Multi-channel massager

By designing a multi-channel massager that simulates the front and back paths of the female physiological structure and combines vibration, squeezing and rotation functions, it solves the shortcomings of existing male care devices in terms of comfort and experience, and provides a real interactive massage experience for men and women.

CN120753932APending Publication Date: 2025-10-10SHENZHEN GUANGMI TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510465045.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2025-10-10

AI Technical Summary

Technical Problem

Existing male care devices lack in-depth consideration of male physiological characteristics, resulting in deficiencies in product comfort, adaptability and user experience, and are unable to provide a real interactive massage experience for men and women.

Method used

A multi-channel massager is designed, including a main massage channel and a secondary massage channel, which simulates the front and back half paths of the female physiological structure and provides vibration, squeezing and rotation functions through the massage mechanism to enhance the massage effect.

Benefits of technology

By simulating the real physiological structure, it provides a more realistic massage experience, improves the user's comfort and massage feeling, and enhances the product's functionality and humanized design.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of massagers, in particular to a multi-channel massager which comprises a shell, a flexible inner container and a massage mechanism. The shell is arranged outside the flexible liner; the massage mechanism is arranged in the shell and applies acting force to the flexible inner container. A main massage channel and one or more auxiliary massage channels are formed in the flexible inner container so that a to-be-massaged part can enter the main massage channel. The massage mechanism is located at the corresponding position of the main massage channel and / or the auxiliary massage channel. Wherein the main massage channel and the auxiliary massage channel are communicated and form an included angle. A plurality of channels are arranged in the massager, the main massage channel simulates the front half section path of a female physiological structure, the auxiliary massage channel simulates the rear half section path of the female physiological structure, and therefore after a to-be-massaged part goes deep into the auxiliary massage channel, the to-be-massaged part is stressed to be bent, a real massage scene is simulated, and the massage effect is improved. And more real male and female interaction experience is brought to the user.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of massagers, in particular to a multi-channel massager. BACKGROUND

[0002] With the acceleration of modern social life pace, people are facing increasing physical and mental pressure, and the demand for health care is showing a diversified development trend. Under this background, adult health care appliances, as a product category to relieve stress and improve the quality of life, have gradually gained wider social recognition.

[0003] The current male care appliance field has problems such as single product function and insufficient innovation. The mainstream products on the market are mostly formed by single material structure, and realize basic functions through simple mechanical movement, without fully considering the real use needs and ergonomics of male users. This design limitation leads to obvious deficiencies in comfort, adaptability and user experience, making it difficult to meet the pursuit of quality life by modern consumers.

[0004] In addition, the existing products are weak in physiological adaptability research, and lack of in-depth consideration of male physiological characteristics, which causes a gap between the actual use effect and user expectation. Therefore, it is urgent to improve the functionality, comfort and humanized design level of the product through technological innovation. SUMMARY

[0005] To solve the above-mentioned prior art problems, the present application provides a multi-channel massager, comprising: a shell, a flexible inner container, a massage mechanism;

[0006] The shell is arranged outside the flexible inner container;

[0007] The massage mechanism is arranged inside the shell and applies force to the flexible inner container;

[0008] The flexible inner container forms a main massage channel and one or more auxiliary massage channels for the part to be massaged to enter;

[0009] The massage mechanism is located at the corresponding position of the main massage channel and / or the auxiliary massage channel;

[0010] Wherein, the main massage channel and the auxiliary massage channel are communicated and form an included angle.

[0011] Further, the included angle is a, 60°> a> 20°.

[0012] Further, one end of the main massage channel is an inlet end and the other end is an outlet end, for inserting the part to be massaged, and the outlet end is communicated with the auxiliary massage channel;

[0013] The auxiliary massage channel has an inlet end for connecting to the main massage channel;

[0014] There are two auxiliary massage channels, which are V-shaped. The inlet ends of the two auxiliary massage channels are simultaneously connected to the outlet end of the main massage channel to form a turning cavity.

[0015] Furthermore, a bulge is formed on the inner wall surface of the steering cavity;

[0016] The protrusion is located on the opposite side of the inlet end of the main massage channel and protrudes toward the main massage channel.

[0017] Furthermore, the protrusion is located at the center where the two auxiliary massage channels intersect.

[0018] Furthermore, one end of the auxiliary massage channel away from the main massage channel is configured to be closed.

[0019] Furthermore, the massage mechanism has a squeezing function, and / or a vibration function, and / or a rotation function.

[0020] Furthermore, the massage mechanism includes a vibration module, and the vibration module is arranged at a circumferential position of each of the auxiliary massage channels.

[0021] Furthermore, a pressure sensor is provided at each auxiliary massage channel. When the part to be massaged enters the auxiliary massage channel, the pressure sensor in the auxiliary massage channel receives a pressure signal.

[0022] The vibration module is turned on only after the pressure sensor receives a pressure signal.

[0023] Furthermore, an outlet is provided at one end of each auxiliary massage channel away from the inlet.

[0024] Furthermore, the massage mechanism includes a driving assembly, an extrusion portion, and a guide assembly;

[0025] The guide assembly comprises a first guide portion, the first guide portion being fixedly connected to the housing, the first guide portion forming a guide track extending along the length direction of the main massage channel, and the distance between the guide track and the outer wall surface of the main massage channel varying along the length direction of the main massage channel;

[0026] The driving assembly drives the extrusion portion to slide along the guide track;

[0027] The extrusion portion is provided with at least two pressing sheets, the two pressing sheets surround the outer wall surface of the main massage channel, and the extrusion portion slides along the guide track and approaches or moves away from the outer wall surface of the main massage channel according to the size of the spacing;

[0028] The number of the guide rails corresponds to the pressing pieces, and the guide rails are slidably connected to the pressing pieces respectively.

[0029] Furthermore, the guide assembly further comprises a second guide portion and a loading portion, wherein the second guide portion is fixedly connected to the housing and comprises a guide shaft parallel to the axis of the main massage channel;

[0030] The loading portion is slidably connected to the guide shaft, and the driving assembly drives the loading portion to slide along the axial direction of the guide shaft;

[0031] The loading portion is slidably connected to the pressing plate, and the sliding direction is parallel to the distance direction between the guide rail and the outer wall surface of the main massage channel.

[0032] The beneficial effect of the present invention is reflected in that the massager of the present application is provided with multiple channels, wherein the main massage channel simulates the front half path of the female physiological structure, and the auxiliary massage channel simulates the back half path of the female physiological structure, so that the part to be massaged penetrates into the end of the main massage channel, that is, the entrance end of the auxiliary massage channel, and continues to penetrate into an auxiliary massage channel with an angle to the main massage channel, so that the part to be massaged is subjected to pressure of forced bending, thereby simulating a real massage scene and bringing users a more realistic male-female interaction experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] Figure 1 This is a schematic diagram of the three-dimensional structure of the multi-channel massager provided by the present invention;

[0034] Figure 2 This is a schematic diagram of the three-dimensional structure of the multi-channel massager provided by the present invention with the shell hidden;

[0035] Figure 3 for Figure 2 Cross-sectional view of the middle multi-channel massager (the secondary massage channel has an outlet);

[0036] Figure 4 2 is a cross-sectional view of the multi-channel massager in Example 2 (with the ends of the secondary massage channels closed);

[0037] Figure 5 for Figure 2 A cross-sectional view of the multi-channel massager in another direction;

[0038] Figure 6 for Figure 5 Enlarged schematic diagram of the middle q;

[0039] Figure 7 A three-dimensional entity of the guide assembly provided by the present invention (with the first guide portion hidden);

[0040] Figure 8The invention provides a massage mechanism with a rotating function.

[0041] Figure numerals: 1. outer shell; 11. end cover; 2. flexible liner; 21. main massage channel; 22. auxiliary massage channel; 23. steering cavity; 24. protrusion; 25. vibration module; 26. pressure sensor; 3. massage mechanism; 31. drive assembly; 32. extrusion part; 321. pressing piece; 33. guide assembly; 331. first guide part; 3311. guide rail; 332. second guide part; 3321. guide shaft; 333. loading part; 34. sleeve. DETAILED DESCRIPTION

[0042] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0043] Example 1

[0044] Reference Figures 1-8 .

[0045] A multi-channel massager, comprising: a shell 1, a flexible inner liner 2, and a massage mechanism 3;

[0046] The outer shell 1 is arranged outside the flexible inner liner 2;

[0047] The massage mechanism 3 is arranged inside the shell 1 and applies force to the flexible liner 2;

[0048] The flexible inner liner 2 forms a main massage channel 21 and an auxiliary massage channel 22 for the area to be massaged to enter;

[0049] The massage mechanism 3 is located at a corresponding position of the main massage channel 21 and / or the auxiliary massage channel 22;

[0050] The main massage channel 21 is connected to the auxiliary massage channel 22 and forms an angle therebetween.

[0051] Existing electric male massagers generally consist of a housing 1, a flexible inner liner 2, and a massage mechanism 3. The housing 1 encloses the flexible inner liner 2, which the user grasps to operate. The flexible inner liner 2 is typically made of silicone, simulating the female anatomy to envelop the male sex organ. The massage mechanism 3 applies various forms of pressure to the flexible inner liner 2 and the massaged area, thereby stimulating the area. The primary function of a male massager can be understood as simulating the massage experience of a real male-female interaction. In existing massagers, the flexible inner liner 2 has only one channel, and the channel, inner liner 2, and housing 1 all have a cylindrical structure. However, the female anatomy is not a straight channel; instead, it bends between the front and back halves, forming an angle. Therefore, after penetrating the female anatomy, the male sex organ experiences a certain amount of bending force. However, the straight channel in existing massagers cannot provide this force to the massaged area. Therefore, existing massagers do not fully simulate the female anatomy, thus failing to provide men with a realistic male-female interaction experience, thus reducing the massage experience.

[0052] In this regard, the present application provides a multi-channel massager, which also includes an outer shell 1, a flexible inner shell 2 and a massage mechanism 3. In the present application, the flexible inner shell 2 has at least two channels, a main massage channel 21 and an auxiliary massage channel 22. A plurality of auxiliary massage channels 22 can be further provided. The main massage channel 21 and the auxiliary massage channel 22 are connected and there is an angle between the main massage channel 21 and the auxiliary massage channel 22, that is, the main massage channel 21 and the auxiliary massage channel 22 are not parallel. The main massage channel 21 simulates the front half path of the female physiological structure, and the auxiliary massage channel 22 simulates the back half path of the female physiological structure, so that the part to be massaged penetrates into the end of the main massage channel 21, that is, the entrance end of the auxiliary massage channel 22, and continues to penetrate into an auxiliary massage channel 22 that is not parallel to the main massage channel 21 and has an angle, so that the part to be massaged is forced to bend under pressure, thereby simulating a real massage scene.

[0053] The outer shell 1 surrounds the outside of the flexible inner liner 2 for the user to hold and protects the flexible inner liner 2 from damage and contamination. The massage mechanism 3 provides a force to the flexible inner liner 2. The massage mechanism 3 can be simply set as a vibration module 25. The vibration module 25 is embedded in the flexible inner liner 2, so that the flexible inner liner 2 can vibrate and vibrate to stimulate the massage area. The massage mechanism 3 can also be set as a pressing mechanism to squeeze the flexible inner liner 2 and reduce the space of the main massage channel 21 or the auxiliary massage channel 22, so that the flexible inner liner 2 can imitate the active contraction of the female physiological structure, so that the massager of this application can further simulate real scenes and enhance the user's massage experience. The massage mechanism 3 can also be set as a rotating mechanism, such as Figure 8As shown, the main massage channel is connected by the sleeve 34, the sleeve 34 can be provided with a ball to extrude the main massage channel, the circumferential wall surface of the sleeve 34 is provided with a gear structure, and the motor drives the sleeve 34 to rotate through the gear to realize the rotating stimulation.

[0054] More specifically, the included angle is a, 60°>a>20°, and the included angle is most preferably set to 45°>a>25°.

[0055] The physiological structure of each person will not be exactly the same, the bending angle of the physiological structure of some women will be larger, and the physiological structure of some women will be smaller, and the difference between different regions of the population will be more obvious, for example, the physiological structure difference between Asians and Europeans is obvious, when facing different regions of the population, generally speaking, the massager should imitate the physiological structure of local women, but the product can also be distinguished by different designs of the included angle size, for example, one is a European and American version, and one is an Asian version, Asian users can choose the Asian version product that is more suitable for the local situation, or choose the European and American version to experience different massage effects. The included angle degree should not exceed 45°, on the one hand, the angle of the human physiological structure will not exceed 45°, and on the other hand, a large degree of included angle will cause the part to be massaged to be subjected to a strong bending force when the user inserts the secondary massage channel 22, thereby damaging the user. A small angle will cause the secondary massage channel 22 to lose the massage effect of bending the part to be massaged, and the physiological structure angle of the human body is about 30°, so the present application controls a between 45° and 25° to ensure the massage effect of the secondary massage channel 22 without damaging the user.

[0056] And when the user wants to experience more extreme and more intense massage stimulation, the included angle can be set to a maximum of 60°, so that the user can receive a greater bending force without being injured.

[0057] It is worth noting that at this time, the main massage channel 21 and the secondary massage channel 22 have a clear included angle, but the part to be massaged will not be bent to the same angle, the flexible inner container 2 is made of silica gel, and the hardness of the part to be massaged is much higher than that of the flexible inner container 2. After the part to be massaged enters the secondary massage channel 22, the part to be massaged will definitely be subjected to a bending force rather than necessarily deforming, and the silica gel material has elasticity, so the part to be massaged will also force the secondary massage channel 22 to deform in the direction parallel to the main massage channel 21, the greater the deformation, the greater the elasticity, and the greater the force applied to the part to be massaged. That is, the greater the included angle a, the greater the force that can be provided to the part to be massaged.

[0058] It can be understood that the secondary massage channel 22 of the present application can be provided with one, two, three, or four, and if the secondary massage channel 22 is provided with multiple, the user can increase the randomness of the user's insertion when using the massager, and increase the use of the product.

[0059] It is understandable that the massager must also be provided with a power supply, a circuit board, buttons, etc. This is a conventional structure of the prior art and will not be described in detail in this application.

[0060] Example 2

[0061] Reference Figure 1-Figure 7 .

[0062] One end of the main massage channel 21 is an inlet end and the other end is an outlet end. The inlet end is arranged outside the housing 1 for the part to be massaged to be inserted; the outlet end is connected to the auxiliary massage channel 22;

[0063] The auxiliary massage channel 22 has an inlet end for connecting to the main massage channel 21;

[0064] There are two auxiliary massage channels 22 , and the two auxiliary massage channels 22 are V-shaped. The inlet ends of the two auxiliary massage channels 22 are simultaneously connected to the outlet end of the main massage channel 21 to form a turning cavity 23 .

[0065] The massaged area begins entering the main massage channel 21 at its entrance. The front end of the area gradually exits the main massage channel 21 at its exit and enters the diverting cavity 23. The diverting cavity 23 is composed of the entrances of two auxiliary massage channels 22 and one exit of the main massage channel 21. After entering the diverting cavity 23, the area can enter one of the auxiliary massage channels 22. The area continues to move along the axis of the main massage channel 21 until it contacts the intersecting wall of the two auxiliary massage channels 22. This contact surface is unlikely to be completely perpendicular to the axis of the main massage channel 21. As the area continues to move deeper, the end of the area will contact the channel wall and slide toward one of the auxiliary massage channels 22.

[0066] Furthermore, a protrusion 24 is formed on the inner wall surface of the deflection cavity 23 ; the protrusion 24 is located on the opposite side of the inlet end of the main massage channel 21 and protrudes toward the main massage channel 21 .

[0067] After the massage part enters the main massage channel 21, the insertion continues, and the end of the massage part will push against the protrusion 24, thereby applying a point-to-point pressure to the end of the massage part to stimulate the end of the massage part.

[0068] Furthermore, the protrusion 24 is located at the center where the two auxiliary massage channels 22 intersect.

[0069] As previously mentioned, the end of the massaged area will abut the wall of the deflection cavity 23 and slide toward one of the auxiliary massage channels 22. Based on this, in this embodiment, a protrusion 24 is added within the deflection cavity 23, allowing the massaged area to abut against the protrusion 24. The protrusion 24 must protrude from the wall, and its curvature must be smaller than that of the wall of the deflection cavity 23 to be considered a protrusion 24. As the massaged area abuts the protrusion 24 and penetrates deeper, the end of the massaged area will move away from the protrusion 24 and abut against the wall of the reversing space. The end of the protrusion 24 will inevitably be at a certain distance from the wall of the reversing space. At this distance, the massaged area suddenly impacts the reversing space, providing a sudden, instantaneous surge of force and additional massage stimulation. This can be understood as creating a misalignment between the massaged area and the protrusion 24, causing the massaged area to impact against the wall of the reversing cavity 23. The protrusion 24 should be approximately 1-2 cm in distance.

[0070] At the same time, even if the part to be massaged is only massaged in the main massage channel 21 and does not enter the auxiliary massage channel 22, the part to be massaged abuts against and squeezes the protrusion 24 repeatedly in the process of repeatedly entering the main massage channel 21, which can also provide a different massage stimulation for the part to be massaged. The protrusion 24 can fully simulate the cervix in the human body's physiological structure, allowing users to simulate the real scene more realistically.

[0071] Furthermore, one end of the auxiliary massage channel away from the main massage channel is configured to be closed.

[0072] That is, after the massaged area enters the primary massage channel, it continues to penetrate deeper, reaching as far as the end of the secondary massage channel. The protrusions of this embodiment can only massage the end of the massaged area before it enters the secondary massage channel. Furthermore, by blocking the end of the secondary massage channel, the end of the massaged area can still be squeezed and stimulated even after it enters the secondary massage channel. Furthermore, the end of the secondary massage channel, i.e., the closed end, can also be provided with a protrusion to achieve point-to-point massage stimulation of the end of the massaged area.

[0073] Example 3

[0074] like Figure 2 、 Figure 3 as well as Figure 4 shown.

[0075] The massage mechanism 3 includes a vibration module 25 , which is disposed at a circumferential position of each of the auxiliary massage channels 22 .

[0076] The flexible inner liner 2 needs to be very soft to prevent the flexible inner liner 2 from over-pressing the massaged part to the greatest extent and avoid injury to the massaged part. The worse the rigidity of the object, the worse the effect of transmitting vibration. Therefore, it is difficult for the vibration module 25 set in the flexible inner liner 2 to achieve all-round vibration stimulation of the massaged part, and the vibration module 25 can only provide stimulation within a very small range. In this regard, the present embodiment further arranges the vibration module 25 in the circumferential position of the auxiliary massage channel 22. The main massage channel 21 is actually the starting position of the entire channel space, and the auxiliary massage channel 22 is the end position. That is to say, after the massaged part penetrates into the channel space, the front end of the massaged part is mainly located near the auxiliary massage channel 22, and the front end of the massaged part is exactly the sensitive part of the massaged part. Stimulating the front end of the massaged part can further enhance the user's massage experience. A vibration module 25 is set corresponding to the position of each auxiliary massage channel 22.

[0077] Further, such as Figure 2 and Figure 3 As shown, the auxiliary massage channels 22 are equipped with multiple corresponding vibration modules 25. Furthermore, the user may not be able to determine which auxiliary massage channel 22 is inserted into the massage area. If multiple vibration modules 25 are activated simultaneously, the vibration modules 25 in the auxiliary massage channels 22 that are not inserted will be completely useless, wasting energy. To address this issue, a pressure sensor 26 (such as a pressure electrode) can be installed in each auxiliary massage channel 22. The pressure sensor 26 automatically determines which auxiliary massage channel 22 is inserted into the massage area. In this case, the pressure sensor 26 can directly control the activation of the vibration module 25 in the corresponding auxiliary massage channel 22. Alternatively, manual activation can be used to activate only the vibration module 25 in the auxiliary massage channel 22 where the pressure sensor 26 receives the pressure signal.

[0078] Example 4

[0079] Reference Figure 1 、 Figure 2 as well as Figure 4 shown.

[0080] An outlet is provided at one end of each of the auxiliary massage channels 22 away from the inlet.

[0081] In this embodiment, the auxiliary massage channel 22 is no longer blocked, which would negate the effect of stimulating the ends of the massaged area in Example 2. However, the vibration module 25 in Example 3 can, to a certain extent, compensate for the unblocked auxiliary massage channel 22 by stimulating the ends of the massaged area entering the auxiliary massage channel 22. Furthermore, providing an outlet in the auxiliary massage channel 22 offers the following benefits. First, the flexible inner liner 2 with an outlet allows liquid to flow through it. After use, the user needs to clean the flexible inner liner 2. In the prior art, the correct way to thoroughly clean the flexible inner liner 2 is to flip it up with the inner wall facing outward. This process causes significant deformation, and repeated flipping can easily cause cracking at the entrance of the flexible inner liner 2. Furthermore, flipping the flexible inner liner 2 is time-consuming and laborious. The through-type flexible inner liner 2 of the present application, on the other hand, can be directly connected to a faucet, allowing the high-speed water flow from the faucet to flush the inner wall of the flexible inner liner 2, achieving rapid cleaning. Furthermore, there is no need to flip the flexible inner liner 2, preventing cracking, thereby significantly extending the lifespan of the massager.

[0082] The housing 1 has an end cover 11 for blocking the outlet of the auxiliary massage channel 22 .

[0083] An end cover 11 is provided in the housing 1 , and the end cover 11 of the housing 1 can block the outlet of the auxiliary massage channel 22 .

[0084] Before flushing, the outlet of the flexible liner 2 can be blocked by the end cover 11, detergent can be poured into the channel, the massager can be shaken to allow the detergent to fully contact the inner wall surface of the flexible liner 2, and then the end cover 11 can be opened for flushing.

[0085] Example 5

[0086] Reference Figure 3-Figure 7 .

[0087] The massage mechanism 3 includes a driving assembly 31, an extruding portion 32, a first guide portion 331, and a transmission assembly;

[0088] The transmission assembly is respectively connected to the driving assembly 31 and the extrusion part 32;

[0089] The first guide portion 331 is fixedly connected to the housing 1 and forms a guide track 3311 extending along the length direction of the main massage channel 21. The distance between the guide track 3311 and the outer wall of the main massage channel 21 varies along the length direction of the main massage channel 21.

[0090] The extrusion portion 32 is provided with at least two pressing plates 321, and the two pressing plates 321 surround the outer wall surface of the main massage channel 21. The extrusion portion 32 slides along the guide track 3311 and approaches or moves away from the outer wall surface of the main massage channel 21 according to the size of the spacing.

[0091] This embodiment provides a specific massager mechanism, in which the massage mechanism 3 mainly provides squeezing force so that the flexible liner 2 simulates the active contraction of the human body's physiological structure.

[0092] First, there is a driving component 31 , which can be a motor, an electromagnet, etc., and is responsible for providing power to the extrusion part 32 .

[0093] The extrusion portion 32 is responsible for extruding the flexible liner 2;

[0094] The first guide portion 331 is fixed to the housing 1 and includes a guide track 3311. The guide track 3311 extends along the length of the main massage channel 21, but is not parallel thereto. The distance between the guide track 3311 and the outer wall of the main massage channel 21 varies at different locations. Therefore, as the pressing portion 32 slides along the guide track 3311, if it moves to a position where the distance is small, it presses the outer wall of the main massage channel 21. If it moves to a position where the distance is large, it releases the outer wall of the main massage channel 21, thereby achieving repeated compression of the massaged area.

[0095] The squeezing portion 32 has at least two pressing plates 321 and two corresponding guide rails 3311. The two pressing plates 321 are arranged opposite to each other, and the outer wall surface of the main massage channel 21 is located between the two pressing plates 321. During the movement, the two pressing plates 321 approach the main massage channel 21 at the same time to achieve pressurization.

[0096] More specifically, the guide assembly 33 further comprises a second guide portion 332 and a loading portion 333 . The second guide portion 332 is fixedly connected to the housing 1 and comprises a guide shaft 3321 parallel to the axis of the main massage channel 21 .

[0097] The loading portion 333 is slidably connected to the guide shaft 3321 , and the driving assembly 31 drives the loading portion 333 to slide along the axial direction of the guide shaft 3321 ;

[0098] like Figure 5 、 Figure 6The loading portion 333 is slidably connected to the pressing plate 321, and the sliding direction is parallel to the distance between the guide rail 3311 and the outer wall of the main massage channel 21. In other words, the driving assembly 31 only needs to provide a force parallel to the axis of the main massage channel 21 to drive the loading portion 333 to slide axially along the guide shaft 3321. During the sliding process, the distance between the guide rail 3311 and the outer wall of the main massage channel 21 increases and decreases. When the distance decreases, the sliding of the loading portion 333 and the pressing plate 321 along the guide shaft 3321 is blocked, and the pressing plate 321 approaches the main massage channel 21 (the pressing plate 321 slides along the sliding direction of the sliding connection between the loading portion 333 and the pressing plate 321) and slides axially along the guide shaft 3321 to avoid the movement.

[0099] In the description of the embodiments of the present invention, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "center", "top", "bottom", "top", "bottom", "inside", "outside", "inner side", "outer side" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention 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 therefore cannot be understood as limiting the present invention. Among them, "inside" refers to an internal or enclosed area or space. "Periphery" refers to the area surrounding a specific component or specific area.

[0100] In the description of the embodiments of the present invention, the terms "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly specifying the number of the technical features indicated. Therefore, a feature specified as "first," "second," "third," or "fourth" may explicitly or implicitly include one or more of the features. In the description of the present invention, unless otherwise specified, "plurality" means two or more.

[0101] In the description of the embodiments of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "installed," "connected," "connected," and "assembled" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integral connections; they may refer to direct connections, indirect connections through an intermediate medium, or internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention in specific circumstances.

[0102] In the description of the embodiments of the present invention, specific features, structures, materials or characteristics may be combined in an appropriate manner in any one or more embodiments or examples.

[0103] In describing the embodiments of the present invention, it should be understood that "-" and "" represent a range between two values, and the range includes the endpoints. For example, "AB" represents a range greater than or equal to A and less than or equal to B. "A~B" represents a range greater than or equal to A and less than or equal to B.

[0104] In the description of the embodiments of the present invention, the term "and / or" is used herein to describe a relationship between associated objects, indicating that three possible relationships exist. For example, "A and / or B" can represent the following three situations: A exists alone, A and B exist simultaneously, and B exists alone. Furthermore, the character "" generally indicates that the associated objects are in an "or" relationship.

[0105] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A multi-channel massager, characterized in that: include: Shell, flexible liner, massage mechanism; The outer shell is arranged outside the flexible inner liner; The massage mechanism is disposed inside the housing and applies a force to the flexible liner; The flexible inner liner forms a main massage channel and one or more auxiliary massage channels for the area to be massaged to enter; The massage mechanism is located at a corresponding position of the main massage channel and / or the auxiliary massage channel; Wherein, the main massage channel is connected to the auxiliary massage channel and forms an angle.

2. A multi-channel massager according to claim 1, characterized in that: The angle is a, 60°>a>20°.

3. A multi-channel massager according to claim 2, characterized in that: One end of the main massage channel is an inlet end and the other end is an outlet end, for the part to be massaged to be inserted, and the outlet end is connected to the auxiliary massage channel; The auxiliary massage channel has an inlet end for connecting to the main massage channel; There are two auxiliary massage channels, which are V-shaped. The inlet ends of the two auxiliary massage channels are simultaneously connected to the outlet end of the main massage channel to form a turning cavity.

4. A multi-channel massager according to claim 3, characterized in that: The inner wall surface of the steering cavity forms a bulge; The protrusion is located on the opposite side of the inlet end of the main massage channel and protrudes toward the main massage channel.

5. A multi-channel massager according to claim 4, characterized in that: The protrusion is located at the center where the two auxiliary massage channels intersect.

6. The multi-channel massager according to claim 1, characterized in that: One end of the auxiliary massage channel away from the main massage channel is configured to be closed.

7. The multi-channel massager according to claim 1, characterized in that: The massage mechanism has a squeezing function, and / or a vibration function, and / or a rotation function.

8. A multi-channel massager according to claim 7, characterized in that: The massage mechanism includes a vibration module, which is arranged at a circumferential position of each of the auxiliary massage channels.

9. The multi-channel massager according to claim 8, characterized in that: A pressure sensor is provided at each auxiliary massage channel. When the part to be massaged enters the auxiliary massage channel, the pressure sensor in the auxiliary massage channel receives a pressure signal. The vibration module is turned on only after the pressure sensor receives a pressure signal.

10. The multi-channel massager according to claim 1, characterized in that: An outlet is provided at one end of each auxiliary massage channel away from the inlet.

11. The multi-channel massager according to claim 10, characterized in that: The massage mechanism includes a driving component, an extrusion part, and a guide component; The guide assembly comprises a first guide portion, the first guide portion being fixedly connected to the housing, the first guide portion forming a guide track extending along the length direction of the main massage channel, and the distance between the guide track and the outer wall surface of the main massage channel varying along the length direction of the main massage channel; The driving assembly drives the extrusion portion to slide along the guide track; The extrusion portion is provided with at least two pressing sheets, the two pressing sheets surround the outer wall surface of the main massage channel, and the extrusion portion slides along the guide track and approaches or moves away from the outer wall surface of the main massage channel according to the size of the spacing; The number of the guide rails corresponds to the pressing sheets, and the guide rails are slidably connected to the pressing sheets respectively.

12. The multi-channel massager according to claim 11, characterized in that: The guide assembly further comprises a second guide portion and a loading portion, wherein the second guide portion is fixedly connected to the housing and comprises a guide shaft parallel to the axis of the main massage channel; The loading portion is slidably connected to the guide shaft, and the driving assembly drives the loading portion to slide along the axial direction of the guide shaft; The loading portion is slidably connected to the pressing plate, and the sliding direction is parallel to the distance direction between the guide rail and the outer wall surface of the main massage channel.