multi-output shaft motor 10 includes multiple output shafts. This invention will be described using a dual-output shaft as an example, that is: the multi-output shaft motor 10 is a dual-output shaft motor.

[0083] In this embodiment of the invention, the number of gear structures corresponds to the number of output shafts of the multi-output shaft motor 10. Specifically, the multi-output shaft motor 10 in this embodiment of the invention is a dual-output shaft motor, that is, the number of output shafts is 2, and the number of gear structures is 2.

[0084] In this embodiment of the invention, the multi-output shaft motor 10 is disposed at the top inside the housing 1; the multiple output shafts of the multi-output shaft motor 10 are respectively connected to a gear structure, the gear structure including a gearbox 11, a gear 12 and a rack 7.

[0085] The multiple output shafts of the multi-output shaft motor 10 are respectively connected to a gearbox 11; the output shafts of the gearbox 11 are connected to the gear 12; the rack 7 is covered and set on the inner support column 6; the side wall of the outer sleeve 5 is opened with a through hole, the position of the through hole is corresponding to the gear 12, so that the gear 12 passes through the through hole and meshes with the rack.

[0086] like Figure 2 As shown, the multi-output shaft motor 10 is a dual-output shaft motor with two gear structures. Each of the two output shafts of the dual-output shaft motor is connected to a gearbox 11, and each output shaft of the two gearboxes 11 is connected to a gear 12. A rack 7 is respectively installed on the opposite surfaces of the two inner support columns 6. Through holes are formed on the side walls of the two outer sleeves 5, and the two gears 12 pass through these through holes and mesh with the two racks 7 in a one-to-one correspondence.

[0087] In this embodiment of the invention, the control panel 13 is connected to the multi-output shaft motor 10. Specifically, the output terminal of the control panel 13 is connected to the controlled terminal of the multi-output shaft motor 10. The control panel 13 is used to control the start and stop of the multi-output shaft motor 10, thereby realizing the height adjustment of the large sampling body 9.

[0088] When the multi-output shaft motor 10 starts, it controls the rotation of gear 12 through gearbox 11. The rotation of gear 12 controls the lifting and lowering of rack 7. The lifting and lowering of rack 7 controls the lifting and lowering of inner support column 6. The lifting and lowering of inner support column 6 controls the lifting and lowering of support plate 8 carrying sampling body 9, thereby realizing the height adjustment of sampling body 9.

[0089] The box, the outer sleeve, the inner support column, the rack, the support plate, the multi-output shaft motor, the gear box and the gear are arranged, so that the height of the sampling body of the atmospheric pollution prevention and treatment sampling device can be adjusted, and the height adjustment can be controlled by the control panel, so that the adjustment is stable and convenient. The universal wheel with brake pads arranged at the bottom of the box can not only facilitate the movement of the device, but also can realize the stable fixing of the device through the brake pads.

[0090] It should be noted that the lifting of the sampling body of the atmospheric pollution prevention and treatment sampling device by a mechanical method, the movement of the device by a moving vehicle and the fixing of the device by brake pads are all within the protection scope of the present application.

[0091] In the technical scheme provided by the embodiment of the present application, the device comprises a box, an outer sleeve, an inner support column, a support plate, a sampling body and a control panel. The box is internally provided with a plurality of outer sleeves, and the inner support column is slidingly installed in each outer sleeve. The top of the inner support column is arranged to pass through the top of the box. The top of the inner support column is provided with a support plate. The sampling body is arranged on the support plate. The control panel is arranged on the box and connected with the sampling body. The control panel is used to control the sampling body to perform air sampling. The outer sleeves slidingly installed with the inner support column are controlled in height by the control panel, so that the height of the sampling body is automatically adjusted. The operation is convenient, the stability is high, and the safety of the sampling device is ensured. The sampling body is simple to disassemble and move.

[0092] It should be noted that, Figure 1 The atmospheric pollution prevention and treatment sampling device is also applicable to Figure 3 or Figure 4 atmospheric pollution prevention and treatment sampling method, which will not be described here.

[0093] The implementation process of the atmospheric pollution prevention and treatment sampling method provided by the embodiment of the present application will be described below by taking the atmospheric pollution prevention and treatment sampling device as an example. It can be understood that the execution subject of the atmospheric pollution prevention and treatment sampling method provided by the embodiment of the present application includes but is not limited to the atmospheric pollution prevention and treatment sampling device.

[0094] Figure 3 The flowchart of the atmospheric pollution prevention and treatment sampling method provided by the embodiment of the present application is shown in Figure 3 The method comprises the following steps.

[0095] Step 101, receiving a sampling signal.

[0096] In the embodiment of the present application, the sampling personnel can input the sampling signal through the display screen of the control panel, so that the control panel receives the sampling signal through the display screen. The sampling signal is a start signal for driving the sampling body to perform air sampling.

[0097] Step 102, in response to the sampling signal, control the sampling body to carry out air sampling.

[0098] Specifically, in response to the sampling signal, the sampling body is driven to start air sampling, and the collected sample air is detected for pollution, to obtain a sampling result.

[0099] Further, the sampling result sent by the sampling body is received through the display screen, and the sampling result is visually displayed, so that the pollution degree of the real-time collected sample is conveniently viewed.

[0100] In the technical scheme provided by the embodiment of the application, the sampling signal is received, in response to the sampling signal, the sampling body is controlled to carry out air sampling, the motor control signal is received, the motor control signal includes a motor starting signal and a device sampling height, according to the motor starting signal, the multi-output shaft motor is controlled to start, the gear rotation is controlled through the gear box, the rack lifting is controlled by the gear rotation, the inner support column lifting is controlled by the rack lifting, the support plate carrying the sampling body is lifted to the device sampling height by the inner support column lifting, the outer sleeve pipe with the inner support column slidingly installed is lifted by the control panel, the height of the sampling body is automatically adjusted, the operation is convenient, the stability is high, and the safety of the sampling device is ensured, the sampling body is simple to disassemble and assemble, and convenient to move.

[0101] Figure 4 As shown in the flowchart of another atmospheric pollution prevention and control sampling method provided by the embodiment of the application, Figure 4 the method comprises the following steps.

[0102] Step 201, receiving a motor control signal.

[0103] In the embodiment of the application, each step is executed by the atmospheric pollution prevention and control sampling device.

[0104] In the embodiment of the application, the sampling personnel can input the motor control signal through the display screen of the control panel, so that the control panel receives the motor control signal through the display screen. The motor control signal includes a motor starting signal and a device sampling height, the motor control signal is a starting signal for starting the multi-output shaft motor, and the device sampling height is the height that the sampling body needs to reach.

[0105] Step 202, according to the motor starting signal, the multi-output shaft motor is controlled to start, the gear rotation is controlled through the gear box, the rack lifting is controlled by the gear rotation, the inner support column lifting is controlled by the rack lifting, and the support plate carrying the sampling body is lifted to the device sampling height by the inner support column lifting.

[0106] In the embodiment of the present application, if the motor control signal includes a motor starting signal and a device sampling height, the multi-output shaft motor is started to drive the gear box to control the gear rotation, the rack lifting is controlled through the gear rotation, the inner support column lifting is controlled through the rack lifting, the support plate bearing sampling body lifting is controlled to the device sampling height by the inner support column lifting, the multi-output shaft motor stops working, the gear no longer continues to rotate, the rack no longer continues to lift, the inner support column no longer continues to lift, and the sampling body stops at the current device sampling height.

[0107] In the embodiment of the present application, if the motor control signal includes a motor starting signal, the sampling personnel controls the multi-output shaft motor to start to drive the gear box to control the gear rotation, the rack lifting is controlled through the gear rotation, the inner support column lifting is controlled through the rack lifting, the support plate bearing sampling body lifting is controlled to the preset height position by the inner support column lifting, the motor stop signal is input through the display screen of the control panel, the multi-output shaft motor stops working, the gear no longer continues to rotate, the rack no longer continues to lift, the inner support column no longer continues to lift, and the sampling body stops at the current height position.

[0108] It is worth noting that the acquisition, storage, use, processing, etc. of data in the technical solutions in the present application comply with relevant provisions of laws and regulations. The user information in the embodiments of the present application is obtained through legal and compliant channels, and the acquisition, storage, use, processing, etc. of the user information are authorized and agreed by the client.

[0109] It is worth noting that the information collected in the present application is information and data authorized by the user or fully authorized by all parties, and the collection, storage, use, processing, transmission, provision, disclosure and application, etc. of the relevant data comply with relevant laws, regulations and standards of countries and regions, necessary security measures are taken, do not violate public order and good customs, and provide corresponding operation entrances for users to choose authorization or refusal.

[0110] It is worth noting that the technical solutions provided by the present application provide corresponding operation entrances for users to choose to agree or refuse the automatic decision result; if the user chooses to refuse, the expert decision process is entered.

[0111] The technical scheme of the atmospheric pollution prevention and treatment sampling method provided by the embodiment of the present application comprises the following steps: receiving a sampling signal; in response to the sampling signal, controlling a sampling body to perform air sampling; receiving a motor control signal, the motor control signal comprising a motor starting signal and a device sampling height; according to the motor starting signal, controlling a multi-output shaft motor to start, controlling a gear to rotate through a gear box, controlling a rack to lift through the gear rotation, controlling an inner support column to lift through the rack lifting, controlling a support plate to lift the sampling body to the device sampling height through the inner support column lifting, and controlling a plurality of outer sleeve tubes, in which the inner support columns are slidingly installed, to lift through a control panel, so as to realize automatic height adjustment of the sampling body, which is convenient to operate, has high stability and ensures the safety of the sampling device; and the sampling body is simple to disassemble and assemble and convenient to move.

[0112] Figure 5 A structural schematic diagram of an atmospheric pollution prevention and treatment sampling device is provided for the embodiment of the present application, the device is used for executing the atmospheric pollution prevention and treatment sampling method, as shown in the figure, the device comprises a receiving unit 21 and a control unit 22. Figure 5

[0113] The receiving unit 21 is used for receiving a sampling signal.

[0114] The control unit 22 is used for responding to the sampling signal and controlling a sampling body to perform air sampling.

[0115] In the embodiment of the present application, the receiving unit 21 is also used for receiving a motor control signal, the motor control signal comprising a motor starting signal and a device sampling height.

[0116] The control unit 22 is also used for according to the motor starting signal, controlling a multi-output shaft motor to start, controlling a gear to rotate through a gear box, controlling a rack to lift through the gear rotation, controlling an inner support column to lift through the rack lifting, and controlling a support plate to lift the sampling body to the device sampling height through the inner support column lifting.

[0117] In the embodiment of the present application, the device comprises a display unit 23.

[0118] The receiving unit 21 is specifically used for receiving the sampling signal and the motor control signal through a display screen; and receiving a sampling result sent by the sampling body through the display screen.

[0119] The display unit 23 is used for visually displaying the sampling result.

[0120] ​The scheme of the embodiment of the present application comprises: receiving a sampling signal; in response to the sampling signal, controlling the sampling body to perform air sampling; receiving a motor control signal, the motor control signal comprising a motor starting signal and a device sampling height; according to the motor starting signal, controlling the multi-output shaft motor to start, controlling the gear to rotate through the gear box, controlling the rack to lift through the gear rotation, controlling the inner support column to lift through the rack lifting, controlling the support plate to carry the sampling body to lift to the device sampling height through the inner support column, and controlling the plurality of outer sleeve tubes slidingly installed with the inner support column to lift through the control panel, so as to realize the automatic height adjustment of the sampling body, which is convenient to operate, has high stability, and guarantees the safety of the sampling device; the sampling body is simple to disassemble and assemble and convenient to move.

[0121] The system, device, module or unit illustrated in the above embodiments can be specifically implemented by a computer chip or entity, or by a product having certain functions. A typical implementation device is a computer device, and specifically, the computer device can be, for example, a personal computer, a laptop computer, a cellular phone, a camera phone, a smart phone, a personal digital assistant, a media player, a navigation device, an email device, a game console, a tablet computer, a wearable device, or a combination of any of these devices.

[0122] The embodiment of the present application provides a computer device, comprising a memory and a processor, the memory is used for storing information comprising program instructions, and the processor is used for controlling the execution of the program instructions, when the program instructions are loaded and executed by the processor, each step of the above-mentioned embodiment of the atmospheric pollution prevention and control sampling method is realized, and specific description can be referred to the above-mentioned embodiment of the atmospheric pollution prevention and control sampling method.

[0123] Reference is made below to Figure 6 which shows a structural schematic diagram of a computer device 600 suitable for being used to realize the embodiments of the present application.

[0124] As shown in Figure 6 , the computer device 600 comprises a central processing unit (CPU) 601, which can perform various appropriate work and processing according to a program stored in a read-only memory (ROM) 602 or a program loaded from a storage portion 608 to a random access memory (RAM) 603. In the RAM 603, various programs and data required for the operation of the computer device 600 are also stored. The CPU 601, the ROM 602, and the RAM 603 are connected to each other through a bus 604. An input / output (I / O) interface 605 is also connected to the bus 604.

[0125] The following components are connected to the I / O interface 605: an input part 606 including a keyboard, a mouse, etc.; an output part 607 including a display such as a cathode ray tube (CRT), a liquid crystal display (LCD), etc., and a speaker, etc.; a storage part 608 including a hard disk, etc.; and a communication part 609 including a network interface card such as a LAN card, a modem, etc. The communication part 609 performs communication processing via a network such as the Internet. A drive 610 is also connected to the I / O interface 605 as necessary. A removable medium 611 such as a magnetic disk, an optical disk, a magneto-optical disk, a semiconductor memory, etc. is attached to the drive 610 as necessary, so that a computer program read out therefrom is installed in the storage part 608 as necessary.

[0126] In particular, the processes described above with reference to the flowcharts can be implemented as a computer software program according to embodiments of the present application. For example, embodiments of the present application include a computer program product comprising a computer program tangibly embodied on a machine-readable medium, the computer program comprising program code for executing the methods illustrated by the flowcharts. In such embodiments, the computer program can be downloaded and installed from a network via the communication part 609, and / or installed from the removable medium 611.

[0127] Computer readable media includes permanent and non-permanent, removable and non-removable media implemented in any method or technology for storage of information. The information can be computer readable instructions, data structures, program modules or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read only memory (ROM), electrically erasable programmable read only memory (EEPROM), flash memory or other memory technology, compact disc read only memory (CD-ROM), digital versatile disc (DVD) or other optical storage, magnetic cassette, magnetic tape disk storage or other magnetic storage devices, or any other non-transmission medium that can be used to store information accessible to a computing device. According to the definition herein, computer readable media does not include transitory media such as modulated data signals and carriers.

[0128] For the convenience of description, the above apparatus is described in various units by function. Of course, the functions of the units can be implemented in the same or more software and / or hardware when implementing the present application.

[0129] The computer program instructions can also be loaded onto a computer or other programmable data processing apparatus to cause a series of operational steps to be performed on the computer or other programmable apparatus to produce a computer-implemented process such that the instructions which execute on the computer or other programmable apparatus provide steps for implementing the functions specified in the flowchart block or blocks. Figure 1 one or more flow or blocks. Figure 1 one or more flow or blocks.

[0130] These computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing apparatus to function in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture including instructions which implement the function specified in the flowchart block or blocks. Figure 1 one or more flow or blocks. Figure 1 one or more flow or blocks.

[0131] The computer program instructions can also be loaded onto a computer or other programmable data processing apparatus to cause a series of operational steps to be performed on the computer or other programmable apparatus to produce a computer-implemented process such that the instructions which execute on the computer or other programmable apparatus provide steps for implementing the functions specified in the flowchart block or blocks. Figure 1 one or more flow or blocks. Figure 1 one or more flow or blocks.

[0132] It should also be noted that the terms "comprising", "comprises", "including", "includes" or any other variation thereof are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises a... " does not, without more constraints, exclude the existence of additional identical elements in the process, method, article, or apparatus that comprises the recited element.

[0133] The acquisition, storage, use, processing and the like of data in the technical solutions of the present application comply with the relevant provisions of national laws and regulations.

[0134] It should be noted that in the embodiments of the present application, some software, components, models and other prior art solutions can be mentioned, which should be considered as exemplary, and the purpose is only to illustrate the feasibility of the implementation of the technical solutions of the present application, but does not mean that the applicant has or will necessarily use the solutions.

[0135] Those skilled in the art should understand that the embodiments of the present application can be provided as a method, a system or a computer program product. Therefore, the present application can take the form of an entirely hardware embodiment, an entirely software embodiment or an embodiment combining software and hardware aspects. Moreover, the present application can take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0136] The present application can be described in the general context of computer-executable instructions, such as program modules, being executed by a computer. Generally, program modules include routines, programs, objects, components, data structures, etc., that perform particular tasks or implement particular abstract data types. The present application can also be practiced in distributed computing environments where tasks are performed by remote processing devices that are connected through a communication network. In a distributed computing environment, program modules can be located in both local and remote computer storage media including storage devices.

[0137] Each of the embodiments in the specification is described in a progressive manner, and the same or similar parts between each embodiment can be referred to each other, and each embodiment focuses on the difference from other embodiments. In particular, for the system embodiment, since it is basically similar to the method embodiment, the description is relatively simple, and the relevant parts can be referred to the part of the method embodiment.

[0138] The above only describes the embodiments of the present application and does not limit the present application. Those skilled in the art can make various modifications and changes to the present application. Any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application shall be included in the scope of claims of the present application.

Claims

1. An atmospheric pollution prevention sampling device, characterized in that, The device comprises a box, an outer sleeve, an inner support column, a support plate, a sampling body and a control panel; The box is internally provided with a plurality of outer sleeves, and each outer sleeve is internally slidably provided with the inner support column; The top of the inner support column is arranged to pass through the top of the box; The top of the inner support column is provided with the support plate; The sampling body is arranged on the support plate; The control panel is arranged on the box, and the control panel is connected with the sampling body; The control panel is used to control the sampling body to perform air sampling.

2. The atmospheric pollution prevention sampling device according to claim 1, characterized in that, The device further comprises a plurality of output shaft motors and a plurality of gear structures, the number of the gear structures corresponding to the number of the output shafts of the plurality of output shaft motors; The plurality of output shaft motors are arranged at the top of the box; The plurality of output shafts of the plurality of output shaft motors are respectively connected with one gear structure. 3.The atmospheric pollution prevention sampling device according to claim 2, characterized in that, The gear structure comprises a gear box, a gear and a rack; The plurality of output shafts of the plurality of output shaft motors are respectively connected with one gear box; The output shaft of the gear box is connected with the gear; The rack is arranged on the inner support column; The side wall of the outer sleeve is provided with a through hole, and the position of the through hole corresponds to the gear, so that the gear passes through the through hole and is engaged with the rack.

4. The atmospheric pollution prevention sampling device according to claim 3, characterized in that, The control panel is connected with the plurality of output shaft motors; The control panel is used to control the start and stop of the plurality of output shaft motors; When the plurality of output shaft motors are started, the gear is controlled to rotate through the gear box, the rack is controlled to rise and fall through the rotation of the gear, the inner support column is controlled to rise and fall through the rise and fall of the rack, and the support plate is controlled to carry the sampling body to rise and fall through the rise and fall of the inner support column.

5. An atmospheric pollution prevention sampling method, characterized in that, The method is applied to the atmospheric pollution prevention and control sampling device of any one of claims 1-4, and the method comprises: receiving a sampling signal; in response to the sampling signal, controlling the sampling body to perform air sampling. 6.The method according to claim 5, wherein, The method further comprises: receiving a motor control signal, the motor control signal comprising a motor start signal and a device sampling height; controlling the plurality of output shaft motors to start according to the motor start signal, controlling the gear to rotate through the gear box, controlling the rack to rise and fall through the rotation of the gear, controlling the inner support column to rise and fall through the rise and fall of the rack, and controlling the support plate to carry the sampling body to rise and fall to the device sampling height.

7. A control panel characterized by, The control panel comprises: a receiving unit for receiving a sampling signal; a control unit for controlling the sampling body to perform air sampling in response to the sampling signal.

8. A computer readable medium having stored thereon a computer program, characterized in that, The program is executed by the processor to realize the atmospheric pollution prevention and control sampling method of claim 5 or 6.

9. A computer device comprising a memory for storing information including program instructions, and a processor for controlling execution of the program instructions, characterized in that, The program instructions are loaded and executed by the processor to realize the atmospheric pollution prevention and control sampling method of claim 5 or 6.

10. A computer program product comprising computer programs / instructions, characterized in that, The computer program / instructions are executed by the processor to realize the atmospheric pollution prevention and control sampling method of claim 5 or 6.