Dynamic circulation monitoring driving system for hair dryer and hair dryer thereof
Through the dynamic cycle monitoring drive system, the user's actions are dynamically monitored and the cold air and hot air modes are automatically switched, which solves the safety hazard problem in the use of the hair dryer and achieves a safe and reliable user experience.
Patent Information
- Application Number
- CN202422303034.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-09-20
AI Technical Summary
Existing hair dryers lack a safety hazard avoidance system, which can easily cause burns to the hair or scalp, combustion of flammable items and fire accidents. The risks are even greater when the user is distracted, forgets to turn it off, or is used by the elderly or children.
It adopts a dynamic cycle monitoring drive system, including a dynamic supervision system and a heating cycle supervision system. It sets the heating cycle time and automatically switches between cold air and hot air modes by dynamically monitoring user actions to prevent long-term hot air blowing.
It effectively avoids the potential safety hazards caused by long-term hot air blowing, ensures user safety, prevents burns and fire, adapts to the usage habits of different users, and provides safety protection.
Smart Images

Figure CN223392092U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field related to hair dryers, in particular to a dynamic circulation monitoring drive system for a hair dryer and the hair dryer. Background Art
[0002] Hair dryers are familiar electrical appliances in everyday life, primarily consisting of a motor, a heating module, a component module, and a small, high-speed motor. When powered, a heating wire generates heat, which is then driven by the motor and rotated by the fan blades. This blows air across the surface of the heating wire, removing the heat generated by the wire and creating hot air. If only the motor rotates and the fan blades rotate without heating the heating wire, the air produced is cold air. Hair dryers have brought many conveniences to people's lives. When people are busy at work or coming home late from a night out, using a hair dryer after washing their hair can help dry it quickly, eliminating the hassle of waiting for it to dry.
[0003] The hair dryers commonly used at present generally do not have a safety hazard avoidance system. When people use conventional hair dryers, the following safety hazards are prone to occur:
[0004] 1. When using hot air to blow dry your hair, if the user's attention is distracted and the hot air is blown on the head for too long, there is a risk of burning the hair or scalp;
[0005] 2. When using the hot air mode, if the user forgets to turn off the hot air in a hurry and places the hair dryer next to flammable items, the flammable items may easily burn at high temperatures, which may lead to fire accidents.
[0006] 3. When the elderly use the hair dryer or children play with the hair dryer, if they forget to turn off the hair dryer or do not know how to turn off the hair dryer, it may bring safety hazards such as fire and cause certain property losses.
[0007] Based on the above problems, it is necessary to develop a hair dryer drive system that can completely avoid the above safety hazards. Utility Model Content
[0008] The purpose of the present utility model is to provide a dynamic circulation monitoring drive system for a hair dryer and a hair dryer thereof, aiming to solve the above-mentioned technical problems. The present utility model is provided with a dynamic supervision system and a heating cycle supervision system. The heating cycle supervision system is mainly used to set the heating cycle supervision time, and the dynamic supervision system is used to monitor and collect dynamic information generated by the user's actions when using the hair dryer, and the information is sent to the main control module, which is deployed and controlled by the main control module to effectively avoid safety hazards when the hair dryer is used in hot air mode.
[0009] In order to achieve the above-mentioned purpose, the present invention is implemented through the following technical solutions:
[0010] A dynamic circulation monitoring drive system for a hair dryer includes a power supply module, a main control module, a heating module and a fan module. The power supply module, the heating module and the fan module are all connected to the main control module. The heating module and the fan module are both controlled by the main control module. A dynamic monitoring system is provided between the main control module and the heating module.
[0011] Preferably, the dynamic supervision system includes a dynamic circulation monitoring linkage module, a dynamic information collection module, and a dynamic circulation monitoring drive module. The dynamic circulation monitoring linkage module is connected to the main control module and the dynamic information collection module, the dynamic information collection module is connected to the dynamic circulation monitoring drive module, and the dynamic circulation monitoring drive module is connected to the heating module.
[0012] Preferably, the main control module has a built-in heating cycle monitoring system and a touch control module, and the touch control module is connected to the power module, the heating cycle monitoring system and the fan module.
[0013] Preferably, the heating cycle monitoring system includes a heating drive module, a thermal cycle time control module and a cyclic heating drive module. The heating drive module is connected to the touch module, the thermal cycle time control module and the dynamic monitoring system. The thermal cycle time control module is connected to the cyclic heating drive module. The cyclic heating drive module is connected to the heating module and the dynamic monitoring system.
[0014] Preferably, the main control module further has a built-in motor drive module, and the motor drive module is connected to the fan module, the touch module and the dynamic monitoring system.
[0015] Preferably, a display module is further included, and the display module is connected to the main control module and the dynamic monitoring system.
[0016] A hair dryer comprises a hair dryer body, wherein the hair dryer body is provided with any one of the above-mentioned dynamic circulation monitoring drive systems for the hair dryer.
[0017] The utility model discloses a dynamic cycle monitoring drive system for a hair dryer and a hair dryer thereof, which has the following beneficial effects:
[0018] The utility model uses a dynamic cycle monitoring and driving system for a hair dryer, which is provided with a dynamic supervision system and a heating cycle supervision system. The heating cycle supervision system is used to set the cycle time of cold air and hot air, that is, when the user starts the hot air mode and reaches the set cycle time, the main control module will switch the hot air mode to the cold air mode and start the dynamic supervision system at the same time. When the dynamic supervision system detects that the user has generated dynamic information of the set action of using the hair dryer, the dynamic information will be sent to the main control module, and the main control module will control the activation of the heating module, so that the hair dryer is switched from the cold air mode to the hot air mode. In this way, after the user starts the hot air mode when using the hair dryer, when the set cycle time is reached, the hair dryer will automatically switch from the hot air mode to the cold air mode. If the user keeps the hair dryer still and the dynamic monitoring system does not monitor and collect dynamic information of the user's set action of using the hair dryer, the hair dryer will always keep the cold air blowing mode, which can effectively avoid the safety hazards caused by the hair dryer blowing hot air for a long time; and when the hair dryer is switched to cold air mode, if the dynamic monitoring system monitors and receives dynamic information of the user's set action of using the hair dryer, it will send the dynamic information to the main control module, and the main control module will start the heating module to switch the hair dryer from the cold air blowing mode to the hot air blowing mode, and at the same time start the heating cycle monitoring system to enter a new round of heating cycle time supervision, so that safety hazards can be effectively avoided without affecting the user's use of the hair dryer. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is the overall structural connection diagram of the dynamic cycle monitoring drive system for the hair dryer of the utility model;
[0020] Figure 2 This is a structural diagram of the main control module of the dynamic cycle monitoring drive system for the hair dryer of the utility model;
[0021] Figure 3 This is a structural diagram of the dynamic monitoring system of the dynamic cycle monitoring drive system for the hair dryer of the utility model;
[0022] Figure 4 It is a schematic diagram of the overall structure of the hair dryer of the present utility model. DETAILED DESCRIPTION
[0023] In order to enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be described in further detail below with reference to the embodiments and accompanying drawings.
[0024] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly on the other element or there may be an intermediate element; when an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only implementation methods.
[0025] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this invention pertains. The terms used herein in the specification of this invention are intended solely for the purpose of describing specific embodiments and are not intended to limit this invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0026] like Figures 1 to 3 As shown, a dynamic circulation monitoring and driving system for a hair dryer includes a power supply module 1, a main control module A, a heating module 2 and a fan module 3. The power supply module 1, heating module 2 and fan module 3 are all connected to the main control module A, and the heating module 2 and fan module 3 are all controlled by the main control module A. A dynamic supervision system B is provided between the main control module A and the heating module 2. The dynamic supervision system B includes a dynamic circulation monitoring linkage module 4, a dynamic information collection module 5, and a dynamic circulation monitoring driving module 6. The dynamic circulation monitoring linkage module 4 is connected to the main control module A and the dynamic information collection module 5. The dynamic information collection module 5 is connected to the dynamic circulation monitoring driving module 6, and the dynamic circulation monitoring driving module 6 is connected to the heating module 2. The main control module A has a built-in heating circulation supervision system C and a touch module 7. The touch module 7 is connected to the power supply module 1, the heating circulation supervision system C and the fan module 3. The heating cycle monitoring system C includes a heating drive module 8, a thermal cycle time control module 9, and a cyclic heating drive module 10. The heating drive module 8 is connected to the touch module 7, the thermal cycle time control module 9, and the dynamic monitoring system B. The thermal cycle time control module 9 is connected to the cyclic heating drive module 10, and the cyclic heating drive module 10 is connected to the heating module 2 and the dynamic monitoring system B. The main control module A also has a built-in motor drive module 11, which is connected to the fan module 3, the touch module 7, and the dynamic monitoring system B. It also includes a display module 12, which is connected to the main control module A and the dynamic monitoring system B.
[0027] like Figure 4 As shown, a hair dryer includes a hair dryer body, in which the hair dryer body is provided with the dynamic circulation monitoring drive system for the hair dryer as described above.
[0028] It should be noted that: in this embodiment, the power supply module 1 is connected to the touch module 7, the touch module 7 is connected to the heating drive module 8 and the heating module 2, the heating drive module 8 is connected to the thermal cycle time control module 9 and the dynamic cycle monitoring linkage module 4, the thermal cycle time control module 9 is connected to the cycle heating drive module 10, the cycle heating drive module 10 is connected to the dynamic cycle monitoring drive module 6 and the heating module 2; the dynamic cycle monitoring linkage module 4 is connected to the dynamic information collection module 5, the dynamic information collection module 5 is connected to the dynamic cycle monitoring drive module 6, the dynamic cycle monitoring drive module 6 is connected to the heating module 2; the motor drive module 11 is connected to the touch module 7 and the dynamic cycle monitoring linkage module 4, the fan module 3 is connected to the motor drive module 11; the display module 12 is connected to the touch module 7 and the dynamic cycle monitoring linkage module 4.
[0029] The power supply module 1 is used to supply power to each module component, the main control module A is used to control each module component to coordinate and realize each function control, the heating module 2 is used to provide heat so that the hair dryer can blow out hot air; the motor drive module 11 is used to drive the fan module 3 so that the hair dryer can blow out air; the touch module 7 is used to control the power switch and the selection of various modes; the dynamic information collection module 5 is used to collect dynamic information of whether the hair dryer generates usage actions. Under normal conditions, when the user uses the hair dryer normally, dynamic information of up, down, left and right usage actions will generally be generated. Only when it is placed in a certain position or the user is not paying attention to the hair dryer, the dynamic information of the hair dryer will be generated. When the hair dryer is in a stationary state for a long time while blowing hot air, the temperature of the blown object or the hair and skin may be too high, resulting in a safety hazard of burns or burns. When the dynamic monitoring module detects that the hair dryer is in a stationary state for a set time, the dynamic cycle monitoring drive module 6 sends an instruction to the cycle heating drive module 10, which immediately cuts off the power supply of the heating module 2, turning off the heating module 2, and then realizing the subsequent state of the hair dryer blowing cold air. In this way, the hair dryer can be effectively avoided from staying in the hot air blowing state for a long time, which may cause the hair or scalp to be burned.
[0030] The working principle of the present utility model is as follows: after starting the power module 1, the touch module 7, the display module 12, the motor drive module 11, and the heating drive module 8 can be started; when the user selects the cold air mode, the motor drive module 11 can drive the fan module 3 to realize blowing air; when the user selects the hot air mode, the user can drive the heating module 2 by starting the heating drive module 8, so that the hair dryer is in a state of blowing hot air; when the user starts the heating drive module 8, the thermal cycle time control module 9 and the dynamic cycle monitoring linkage module 4 are started at the same time. When the thermal cycle time control module 9 starts the heating module 2 through the circulating heating drive module 10, the conversion function of hot air to cold air is realized according to the set time period, that is, when the hair dryer starts the hot air blowing mode, the timing will be started. When the hot air blowing mode reaches the set cycle time, the heating module 2 will be automatically turned off, so that the hair dryer is changed from the hot air blowing mode to the cold air blowing mode. In this embodiment, when the hair dryer starts the hot air blowing mode, the dynamic supervision system B and the heating cycle supervision system C will be started at the same time, so that when the heating module 2 of the hair dryer is started, the dynamic cycle monitoring linkage module 4, the dynamic information collection module 5, the dynamic cycle monitoring drive module 6 and the circulation heating drive module 10 are started at the same time, so that the hair dryer automatically enters the dynamic cycle monitoring drive system state; in the time period set by the heat cycle time control module 9, the dynamic information collection module 5 is in a state of collecting dynamic information of the user's actions generated during use in real time; when the dynamic information collection module 5 collects the dynamic information generated by the user's actions of using the hair dryer, the collected dynamic information can be sent to the dynamic cycle monitoring drive module 6, and the dynamic cycle monitoring drive module 6 sends instructions to the circulation heating drive module 10, which is driven by the circulation heating drive module The activation module 10 starts the heating module 2 to realize the functional conversion from the cold air blowing mode to the hot air blowing mode, and makes the hair dryer enter a new round of hot air circulation time period; that is, when the user starts the hot air mode, the hair dryer will automatically change from the hot air blowing mode to the cold air blowing mode when the hot air blowing mode of the hair dryer reaches the set time. If the user moves the hair dryer up and down or shakes the hair dryer while continuously using the hot air mode within the set time, the dynamic supervision system B monitors and collects the dynamic information of the user's action, and can then make the hair dryer immediately change from the cold air blowing mode to the hot air blowing mode. Since the conversion function is triggered by the user's continuous use action, the time is extremely short and therefore will not affect the user's normal use. In this way, the hair dryer can avoid the safety hazards caused by long-term hot air blowing while also not affecting the user's use experience.
[0031] When the dynamic information collection module 5 does not collect the dynamic information generated by the user's use of the hair dryer within the time period set by the heat cycle time control module 9, it will send the corresponding static information to the dynamic cycle monitoring drive module 6, and the dynamic cycle monitoring drive module 6 will immediately send an instruction to the cycle heating drive module 10, and the cycle heating drive module 10 will turn off the heating module 2, so that the hair dryer changes from the hot air blowing mode to the cold air blowing mode, realizing the turning off of the heating function, thereby effectively avoiding the safety hazards caused by the hair dryer blowing hot air for a long time.
[0032] When the dynamic information collection module 5 collects the dynamic information generated by the user's usage actions and sends it to the dynamic cycle monitoring drive module 6, the dynamic cycle monitoring drive module 6 immediately sends an instruction to the cycle heating drive module 10; the cycle heating drive module 10 starts the heating function of the heating module 2; as long as the user is using a hair dryer with this function, the dynamic cycle monitoring drive system will provide safety protection for the user in the above mode, completely avoiding the personal injury of burns to the hair and scalp caused by long-term use of the hot air mode for the user, completely avoiding the safety hazards of burning objects or even fire caused by the user forgetting to turn off the hair dryer, and completely avoiding the safety hazards caused by the elderly at home using the hair dryer or children playing with the hair dryer because they forget to turn off the hair dryer or do not know how to turn off the hair dryer.
[0033] The above description is only a preferred embodiment of the present invention and does not constitute any form of limitation to the present invention. Any ordinary technician in the industry can smoothly implement the present invention as shown in the drawings and described above. However, any equivalent changes, modifications and evolutions made by technicians familiar with the profession without departing from the scope of the technical solution of the present invention using the technical content disclosed above are all equivalent embodiments of the present invention. At the same time, any equivalent changes, modifications and evolutions made to the above embodiments based on the essential technology of the present invention still belong to the present invention.
Claims
1. A dynamic cycle monitoring drive system for a hair dryer, comprising a power module, a main control module, a heating module, and a fan module, wherein the power module, the heating module, and the fan module are all connected to the main control module, and the heating module and the fan module are all controlled by the main control module, characterized in that: A dynamic monitoring system is provided between the main control module and the heating module.
2. The dynamic cycle monitoring drive system for a hair dryer according to claim 1, characterized in that: The dynamic supervision system includes a dynamic circulation monitoring linkage module, a dynamic information collection module, and a dynamic circulation monitoring drive module. The dynamic circulation monitoring linkage module is connected to the main control module and the dynamic information collection module, the dynamic information collection module is connected to the dynamic circulation monitoring drive module, and the dynamic circulation monitoring drive module is connected to the heating module.
3. The dynamic cycle monitoring drive system for a hair dryer according to claim 1, characterized in that: The main control module is equipped with a heating cycle monitoring system and a touch control module, and the touch control module is connected to the power module, the heating cycle monitoring system and the fan module.
4. The dynamic cycle monitoring drive system for a hair dryer according to claim 3, characterized in that: The heating cycle monitoring system includes a heating drive module, a thermal cycle time control module and a cyclic heating drive module. The heating drive module is connected to the touch module, the thermal cycle time control module and the dynamic monitoring system. The thermal cycle time control module is connected to the cyclic heating drive module. The cyclic heating drive module is connected to the heating module and the dynamic monitoring system.
5. The dynamic cycle monitoring drive system for a hair dryer according to claim 3, characterized in that: The main control module also has a built-in motor drive module, and the motor drive module is connected to the fan module, the touch module and the dynamic monitoring system.
6. The dynamic cycle monitoring drive system for a hair dryer according to claim 1, characterized in that: It also includes a display module, which is connected to the main control module and the dynamic monitoring system.
7. A hair dryer, comprising a hair dryer body, characterized in that: The hair dryer body is provided with a dynamic circulation monitoring drive system for a hair dryer as claimed in any one of claims 1 to 6.