Penetration enhancing control method, cosmetic device, and computer readable storage medium
Patent Information
- Application Number
- CN202311319735.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-12
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2043-10-12
AI Technical Summary
[0003]目前,在使用美容仪向皮肤输出美容液且对美容液进行促渗的过程中,美容仪的促渗模块的输出功率常常与美容液的输出情况不匹配,使得美容液的促渗效果不佳,影响皮肤对美容液的吸收,还会造成美容液的浪费
[0008]本申请提供的促渗控制方法、美容仪及计算机可读存储介质,通过确定所述出液装置输送至皮肤表面的待促渗物质的输出相关参数,并根据所述输出相关参数控制调节所述离子促渗组件的输出强度,可使得离子促渗组件的输出强度与输出至皮肤表面的待促渗物质的输出情况相适配,进而可使得美容仪的离子促渗作用达到最佳状态,还可避免待促渗物质的浪费。
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Figure CN117159903B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of beauty equipment technology, and in particular to a method for controlling penetration, a beauty instrument, and a computer-readable storage medium. Background Technology
[0002] With the development of the beauty industry, beauty devices integrate beauty serums and penetration-enhancing modules. While delivering beauty serums to the skin, the device's penetration-enhancing function can promote the penetration of the beauty serum into the skin and increase its penetration rate.
[0003] Currently, when using beauty devices to deliver beauty serum to the skin and promote its penetration, the output power of the penetration-enhancing module often does not match the output of the beauty serum, resulting in poor penetration enhancement, affecting the skin's absorption of the serum, and causing waste of the serum. Summary of the Invention
[0004] To address the aforementioned technical problems, this application provides a penetration-enhancing control method, a beauty device, and a computer-readable storage medium, which adapts the output intensity of the ion penetration-enhancing component to the output of the substance to be penetrated to the skin surface by the liquid outlet device, thereby enabling the ion penetration-enhancing effect of the beauty device to reach its optimal state and avoiding the waste of the substance to be penetrated.
[0005] This application provides a method for controlling penetration enhancement, applied to a beauty device. The beauty device includes a liquid dispensing device and an ion penetration enhancement component. The liquid dispensing device stores a substance to be enhanced for penetration and is used to deliver the substance to the skin. The ion penetration enhancement component includes at least two electrodes spaced apart, which, when outputting voltages of opposite polarities, drive the substance to be enhanced delivered by the liquid dispensing device to penetrate into the skin. The penetration enhancement control method includes: determining output-related parameters of the substance to be enhanced when the liquid dispensing device delivers the substance to the skin, the output-related parameters including flow rate and / or flow volume; and controlling and adjusting the output intensity of the ion penetration enhancement component based on the determined output-related parameters of the substance to be enhanced.
[0006] A second aspect of this application provides a beauty device, comprising a liquid dispensing device, an ion penetration enhancing component, and a control module. The liquid dispensing device stores a substance to be penetrated and is used to deliver the substance to the skin. The ion penetration enhancing component includes at least two electrodes spaced apart, which, when outputting voltages of opposite polarities, drive the substance to be penetrated into the skin. The control module is connected to the liquid dispensing device and the ion penetration enhancing component, and is used to determine output-related parameters of the substance to be penetrated when the liquid dispensing device delivers the substance to the skin. These output-related parameters include flow rate and / or flow volume. Based on the determined output-related parameters of the substance to be penetrated, the control module controls and adjusts the output intensity of the ion penetration enhancing component.
[0007] A third aspect of this application provides a computer-readable storage medium storing a computer program, which is executed by a processor to implement the aforementioned permeation control method.
[0008] The penetration-enhancing control method, beauty device, and computer-readable storage medium provided in this application determine the output-related parameters of the substance to be enhanced for penetration delivered to the skin surface by the liquid outlet device, and control and adjust the output intensity of the ion penetration-enhancing component according to the output-related parameters. This allows the output intensity of the ion penetration-enhancing component to be matched with the output of the substance to be enhanced for penetration delivered to the skin surface, thereby enabling the ion penetration-enhancing effect of the beauty device to reach the optimal state and avoiding the waste of the substance to be enhanced for penetration. Attached Figure Description
[0009] To more clearly illustrate the technical solution of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0010] Figure 1 This is a flowchart of an embodiment of the permeation control method provided in this application.
[0011] Figure 2 This is an exploded structural diagram of a beauty device provided in one embodiment of this application.
[0012] Figure 3 A flowchart of a permeation control method provided in another embodiment of this application.
[0013] Figure 4 A flowchart of a permeation control method provided in another embodiment of this application.
[0014] Figure 5 for Figure 2 The diagram shows the structure of the beauty device from another angle.
[0015] Figure 6 for Figure 2 The diagram shows a partial structural representation of the beauty device.
[0016] Explanation of reference numerals in the attached figures: 100-Beauty instrument; 10-Dispensing device; 20-Ion permeation enhancement component; 21-Electrode; 30-Control module; 50-Contact end; 51-Contact surface; 60-Infusion level button; 40-Display screen; 11-Storage component; 12-Drive mechanism; 121-Infusion pump; 122-Motor; 52-Dispensing port; 53-Connecting channel; 54-Infusion channel; 111-Dispensing end; 112-Storage chamber; 1211-Air extraction port; 70-Housing shell. Detailed Implementation
[0017] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0018] In the description of this application, the terms "first," "second," etc., are used to distinguish different objects, rather than to describe a specific order. In addition, the terms "upper," "inner," "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0019] In the description of this application, unless otherwise expressly specified and limited, the term "connection" should be interpreted broadly. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection or an indirect connection through an intermediate medium; it can also refer to the internal connection of two components; it can be a communication connection; or it can be an electrical connection. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0020] Please see Figure 1 , Figure 1This is a flowchart illustrating a penetration-enhancing control method according to an embodiment of this application. The penetration-enhancing control method can be applied to a beauty device, which includes a liquid dispensing device and an ion penetration-enhancing component. The liquid dispensing device stores a substance to be penetrated and is used to deliver the substance to the skin. The ion penetration-enhancing component includes at least two electrodes spaced apart. These at least two electrodes are used to drive the substance to be penetrated into the skin when they output voltages of opposite polarities. Figure 1 As shown, the permeation control method includes the following steps: S10: When the liquid dispensing device dispenses the substance to be dispensed to the skin, determine the relevant parameters of the substance to be dispensed, including flow rate and / or flow volume.
[0021] S20: Based on the determined output parameters of the substance to be permeated, control and adjust the output intensity of the ion permeation enhancement component.
[0022] The penetration-enhancing control method provided in this application determines the output parameters of the substance to be penetrated to the skin surface delivered by the liquid outlet device, and controls and adjusts the output intensity of the ion penetration-enhancing component according to the output parameters. This allows the output intensity of the ion penetration-enhancing component to be adapted to the output of the substance to be penetrated to the skin surface, thereby optimizing the ion penetration-enhancing effect of the ion penetration-enhancing component and avoiding waste of the substance. Furthermore, adjusting the output intensity of the ion penetration-enhancing component 20 according to the output parameters of the substance to be penetrated allows for more precise adjustment of the ion penetration-enhancing component 20.
[0023] In some embodiments, the substance to be absorbed may include at least one of toner, lotion, serum, emulsion, face cream, eye cream, gel, lipstick, lip balm, body lotion, and moisturizing lotion. The substance to be absorbed may also be other types of substances with beauty and skin care effects.
[0024] The substance to be absorbed includes anions and / or cations. When using the beauty device, at least two electrodes of the ion-penetration-enhancing component are in contact with the human body. When the at least two electrodes output voltages of opposite polarities, a current loop is formed between the at least two electrodes and the human body, driving the substance to be absorbed, which is covering the skin, into the skin. The direction of the current in the current loop is from the electrode outputting a positive voltage to the human body and then to the electrode outputting a negative voltage.
[0025] Since the movement direction of negatively charged anions is opposite to the direction of the current, by controlling the output of positive and negative voltages from the at least two electrodes respectively, the anions of the substance to be penetrated can be driven to move along the direction from the electrode outputting the negative voltage to the human body, thereby promoting the penetration of the anions of the substance to be penetrated into the inner layer of the skin. Alternatively, it can be understood that the anions of the substance to be penetrated, covering the skin, repel the electrode outputting the negative voltage and attract the electrode outputting the positive voltage through the human body, allowing the anions of the substance to enter the skin, thus achieving the introduction of the anions of the substance to be penetrated into the skin.
[0026] Since the positively charged cations move in the same direction as the current, by controlling the output of positive and negative voltages from the at least two electrodes respectively, the cations of the substance to be penetrated can be driven to move along the direction from the electrode outputting the positive voltage to the human body, thereby promoting the penetration of the cations of the substance to be penetrated into the inner layer of the skin. Alternatively, it can be understood that the cations of the substance to be penetrated covering the skin repel the electrode outputting the positive voltage and are attracted to the electrode outputting the negative voltage through the human body, allowing the cations of the substance to enter the skin, thus achieving the introduction of the cations of the substance to be penetrated into the skin.
[0027] Please see Figure 2 , Figure 2 This is an exploded structural diagram of a beauty device 100 provided in an embodiment of this application. The penetration-enhancing control method can be applied to the beauty device 100. Figure 2 As shown, the beauty device 100 includes the liquid dispensing device 10, the ion penetration enhancement component 20, and the control module 30. The ion penetration enhancement component 20 includes at least two electrodes 21.
[0028] The control module 30 can determine the relevant parameters of the substance to be penetrated when the liquid dispensing device 10 delivers the substance to be penetrated to the skin, and control the output intensity of the liquid dispensing device 10 according to the determined relevant parameters of the substance to be penetrated.
[0029] The aforementioned penetration control method can also be applied to other beauty devices with liquid outlet structure and ion penetration enhancement structure.
[0030] Please see Figure 3 This is a flowchart of a permeation control method provided in another embodiment of this application. Figure 3 As shown, the permeation control method further includes the following steps: S30: Before the liquid dispensing device 10 outputs the substance to be promoted for penetration, it detects whether the beauty instrument 100 is in contact with the skin, so as to output a corresponding detection signal.
[0031] S40: When the detection signal determines that the beauty device 100 is in contact with the skin, the liquid dispensing device 10 is controlled to output the substance to be promoted for penetration to the skin.
[0032] That is, the liquid dispensing device 10 is controlled to output the substance to be promoted for penetration and the ion penetration promoting component 20 is controlled to output only when the beauty device 100 is in contact with the skin, which can avoid wasting the substance to be promoted for penetration and the output energy.
[0033] Specifically, when the beauty device 100 comes into contact with the skin, the distance between the beauty device 100 and the skin is very small, which can be considered as the beauty device 100 coming into contact with the skin. The small distance between the beauty device 100 and the skin facilitates the dispensing device 10 in dispensing the substance to be absorbed onto the skin.
[0034] In some embodiments, the detection signal includes at least one of a brightness signal, a pressure signal, a distance signal, a capacitance signal, a resistance signal, and an acoustic signal. The brightness signal includes a brightness value, the temperature signal includes a temperature value, the pressure signal includes a pressure value, the distance signal includes a distance value, the capacitance signal includes a capacitance value, the resistance signal includes a resistance value, and the acoustic signal includes an acoustic energy value.
[0035] The aforementioned determination of skin contact between the beauty device 100 and the skin based on the detection signal includes: determining skin contact between the beauty device 100 and the skin when the detection signal meets at least one of the preset conditions, wherein the preset conditions include: the brightness value included in the detection signal is less than or equal to a preset brightness value; the pressure value included in the detection signal is greater than or equal to a preset pressure value; the distance value included in the detection signal is less than or equal to a preset distance value; the capacitance value included in the detection signal is within a first preset capacitance value range; the resistance value included in the detection signal is within a first preset resistance value range; and the sound wave energy value included in the detection signal is less than a preset sound wave energy value.
[0036] The preset brightness value, preset pressure value, preset distance value, first preset capacitance value range, first preset resistance value range, and preset sound wave energy value can be set according to actual needs, and are not limited here.
[0037] The beauty device 100 may include a contact detection module for detecting whether the beauty device 100 is in contact with the skin, and outputting the detection signal to the control module 30.
[0038] In some embodiments, such as Figure 2As shown, the beauty device 100 includes a contact end 50, and the contact end 50 includes a contact surface 51. The contact surface 51 is used to contact the skin when the beauty device 100 is applied to the skin. The at least two electrodes 21 are disposed on the contact surface 51. The contact detection module is disposed on the contact surface 51 and is used to detect whether the contact surface 51 is in contact with the skin, so as to output the detection signal.
[0039] When the contact surface 51 comes into contact with the skin, the brightness of the contact surface 51 decreases. By setting a contact detection module on the contact surface 51 and detecting the brightness value, it can be determined whether the contact surface 51 is in contact with the skin. The contact detection module can be a brightness sensor, such as a photosensor. The brightness sensor sends a brightness signal including the detected brightness value to the control module 30. When the control module 30 receives the brightness signal, it determines whether the contact surface 51 is in contact with the skin based on the brightness value included in the brightness signal.
[0040] When the contact surface 51 comes into contact with the skin, the contact surface 51 is subjected to force. By installing a pressure sensor on the contact surface 51 and detecting the pressure value of the contact surface 51, it can be determined whether the contact surface 51 is in contact with the skin. The pressure sensor sends a pressure signal including the detected pressure value to the control module 30. When the control module 30 receives the pressure signal, it determines whether the contact surface 51 is in contact with the skin based on the pressure value included in the pressure signal.
[0041] When the contact surface 51 approaches the skin, the distance between the contact surface 51 and the skin decreases. By placing a distance sensor on the contact surface 51 and detecting the distance value between the contact surface 51 and the skin, it can be determined whether the contact surface 51 is in contact with the skin. The distance sensor can be, for example, an infrared distance sensor, an ultrasonic distance sensor, a laser distance sensor, etc. The distance sensor sends a distance signal including the detected distance value to the control module 30. When the control module 30 receives the distance signal, it determines whether the contact surface 51 is in contact with the skin based on the distance value included in the distance signal.
[0042] Skin is conductive. When the contact surface 51 comes into contact with the skin, the capacitance and resistance values of the contact surface 51 change. By setting a capacitive contact sensor and / or a resistive contact sensor on the contact surface 51 and detecting the capacitance and / or resistance values, it can be determined whether the contact surface 51 is in contact with the skin. The capacitive contact sensor and / or the resistive contact sensor sends a capacitance signal including the detected capacitance value and / or a resistance signal including the detected resistance value to the control module 30. When the control module 30 receives the capacitance signal and / or the resistance signal, it determines whether the contact surface 51 is in contact with the skin based on the capacitance and / or resistance values included in the capacitance signal and / or the resistance signal.
[0043] When the contact surface 51 comes into contact with the skin, if the contact surface 51 is equipped with the acoustic wave contact sensor, the sound waves emitted by the acoustic wave contact sensor will be attenuated and blocked. The acoustic wave contact sensor receives the attenuated sound waves, that is, the sound wave energy value of the sound waves received by the acoustic wave contact sensor will change. By setting the acoustic wave contact sensor on the contact surface 51 and detecting the sound wave energy value, it can be determined whether the contact surface 51 is in contact with the skin. The acoustic wave contact sensor can be a surface acoustic wave contact sensor, a bending acoustic wave contact sensor, a volume acoustic wave contact sensor, etc. The acoustic wave sensor sends an acoustic wave signal including the detected sound wave energy value to the control module 30. When the control module 30 receives the acoustic wave signal, it determines whether the contact surface 51 is in contact with the skin based on the sound wave energy value included in the acoustic wave signal.
[0044] In some embodiments, the penetration enhancement control method further includes: when the liquid dispensing device 10 outputs the substance to be enhanced to the skin, detecting whether the beauty device 100 is in contact with the skin, and outputting a corresponding detection signal; when it is determined from the detection signal that the beauty device 100 is not in contact with the skin, controlling the liquid dispensing device 10 to stop outputting the substance to be enhanced, or controlling the liquid dispensing device 10 to stop outputting the substance to be enhanced and controlling the ion penetration enhancement component 20 to stop outputting energy.
[0045] That is, during the process of the liquid dispensing device 10 dispensing the substance to be absorbed into the skin, it will detect whether the beauty device 100 is in contact with the skin. When it is determined that the beauty device 100 is not in contact with the skin, that is, when the beauty device 100 leaves the skin, the liquid dispensing device 10 will stop dispensing the substance to be absorbed into the skin, so as to avoid waste of the substance to be absorbed into the skin. The ion absorption enhancement component 20 will stop dispensing, so as to avoid waste of energy output by the ion absorption enhancement component 20 and avoid burning the skin.
[0046] During the process of the liquid dispensing device 10 dispensing the substance to be absorbed into the skin, the aforementioned contact detection module can detect whether the beauty device 100 is in contact with the skin, and output the detection signal. When the detection signal meets at least one of the following conditions, it is determined that the beauty device 100 is not in contact with the skin: the brightness value of the detection signal is greater than a preset brightness value; the pressure value of the detection signal is less than a preset pressure value; the distance value of the detection signal is greater than a preset distance value; the capacitance value of the detection signal is within a second preset capacitance value range; the resistance value of the detection signal is within a second preset resistance value range; and the sound wave energy value of the detection signal is greater than or equal to a preset sound wave energy value. The second preset capacitance value range and the second preset resistance value range can be set according to actual needs.
[0047] Specifically, the ion permeation component 20 can stop outputting energy by controlling the output voltage of at least two electrodes 21.
[0048] In some embodiments, controlling and adjusting the output intensity of the ion permeation enhancement component 20 according to the determined output-related parameters of the substance to be permeated includes: taking the output intensity corresponding to the determined output-related parameters of the substance to be permeated as the target output intensity according to the preset correspondence between the preset output-related parameters and the output intensity; and controlling and adjusting the output intensity of the ion permeation enhancement component 20 to the target output intensity.
[0049] By pre-setting a preset correspondence between the output-related parameters and the output intensity, the target output intensity can be quickly determined based on the preset correspondence. This allows the output intensity of the ion penetration enhancement component 20 to be adjusted in a timely manner when the output-related parameters of the substance to be penetrated change, so as to match the output-related parameters of the substance to be penetrated, thereby enhancing the ion penetration effect, improving the ion penetration efficiency, and preventing skin damage.
[0050] The preset correspondence between output-related parameters and output intensity defines multiple correspondences between output-related parameters and multiple output intensities, with each output-related parameter corresponding to one output intensity. The preset correspondence between output-related parameters and output intensity can be pre-stored in the memory of the beauty device 100.
[0051] The preset correspondence between the output-related parameters and the output intensity defines a positive correlation between the output-related parameters and the output intensity. That is, when the detected output-related parameters of the substance to be permeated increase, the output intensity of the ion permeation enhancement component is controlled to increase; when the detected output-related parameters of the substance to be permeated decrease, the output intensity of the ion permeation enhancement component is controlled to decrease.
[0052] Specifically, when the output-related parameters of the substance to be penetrated increase, the penetration of the substance can be promoted by increasing the output intensity of the ion penetration enhancement component 20, thereby effectively preventing the substance from accumulating on the skin; when the output-related parameters of the substance to be penetrated decrease, the amount of the substance to be penetrated to the skin surface decreases, and by reducing the output intensity of the ion penetration enhancement component 20, skin damage caused by excessive energy of the ion penetration enhancement component 20 can be prevented.
[0053] For example, the preset correspondence between the output-related parameters and the output intensity defines that a flow rate of 0.5 mL / s corresponds to an output intensity P1, and a flow rate of 1.0 mL / s corresponds to an output intensity P2, where P1... <P2。
[0054] In some embodiments, controlling the dispensing device 10 to output the substance to be promoted to the skin when it is determined that the beauty device 100 is in contact with the skin based on the detection signal includes: controlling the dispensing device 10 to output the substance to be promoted to the skin at preset infusion parameters when it is determined that the beauty device 100 is in contact with the skin based on the detection signal, wherein the preset infusion parameters include preset flow rate and / or preset flow rate. The aforementioned method when it is determined that the beauty device 100 is in contact with the skin based on the detection signal further includes: controlling the ion permeation enhancement component 20 to output at a preset output intensity.
[0055] That is, when the beauty device 100 is determined to be in contact with the skin based on the detection signal, the liquid dispensing device 10 is controlled to output the substance to be promoted for penetration at the preset infusion parameters, and the ion penetration promoting component 20 is controlled to output at the preset output intensity. In other words, when the beauty device 100 is detected to be in contact with the skin, both the liquid dispensing device 10 and the ion penetration promoting component 20 are simultaneously controlled to output, and output at the preset infusion parameters and the preset output intensity, respectively.
[0056] The preset infusion parameters and preset output intensity can be set according to actual needs. Furthermore, the preset infusion parameters and preset output intensity are compatible, which is beneficial to enhance the ion permeation effect of the ion permeation enhancement component 20 and improve the permeability of the substance to be permeated.
[0057] In some embodiments, the permeation control method further includes: detecting the distance between the beauty device 100 and the skin when the liquid dispensing device 10 delivers the substance to be permeated to the skin; and controlling and adjusting the infusion parameters of the liquid dispensing device 10 based on the detected distance between the beauty device 100 and the skin, the infusion parameters including flow rate and / or flow volume.
[0058] The step of detecting the distance between the beauty device 100 and the skin may include detecting the distance between the contact surface 51 and the skin.
[0059] By detecting the distance between the beauty device 100 and the skin, and adjusting the infusion parameters of the liquid dispensing device 10 according to the distance, the output intensity of the liquid dispensing device 10 can be adapted to the distance between the beauty device 100 and the skin.
[0060] In some embodiments, controlling and adjusting the infusion parameters of the liquid dispensing device 10 based on the detected distance value between the beauty device 100 and the skin includes: controlling the decrease of the infusion parameters of the liquid dispensing device 10 when the detected distance value decreases; controlling the increase of the infusion parameters of the liquid dispensing device 10 when the detected distance value increases; and controlling the liquid dispensing device 10 to stop outputting when the detected distance value is greater than a preset distance threshold.
[0061] When the distance between the beauty device 100 and the skin is reduced, the infusion parameters of the liquid dispensing device 10 can be reduced to avoid excessive output of the substance to be absorbed by the liquid dispensing device 10, which could cause blockage of the liquid outlet or excessive accumulation of the substance to be absorbed on the skin.
[0062] When the distance between the beauty device 100 and the skin increases, by increasing the infusion parameters of the liquid outlet device 10, a sufficient amount of the substance to be absorbed can be output to cover the skin.
[0063] When the distance value is greater than the preset distance threshold, it can be understood that the beauty device 100 has left the skin and is not in contact with the skin. By controlling the liquid outlet device 10 to stop outputting, the waste of the substance to be promoted for penetration can be avoided, and the cost of beauty treatment can be reduced.
[0064] The preset distance threshold can be set according to actual needs, and is not limited here.
[0065] The distance sensor can detect the distance between the beauty device 100 and the skin and send the distance value to the control module 30. When the control module 30 receives the distance value, it controls the output of the liquid dispensing device 10 according to the distance value.
[0066] In some embodiments, controlling the dispensing device 10 to output the substance to be promoted to the skin when the beauty device 100 is determined to be in contact with the skin based on the detection signal includes: controlling the dispensing device 10 to output the substance to be promoted to the skin with preset infusion parameters when the beauty device 100 is determined to be in contact with the skin based on the detection signal, wherein the preset infusion parameters include preset flow rate and / or preset flow rate. The aforementioned determination of output-related parameters of the substance to be promoted to the skin when the dispensing device 10 outputs the substance to be promoted to the skin includes: determining the output-related parameters of the substance to be promoted to the skin when the dispensing device 10 outputs the substance to be promoted to the skin with the preset infusion parameters.
[0067] That is, when the beauty device 100 is in contact with the skin, the liquid outlet device 10 is controlled to output the substance to be promoted for penetration with the preset infusion parameters; when the liquid outlet device 10 outputs the substance to be promoted for penetration with the preset infusion parameters, the output-related parameters of the substance to be promoted for penetration output to the skin are determined; and the output intensity of the ion penetration promotion component 20 is controlled and adjusted according to the determined output-related parameters of the substance to be promoted for penetration.
[0068] Specifically, when the beauty device 100 comes into contact with the skin, the liquid outlet device 10 is first controlled to output the substance to be promoted for penetration with the preset infusion parameters. After the liquid outlet device 10 outputs the substance to be promoted for penetration, the output-related parameters of the substance to be promoted for penetration are determined. The output intensity of the ion-promoting component 20 is then controlled according to the determined output-related parameters. This allows the output intensity of the ion-promoting component 20 to be controlled according to the output of the substance to be promoted for penetration, thereby improving the ion-promoting effect of the ion-promoting component 20.
[0069] In some embodiments, controlling the output intensity of the ion permeation enhancement component 20 based on the determined output-related parameters of the substance to be permeated includes: controlling a decrease in the output intensity of the ion permeation enhancement component 20 when the flow rate and / or flow rate decreases within a first preset time period and the decrease is greater than or equal to a first preset infusion change amount; and controlling an increase in the output intensity of the ion permeation enhancement component 20 when the flow rate and / or flow rate increases within the first preset time period and the increase is greater than or equal to a second preset infusion change amount. The first preset time period can be set according to actual needs. The first preset infusion change amount and the second preset infusion change amount can be set according to actual needs. The first preset infusion change amount and the second preset infusion change amount can be equal or unequal.
[0070] In some embodiments, the aforementioned control adjustment of the output intensity of the ion-enhancing component 20 to the target output intensity includes: adjusting the output intensity of the ion-enhancing component 20 according to the amount of change to adjust it to the target output intensity, wherein the amount of change includes the decrease or increase.
[0071] The adjustment of the output intensity of the ion-enhancing component 20 based on the change amount may include: determining the target change amount range in which the change amount is located; determining the adjustment strategy corresponding to the target change amount range as the target adjustment strategy based on the preset correspondence between the preset change amount range and the adjustment strategy; and adjusting the output intensity of the ion-enhancing component 20 using the target adjustment strategy.
[0072] The preset correspondence between the change ranges and adjustment strategies defines the correspondence between multiple change ranges and various strategy methods, with each change range corresponding to one adjustment strategy. The multiple change ranges are pre-sorted in order of increasing change value. In any two adjacent change ranges, the lower limit of the later-sorted change range is greater than the upper limit of the earlier-sorted change range. The multiple change ranges include multiple first change ranges and multiple second change ranges arranged sequentially. The lower limit of the multiple second change ranges is greater than the upper limit of the multiple first change ranges. The adjustment strategy includes an adjustment method and an adjustment magnitude. The adjustment methods of the multiple first change ranges are the same, but the adjustment magnitudes are different. The adjustment methods of the multiple second change ranges are the same, but the adjustment magnitudes are different.
[0073] The plurality of first variation ranges each correspond to a first adjustment method. The adjustment range corresponding to the plurality of first variation ranges gradually increases according to the order of the plurality of first variation ranges. That is, when the variation is within the first variation range, the adjustment range of the output intensity of the ion-enhancing component 20 gradually increases according to the order of the plurality of first variation ranges. The first adjustment method is a bidirectional step adjustment, that is, alternating step adjustment along a first direction and a second direction. The first direction is the direction that gradually approaches the target output intensity, and the second direction is opposite to the first direction. That is, when the variation is within the first variation range, during the adjustment of the output intensity, the output intensity increases and decreases alternately, wherein the adjustment range when increasing is greater than the adjustment range when decreasing, thereby increasing the overall output intensity.
[0074] Each of the multiple second variation ranges corresponds to a second adjustment mode. The adjustment range corresponding to each of the multiple second variation ranges gradually increases according to the order of the multiple second variation ranges. That is, when the variation is within the second variation range, the adjustment range of the output intensity of the ion-enhancing component 20 gradually increases according to the order of the multiple second variation ranges. The second adjustment mode is a unidirectional step adjustment, that is, a step adjustment along the first direction. In other words, when the variation is within the second variation range, the output intensity continuously increases during the adjustment process.
[0075] For example, the plurality of first change ranges include first change ranges [0.1 mL / s, 0.12 mL / s), first change ranges [0.12 mL / s, 0.14 mL / s), first change ranges [0.14 mL / s, 0.16 mL / s), and first change ranges [0.16 mL / s, 0.18 mL / s]. The first change range [0.1 mL / s, 0.12 mL / s] corresponds to a first adjustment mode, and the corresponding adjustment range is P1. The first change range [0.12 mL / s, 0.14 mL / s] corresponds to a first adjustment mode, and the corresponding adjustment range is P2, where P1 < P2. The first change range [0.14 mL / s, 0.16 mL / s] corresponds to a second adjustment mode, and the corresponding adjustment range is P3. The first change range [0.16 mL / s, 0.18 mL / s] corresponds to a second adjustment mode, and the corresponding adjustment range is P4, where P3 < P4.
[0076] When the reduction is 0.12 mL / s, the first adjustment method is used and the adjustment is made with P2 as the adjustment range until the output intensity of the ion permeation enhancement component 20 is reduced to the target output intensity; when the increase is 0.17 mL / s, the second adjustment method is used and the adjustment is made with P3 as the adjustment range until the output intensity of the ion permeation enhancement component 20 is increased to the target output intensity.
[0077] When the change amount is within the second change amount range, the current output intensity of the ion-enhancing component 20 differs significantly from the target output intensity. By adjusting the output intensity of the ion-enhancing component 20 using the aforementioned unidirectional step adjustment method, the ion-enhancing component 20 can be rapidly reduced or increased to the target output intensity. Furthermore, as the value of the second change amount range increases, the adjustment amplitude increases, which can further accelerate the change of the output intensity of the ion-enhancing component 20 to the target output intensity.
[0078] When the change amount is within the first change amount range, the current output intensity of the ion-enhancing component 20 is relatively close to the target output intensity. By adjusting the output intensity of the ion-enhancing component 20 using the aforementioned bidirectional step adjustment method, excessive changes in the output intensity of the ion-enhancing component 20 can be avoided. Furthermore, when the change amount is a decrease, the output intensity can be prevented from increasing too much and exceeding the target output intensity. Conversely, when the change amount is an increase, the output intensity can be prevented from decreasing too much and falling below the target output intensity. This allows for more precise adjustment of the output intensity. Moreover, as the value of the first change amount range increases, the adjustment amplitude increases, which accelerates the change of the output intensity of the ion-enhancing component 20 to the target output intensity.
[0079] In some embodiments, the method further includes: when the decrease in amount exceeds a preset decrease threshold and / or the increase in amount exceeds a preset increase threshold, controlling the beauty device 100 to issue a prompt message indicating an infusion abnormality, and / or controlling the ion permeation enhancement component 20 to output at a preset output power, and / or controlling the dispensing device 10 to stop dispensing the substance to be permeated. This facilitates the user in promptly identifying the cause of the infusion abnormality, avoiding skin burns, and preventing energy waste.
[0080] The beauty device 100 can issue alerts about infusion abnormalities through its display screen, communication module, voice component, vibration component, etc.
[0081] The preset reduction threshold and preset increase threshold can be set according to actual needs. The preset output power is greater than or equal to 0; in some embodiments, the preset output power can be relatively small.
[0082] Please see Figure 4 This is a flowchart of a permeation control method provided in another embodiment of this application. In some embodiments, such as Figure 4 As shown, the permeation control method further includes the following steps: S50: Generates an infusion adjustment trigger signal in response to an infusion adjustment operation. The infusion adjustment trigger signal includes infusion adjustment information, which includes the target infusion parameter to be adjusted.
[0083] S60: Receive the infusion adjustment trigger signal and control the infusion parameters of the infusion device 10 to be adjusted to the target infusion parameters, the infusion parameters including flow rate and / or flow rate.
[0084] The aforementioned determination of the output-related parameters of the substance to be permeated when the dispensing device 10 delivers the substance to be permeated to the skin includes: determining the output-related parameters of the substance to be permeated when the dispensing device 10 delivers the substance to be permeated with the target infusion parameters.
[0085] That is, in response to the infusion adjustment operation, the infusion parameters of the infusion device 10 are controlled to be adjusted to the target infusion parameters; when the infusion device 10 outputs at the target infusion parameters, the output-related parameters of the substance to be permeated are determined; and based on the determined output-related parameters of the substance to be permeated, the output intensity of the ion permeation enhancement component 20 is controlled and adjusted.
[0086] Therefore, when a user performs an infusion adjustment operation, the device can respond to the infusion adjustment operation, control and adjust the infusion parameters of the infusion device 10, and when the infusion parameters of the infusion device 10 change, the device can promptly adjust the output intensity of the ion-enhancing component 20, so that the output intensity of the ion-enhancing component 20 changes with the infusion parameters of the infusion device 10, thereby improving the ion-enhancing effect of the ion-enhancing component 20.
[0087] In some embodiments, the beauty device 100 is provided with at least two infusion levels, each infusion level corresponding to an infusion parameter of the dispensing device 10, and different infusion levels correspond to different infusion parameters. The aforementioned infusion adjustment information includes the target infusion level to be adjusted to and the infusion parameter corresponding to the target infusion level, i.e., the target infusion parameter to be adjusted to.
[0088] Among them, such as Figure 5 As shown, Figure 5 for Figure 2 The diagram shows another angle of the beauty device 100. The beauty device 100 may include at least two infusion level buttons 60. The infusion level buttons 60 are used for users to perform infusion adjustment operations and generate the infusion adjustment trigger signal. The generated infusion adjustment trigger signal includes the target infusion level selected by the user and the infusion parameters corresponding to the target infusion level.
[0089] In some embodiments, such as Figure 5 As shown, the beauty device 100 may include a display screen 40. In some embodiments, the display screen 40 is provided with an infusion parameter input interface, which is used for users to perform infusion adjustment operations and generate the infusion adjustment trigger signal. The user can input the target infusion parameter to be adjusted to on the infusion parameter input interface, and the generated infusion adjustment trigger signal includes the target infusion parameter.
[0090] In some embodiments, determining the output-related parameters of the substance to be penetrated when the dispensing device 10 dispenses the substance to be penetrated to the skin includes: detecting the remaining amount of the substance to be penetrated in the dispensing device 10 at the previous moment and the current moment; using the interval between the current moment and the previous moment as the output duration; and determining the output-related parameters of the substance to be penetrated at the current moment based on the detected remaining amount of the substance to be penetrated at the previous moment and the current moment and the output duration.
[0091] Specifically, by determining the output-related parameters of the substance to be permeated based on the remaining amount of the substance to be permeated and the output duration of the substance to be permeated by the liquid outlet device 10, the flow rate and / or flow rate of the substance to be permeated can be obtained in real time and accurately when the substance to be permeated is output. Then, the output intensity can be adjusted according to the real-time flow rate and / or flow rate, thereby making the output adjustment of the ion permeation component 20 more precise.
[0092] Specifically, the difference between the remaining amount of the substance to be infiltrated at the current moment and the remaining amount of the substance to be infiltrated at the previous moment is divided by the output duration to obtain the flow rate of the substance to be infiltrated at the current moment, and thus the flow velocity of the substance to be infiltrated at the current moment.
[0093] The interval between the previous moment and the current moment can be preset. The remaining amount of the substance to be promoted in the liquid outlet device 10 can be detected according to the preset interval. In some embodiments, the preset interval between the previous moment and the current moment can be very short, so that the output correlation parameters obtained at the current moment are real-time output correlation parameters.
[0094] Specifically, when the beauty device 100 begins outputting the substance to be promoted, the flow rate and volume of the substance are equal to 0, and the remaining amount of the substance in the dispensing device 10 at the initial moment is detected and recorded. At the current moment, after the beauty device 100 has output the substance at the preset interval, the remaining amount of the substance in the dispensing device 10 is detected again. Based on the detected remaining amount at the initial moment, the remaining amount at the current moment, and the preset interval, the relevant parameters of the current moment's output of the substance to be promoted can be calculated.
[0095] The preset interval between two adjacent moments can be the same or different. For example, the beauty device 100 detects the remaining amount of the substance to be promoted at time T1, time T2 and time T3 respectively. The interval between adjacent time T1 and time T2 and the interval between adjacent time T2 and time T3 can be the same or different.
[0096] In some embodiments, the beauty device 100 may include an infusion detection module, which may include an optical level sensor, a float level sensor, a resistive level sensor, a non-contact capacitive level sensor, a non-contact ultrasonic level sensor, etc., for detecting the remaining amount of the substance to be promoted for penetration in the dispensing device 10 and sending it to the control module 30. The control module 30 calculates the output-related parameters based on the received remaining amount and the output duration.
[0097] The infusion detection module can detect the volume of the substance to be infiltrated within the infusion device 10, and then calculate the flow rate of the substance based on the detected volume and the output duration. Furthermore, the flow velocity of the substance to be infiltrated can be calculated based on the calculated flow rate and the cross-sectional area of the liquid storage chamber of the infusion device 10. The infusion device 10 includes a liquid storage chamber, which stores the substance to be infiltrated.
[0098] The height of the substance to be permeated in the infusion detection module can also be detected, and the flow rate of the substance to be permeated can be calculated based on the detected height and the output duration. Furthermore, the flow rate of the substance to be permeated can be calculated based on the calculated flow rate and the cross-sectional area of the liquid storage chamber of the infusion device 10.
[0099] For example, the remaining amount of the substance to be permeated detected at the previous moment was 10 mL, the remaining amount of the substance to be permeated detected at the current moment was 9.5 mL, the interval between the previous moment and the current moment was 1 s, that is, the output duration was 1 s, and the flow rate of the substance to be permeated at the current moment was equal to (10 mL - 9.5 mL) / 1 s, that is, 0.5 mL / s.
[0100] In some embodiments, the infusion detection module may include a flow meter, which can detect output-related parameters of the substance to be promoted when the infusion device 10 outputs the substance to be promoted.
[0101] In some embodiments, the permeation control method further includes: controlling the beauty device 100 to send information about the output parameters of the determined permeation-promoting substance, so that the user can determine whether to perform an infusion adjustment operation.
[0102] When a user obtains information about the current output parameters of the substance to be penetrated from the beauty device 100, the user can adjust the infusion based on the current output of the substance and their own physical sensations. For example, when the skin feels dry, the user can adjust and increase the infusion parameters of the infusion device 10 to output more of the substance to be penetrated.
[0103] In some embodiments, the display screen 40 of the beauty device 100 can be controlled to display the determined output-related parameters of the substance to be promoted in real time. In other embodiments, the beauty device 100 can send the information of the output-related parameters of the substance to be promoted to the user's terminal device via a communication module such as Bluetooth, so that the user can obtain the information of the output-related parameters of the substance to be promoted.
[0104] In some embodiments, such as Figure 2 As shown, the liquid dispensing device 10 includes a liquid storage component 11 and a driving mechanism 12. The liquid storage component 11 stores the substance to be promoted for penetration, and the driving mechanism 12 is used to output the substance to be promoted for penetration stored in the liquid storage component 11 to the skin.
[0105] The drive mechanism 12 includes an infusion pump 121 and a motor 122. The motor 122 is electrically connected to the control module 30. The control module 30 can control the delivery of the substance to be promoted for penetration in the liquid storage component 11 to the skin surface through the motor 122 and the infusion pump 121.
[0106] The aforementioned adjustment of the infusion parameters of the dispensing device 10 to the target infusion parameters includes: determining the target output power corresponding to the target infusion parameters of the dispensing device 10 according to a preset correspondence between the infusion parameters and the output power; controlling the drive mechanism 12 to output at the target output power, so that the dispensing device 10 outputs the substance to be promoted for permeation at the target infusion parameters.
[0107] The preset correspondence between infusion parameters and output power defines at least two correspondences between infusion parameters and at least two output powers, with each infusion parameter corresponding to one output power. This preset correspondence between infusion parameters and output power can be pre-stored in the memory.
[0108] The output power of the drive mechanism 12 is positively correlated with the infusion parameters of the liquid dispensing device 10.
[0109] By controlling the drive mechanism 12 to drive the output of the substance to be permeated in the liquid storage component 11, the flow rate or flow rate of the substance to be permeated can be adjusted more precisely.
[0110] In some embodiments, please refer to Figure 6 ,for Figure 2 A partial structural schematic diagram of the beauty device 100 shown. In some embodiments, such as... Figure 6As shown, the contact end 50 also includes a liquid outlet 52, which is located on the contact surface 51. The liquid outlet device 10 is connected to the liquid outlet 52, and the liquid outlet 52 is used to output the substance to be promoted for penetration in the liquid outlet device 10 to the skin surface.
[0111] like Figure 6 As shown, the contact end 50 also includes a connecting channel 53 and an infusion channel 54, the infusion channel 54 being connected to the outlet 52 and the connecting channel 53 respectively.
[0112] like Figure 6 As shown, the liquid storage assembly 11 includes a liquid outlet 111 and a liquid storage cavity 112 communicating with the liquid outlet 111. The liquid storage cavity 112 stores the substance to be osmotically enhanced. The liquid outlet 111 is used to output the substance to be osmotically enhanced from the liquid storage cavity 112. The infusion pump 121 includes an air extraction port 1211. The liquid dispensing device 10 also includes a first connecting pipe and a second connecting pipe (not shown in the figure). The opposite ends of the first connecting pipe are respectively connected to the liquid outlet 111 and the infusion channel 54, and the opposite ends of the second connecting pipe are respectively connected to the air extraction port 1211 and the connecting channel 53. The infusion pump 121 is used to draw air to create a pressure difference between the infusion channel 54 and the inside of the liquid storage assembly 11, thereby causing the substance to be promoted for permeation in the liquid storage cavity 112 to be output from the outlet 111, enter the infusion channel 54 through the first connecting pipe, and then be output to the outlet 52, that is, the substance to be promoted for permeation is output from the liquid storage assembly 11 to the outer surface of the contact end 50.
[0113] The aforementioned flow meter can be installed at the liquid outlet 111.
[0114] The at least two electrodes 21 can be arranged around the liquid outlet 52, so that the energy output by the at least two electrodes 21 acts on the skin area covered by the substance to be penetrated, so as to more accurately perform ion penetration enhancement on the substance to be penetrated from the liquid outlet 52.
[0115] In some embodiments, the contact surface 51 may be provided with at least two liquid outlets 52, including at least one first liquid outlet and at least one second liquid outlet. The liquid dispensing device 10 may be in communication with the at least one first liquid outlet and the at least one second liquid outlet, respectively. The substance to be absorbed within the liquid dispensing device 10 may be output to the skin surface from the at least one first liquid outlet and the at least one second liquid outlet. The at least two electrodes 21 include at least two first electrodes and at least two second electrodes. The at least two first electrodes may be wound around the first liquid outlet, and the at least two second electrodes may be wound around the second liquid outlet.
[0116] The beauty device 100 is equipped with at least two infusion modes, including at least two of the following: eye infusion mode, cheek infusion mode, and full-face infusion mode. When the beauty device 100 is in the eye infusion mode, the control module 30 can control the substance to be absorbed in the infusion device 10 to be output to the skin surface only from the first infusion port. When the beauty device 100 is in the cheek infusion mode, the control module 30 can control the substance to be absorbed in the infusion device 10 to be output to the skin surface only from the second infusion port. When the beauty device 100 is in the full-face infusion mode, the control module 30 can control the substance to be absorbed in the infusion device 10 to be output to the skin surface from both the first infusion port and the second infusion port.
[0117] When the beauty device 100 is in the eye infusion mode, the control module 30 can control the at least two first electrodes to output voltages of opposite polarity, and the at least two second electrodes to stop outputting voltages. When the beauty device 100 is in the cheek infusion mode, the control module 30 can control the at least two second electrodes to output voltages of opposite polarity, and the at least two first electrodes to stop outputting voltages. When the beauty device 100 is in the full-face infusion mode, the control module 30 can control both the at least two first electrodes and the at least two second electrodes to output voltages of opposite polarity. This ensures that the ion penetration enhancement effect corresponds to the skin area to which the substance to be enhanced is delivered, thereby avoiding energy waste in the eye and cheek infusion modes and improving the full-face penetration efficiency in the full-face mode.
[0118] In some embodiments, the method further includes: responding to an infusion mode selection operation to determine a target infusion mode. The step of controlling the dispensing device 10 to output the substance to be promoted to the skin when the beauty device 100 is determined to be in contact with the skin based on the detection signal includes: when the beauty device 100 is determined to be in contact with the skin based on the detection signal, controlling the substance to be promoted for penetration within the dispensing device 10 to be output from the first dispensing port and / or the second dispensing port to the skin surface according to the target infusion mode.
[0119] In some embodiments, determining the output-related parameters of the substance to be enhanced when the dispensing device 10 delivers the substance to the skin includes: determining the output-related parameters of the substance to be enhanced delivered from the first dispensing port and / or the output-related parameters of the substance to be enhanced delivered from the second dispensing port. Controlling and adjusting the output intensity of the ion-enhancing component 20 based on the determined output-related parameters of the substance to be enhanced includes: controlling and adjusting the output intensity of the at least two first electrodes based on the determined output-related parameters of the substance to be enhanced delivered from the first dispensing port, and / or controlling and adjusting the output intensity of the at least two second electrodes based on the determined output-related parameters of the substance to be enhanced delivered from the second dispensing port. Therefore, in different infusion modes, the output intensity of the corresponding electrode 21 can be adjusted according to the output-related parameters of the substance to be enhanced delivered from different dispensing ports 52, making the adjustment of the ion-enhancing effect of the ion-enhancing component 20 more targeted.
[0120] The control module 30 can control the infusion parameters of the liquid outlet device 10 to output the substance to be penetrated to the first outlet to be less than or equal to the infusion parameters of the liquid outlet device 10 to output the substance to be penetrated to the second outlet. Since the eye area is smaller than the cheek area, outputting the substance to be penetrated with smaller infusion parameters can avoid the waste of the substance to be penetrated while satisfying the beauty requirements of the eye area.
[0121] The control module 30 can control the output intensity of the at least two first electrodes to be less than or equal to the output intensity of the at least two second electrodes. Since the skin in the eye area is thinner and more fragile than that in the cheek area, outputting at a lower intensity can avoid burning the skin around the eyes while still satisfying the aesthetic requirements of the eye area.
[0122] Please refer to it again. Figure 2 This application also provides a beauty device 100, such as... Figure 2 As shown above, the beauty device 100 includes a liquid dispensing device 10, an ion penetration enhancement component 20, and a control module 30. The liquid dispensing device 10 stores a substance to be penetrated and is used to deliver the substance to the skin. The ion penetration enhancement component 20 includes at least two electrodes 21 spaced apart. The at least two electrodes 21 are used to drive the substance to be penetrated into the skin by the liquid dispensing device 10 when they output voltages of opposite polarities. The control module 30 is connected to the liquid dispensing device 10 and the ion penetration enhancement component 20, and is used to detect output-related parameters of the substance to be penetrated when the liquid dispensing device 10 delivers the substance to the skin. The output-related parameters include flow rate and / or flow rate. Based on the determined output-related parameters of the substance to be penetrated, the control module 30 controls and adjusts the output intensity of the ion penetration enhancement component 20.
[0123] The beauty device 100 provided in this application embodiment determines the output parameters of the substance to be penetrated delivered to the skin surface by the liquid dispensing device 10, and controls and adjusts the output intensity of the ion penetration enhancement component 20 according to the output parameters. This allows the output intensity of the ion penetration enhancement component 20 to be adapted to the output of the substance to be penetrated to the skin surface, thereby enabling the ion penetration enhancement effect of the ion penetration enhancement component 20 to reach the optimal state and avoiding the waste of the substance to be penetrated.
[0124] In some embodiments, the control module 30 may include processing chips such as CPU (Central Processing Unit), DSP (Digital Signal Processor), and microcontroller.
[0125] In some embodiments, such as Figure 2 and Figure 5 As shown, the beauty device 100 also includes a housing 70, which has a receiving space, and the liquid dispensing device 10, ion penetration enhancement component 20, infusion detection module, control module 30, display screen 40 and contact end 50 are housed in the receiving space.
[0126] The beauty device 100 corresponds to the aforementioned penetration control method. For a more detailed description, please refer to the contents of the various embodiments of the aforementioned penetration control method. The contents of the beauty device 100 and the aforementioned penetration control method can also be referred to each other.
[0127] This application also provides a computer-readable storage medium storing a computer program, which is executed by a processor to implement the permeation control method provided in any of the foregoing embodiments.
[0128] Those skilled in the art will understand that all or part of the steps in the various methods of the above embodiments can be implemented by a program instructing related hardware. The program can be stored in a computer-readable storage device, which may include: a flash drive, a read-only memory, a random access memory, a magnetic disk, or an optical disk, etc.
[0129] It should be noted that, for the sake of simplicity, the foregoing method embodiments are all described as a series of actions. However, those skilled in the art should understand that this application is not limited to the described order of actions, as some steps may be performed in other orders or simultaneously according to this application. Furthermore, those skilled in the art should also understand that the embodiments described in the specification are preferred embodiments, and the actions and modules involved are not necessarily essential to this application.
[0130] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions in other embodiments.
[0131] The above are the implementation methods of the embodiments of this application. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the embodiments of this application, and these improvements and modifications are also considered to be within the protection scope of this application.
Claims
1. A beauty device, characterized in that, The beauty device includes: A liquid dispensing device, which stores a substance to be promoted for penetration, is used to deliver the substance to be promoted for penetration into the skin. An ion penetration enhancement component includes at least two electrodes spaced apart, wherein the at least two electrodes are used to drive the substance to be enhanced, which is output to the skin by the liquid dispensing device, to penetrate into the skin when they output voltages of opposite polarities respectively. A control module, connected to the liquid dispensing device and the ion penetration enhancement component, is used to determine the output-related parameters of the substance to be penetrated when the liquid dispensing device delivers the substance to be penetrated to the skin. The output-related parameters include flow rate and / or flow rate. Based on the determined output-related parameters of the substance to be penetrated, the module controls and adjusts the output intensity of the ion penetration enhancement component. The contact detection module is used to detect whether the beauty device is in contact with the skin, and outputs a corresponding detection signal to the control module; The control module is also used to control the liquid dispensing device to output the substance to be promoted for penetration to the skin when it is determined from the detection signal that the beauty device is in contact with the skin; The output parameters of the substance to be permeated include changes in the flow rate and / or volume of the substance, whereby the changes include decreases or increases. The control module, based on the determined output parameters of the substance to be permeated, controls and adjusts the output intensity of the ion permeation enhancement component, including: Based on the preset correspondence between the preset output-related parameters and the preset output intensity, the output intensity corresponding to the determined output-related parameters of the substance to be permeated is taken as the target output intensity. Controlling and adjusting the output intensity of the ion-enhanced permeation component to the target output intensity includes: Adjusting the output intensity of the ion-enhanced permeation component according to the change in intensity to achieve the target output intensity includes: Determine the target range of change in which the change falls; Based on the preset correspondence between the preset change range and the preset adjustment strategy, the target adjustment strategy corresponding to the target change range is determined; The target adjustment strategy is used to adjust the output intensity of the ion permeation enhancement component to the target output intensity; Wherein, when the target change range is the first change range, the target adjustment strategy is adjusted by alternating step-by-step adjustment along the first direction and the second direction. The first direction is the direction that gradually approaches the target output intensity, and the second direction is opposite to the first direction. The adjustment range along the first direction is greater than the adjustment range along the second direction. During the adjustment of the output intensity, the output intensity increases and decreases alternately. The adjustment range when increasing is greater than the adjustment range when decreasing, so that the overall output intensity increases. When the target change range is the second change range, the target adjustment strategy is adjusted in a stepwise manner along the first direction, wherein, during the adjustment of the output intensity, the output intensity continuously increases, and the lower limit of the second change range is greater than the upper limit of the first change range.
2. The beauty device according to claim 1, characterized in that, The contact detection module is also used to detect whether the beauty device is in contact with the skin when the liquid dispensing device outputs the substance to be promoted to the skin, so as to output a corresponding detection signal. The control module is also used to control the liquid dispensing device to stop outputting the substance to be promoted when it is determined from the detection signal that the beauty device is not in contact with the skin, or to control the liquid dispensing device to stop outputting the substance to be promoted and to control the ion permeation component to stop outputting energy.
3. The beauty device according to claim 1, characterized in that, The detection signal includes a distance signal, which includes the distance value between the beauty device and the skin. The control module is also used to control and adjust the infusion parameters of the liquid dispensing device according to the detected distance value between the beauty device and the skin. The infusion parameters include flow rate and / or flow rate.
4. The beauty device according to claim 3, characterized in that, The control module adjusts the infusion parameters of the dispensing device based on the detected distance between the beauty device and the skin, including: When the detected distance value decreases, the infusion parameters of the liquid dispensing device are controlled to decrease. When the detected distance value increases, the infusion parameters of the liquid dispensing device are increased. When the detected distance value is greater than a preset distance threshold, the liquid dispensing device is controlled to stop outputting liquid.
5. The beauty device according to claim 1, characterized in that, The control module controls and adjusts the output intensity of the ion-enhancing component based on the determined output parameters of the substance to be enhanced, including: Based on the preset correspondence between the preset output-related parameters and the preset output intensity, the output intensity corresponding to the determined output-related parameters of the substance to be permeated is taken as the target output intensity. The output intensity of the ion permeation enhancement component is controlled and adjusted to the target output intensity.
6. The beauty device according to claim 1, characterized in that, When the control module determines that the beauty device is in contact with the skin based on the detection signal, it controls the liquid dispensing device to output the substance to be promoted for penetration into the skin, including: When the detection signal determines that the beauty device is in contact with the skin, the liquid outlet device is controlled to output the substance to be promoted for penetration with preset infusion parameters, the preset infusion parameters including preset flow rate and / or preset flow rate; The control module is further configured to control the ion penetration enhancement component to output at a preset output intensity when the beauty device is determined to be in contact with the skin based on the detection signal.
7. The beauty device according to claim 1, characterized in that, When the control module determines that the beauty device is in contact with the skin based on the detection signal, it controls the liquid dispensing device to output the substance to be promoted for penetration into the skin, including: When the detection signal determines that the beauty device is in contact with the skin, the liquid outlet device is controlled to output the substance to be promoted for penetration with preset infusion parameters, the preset infusion parameters including preset flow rate and / or preset flow rate; The control module determines the relevant parameters of the substance to be absorbed when the liquid dispensing device delivers the substance to be absorbed into the skin, including: When the infusion device outputs the substance to be permeated with the preset infusion parameters, the relevant parameters of the substance to be permeated with the skin are determined.
8. The beauty device according to claim 1, characterized in that, The beauty device includes at least two infusion level buttons and / or a display screen. The infusion level buttons are used to generate an infusion adjustment trigger signal for performing infusion adjustment operations. The display screen has an infusion parameter input interface, which is used to generate the infusion adjustment trigger signal for performing infusion adjustment operations. The infusion adjustment trigger signal includes infusion adjustment information, which includes the target infusion parameter to be adjusted. The control module is used to receive the infusion adjustment trigger signal and control the infusion parameters of the infusion device to be adjusted to the target infusion parameters, wherein the infusion parameters include flow rate and / or flow rate; The control module determines the relevant parameters of the substance to be absorbed when the liquid dispensing device delivers the substance to be absorbed into the skin, including: When the liquid outlet device outputs the substance to be permeation promoted with the target infusion parameters, the relevant parameters of the output of the substance to be permeation promoted are determined.
9. The beauty device according to claim 1, characterized in that, The beauty device includes an infusion detection module for detecting the remaining amount of the substance to be promoted for penetration in the infusion device; The control module determines the relevant parameters of the substance to be absorbed when the liquid dispensing device delivers the substance to be absorbed into the skin, including: The time interval between the current moment and the previous moment is used as the output duration; Based on the remaining amount of the substance to be permeated at the previous and current times, and the output duration, the relevant output parameters of the substance to be permeated at the current time are determined.
10. The beauty device according to claim 1, characterized in that, The beauty device includes a contact end, which includes a contact surface and a liquid outlet. The contact surface is used to contact the skin, and the liquid outlet is located on the contact surface. The liquid outlet device is connected to the liquid outlet, and the liquid outlet is used to output the substance to be promoted for penetration in the liquid outlet device to the skin surface. At least two electrodes are located on the contact surface, and the contact detection module is located on the contact surface.
11. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a computer program, which is executed by a processor to implement a penetration control method applied to a beauty device. The beauty device includes a liquid dispensing device and an ion penetration enhancement component. The liquid dispensing device stores a substance to be penetrated and is used to deliver the substance to be penetrated to the skin. The ion penetration enhancement component includes at least two electrodes spaced apart. When the at least two electrodes output voltages of opposite polarities, they drive the substance to be penetrated to the skin to be penetrated into the skin. The permeation control method includes: Before the liquid dispensing device outputs the substance to be promoted for penetration, it detects whether the beauty device is in contact with the skin and outputs a corresponding detection signal. When the detection signal determines that the beauty device is in contact with the skin, the liquid dispensing device is controlled to output the substance to be promoted for penetration into the skin; When the liquid dispensing device delivers the substance to be permeated to the skin, the relevant parameters of the substance to be permeated are determined, including flow rate and / or flow volume. Based on the determined output parameters of the substance to be permeated, the output intensity of the ion permeation enhancement component is controlled and adjusted. The output parameters of the substance to be permeated include changes in the flow rate and / or volume of the substance, whereby the changes include decreases or increases; the step of controlling and adjusting the output intensity of the ion permeation enhancement component based on the determined output parameters of the substance to be permeated includes: Based on the preset correspondence between the preset output-related parameters and the preset output intensity, the output intensity corresponding to the determined output-related parameters of the substance to be permeated is taken as the target output intensity. Controlling and adjusting the output intensity of the ion-enhanced permeation component to the target output intensity includes: Adjusting the output intensity of the ion-enhanced permeation component according to the change in intensity to achieve the target output intensity includes: Determine the target range of change in which the change falls; Based on the preset correspondence between the preset change range and the preset adjustment strategy, the target adjustment strategy corresponding to the target change range is determined; The target adjustment strategy is used to adjust the output intensity of the ion permeation enhancement component to the target output intensity; Wherein, when the target change range is the first change range, the target adjustment strategy is adjusted by alternating step-by-step adjustment along the first direction and the second direction. The first direction is the direction that gradually approaches the target output intensity, and the second direction is opposite to the first direction. The adjustment range along the first direction is greater than the adjustment range along the second direction. During the adjustment of the output intensity, the output intensity increases and decreases alternately. The adjustment range when increasing is greater than the adjustment range when decreasing, so that the overall output intensity increases. When the target change range is the second change range, the target adjustment strategy is adjusted in a stepwise manner along the first direction, wherein, during the adjustment of the output intensity, the output intensity continuously increases, and the lower limit of the second change range is greater than the upper limit of the first change range.
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