Equipment peculiar smell treatment method and system, electronic equipment and storage medium

By continuously heating and circulating dry-burning the smoking equipment, and automatically handling heat exchanger core malfunctions, the problem of odor from the heat exchanger core has been solved, achieving efficient odor elimination and improving production efficiency and user experience.

CN121232913APending Publication Date: 2025-12-30SHENZHEN GEEKVAPE TECH CO LTD
View PDF 6 Cites 0 Cited by

Patent Information

Application Number
CN202410844117.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-06-27
Publication Date
2025-12-30

AI Technical Summary

Technical Problem

In existing technologies, abnormal incoming materials to the heat exchange core during the production of smoking accessories can cause odors. Manual handling is inefficient and the elimination effect is insufficient, which affects production efficiency and user experience.

Method used

By controlling the equipment to be treated to continuously heat, it is determined whether there is any abnormality in the heat exchange core, and then the equipment is heated dry-burned and circulated until the preset number of times is reached, so as to consume the residual refrigerant or impurities and achieve complete elimination of odor.

Benefits of technology

It achieves efficient and complete elimination of odors, avoiding problems such as low production efficiency and poor user experience, and improving production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN121232913A_ABST
    Figure CN121232913A_ABST
Patent Text Reader

Abstract

The invention discloses an equipment peculiar smell treatment method and system, electronic equipment and a storage medium, and the method comprises the following steps: controlling to-be-treated equipment to continuously heat; in the continuous heating process of the to-be-treated equipment, whether a heat exchange core of the to-be-treated equipment is abnormal or not is determined; if it is determined that the heat exchange core of the to-be-treated equipment is abnormal, the to-be-treated equipment is controlled to conduct heating and dry burning; when the to-be-treated equipment is subjected to heating and dry burning for a preset heating duration, the to-be-treated equipment is controlled to stop heating; adding 1 to the current heating times of the to-be-treated equipment; judging whether the current heating frequency of the to-be-processed equipment reaches a preset frequency or not; if it is judged that the current heating frequency of the to-be-processed equipment does not reach the preset frequency, returning to execute the control of the to-be-processed equipment for heating and dry burning; and if it is judged that the current heating frequency of the to-be-processed equipment reaches the preset frequency, the to-be-processed equipment is controlled to end cyclic heating.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of device factory processing, and in particular relates to a device odor processing method and system, an electronic device, and a storage medium. BACKGROUND

[0002] Currently, in the production process of smoking utensils, abnormal incoming materials of heat exchange cores of smoking utensils may occur. For example, due to the need for cooling liquid for cooling during high-speed machining, the incoming materials of heat exchange cores are left with cooling liquid, and these heat exchange cores may cause the smoking utensils to have an odor during use, affecting the use of users. Therefore, the abnormal incoming materials need to be processed to eliminate the odor of the heat exchange cores.

[0003] Currently, the processing of abnormal incoming materials of heat exchange cores is mainly performed by workers using alcohol to clean and wipe the heat exchange cores in batches, so that the alcohol can remove the cooling liquid left on the heat exchange cores. Then, the processed heat exchange cores are used for assembly of smoking utensils, so that the heat exchange cores in the smoking utensils do not produce an odor during use, affecting the experience of users.

[0004] However, the processing by manual work has relatively low efficiency, and the processing by manual work cannot guarantee the elimination effect, that is, there is a problem of insufficient elimination, so rework is often needed, affecting the production efficiency, and if the smoking utensils have been assembled into complete machines, the complete machines need to be disassembled, causing a large amount of materials to be scrapped. SUMMARY

[0005] Based on the deficiencies of the prior art, the present application provides a device odor processing method and system, an electronic device, and a storage medium to solve the problems of low efficiency and inability to guarantee the elimination effect in the prior art.

[0006] To achieve the above object, the present application provides the following technical solutions:

[0007] The present application provides a device odor processing method, which comprises the following steps:

[0008] controlling a to-be-processed device to continuously heat;

[0009] determining whether a heat exchange core of the to-be-processed device has an abnormality during the continuous heating of the to-be-processed device;

[0010] if it is determined that the heat exchange core of the to-be-processed device has an abnormality, controlling the to-be-processed device to heat dry;

[0011] when the to-be-processed device heats dry for a preset heating duration, controlling the to-be-processed device to stop heating;

[0012] adding 1 to the current heating number of the to-be-processed device;

[0013] Determine whether the current number of heating cycles of the device to be processed has reached the preset number;

[0014] If it is determined that the current heating count of the device to be processed has not reached the preset count, then return to the operation of controlling the device to be processed to perform dry burning;

[0015] If it is determined that the current heating cycle of the device to be processed has reached the preset number, then the device to be processed is controlled to end the cycle heating.

[0016] Optionally, in the above-described method for treating equipment odors, before continuously heating the equipment to be treated, the method further includes:

[0017] A target function module is added and programmed into the device to be processed; wherein, the target function module is at least used to read the voltage and current values ​​of the charging port of the device to be processed, read the temperature of the thermistor of the battery of the device to be processed, and read the duration of the target button of the device to be processed.

[0018] Optionally, in the above-described method for treating equipment odor, controlling the equipment to be treated to undergo dry burning includes:

[0019] When the voltage and current values ​​of the charging port of the device under test and the temperature of the thermistor of the battery of the device under test meet the preset conditions, or when it is detected whether the target button trigger command is received for a preset number of consecutive button presses, and the interval between each trigger command of the target button is a preset trigger interval, the device under test is woken up and the device under test is controlled to perform cyclic heating and dry burning.

[0020] Optionally, in the above-described method for treating equipment odors, when controlling the equipment to be treated to continuously heat, the method further includes:

[0021] During the continuous heating process of the device to be processed, the temperature of the device to be processed is calibrated.

[0022] Control the device to be processed to stop heating;

[0023] The device to be processed is subjected to software testing to obtain the test results.

[0024] Optionally, the above-mentioned equipment odor treatment method further includes:

[0025] Real-time monitoring to ensure the voltage of the device under test is not lower than the preset voltage;

[0026] If the voltage of the device to be processed is detected to be lower than the preset voltage, the device to be processed is controlled to stop heating.

[0027] Control the device to be processed to charge until the device to be processed is fully charged, and then return to execute the control of the device to be processed to heat and dry burn.

[0028] A second aspect of this application provides an equipment odor treatment system, comprising:

[0029] A continuous heating unit is used to control the continuous heating of the equipment to be processed;

[0030] An anomaly determination unit is used to determine whether there is an anomaly in the heat exchange core of the device under treatment during the continuous heating process of the device under treatment.

[0031] A circulating heating unit is used to control the heat exchange core of the device to be processed to undergo dry burning when an abnormality is detected.

[0032] The heating termination unit is used to control the device to be processed to stop heating when the device to be processed has been subjected to a preset heating time of dry burning.

[0033] The accumulation unit is used to increment the current number of heating cycles of the device to be processed by 1;

[0034] The judgment unit is used to determine whether the current number of heating cycles of the device to be processed has reached the preset number;

[0035] The cycle control unit is used to return to the cycle heating unit to execute the control of the device to be processed to dry-burn when it is determined that the current heating number of the device to be processed has not reached the preset number;

[0036] The processing termination unit is used to control the device to end the cycle heating when it is determined that the current heating count of the device to be processed has reached a preset count.

[0037] Optionally, the above-mentioned equipment odor treatment system further includes:

[0038] A programming unit is used to add a target function module to the device under test; wherein the target function module is at least used to read the voltage and current values ​​of the charging port of the device under test, read the temperature of the thermistor of the battery of the device under test, and read the duration of the target button of the device under test.

[0039] Optionally, in the above-mentioned equipment odor treatment system, the circulating heating unit includes:

[0040] The circulating heating subunit is used to wake up the device under test and control the device under test to perform circulating heating and dry burning when the voltage and current values ​​of the charging port of the device under test and the temperature of the thermistor of the battery of the device under test both meet preset conditions, or when it monitors whether the target button trigger command is received for a preset number of consecutive button presses, and the interval between each trigger command of the target button is a preset trigger interval.

[0041] Optionally, the above-mentioned equipment odor treatment system further includes:

[0042] A calibration unit is used to perform temperature calibration on the device under test during the continuous heating process.

[0043] The first stop unit is used to control the device to be processed to stop heating;

[0044] The testing unit is used to perform software testing on the device to be processed and obtain the test results of the device to be processed.

[0045] Optionally, the above-mentioned equipment odor treatment system further includes:

[0046] The voltage monitoring unit is used to monitor in real time whether the voltage of the device to be processed is lower than the preset voltage;

[0047] The second stop unit is used to control the device to be processed to stop heating when the voltage of the device to be processed is detected to be lower than the preset voltage.

[0048] The charging control unit is used to control the device to be processed to charge until the device to be processed is fully charged, and then return to the circulating heating unit to control the device to be processed to heat and dry burn.

[0049] A third aspect of this application provides an electronic device, comprising:

[0050] Memory and processor;

[0051] The memory is used to store programs;

[0052] The processor is used to execute the program, which, when executed, is specifically used to implement the device odor treatment method as described in any of the above.

[0053] The fourth aspect of this application provides a computer storage medium for storing a computer program, which, when executed, is used to implement the device odor treatment method as described in any of the preceding claims.

[0054] This application provides a method for treating odor from equipment. First, the equipment to be treated is continuously heated. During this continuous heating process, it is determined whether there is an abnormality in the heat exchange core of the equipment. If an abnormality is found in the heat exchange core, the equipment is controlled to undergo dry-burning heating. When the dry-burning heating has continued for a preset duration, the heating is stopped, thus completing one cycle of dry-burning. Then, the current heating count of the equipment is incremented by 1. It is determined whether the current heating count has reached a preset number. If it is determined that the current heating count has not reached the preset number, the process returns to the step of controlling the dry-burning heating of the equipment, thereby achieving multiple cycles of dry-burning heating of the equipment. If it is determined that the current heating cycle of the equipment to be treated has reached the preset number, the equipment to be treated is controlled to end the cycle heating. This automatically controls the equipment to be treated to perform multiple cycles of dry burning. The high temperature brought by the dry burning can fully consume the residual refrigerant or other impurities in the heat exchange core of the equipment to be treated, so that when the equipment to be treated is heated again, there will be no odor. This achieves complete elimination of odor from the equipment to be treated, making odor elimination more efficient and thorough, and avoiding affecting product production efficiency and user experience. Attached Figure Description

[0055] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of this application. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.

[0056] Figure 1 A flowchart illustrating a method for treating equipment odors provided in this application embodiment;

[0057] Figure 2 A flowchart illustrating an initialization process method for a device to be processed, provided in an embodiment of this application;

[0058] Figure 3 A flowchart illustrating a method for monitoring the power consumption of a device to be processed, provided in an embodiment of this application;

[0059] Figure 4 A schematic diagram of the architecture of an equipment odor treatment system provided in this application embodiment;

[0060] Figure 5 This is a schematic diagram of the architecture of an electronic device provided in an embodiment of this application. Detailed Implementation

[0061] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0062] In this application, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0063] This application provides a method for treating equipment odors, such as... Figure 1 As shown, the specific steps include:

[0064] S101, Control the equipment to be processed to continuously heat.

[0065] It should be noted that the odor elimination method provided in this application embodiment requires heating through the device to be treated. Therefore, the device to be treated is an already assembled device; that is, in this application embodiment, the odor that may exist in the heat exchange core is eliminated only after the device is assembled. Therefore, it specifically refers to an assembled smoking device that requires odor treatment.

[0066] It should be noted that, in this embodiment, before eliminating odor from the device, it is necessary to first determine whether there is any abnormality in the heat exchange core, that is, to determine whether there is any abnormality that would cause the device to produce odor during heating. Therefore, in this embodiment, it is necessary to control the device to be treated to continue heating until it is determined whether there is any abnormality in the heat exchange core of the device to be treated, and then stop heating.

[0067] Optionally, in order to enable the device to automatically handle exceptions, in another embodiment of this application, before performing step S101, the following may be further included:

[0068] Add a target function module to the device to be processed.

[0069] The target function module is used at least to read the voltage and current values ​​of the charging port of the device to be processed, the temperature of the thermistor of the battery of the device to be processed, and the duration of the target button press of the device to be processed.

[0070] It should be noted that the system reads the voltage and current values ​​of the charging port of the device under test, the temperature of the thermistor of the battery of the device under test, and the duration of the target button press on the device under test. This not only monitors the operation of the device under test, but also triggers the device to perform cyclic heating based on the monitored information, i.e., cyclically executes subsequent steps S103 to S107, thereby automatically eliminating odors.

[0071] Of course, other functions can also be programmed into the device to be processed, and a program that automatically eliminates odors can be programmed. This allows the odor removal process to be completed automatically simply by activating the program externally, without the need for constant control through external devices, thus making odor removal more convenient.

[0072] Optionally, in order to ensure that the device to be treated is capable of performing its various functions and is in good condition so as to achieve subsequent odor treatment, the initialization process of the device to be treated can be further included before odor elimination.

[0073] Since the device to be processed also needs to be heated during the initialization process in this embodiment, and the device to be processed is in a heated state when step S101 is executed, the initialization process of the device to be processed during step S101 can also be understood as determining whether there is an abnormality in the heat exchange core of the device to be processed during the initialization process. Of course, the initialization process of the device to be processed can also be performed separately.

[0074] like Figure 2 As shown in the figure, an initialization method for a device to be processed provided in this application includes the following steps:

[0075] S201. During the continuous heating process of the equipment to be processed, the temperature of the equipment to be processed is calibrated.

[0076] In order for the equipment to be processed to operate under certain rules, it is necessary to first calibrate the temperature of the equipment. Optionally, power calibration or infrared calibration can be used to calibrate the equipment.

[0077] S202, Control the device to be processed to stop heating.

[0078] Specifically, after calibrating the equipment to be processed and determining whether there are any abnormalities in the heat exchange core to be processed, the equipment to be processed can be controlled to stop heating.

[0079] S203. Perform software testing on the device to be processed to obtain the test results of the device to be processed.

[0080] To ensure that all functions of the device under treatment are normal, software testing is necessary. Furthermore, subsequent steps should only be performed if all functions of the device are functioning correctly. If any abnormal functions are found, it indicates a quality problem with the device, and odor treatment is unnecessary.

[0081] S102. During the heating process of the equipment to be treated, determine whether there is any abnormality in the heat exchange core of the equipment to be treated.

[0082] Optionally, specific sensors can be used to determine whether there is an odor generated by the device under treatment during the heating process, or by analyzing whether the device under treatment produces smoke during the heating process. When an odorous gas or smoke is detected from the device under treatment, it can be determined that there is an abnormality in the heat exchange core of the device under treatment.

[0083] If an abnormality is found in the heat exchange core of the equipment to be processed, it indicates that the heat exchange core has an odor, so odor treatment is required. Therefore, step S103 is executed at this time. If the heat exchange core of the equipment to be processed is not abnormal, odor treatment is not required, and the equipment can be shipped directly from the factory.

[0084] S103. Control the equipment to be processed to perform heating and dry burning.

[0085] It should be noted that in this embodiment, the device to be processed is heated and dry-burned. When the object to be heated is added, the device to be processed is controlled to heat up, so as to consume the residual refrigerant and other impurities in the heat exchange core of the device to be processed through a higher temperature, thereby preventing the device to be processed from generating odors during the subsequent heating process. Therefore, optionally, when performing step S103, the device to be processed can be controlled to heat up to a preset temperature to ensure that a high temperature is sufficient to eliminate the odor from the heat exchange core.

[0086] Optionally, in another embodiment of this application, when step S103 is executed for the first time, a specific implementation of step S103 includes:

[0087] When the voltage and current values ​​of the charging port of the device under test and the temperature of the thermistor of the battery of the device under test meet the preset conditions, or when the device under test receives a target button trigger command for a preset number of consecutive button presses, and the interval between each target button trigger command is a preset trigger interval, the device under test is woken up and the device under test is controlled to perform cyclic heating and dry burning.

[0088] In other words, in this embodiment of the application, the device under test can be woken up to start heating and dry burning by ensuring that the voltage and current values ​​of the charging port of the device under test and the temperature of the thermistor of the battery of the device under test meet the preset conditions, and then the device under test can start cyclic heating and dry burning, that is, cyclically execute steps S103 to S106 until the current heating number of the device under test reaches the preset number.

[0089] Alternatively, the device under treatment can be activated by repeatedly pressing the target button to begin cyclic heating and dry burning, thus achieving automated fault handling. For example, pressing the button 10 times with a 0.5-second interval between each press can activate the device to begin cyclic dry burning.

[0090] S104. When the equipment to be processed is heated and dry-burned for a preset heating time, control the equipment to be processed to stop heating.

[0091] It should be noted that, considering that continuous and prolonged heating and dry burning may cause the temperature of other components inside the device to be treated to be too high, and that there is usually a certain time interval between two operations in actual use of the device, the odor is treated by multiple cycles of heating and dry burning of the device to be treated, rather than by a single long heating and dry burning.

[0092] Specifically, the time for each cycle of dry burning is the preset heating duration. Therefore, after the equipment to be processed has been dry burning for the preset duration, it is necessary to control the equipment to stop heating, thereby ending one cycle of dry burning.

[0093] S105. Increment the current number of heating cycles of the device to be processed by 1.

[0094] It should be noted that in this embodiment, the number of times the device to be treated is heated is used to ensure that the odor of the heat exchange core of the device to be treated is fully eliminated. Therefore, after one heating dry burning cycle ends, the number of heating cycles is added up accordingly, that is, the current number of heating cycles of the device to be treated is incremented by 1.

[0095] S106. Determine whether the current heating count of the device to be processed has reached the preset count.

[0096] Since the amount of coolant and other impurities that can remain on the heat exchange core of the equipment being treated is limited, a certain number of heating cycles can ensure the complete elimination of the odor. Therefore, multiple experiments can be conducted to determine the maximum number of heating cycles required to fully eliminate the abnormality of the equipment, and then this number of heating cycles can be set as the preset number.

[0097] Therefore, if it is determined that the current number of heating cycles for the device to be processed has not reached the preset number, the process returns to step S103 to perform the next heating and dry burning cycle.

[0098] Optionally, since the temperature of the equipment to be processed is high after heating and dry burning, in order to avoid the internal components of the equipment from overheating, the equipment to be processed is cooled down before the next heating and dry burning is performed. Specifically, after determining that the current heating cycle of the equipment to be processed has not reached the preset number, a waiting period of time is taken before returning to step S103.

[0099] If it is determined that the current heating count of the device to be processed has reached the preset count, then step S107 can be executed.

[0100] S107. Control the equipment to be processed to end the cycle heating.

[0101] Specifically, the cyclic heating function can be terminated by controlling the device to stop heating and shutting it down.

[0102] Optionally, considering that the device under treatment may have insufficient power during the cyclic heating process, and in order to ensure that the device under treatment retains a certain amount of power upon shipment, in another embodiment of this application, the power level of the device under treatment is also monitored in real time during the abnormal handling process. For example... Figure 3 As shown in the embodiment of this application, a method for monitoring the power consumption of a device to be processed includes:

[0103] S301. Monitor in real time whether the voltage of the device to be processed is lower than the preset voltage.

[0104] If the voltage of the device to be processed is detected to be lower than the preset voltage, it indicates that the device to be processed is low on power. Therefore, step S302 is executed to accurately charge the device to be processed.

[0105] Optionally, the preset voltage can be set based on the amount of electricity required for the device to be processed to perform the next complete heating operation.

[0106] S302, Control the device to be processed to stop heating.

[0107] Since the power is insufficient to complete the heating process and the device to be processed needs to be charged, but heating during the charging process poses certain safety concerns, the device to be processed is stopped from heating at this point.

[0108] S303: Control the device to be processed to charge until the device to be processed is fully charged.

[0109] It should be noted that once the device to be processed is fully charged, the process returns to step S103.

[0110] This application provides a method for treating odor from equipment. First, the equipment to be treated is continuously heated. During this continuous heating process, it is determined whether there is an abnormality in the heat exchange core of the equipment. If an abnormality is found in the heat exchange core, the equipment is controlled to undergo dry-burning heating. When the dry-burning heating has continued for a preset duration, the heating is stopped, thus completing one cycle of dry-burning. Then, the current heating count of the equipment is incremented by 1. It is determined whether the current heating count has reached a preset number. If it is determined that the current heating count has not reached the preset number, the process returns to the step of controlling the dry-burning heating of the equipment, thereby achieving multiple cycles of dry-burning heating of the equipment. If it is determined that the current heating cycle of the equipment to be treated has reached the preset number, the equipment to be treated is controlled to end the cycle heating. This automatically controls the equipment to be treated to perform multiple cycles of dry heating. The high temperature generated by the dry heating can fully consume the residual refrigerant or other impurities in the heat exchange core of the equipment to be treated, so that when the equipment to be treated is heated again, there will be no odor. This achieves complete elimination of odor from the equipment to be treated, making odor elimination more efficient and thorough, and avoiding affecting product production efficiency and user experience.

[0111] Another embodiment of this application provides an odor treatment system for equipment, such as... Figure 4 As shown, it specifically includes the following units:

[0112] The continuous heating unit 401 is used to control the equipment to be processed to perform continuous heating.

[0113] The anomaly determination unit 402 is used to determine whether there is an anomaly in the heat exchange core of the equipment to be processed during the continuous heating process.

[0114] The circulating heating unit 403 is used to control the equipment to be processed to undergo dry burning when it is determined that there is an abnormality in the heat exchange core of the equipment to be processed.

[0115] The heating termination unit 404 is used to control the device to be processed to stop heating when the device to be processed is continuously heated for a preset time.

[0116] The accumulator unit 405 is used to increment the current number of heating cycles of the device to be processed by 1.

[0117] The judgment unit 406 is used to determine whether the current number of heating cycles of the device to be processed has reached the preset number of cycles.

[0118] The cycle control unit 407 is used to return to the cycle heating unit 403 to control the device to be processed to perform dry burning when it is determined that the current heating number of the device to be processed has not reached the preset number.

[0119] The processing termination unit 408 is used to control the device to end the cycle heating when it is determined that the current heating number of the device to be processed has reached the preset number.

[0120] Optionally, in another embodiment of the odor control system provided in this application, the system may further include:

[0121] The programming unit is used to add a target functional module to the device to be processed.

[0122] The target function module is used at least to read the voltage and current values ​​of the charging port of the device to be processed, the temperature of the thermistor of the battery of the device to be processed, and the duration of the target button press of the device to be processed.

[0123] Optionally, in another embodiment of the odor treatment system provided in this application, the circulating heating unit specifically includes:

[0124] The circulating heating subunit is used to wake up the device under test and control it to perform circulating heating and dry burning when the voltage and current values ​​of the charging port of the device under test and the temperature of the thermistor of the battery of the device under test meet the preset conditions, or when it monitors whether the target button trigger command is received for a preset number of consecutive button presses, and the interval between each target button trigger command is the preset trigger interval.

[0125] Optionally, in another embodiment of the odor control system provided in this application, the system may further include:

[0126] The calibration unit is used to calibrate the temperature of the equipment being processed during continuous heating.

[0127] The first stop unit is used to control the device to be processed to stop heating.

[0128] The test unit is used to perform software testing on the device under test and obtain the test results of the device under test.

[0129] Optionally, in another embodiment of the odor control system provided in this application, the system may further include:

[0130] The voltage monitoring unit is used to monitor in real time whether the voltage of the device to be processed is lower than the preset voltage.

[0131] The second stop unit is used to control the device to stop heating when the voltage of the device to be processed is detected to be lower than the preset voltage.

[0132] The charging control unit is used to control the device to be processed to charge until the device is fully charged, and then return to the circulating heating unit to control the device to be processed to heat and dry burn.

[0133] It should be noted that the specific working process of each unit provided in the above embodiments of this application can be referred to the implementation process of the corresponding steps in the above method embodiments, and will not be repeated here.

[0134] Another embodiment of this application provides an electronic device, such as... Figure 5 As shown, it includes:

[0135] Memory 501 and processor 502.

[0136] The memory 501 is used to store the program.

[0137] The processor 502 is used to execute the program stored in the memory 501, and when the program is executed, it is specifically used to implement the device odor treatment method provided in any of the above embodiments.

[0138] It should be noted that the specific implementation process can be referred to the various method implementation examples provided above, and will not be repeated here.

[0139] Another embodiment of this application provides a computer storage medium for storing a computer program, which, when executed, implements the device odor treatment method provided in any of the above embodiments.

[0140] Computer storage media, including both permanent and non-permanent, removable and non-removable media, can store information using any method or technology. 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 technologies, CD-ROM, digital versatile optical disc (DVD) or other optical storage, magnetic tape, magnetic magnetic disk storage or other magnetic storage devices, or any other non-transferable medium that can be used to store information accessible by a computing device. As defined herein, computer-readable media does not include transient computer-readable media, such as modulated data signals and carrier waves.

[0141] Those skilled in the art will further recognize that the units and algorithm steps of the various examples described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, computer software, or a combination of both. To clearly illustrate the interchangeability of hardware and software, the components and steps of the various examples have been generally described in terms of functionality in the foregoing description. Whether these functions are implemented in hardware or software depends on the specific application and design constraints of the technical solution. Those skilled in the art can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of this application.

[0142] The above description of the disclosed embodiments enables those skilled in the art to make or use this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this application. Therefore, this application is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A method for treating malodors in a device, comprising: The method comprises the following steps: controlling the to-be-processed device to continuously heat; determining whether the heat exchange core of the to-be-processed device is abnormal during the continuous heating of the to-be-processed device; if it is determined that the heat exchange core of the to-be-processed device is abnormal, controlling the to-be-processed device to heat dry; when the to-be-processed device heats dry for a preset heating duration, controlling the to-be-processed device to stop heating; adding 1 to the current heating number of the to-be-processed device; determining whether the current heating number of the to-be-processed device reaches a preset number; if it is determined that the current heating number of the to-be-processed device does not reach the preset number, returning to control the to-be-processed device to heat dry; if it is determined that the current heating number of the to-be-processed device reaches the preset number, controlling the to-be-processed device to end the cycle heating.

2. The method of claim 1, wherein, Before the step of controlling the to-be-processed device to continuously heat, the method further comprises the following steps: adding a target function module in the to-be-processed device; wherein the target function module is used for at least reading the voltage and current values of the charging port of the to-be-processed device, reading the temperature of the thermistor of the battery of the to-be-processed device, and reading the duration of the target key of the to-be-processed device.

3. The method of claim 2, wherein, The step of controlling the to-be-processed device to heat dry comprises the following steps: when the voltage and current values of the charging port of the to-be-processed device, the temperature of the thermistor of the battery of the to-be-processed device all meet the preset conditions, or the trigger instruction of the target key is continuously received for a preset number of times, and the interval of each trigger instruction of the target key is a preset trigger interval, the to-be-processed device is woken up, and the to-be-processed device is controlled to heat dry in a cycle.

4. The method of claim 1, wherein, When the step of controlling the to-be-processed device to continuously heat, the method further comprises the following steps: during the continuous heating of the to-be-processed device, the to-be-processed device is calibrated in temperature; controlling the to-be-processed device to stop heating; performing software testing on the to-be-processed device to obtain the test result of the to-be-processed device.

5. The method of claim 1, wherein, The method further comprises the following steps: real-time monitoring whether the voltage of the to-be-processed device is lower than a preset voltage; if it is monitored that the voltage of the to-be-processed device is lower than the preset voltage, controlling the to-be-processed device to stop heating; controlling the to-be-processed device to charge until the to-be-processed device is fully charged, and returning to control the to-be-processed device to heat dry.

6. An apparatus odor treatment system, comprising: The method comprises the following steps: a continuous heating unit is configured to control the to-be-processed device to continuously heat; an abnormality determination unit is configured to determine whether the heat exchange core of the to-be-processed device is abnormal during the continuous heating of the to-be-processed device; a cycle heating unit is configured to control the to-be-processed device to heat dry when it is determined that the heat exchange core of the to-be-processed device is abnormal; a heating end unit is configured to control the to-be-processed device to stop heating when the to-be-processed device heats dry for a preset heating duration; an adding unit is configured to add 1 to the current heating number of the to-be-processed device; a determination unit is configured to determine whether the current heating number of the to-be-processed device reaches a preset number; The cycle control unit is configured to return to the cycle heating unit to perform the control of the to-be-processed device to heat dry burning when it is determined that the current heating number of the to-be-processed device does not reach the preset number. The processing end unit is configured to control the to-be-processed device to end the cycle heating when it is determined that the current heating number of the to-be-processed device reaches the preset number.

7. The system of claim 6, wherein, Further comprising: The burning unit is configured to add a target function module in the to-be-processed device; wherein the target function module is at least used to read the voltage value and the current value of the charging port of the to-be-processed device, read the temperature of the thermistor of the battery of the to-be-processed device, and read the duration of the target key of the to-be-processed device.

8. The system of claim 7, wherein, The cycle heating unit comprises: The cycle heating sub-unit is configured to wake up the to-be-processed device and control the to-be-processed device to heat dry burning when the voltage value and the current value of the charging port of the to-be-processed device, the temperature of the thermistor of the battery of the to-be-processed device all meet the preset condition, or whether the trigger instruction of the target key is received continuously for the preset number of times of keys, and the interval of the trigger instruction of the target key each time is the preset trigger interval.

9. An electronic device, comprising: Comprise: Memory and processor; The memory is used to store programs; The processor is used to execute the program, and the program is executed to specifically implement the device odor processing method of any one of claims 1 to 5.

10. A computer storage medium, characterized in that, For storing computer programs, the computer programs are executed to implement the device odor processing method of any one of claims 1 to 5.

Citation Information

Patent Citations

  • Odorless electronic cigarette manufacturing and use method and odorless atomizing device manufacturing method

    CN105054299A

  • Heater and smoking set comprising same

    CN113057375A

  • Apparatus and method for improving aerosol generation in electronic cigarette

    CN114258271A

  • Pneumoperitoneum tube heating frequency statistical method and device, processing equipment and storage medium

    CN117137544A

  • Electron smog spinning disk atomiser ceramic heater core and shaping mold core thereof

    CN205358226U