WO2022089132A1 - 一种毛发处理器控制方法、毛发处理器和存储介质 - Google Patents

一种毛发处理器控制方法、毛发处理器和存储介质 Download PDF

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Publication number
WO2022089132A1
WO2022089132A1 PCT/CN2021/121316 CN2021121316W WO2022089132A1 WO 2022089132 A1 WO2022089132 A1 WO 2022089132A1 CN 2021121316 W CN2021121316 W CN 2021121316W WO 2022089132 A1 WO2022089132 A1 WO 2022089132A1
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WO
WIPO (PCT)
Prior art keywords
hair
hair processor
target
handle
processor
Prior art date
Application number
PCT/CN2021/121316
Other languages
English (en)
French (fr)
Inventor
魏愷含
王悦舟
Original Assignee
追觅科技(上海)有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN202011196107.XA external-priority patent/CN112230588A/zh
Priority claimed from CN202011196119.2A external-priority patent/CN112273830A/zh
Priority claimed from CN202011196148.9A external-priority patent/CN112198831A/zh
Priority claimed from CN202022484686.XU external-priority patent/CN212933307U/zh
Application filed by 追觅科技(上海)有限公司 filed Critical 追觅科技(上海)有限公司
Priority to JP2023523572A priority Critical patent/JP2023545559A/ja
Publication of WO2022089132A1 publication Critical patent/WO2022089132A1/zh

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    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D1/00Curling-tongs, i.e. tongs for use when hot; Curling-irons, i.e. irons for use when hot; Accessories therefor
    • A45D1/02Curling-tongs, i.e. tongs for use when hot; Curling-irons, i.e. irons for use when hot; Accessories therefor with means for internal heating, e.g. by liquid fuel
    • A45D1/04Curling-tongs, i.e. tongs for use when hot; Curling-irons, i.e. irons for use when hot; Accessories therefor with means for internal heating, e.g. by liquid fuel by electricity
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D2/00Hair-curling or hair-waving appliances ; Appliances for hair dressing treatment not otherwise provided for
    • A45D2/36Hair curlers or hair winders with incorporated heating or drying means, e.g. electric, using chemical reaction

Definitions

  • the present application relates to the technical field of hair care appliances, and in particular to a hair processor control method, a hair processor and a storage medium.
  • the present application provides a hair processor control method, a hair processor and a storage medium.
  • an embodiment of the present application provides a method for controlling a hair processor, the method is used in a hair processor, the hair processor includes a hair processor handle and at least two functional accessories, and the method includes:
  • the identification module in the target functional accessory is identified; the information identified by the identification module in different functional accessories is different;
  • the hair processor is controlled to realize the target function corresponding to the target function accessory by identifying the identification module.
  • the identification module in the target functional accessory includes:
  • Described controlling the hair processor to realize the target function corresponding to the target function accessory by identifying the identification module including:
  • the hair processor is controlled to realize the target function corresponding to the target voltage value.
  • the identification of the identification module in the target functional accessory includes:
  • Described by identifying described identification module to control described hair processor to realize the corresponding target function of described target function accessory including:
  • the hair processor is controlled to realize the target function corresponding to the target identification information.
  • control of the hair processor to realize the target function corresponding to the target function accessory by identifying the identification module includes:
  • the motor and/or the heating device in the hair processor is controlled to work to achieve the target function, and the motor is used to drive the fan to rotate.
  • controlling the motor and/or the heating device in the hair processor to work to achieve the target function including:
  • the heating device is controlled to generate heat with a target power according to the target function, and the target power is greater than 0 and less than or equal to the rated power.
  • a hair processor in a second aspect, includes: a hair processor handle and at least two functional accessories, each functional accessory is provided with an identification module, and the identification modules in different functional accessories The identified information is different, and the hair processor is used to implement the method described in the first aspect.
  • the identification module is at least one of a resistor, a sensor and a communication component.
  • the communication component includes a short-range communication technology NFC component and/or a Bluetooth component.
  • each functional accessory is any one of styling accessories, hair dryer accessories, and hair comb accessories.
  • a hair processor control method for use in a hair processor provided with a sensor at the handle, the method comprising:
  • the hair processor is controlled to operate in the target gear.
  • the hair processor is provided with n gears, there are n grip strength ranges, the ith grip strength range is the ith threshold ⁇ grip strength ⁇ i+1th threshold, and the nth grip strength range is the grip strength greater than or equal to the ith threshold.
  • n threshold 1 ⁇ i ⁇ n, i is an integer, and n is an integer greater than or equal to 2.
  • the acquiring the grip strength value detected by the sensor includes:
  • the sensor is a grip strength sensor, obtain the grip strength value detected by the grip strength sensor;
  • the Hall voltage value detected by the Hall sensor is acquired.
  • the method also includes:
  • the obtained grip strength value is less than a preset grip strength value, continue to perform the step of obtaining the grip strength value detected by the sensor, where the preset grip strength value is each of the preset corresponding relationships.
  • the minimum grip strength value in the grip strength range is a preset grip strength value.
  • the hair processor includes a heating device, and after controlling the hair processor to work at the target gear, the hair processor also includes:
  • the temperature of the heating device is controlled to be at a preset temperature.
  • the hair processor includes a heating device, and before acquiring the grip force detected by the sensor, the method further includes:
  • the heating device After receiving the power-on signal, the heating device is controlled to preheat with a preset power.
  • the receiving a power-on signal for turning on the hair processor includes:
  • control of the hair processor to work in the target gear includes:
  • the motor and/or the heating device in the hair processor is controlled to work with the power corresponding to the target gear, and the motor is used to drive the fan to rotate.
  • the hair processor includes a handle and at least two functional accessories
  • the controlling the hair processor to work in the target gear includes:
  • the hair processor is controlled to realize the target function corresponding to the target functional accessory at the target gear position.
  • a hair processor comprises a memory and a processor, and at least one program instruction is stored in the memory, and the processor is loaded and executed by the at least one program instruction to achieve The method of the first aspect or the fourth aspect.
  • a computer storage medium where at least one program instruction is stored in the storage medium, and the at least one program instruction is used to be loaded and executed by a processor to implement the first aspect or the fourth aspect. method.
  • a control circuit in a sixth aspect, includes: a micro-control unit, a motor drive, a motor, a live wire and n neutral wires, the micro-control unit is connected to the motor drive, and the motor drive uses For driving the motor to rotate, n is an integer greater than or equal to 1, the zero line is connected to the zero line end of the functional accessories, and the control circuit identifies the functional accessories with different resistance values.
  • control circuit further includes a sensor connected to the micro-control unit.
  • a control circuit in a seventh aspect, includes: a micro-control unit, a motor drive, a motor, and an inductive element connected to the micro-control unit, the micro-control unit is connected to the motor drive, and the The sensing element is in contact with the functional accessories, and the control circuit identifies the functional accessories with different resistance values.
  • control circuit further includes a sensor connected to the micro-control unit.
  • a handle is provided, and the handle includes the control circuit of the first aspect.
  • n is an integer greater than or equal to 2
  • the pins of the n zero lines are arranged in a distributed manner along the inner wall circumference of the connecting end of the handle, and the connecting end is used in the handle to connect with the function. The end where the accessory is connected.
  • the pins of the n zero lines are shrapnel.
  • control circuit further includes a sensor connected to the micro-control unit, and the sensor detects the grip force value of the grip handle.
  • the senor is disposed on the outer wall of the inner shell of the handle, or on the inner wall of the outer shell of the handle.
  • the sensor includes at least two, and the at least two sensors are distributed on the outer wall of the inner shell of the handle, or, the inner wall of the outer shell of the handle.
  • a hair processor is provided, the hair processor including the handle of the third aspect.
  • the identification module is used to identify the function of the functional accessories, so that when the hair processor handle is assembled with different functional accessories, the hair processor handle can identify different functional accessories, and then according to the recognized functional accessories to control the hair processor to realize the corresponding functions; it solves the problem that the same device cannot realize multiple functions in the prior art, and the device has a single function, and achieves that the same device can realize different functions by switching functional accessories. Effect.
  • the grip strength value detected by the sensor is obtained; the grip strength range to which the grip strength value belongs is detected, and the target gear corresponding to the grip strength range is determined according to the preset correspondence; control
  • the hair processor operates in the target gear.
  • the resistance value between each zero line and the functional accessories is different from that of the micro-control unit after being assembled, so that different functional accessories can be identified according to the difference in the recognized resistance values, so as to solve the problem.
  • the problem in the prior art that the same device cannot realize multiple functions and the device has a single function is solved, and the same device can realize different functions and rich functions by switching functional accessories.
  • Fig. 1 is the three-dimensional structural representation of the hair processor proposed by the application
  • Fig. 2 is the structural representation of various possible functional accessories in the hair processor proposed by the present application.
  • Fig. 3 is the structural schematic diagram after the various possible functional accessories shown in Fig. 2 are assembled to the hair treatment handle shown in Fig. 1;
  • Fig. 5 is the method flow chart of the hair processor control method proposed by the present application.
  • Fig. 6 is the method flow chart of the hair processor control method proposed by the present application.
  • Fig. 7 is the structural schematic diagram that the handle of the hair processor proposed by the present application is provided with a sensor
  • Fig. 8 is the method flow chart of the hair processor control method provided by the application.
  • FIG. 9 is a schematic diagram of a possible control circuit in the hair processor provided by the application.
  • FIG. 10 is a schematic diagram of a possible control circuit in the hair processor provided by the application.
  • FIG. 11 is a schematic diagram of a possible control circuit in the hair processor provided by the application.
  • FIG. 12 is a schematic diagram of a possible control circuit in the hair processor provided by the application.
  • Fig. 13 is a possible three-dimensional schematic diagram of the handle in the hair processor provided by the application.
  • FIG. 14 is a schematic circuit diagram of a control circuit in the handle provided by the present application.
  • 15 is a possible schematic circuit diagram of the control circuit in the handle provided by the present application.
  • FIG. 16 is another possible schematic circuit diagram of the control circuit in the handle provided by the present application.
  • the hair processor can realize at least one of the above functions by replacing the functional accessories.
  • the hair processor handle 11 shown in FIG. 1 and at least two functional accessories may be included, and the functional accessories may include styling accessories, hair dryer accessories and hair comb accessories.
  • the styling accessory can support curling, straightening, or simultaneously support both curling and straightening functions through different operations.
  • the styling accessory can be the hair straightener 211 shown in (a) in FIG. (b) The hair curling accessory 212 shown in the figure; the blowing accessory can be the hair dryer 213 shown in (c) in FIG.
  • the combing accessories can be the straight hair comb 214 shown in (d) or the curling comb 215 shown in (e) in FIG. 2 .
  • the hair curling accessory 212 and the hair curling comb 215 in this embodiment may include a plurality of accessories with different sizes, which will not be repeated here.
  • the functional accessory may also be an accessory for implementing other functions, which is not limited in this embodiment.
  • FIG. 3 shows a schematic structural diagram of various hair processors formed after the various functional accessories in FIG. 2 are assembled to the hair processor handle 11 .
  • the hair processor shown in (a) in FIG. 3 is a hair processor formed after the functional accessories shown in (a) in FIG. 2 are assembled, which can support the function of straightening hair; (b) in FIG. 3 )
  • the hair processor shown in the figure is the hair processor formed after the functional accessories shown in (b) of FIG. 2 are assembled, and can support the curling function; and so on.
  • each functional accessory is provided with an identification module, and the information identified by the identification modules in different functional accessories is different.
  • the identification module is at least one of a resistor, a sensor, and a communication component.
  • the sensor can be an infrared sensor;
  • the communication component carries identification information, and the communication component can be at least one of an NFC (Near Field Communication, short-range communication technology) component and a Bluetooth component.
  • the identification module is used to identify each functional accessory after the hair processor handle is assembled with the functional accessory. That is, the hair processor handle can identify which functional accessory is currently assembled by identifying the identification module. For example, the distinction between curly hair accessories, straight hair accessories, or dry hair accessories will not be repeated here.
  • resistors with different resistance values are set in different functional accessories, and different functions are identified by different resistance values.
  • the identification module is an NFC component, different functions can be identified through different NFC information.
  • the hair processor handle 11 includes a motor, a driver for driving the motor (M), an MCU (Microcontroller Unit, microcontroller unit), a heating device and other associated components.
  • M motor
  • MCU Microcontroller Unit, microcontroller unit
  • a heating device and other associated components.
  • an ADC analog to digital converter, analog-to-digital converter
  • other associated components can include fans, pull-down resistors, and so on.
  • the identification module is a resistor
  • the target resistance value in the target functional accessories can be identified and obtained, and the hair processor is controlled to realize the corresponding target function according to the identified target resistance value.
  • FIG. 4 shows a schematic diagram of a possible control circuit 410 in the hair processor handle 11 .
  • the MCU can read the resistance R2 in the target functional accessory through the ADC, and control the hair processor to achieve the target function according to the read resistance value of R2.
  • FIG. 4 only shows some components for illustration. In actual implementation, more or less components may be included, which is not limited in this embodiment, and in the figure, 420 is a schematic diagram of a circuit in a functional accessory .
  • the preset corresponding relationship can be different resistance values.
  • the corresponding relationship between the value range and different functions At this time, after reading the resistance value of the resistor in the target function accessory, you can determine the resistance value range to which the read resistance value belongs, and query the determined resistance value. The function corresponding to the range controls the hair processor to realize the determined function.
  • the read resistance value is 2 ⁇
  • the resistance value is in the range of 1.5 ⁇ 2.5 ⁇
  • the function corresponding to this range is the curling function
  • the identification module is a communication component
  • the target identification information carried in advance in the communication assembly can be identified, and the hair processor is controlled to realize the corresponding target function according to the identified target identification information.
  • the step of controlling the hair processor to achieve the target function includes: controlling the motor and/or the heating device in the hair processor to work to achieve the target function.
  • the motor is used to drive the fan to rotate.
  • different wind speeds can be achieved by controlling the motor to rotate at different speeds
  • different temperatures can be achieved by controlling the heating power of the heating wire.
  • the target resistance value indicates that the target functional accessory is a blower accessory, which can control the operation of the motor and the heating device.
  • the identification module is used to identify the function of the functional accessories, so that when the hair processor handle is assembled with different functional accessories, the hair processor handle can identify different functional accessories, and then according to The obtained functional accessories are identified to control the hair processor to realize corresponding functions; the problem that the same device cannot realize multiple functions and the single device function in the prior art is solved, and the same device can be switched to realize different functions by switching functional accessories.
  • FIG. 5 shows a method flowchart of a hair processor control method provided by an embodiment of the present application.
  • the hair processor control method can be used in the hair processor shown in FIG. 3 , as shown in FIG. 5 .
  • the method includes:
  • Step 501 after the hair processor handle is assembled with the target functional accessory, identify the identification module in the target functional accessory.
  • the user can select the desired functional accessories, and assemble the selected target functional accessories into the hair processor handle, after which the hair processor can identify the target functional accessories in the assembled target functional accessories.
  • Identity module For example, when a user wants to curl his own hair, he installs the styling accessory on the handle of the hair processor, and the hair processor can then recognize the identification module in the styling accessory.
  • the identification module may be a resistor or a communication component, and when the identification module is a resistor, this step includes: reading the target resistance value of the resistor in the target functional accessory.
  • this step includes: identifying the target identification information carried in the communication component.
  • Step 502 controlling the hair processor to realize the target function corresponding to the target function accessory according to the identified identification module.
  • this step includes: controlling the hair processor to realize the target function corresponding to the target resistance value.
  • this step includes: controlling the hair processor to realize the target function corresponding to the target identification information.
  • the step of controlling the hair processor to achieve the target function includes:
  • the heating device when drying with cold air, only the rotation of the motor can be controlled.
  • the heating device when curling hair is achieved, the heating device can be controlled to generate heat at a target power.
  • the rotation of the motor and the heating of the heating device can be controlled at the same time.
  • the identification module is used as an example to illustrate, in conjunction with Fig. 6, after the hair processor is turned on, the hair processor is initialized, and thereafter, the resistance in the assembled target functional accessories is sampled, and it is determined whether there is a corresponding resistance value according to the sampled resistance value. If there is a corresponding functional accessory, control the motor and/or the heating device to work to realize the function corresponding to the determined functional accessory. Optionally, if the functional accessory corresponding to the sampled resistance value cannot be determined, the process ends at this point.
  • the hair dryer when the user needs to blow dry after washing the hair, the hair dryer is assembled to the handle of the hair processor, and the hair processor detects the resistance value in the hair dryer.
  • the hair processor detects the resistance value in the hair dryer.
  • the hair processor can be controlled to achieve the blowing function.
  • the identification module is used to identify the function of the functional accessories, so that when the hair processor handle is assembled with different functional accessories, the hair processor handle can identify different functional accessories, and then according to The obtained functional accessories are identified to control the hair processor to realize corresponding functions; the problem that the same device cannot realize multiple functions and the single device function in the prior art is solved, and the same device can be switched to realize different functions by switching functional accessories.
  • a sensor 70 may be provided at the handle of the hair processor, and the sensor 70 is used to detect the user's grip strength value.
  • the sensor 70 can be set at a preset position in the hair processor handle 11, and the preset position is the inner wall of the outer shell of the hair processor handle 11, or, the outer wall of the inner shell of the hair processor handle 11. Its specific location is not limited.
  • the sensor 70 can be arranged in the preset position in the hair processor handle 11 at the position corresponding to the finger pulp when the user holds the handle 11 .
  • each sensor 70 may be evenly distributed and arranged at the above-mentioned preset positions, or, Shape distribution or array distribution in the above-mentioned preset positions, or distribution along the vertical axis at the position corresponding to the finger pulp, which is not limited here.
  • the installation position of the sensor 70 can be obtained according to the common position of the user when the user holds the handle according to the big data statistics, such as the position shown by 11 in FIG. 1 and FIG. 2 .
  • a prompt component may be provided at the position of the sensor 70, for example, a button with a preset color is provided at the position of the sensor 70 in the handle.
  • the controller can control the hair processor to perform corresponding operations according to the grip force detected by the sensor, and the specific control method is as follows.
  • FIG. 8 shows a method flowchart of a hair processor control method provided by an embodiment of the present application.
  • the hair processor control method can be used in the hair processor as described above.
  • the hair processor control method Can include:
  • Step 801 acquiring the grip strength value detected by the sensor.
  • FIG. 9 shows a schematic structural diagram of the control circuit in the handle of the hair processor.
  • the control circuit includes a motor, a driver for driving the motor (M), an MCU (Microcontroller Unit), a sensor, a heating device, and other associated components.
  • M motor
  • MCU Microcontroller Unit
  • sensor sensor
  • heating device a heating device
  • other associated components can include fans, pull-down resistors, and so on.
  • FIG. 9 only shows the sensor, MCU, ADC, driver and motor in the control circuit for schematic illustration. in:
  • the sensor When the sensor is a grip strength sensor, obtain the grip strength value detected by the grip strength sensor.
  • the grip strength sensor can feed back the grip strength value by feeding back the voltage signal to the MCU, and the larger the feedback voltage value corresponds to the greater the grip strength value of the grip strength, the smaller the feedback voltage value corresponds to the smaller the grip strength value of the grip strength.
  • the sensor When the sensor is a Hall sensor, obtain the Hall voltage value detected by the Hall sensor.
  • the Hall sensor can detect the Hall voltage value.
  • the MCU can obtain the Hall voltage value accordingly.
  • the sensor as a grip force sensor or a Hall sensor for illustration.
  • other sensors capable of detecting the size of the grip force may also be used, and the specific implementation thereof is not limited in this embodiment.
  • a power-on button may be provided in the hair processor. After the user presses the power-on button, the hair processor is powered on, and then this step can be performed. Of course, it can also be automatically turned on after the user holds the handle and applies pressure.
  • Step 802 detecting the grip strength range to which the grip strength value belongs, and determining the target gear corresponding to the grip strength range according to a preset correspondence;
  • a hair processor can include a motor and a heating device. When realizing various functions, it includes rotating the motor and then driving the fan to rotate to emit air, or making the heating device generate heat, or simultaneously rotating the motor and heating the heating device. .
  • the preset corresponding relationship is the corresponding relationship between different grip strength ranges and different gears, and the preset corresponding relationship may be a default corresponding relationship or a user-defined corresponding relationship.
  • the preset corresponding relationship as the user-defined corresponding relationship as an example, a junior high school girl can set the above-mentioned preset corresponding relationship according to her own strength before using the hair processor, and the grip strength of the grip strength range in the preset corresponding relationship The value is small; and an adult man can set a larger correspondence between each grip strength range and gear before using the hair processor.
  • the hair processor is set with n gears and n grip strength ranges, that is, n thresholds can be preset, and the ith grip strength range is the ith threshold ⁇ grip strength ⁇ i+1 threshold, and the nth grip strength range is The grip strength is greater than or equal to the nth threshold; 1 ⁇ i ⁇ n, i is an integer, and n is an integer greater than or equal to 2.
  • n is an integer greater than or equal to 2.
  • the first grip strength range is the first threshold ⁇ grip strength ⁇ the second threshold
  • the second grip strength range is the second threshold ⁇ grip strength ⁇
  • the third threshold is the third threshold ⁇ grip strength.
  • Step 803 controlling the hair processor to work at the target gear.
  • the hair processor can be controlled to work at the target gear.
  • this step may include: controlling the motor and/or the heating device in the hair processor to work with the power corresponding to the target gear.
  • this step may include: after the handle is assembled with the target functional accessories, controlling the hair processor to achieve the target with the target gear The target function corresponding to the functional accessory.
  • the method for determining the target function corresponding to the target function accessory is as follows:
  • Each functional accessory is provided with an identification module, and the identification modules in different functional accessories have different information identified.
  • the identification module is at least one of a resistor, a sensor, and a communication component.
  • the sensor may be an infrared sensor;
  • the communication component carries identification information, and the communication component may be at least one of an NFC (Near Field Communication, short-range communication technology) component and a Bluetooth component.
  • the identification module is used to identify each functional accessory after the hair processor handle is assembled with the functional accessory. That is, the hair processor handle can identify which functional accessory is currently assembled by identifying the identification module. For example, the distinction between curly hair accessories, straight hair accessories, or dry hair accessories will not be repeated here.
  • resistors with different resistance values are set in different functional accessories, and different functions are identified by different resistance values.
  • the identification module is an NFC component, different functions can be identified through different NFC information.
  • the MCU can identify the identification module in the target functional accessory through the ADC, and then implement the corresponding function according to the recognition result.
  • the identification module is a resistor
  • the target resistance value in the target functional accessories can be identified and obtained, and the hair processor is controlled to realize the corresponding target function according to the identified target resistance value.
  • FIG. 10 shows a schematic diagram of a possible control circuit 1010 in the hair processor handle 11 .
  • the MCU can read the resistance R2 in the target functional accessory through the ADC, and control the hair processor to achieve the target function according to the read resistance value of R2.
  • FIG. 10 only shows some components for illustration. In actual implementation, more or less components may be included, which is not limited in this embodiment, and in the figure, 1020 is a schematic diagram of a circuit in a functional accessory . The above is only exemplified by reading the resistance in the target functional accessories through the ADC.
  • control circuit 1010 may also include a second sensor for identifying the resistance value, and the second sensor is connected to the MCU and is located in the hair processor.
  • the circuit between the second sensor and the connected resistor is connected, and at this time, the second sensor can identify and obtain the resistance value of the resistor in the circuit.
  • FIG. 11 shows a schematic circuit diagram when the second sensor is included in the control circuit 1010 .
  • the preset corresponding relationship can be different resistance values.
  • the corresponding relationship between the value range and different functions At this time, after reading the resistance value of the resistor in the target function accessory, you can determine the resistance value range to which the read resistance value belongs, and query the determined resistance value. The function corresponding to the range controls the hair processor to realize the determined function.
  • the read resistance value is 2 ⁇
  • the resistance value is in the range of 1.5 ⁇ 2.5 ⁇
  • the function corresponding to this range is the curling function
  • the identification module is a communication component
  • the target identification information pre-carried in the communication assembly can be identified and obtained, and the hair processor is controlled to realize the corresponding target function according to the identified target identification information.
  • the step of controlling the hair processor to achieve the target function includes: controlling the motor and/or the heating device in the hair processor to work to achieve the target function.
  • the motor is used to drive the fan to rotate.
  • different wind speeds can be achieved by controlling the motor to rotate at different speeds
  • different temperatures can be achieved by controlling the heating power of the heating wire.
  • the target resistance value indicates that the target functional accessory is a blower accessory, which can control the operation of the motor and the heating device.
  • FIG. 12 shows a schematic circuit diagram of a hair processor control circuit provided by an embodiment of the present application.
  • the control circuit includes: an MCU, a motor Drive, motor (represented by M in the figure), live wire (not shown in the figure) and n zero wires, the MCU is connected to the motor drive, and the motor drive is used to drive the motor to rotate, and n is an integer greater than or equal to 2;
  • each neutral wire is connected to the neutral terminal of the functional accessories, and is grounded after being connected to the neutral terminal; and the resistance values between the MCU and the functional accessories are different after different functional accessories are assembled.
  • the MCU can identify the resistance value through the ADC.
  • the different resistance values between different functional accessories and MCU can be realized in two ways. The first is by setting resistors with different resistance values in the control circuit, and the second is by setting resistors with different resistance values in the functional accessories. . Therefore, the following two implementations will be separately described.
  • the control circuit may include m resistors, where m is an integer greater than or equal to n, at least one resistor is connected between each zero line of the control circuit and the MCU, and different zero lines are connected to the MCU The resistance values of the resistors connected between them are different.
  • the resistors connected between different neutral lines and the MCU may be one resistor or multiple resistors, and in the case of multiple resistors, multiple resistors may be connected in series, or multiple resistors may be connected in parallel. This embodiment The connection relationship thereof is not limited.
  • Figure 12 is a schematic illustration by connecting a resistor between each neutral line and the MCU.
  • each resistor in the control circuit 1010 can be grounded through the elastic sheet in the functional accessory 1020 to form a loop.
  • only one live wire and one neutral wire may be set in the control circuit 1010, and different resistance values may be set in different functional accessories, so that after the functional accessories are assembled, the neutral wire and the The neutral terminal in the functional accessories is connected to ground after being connected, and the MCU can distinguish which functional accessories are currently assembled according to the different resistances in the different functional accessories identified, which will not be repeated in this embodiment.
  • the control circuit in the handle of the hair processor is simplified by arranging resistors for indicating different functional accessories in each functional accessory.
  • the MCU can identify which functional accessory is currently assembled by identifying the resistance value of the resistor.
  • the hair processor handle is provided with two ends, one end is used for the user to hold, and the other end is used for assembling and connecting with the functional accessories. After the functional accessories are assembled, due to the short distance between the two adjacent zero lines, the circuit is misconnected and the functional accessories are incorrectly identified.
  • the pins of the n zero lines are The peripheral side of the inner wall of the connecting end of the hair processor handle is distributed in a distributed manner. For example, please refer to FIG. 13 , which shows a possible distributed arrangement of three neutral wires 1301 .
  • the distance between the pins of two adjacent zero lines 1301 on the inner wall peripheral side is greater than a preset distance.
  • each functional accessory can be connected to the corresponding zero line 1301, Then, the currently assembled functional accessories are accurately identified, and the recognition accuracy of the functional accessories is improved.
  • 1302 in the figure represents the live wire.
  • the lead-out ends of the n zero wires in the control circuit can be implemented as shrapnel, so that after the functional accessories are assembled, they can be in good contact with the zero wire ends in the functional accessories, so as to avoid the failure of the functional accessories due to poor contact. Identify or misidentify problems.
  • the grip strength value detected by the sensor is obtained; the grip strength range to which the grip strength value belongs is detected, and the target gear corresponding to the grip strength range is determined according to the preset correspondence;
  • the hair processor is controlled to operate in the target gear.
  • the user needs to adjust the position in the middle of using the hair processor to curl hair, that is, the user may place the hair processor on the desktop, or the user may reduce the grip force to adjust the position, but later It will continue to be used, so when a heating device is included in the hair processor, in order to reduce the loss and increase the time for the heating device to reach the preset temperature required for curly hair, after controlling the hair processor to work at the target gear, the method also includes :
  • the temperature of the heating device is controlled at a preset temperature.
  • a temperature sensor can be set on the circumference of the heating device, and the heating device can be controlled to maintain a preset temperature by detecting the temperature of the temperature sensor.
  • the heating device when the grip strength detected by the sensor is less than the first threshold, the heating device can be controlled to stop heating, and the temperature of the temperature sensor can be obtained in real time, and when the detected temperature is lower than the preset temperature, the heating device can be controlled to continue heating; When the reached temperature is higher than the preset temperature, the heating device is controlled to stop heating.
  • the method further includes:
  • the heating device is controlled to preheat with a preset power.
  • the heating device will generate heat, so in order to avoid danger to the user during misoperation, especially when children are scalded by misoperation, receive a power-on signal to turn on the hair processor, including:
  • the foregoing method may further include:
  • the preset grip strength value is the minimum grip strength value in each grip strength range in the preset corresponding relationship. That is, the preset grip strength value is the first threshold value.
  • the obtained grip strength value is less than the preset grip strength value, it means that the grip strength exerted by the user cannot trigger the hair processor to work, so the step of obtaining the grip strength value is continued at this time, which will not be repeated in this embodiment.
  • An embodiment of the present application further provides a hair processor, the hair processor includes a memory and a processor, the memory stores at least one program instruction, and the processor loads and executes the at least one program instruction by loading and executing the at least one program instruction. to implement the method described above.
  • An embodiment of the present application further provides a computer storage medium, where at least one program instruction is stored in the storage medium, and the at least one program instruction is used to be loaded and executed by a processor to implement the above method
  • FIG. 14 shows a schematic circuit diagram of a control circuit 1410 provided by an embodiment of the present application.
  • the control circuit includes: a micro-control unit 141, a motor driver 142, and a motor 143 (in the figure, the M represents), live wire (not shown in the figure) and n zero wires 144, the micro-control unit 141 is connected with the motor driver 142, the motor driver 142 is used to drive the motor 143 to rotate, and n is an integer greater than or equal to 1;
  • each neutral wire 144 is connected to the neutral terminal of the functional accessories, and is grounded after being connected to the neutral terminal; and the resistance values between the micro-control unit 141 and the functional accessories are different after different functional accessories are assembled .
  • an ADC analog to digital converter, analog-to-digital converter
  • the microcontroller unit can identify the resistance value through the ADC.
  • the different resistance values between different functional accessories and the micro-control unit 141 can be realized in two ways. The first is by setting resistors with different resistance values in the control circuit 1410, and the second is by setting different resistance values in the functional accessories. resistance value.
  • resistors with different resistance values are set in the control circuit 1410, in order to identify different functional accessories, after the functional accessories are assembled, it is necessary to connect the resistors with different resistance values in the control circuit, that is, to connect different loops, to connect different functional accessories.
  • the accessories are distinguished, so the zero line can be at least 2 at this time; and when resistors with different resistance values are set in different functional accessories, since different circuits can be formed after the functional accessories are assembled, the zero line at this time can be 1.
  • the two implementations will be separately described below.
  • the control circuit 1410 may include m resistors, where m is an integer greater than or equal to n, and at least one resistor is connected between each zero line 144 of the control circuit 1410 and the micro-control unit 141,
  • the resistance values of the resistors connected between the different neutral lines 144 and the micro-control unit 141 are different.
  • the resistors connected between the different neutral lines 144 and the micro-control unit 141 may be one resistor or multiple resistors, and in the case of multiple resistors, multiple resistors may be connected in series, or multiple resistors may be connected in parallel , the connection relationship thereof is not limited in this embodiment.
  • each resistor in the control circuit can be grounded through the elastic sheet in the functional accessory 1420 to form a loop.
  • only one live wire and one neutral wire may be set in the control circuit 1410, and different resistance values may be set in different functional accessories, so that after the functional accessories are assembled, the neutral wire and the The neutral terminal in the functional accessories is connected to ground, and the micro-control unit 141 can distinguish which functional accessories are currently assembled according to the different resistances in different functional accessories identified, which will not be repeated in this embodiment.
  • the control circuit in the handle is simplified by disposing the resistors for indicating different functional accessories in each functional accessory respectively.
  • the micro-control unit 141 can identify which functional accessory is the currently assembled functional accessory by identifying the resistance value of the resistor.
  • the control circuit may also include a micro-control unit 141, a motor drive 142, a motor 143 (represented by M in the figure), and an inductive element 145 connected to the micro-control unit 141.
  • the inductive element 145 recognizes different The resistance value of the resistor in the functional accessories, the resistance value of the resistor in different functional accessories is different.
  • the inductive element 145 is connected to the circuit of the connected resistor, and at this time, the inductive element 145 can identify and obtain the resistance value of the resistor in the circuit.
  • FIG. 15 shows that the control circuit includes an inductive element A circuit diagram of the control circuit 1410 at 145 hours.
  • the above only uses the sensing element 145 to identify different resistance values in different functional accessories and then to identify different functional accessories as an example.
  • different electronic tags can be set in different functional accessories. After assembly, the sensing element identifies different functional accessories by reading different electronic tags, which is not limited in this embodiment.
  • the electronic tag may be an NFC (Near Field Communication, short-range communication technology) tag, an infrared tag, and the like.
  • the hair processor may be provided with a handle, and the user can control the use of the hair processor by holding the handle. Therefore, in a possible embodiment of this embodiment, in conjunction with FIG. 16 , the above-mentioned control circuit 1410 may also include A sensor 146 connected to the micro-control unit 141, the sensor 146 is used to detect the grip force value of the handle.
  • the sensor 146 when the sensor 146 is a grip force sensor, the pressure value detected by the grip force sensor is acquired.
  • the grip force sensor can feedback the pressure value by feeding back a voltage signal to the micro-control unit 141 , and the larger the feedback voltage value corresponds to the more pressure value of the grip force, and the smaller the feedback voltage value corresponds to the smaller the pressure value of the grip force.
  • the sensor 146 is a Hall sensor, the Hall voltage value detected by the Hall sensor is obtained.
  • the Hall sensor can detect the Hall voltage value.
  • the sensor 146 is a grip force sensor or a Hall sensor for illustration. In actual implementation, it can also be other sensors capable of detecting the size of the grip force, and the specific implementation thereof is not limited in this embodiment.
  • control circuit may also include other related components, such as a fan, a pull-down resistor, etc., which will not be repeated here.
  • the resistance values between each zero line and the functional accessories are different from that of the micro-control unit, so that it is possible to identify different resistance values according to the difference in the recognized resistance values.
  • the functional accessories solve the problem that the same device cannot realize multiple functions in the prior art, and the device has a single function, and achieves the effect that different functions and rich functions can be realized in the same device by switching the functional accessories.
  • An embodiment of the present application further provides a handle, which includes the control circuit described in the above embodiment.
  • the handle is provided with two ends, one end is used for the user to hold, and the other end is used for assembling and connecting with the functional accessories.
  • the distance between the zero lines is short, which leads to the problem that the circuit is incorrectly connected to the functional accessories.
  • the pins of the n zero lines are distributed along the inner wall of the connecting end of the handle. Arrangement, for example, please refer to FIG. 13 , which shows a possible distributed arrangement of three neutral lines 1301 .
  • the distance between the pins of two adjacent zero lines 1201 on the peripheral side of the inner wall is greater than a preset distance.
  • each functional accessory can be connected to the corresponding zero line 1301, Then, the currently assembled functional accessories are accurately identified, and the recognition accuracy of the functional accessories is improved.
  • 1302 in Figure 13 denotes the live wire.
  • the lead-out ends of the n zero wires in the control circuit can be implemented as shrapnel, so that after the functional accessories are assembled, they can be in good contact with the zero wire ends in the functional accessories, so as to avoid the failure of the functional accessories due to poor contact. Identify or misidentify problems.
  • the control circuit when the control circuit includes a sensor for detecting the grip force of the handle, the sensor can be set at a preset position in the handle, and the preset position is the inner wall of the outer shell of the handle, or, the inner shell of the handle This embodiment does not limit the specific position of the outer wall. Moreover, based on ergonomics, the sensor can be set in the preset position in the handle at the position corresponding to the finger pulp when the user holds it.
  • each sensor may be evenly distributed and set at the above-mentioned preset position, or distributed in a point-like manner Either the arrays are distributed at the above-mentioned preset positions, or alternatively, the arrays are distributed and arranged along the vertical axis at the positions corresponding to the finger pulps, which are not limited herein.
  • the handle includes the control circuit described in the above embodiments, the problem that the same device cannot realize multiple functions and the single function of the device in the prior art is solved, and the same device can be used. By switching functional accessories to achieve different functions, function-rich effects.
  • This embodiment also provides a hair processor, which may include the handle described in the above embodiments.
  • the specific structure of the handle is detailed in the above-mentioned embodiments, which will not be repeated here.

Abstract

公开了一种毛发处理器控制方法、毛发处理器和存储介质。该方法用于毛发处理器中,毛发处理器包括毛发处理器手柄(11)和至少两个功能配件,该方法包括:在毛发处理器手柄(11)与目标功能配件装配之后,识别目标功能配件中的标识模块;不同功能配件中的标识模块所标识的信息不同;通过识别标识模块控制毛发处理器实现目标功能配件所对应的目标功能。解决了现有技术中同一设备无法实现多种功能,设备功能单一的问题,达到了同一设备中可以通过切换功能配件的方式来实现不同功能,功能丰富的效果。

Description

一种毛发处理器控制方法、毛发处理器和存储介质 技术领域
本申请涉及头发护理器具技术领域,具体涉及一种毛发处理器控制方法、毛发处理器和存储介质。
背景技术
随着人们生活水平的提高,人们对自己外形的要求越来越高。而发型是影响一个人气质形象的重要因素。现有方案中,当用户需要梳理头发时需要使用梳子;当需要卷发时使用毛发处理器;当需要直发时使用夹板;当需要吹造型时需要使用吹风机。这也就是说现有方案中毛发处理器的功能较为单一。
发明内容
针对上述技术中存在的不足之处,本申请提供了一种毛发处理器控制方法、毛发处理器和存储介质。
为解决上述技术问题,本申请采用的技术方案是:
第一方面,本申请实施例提供了一种毛发处理器控制方法,所述方法用于毛发处理器中,所述毛发处理器包括毛发处理器手柄和至少两个功能配件,所述方法包括:
在所述毛发处理器手柄与目标功能配件装配之后,识别所述目标功能配件中的标识模块;不同功能配件中的所述标识模块所标识的信息不同;
通过识别所述标识模块控制所述毛发处理器实现所述目标功能配件所对应的目标功能。
可选的,在所述标识模块为电阻时,所述识别所述目标功能配件中的标识模块,包括:
获取所述目标功能配件中的所述电阻所对应的目标电压值;
所述通过识别所述标识模块控制所述毛发处理器实现所述目标功能配件所对应的目标功能,包括:
控制所述毛发处理器实现所述目标电压值所对应的所述目标功能。
可选的,在所述标识模块为通信组件时,所述识别所述目标功能配件中的标识模块,包括:
识别所述通信组件中携带的目标标识信息;
所述通过识别所述标识模块控制所述毛发处理器实现所述目标功能配件所对应的目标 功能,包括:
控制所述毛发处理器实现所述目标标识信息所对应的所述目标功能。
可选的,所述通过识别所述标识模块控制所述毛发处理器实现所述目标功能配件所对应的目标功能,包括:
控制所述毛发处理器中的电机和/或发热装置工作以实现所述目标功能,所述电机用于驱动风扇转动。
可选的,所述控制所述毛发处理器中的电机和/或发热装置工作以实现所述目标功能,包括:
根据所述目标功能控制所述电机以目标转速转动;
和/或,
根据所述目标功能控制所述发热装置以目标功率发热,所述目标功率大于0小于等于额定功率。
第二方面,提供了一种毛发处理器,所述毛发处理器包括:毛发处理器手柄和至少两个功能配件,每个功能配件中设置有标识模块,且不同功能配件中的所述标识模块所标识的信息不同,所述毛发处理器用于实现第一方面所述的方法。
可选的,所述标识模块为电阻、传感器和通信组件中的至少一种。
可选的,所述通信组件包括近距离通信技术NFC组件和/或蓝牙组件。
可选的,每个功能配件为造型配件、吹风配件、梳头配件中的任一种。
第三方面,提供了一种毛发处理器控制方法,用于手柄处设置有传感器的毛发处理器中,所述方法包括:
获取所述传感器检测到的握力值;
检测所述握力值所属的握力范围,根据预设对应关系确定所述握力范围所对应的目标档位,所述预设对应关系包括不同握力范围与不同档位之间的对应关系;
控制所述毛发处理器以所述目标档位工作。
可选的,所述毛发处理器设置有n个档位,握力范围有n个,第i个握力范围为第i阈值≤握力<第i+1阈值,第n个握力范围为握力大于等于第n阈值;1≤i<n,i为整数,n为大于等于2的整数。
可选的,所述获取所述传感器检测到的握力值,包括:
在所述传感器为握力传感器时,获取所述握力传感器检测到的握力值;
在所述传感器为霍尔传感器时,获取所述霍尔传感器检测到的霍尔电压值。
所述方法还包括:
可选的,若获取到的所述握力值小于预设握力值,则继续执行所述获取所述传感器检测到的握力值的步骤,所述预设握力值为所述预设对应关系中各个握力范围中的最小握力值。
可选的,所述毛发处理器包括发热装置,所述控制所述毛发处理器以所述目标档位工作之后,所述还包括:
在检测到所述握力值小于最低档位的临界握力值时,控制所述发热装置的温度在预设温度。
可选的,所述毛发处理器包括发热装置,所述获取所述传感器检测到的握力之前,所述方法还包括:
接收开启所述毛发处理器的开机信号;
在接收到所述开机信号之后,控制所述发热装置以预设功率预热。
可选的,所述接收开启所述毛发处理器的开机信号,包括:
接收按压所述手柄中的开机按键的按压信号;
将在接收到所述按压信号的同时所述传感器检测到的握力值大于开机阈值时,确定为接收到所述开机信号。
可选的,所述控制所述毛发处理器以所述目标档位工作,包括:
控制所述毛发处理器中的电机和/或发热装置以所述目标档位所对应的功率进行工作,所述电机用于驱动风扇转动。
可选的,所述毛发处理器包括手柄以及至少两个功能配件,所述控制所述毛发处理器以所述目标档位工作,包括:
在所述手柄与目标功能配件装配之后,控制所述毛发处理器以所述目标档位实现所述目标功能配件所对应的目标功能。
第四方面,提供了一种毛发处理器,所述毛发处理器包括存储器和处理器,所述存储器中存储有至少一条程序指令,所述处理器通过加载并执行所述至少一条程序指令以实现如第一方面或第四方面所述的方法。
第五方面,提供了一种计算机存储介质,所述存储介质中存储有至少一条程序指令,所述至少一条程序指令用于被处理器加载并执行以实现第一方面或第四方面所述的方法。
第六方面,提供了一种控制电路,所述控制电路包括:微控制单元、电机驱动、电机、火线以及n根零线,所述微控制单元与所述电机驱动相连,所述电机驱动用于驱动所述电机转动,n为大于等于1的整数,所述零线与所述功能配件的零线端相连,所述控制电路识别不 同电阻值的所述功能配件。
可选的,所述控制电路还包括与所述微控制单元连接的传感器。
第七方面,提供了一种控制电路,所述控制电路包括:微控制单元、电机驱动、电机以及与所述微控制单元连接的感应元件,所述微控制单元与所述电机驱动相连,所述感应元件通过与所述功能配件接触,所述控制电路识别不同电阻值的所述功能配件。
可选的,所述控制电路还包括与所述微控制单元连接的传感器。
第八方面,提供了一种手柄,所述手柄包括第一方面所述的控制电路。
可选的,当n大于等于2的整数时,所述n根零线的引脚沿着所述手柄的连接端的内壁周侧分布式设置,所述连接端为所述手柄中用于与功能配件相连接的一端。
可选的,所述n根零线的引脚为弹片。
可选的,所述控制电路还包括与所述微控制单元连接的传感器,所述传感器检测握持手柄的握力值。
可选的,所述传感器设置于所述手柄的内壳的外壁,或者,所述手柄的外壳的内壁。
可选的,所述传感器包括至少两个,至少两个所述传感器分布式设置于所述手柄的内壳的外壁,或者,所述手柄的外壳的内壁。
第九方面,提供了一种毛发处理器,所述毛发处理器包括第三方面所述的手柄。
本申请与现有技术相比,其有益效果是:
通过在功能配件中设置标识模块,标识模块用于标识功能配件的功能,使得在毛发处理器手柄与不同功能配件装配时,毛发处理器手柄可以识别不同的功能配件,进而根据识别得到的功能配件来控制毛发处理器实现对应的功能;解决了现有技术中同一设备无法实现多种功能,设备功能单一的问题,达到了同一设备中可以通过切换功能配件的方式来实现不同功能,功能丰富的效果。
通过在毛发处理器的手柄处设置传感器,进而获取所述传感器检测到的握力值;检测所述握力值所属的握力范围,根据预设对应关系确定所述握力范围所对应的目标档位;控制所述毛发处理器以所述目标档位工作。解决了现有技术中用户自己卷发时操作比较麻烦,卷发效率较低的问题;达到了可以通过对手柄处施加不同压力的握力,进而调节不同档位提高卷发效率的效果。
通过在控制电路中设置n根零线,每根零线与功能配件装配之后与微控制单元之间的电阻值不同,进而使得可以根据识别得到的电阻值的不同来识别不同的功能配件,解决了现有 技术中同一设备无法实现多种功能,设备功能单一的问题,达到了同一设备中可以通过切换功能配件的方式来实现不同功能,功能丰富的效果。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。其中:
图1是本申请提出的毛发处理器的立体结构示意图;
图2是本申请提出的毛发处理器中的各种可能的功能配件的结构示意图;
图3是图2所示的各种可能的功能配件装配至图1所示的毛发处理器手柄之后的结构示意图;
图4是本申请提出的毛发处理器内的电路结构示意图;
图5是本申请提出的毛发处理器控制方法的方法流程图;
图6是本申请提出的毛发处理器控制方法的方法流程图;
图7是本申请提出的毛发处理器的手柄中设置有传感器的结构示意图;
图8是本申请提供的毛发处理器控制方法的方法流程图;
图9是本申请提供的毛发处理器中的一种可能的控制电路示意图;
图10是本申请提供的毛发处理器中的一种可能的控制电路示意图;
图11是本申请提供的毛发处理器中的一种可能的控制电路示意图;
图12是本申请提供的毛发处理器中的一种可能的控制电路示意图;
图13是本申请提供的毛发处理器中手柄的一种可能的立体结构示意图;
图14是本申请提供的手柄中的控制电路的电路示意图;
图15是本申请提供的手柄中的控制电路的一种可能的电路示意图;
图16是本申请提供的手柄中的控制电路的另一种可能的电路示意图。
具体实施方式
为使本申请的上述目的、特征和优点能够更为明显易懂,下面结合附图,对本申请的具体实施方式做详细的说明。可以理解的是,此处所描述的具体实施例仅用于解释本申请,而非对本申请的限定。另外还需要说明的是,为了便于描述,附图中仅示出了与本申请相关的 部分而非全部结构。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其它实施例,都属于本申请保护的范围。
本申请中的术语“包括”和“具有”以及它们任何变形,意图在于覆盖不排他的包含。例如包含了一系列步骤或单元的过程、方法、系统、产品或设备没有限定于已列出的步骤或单元,而是可选地还包括没有列出的步骤或单元,或可选地还包括对于这些过程、方法、产品或设备固有的其它步骤或单元。
在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本申请的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其它实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其它实施例相结合。
日常生活中,人们打理头发时,通常的需求为卷发、拉直头发、干发和梳头发,毛发处理器可以通过更换功能配件以实现上述多个功能中的至少一种功能,毛发处理器可以包括图1所示的毛发处理器手柄11以及至少两个功能配件,功能配件可以包括造型配件、吹风配件和梳头配件。其中,造型配件可以支持卷发、拉直头发或者通过不同操作同时支持卷发和拉直头发两种功能,比如,造型配件可以为图2中(a)图所示的直发器211或者图2中(b)图所示的卷发配件212;吹风配件可以为图2中(c)图所示的用于支持干发功能的吹风器213;梳头配件可以实现梳头功能,并且,实际实现时,根据梳头后头发的形状,梳头配件可以为图2中(d)图所示的直发梳214或者(e)图所示的卷发梳215。实际实现时,由于不同发型所需的卷发的弧度有所不同,因此,本实施例中的卷发配件212和卷发梳215可以包括多个具有不同尺寸的配件,在此不再赘述。当然实际实现时,功能配件还可以为用于实现其他功能的配件,本实施例对此并不做限定。
请参考图3,其示出了图2中的各种功能配件装配至毛发处理器手柄11之后构成的各种毛发处理器的结构示意图。其中,图3中的(a)图所示的毛发处理器为图2中的(a)图所示功能配件装配之后构成的毛发处理器,可以支持拉直头发功能;图3中的(b)图所示的毛发处理器为图2中的(b)图所示功能配件装配之后构成的毛发处理器,可以支持卷发功能;依次类推。
实际实现时,每个功能配件中设置有标识模块,不同功能配件中的标识模块所标识的信息不同。
标识模块为电阻、传感器和通信组件中的至少一种。其中,传感器可以为红外传感器;通信组件中携带有标识信息,通信组件可以为NFC(Near Field Communication,近距离通信 技术)组件、蓝牙组件中的至少一种。标识模块用于在毛发处理器手柄与功能配件装配之后标识每种功能配件。也即毛发处理器手柄可以通过识别该标识模块来识别当前装配的是何种功能配件。比如,区分是卷发配件,还是直发配件,又或者是干发配件,在此不再赘述。
以标识模块为电阻来举例说明,不同功能配件中设置不同电阻值的电阻,通过不同电阻值来标识不同功能。又比如,在标识模块为NFC组件时,可以通过不同的NFC信息来标识不同功能。
毛发处理器手柄11中包括电机、用于驱动电机(M)的驱动、MCU(Microcontroller Unit,微控制单元)、发热装置以及其他关联组件。其中,MCU中设置有ADC(analog to digital converter,模拟数字转换器),其他关联组件可以包括风扇、下拉电阻等等。在毛发处理器手柄11与目标功能配件装配之后,MCU即可通过ADC识别目标功能配件中的标识模块,继而根据识别结果实现对应的功能。
在标识模块为电阻时,即可识别得到目标功能配件中的目标电阻值,根据识别得到的目标电阻值控制毛发处理器实现对应的目标功能。
实施例1
请参考图4,其示出了毛发处理器手柄11中一种可能的控制电路410示意图。结合图4,在目标功能配件与毛发处理器手柄装配之后,MCU即可通过ADC读取目标功能配件中的电阻R2,根据读取到的R2的电阻值控制毛发处理器实现目标功能。图4仅以示出部分组件来举例说明,实际实现时,还可以包括更多或者更少的组件,本实施例对此并不做限定,并且图中,420为功能配件中的电路的示意图。
可选的,在读取到R2的电阻值之后,根据不同电阻值与不同功能之间的预设对应关系查询读取到的电阻值所对应的目标功能,进而控制毛发处理器实现该目标功能。可选的,受毛发处理器手柄与功能配件装配时供电电量的影响,读取到的电阻值与实际电阻值可能会有所偏差,因此,在本实施例中预设对应关系可以为不同电阻值范围与不同功能之间的对应关系,此时,在读取到目标功能配件中电阻的电阻值之后,即可确定读取到的电阻的电阻值所属的电阻值范围,查询确定的电阻值范围所对应的功能,控制毛发处理器实现确定的功能。比如,读取到的电阻值为2Ω,该电阻值属于1.5Ω~2.5Ω的范围,且该范围对应的功能为卷发功能,则可以控制毛发处理器你实现卷发功能。需要补充说明的是,若无法确定得到读取到的电阻值所对应的功能,则流程结束。
在标识模块为通信组件时,即可识别得到通信组件中预先携带的目标标识信息,根据识 别得到的目标标识信息控制毛发处理器实现对应的目标功能。
可选的,不同的功能配件需要的温度和风速不同,因此,在本实施例中控制毛发处理器实现目标功能的步骤包括:控制毛发处理器中的电机和/或发热装置工作以实现目标功能,电机用于带动风扇转动。
其中,控制电机以不同转速转动即可实现不同的风速,控制加热丝的加热功率即可实现不同的温度。
比如,目标电阻值表示目标功能配件为吹风配件,即可控制电机和发热装置工作。
综上所述,通过在功能配件中设置标识模块,标识模块用于标识功能配件的功能,使得在毛发处理器手柄与不同功能配件装配时,毛发处理器手柄可以识别不同的功能配件,进而根据识别得到的功能配件来控制毛发处理器实现对应的功能;解决了现有技术中同一设备无法实现多种功能,设备功能单一的问题,达到了同一设备中可以通过切换功能配件的方式来实现不同功能,功能丰富的效果。
实施例2
请参考图5,其示出了本申请一个实施例提供的毛发处理器控制方法的方法流程图,该毛发处理器控制方法可以用于图3所示的毛发处理器中,如图5所示,该方法包括:
步骤501,在毛发处理器手柄与目标功能配件装配之后,识别目标功能配件中的标识模块。
用户在需要使用毛发处理器来处理头发时,用户可以选择所需的功能配件,并将选择的目标功能配件装配至毛发处理器手柄中,此后毛发处理器即可识别装配的目标功能配件中的标识模块。比如,用户想要为自己卷发时,将造型配件安装至毛发处理器手柄,此后毛发处理器即可识别造型配件中的标识模块。
与上述实施例类似,标识模块可以为电阻或者通信组件,并且在标识模块为电阻时,本步骤包括:读取目标功能配件中的电阻的目标电阻值。在标识模块为通信组件时,本步骤包括:识别通信组件中携带的目标标识信息。
本步骤的详细技术细节请参考上述实施例,在此不再赘述。
步骤502,根据识别的标识模块控制毛发处理器实现目标功能配件所对应的目标功能。
在标识模块为电阻时,本步骤包括:控制毛发处理器实现目标电阻值所对应的目标功能。
在标识模块为通信组件时,本步骤包括:控制毛发处理器实现目标标识信息所对应的目标功能。
可选的,控制毛发处理器实现目标功能的步骤包括:
控制毛发处理器中的电机和/或发热装置工作以实现目标功能,电机用于驱动风扇转动。
实际实现时,可以包括:
根据目标功能控制电机以目标转速转动;
和/或,
根据目标功能控制发热装置以目标功率发热,目标功率大于0小于等于额定功率。
比如,在实现冷风吹干时,可以仅控制电机转动。又比如,在实现卷发时,可以控制发热装置以目标功率发热。再比如,在实现热风吹干时,可以同时控制电机转动以及发热装置发热。
以标识模块为电阻来举例说明,结合图6,在毛发处理器开启之后,毛发处理器进行初始化,此后,对装配的目标功能配件中的电阻进行采样,根据采样得到的电阻值确定是否存在对应的功能配件,若存在对应的功能配件,则控制电机和/或发热装置工作以实现确定的功能配件所对应的功能。可选的,如果无法确定得到采样得到的电阻值所对应的功能配件,则此时流程结束。
在一种可能的应用场景中,用户洗过头发之后需要吹干时,将吹风配件装配至毛发处理器手柄,毛发处理器检测吹风配件中的电阻值,在识别到检测到的电阻值为吹风配件中的电阻值时,即可控制毛发处理器实现吹风功能。
综上所述,通过在功能配件中设置标识模块,标识模块用于标识功能配件的功能,使得在毛发处理器手柄与不同功能配件装配时,毛发处理器手柄可以识别不同的功能配件,进而根据识别得到的功能配件来控制毛发处理器实现对应的功能;解决了现有技术中同一设备无法实现多种功能,设备功能单一的问题,达到了同一设备中可以通过切换功能配件的方式来实现不同功能,功能丰富的效果。
实施例3
在本实施例的各个应用场景中,结合图7,在毛发处理器的手柄处可以设置有传感器70,该传感器70用于检测用户的握力值。其中,该传感器70可以设置在毛发处理器手柄11中的预设位置处,预设位置为毛发处理器手柄11的外壳的内壁,或者,毛发处理器手柄11内壳的外壁,本实施例对其具体位置并不做限定。并且,基于人体工学该传感器70可以设置在毛发处理器手柄11中预设位置中用户握持时指腹所对应的位置处。另外,为了使得该传感器40能够快速准确的检测到握力,传感器70可以有一个也可以有多个;并且,在包括多个传感器时, 各个传感器可以均匀分布设置在上述预设位置,或者,点状分布或者阵列分布在上述预设位置,又或者,在指腹所对应的位置处沿着竖轴分布排列,在此并不做限定。
另外,传感器70的设置位置可以根据大数据统计得到的用户握持手柄时的常用位置,如图1和图2中11所示的位置。并且,在一种可能的实施例中,为了提示用户传感器70的位置,传感器70的位置处还可以设置有提示组件,比如,在手柄中传感器70所在位置处设置有预设颜色的按键。相应的,控制器可以根据传感器检测到的握力来控制毛发处理器执行相应的操作,其具体控制方法如下所述。
请参考图8,其示出了本申请一个实施例提供的毛发处理器控制方法的方法流程图,该毛发处理器控制方法可以用于如上所述的毛发处理器中,该毛发处理器控制方法可以包括:
步骤801,获取传感器检测到的握力值。
用户在使用毛发处理器时,用户可以握持手柄,相应的,手柄中的传感器可以检测到用户的握力值。请参考图9,其示出了毛发处理器手柄中的控制电路的结构示意图。如图9所示,控制电路包括电机、用于驱动电机(M)的驱动、MCU(Microcontroller Unit,微控制单元)、传感器、发热装置以及其他关联组件。其中,MCU中设置有ADC(analog to digital converter,模拟数字转换器),其他关联组件可以包括风扇、下拉电阻等等。在传感器检测到握力之后,MCU(Microcontroller Unit,微控制单元)可以相应的获取到传感器检测到的握力值。图9仅示出控制电路中的传感器、MCU、ADC、驱动和电机来示意说明。其中:
在传感器为握力传感器时,获取握力传感器检测到的握力值。握力传感器可以通过反馈电压信号至MCU的方式反馈握力值,并且反馈的电压值越大对应的握力的握力值越多,反馈的电压值越小对应的握力的握力值越小。
在传感器为霍尔传感器时,获取霍尔传感器检测到的霍尔电压值。用户握持手柄时,由于用户的握力的影响,霍尔传感器的磁场会发生变化,相应的,霍尔传感器可以检测到霍尔电压值,结合图9,MCU可以相应的获取到霍尔电压值。
上述仅以传感器为握力传感器或者霍尔传感器来举例说明,实际实现时,还可以为其他能够检测握力大小的传感器,本实施例对其具体实现并不做限定。
需要补充说明的是,实际实现时,毛发处理器中可以设置有开机按键,用户按压开机按键之后,毛发处理器开机,此后可以执行本步骤。当然,还可以为用户握持手柄并施加压力之后自动开机。
步骤802,检测握力值所属的握力范围,根据预设对应关系确定握力范围所对应的目标档位;
通常情况下,毛发处理器中可以包括电机和发热装置,在实现各种功能时,包括使电机转动进而驱动风扇旋转出风,或者,使发热装置发热,或者,同时使电机转动以及发热装置发热。然而根据个人使用需求不同,需要控制电机以不同速度转动或者控制发热装置以不同功率发热,因此毛发处理器中可以设置多个档位,在检测到握力大小之后,可以检测握力值所属的握力范围,进而根据预设对应关系确定当前用户所需使用的档位。其中,预设对应关系为不同握力范围与不同档位之间的对应关系,且预设对应关系可以为默认的对应关系,也可以为用户自定义的对应关系。以预设对应关系为用户自定义的对应关系来举例说明,某初中女生在使用毛发处理器之前,可以根据自己的力气大小来设置上述预设对应关系,预设对应关系中的握力范围的握力值较小;而某成年男子在使用毛发处理器之前,即可设置较大的各个握力范围与档位之间的对应关系。
毛发处理器设置有n个档位,握力范围有n个,也即可以预先设置有n个阈值,第i个握力范围为第i阈值≤握力<第i+1阈值,第n个握力范围为握力大于等于第n阈值;1≤i<n,i为整数,n为大于等于2的整数。在检测到握力所属的握力范围为第i个,则确定毛发处理器需要以i档工作。
比如,以设置有3个档位来举例说明,可以有3个握力范围,第1握力范围为第1阈值≤握力<第2阈值,第2握力范围为第2阈值≤握力<第3阈值,第3握力范围为第3阈值≤握力。
步骤803,控制毛发处理器以目标档位工作。
在确定用户当前所需使用的目标档位之后,即可控制毛发处理器以目标档位工作。其中,本步骤可以包括:控制毛发处理器中的电机和/或发热装置以目标档位所对应的功率进行工作。
当然,在本申请使用的毛发处理器为可以通过更换功能配件来实现不同功能的毛发处理器时,本步骤可以包括:在手柄与目标功能配件装配之后,控制毛发处理器以目标档位实现目标功能配件所对应的目标功能。
在目标功能配件装配至手柄之后,确定目标功能配件所对应的目标功能的确定方式如下:
在第一种可能的实施方式中:
每个功能配件中设置有标识模块,不同功能配件中的标识模块所标识的信息不同。
标识模块为电阻、传感器和通信组件中的至少一种。其中,传感器可以为红外传感器;通信组件中携带有标识信息,通信组件可以为NFC(Near Field Communication,近距离通信技术)组件、蓝牙组件中的至少一种。标识模块用于在毛发处理器手柄与功能配件装配之后标识每种功能配件。也即毛发处理器手柄可以通过识别该标识模块来识别当前装配的是何种功能配件。比如,区分是卷发配件,还是直发配件,又或者是干发配件,在此不再赘述。
以标识模块为电阻来举例说明,不同功能配件中设置不同电阻值的电阻,通过不同电阻值来标识不同功能。又比如,在标识模块为NFC组件时,可以通过不同的NFC信息来标识不同功能。
在毛发处理器手柄11与目标功能配件装配之后,MCU即可通过ADC识别目标功能配件中的标识模块,继而根据识别结果实现对应的功能。
在标识模块为电阻时,即可识别得到目标功能配件中的目标电阻值,根据识别得到的目标电阻值控制毛发处理器实现对应的目标功能。
请参考图10,其示出了毛发处理器手柄11中一种可能的控制电路1010示意图。结合图10,在目标功能配件与毛发处理器手柄装配之后,MCU即可通过ADC读取目标功能配件中的电阻R2,根据读取到的R2的电阻值控制毛发处理器实现目标功能。图10仅以示出部分组件来举例说明,实际实现时,还可以包括更多或者更少的组件,本实施例对此并不做限定,并且图中,1020为功能配件中的电路的示意图。上述仅以通过ADC来读取目标功能配件中的电阻来举例说明,可选的,控制电路1010中还可以包括用于识别电阻值的第二传感器,第二传感器与MCU相连,在毛发处理器手柄与功能配件1020装配之后,第二传感器与连接的电阻的回路导通,此时,第二传感器即可识别得到回路中的电阻的电阻值。比如,请参考图11,其示出了在控制电路1010中包括第二传感器时的电路示意图。
可选的,在读取到R2的电阻值之后,根据不同电阻值与不同功能之间的预设对应关系查询读取到的电阻值所对应的目标功能,进而控制毛发处理器实现该目标功能。可选的,受毛发处理器手柄与功能配件装配时供电电量的影响,读取到的电阻值与实际电阻值可能会有所偏差,因此,在本实施例中预设对应关系可以为不同电阻值范围与不同功能之间的对应关系,此时,在读取到目标功能配件中电阻的电阻值之后,即可确定读取到的电阻的电阻值所属的电阻值范围,查询确定的电阻值范围所对应的功能,控制毛发处理器实现确定的功能。比如,读取到的电阻值为2Ω,该电阻值属于1.5Ω~2.5Ω的范围,且该范围对应的功能为卷发功能,则可以控制毛发处理器你实现卷发功能。需要补充说明的是,若无法确定得到读取到的电阻值所对应的功能,则流程结束。
在标识模块为通信组件时,即可识别得到通信组件中预先携带的目标标识信息,根据识别得到的目标标识信息控制毛发处理器实现对应的目标功能。
可选的,不同的功能配件需要的温度和风速不同,因此,在本实施例中控制毛发处理器实现目标功能的步骤包括:控制毛发处理器中的电机和/或发热装置工作以实现目标功能,电机用于带动风扇转动。
其中,控制电机以不同转速转动即可实现不同的风速,控制加热丝的加热功率即可实现不同的温度。
比如,目标电阻值表示目标功能配件为吹风配件,即可控制电机和发热装置工作。
在第二种可能的实施方式中:请参考图12,其示出了本申请一个实施例提供的毛发处理器控制电路的电路示意图,如图12所示,所述控制电路包括:MCU、电机驱动、电机(图中以M表示)、火线(图中未示出)以及n根零线,MCU与电机驱动相连,电机驱动用于驱动电机转动,n为大于等于2的整数;
在功能配件装配之后,每根零线与功能配件的零线端相连,并在与零线端连接之后接地;且在不同功能配件装配之后MCU与功能配件之间的电阻值不同。实际实现时,在毛发处理器手柄11与目标功能配件装配之后,MCU即可通过ADC识别电阻值。
不同功能配件装配之后与MCU之间的电阻值不同可以通过两种实现方式,第一种,通过在控制电路中设置不同阻值的电阻,第二种,在功能配件中设置不同阻值的电阻。因此,下述将分开两种实现方式分别进行说明。
在第一种可能的实现方式中,控制电路中可以包括m个电阻,m为大于等于n的整数,控制电路的每根零线与MCU之间连接有至少一个电阻,且不同零线与MCU之间连接的电阻的阻值不同。其中,不同零线与MCU之间连接的电阻可以为一个电阻,也可以为多个电阻,并且在是多个电阻时,可以是多个电阻串联,也可以是多个电阻并联,本实施例对其连接关系并不做限定。图12即以每根零线与MCU之间连接一个电阻来示意说明。另外,在功能配件与毛发处理器手柄装配之后,请参考图12,控制电路1010中的每个电阻可以通过功能配件1020中的弹片接地,进而构成回路。
在第二种可能的实现方式中,控制电路1010中还可以仅设置一根火线和一根零线,并在不同功能配件中设置不同的电阻值,这样,在功能配件装配之后,零线与功能配件中的零线端连接之后接地,并且MCU即可根据识别得到的不同功能配件中的不同电阻来区别当前装配的是何种功能配件,本实施例在此不再赘述。通过将用于指示不同功能配件的电阻分别设置在各个功能配件中,简化了毛发处理器手柄中的控制电路。
综上,在不同功能配件装配之后,MCU即可通过识别电阻的电阻值来识别当前装配的功能配件是何种功能配件。
毛发处理器手柄设置有两端,一端用于供用户握持,另一端用于与功能配件装配连接,在上述本步骤的第二种实现方式中,在设置至少两根零线时,为了避免功能配件装配之后,由于相邻两根零线之间的距离较近进而导致回路误接通功能配件识别有误的问题,在一种可 能的实施方式中,n根零线的引脚沿着毛发处理器手柄的连接端的内壁周侧分布式设置,比如,请参考图13,其示出了3根零线1301的一种可能的分布式设置方式。可选的,相邻两根零线1301的引脚在内壁周侧的距离大于预设距离。通过将n根零线1301分布式设置,使得在功能配件被装配之后,由于相邻两根零线1301之间的距离大于预设距离而使得每个功能配件能与对应的零线1301相连,进而准确识别得到当前装配的功能配件,提高了功能配件的识别准确度。图中1302表示火线。
可选的,n根零线在控制电路中的引出端可以实现为弹片,由此在功能配件装配之后,可以与功能配件中的零线端良好接触,避免由于接触不良而导致的功能配件无法识别或者识别有误的问题。
综上所述,通过在毛发处理器的手柄处设置传感器,进而获取所述传感器检测到的握力值;检测握力值所属的握力范围,根据预设对应关系确定握力范围所对应的目标档位;控制所述毛发处理器以所述目标档位工作。解决了现有技术中用户自己卷发时操作比较麻烦,卷发效率较低的问题;达到了可以通过对手柄处施加不同压力的握力,进而调节不同档位提高卷发效率的效果。
在上述实施例的一种可能的实施例中,用户在使用毛发处理器卷发时中间需要调整位置,也即用户可能会将毛发处理器放置在桌面,或者,用户减少握力以调整位置,但是后续还会继续使用,因此在毛发处理器中包括发热装置时,为了降低损耗并提高发热装置达到卷发所需的预设温度的时间,在控制毛发处理器以目标档位工作之后,该方法还包括:
在检测到握力小于最低档位的临界握力时,控制发热装置的温度在预设温度。在发热装置的周测可以设置温度传感器,通过检测温度传感器的温度来控制发热装置保持在预设温度。
比如,在传感器检测得到的握力小于第一阈值时,可以控制发热装置停止发热,并实时获取温度传感器的温度,在检测到的温度低于预设温度时,控制发热装置继续发热;并在检测到的温度高于预设温度时,控制发热装置停止发热。
在上述实施例的另一种可能的实施例中,由于用户拿起毛发处理器时可能会先开机,之后选择需要操作的头发进行操作,因此在毛发处理器工作时需要使用发热装置发热时,为了使得用户使用毛发处理器时能快速达到所需的温度,获取传感器检测到的握力之前,该方法还包括:
第一,接收开启毛发处理器的开机信号;
第二,在接收到开机信号之后,控制发热装置以预设功率预热。
另外,由于毛发处理器开始工作之后,发热装置会发热,因此为了避免误操作时给用户 带来危险,特别是儿童误操作时烫伤儿童,接收开启毛发处理器的开机信号,包括:
接收按压手柄中的开机按键的按压信号;
将在接收到按压信号的同时传感器检测到的握力大于开机阈值时,确定为接收到开机信号。
通过在同时接收到按压信号且握力大于开机阈值时,开启毛发处理器,避免了误操作带来的风险。
在上述实施例的再一种可能的实施例中,在获取到传感器检测到的握力值之后,上述方法还可以包括:
第一,检测获取到的握力值是否小于预设握力值;
预设握力值为预设对应关系中各个握力范围中的最小握力值。也即预设握力值为第1阈值。
第二,若获取到的握力值小于预设握力值,则继续执行获取传感器检测到的握力值得步骤。
在获取到的握力值小于预设握力值时,此时说明用户施加的握力无法触发毛发处理器工作,因此此时继续执行获取握力值的步骤,本实施例在此不再赘述。
实施例4
本申请一个实施例还提供了一种毛发处理器,所述毛发处理器包括存储器和处理器,所述存储器中存储有至少一条程序指令,所述处理器通过加载并执行所述至少一条程序指令以实现如上所述的方法。
实施例5
本申请一个实施例还提供了一种计算机存储介质,所述存储介质中存储有至少一条程序指令,所述至少一条程序指令用于被处理器加载并执行以实现如上所述的方法
实施例6
请参考图14,其示出了本申请一个实施例提供的控制电路1410的电路示意图,如图14所示,所述控制电路包括:微控制单元141、电机驱动142、电机143(图中以M表示)、火线(图中未示出)以及n根零线144,微控制单元141与电机驱动142相连,电机驱动142用于驱动电机143转动,n为大于等于1的整数;
在功能配件装配之后,每根零线144与功能配件的零线端相连,并在与零线端连接之后 接地;且在不同功能配件装配之后微控制单元141与功能配件之间的电阻值不同。实际实现时,微控制单元中可以包括ADC(analog to digital converter,模拟数字转换器),在手柄11与目标功能配件装配之后,微控制单元即可通过ADC识别电阻值。
不同功能配件装配之后与微控制单元141之间的电阻值不同可以通过两种实现方式,第一种,通过在控制电路1410中设置不同阻值的电阻,第二种,在功能配件中设置不同阻值的电阻。并且,当在控制电路1410中设置不同阻值的电阻时,为了识别不同的功能配件,在功能配件装配之后,需要通过连通控制电路中的不同阻值的电阻也即连通不同回路来对不同功能配件进行区分,因此此时零线可以为至少2根;而当在不同功能配件中设置不同阻值的电阻时,由于功能配件装配之后即可形成不同的回路,因此,此时零线可以为1根。下述将分开两种实现方式分别进行说明。
在第一种可能的实现方式中,控制电路1410中可以包括m个电阻,m为大于等于n的整数,控制电路1410的每根零线144与微控制单元141之间连接有至少一个电阻,且不同零线144与微控制单元141之间连接的电阻的阻值不同。其中,不同零线144与微控制单元141之间连接的电阻可以为一个电阻,也可以为多个电阻,并且在是多个电阻时,可以是多个电阻串联,也可以是多个电阻并联,本实施例对其连接关系并不做限定。图14即以每根零线144与微控制单元141之间连接一个电阻来示意说明。另外,在功能配件1420与手柄装配之后,请参考图14,控制电路中的每个电阻可以通过功能配件1420中的弹片接地,进而构成回路。
在第二种可能的实现方式中,控制电路1410中还可以仅设置一根火线和一根零线,并在不同功能配件中设置不同的电阻值,这样,在功能配件装配之后,零线与功能配件中的零线端连接之后接地,并且微控制单元141即可根据识别得到的不同功能配件中的不同电阻来区别当前装配的是何种功能配件,本实施例在此不再赘述。通过将用于指示不同功能配件的电阻分别设置在各个功能配件中,简化了手柄中的控制电路。
综上,在不同功能配件装配之后,微控制单元141即可通过识别电阻的电阻值来识别当前装配的功能配件是何种功能配件。
实际实现时,为了识别不同功能配件,控制电路还可以包括微控制单元141、电机驱动142、电机143(图中以M表示)以及与微控制单元141相连的感应元件145,感应元件145识别不同功能配件中的电阻的电阻值,不同功能配件中的电阻的电阻值不同。在手柄与功能配件1420装配之后,感应元件145与连接的电阻的回路导通,此时,感应元件145即可识别得到回路中的电阻的电阻值。比如,以在不同功能配件中设置不同阻值的电阻(图中R1为接地电阻,R2为功能配件中的电阻)来示意说明,请参考图15,其示出了在控制电路中包括感应元件145 时控制电路1410的电路示意图。上述仅以通过感应元件145来识别不同功能配件中的不同电阻值进而识别不同功能配件来举例说明,可选的,实际实现时,不同功能配件中还可以设置不同的电子标签,在不同功能配件装配之后,感应元件通过读取不同的电子标签来识别不同功能配件,本实施例对此并不做限定。其中,电子标签可以为NFC(Near Field Communication,近距离通信技术)标签、红外标签等等。
此外,毛发处理器中可以设置有手柄,用户可以通过握持手柄来控制使用毛发处理器,因此,在本实施例的一种可能的实施例中,结合图16,上述控制电路1410还可以包括与微控制单元141连接的传感器146,该传感器146用于检测握持手柄的握力值。
实际实现时,在传感器146为握力传感器时,获取握力传感器检测到的压力值。握力传感器可以通过反馈电压信号至微控制单元141的方式反馈压力值,并且反馈的电压值越大对应的握力的压力值越多,反馈的电压值越小对应的握力的压力值越小。而在传感器146为霍尔传感器时,获取霍尔传感器检测到的霍尔电压值。用户握持手柄时,由于用户的握力的影响,霍尔传感器的磁场会发生变化,相应的,霍尔传感器可以检测到霍尔电压值。
上述仅以传感器146为握力传感器或者霍尔传感器来举例说明,实际实现时,还可以为其他能够检测握力大小的传感器,本实施例对其具体实现并不做限定。
上述仅以控制电路中包括以上部件来举例说明,实际实现时,控制电路中还可以包括其他关联组件,比如可以包括风扇、下拉电阻等等,在此并不做赘述。
综上所述,通过在控制电路中设置n根零线,每根零线与功能配件装配之后与微控制单元之间的电阻值不同,进而使得可以根据识别得到的电阻值的不同来识别不同的功能配件,解决了现有技术中同一设备无法实现多种功能,设备功能单一的问题,达到了同一设备中可以通过切换功能配件的方式来实现不同功能,功能丰富的效果。
实施例8
本申请一个实施例还提供了一种手柄,该手柄中包括上述实施例所述的控制电路。
手柄设置有两端,一端用于供用户握持,另一端用于与功能配件装配连接,在上述控制电路中,在设置至少两根零线时,为了避免功能配件装配之后,由于相邻两根零线之间的距离较近进而导致回路误接通功能配件识别有误的问题,在一种可能的实施方式中,n根零线的引脚沿着手柄的连接端的内壁周侧分布式设置,比如,请参考图13,其示出了3根零线1301的一种可能的分布式设置方式。可选的,相邻两根零线1201的引脚在所述内壁周侧的距离大于预设距离。通过将n根零线1301分布式设置,使得在功能配件被装配之后,由于相邻两根 零线1301之间的距离大于预设距离而使得每个功能配件能与对应的零线1301相连,进而准确识别得到当前装配的功能配件,提高了功能配件的识别准确度。图13中1302表示火线。
可选的,n根零线在控制电路中的引出端可以实现为弹片,由此在功能配件装配之后,可以与功能配件中的零线端良好接触,避免由于接触不良而导致的功能配件无法识别或者识别有误的问题。
结合上述实施例,在控制电路中包括用于检测握持手柄的握力的传感器时,该传感器可以设置在手柄中的预设位置处,预设位置为手柄的外壳的内壁,或者,手柄内壳的外壁,本实施例对其具体位置并不做限定。并且,基于人体工学该传感器可以设置在手柄中预设位置中用户握持时指腹所对应的位置处。另外,为了使得该传感器能够快速准确的检测到握力,传感器可以有一个也可以有多个;并且,在包括多个传感器时,各个传感器可以均匀分布设置在上述预设位置,或者,点状分布或者阵列分布在上述预设位置,又或者,在指腹所对应的位置处沿着竖轴分布排列,在此并不做限定。
综上所述,通过提供一种手柄,该手柄中包括上述实施例所述的控制电路,解决了现有技术中同一设备无法实现多种功能,设备功能单一的问题,达到了同一设备中可以通过切换功能配件的方式来实现不同功能,功能丰富的效果。
实施例9
本实施例还提供了一种毛发处理器,该毛发处理器可以包括上述实施例所述的手柄。手柄的具体结构详见上述实施例,在此不再赘述。
以上所述仅为本申请的实施方式,并非因此限制本申请的专利范围,凡是利用本申请说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其它相关的技术领域,均同理包括在本申请的专利保护范围内。

Claims (31)

  1. 一种毛发处理器控制方法,其特征在于,所述方法用于毛发处理器中,所述毛发处理器包括毛发处理器手柄和至少两个功能配件,所述方法包括:
    在所述毛发处理器手柄与目标功能配件装配之后,识别所述目标功能配件中的标识模块;不同功能配件中的所述标识模块所标识的信息不同;
    通过识别所述标识模块控制所述毛发处理器实现所述目标功能配件所对应的目标功能。
  2. 根据权利要求1所述的方法,其特征在于,在所述标识模块为电阻时,所述识别所述目标功能配件中的标识模块,包括:
    获取所述目标功能配件中的所述电阻所对应的目标电压值;
    所述通过识别所述标识模块控制所述毛发处理器实现所述目标功能配件所对应的目标功能,包括:
    控制所述毛发处理器实现所述目标电压值所对应的所述目标功能。
  3. 根据权利要求1所述的方法,其特征在于,在所述标识模块为通信组件时,所述识别所述目标功能配件中的标识模块,包括:
    识别所述通信组件中携带的目标标识信息;
    所述通过识别所述标识模块控制所述毛发处理器实现所述目标功能配件所对应的目标功能,包括:
    控制所述毛发处理器实现所述目标标识信息所对应的所述目标功能。
  4. 根据权利要求1至3任一所述的方法,其特征在于,所述通过识别所述标识模块控制所述毛发处理器实现所述目标功能配件所对应的目标功能,包括:
    控制所述毛发处理器中的电机和/或发热装置工作以实现所述目标功能,所述电机用于驱动风扇转动。
  5. 根据权利要求4所述的方法,其特征在于,所述控制所述毛发处理器中的电机和/或发热装置工作以实现所述目标功能,包括:
    根据所述目标功能控制所述电机以目标转速转动;
    和/或,
    根据所述目标功能控制所述发热装置以目标功率发热,所述目标功率大于0小于等于额定功率。
  6. 一种毛发处理器,其特征在于,所述毛发处理器包括:毛发处理器手柄和至少两个功能配件,每个功能配件中设置有标识模块,且不同功能配件中的所述标识模块所标识的信息不同,所述毛发处理器用于实现如权利要求1至5任一所述的方法。
  7. 根据权利要求6所述的毛发处理器,其特征在于,所述标识模块为电阻、传感器和通信组件中的至少一种。
  8. 根据权利要求7所述的毛发处理器,其特征在于,所述通信组件包括近距离通信技术NFC组件和/或蓝牙组件。
  9. 根据权利要求6至8任一所述的毛发处理器,其特征在于,每个功能配件为造型配件、吹风配件、梳头配件中的任一种。
  10. 一种毛发处理器控制方法,其特征在于,所述方法用于手柄处设置有传感器的毛发处理器中,所述方法包括:
    获取所述传感器检测到的握力值;
    检测所述握力值所属的握力范围,根据预设对应关系确定所述握力范围所对应的目标档位,所述预设对应关系包括不同握力范围与不同档位之间的对应关系;
    控制所述毛发处理器以所述目标档位工作。
  11. 根据权利要求10所述的方法,其特征在于,所述毛发处理器设置有n个档位,握力范围有n个,第i个握力范围为第i阈值≤握力<第i+1阈值,第n个握力范围为握力大于等于第n阈值;1≤i<n,i为整数,n为大于等于2的整数。
  12. 根据权利要求10所述的方法,其特征在于,所述获取所述传感器检测到的握力值,包括:
    在所述传感器为握力传感器时,获取所述握力传感器检测到的所述握力值;
    在所述传感器为霍尔传感器时,获取所述霍尔传感器检测到的霍尔电压值。
  13. 根据权利要求10所述的方法,其特征在于,所述方法还包括:
    若获取到的所述握力值小于预设握力值,则继续执行所述获取所述传感器检测到的握力值的步骤,所述预设握力值为所述预设对应关系中各个握力范围中的最小握力值。
  14. 根据权利要求10所述的方法,其特征在于,所述毛发处理器包括发热装置,所述控制所述毛发处理器以所述目标档位工作之后,还包括:
    在检测到所述握力值小于最低档位的临界握力值时,控制所述发热装置的温度在预设温度。
  15. 根据权利要求10所述的方法,其特征在于,所述毛发处理器包括发热装置,所述获取所述传感器检测到的握力值之前,所述方法还包括:
    接收开启所述毛发处理器的开机信号;
    在接收到所述开机信号之后,控制所述发热装置以预设功率预热。
  16. 根据权利要求15所述的方法,其特征在于,所述接收开启所述毛发处理器的开机信号,包括:
    接收按压所述手柄中的开机按键的按压信号;
    将在接收到所述按压信号的同时所述传感器检测到的握力值大于开机阈值时,确定为接收到所述开机信号。
  17. 根据权利要求10所述的方法,其特征在于,所述控制所述毛发处理器以所述目标档位工作,包括:
    控制所述毛发处理器中的电机和/或发热装置以所述目标档位所对应的功率进行工作。
  18. 根据权利要求10至17任一所述的方法,其特征在于,所述毛发处理器包括手柄以及至少两个功能配件,所述控制所述毛发处理器以所述目标档位工作,包括:
    在所述手柄与目标功能配件装配之后,控制所述毛发处理器以所述目标档位实现所述目标功能配件所对应的目标功能。
  19. 一种毛发处理器,其特征在于,所述毛发处理器包括存储器和处理器,所述存储器中存储有至少一条程序指令,所述处理器通过加载并执行所述至少一条程序指令以实现如权利要求1-5、10-18任一所述的方法。
  20. 一种计算机存储介质,其特征在于,所述存储介质中存储有至少一条程序指令,所述至少一条程序指令用于被处理器加载并执行以实现权利要求1-5、10-18任一所述的方法。
  21. 一种控制电路,用于与功能配件装配,其特征在于,所述控制电路包括:微控制单元、电机驱动、电机、火线以及n根零线,所述微控制单元与所述电机驱动相连,n为大于等于1的整数,所述零线与所述功能配件的零线端相连,所述控制电路识别不同电阻值的所述功能配件。
  22. 根据权利要求21所述的控制电路,其特征在于,所述控制电路还包括与所述微控制单元连接的传感器。
  23. 一种控制电路,用于与功能配件装配,其特征在于,所述控制电路包括:微控制单元、电机驱动、电机以及与所述微控制单元连接的感应元件,所述微控制单元与所述电机驱动相连,所述感应元件通过与所述功能配件接触,所述控制电路识别不同电阻值的所述功能配件。
  24. 根据权利要求23所述的控制电路,其特征在于,所述控制电路还包括与所述微控制单元连接的传感器。
  25. 一种手柄,其特征在于,所述手柄包括权利要求21所述的控制电路。
  26. 根据权利要求25所述的手柄,其特征在于,当n大于等于2的整数时,所述n根零 线的引脚沿着所述手柄的连接端的内壁周侧分布式设置,所述连接端为所述手柄中用于与功能配件相连接的一端。
  27. 根据权利要求26所述的手柄,其特征在于,所述n根零线的引脚为弹片。
  28. 根据权利要求25所述的手柄,其特征在于,所述控制电路还包括与所述微控制单元连接的传感器,所述传感器检测握持手柄的握力值。
  29. 根据权利要求28所述的手柄,其特征在于,所述传感器设置于所述手柄的内壳的外壁,或者,所述手柄的外壳的内壁。
  30. 根据权利要求28所述的手柄,其特征在于,所述传感器包括至少两个,至少两个所述传感器分布式设置于所述手柄的内壳的外壁,或者,所述手柄的外壳的内壁。
  31. 一种毛发处理器,其特征在于,所述毛发处理器包括如权利要求25至30任一所述的手柄。
PCT/CN2021/121316 2020-10-30 2021-09-28 一种毛发处理器控制方法、毛发处理器和存储介质 WO2022089132A1 (zh)

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Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CA2525344A1 (en) * 2005-11-03 2007-05-03 Duna Enterprises S.A. Programmable manual hair dryer with multiple functions
CN101111201A (zh) * 2005-01-31 2008-01-23 法科股份有限公司 电解去毛发装置
CN104586031A (zh) * 2015-02-23 2015-05-06 管存忠 一种压力控制的美发智能吹风机
CN104643505A (zh) * 2013-11-25 2015-05-27 陈训宏 多用途卷发器
CN111588158A (zh) * 2020-07-06 2020-08-28 开平市鑫锦电器科技有限公司 一种多功能美发器
CN112198831A (zh) * 2020-10-30 2021-01-08 追觅科技(上海)有限公司 控制电路、手柄和毛发处理器
CN112230588A (zh) * 2020-10-30 2021-01-15 追觅科技(上海)有限公司 毛发处理器控制方法、毛发处理器和存储介质
CN112273830A (zh) * 2020-10-30 2021-01-29 追觅科技(上海)有限公司 毛发处理器和毛发处理器控制方法
CN212933307U (zh) * 2020-10-30 2021-04-09 追觅科技(上海)有限公司 控制电路、手柄和毛发处理器

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101111201A (zh) * 2005-01-31 2008-01-23 法科股份有限公司 电解去毛发装置
CA2525344A1 (en) * 2005-11-03 2007-05-03 Duna Enterprises S.A. Programmable manual hair dryer with multiple functions
CN104643505A (zh) * 2013-11-25 2015-05-27 陈训宏 多用途卷发器
CN104586031A (zh) * 2015-02-23 2015-05-06 管存忠 一种压力控制的美发智能吹风机
CN111588158A (zh) * 2020-07-06 2020-08-28 开平市鑫锦电器科技有限公司 一种多功能美发器
CN112198831A (zh) * 2020-10-30 2021-01-08 追觅科技(上海)有限公司 控制电路、手柄和毛发处理器
CN112230588A (zh) * 2020-10-30 2021-01-15 追觅科技(上海)有限公司 毛发处理器控制方法、毛发处理器和存储介质
CN112273830A (zh) * 2020-10-30 2021-01-29 追觅科技(上海)有限公司 毛发处理器和毛发处理器控制方法
CN212933307U (zh) * 2020-10-30 2021-04-09 追觅科技(上海)有限公司 控制电路、手柄和毛发处理器

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