Massage control method and device of massage equipment and eye massage instrument
By introducing a massage control method into the massage device, selecting the massage mode according to the instructions entered by the user and controlling the operation of the airbag assembly, the problem of single functions of the existing equipment and fixed massage mode is solved, and a personalized and diverse massage experience is achieved.
Patent Information
- Application Number
- CN202510309738.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2025-05-23
AI Technical Summary
The existing airbag massage equipment has a single function, making it difficult to provide a personalized massage experience according to the massage needs of different users. The massage mode is fixed, lacking flexibility and diversity, making it difficult to meet users' massage needs in different scenarios.
A massage control method for a massage device is provided. By receiving instructions input by a user, selecting a corresponding massage mode, and calling the pre-stored massage parameter combination according to the massage mode, the inflation, holding and deflation time of the airbag assembly is controlled to simulate the delicate movement of human hand massage.
A more comfortable and effective massage experience is achieved. Users can choose different massage modes and strengths according to their own needs. The equipment can provide diverse massage effects to meet users' needs for a variety of massage modes.
Smart Images

Figure CN120022171A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of massage equipment, and in particular to a massage control method and device for massage equipment and an eye massager. Background Art
[0002] As people's quality of life continues to improve and their health awareness gradually increases, massage equipment, as a tool that can relieve fatigue, promote blood circulation and improve physical health, is becoming more and more popular among consumers. Traditional massage equipment usually uses mechanical vibration, rolling and other methods to massage muscles. Although it can relieve muscle fatigue to a certain extent, its massage effect and comfort are often limited by the structure and function of the equipment, and it is difficult to meet users' needs for personalized massage experience.
[0003] In recent years, with the development of intelligent control technology and pneumatic technology, massage equipment has gradually developed towards intelligence and multifunctionality. As an emerging massage method, airbag massage technology has gradually been widely used in massage equipment because it can provide soft and controllable massage strength. Airbag massage technology can more effectively relieve muscle tension and improve the comfort and effect of massage by controlling the inflation and deflation process of the airbag and simulating the pressing and kneading movements of manual massage.
[0004] However, existing airbag massage devices still have some shortcomings in practical applications. First, the functions of most airbag massage devices are relatively single, and it is difficult to provide personalized massage experience according to the massage needs of different users. Second, the massage modes of existing devices are relatively fixed, lacking flexibility and diversity, and it is difficult to meet the massage needs of users in different scenarios. Summary of the invention
[0005] The purpose of the present invention is to provide a massage control method and device for a massage device and an eye massager to solve the technical problem raised in the above background technology: in the prior art, most airbag massage devices have relatively single functions and it is difficult to provide personalized massage experience according to the massage needs of different users. Secondly, the massage modes of existing devices are relatively fixed, lacking flexibility and diversity, and it is difficult to meet the massage needs of users in different scenarios.
[0006] To achieve the above object, according to one aspect of the present disclosure, a massage control method of a massage device is provided, wherein the massage device comprises a plurality of massage heads, wherein the massage heads are used to massage specific positions of a human body, and wherein the massage heads are provided with airbag components, wherein the airbag components are used to control the massage strength of the massage heads, and the method comprises:
[0007] receiving a command input by a user, wherein the command includes a mode selection command;
[0008] According to the mode selection instruction, select a corresponding massage mode;
[0009] According to the massage mode, calling a pre-stored massage parameter combination, the parameter combination including a target inflation time, a pressure holding time, and a target deflation time;
[0010] According to the massage parameter combination, the air pressure control device is controlled to inflate, maintain or deflate the airbag assembly.
[0011] In one possible implementation, the massage head includes at least a first massage head combination, a second massage head combination and a third massage head combination, the first massage head combination includes at least a first massage head for massaging a first periorbital area of the left eye and a second massage head for massaging a first periorbital area of the right eye, the second massage head combination includes at least a third massage head for massaging a second periorbital area of the left eye and a fourth massage head for massaging a second periorbital area of the right eye, and the third massage head combination includes at least a fifth massage head for massaging the left temple and a sixth massage head for massaging the right temple.
[0012] In a possible implementation, the first periorbital portion of the left eye includes the upper eye socket of the left eye, the first periorbital portion of the right eye includes the upper eye socket of the right eye, the second periorbital portion of the left eye includes the lower eye socket of the left eye, and the second periorbital portion of the right eye includes the lower eye socket of the right eye.
[0013] In a possible implementation, the method further includes:
[0014] Receive a strength selection instruction input by a user;
[0015] According to the force selection instruction, select a corresponding force mode;
[0016] According to the massage mode and the strength mode, the pre-stored massage parameter combination is called.
[0017] In a possible implementation, the force mode includes a low force mode, a medium force mode, and a high force mode.
[0018] In a possible implementation, the step of controlling the air pressure control device to inflate, maintain or deflate the airbag assembly according to the massage parameter combination specifically includes:
[0019] Controlling the air pressure control device to inflate the airbag assembly, and stopping inflation when the inflation time reaches the preset target inflation time;
[0020] Maintaining the pressure of the airbag assembly, and stopping the maintenance when the holding time reaches the preset pressure holding time;
[0021] The air pressure control device is controlled to deflate the airbag assembly, and deflation is stopped when the deflation time reaches the preset target deflation time.
[0022] In a possible implementation, the massage head is further provided with a heating element, and the heating element is used to control the temperature of the massage head. The method further includes:
[0023] Receiving temperature control instructions input by a user;
[0024] According to the temperature control instruction, a corresponding temperature mode is selected from a pre-stored temperature mode library;
[0025] According to the selected temperature mode, the heating element is controlled to heat or maintain the current temperature.
[0026] According to another aspect of the present disclosure, a massage treatment device of a massage device is provided, wherein the massage device comprises a plurality of massage heads, wherein the massage heads are provided with airbag assemblies, wherein the airbag assemblies are used to control the pressure of the massage heads, and the device comprises:
[0027] An instruction receiving module, used for receiving instructions input by a user, wherein the instructions include a mode selection instruction;
[0028] A parameter calling module, used for selecting a corresponding massage mode according to the mode selection instruction, and calling a pre-stored massage parameter combination according to the massage mode, wherein the parameter combination includes a target inflation time, a pressure holding time, and a target deflation time;
[0029] The air pressure control module is used to inflate, maintain or deflate the airbag assembly according to the massage parameter combination.
[0030] According to another aspect of an embodiment of the present disclosure, an eye massager is provided, comprising a plurality of massage heads, each of which is provided with an airbag assembly, wherein the airbag assembly is used to control the pressure of the massage head, and further comprising a massage processing device, wherein the massage processing device is used to: receive instructions input by a user, wherein the instructions include a mode selection instruction; select a corresponding massage mode according to the mode selection instruction; call a pre-stored massage parameter combination according to the massage mode, wherein the parameter combination includes a target inflation time, a pressure holding time, and a target deflation time; and control the air pressure control device to inflate, hold, or deflate the airbag assembly according to the massage parameter combination.
[0031] In a possible implementation, the airbag assembly includes at least one multi-layer airbag.
[0032] The above one or more technical solutions in the embodiments of the present application have at least one or more of the following technical effects:
[0033] In a massage control method for a massage device provided in an embodiment of the present invention, through a pre-stored massage parameter combination, the device can accurately control the inflation, holding and deflation time of the airbag assembly, thereby simulating the delicate movements of human hand massage and providing a more comfortable and effective massage experience. For example, a longer inflation time and pressure holding time can provide a deeper massage effect, and multiple inflation and deflation cycles can effectively relieve muscle tension. Different massage parameter combinations can bring different massage experiences; by receiving instructions input by the user and selecting a corresponding massage mode according to the instructions, calling the pre-stored massage parameter combination according to the massage mode to control the inflation, holding and deflation time of the airbag assembly, the user only needs to input simple instructions to select different massage modes according to his or her own massage needs, thereby meeting the user's needs for multiple massage modes and greatly improving the user's massage experience.
[0034] The above description is only an overview of the technical solution of the present invention. In order to more clearly understand the technical means of the present invention, it can be implemented according to the contents of the specification. In order to make the above and other purposes, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are listed below. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] Figure 1 A flow chart of a massage control method for a massage device according to an exemplary embodiment;
[0036] Figure 2 A schematic diagram of a massage treatment device of a massage device according to an exemplary embodiment;
[0037] Figure 3 is a schematic diagram of an eye massage chair provided according to an exemplary embodiment;
[0038] Figure 4 A parameter combination table of a sleep mode and a low intensity mode of a massage control method for a massage device according to an exemplary embodiment;
[0039] Figure 5 A parameter combination table of a sleep mode and a strength-enhancing mode of a massage control method for a massage device according to an exemplary embodiment;
[0040] Figure 6 A parameter combination table of a sleep mode and a high intensity mode of a massage control method for a massage device according to an exemplary embodiment is provided.
[0041] Explanation of the reference numerals: 110, first massage head; 120, second massage head; 130, third massage head; 140, fourth massage head; 150, fifth massage head; 160, sixth massage head; 200, processing device; 210, instruction receiving module; 220, parameter calling module; 230, air pressure control module. DETAILED DESCRIPTION
[0042] In order to make the objectives, technical solutions and advantages of the present disclosure more clear, the embodiments of the present disclosure will be further described in detail below with reference to the accompanying drawings.
[0043] Exemplary embodiments will be described in detail herein, examples of which are shown in the accompanying drawings. When the following description refers to the drawings, the same numbers in different drawings represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present disclosure. Instead, they are merely examples of devices and methods consistent with some aspects of the present disclosure as detailed in the appended claims.
[0044] The massage device includes a plurality of massage heads, which are used to massage specific positions of the human body. The massage head is provided with an airbag assembly, which is used to control the massage strength of the massage head. Specifically, the massage head is a component that directly contacts the human skin and is responsible for massaging specific body parts. In order to achieve a more comprehensive and accurate massage effect, the massage device can be equipped with multiple massage heads. The airbag assembly is a component that controls the massage strength. The airbag assembly adjusts the pressure of the massage head by inflation and deflation, thereby achieving compression and relaxation of the muscles. For example, the massage head is directly fixed on the airbag assembly, and the expansion and contraction of the airbag assembly directly drives the massage head to perform massage movements. The airbag assembly is inflated by an air pressure control device, and the airbag assembly expands and applies pressure to the massage head, so that the massage head presses and massages the human body part. The airbag assembly is maintained for a period of time after inflation, and can maintain continuous pressure on the muscles to achieve the effect of deep massage. Then, the airbag assembly gradually deflates to release the pressure, so that the muscles are relaxed, thereby completing a massage cycle.
[0045] Figure 1 FIG. 1 is a flow chart of a massage control method for a massage device according to an exemplary embodiment. Figure 1 As shown, the method comprises the following steps:
[0046] In step S100, instructions input by the user are received, and the instructions include mode selection instructions; the mode selection instructions are mainly used to select different massage modes. For example, the user can input the mode selection instructions by pressing or rotating a button or knob on the device; or the user can input the mode selection instructions by touching an icon or text on the screen.
[0047] In step S200, the corresponding massage mode is selected according to the mode selection instruction. Specifically, after the user inputs the mode selection instruction through different methods (such as physical buttons, touch screens, voice instructions or mobile applications), the device captures the user's input, such as the user pressing the "soothing mode" button or selecting "soothing mode" in the application, and the device converts the instruction input by the user into a format that the device can understand, such as parsing the "soothing mode" into a corresponding mode identifier. In order to select the corresponding massage mode according to the instruction, a mode library needs to be pre-stored inside the device, which contains all available massage modes and their related parameters. By matching the parsed mode selection instruction with the mode identifier in the mode library, the corresponding massage mode is selected.
[0048] In step S300, according to the massage mode, a pre-stored massage parameter combination is called, and the parameter combination includes a target inflation time, a pressure holding time, and a target deflation time. Specifically, according to the selected massage mode, the corresponding parameter combination can be retrieved from the pre-stored massage parameter combination library, which is a pre-stored data structure containing all available massage modes and their corresponding parameter combinations. Each massage mode corresponds to a unique parameter combination, specifically including: target inflation time, pressure holding time, and target deflation time. The target inflation time indicates the time length of the airbag component inflation, and the target inflation time affects the intensity and depth of the massage. A longer inflation time means a stronger massage intensity and a deeper massage effect; the pressure holding time indicates the time length of the airbag component maintaining the pressure state, and a longer pressure holding time means a more continuous massage pressure, which helps to relax the muscles at a deeper level; the target deflation time indicates the time length of the airbag component deflation, and a longer deflation time means a deeper deflation process, providing a more soothing massage experience. Different massage experiences can be achieved by combining different parameters of target inflation time, pressure holding time and target deflation time, thus forming different massage modes. For example, shorter inflation time and deflation time simulate gentle pressure and release to provide a soothing massage experience, while longer inflation time and pressure holding time provide a deeper massage effect.
[0049] In step S400, according to the massage parameter combination, the air pressure control device is controlled to inflate, maintain or deflate the airbag assembly. Specifically, according to the target inflation duration in the parameter combination, the device sends an inflation instruction to the air pressure control device, for example, sending an instruction of "start inflation, last for 3 seconds". After receiving the instruction, the air pressure control device starts to inflate the airbag assembly. During the inflation process, the airbag assembly gradually expands and applies pressure to the massage head. During the inflation process, the device monitors the inflation time in real time to ensure that the inflation process lasts until the target inflation duration. For example, a timer or sensor is used to monitor the inflation time. When the inflation time reaches the target inflation duration, the device sends a stop inflation instruction to the air pressure control device, for example, sending a "stop inflation" instruction. The air pressure control device stops inflation and the pressure inside the airbag remains stable. According to the pressure maintenance duration, the device sends a pressure maintenance instruction to the air pressure control device, for example, sending a "maintain while" instruction. The air pressure control device receives the instruction and keeps the pressure inside the airbag unchanged for the pressure holding time. At this time, the massage head continuously massages the muscles under constant pressure. According to the target deflation time, the device sends a deflation instruction to the air pressure control device. For example, the device sends the instruction "start deflation, last for 3 seconds". After receiving the instruction, the air pressure control device starts to release the gas inside the airbag assembly. The airbag gradually contracts and the pressure on the massage head gradually decreases. During the deflation process, the device monitors the deflation time in real time to ensure that the deflation process lasts until the target deflation time. For example, a timer is used to monitor the deflation time. When the deflation time reaches the target deflation time, the device sends a stop deflation instruction to the air pressure control device, and the air pressure control device controls the airbag assembly to stop deflation.
[0050] It can be understood that the air pressure control device is usually composed of an air pump and an air valve. The air pump is used to inflate the airbag assembly and provide compressed air. The air valve controls the on and off of the airflow to achieve the functions of inflation, deflation and pressure maintenance. The air valve usually includes multiple valves, such as an inlet valve, an exhaust valve and a holding valve. The inlet valve is used to control the airflow between the air pump and the airbag for inflation; the exhaust valve is used to control the airflow between the airbag and the outside world for deflation; the holding valve is used to close the inlet valve and the exhaust valve during the pressure maintenance stage to maintain the pressure inside the airbag assembly. During the inflation process, after the controller receives the inflation instruction, it starts the air pump and starts to deliver compressed air to the airbag assembly. The controller opens the inlet valve to allow compressed air to enter the airbag assembly from the air pump. When the inflation time reaches the target inflation time or the pressure reaches the set value, the controller closes the inlet valve and stops the air pump. During the pressure maintenance process, the controller closes the inlet valve and the exhaust valve to prevent air from entering and exiting the airbag assembly. Since the inlet valve and the exhaust valve are both closed, the pressure inside the airbag assembly remains unchanged, and the massage head applies continuous pressure to the muscles. During the deflation process, the controller opens the exhaust valve to allow the gas inside the airbag to be discharged to the outside. When the deflation time reaches the target deflation time, the controller closes the exhaust valve.
[0051] Specifically, through the pre-stored massage parameter combination, the device can accurately control the inflation, holding and deflation time of the airbag component, thereby simulating the delicate movements of human hand massage and providing a more comfortable and effective massage experience. For example, a longer inflation time and pressure holding time can provide a deeper massage effect, and multiple inflation and deflation cycles can effectively relieve muscle tension. Different massage parameter combinations can bring different massage experiences; by receiving instructions input by the user and selecting the corresponding massage mode according to the instructions, calling the pre-stored massage parameter combination according to the massage mode to control the inflation, holding and deflation time of the airbag component, the user only needs to input simple instructions to select different massage modes according to their own massage needs, thereby meeting the user's demand for multiple massage modes and greatly improving the user's massage experience.
[0052] In one possible implementation, see Figure 3 The massage head comprises at least a first massage head combination, a second massage head combination and a third massage head combination. The first massage head combination comprises at least a first massage head 110 for massaging the first periorbital part of the left eye and a second massage head 120 for massaging the first periorbital part of the right eye. The second massage head combination comprises at least a third massage head 130 for massaging the second periorbital part of the left eye and a fourth massage head 140 for massaging the second periorbital part of the right eye. The third massage head combination comprises at least a fifth massage head 150 for massaging the left temple and a sixth massage head 160 for massaging the right temple. It can be understood that through the three massage head combinations, the periorbital and temple areas are accurately covered, and the airbag control and massage mode selection are combined to provide users with a comprehensive and personalized massage experience. Each massage head combination controls the inflation, retention and deflation process of the airbag by selecting different massage modes for different areas and massage needs, and realizes a variety of massage actions and strength control, thereby effectively relieving eye fatigue, improving blood circulation around the eyes, and relieving headaches and migraines.
[0053] In a possible implementation, the first periorbital area of the left eye includes the upper left eye orbit, the first periorbital area of the right eye includes the upper right eye orbit, the second periorbital area of the left eye includes the lower left eye orbit, and the second periorbital area of the right eye includes the lower right eye orbit. Specifically, the first massage head 110 mainly massages the upper left eye orbit, the second massage head 120 mainly massages the upper right eye orbit, the third massage head 130 mainly massages the lower left eye orbit, the fourth massage head 140 mainly massages the lower right eye orbit, the fifth massage head 150 mainly massages the left temple, and the sixth massage head 160 mainly massages the right temple. It can be understood that the upper eye orbit area is the main concentration area of eye fatigue. Long-term eye use (such as using a computer or mobile phone) will cause muscle tension in this area. Through the combined massage of the first massage head, eye fatigue can be effectively relieved. The lower eye orbit area is closely related to the formation of eye bags and dark circles. Through the combined massage of the second massage head, lymphatic circulation can be promoted, helping to reduce dark circles and eye bags, relaxing the orbicularis oculi muscle, and reducing muscle tension around the eyes. The temple is an important acupoint for relieving headaches. Through the combined massage of the third massage head, headaches and migraines can be effectively relieved. Through fine area division and targeted massage head design, the device can provide a more accurate and effective massage experience. Each massage head corresponds to a specific eye area. Combined with different massage modes, it can meet the diverse massage needs of users, thus achieving more comprehensive and personalized eye care.
[0054] In a possible implementation, the method further includes:
[0055] Receiving a force selection instruction input by the user; specifically, the device receives a force selection instruction input by the user. For example, the user presses the "medium force" button on the physical button or selects the "medium force" button on the touch screen.
[0056] According to the force selection instruction, selecting the corresponding force mode; for example, converting the force selection instruction input by the user through the operation interface or physical button of the device into a format that the device can understand. For example, parsing the "medium force" selection instruction into the corresponding force identifier. To implement selecting the corresponding force mode according to the force selection instruction, a mode library needs to be pre-stored inside the device, which contains all available force modes and their related parameters. By matching the parsed force selection instruction with the mode identifier in the mode library, the selection of the corresponding force mode is completed; the force mode can include a low force mode, a medium force mode, and a high force mode.
[0057] According to the massage mode and strength mode, the pre-stored massage parameter combination is called. For example, the user selects "soothing mode" through the device's operating interface or physical button, the device receives and parses the instruction, and determines that the massage mode selected by the user is "soothing mode". The user selects "medium strength" through the device's operating interface or physical button, the device receives and parses the strength selection instruction, and determines that the strength selected by the user is "medium strength". The device calls the parameter combination corresponding to "soothing mode" + "medium strength" from the pre-stored parameter combination library, and then controls the airbag component to inflate, maintain and deflate according to the set parameters based on the parameter combination.
[0058] For example, see Figure 4 , Figure 4 It is a parameter combination table for the sleep mode and low force mode. When the user selects the sleep mode and low force mode on the device, the device calls the parameter combination table from the pre-stored parameter combination library, and then controls the airbag component to inflate, maintain and deflate according to the set parameters according to the parameter combination table. The control process is as follows: Figure 4 For example, first step 1: the temple airbag (the airbag of the third massage head combination) is inflated for 5000ms, the upper eye area airbag (the airbag of the first massage head combination) is inflated for 5000ms, and the lower eye area airbag (the airbag of the second massage head combination) is inflated for 5000ms; then enter step 2: the temple airbag is maintained for 2500ms, the upper eye area airbag is maintained for 2500ms, and the lower eye area airbag is maintained for 2500ms; then enter step 3: the temple airbag is deflated for 2000ms, the upper eye area airbag is deflated for 2500ms, and the lower eye area airbag is deflated for 2000ms; and so on, until all the steps in the parameter combination table are completed, that is, the massage operation of this massage mode and this strength mode is completed.
[0059] Further, when the user selects different strengths, please refer to Figure 5 and Figure 6 , Figure 5 Parameter combination table for sleep mode and boost mode, Figure 6 This is a parameter combination table for the sleep mode plus the high intensity mode. It can be seen that under the same massage mode, the inflation, hold and deflation times corresponding to different intensity modes are different, and as the intensity increases, the inflation time, pressure hold time and deflation time all increase; as the intensity decreases, the inflation time, pressure hold time and deflation time all decrease. For example, through a shorter inflation time, the pressure in the airbag component is at a lower level, thus giving the customer a low-intensity massage experience, while through a longer inflation time, the pressure in the airbag component reaches a higher level, thus giving the customer a high-intensity massage experience.
[0060] In the control method of massage equipment, the introduction of strength selection instructions further enhances the personalization of the massage experience. Users can choose different massage intensities according to their own needs. The device calls the pre-stored massage parameter combination according to the user's selection of massage mode and strength mode, thereby achieving more precise massage control.
[0061] In a possible implementation, the steps of controlling the air pressure control device to inflate, maintain or deflate the airbag assembly according to the massage parameter combination specifically include:
[0062] Controlling the air pressure control device to inflate the airbag assembly, and stopping the inflation when the inflation time reaches a preset target inflation time;
[0063] Maintain the pressure of the airbag assembly, and stop maintaining when the holding time reaches the preset pressure holding time;
[0064] The air pressure control device is controlled to deflate the airbag assembly, and the deflation is stopped when the deflation time reaches a preset target deflation time.
[0065] In a possible implementation, the massage head is further provided with a heating element, and the heating element is used to control the temperature of the massage head. The method further includes:
[0066] Receiving temperature control instructions input by the user; specifically, the user may input temperature control instructions such as "heat", "maintain temperature", "turn off heating" through a physical button or a touch screen on the device;
[0067] According to the temperature control instruction, a corresponding temperature mode is selected from a pre-stored temperature mode library; specifically, the temperature control instruction input by the user is converted into a format that can be understood by the device. In order to select the corresponding temperature mode according to the temperature control instruction, a temperature mode library needs to be pre-stored inside the device, which contains all available temperature modes and their corresponding temperature setting values. According to the resolved temperature control instruction, the corresponding temperature mode identifier is matched from the temperature mode library;
[0068] According to the selected temperature mode, the heating element is controlled to heat or maintain the current temperature. For example, if the selected temperature mode requires heating, the heating element is controlled to heat. If the selected temperature mode is "maintain temperature", the current temperature of the massage head is maintained unchanged. In massage equipment, the temperature control function is an important part of improving the user experience. By controlling the temperature of the massage head, a hot compress effect can be provided to further relieve muscle fatigue and eye discomfort.
[0069] Reference Figure 2 The present disclosure also provides a massage treatment device of a massage device, the massage device includes a plurality of massage heads, the massage heads are provided with airbag components, the airbag components are used to control the pressure of the massage heads, and the device includes:
[0070] The instruction receiving module 210 is used to receive instructions input by the user, and the instructions include mode selection instructions;
[0071] The parameter calling module 220 is used to select the corresponding massage mode according to the mode selection instruction, and call the pre-stored massage parameter combination according to the massage mode, the parameter combination including the target inflation time, the pressure holding time, and the target deflation time;
[0072] The air pressure control module 230 is used to inflate, maintain or deflate the airbag assembly according to the massage parameter combination.
[0073] In an exemplary embodiment, an eye massager is also provided, which includes a plurality of massage heads, each of which is provided with an airbag assembly, which is used to control the pressure of the massage heads, and also includes a massage processing device 200, which is used to: receive instructions input by a user, the instructions including a mode selection instruction; select a corresponding massage mode according to the mode selection instruction; call a pre-stored massage parameter combination according to the massage mode, the parameter combination including a target inflation time, a pressure holding time, and a target deflation time; and control the air pressure control device to inflate, hold, or deflate the airbag assembly according to the massage parameter combination.
[0074] In a possible implementation, the airbag assembly includes at least one multi-layer airbag. Specifically, the multi-layer airbag refers to a plurality of single-layer airbag units connected end to end to form a long strip of airbag structure. This combination can achieve a longer massage stroke and a smaller cross-sectional area, that is, provide a larger massage range and strength in a smaller space.
[0075] In an exemplary embodiment, a massage control terminal of a massage device is also provided. The terminal may be a smart phone, a tablet computer, a notebook computer or a desktop computer. The terminal may also be called a user device, a portable terminal, a laptop terminal, a desktop terminal or other names.
[0076] Typically, a terminal includes: a processor and a memory.
[0077] The processor may include one or more processing cores, such as a 4-core processor, an 8-core processor, etc. The processor may be implemented in at least one of the following hardware forms: DSP (Digital Signal Processing), FPGA (Field-Programmable Gate Array), and PLA (Programmable Logic Array). The processor may also include a main processor and a coprocessor. The main processor is a processor for processing data in the wake-up state, also known as a CPU (Central Processing Unit); the coprocessor is a low-power processor for processing data in the standby state.
[0078] The memory may include one or more computer-readable storage media, which may be non-transitory. The memory may also include high-speed random access memory, and non-volatile memory, such as one or more disk storage devices, flash memory storage devices.
[0079] In an exemplary embodiment, a storage medium including instructions is also provided, such as a memory including instructions, and the instructions can be executed by a processor of a terminal to complete the massage control method of the massage device. Optionally, the storage medium is a non-temporary computer-readable storage medium, for example, the computer-readable storage medium can be a ROM (Read-Only Memory), a RAM (Random Access Memory), a CD-ROM (Compact Disc Read-Only Memory), a magnetic tape, a floppy disk, an optical data storage device, etc.
[0080] In an exemplary embodiment, a computer program product is also provided, which includes a computer program code, which is stored in a computer-readable storage medium. A processor of a computer device reads the computer program code from the computer-readable storage medium, and the processor executes the computer program code, so that the computer device performs the operations performed in the massage control method of the above-mentioned massage device.
[0081] The matters not described in detail in the present invention are all known technologies to those skilled in the art.
[0082] It will be apparent to those skilled in the art that the invention is not limited to the details of the exemplary embodiments described above and that the invention can be implemented in other specific forms without departing from the spirit or essential features of the invention. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description, and it is intended that all variations falling within the meaning and scope of the equivalent elements of the claims be included in the invention. Any reference numeral in a claim should not be considered as limiting the claim to which it relates.
Claims
1. A massage control method for a massage device, characterized in that: The massage device comprises a plurality of massage heads, the massage heads are used to massage specific positions of the human body, the massage heads are provided with airbag components, and the airbag components are used to control the massage strength of the massage heads. The method comprises: receiving a command input by a user, wherein the command includes a mode selection command; According to the mode selection instruction, select a corresponding massage mode; According to the massage mode, calling a pre-stored massage parameter combination, the parameter combination including a target inflation time, a pressure holding time, and a target deflation time; According to the massage parameter combination, the air pressure control device is controlled to inflate, maintain or deflate the airbag assembly.
2. The massage control method of a massage device according to claim 1, characterized in that: The massage heads include at least a first massage head combination, a second massage head combination and a third massage head combination, wherein the first massage head combination includes at least a first massage head for massaging a first periorbital area of the left eye and a second massage head for massaging a first periorbital area of the right eye, the second massage head combination includes at least a third massage head for massaging a second periorbital area of the left eye and a fourth massage head for massaging a second periorbital area of the right eye, and the third massage head combination includes at least a fifth massage head for massaging a left temple and a sixth massage head for massaging a right temple.
3. The massage control method of a massage device according to claim 2, characterized in that: The first periorbital portion of the left eye includes the upper eye socket of the left eye, the first periorbital portion of the right eye includes the upper eye socket of the right eye, the second periorbital portion of the left eye includes the lower eye socket of the left eye, and the second periorbital portion of the right eye includes the lower eye socket of the right eye.
4. The massage control method of a massage device according to claim 1, characterized in that: The method further comprises: Receive a strength selection instruction input by a user; According to the force selection instruction, select a corresponding force mode; According to the massage mode and the strength mode, the pre-stored massage parameter combination is called.
5. The massage control method of a massage device according to claim 4, characterized in that: The force modes include a low force mode, a medium force mode and a high force mode.
6. The massage control method of a massage device according to claim 1, characterized in that: The step of controlling the air pressure control device to inflate, maintain or deflate the airbag assembly according to the massage parameter combination specifically includes: Controlling the air pressure control device to inflate the airbag assembly, and stopping inflation when the inflation time reaches the preset target inflation time; Maintaining the pressure of the airbag assembly, and stopping the maintenance when the holding time reaches the preset pressure holding time; The air pressure control device is controlled to deflate the airbag assembly, and deflation is stopped when the deflation time reaches the preset target deflation time.
7. The massage control method of a massage device according to claim 1, characterized in that: The massage head is further provided with a heating element, and the heating element is used to control the temperature of the massage head. The method further includes: Receiving temperature control instructions input by a user; According to the temperature control instruction, a corresponding temperature mode is selected from a pre-stored temperature mode library; According to the selected temperature mode, the heating element is controlled to heat or maintain the current temperature.
8. A massage treatment device of a massage device, characterized in that: The massage device comprises a plurality of massage heads, each of which is provided with an airbag assembly, and the airbag assembly is used to control the pressure of the massage head. The device comprises: An instruction receiving module, used for receiving instructions input by a user, wherein the instructions include a mode selection instruction; A parameter calling module, used for selecting a corresponding massage mode according to the mode selection instruction, and calling a pre-stored massage parameter combination according to the massage mode, wherein the parameter combination includes a target inflation time, a pressure holding time, and a target deflation time; The air pressure control module is used to inflate, maintain or deflate the airbag assembly according to the massage parameter combination.
9. An eye massager, characterized in that: The eye massager includes a plurality of massage heads, each of which is provided with an airbag assembly, and the airbag assembly is used to control the pressure of the massage head. The massager also includes a massage processing device, and the massage processing device is used to: receive instructions input by a user, the instructions including a mode selection instruction; select a corresponding massage mode according to the mode selection instruction; call a pre-stored massage parameter combination according to the massage mode, the parameter combination including a target inflation time, a pressure holding time, and a target deflation time; and control the air pressure control device to inflate, hold, or deflate the airbag assembly according to the massage parameter combination.
10. An eye massager according to claim 9, characterized in that: The airbag assembly includes at least one multi-layer airbag.