Internal dust detection and processing method and device of electronic products and computer equipment

Through electrostatic dust removal technology combined with dust distribution table and temperature judgment, it automatically detects and processes dust inside electronic products, solving the problem of difficulty in cleaning up the dust inside electronic products and achieving efficient and safe dust removal effect.

CN116007558BActive Publication Date: 2025-08-26SHENZHEN CPT PRECISION TECH CO LTD
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Patent Information

Application Number
CN202211744080.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-30
Publication Date
2025-08-26
Estimated Expiration
2042-12-30

AI Technical Summary

Technical Problem

The internal dust of electronic products is difficult to detect and clean, resulting in increased noise, increased short circuit risk, and may even burn components. Traditional manual dust removal methods are not applicable.

Method used

Through electrostatic dust removal technology, combined with dust distribution table, dust grade calculation and temperature judgment, the dust inside electronic products is automatically detected and processed, and the dust removal method is adjusted according to temperature and dust concentration using atomized corona discharge mode and different discharge electrode forms.

Benefits of technology

It can effectively clean the dust inside electronic products without manpower, improve dust removal efficiency, reduce noise, reduce short circuit risk, and protect electronic products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of electronic product dust processing, and discloses a method, device and computer equipment for detecting and processing internal dust of electronic products. The method obtains the internal dust information of the target electronic product, obtains the corresponding dust level based on the internal dust information, and judges whether the dust level meets the preset level. If the dust level meets the preset level, it means that the internal dust of the current target electronic product needs to be cleaned, obtains the operating temperature of the target electronic product, and judges whether the operating temperature is within the preset range. If it is within the preset range, the internal dust of the target electronic product is processed based on electrostatic dust removal technology, thereby not relying on manpower and effectively improving the dust removal efficiency of electronic products.
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Description

Technical Field

[0001] The present application relates to the technical field of electronic product dust treatment, and in particular to a method, device and computer equipment for detecting and treating internal dust of electronic products. Background Art

[0002] With the continuous development of computer technology, electronic products are being applied to various occasions. With the iteration of technology, electronic products are gradually developing towards refinement and miniaturization. However, no matter how well-made the electronic products are, the key components, speaker components, charging port components, etc. are prone to dust. If they are not cleaned regularly, dust can easily enter the interior of the electronic products. The dust and particles in the atmosphere have rough surfaces and are highly hygroscopic. They fall on metal surfaces and, due to their hygroscopicity, they can easily accelerate the corrosion of the metal. In addition, because dust contains a large amount of water-soluble salts, it has good conductivity when the humidity increases. Therefore, if the dust inside the electronic products is not handled in time, at least the noise of the electronic products will increase, and at worst, it will cause internal short circuits, arcing, and even burn out components, resulting in major accidents. However, since the dust on electronic products is difficult to detect, traditional manual dust removal is difficult to apply to electronic products, which brings inconvenience to the dust removal of electronic products. Summary of the Invention

[0003] The present application provides a method for detecting and processing internal dust of an electronic product, aiming to solve the technical problem in the prior art that dust inside electronic products is difficult to clean.

[0004] This application provides a method for detecting and processing dust inside an electronic product, comprising:

[0005] Obtaining internal dust information of a target electronic product within a preset usage period;

[0006] obtaining a dust level according to the internal dust information;

[0007] Determining whether the dust level meets a preset level;

[0008] If the dust level meets the preset level, obtaining the operating temperature of the target electronic product;

[0009] Determining whether the operating temperature is within a preset temperature range;

[0010] If the operating temperature is within a preset temperature range, the internal dust of the target electronic product is processed based on electrostatic dust removal technology.

[0011] Preferably, the step of obtaining internal dust information of the target electronic product within a preset usage time period includes:

[0012] Pre-creating internal dust distribution tables for different types of electronic products, wherein the internal dust distribution tables include product type, dust distribution location information, electronic product usage time, and electronic product usage location;

[0013] Setting an electrostatic dust removal component inside the electronic product according to the dust distribution table inside the electronic product, and matching the position information of the electrostatic dust removal component with the dust distribution position information to obtain matching information;

[0014] Acquire product information of a target electronic product, and determine whether the target electronic product is within a range of a dust distribution table of electronic products based on the product information;

[0015] If the target electronic product is within the range of the electronic product internal dust distribution table, the product type, dust distribution location information, electronic product usage time, electronic product usage location, and matching information corresponding to the target electronic product are obtained in the electronic product internal dust distribution table, and the product type, dust distribution location information, electronic product usage time, electronic product usage location, and matching information are used as the internal dust information of the target electronic product.

[0016] Preferably, the step of obtaining the dust level according to the internal dust information includes:

[0017] Obtain the dust area and thickness of the target electronic product;

[0018] Calculating the dust volume according to the dust area and thickness;

[0019] Obtain the particle size of any dust particle through the dust detection sensor;

[0020] The dust capacity is calculated according to the dust volume and the particle size, wherein the calculation formula is:

[0021] P = V / L;

[0022] Where P represents the dust capacity, V represents the dust volume, and L represents the particle size of any dust particle;

[0023] A corresponding dust level is obtained from a preset dust level table according to the dust capacity.

[0024] Preferably, the step of obtaining the operating temperature of the target electronic product includes:

[0025] Obtain noise information of target electronic products in operation;

[0026] Obtain the noise position of the target electronic product based on the noise information;

[0027] Get the preset noise level table;

[0028] Obtaining the noise level corresponding to the noise information in the preset noise level table;

[0029] Determine whether there is dust accumulation at the noise location based on the noise level;

[0030] If dust accumulation occurs at the noise location, the dust at the noise location is processed using electrostatic dust removal technology.

[0031] Preferably, if the operating temperature is within a preset temperature range, the step of treating the internal dust of the target electronic product based on electrostatic dust removal technology includes:

[0032] Obtaining a temperature level corresponding to the operating temperature;

[0033] Electrostatic dust removal components process internal dust of target electronic products corresponding to different temperature levels of operating temperature based on the atomized corona discharge mode.

[0034] Preferably, the step of processing the internal dust of the target electronic products corresponding to the operating temperatures of different temperature levels by the electrostatic dust removal component based on the atomized corona discharge mode includes:

[0035] Obtaining a temperature level corresponding to the operating temperature, wherein the temperature level includes temperature level 1 and temperature level 2;

[0036] When the temperature level is level 1, dust inside the target electronic product is processed based on a round wire discharge electrode form;

[0037] When the temperature level is temperature level 2, dust inside the target electronic product is processed based on a sawtooth line discharge electrode form.

[0038] Preferably, before the step of the electrostatic dust removal component treating dust inside target electronic products corresponding to operating temperatures of different temperature levels based on the atomized corona discharge mode, the step further includes:

[0039] Detect the concentration value of dust-laden gas through the dust detection sensor;

[0040] Determining whether the concentration value exceeds a preset concentration value;

[0041] If the concentration exceeds the preset value, the internal dust of the target electronic product will be processed based on the thorn wire discharge electrode form.

[0042] The present application also provides a device for detecting and processing internal dust of an electronic product, comprising:

[0043] A first acquisition module is used to acquire internal dust information of a target electronic product within a preset usage period;

[0044] a second acquisition module, configured to acquire a dust level according to the internal dust information;

[0045] A first judging module, configured to judge whether the dust level meets a preset level;

[0046] a third acquisition module, configured to acquire an operating temperature of a target electronic product if the dust level meets a preset level;

[0047] A second judgment module is used to judge whether the operating temperature is within a preset temperature range;

[0048] The dust processing module is used to process the internal dust of the target electronic product based on the electrostatic dust removal technology if the operating temperature is within a preset temperature range.

[0049] The present application also provides a computer device, comprising a memory and a processor, wherein the memory stores a computer program, and the processor implements the steps of the above method when executing the computer program.

[0050] The present application also provides a computer-readable storage medium having a computer program stored thereon, which implements the steps of the above method when executed by a processor.

[0051] The beneficial effects of the present application are: obtaining the internal dust information of the target electronic product, then obtaining the corresponding dust level based on the internal dust information, and judging whether the dust level meets the preset level. If the dust level meets the preset level, it means that the internal dust of the current target electronic product needs to be cleaned, obtaining the operating temperature of the target electronic product, and judging whether the operating temperature is within the preset range. If it is within the preset range, the internal dust of the target electronic product is processed based on electrostatic dust removal technology, thereby not relying on manpower and being able to effectively improve the dust removal efficiency of electronic products. BRIEF DESCRIPTION OF THE DRAWINGS

[0052] Figure 1 This is a schematic diagram of a method flow chart according to an embodiment of the present application.

[0053] Figure 2 Schematic diagram of the device structure of an embodiment of the present application.

[0054] Figure 3 This is a schematic diagram of the internal structure of a computer device according to an embodiment of the present application.

[0055] The realization of the objectives, functional features and advantages of this application will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0056] It should be understood that the specific embodiments described herein are only used to explain the present application and are not intended to limit the present application.

[0057] like Figure 1-3 As shown, the present application provides a method for detecting and processing internal dust of an electronic product, comprising:

[0058] S1. Obtaining internal dust information of a target electronic product within a preset usage period;

[0059] S2. Obtaining a dust level according to the internal dust information;

[0060] S3, determining whether the dust level meets a preset level;

[0061] S4. If the dust level meets the preset level, obtain the operating temperature of the target electronic product;

[0062] S5, determining whether the operating temperature is within a preset temperature range;

[0063] S6. If the operating temperature is within a preset temperature range, dust inside the target electronic product is processed based on electrostatic dust removal technology.

[0064] As described in the above steps S1-S6, first obtain the internal dust information of the target electronic product. Taking the main case of a desktop computer as an example, the preset usage time period can be half a year or a year of use of the main case. Then, obtain the corresponding dust level based on the internal dust information, and judge whether the dust level meets the preset level. If the dust level meets the preset level, it means that the internal dust of the current target electronic product needs to be cleaned. As the temperature of the target electronic product increases, the current density at the same voltage increases. Therefore, when the temperature rises, it will cause the gas molecules to move violently. Therefore, in a high temperature environment, processing the dust will lead to low efficiency and difficult to effectively remove. Therefore, it is necessary It is necessary to obtain the operating temperature of the target electronic product and determine whether the operating temperature is within the preset range. If it is within the preset range, the internal dust of the target electronic product is processed based on the electrostatic dust removal technology. The dust removal principle of the electrostatic dust removal technology is to generate an electrode reaction through the electrostatic field, causing corona discharge, releasing free electrons and ions, so that the dust particles carry corresponding electrons, and are eventually collected by the integrated board and removed through vibration. The electrostatic dust removal component can be fixedly installed on the electronic product or installed in a detachable manner. There is no limit to the method. In this way, by first detecting the dust on the electronic product and then removing it, it does not rely on manpower and can effectively improve the dust removal efficiency of the electronic product.

[0065] In one embodiment, the step S1 of acquiring internal dust information of the target electronic product within a preset usage period includes:

[0066] S11, pre-creating an internal dust distribution table for different types of electronic products, wherein the internal dust distribution table includes product type, dust distribution location information, electronic product usage time, and electronic product usage location;

[0067] S12, setting an electrostatic dust removal component inside the electronic product according to the dust distribution table inside the electronic product, and matching the position information of the electrostatic dust removal component with the dust distribution position information to obtain matching information;

[0068] S13, obtaining product information of a target electronic product, and determining whether the target electronic product is within a range of a dust distribution table of electronic products based on the product information;

[0069] S14. If the target electronic product is within the range of the electronic product internal dust distribution table, obtain the product type, dust distribution location information, electronic product usage time, electronic product usage location, and matching information corresponding to the target electronic product in the electronic product internal dust distribution table, and use the product type, dust distribution location information, electronic product usage time, electronic product usage location, and matching information as the internal dust information of the target electronic product.

[0070] As described in steps S11-S14 above, in order to obtain the internal dust information of the target electronic product more accurately, the present application first creates an internal dust distribution table of different types of electronic products. When creating the internal dust distribution table of electronic products, the models of various types of electronic products with different service years are first collected, such as different models of computer monitors, main chassis, air conditioners, etc., and the usage time, usage location, and dust distribution location information of each different electronic product are recorded in detail. The dust level is then set according to the recorded information, so that the target electronic product can be referenced and compared. After the internal dust distribution table of the electronic product is formed, during the subsequent production of the electronic product, an electrostatic dust removal component can be set at the corresponding location according to the internal dust distribution location information. Therefore, when the subsequent target electronic product needs to be dust-treated, it is not necessary to disassemble the target electronic product. The product information of the target electronic product can be obtained, and it can be determined whether it is in the internal dust distribution table of the electronic product based on the product information. If it is, the corresponding internal dust information can be searched, so that the internal dust information of the target electronic product can be obtained more accurately without disassembly, which facilitates the subsequent dust removal treatment based on the internal dust information.

[0071] In one embodiment, the step S2 of obtaining the dust level according to the internal dust information includes:

[0072] S21. Obtain the dust area and thickness of the target electronic product;

[0073] S22, calculating the dust volume according to the dust area and thickness;

[0074] S23, obtaining the particle size of any dust particle through a dust detection sensor;

[0075] S24. Calculate the dust capacity according to the dust volume and the particle size, wherein the calculation formula is:

[0076] P = V / L;

[0077] Where P represents the dust capacity, V represents the dust volume, and L represents the particle size of any dust particle;

[0078] S25. Obtain a corresponding dust level from a preset dust level table according to the dust capacity.

[0079] As described in the above steps S21-S25, when obtaining the dust level, in addition to being able to directly obtain it in the dust distribution table inside the electronic product, if the target electronic product is not in the dust table inside the electronic product, the dust area and thickness of the target electronic product can be photographed by a camera, and the dust volume can be calculated based on the area and thickness. The dust detection sensor can then be used to obtain the particle size of any dust particle, and finally the dust capacity can be calculated based on the dust volume and the particle size. In this way, the corresponding dust level can be obtained in the preset dust table through the dust capacity.

[0080] In one embodiment, the step S4 of obtaining the operating temperature of the target electronic product includes:

[0081] S41, obtaining noise information of the target electronic product in an operating state;

[0082] S42, obtaining a noise position of the target electronic product according to the noise information;

[0083] S43, obtaining a preset noise level table;

[0084] S44, obtaining the noise level corresponding to the noise information in the preset noise level table;

[0085] S45, judging whether there is dust accumulation at the noise location according to the noise level;

[0086] S46. If dust accumulation occurs at the noise location, the dust at the noise location is processed using electrostatic dust removal technology.

[0087] As described in the above steps S41-S46, when there is too much dust inside the target electronic product, it may cause the target electronic product to generate noise. Therefore, noise information can be obtained to obtain the noise position of the target electronic product. For example, an oscilloscope can be used to capture the waveform corresponding to the noise information of each circuit of the electronic product, and the noise position corresponding to the noise information can be obtained based on the waveform comparison. The noise level is obtained according to the noise information, so that the noise level can be used to determine whether there is dust accumulation at the noise position. If so, the dust at the noise position can be processed based on electrostatic dust removal technology. This can more accurately determine the position of the dust, so that the internal dust of the electronic product can be cleaned more thoroughly.

[0088] In one embodiment, if the operating temperature is within a preset temperature range, step S6 of treating the internal dust of the target electronic product based on electrostatic dust removal technology includes:

[0089] S61, obtaining a temperature level corresponding to the operating temperature;

[0090] S62. The electrostatic dust removal component processes the internal dust of the target electronic products corresponding to the operating temperatures of different temperature levels based on the atomized corona discharge mode.

[0091] As described in the above steps S61 and S62, when processing internal dust, the internal dust can be processed based on the atomization corona discharge mode according to different temperature levels. Atomization is under the action of the electric field force. The electrostatic force on the charged water surface is perpendicular to the water surface and outward. As the electric field strength increases, the electrostatic force gradually increases and the water surface stability gradually decreases, thereby forming a Taylor cone. Since the atomizing corona discharge technology can enhance the corresponding electric field force, it increases the charge density of the water surface, increases the polarization degree of water molecules, and thereby weakens the surface tension of the water. When the electric field intensity reaches a certain intensity, the fine water filaments gradually increase, thereby producing an atomization phenomenon, and are very easy to collide and adsorb with particulate matter, condense and settle, and ultimately achieve dust reduction and removal. Therefore, compared with general electrostatic dust removal technology, the present application uses an atomizing corona discharge mode to process the internal dust of electronic products, which can effectively improve the capture and removal efficiency of oily or water-containing dust and fine particles on the basis of electrostatic dust removal technology. For example, when the target electronic product is a range hood, or the humidity in the use scenario of the electronic product is high, it can improve the dust removal effect of such electronic products.

[0092] In one embodiment, the step S62 of the electrostatic dust removal component processing dust inside target electronic products corresponding to operating temperatures of different temperature levels based on the atomized corona discharge mode includes:

[0093] S621. Obtain a temperature level corresponding to the operating temperature, where the temperature levels include temperature level 1 and temperature level 2.

[0094] S622: When the temperature level is level 1, dust inside the target electronic product is processed based on a circular wire discharge electrode;

[0095] S623: When the temperature level is level 2, dust inside the target electronic product is processed based on a sawtooth line discharge electrode.

[0096] As described in the above steps S621-S623, in addition to temperature, the factors that affect the performance of electrostatic dust removal are also affected by the discharge electrode form. Different discharge electrode forms bring different dust removal effects. Research has found that when the temperature is too high, the discharge current increases and the breakdown voltage decreases. Therefore, when the temperature level is temperature level one, the internal dust of the target electronic product can be processed based on the circular wire discharge electrode form. At normal temperature, that is, when the temperature level is temperature level two, the internal dust of the target electronic product can be processed based on the sawtooth wire discharge electrode form. This can improve the performance of electrostatic dust removal.

[0097] In one embodiment, before step S62 of the electrostatic dust removal component processing dust inside target electronic products corresponding to operating temperatures of different temperature levels based on the atomized corona discharge mode, the method further includes:

[0098] S624, detecting the concentration of dust-laden gas by a dust detection sensor;

[0099] S625, determining whether the concentration value exceeds a preset concentration value;

[0100] S626: If the concentration exceeds the preset value, the dust inside the target electronic product is processed based on the thorn wire discharge electrode form.

[0101] As described in the above steps S624-S626, in addition to temperature, different concentration values ​​of dust-laden gas and the use of different discharge electrode forms will also affect the dust removal effect. Therefore, when the concentration value of the dust-laden gas exceeds the preset concentration value, it is defined as a high concentration. At this time, the internal dust of the target electronic product can be processed based on the thorn line discharge electrode form to achieve the best dust removal effect.

[0102] The present application also provides a device for detecting and processing internal dust of an electronic product, comprising:

[0103] The first acquisition module 1 is used to obtain internal dust information of the target electronic product within a preset usage period;

[0104] A second acquisition module 2 is used to obtain the dust level according to the internal dust information;

[0105] A first judging module 3 is used to judge whether the dust level meets a preset level;

[0106] A third acquisition module 4 is configured to acquire the operating temperature of the target electronic product if the dust level meets a preset level;

[0107] The second judgment module 5 is used to judge whether the operating temperature is within a preset temperature range;

[0108] The dust processing module 6 is used to process the internal dust of the target electronic product based on the electrostatic dust removal technology if the operating temperature is within a preset temperature range.

[0109] In one embodiment, the first acquisition module 1 includes:

[0110] A creating unit, configured to pre-create internal dust distribution tables for different types of electronic products, wherein the internal dust distribution tables include product type, dust distribution location information, electronic product usage time, and electronic product usage location;

[0111] a setting unit, configured to set an electrostatic dust removal component inside the electronic product according to the dust distribution table inside the electronic product, and match the position information of the electrostatic dust removal component with the dust distribution position information to obtain matching information;

[0112] a first acquiring unit, configured to acquire product information of a target electronic product and determine, based on the product information, whether the target electronic product is within a range of a dust distribution table of electronic products;

[0113] The second acquisition unit obtains the product type, dust distribution location information, electronic product usage time, electronic product usage location, and matching information corresponding to the target electronic product in the electronic product internal dust distribution table if the target electronic product is within the range of the electronic product internal dust distribution table, and uses the product type, dust distribution location information, electronic product usage time, electronic product usage location, and matching information as the internal dust information of the target electronic product.

[0114] In one embodiment, the second acquisition module 2 includes:

[0115] A third acquisition unit is used to acquire the dust area and thickness of the target electronic product;

[0116] a first calculation unit, configured to calculate the dust volume according to the dust area and thickness;

[0117] a fourth obtaining unit, configured to obtain a particle size of any dust particle through a dust detection sensor;

[0118] The second calculation unit is configured to calculate the dust capacity according to the dust volume and the particle size, wherein the calculation formula is:

[0119] P = V / L;

[0120] Where P represents the dust capacity, V represents the dust volume, and L represents the particle size of any dust particle;

[0121] A fifth obtaining unit is configured to obtain a corresponding dust level from a preset dust level table according to the dust capacity.

[0122] In one embodiment, the internal dust detection and processing device of the electronic product further includes:

[0123] A fourth acquisition module is used to obtain noise information of the target electronic product in an operating state;

[0124] A fifth acquisition module, configured to acquire a noise position of a target electronic product based on the noise information;

[0125] A sixth acquisition module, configured to acquire a preset noise level table;

[0126] A seventh acquisition module, configured to acquire a noise level corresponding to the noise information from the preset noise level table;

[0127] A judgment module, used to judge whether there is dust accumulation at the noise location according to the noise level;

[0128] The processing module is used to process the dust at the noise location based on electrostatic dust removal technology if dust accumulation occurs at the noise location.

[0129] In one embodiment, the dust processing module 6 includes:

[0130] a fifth acquiring unit, configured to acquire a temperature level corresponding to the operating temperature;

[0131] The dust treatment unit is used for electrostatic dust removal components to treat the internal dust of target electronic products corresponding to different temperature levels of operating temperatures based on the atomization corona discharge mode.

[0132] In one embodiment, the dust processing unit comprises:

[0133] A first acquiring subunit is configured to acquire a temperature level corresponding to the operating temperature, wherein the temperature levels include temperature level 1 and temperature level 2;

[0134] a first dust processing subunit, configured to process dust inside the target electronic product based on a round wire discharge electrode when the temperature level is level one;

[0135] The second dust processing subunit is used to process the internal dust of the target electronic product based on the sawtooth line discharge electrode form when the temperature level is temperature level 2.

[0136] In one embodiment, the dust processing unit further includes:

[0137] A detection subunit, used for detecting the concentration value of dust-laden gas through a dust detection sensor;

[0138] A judging subunit, configured to judge whether the concentration value exceeds a preset concentration value;

[0139] The third dust processing subunit is used to process the dust inside the target electronic product based on the thorn line discharge electrode form if the concentration exceeds a preset value.

[0140] The above modules, units and sub-units are used to execute the corresponding steps in the above internal dust detection and processing method of the electronic product. The specific implementation method thereof is described in the above method embodiment and will not be repeated here.

[0141] like Figure 3 As shown, the present application also provides a computer device, which can be a server, and its internal structure can be as shown in FIG. Figure 3 As shown. The computer device includes a processor, a memory, a network interface and a database connected via a system bus. The processor of the computer design is used to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, a computer program and a database. The internal memory provides an environment for the operation of the operating system and the computer program in the non-volatile storage medium. The database of the computer device is used to store all data required for the process of the internal dust detection and processing method of the electronic product. The network interface of the computer device is used to communicate with an external terminal via a network connection. When the computer program is executed by the processor, the internal dust detection and processing method of the electronic product is implemented.

[0142] Those skilled in the art will understand that Figure 3 The structure shown in is merely a block diagram of a portion of the structure related to the present application solution and does not constitute a limitation on the computer device to which the present application solution is applied.

[0143] An embodiment of the present application further provides a computer-readable storage medium having a computer program stored thereon. When the computer program is executed by a processor, any of the above-mentioned internal dust detection and processing methods for electronic products is implemented.

[0144] Those skilled in the art will understand that all or part of the processes in the above-mentioned embodiment methods can be implemented by instructing the relevant hardware through a computer program, and the computer program can be stored in a non-volatile computer-readable storage medium. When the computer program is executed, it can include the processes of the embodiments of the above-mentioned methods. Among them, any reference to memory, storage, database or other media provided in this application and used in the embodiments may include non-volatile and / or volatile memory. Non-volatile memory may include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM) or flash memory. Volatile memory may include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM is available in many forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (SSRSDRAM), enhanced SDRAM (ESDRAM), synchronous link DRAM (SLDRAM), RAMbus direct RAM (RDRAM), direct RAMbus dynamic RAM (DRDRAM), and RAMbus dynamic RAM (RDRAM).

[0145] It should be noted that, in this document, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, apparatus, article, or method comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, apparatus, article, or method. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, apparatus, article, or method comprising the element.

[0146] The above description is only a preferred embodiment of the present application and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the present application specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.

Claims

1. A method for detecting and processing dust inside an electronic product, characterized in that: include: Obtaining internal dust information of a target electronic product within a preset usage period; obtaining a dust level according to the internal dust information; Determining whether the dust level meets a preset level; If the dust level meets the preset level, obtaining the operating temperature of the target electronic product; Determining whether the operating temperature is within a preset temperature range; If the operating temperature is within a preset temperature range, treating the internal dust of the target electronic product based on electrostatic dust removal technology; The step of obtaining internal dust information of the target electronic product within a preset usage time period includes: Pre-creating internal dust distribution tables for different types of electronic products, wherein the internal dust distribution tables include product type, dust distribution location information, electronic product usage time, and electronic product usage location; Setting an electrostatic dust removal component inside the electronic product according to the dust distribution table inside the electronic product, and matching the position information of the electrostatic dust removal component with the dust distribution position information to obtain matching information; Acquire product information of a target electronic product, and determine whether the target electronic product is within a range of a dust distribution table of electronic products based on the product information; If the target electronic product is within the range of the electronic product internal dust distribution table, obtaining the product type, dust distribution location information, electronic product usage time, electronic product usage location, and matching information corresponding to the target electronic product in the electronic product internal dust distribution table, and using the product type, dust distribution location information, electronic product usage time, electronic product usage location, and matching information as the internal dust information of the target electronic product; The step of obtaining the dust level according to the internal dust information includes: Obtain the dust area and thickness of the target electronic product; Calculating the dust volume according to the dust area and thickness; Obtain the particle size of any dust particle through the dust detection sensor; The dust capacity is calculated according to the dust volume and the particle size, wherein the calculation formula is: P = V / L; Where P represents the dust capacity, V represents the dust volume, and L represents the particle size of any dust particle; Obtaining a corresponding dust level from a preset dust level table according to the dust capacity; The step of obtaining the operating temperature of the target electronic product includes: Obtain noise information of target electronic products in operation; Obtain the noise position of the target electronic product based on the noise information; Get the preset noise level table; Obtaining the noise level corresponding to the noise information in the preset noise level table; Determine whether there is dust accumulation at the noise location based on the noise level; If dust accumulation occurs at the noise location, the dust at the noise location is processed using electrostatic dust removal technology.

2. The method for detecting and processing internal dust of an electronic product according to claim 1, wherein: If the operating temperature is within a preset temperature range, the step of treating the internal dust of the target electronic product based on electrostatic dust removal technology includes: Obtaining a temperature level corresponding to the operating temperature; Electrostatic dust removal components process internal dust of target electronic products corresponding to different temperature levels of operating temperature based on the atomized corona discharge mode.

3. The method for detecting and processing internal dust of an electronic product according to claim 2, wherein: The electrostatic dust removal component processes dust inside target electronic products corresponding to operating temperatures of different temperature levels based on an atomized corona discharge mode, comprising: Obtaining a temperature level corresponding to the operating temperature, wherein the temperature level includes temperature level 1 and temperature level 2; When the temperature level is level 1, dust inside the target electronic product is processed based on a round wire discharge electrode form; When the temperature level is temperature level 2, dust inside the target electronic product is processed based on a sawtooth line discharge electrode form.

4. The method for detecting and processing internal dust of an electronic product according to claim 2, wherein: Before the step of the electrostatic dust removal component treating dust inside target electronic products corresponding to operating temperatures of different temperature levels based on the atomized corona discharge mode, the method further includes: Detect the concentration value of dust-laden gas through the dust detection sensor; Determining whether the concentration value exceeds a preset concentration value; If the concentration exceeds the preset value, the internal dust of the target electronic product will be processed based on the thorn wire discharge electrode form.

5. A device for detecting and processing dust inside an electronic product, characterized in that: include: A first acquisition module is used to acquire internal dust information of a target electronic product within a preset usage period; a second acquisition module, configured to acquire a dust level according to the internal dust information; A first judging module, configured to judge whether the dust level meets a preset level; a third acquisition module, configured to acquire an operating temperature of a target electronic product if the dust level meets a preset level; A second judgment module is used to judge whether the operating temperature is within a preset temperature range; a dust processing module, configured to process dust inside the target electronic product based on electrostatic dust removal technology if the operating temperature is within a preset temperature range; The first acquisition module includes: A creating unit, configured to pre-create internal dust distribution tables for different types of electronic products, wherein the internal dust distribution tables include product type, dust distribution location information, electronic product usage time, and electronic product usage location; a setting unit, configured to set an electrostatic dust removal component inside the electronic product according to the dust distribution table inside the electronic product, and match the position information of the electrostatic dust removal component with the dust distribution position information to obtain matching information; a first acquiring unit, configured to acquire product information of a target electronic product and determine, based on the product information, whether the target electronic product is within a range of a dust distribution table of electronic products; a second obtaining unit, configured to obtain, if the target electronic product is within the range of the electronic product internal dust distribution table, the product type, dust distribution location information, electronic product usage time, electronic product usage location, and matching information corresponding to the target electronic product from the electronic product internal dust distribution table, and use the product type, dust distribution location information, electronic product usage time, electronic product usage location, and matching information as the internal dust information of the target electronic product; The second acquisition module includes: A third acquisition unit is used to acquire the dust area and thickness of the target electronic product; a first calculation unit, configured to calculate the dust volume according to the dust area and thickness; a fourth obtaining unit, configured to obtain a particle size of any dust particle through a dust detection sensor; The second calculation unit is configured to calculate the dust capacity according to the dust volume and the particle size, wherein the calculation formula is: P = V / L; Where P represents the dust capacity, V represents the dust volume, and L represents the particle size of any dust particle; a fifth obtaining unit, configured to obtain a corresponding dust level from a preset dust level table according to the dust capacity; Also includes: A noise information acquisition module is used to obtain noise information of the target electronic product in operation; A noise location acquisition module is used to obtain the noise location of the target electronic product based on the noise information; A fourth acquisition module is used to obtain a preset noise level table; A fifth acquisition module, configured to acquire a noise level corresponding to the noise information from the preset noise level table; A third judgment module is used to judge whether there is dust accumulation at the noise location according to the noise level; If dust accumulation occurs at the noise location, the dust at the noise location is processed using electrostatic dust removal technology.

6. A computer device comprising a memory and a processor, wherein the memory stores a computer program, wherein: When the processor executes the computer program, the steps of the method according to any one of claims 1 to 4 are implemented.

7. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the steps of the method according to any one of claims 1 to 4 are implemented.

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