Head massager
By using an air pump and control valve design in the head massager, flexible control of the airbag assembly is achieved, and the complex air circuit structure is solved, and the reliability and convenience of the equipment are improved.
Patent Information
- Application Number
- CN202421109277.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-21
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-05-21
AI Technical Summary
The existing head massagers have complex gas circuit structures, resulting in high gas circuit risks, increased energy consumption, difficulty in assembly and tracheal falloff.
An air pump is used to supply air to the first airbag assembly and the second airbag assembly through the air pipe assembly, and the control valve is used to control the communication between the air pump and the airbag assembly, so as to achieve the selection of different massage modes and simplify the gas circuit structure.
It simplifies the difficulty of gas circuit control, reduces costs, improves the smoothness of gas circuit, avoids increased energy consumption and assembly difficulties caused by the complex gas circuit structure, and improves the reliability and convenience of equipment.
Smart Images

Figure CN223111955U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of massage apparatuses, in particular to a head massager. Background Art
[0002] A head massager is an instrument specifically for massaging the head. Using the working principle of air pressure for massage, massage airbags are sleeved or surrounded around the parts of the human body to be massaged. Electric power is used as the power to start an air pump, and air is compressed and filled into the massage airbags to generate air pressure to replace the massage force of a person. When the airbags are inflated, the air pressure is transmitted from the airbags to the human body parts. During use, the airbags will continuously press on the acupoints of the human body parts. The head massager restores physical strength to the brain by massaging the head. Through firm and continuous air pressure massage, it helps the brain quickly relieve stress and tension, dredge the meridians and collaterals, has the effects of strengthening the brain and calming the nerves, improving eyesight and hearing for the brain, while improving cerebral blood circulation, increasing the oxygen uptake of the brain, being beneficial to the functional regulation of the cerebral cortex, enhancing intelligence and brain function, strengthening memory, relieving fatigue, eliminating tension and anxiety, and enabling the brain to regain sufficient energy and physical strength. For example, the head massager massages the cerebral cortex, activates cell vitality and brain nerves, has the effect of maintaining the brain, and has a certain effect on dizziness, headache, neuralgia, and relieving insomnia.
[0003] When the existing head massager massages at least two parts of the head, at least two airbags need to be provided, and each airbag is configured with a corresponding solenoid valve, so the air circuit connection is complex and the air circuit risk is high. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a head massager, aiming to solve the technical problem of the complex air circuit structure of the existing head massager.
[0005] The present application provides a head massager, which includes:
[0006] A main body, the main body includes an air pump, an air pipe assembly and a control valve. The air pipe assembly has an input interface, a first output interface and a second output interface. The input interface is used to communicate with the air pump, and the first output interface and the second output interface are respectively communicated with the input interface. The control valve is used to control the communication between the first output interface and the input interface, or the control valve is used to control the communication between the second output interface and the input interface.
[0007] A head massage mechanism, the head massage mechanism includes a mounting member, a first airbag assembly and a second airbag assembly. The first airbag assembly and the second airbag assembly are respectively mounted on the mounting member. The first airbag assembly is communicated with the first output interface through a first pipe, and the second airbag assembly is communicated with the second output interface through a second pipe.
[0008] In one embodiment, the host further includes a controller, which is electrically connected to the air pump, and the controller is used to control the working state of the air pump.
[0009] In one embodiment, the controller is electrically connected to the control valve, and the controller is used to control the on / off of the control valve.
[0010] In one embodiment, the host further includes a pressure sensor, which is electrically connected to the controller, and the pressure sensor is used to detect the internal air pressure of the tracheal component.
[0011] In one embodiment, the host further includes a battery, which is electrically connected to the controller, and the battery is used to supply electrical energy to the controller.
[0012] In one embodiment, the controller has a charging interface, and the controller is connected to an external power supply through the charging interface.
[0013] In one embodiment, the controller includes a circuit board and a main control unit. The main control unit is electrically installed on the circuit board, and the air pump is electrically connected to the circuit board; the controller further includes an indicator light, which is electrically installed on the circuit board; the controller further includes a button, which is electrically installed on the circuit board.
[0014] In one embodiment, the tracheal component includes a first pipe fitting, a second pipe fitting, and a third pipe fitting. One end of the first pipe fitting has the input interface. The first pipe fitting is respectively communicated with the second pipe fitting and the third pipe fitting. One end of the second pipe fitting away from the first pipe fitting has the first output interface. One end of the third pipe fitting away from the first pipe fitting has the second output interface. The control valve is connected in series in the second pipe fitting or the third pipe fitting.
[0015] In one embodiment, the host further includes a housing, which is separately arranged from the mounting member, and the air pump is installed in the housing.
[0016] In one embodiment, the head massager further includes a connecting member. One end of the connecting member is connected to the housing, and the other end of the connecting member is connected to the mounting member.
[0017] In one embodiment, the connecting member has a first channel and a second channel. The first channel is respectively communicated with the first output interface and the first pipeline. The second channel is respectively communicated with the second output interface and the second pipeline.
[0018] In one embodiment, the connecting member has a wire routing cavity, one end of the wire routing cavity communicates with the interior of the housing, and the other end of the wire routing cavity is located at the mounting member.
[0019] In one embodiment, the first pipe and the second pipe are located on the same side of the mounting member in the thickness direction.
[0020] In one embodiment, the first pipe and the second pipe are located at the same end of the mounting member in the length direction.
[0021] In one embodiment, the first pipe is fixedly welded to the first airbag assembly through a nozzle joint.
[0022] In one embodiment, the first pipe is fixedly welded to the first output interface through a nozzle joint.
[0023] In one embodiment, the second pipe is fixedly welded to the second airbag assembly through a nozzle joint.
[0024] In one embodiment, the second pipe is fixedly welded to the second output interface through a nozzle joint.
[0025] In one embodiment, the first pipe and the first airbag assembly are located on opposite sides of the mounting member in the thickness direction.
[0026] In one embodiment, the second pipe and the second airbag assembly are located on opposite sides of the mounting member in the thickness direction.
[0027] In one embodiment, the first airbag assembly and the second airbag assembly are spaced apart and mounted on the mounting member.
[0028] In one embodiment, the first airbag assembly includes a first airbag tube and two first airbag portions. Both ends of the first airbag tube communicate with the two first airbag portions respectively, and the first pipe communicates with the middle portion of the first airbag tube.
[0029] In one embodiment, the second airbag assembly includes a second airbag tube and two second airbag portions. Both ends of the second airbag tube communicate with the two second airbag portions respectively, and the second pipe communicates with the middle portion of the second airbag tube.
[0030] In one embodiment, both ends of the second airbag assembly are located between both ends of the first airbag assembly.
[0031] In one embodiment, both end portions of the first airbag assembly and both end portions of the second airbag assembly are spaced apart along the length direction of the mounting member.
[0032] In one embodiment, the first airbag assembly at least partially extends along the upper edge of the mounting member. A first arc portion is provided at a position near the middle of the upper edge of the mounting member, and the first arc portion bends towards the lower edge of the mounting member.
[0033] In one embodiment, the second airbag assembly at least partially extends along the lower edge of the mounting member. A second arc portion is provided at a position near the middle of the lower edge of the mounting member, and the second arc portion bends towards the upper edge of the mounting member.
[0034] In one embodiment, the head massager further includes a heating module, and the heating module is mounted on a side of the first airbag assembly away from the mounting member; the heating module is electrically connected to the main body.
[0035] In one embodiment, the head massager further includes a function module, and the function module includes at least one of a vibration module, an electrostimulation module, and a bone conduction module. The function module is mounted on the mounting member, and the function module is electrically connected to the main body.
[0036] In one embodiment, the mounting member is a head strap.
[0037] In one embodiment, a first notch is provided at the upper edge of the mounting member, and the first notch is located at a middle position of the mounting member in the length direction of the mounting member.
[0038] In one embodiment, a second notch is provided at the lower edge of the mounting member, and the second notch is located at a middle position of the mounting member in the length direction of the mounting member.
[0039] The beneficial effects of the head massager provided by the present utility model are as follows: An air pump can supply air to the first airbag assembly and the second airbag assembly respectively through an air pipe assembly to press different positions of the human head. A control valve controls the air pump to communicate with the first airbag assembly, or the control valve controls the air pump to communicate with the second airbag assembly, so as to realize the simultaneous operation of the first airbag assembly and the second airbag assembly, or the separate operation of the first airbag assembly or the second airbag assembly alone, and realize the selection of different massage modes. Moreover, an air pump is matched with a control valve, which simplifies the air path structure and the difficulty of air path control, solves the technical problem of the complex air path structure of the existing head massager, is beneficial to reducing costs, improving the air path smoothness, and at the same time avoids problems such as increased energy consumption, difficult assembly, air pipe detachment, and air path failure caused by the complex air path structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0040] To more clearly illustrate the technical solutions in the embodiments of the present utility model, the following will briefly introduce the attached drawings required for use in the embodiments or the description of the prior art. Obviously, the attached drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other attached drawings can be obtained based on these attached drawings.
[0041] Figure 1 Structural schematic diagram of the head massager provided in this embodiment;
[0042] Figure 2 Structural schematic diagram of the main body of the head massager provided in this embodiment after removing the housing;
[0043] Figure 3 Assembly schematic diagram of the head massage mechanism and some connecting parts of the head massager provided in this embodiment;
[0044] Figure 4 For Figure 3 Another perspective view of the head massage mechanism and some connecting parts in
[0045] Figure 5 Structural schematic diagram of the connecting part of the head massager provided in this embodiment.
[0046] Among them, the reference numerals in the figures:
[0047] 100, main body; 110, air pump; 120, air pipe assembly; 121, input interface; 122, first output interface; 123, second output interface; 124, first pipe fitting; 125, second pipe fitting; 126, third pipe fitting; 130, control valve; 140, controller; 141, charging interface; 150, pressure sensor; 160, battery; 170, housing;
[0048] 200, head massage mechanism; 210, mounting part; 211, first notch; 212, second notch; 220, first airbag assembly; 221, first airbag pipe; 222, first airbag part; 223, first arc part; 230, second airbag assembly; 231, second airbag pipe; 232, second airbag part; 233, second arc part; 240, first pipeline; 250, second pipeline;
[0049] 300, connecting part; 310, first cavity; 320, second cavity; 330, wire routing cavity;
[0050] 410, air nozzle joint; 420, heating module; 430, function module. Detailed implementation manners
[0051] Embodiments of the present utility model will be described in detail below. Examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present utility model, and should not be construed as a limitation of the present utility model.
[0052] Throughout the specification, reference to "one embodiment" or "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment of the present application. Thus, the phrases "in one embodiment" or "in some embodiments" appearing throughout the specification do not necessarily all refer to the same embodiment. Furthermore, in one or more embodiments, the particular features, structures, or characteristics may be combined in any suitable manner.
[0053] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by terms such as "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation of the present utility model.
[0054] In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features.
[0055] In the present utility model, unless otherwise clearly defined and limited, terms such as "installation", "connection", "connection", "fixation", etc. should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0056] Please refer to Figures 1 to 4, this application provides a head massager. The head massager includes a main body 100 and a head massage mechanism 200. The main body 100 includes an air pump 110, an air pipe assembly 120, and a control valve 130. The air pipe assembly 120 has an input interface 121, a first output interface 122, and a second output interface 123. The input interface 121 is used to communicate with the air pump 110, and the first output interface 122 and the second output interface 123 are respectively communicated with the input interface 121. The control valve 130 is used to control the communication between the first output interface 122 and the input interface 121, or the control valve 130 is used to control the communication between the second output interface 123 and the input interface 121. In other words, the control valve 130 can control the on-off between the first output interface 122 or the second output interface 123 and the input interface 121, and the control valve 130 does not need to simultaneously control the on-off between the first output interface 122 and the input interface 121 and the on-off between the second output interface 123 and the input interface 121.
[0057] The head massage mechanism 200 includes a mounting member 210, a first airbag assembly 220, and a second airbag assembly 230. The first airbag assembly 220 and the second airbag assembly 230 are respectively mounted on the mounting member 210. The first airbag assembly 220 is communicated with the first output interface 122 through a first pipe 240, and the second airbag assembly 230 is communicated with the second output interface 123 through a second pipe 250.
[0058] In this embodiment, an air pump 110 can supply air to the first airbag assembly 220 and the second airbag assembly 230 respectively through the air pipe assembly 120 to press different positions of the human head. The control valve 130 controls the communication between the air pump 110 and the first airbag assembly 220, or the control valve 130 controls the communication between the air pump 110 and the second airbag assembly 230, so as to realize the simultaneous operation of the first airbag assembly 220 and the second airbag assembly 230, or the independent operation of the first airbag assembly 220 or the second airbag assembly 230 alone, realizing the selection of different massage modes. Moreover, an air pump 110 cooperates with a control valve 130, which simplifies the air circuit structure, simplifies the air circuit control difficulty, is beneficial to reducing costs, improves the air circuit smoothness, and at the same time avoids problems such as increased energy consumption, difficult assembly, air pipe detachment, and air circuit failure caused by the complex air circuit structure.
[0059] Specifically, the mounting member 210 is used to be worn on the human head. The first airbag assembly 220 and the second airbag assembly 230 are at least partially arranged at intervals on the mounting member 210. The first airbag assembly 220 and the second airbag assembly 230 respectively massage different positions of the head. For example, the first airbag assembly 220 massages the temple, and the second airbag assembly 230 massages the back of the neck. That is, after the mounting member 210 is worn on the human head, the first airbag assembly 220 is located at the temple, and the second airbag assembly 230 is located at the back of the neck.
[0060] Optionally, the control valve 130 is used to control the on-off between the input interface 121 and the second output interface 123. The rotation speed and direction of the air pump 110 can be adjusted. The massage gears of the head massager include low gear, medium gear, and high gear. Specifically, after startup, it enters the standby interface. If there is no operation within a preset time, for example, within three seconds, it automatically enters the low gear. The air pump 110 is energized and rotates forward while inflating the first airbag assembly 220 and the second airbag assembly 230 to massage the temples and the back of the neck simultaneously. The control valve 130 blocks the connection between the input interface 121 and the second output interface 123, and the second airbag assembly 230 stops massaging, so that only the first airbag assembly 220 for the temples is inflated and deflated for massage. Further, through a custom program, various multi-level combined massage methods such as separate massage of the temples and simultaneous massage of the temples and the back of the neck can be achieved.
[0061] In some embodiments, in combination with Figure 1 and Figure 4 , the main body 100 further includes a controller 140. The controller 140 is electrically connected to the air pump 110, and the controller 140 is used to control the working state of the air pump 110. With the setting of the controller 140, the user does not need to manually operate the air pump 110 and the air pipe assembly 120, which can simplify the control of the air pump 110 and further reduce the control difficulty of the air circuit.
[0062] Specifically, the controller 140 can control the air pump 110 to achieve inflation and deflation, with a fast response speed and simple operation. The controller 140 can accurately control the rotation speed, direction, and working time of the air pump 110, so as to accurately control the inflation volume and massage strength of the first airbag assembly 220 and the second airbag assembly 230. The controller 140 can dynamically adjust the working state of the air pump 110 according to needs to avoid unnecessary energy consumption. For example, in the standby state, the controller 140 can reduce the power of the air pump 110 or make it enter the sleep mode to reduce energy consumption. The controller 140 can integrate multiple safety protection functions, such as overheat protection, overload protection, etc., to ensure that the air pump 110 can automatically stop working in case of abnormality, avoiding damage to the head massager or injury to the user.
[0063] Furthermore, the controller 140 can implement more complex operation logics and algorithms, making the use of the head massager more intelligent. For example, through a preset massage program, the user can select different massage modes, and the controller 140 will automatically adjust the working parameters of the air pump 110 according to the selected mode, such as inflation speed, massage duration, etc.
[0064] In one of the embodiments, in combination with Figure 1 and Figure 4, the controller 140 is electrically connected to the control valve 130. The controller 140 is used to control the on / off of the control valve 130. That is, the user does not need to manually control the on / off of the control valve 130, which reduces the user's operation difficulty and improves the usability of the device.
[0065] Specifically, the controller 140 can implement multiple massage modes. For example, the controller 140 can independently control the inflation and deflation of the first airbag assembly 220 or the second airbag assembly 230, or control the first airbag assembly 220 and the second airbag assembly 230 to inflate and deflate simultaneously to provide different massage experiences and effects.
[0066] The traditional head massager controls the inflation and deflation time of the air pump 110 and the internal pressure of the first airbag assembly 220 and the second airbag assembly 230 according to the usage duration. However, due to the different wearing and tension degrees of the mounting member 210, the required inflation and deflation time of the user is also different.
[0067] Optionally, the control valve 130 is a solenoid valve. Of course, in other embodiments, the control valve 130 can also be a pneumatic valve, which is not limited herein.
[0068] In one embodiment, in combination with Figure 1 and Figure 4 , the main body 100 further includes a pressure sensor 150. The pressure sensor 150 is electrically connected to the controller 140. The pressure sensor 150 is used to detect the internal air pressure of the air pipe assembly 120. The main body 100 monitors the internal air pressure of the air pipe assembly 120 in real time through the pressure sensor 150, that is, monitors the air pressure of the first airbag assembly 220 and the second airbag assembly 230 connected thereto, ensuring the user's safety during use and at the same time ensuring that the massage force reaches the preset force. Based on this, when the pressure sensor 150 detects that the internal air pressure of the air pipe assembly 120 reaches the preset pressure value, the controller 140 controls the air pump 110 to stop inflating, so that the pressing forces of the first airbag assembly 220 and the second airbag assembly 230 on the head are consistent regardless of whether the mounting member 210 is worn tightly or loosely.
[0069] At the same time, by monitoring the air pressure in real time through the pressure sensor 150, the controller 140 can precisely control the working state of the air pump 110, avoiding unnecessary energy consumption. When the air pressure reaches the preset value, the controller 140 can automatically reduce the power of the air pump 110 or make it enter the sleep mode, thereby reducing energy consumption and prolonging the service life of the device.
[0070] Among them, the pressure sensor 150 detects the air pressure of the tracheal assembly 120, rather than the air pressure of the first airbag assembly 220 or the second airbag assembly 230. Only one pressure sensor 150 is needed to monitor the air pressure changes of all airbag assemblies in the massage state, reducing the complexity of installation and maintenance and lowering the cost. Moreover, since the air pressure change of the tracheal assembly 120 has the fastest feedback, the upcoming air pressure of the first airbag assembly 220 and / or the second airbag assembly 230 can be quickly obtained, and the controller 140 can adjust the working state of the air pump 110 more quickly and accurately.
[0071] Specifically, the pressure sensor 150 can monitor the change of air pressure in real time. If the air pressure is abnormal (such as the air pressure continuously rising or falling), the controller 140 can determine whether the device has a fault and prompt the user.
[0072] Specifically, the controller 140 can automatically adjust the massage mode and parameters according to the air pressure value detected by the pressure sensor 150. For example, when the air pressure reaches a preset value, the controller 140 can automatically switch to the deflation mode to avoid over-inflation.
[0073] In one embodiment, in combination with Figure 1 and Figure 4 , the main body 100 further includes a battery 160. The battery 160 is electrically connected to the controller 140, and the battery 160 is used to supply electrical energy to the controller 140. The battery 160, as a movable power source, enables the head massager to no longer rely on an external power socket for power supply, making the head massager more portable and improving the flexibility and convenience of use. In addition, the electrical energy provided by the battery 160 is relatively stable, not affected by external power grid fluctuations, reducing the risk of device failure or performance degradation caused by power fluctuations, and reducing the discomfort of sudden changes in massage force.
[0074] It can be understood that in other embodiments, the main body 100 may not be provided with the battery 160, and the main body 100 obtains electrical energy by directly connecting to an external power source, which will not be elaborated here one by one.
[0075] In one embodiment, in combination with Figure 1 and Figure 4 , the controller 140 has a charging interface 141. The controller 140 is connected to an external power source through the charging interface 141, so as to ensure that the main body 100 obtains electrical energy.
[0076] Optionally, the controller 140 is communicatively connected to the outside through the charging interface 141 to receive software updates from external devices or upgrade internal programs, enhancing the user experience and the device's intelligence level. Moreover, the external device or server can remotely access the status information, error logs, etc. of the controller 140 for fault diagnosis and technical support. The user can remotely control the head massager through a mobile phone, tablet computer, or other terminals, providing a more convenient usage experience. Through the communicative connection with external devices, the user can synchronize information such as their personalized settings and massage preferences to the head massager to provide customized massage services, offering an experience that better meets the user's needs.
[0077] In one embodiment, in combination with Figure 1 and Figure 4 , the controller 140 includes a circuit board and a main control unit. The main control unit is electrically installed on the circuit board, and the air pump 110 is electrically connected to the circuit board. The circuit board facilitates the integration of various electronic components, improving the device's integration level and scalability. The direct electrical connection between the air pump 110 and the circuit board reduces the complexity and tediousness in traditional wiring, lowers production costs, and also improves the device's reliability and maintainability.
[0078] Specifically, the controller 140 further includes an indicator light that is electrically installed on the circuit board. The controller 140 can use the indicator light to prompt the user of the working status.
[0079] Specifically, the controller 140 further includes buttons that are electrically installed on the circuit board. The user can select different massage modes through the buttons, improving the usage convenience, and the buttons are not easily affected by the external environment, with high usage reliability. For example, by pressing different buttons, the user can easily select massage modes, adjust massage intensity, set working time, etc., without relying on a complex interface or external device.
[0080] In one embodiment, in combination with Figure 4 , the tracheal assembly 120 includes a first pipe fitting 124, a second pipe fitting 125, and a third pipe fitting 126. One end of the first pipe fitting 124 has an input interface 121. The first pipe fitting 124 is respectively communicated with the second pipe fitting 125 and the third pipe fitting 126. The end of the second pipe fitting 125 away from the first pipe fitting 124 has a first output interface 122, and the end of the third pipe fitting 126 away from the first pipe fitting 124 has a second output interface 123. The control valve 130 is connected in series in the second pipe fitting 125 or the third pipe fitting 126. Figure 4 As shown in
[0081] The tracheal assembly 120 includes a first pipe fitting 124, a second pipe fitting 125 and a third pipe fitting 126, which helps to simplify the structure of the tracheal assembly 120, realizes inflation and deflation from one input interface 121 to two output interfaces, and also provides installation support for the control valve 130, making the tracheal assembly 120 more compact.
[0082] In one embodiment, in combination with Figure 1 , the main body 100 further includes a housing 170. The housing 170 and the mounting member 210 are separately arranged, and the air pump 110 is installed in the housing 170. The main body 100 and the head massage mechanism 200 are separated, which avoids increasing the weight of the head massage mechanism 200, is beneficial for the user to use the head massage chair lightly, and is conducive to the modular design of the main body 100 and the head massage mechanism 200 for separate manufacturing and assembly.
[0083] In addition, the setting of the housing 170 can, on the one hand, provide a support basis for the main body 100, and on the other hand, facilitate the user to hold it, improving the operation convenience. Of course, it can be understood that in other embodiments, the main body 100 can be directly assembled on the mounting member 210, which is not limited herein.
[0084] Generally, the housing 170 encloses the air pump 110 to better protect electrical components such as the air pump 110, improving the airtightness and the safety of the main body 100. The housing 170 can play a certain sound insulation role, reducing the noise generated when the air pump 110 works from spreading to the outside. Figure 1 To display the internal structure of the main body 100, part of the housing 170 is removed. Of course, in other embodiments, the housing 170 does not have to enclose the air pump 110, which is beneficial for the user to maintain the main body 100.
[0085] In one embodiment, the battery 160 and the air pump 110 are distributed along the width of the housing 170 to make full use of the internal installation space of the housing 170, which is beneficial for reducing the volume of the main body 100.
[0086] In one embodiment, the controller 140 and the air pump 110 are distributed along the thickness of the housing 170 to make full use of the internal installation space of the housing 170, which is beneficial for reducing the volume of the main body 100. The battery 160 and the air pump 110 are located on the same side of the controller 140, which is beneficial for them to be electrically connected to the controller 140 respectively.
[0087] In one embodiment, the tracheal assembly 120 and the air pump 110 are distributed along the height of the housing 170, so that the gas is transmitted along the height of the housing 170, simplifying the gas path design.
[0088] In one embodiment, in combination with Figure 1, the head massager further includes a connecting member 300. One end of the connecting member 300 is connected to the housing 170, and the other end of the connecting member 300 is connected to the mounting member 210. The arrangement of the connecting member 300 facilitates stable and reliable gas transmission and signal transmission between the main body 100 and the head massage mechanism 200.
[0089] In one embodiment, in combination with Figure 1 and Figure 5 , the connecting member 300 has a first channel 310 and a second channel 320. The first channel 310 is respectively communicated with the first output interface 122 and the first pipeline 240, and the second channel 320 is respectively communicated with the second output interface 123 and the second pipeline 250. The design of the first channel 310 and the second channel 320 realizes independent channels for air flow, ensuring that the air flows output from the first output interface 122 and the second output interface 123 do not interfere with each other, simplifying the air path design and reducing air flow loss.
[0090] In one embodiment, in combination with Figure 1 and Figure 5 , the connecting member 300 has a wire routing channel 330. One end of the wire routing channel 330 is communicated with the inside of the housing 170, and the other end of the wire routing channel 330 is located at the mounting member 210. The cable is arranged in the wire routing channel 330, reducing mutual interference with other components and improving safety.
[0091] In one embodiment, in combination with Figure 1 , the first pipeline 240 and the second pipeline 250 are located on the same side in the thickness direction of the mounting member 210. Based on this, on the one hand, it is beneficial for the trachea assembly 120 to be connected to the first pipeline 240 and the second pipeline 250 respectively on the same side at the same time, shortening the air path length, simplifying the air path design, and greatly reducing the complexity of the air path structure; on the other hand, the first pipeline 240 and the second pipeline 250 are located on the same side, which can significantly reduce the size of the head massage mechanism 200 in the thickness direction, making the structure more compact.
[0092] Optionally, the first pipeline 240 and the second pipeline 250 are arranged at an upper and lower interval to avoid crossing, further simplifying the air path design and also avoiding mutual interference. For example, referring to Figure 2 , in the height direction Y of the mounting member 210, the first pipeline 240 is located above the second pipeline 250.
[0093] It can be understood that in other embodiments, the first pipeline 240 and the second pipeline 250 can be located on different sides in the thickness direction of the mounting member 210 to avoid mutual interference.
[0094] In one embodiment, in combination with Figure 1 and Figure 2, the first pipe 240 and the second pipe 250 are located at the same end of the mounting member 210 in the longitudinal direction X. Based on this, on the one hand, it is beneficial for the gas pipeline assembly 120 to perform gas path connection at the same end, shortening the gas path length and reducing the gas path design; on the other hand, when designing and manufacturing the mounting member 210, only the positions of the first pipe 240 and the second pipe 250 need to be considered at one end, reducing the complexity and production cost of the head massage mechanism 200.
[0095] It can be understood that in other embodiments, the first pipe 240 and the second pipe 250 may be located at different ends of the mounting member 210 in the longitudinal direction X, and this is not uniquely limited herein.
[0096] In one of the embodiments, in combination with Figure 2 and Figure 3 , the first pipe 240 is fixedly welded to the first airbag assembly 220 through a nozzle joint 410. Welding can ensure a firm connection between the first pipe 240 and the first airbag assembly 220, which is not easy to loosen or fall off, has good airtightness and high durability. Optionally, the nozzle joint 410 is welded to the first airbag assembly 220 by high-frequency technology for the transfer of the gas path and the circuit part.
[0097] It can be understood that in other embodiments, other methods such as bonding, clamping, screw connection, and fastener connection may also be used to fix the first pipe 240 and the first airbag assembly 220, which are not limited herein.
[0098] In one of the embodiments, in combination with Figures 2 to 4 , the first pipe 240 is fixedly welded to the first output interface 122 through a nozzle joint 410. Welding can ensure a firm connection between the first pipe 240 and the first output interface 122, which is not easy to loosen or fall off, has good airtightness and high durability.
[0099] Optionally, the nozzle joint 410 is welded to the first output interface 122 by high-frequency technology for the transfer of the gas path and the circuit part.
[0100] Optionally, the first pipe 240 is connected to the connector 300 through the nozzle joint 410, and the connector 300 is then connected to the first output interface 122 through the nozzle joint 410. The nozzle joints 410 at both ends of the connector 300 are double-nozzle joints, and one of the double-nozzle joints is respectively connected to the first pipe 240 and the second pipe 250, and the other double-nozzle joint is respectively connected to the first output interface 122 and the second output interface 123.
[0101] It can be understood that in other embodiments, other methods such as bonding, clamping, screw connection, and fastener connection may also be used to fix the first pipe 240 and the first output interface 122, which are not limited herein.
[0102] In one embodiment, in combination with Figures 2 to 4 , the second duct 250 is fixedly welded to the second airbag assembly 230 through the nozzle joint 410. The welding can ensure a firm connection between the second duct 250 and the second airbag assembly 230, which is not easy to loosen or fall off, has good airtightness and high durability. Optionally, the nozzle joint 410 is welded to the second airbag assembly 230 by high-frequency technology for the transfer of the air path and the circuit part.
[0103] It can be understood that in other embodiments, the second duct 250 and the second airbag assembly 230 can also be fixed by other means such as bonding, clamping, threaded connection, fastener connection, etc., which are not limited herein.
[0104] In one embodiment, in combination with Figures 2 to 4 , the second duct 250 is fixedly welded to the second output interface 123 through the nozzle joint 410. The welding can ensure a firm connection between the second duct 250 and the second output interface 123, which is not easy to loosen or fall off, has good airtightness and high durability.
[0105] Optionally, the nozzle joint 410 is welded to the second output interface 123 by high-frequency technology for the transfer of the air path and the circuit part.
[0106] Optionally, the second duct 250 is connected to the connector 300 through the nozzle joint 410, and the connector 300 is then connected to the second output interface 123 through the nozzle joint 410. The nozzle joints 410 at both ends of the connector 300 are double-nozzle joints. One of the double-nozzle joints is respectively connected to the second duct 250 and the second duct 250, and the other double-nozzle joint is respectively connected to the second output interface 123 and the second output interface 123.
[0107] It can be understood that in other embodiments, the second duct 250 and the second output interface 123 can also be fixed by other means such as bonding, clamping, threaded connection, fastener connection, etc., which are not limited herein.
[0108] In one embodiment, in combination with Figures 2 to 3 , the first duct 240 and the first airbag assembly 220 are located on opposite sides of the mounting member 210 in the thickness direction. Based on this, on the one hand, the first duct 240 is arranged inside the mounting member 210, which is conducive to the connection with the tracheal assembly 120 nearby, simplifying the air path design, while the first airbag assembly 220 is arranged outside the mounting member 210, which is conducive to improving the comfort of massage; on the other hand, by arranging the first duct 240 and the first airbag assembly 220 on different planes, the mounting space of the mounting member 210 can be utilized more effectively.
[0109] In one embodiment, in combination with Figure 2 and Figure 3 , the second duct 250 and the second airbag assembly 230 are located on opposite sides of the mounting member 210 in the thickness direction. Based on this, on the one hand, the second duct 250 is arranged inside the mounting member 210, which is beneficial for connecting to the tracheal assembly 120 in the vicinity, simplifying the air circuit design, while the second airbag assembly 230 is arranged outside the mounting member 210, which is beneficial for improving the comfort of massage; on the other hand, by arranging the second duct 250 and the second airbag assembly 230 on different planes, the mounting space of the mounting member 210 can be utilized more effectively.
[0110] In one embodiment, in combination with Figure 2 and Figure 3 , the first airbag assembly 220 and the second airbag assembly 230 are spaced apart and mounted on the mounting member 210 to avoid overlap, so that the massage is more uniform and comprehensive and will not interfere with each other.
[0111] Specifically, the first airbag assembly 220 is used to massage the temple, and the second airbag assembly 230 is used to massage the back of the neck. It can be understood that in other embodiments, the first airbag assembly 220 and the second airbag assembly 230 can be designed to massage different positions of the head, which is not limited herein.
[0112] In one embodiment, in combination with Figure 2 and Figure 3 , the first airbag assembly 220 includes a first airbag duct 221 and two first airbag parts 222. The two ends of the first airbag duct 221 are respectively communicated with the two first airbag parts 222, and the first duct 240 is communicated with the middle of the first airbag duct 221. When the air flow enters or exits through the first duct 240, it can flow evenly to the two first airbag parts 222 at the same time. The two first airbag parts 222 can maintain the same rate and pressure when inflating or deflating, so as to provide a more stable and uniform massage effect. In addition, the first duct 240 inflates and deflates the two first airbag parts 222 through the first airbag duct 221 at the same time, simplifying the internal air circuit structure of the massager.
[0113] Optionally, the first airbag part 222 is designed in a four-layer laminated shape for applying pressure directionally when inflating with air pressure.
[0114] In one embodiment, the second airbag assembly 230 includes a second airbag tube 231 and two second airbag parts 232. The two ends of the second airbag tube 231 are respectively communicated with the two second airbag parts 232, and the second pipeline 250 is communicated with the middle part of the second airbag tube 231. When air flows in or out through the second pipeline 250, it can flow evenly to the two second airbag parts 232 at the same time. The two second airbag parts 232 can maintain the same rate and pressure during inflation or deflation, so as to provide a more stable and uniform massage effect. In addition, the second pipeline 250 inflates and deflates the two second airbag parts 232 through the second airbag tube 231 at the same time, simplifying the internal air path structure of the massager.
[0115] Optionally, the second airbag part 232 is designed in a four-layer stacked shape for applying pressure directionally when inflated with air pressure.
[0116] In one embodiment, in combination with Figure 2 and Figure 3 , the two ends of the second airbag assembly 230 are located between the two ends of the first airbag assembly 220. Based on this, the first airbag assembly 220 and the second airbag assembly 230 can jointly cover a wider area, and the covered area is more continuous due to the end inclusion relationship, improving the layering of the massage. At the same time, this layout design can make more effective use of the space on the mounting member 210, so that the first airbag assembly 220 and the second airbag assembly 230 can be arranged compactly together.
[0117] In one embodiment, in combination with Figure 2 and Figure 3 , the two end parts of the first airbag assembly 220 and the two end parts of the second airbag assembly 230 are distributed at intervals along the length direction X of the mounting member 210. When the mounting member 210 is worn on the head, the two end parts of the first airbag assembly 220 and the two end parts of the second airbag assembly 230 can be arranged at intervals around the head, providing a more comprehensive and accurate massage effect, ensuring the consistency and reliability of the massage effect, and at the same time making full use of the installation space of the mounting member 210, which is beneficial to the length extension of the mounting member 210 to surround the head. For example, the two end parts of the first airbag assembly 220 press the temples, and the two end parts of the second airbag assembly 230 press the back of the neck, just surrounding the head.
[0118] In one embodiment, in combination with Figure 2 and Figure 3, the first airbag assembly 220 extends at least partially along the upper edge of the mounting member 210. A first arc portion 223 is provided at a position near the middle of the upper edge of the mounting member 210, and the first arc portion 223 bends towards the lower edge of the mounting member 210. The first arc portion 223 corresponds to the position of the central nasal bridge and is provided with a clearance to avoid the upward sliding and detachment of the first airbag assembly 220 during the inflation process due to friction and uneven force, increasing the stability of the first airbag assembly 220. The first arc portion 223 bends towards the lower edge of the mounting member 210, enabling the first airbag assembly 220 to better wrap and fit the head during inflation, enhancing the comfort and depth of the massage.
[0119] In one embodiment, the second airbag assembly 230 extends at least partially along the lower edge of the mounting member 210. A second arc portion 233 is provided at a position near the middle of the lower edge of the mounting member 210, and the second arc portion 233 bends towards the upper edge of the mounting member 210. The second arc portion 233 corresponds to the position of the central nasal bridge and is provided with a clearance to avoid the downward sliding and detachment of the second airbag assembly 230 during the inflation process due to friction and uneven force, increasing the stability of the second airbag assembly 230. The second arc portion 233 bends towards the upper edge of the mounting member 210, enabling the second airbag assembly 230 to better wrap and fit the head during inflation, enhancing the comfort and depth of the massage.
[0120] In one embodiment, in combination with Figure 2 and Figure 3 , the head massager further includes a heating module 420, and the heating module 420 is installed on the side of the first airbag assembly 220 away from the mounting member 210. The heating module 420 can provide a warm compress therapy effect while massaging, helping to increase blood circulation in the massage area. The first airbag assembly 220 separates the heating module 420 from the head, ensuring uniform heat distribution and avoiding overheating.
[0121] Optionally, the heating module 420 is electrically connected to the host 100. For example, the host 100 is electrically connected to the heating module 420 through a cable. Specifically, one end of the cable is connected to the circuit board, passes through the wiring cavity 330 of the connecting member 300, bypasses the top of the mounting member 210, and then is connected to the heating module 420 on the other side.
[0122] Optionally, the heating module 420 is a graphene heating sheet. It can be understood that in other embodiments, the heating module 420 can also be a resistance heating sheet, etc., which is not limited herein.
[0123] In one embodiment, in combination with Figure 2 and Figure 3, the head massager further includes a function module 430. The function module 430 includes at least one of a vibration module, an electrical stimulation module, and a bone conduction module. The function module 430 is installed on the mounting member 210 and is electrically connected to the main body 100. The function module 430 provides a diverse massage experience.
[0124] Among them, the vibration module provides a touch similar to traditional manual massage for the user by generating vibrations of different frequencies and intensities, helping to relax the muscles of the head and neck. The electrical stimulation module stimulates specific areas of the head, such as acupoints or nerve endings, with microcurrents to produce effects similar to acupuncture or massage, helping to relieve problems such as headaches and tension. The bone conduction module uses bone conduction technology to directly transmit sound or vibration into the interior of the skull, bringing a unique music experience while avoiding pressure and discomfort to the ears.
[0125] Specifically, one end of the cable is connected to the circuit board, passes through the wiring cavity 330 of the connecting member 300, bypasses the top of the mounting member 210, and is then connected to the function module 430 on the other side.
[0126] In some embodiments, combined with Figures 1 to 3 , the mounting member 210 is a head strap, which is convenient for the user to wear. It can be understood that the mounting member 210 can also be worn on the head by means of clips, buckles, etc., and is not limited to this only.
[0127] In some embodiments, combined with Figures 1 to 3 , a first notch 211 is provided at the upper edge of the mounting member 210. The first notch 211 is located at the middle position of the mounting member 210 in the length direction X of the mounting member 210. The first notch 211 is provided with a clearance to prevent the mounting member 210 from sliding upward and falling off, reducing the sense of pressure and making the user feel more relaxed and comfortable during use. The design of the first notch 211 can make the mounting member 210 have a certain degree of adjustability when worn, so as to better adapt to the head shapes of different users and improve the applicability and popularity of the product.
[0128] In some embodiments, combined with Figures 1 to 3 , a second notch 212 is provided at the lower edge of the mounting member 210. The second notch 212 is located at the middle position of the mounting member 210 in the length direction X of the mounting member 210. The second notch 212 is provided with a clearance to prevent the mounting member 210 from sliding downward and falling off, reducing the sense of pressure and making the user feel more relaxed and comfortable during use. The design of the second notch 212 can make the mounting member 210 have a certain degree of adjustability when worn, so as to better adapt to the head shapes of different users and improve the applicability and popularity of the product.
[0129] The above are only the preferred embodiments of the present utility model, and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A head massager, characterized in that, The head massager includes: A main body, which includes an air pump, an air pipe assembly, and a control valve. The air pipe assembly has an input interface, a first output interface, and a second output interface. The input interface is used to communicate with the air pump, and the first output interface and the second output interface are respectively communicated with the input interface. The control valve is used to control the communication between the first output interface and the input interface, or the control valve is used to control the communication between the second output interface and the input interface; A head massage mechanism, which includes a mounting member, a first airbag assembly, and a second airbag assembly. The first airbag assembly and the second airbag assembly are respectively mounted on the mounting member. The first airbag assembly is communicated with the first output interface through a first pipe, and the second airbag assembly is communicated with the second output interface through a second pipe.
2. The head massager according to claim 1, wherein: The main body further includes a controller, which is electrically connected to the air pump, and the controller is used to control the working state of the air pump.
3. The head massager according to claim 2, wherein: The head massager further includes at least one of the following: The controller is electrically connected to the control valve, and the controller is used to control the on-off of the control valve; The main body further includes a pressure sensor, which is electrically connected to the controller, and the pressure sensor is used to detect the internal air pressure of the air pipe assembly; The main body further includes a battery, which is electrically connected to the controller, and the battery is used to supply electrical energy to the controller; The controller has a charging interface, and the controller is connected to an external power supply through the charging interface; The controller includes a circuit board and a main control unit. The main control unit is electrically mounted on the circuit board, and the air pump is electrically connected to the circuit board. The controller further includes an indicator light, which is electrically mounted on the circuit board. The controller further includes a button, which is electrically mounted on the circuit board.
4. The head massager according to claim 1, wherein: The air pipe assembly includes a first pipe fitting, a second pipe fitting, and a third pipe fitting. One end of the first pipe fitting has the input interface. The first pipe fitting is respectively communicated with the second pipe fitting and the third pipe fitting. One end of the second pipe fitting away from the first pipe fitting has the first output interface. One end of the third pipe fitting away from the first pipe fitting has the second output interface. The control valve is connected in series in the second pipe fitting or the third pipe fitting.
5. The head massager according to claim 1, wherein: The main body further includes a housing, which is separately arranged from the mounting member, and the air pump is mounted in the housing; The head massager further includes a connecting member. One end of the connecting member is connected to the housing, and the other end of the connecting member is connected to the mounting member; The connecting member has a first channel and a second channel. The first channel is respectively communicated with the first output interface and the first pipe. The second channel is respectively communicated with the second output interface and the second pipe; The connecting member has a wire routing channel. One end of the wire routing channel is communicated with the inside of the housing, and the other end of the wire routing channel is located at the mounting member.
6. The head massager according to claim 1, wherein The head massager further includes at least one of the following: The first pipe and the second pipe are located on the same side of the mounting member in the thickness direction; The first pipe and the second pipe are located at the same end of the mounting member in the length direction; The first pipe is fixedly welded to the first airbag assembly through a nozzle joint; The first pipe is fixedly welded to the first output interface through a nozzle joint; The second pipe is fixedly welded to the second airbag assembly through a nozzle joint; The second pipe is fixedly welded to the second output interface through a nozzle joint; The first pipe and the first airbag assembly are located on opposite sides of the mounting member in the thickness direction; The second pipe and the second airbag assembly are located on opposite sides of the mounting member in the thickness direction; The first airbag assembly and the second airbag assembly are spaced apart and mounted on the mounting member.
7. The head massager according to claim 1, wherein: The first airbag assembly includes a first airbag tube and two first airbag portions. Both ends of the first airbag tube are communicated with the two first airbag portions respectively, and the first pipe is communicated with the middle portion of the first airbag tube; And / or, the second airbag assembly includes a second airbag tube and two second airbag portions. Both ends of the second airbag tube are communicated with the two second airbag portions respectively, and the second pipe is communicated with the middle portion of the second airbag tube.
8. The head massager according to claim 1, characterized in that, The head massager further includes at least one of the following: Both ends of the second airbag assembly are located between both ends of the first airbag assembly; Both end portions of the first airbag assembly and both end portions of the second airbag assembly are spaced apart along the length direction of the mounting member: The first airbag assembly at least partially extends along the upper edge of the mounting member. A first arc portion is provided at a position near the middle of the upper edge of the mounting member, and the first arc portion bends towards the lower edge of the mounting member; The second airbag assembly at least partially extends along the lower edge of the mounting member. A second arc portion is provided at a position near the middle of the lower edge of the mounting member, and the second arc portion bends towards the upper edge of the mounting member.
9. The head massager according to claim 1, wherein: The head massager further includes a heating module, and the heating module is mounted on a side of the first airbag assembly away from the mounting member; the heating module is electrically connected to the host; And / or, the head massager further includes a function module, and the function module includes at least one of a vibration module, an electrostimulation module, and a bone conduction module. The function module is mounted on the mounting member, and the function module is electrically connected to the host.
10. The head massager according to any one of claims 1 to 9, characterized in that, The head massager further includes at least one of the following: The mounting member is a head strap; A first notch is provided on the upper edge of the mounting member, and the first notch is located at a middle position of the mounting member in the length direction of the mounting member; A second notch is provided on the lower edge of the mounting member, and the second notch is located at a middle position of the mounting member in the length direction of the mounting member.