squeeze massager
Patent Information
- Application Number
- CN202520034021.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-01-07
AI Technical Summary
[0002]目前,当作女性身材改善或乳房不舒适(血液循环不流畅、乳腺管堵塞造成的不舒适)改善时,一般采用药物或手术或人工按摩而对乳房进行增大改善或不舒适感改善,药物及手术副作用较大,人工按摩需要去专业的医院较为麻烦,且按摩成本较高,因此人们研发了一种乳房按摩仪,如中国专利公告的公告号为CN204016944U的丰胸按摩仪,但是该按摩仪主要通过对乳房产生负压的物理作用而实现按摩功能,因此该按摩仪的按摩功能单一,已不能满足按摩需求,急需改进
[0015] The squeeze massager designed in this utility model utilizes pinching and squeezing massage, negative pressure massage, and vibration massage to massage the breasts, thus diversifying the massage functions and improving the user experience.
Smart Images

Figure CN224762145U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of massage and health care equipment, specifically relating to a squeeze-type massager. Background Technology
[0002] Currently, when women seek to improve their figure or alleviate breast discomfort (caused by poor blood circulation or blocked mammary ducts), medication, surgery, or manual massage are commonly used to enlarge the breasts or alleviate discomfort. Medications and surgeries have significant side effects, and manual massage requires visits to specialized hospitals, which is inconvenient and costly. Therefore, breast massage devices have been developed, such as the breast enhancement massage device with Chinese patent announcement number CN204016944U. However, this massage device primarily achieves its massage function through the physical action of creating negative pressure on the breasts. Therefore, its massage function is limited and cannot meet the full massage needs, requiring urgent improvement. Utility Model Content
[0003] This utility model is a squeeze-type massager designed to solve the shortcomings of the above-mentioned technical problems, comprising: The bowl body is provided with a massage cavity; Two clamping elements, the two clamping elements are arranged opposite each other and spaced apart, and both of them are at least partially located within the massage cavity; A pinching drive device, wherein two pinching drive parts of the pinching drive device are respectively connected to two pinching members, so that the pinching drive device drives the two pinching members to move away from each other and close together. An air extraction assembly is provided, wherein an air extraction channel is provided on the inner wall of the massage chamber, and the air extraction port of the air extraction assembly is connected to the air extraction channel through a pipe. The housing, the clamping drive device and the air extraction assembly are both disposed in the inner cavity of the housing, and the bowl is installed on the outer wall of the housing.
[0004] The squeeze-type massager described above also includes a housing. The pinching drive device includes a drive assembly, a linear reciprocating member, and at least one linear guide member. The linear reciprocating member is slidably mounted on the linear guide member. The drive assembly is drively connected to the linear reciprocating member to drive the linear reciprocating member to perform linear reciprocating motion. Each pinching member is at least partially located in the inner cavity of the housing, so that the rotational connection part of each pinching member is rotatably connected to the housing through a rotating shaft. The motion control part of each pinching member is slidably connected to the linear reciprocating member. The angle between the pinching part and the motion control part of each pinching member is an obtuse angle.
[0005] According to the above-described squeeze-type massager, the drive assembly includes a motor and a rotating component. The rotating component is connected to the rotating shaft of the motor. An eccentric shaft is provided on the rotating component, and the eccentric shaft is slidably connected to the linear reciprocating component.
[0006] According to the above-described squeezing massager, the drive assembly further includes a bracket, a drive gear, and a driven gear. The bracket is installed on the inner wall of the housing. The motor and the linear guide are both installed on the bracket. The drive gear is installed at the rotating shaft of the motor. The driven gear is connected to the rotating component, and one of them is provided with a rotating shaft. The rotating shaft is rotatably connected to the bracket.
[0007] According to the above-described squeezing massager, the bracket is provided with an installation space, and the driving gear, driven gear, rotating component, linear reciprocating component and linear guide component are all located in the installation space. The motion control part of each of the clamping components passes through the through hole at the upper end of the bracket and is slidably connected to the linear reciprocating component.
[0008] According to the above-described compression massager, the air extraction assembly includes an air pump, a solenoid valve, a first three-way connector, and a second three-way connector. A pressure relief hole is provided on the housing. The air extraction port of the air pump is connected to the first channel of the first three-way connector via a pipeline. One port of the solenoid valve and the air extraction channel are respectively connected to the second and third channels of the first three-way connector via pipelines. The first channel of the second three-way connector is connected to the pressure relief hole via a pipeline. The exhaust port of the air pump and the other port of the solenoid valve are respectively connected to the second and third channels of the second three-way connector via pipelines.
[0009] According to the above-described squeeze-type massager, the pinching parts of each pinching component located inside the bowl are all wrapped with a flexible massage layer.
[0010] According to the above-described squeeze-type massager, a vibration device is embedded in the flexible massage layer, or a vibration device is provided between the inner wall of the flexible massage layer and the clamping part of the clamping member.
[0011] The squeeze-type massager described above also includes a connecting ring, which is fitted onto the portion of the housing through which each clamping component passes. A connecting hole is provided on the bowl, and the connecting ring is inserted into the connecting hole.
[0012] According to the above-described compression massager, the flexible massage layer includes a connector and clamping bodies adapted to the clamping portions of each clamping member. Each clamping body is disposed on the connector, and the connector is at least partially embedded in the connecting groove of the connecting ring. The clamping portions of the two clamping members are respectively placed into each clamping body. The connector is provided with an air extraction hole, and the connecting ring is provided with an air suction hole. The air extraction hole and the air suction hole are connected to each other to form an air extraction channel.
[0013] According to the above-described squeeze-type massager, the outer wall of the connecting ring and the inner wall of the connecting hole are respectively provided with a slot and a block. The slot and the block engage with each other to fix the bowl body on the connecting ring.
[0014] According to the above-described squeeze-type massager, the opening edge of the bowl is covered with a soft layer.
[0015] The squeeze massager designed in this utility model utilizes pinching and squeezing massage, negative pressure massage, and vibration massage to massage the breasts, thus diversifying the massage functions and improving the user experience. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure; Figure 2 A full sectional view of the overall structure (I); Figure 3 Full sectional view of the overall structure (II); Figure 4 A schematic diagram of a partial composite structure (I); Figure 5 Schematic diagram of partial combined structure (II); Figure 6 Schematic diagram of partial combined structure (III); Figure 7 This is a schematic diagram of the clamping component structure; Figure 8 This is a schematic diagram of a linear reciprocating component. Figure 9 Exploded view of the overall structure (I); Figure 10 Exploded view of the overall structure (II); Figure 11 Exploded view of the overall structure (Part 3); Figure 12 Exploded view of the overall structure (IV).
[0017] Labels: 1. Bowl body; 11. Massage cavity; 12. Connecting hole; 13. Locking block; 14. Air pump; 15. First tee connector; 16. Second tee connector; 17. Solenoid valve; 18. Battery; 2. Housing; 3. Clamping drive device; 31. Drive assembly; 32. Drive gear; 33. Driven gear; 34. Rotating shaft; 35. Linear reciprocating component; 36. Bracket; 311. Motor; 312. Rotating component; 313. Eccentric shaft; 314. Straight Line guide; 351, elongated guide hole; 352, protruding post; 361, first frame; 362, second frame; 363, third frame; 364, fourth frame; 365, perforation; 4, soft layer; 5, flexible massage layer; 51, pinching body; 52, connecting body; 6, connecting ring; 61, connecting groove; 62, slot; 7, pinching component; 71, pinching part; 72, rotating connecting part; 73, motion control part; 74, elongated through hole; 8, silicone sleeve; Detailed Implementation
[0018] To enable those skilled in the art to better understand this utility model and to more clearly define the scope of protection claimed by this utility model, the present utility model is described in detail below with reference to certain specific embodiments. It should be noted that the following are only some specific embodiments of the present utility model, and the specific and direct descriptions of related structures are merely for the convenience of understanding the present utility model; the specific features do not necessarily or directly limit the scope of implementation of the present utility model. Conventional choices and substitutions made by those skilled in the art under the guidance of the present utility model should all be considered within the scope of protection claimed by this utility model.
[0019] Example: The squeeze massager described in this embodiment includes a bowl 1, two clamping components 7, a clamping drive device 3, an air extraction assembly, and a housing 2. The clamping drive device 3 and the air extraction assembly are both disposed in the inner cavity of the housing 2, and the bowl 1 is installed on the outer wall of the housing 2. The bowl 1, the two clamping components 7, the clamping drive device 3, and the air extraction assembly cooperate with each other to achieve clamping and squeezing and negative pressure massage, as follows.
[0020] The bowl body 1 is provided with a massage cavity 11. The opening edge of the bowl body 1 is covered with a soft layer 4. The soft layer 4 is continuously wrapped. The soft layer 4 makes it more comfortable to contact with human skin during massage and can also improve the sealing between the opening edge of the bowl body 1 and human skin. The soft layer 4 is made of silicone material, and the bowl body 1 can be a plastic hard shell.
[0021] The two clamping members 7 are arranged opposite each other and spaced apart, and at least part of both are located within the massage cavity 11; preferably, the clamping part 71 of each clamping member 7 located in the bowl 1 is wrapped with a flexible massage layer 5, which makes it more comfortable to contact with human skin, and the flexible massage layer 5 is made of silicone material.
[0022] The two clamping drive parts of the clamping drive device 3 are respectively connected to the two clamping members 7, so that the clamping drive device 3 drives the two clamping members 7 to move away from each other and towards each other. When performing clamping massage, the relative moving away from each other and towards each other of the two clamping members 7 is a continuous working mode. The clamping drive device 3 includes a drive assembly 31, a linear reciprocating member 35, and at least one linear guide member 314. The linear reciprocating member 35 is slidably mounted on the linear guide member. The drive assembly 31 is drively connected to the linear reciprocating member 35 to drive the linear reciprocating member 35 to perform linear reciprocating motion. The component 7 is at least partially located in the inner cavity of the housing 2, so that the rotating connection part 72 of each clamping component 7 is rotatably connected to the housing 2 through a rotating shaft, the motion control part 73 of each clamping component 7 is slidably connected to the linear reciprocating component 35, and the angle between the clamping part 71 of each clamping component 7 and the motion control part 73 is an obtuse angle; therefore, the drive assembly 31 drives the linear reciprocating component 35 to perform linear reciprocating motion along the length direction of the housing 2, thereby utilizing the sliding connection between the motion control part 73 of the clamping component 7 and the linear reciprocating component 35 to make the clamping parts 71 of the two clamping components 7 relatively close and move away.
[0023] Preferably, the linear reciprocating member 35 has a frame-shaped structure, and the motion control part 73 of each clamping member 7 is located within the space of the linear reciprocating member 35. The motion control part 73 of each clamping member 7 is provided with an elongated through hole 74 or an elongated groove arranged along its length direction. A protruding post 352 is provided on the two opposite inner walls of the linear reciprocating member 35, or a horizontal elongated through hole 74 or an elongated groove is provided on the two opposite inner walls of the linear reciprocating member 35. The motion control part 73 of each clamping member 7 is provided with a protruding post 352, and the protruding post 352 is placed in the elongated through hole 74 or elongated groove.
[0024] Furthermore, the drive assembly 31 includes a motor 311 and a rotating component 312. The rotating component 312 is connected to the rotating shaft of the motor 311. An eccentric shaft 313 is provided on the rotating component 312, and the eccentric shaft 313 is slidably connected to the linear reciprocating component 35. The linear reciprocating component 35 is provided with a horizontally shaped elongated guide hole 351 or elongated guide groove, and the eccentric shaft 313 is placed in the elongated guide hole 351 or elongated guide groove on the linear reciprocating component 35.
[0025] More preferably, the drive assembly 31 further includes a bracket 36, a drive gear 32, and a driven gear 33. The bracket 36 is mounted on the inner wall of the housing 2. The motor 311 and the linear guide 314 are both mounted on the bracket 36. The drive gear 32 is mounted on the rotating shaft of the motor 311. The driven gear 33 is connected to the rotating member 312, and one of them is provided with a rotating shaft 34. The rotating shaft 34 is rotatably connected to the bracket 36. In order to make the transmission more stable, the drive gear 32 and the driven gear 33 can both be bevel gears, and the drive gear 32 and the driven gear 33 are arranged perpendicular to each other.
[0026] Preferably, the bracket 36 comprises, from top to bottom, a first frame 361, a second frame 362, a third frame 363, and a fourth frame 364, and the frames are fixedly connected to each other. Any one of the first frame 361, the second frame 362, the third frame 363, and the fourth frame 364 is fixedly connected to the inner wall of the housing 2 by bolts. An installation space is formed between the first frame 361 and the second frame 362. The driving gear 32, the driven gear 33, the rotating component 312, the linear reciprocating component 35, and the linear guide component 314 are all located within the installation space. The motion control part 73 of each clamping component 7 passes through the through hole 365 at the upper end of the bracket 36 and is slidably connected to the linear reciprocating component 35. The linear guide component 314 is a guide rod, and the two ends of the guide rod are respectively connected to the first frame 361 and the second frame 362. The guide rod passes through the guide hole of the linear reciprocating component 35. The guide rod and the guide hole can be configured as multiple or one.
[0027] The inner wall of the massage cavity 11 is provided with an air extraction channel, and the air extraction port of the air extraction assembly is connected to the air extraction channel through a pipeline. The air extraction assembly includes an air pump 14, a solenoid valve 17, a first three-way connector 15, and a second three-way connector 16. The housing 2 is provided with a pressure relief hole. The air extraction port of the air pump 14 is connected to the first channel of the first three-way connector 15 through a pipeline. One port of the solenoid valve 17 and the air extraction channel are respectively connected to the second and third channels of the first three-way connector 15 through pipelines. The first channel of the second three-way connector 16 is connected to the first channel through a pipeline. Connected to the pressure relief hole, the exhaust port of the air pump 14 and the other port of the solenoid valve 17 are respectively connected to the second and third channels of the second three-way connector 16 through pipelines; wherein, during massage, the opening edge of the bowl 1 contacts the human skin, then the air pump 14 works, the solenoid valve 17 is disconnected, so that the massage chamber 11 generates negative pressure to realize negative pressure massage, the air pump 14 stops working, the solenoid valve 17 is turned on, and air enters the massage chamber 11 through the pressure relief hole, the first three-way connector 15, the second three-way connector 16, the solenoid valve 17 and the air suction channel to relieve the pressure in the massage chamber 11.
[0028] In this embodiment, a vibration device is embedded in the flexible massage layer 5, or a vibration device is provided between the inner wall of the flexible massage layer 5 and the clamping part 71 of the clamping member 7, in order to increase the massage function, make the massager more functional, and improve the use effect.
[0029] In this embodiment, a connecting ring 6 is also included. The connecting ring 6 is sleeved on the portion of the housing 2 through which each clamping member 7 passes, and the two are fixed together by a snap fastener and a groove. A connecting hole 12 is provided on the bowl body 1, and the connecting ring 6 is inserted into the connecting hole 12. The outer wall of the connecting ring 6 and the inner wall of the connecting hole 12 are respectively provided with a slot 62 and a block 13. The slot 62 and the block 13 engage with each other to fix the bowl body 1 on the connecting ring 6. The slot 62 is an L-shaped slot. Both the connecting ring 6 and the connecting hole 12 are circular, which makes it easier to install and remove the bowl body 1, thus facilitating cleaning.
[0030] Preferably, the flexible massage layer 5 includes a connecting body 52 and clamping bodies 51 adapted to the clamping portions 71 of each clamping member 7. Each clamping body 51 is disposed on the connecting body 52. The skirt of the connecting body 52 is embedded in the connecting groove 61 of the connecting ring 6, and the two are tightly fitted together. The clamping portions 71 of the two clamping members 7 are respectively placed into each clamping body 51. The connecting body 52 is provided with an air extraction hole, and the connecting ring 6 is provided with an air suction hole. The air extraction hole and the air suction hole are connected to each other to form an air extraction channel. Its structural design is reasonable, which also facilitates the disassembly and cleaning of the flexible massage layer 5.
[0031] Finally, a battery 18 and a control board are also installed inside the housing 2. The control board is equipped with control buttons and a controller, which is generally an MCU chip. The motor 311, solenoid valve 17 and air pump 14 are connected to and controlled by the MCU chip. The MCU chip has a built-in program to control the operation of the motor 311, solenoid valve 17 and air pump 14. At the same time, in order to make the hand grip more comfortable, a silicone sleeve 8 or a soft rubber sleeve is wrapped on the outer wall of the housing 2. The control buttons pass through the housing 2 and are embedded in the through holes of the silicone sleeve 8 or soft rubber sleeve so that they are exposed to the outside. The housing 2 is formed by splicing and fixing two symmetrically arranged half-shells together.
Claims
1. A squeeze-type massager, characterized in that, include: The bowl (1) is provided with a massage cavity (11). Two clamping elements (7) are arranged opposite each other and spaced apart, and both of them are at least partially located within the massage cavity (11); The pinching drive device (3) has two pinching drive parts connected to the two pinching pieces (7) respectively, so that the pinching drive device (3) drives the two pinching pieces (7) to move away from each other and close together. The inner wall of the massage chamber (11) is provided with an air extraction channel, and the air extraction port of the air extraction component is connected to the air extraction channel through a pipeline. The housing (2), the clamping drive device (3) and the air extraction assembly are both disposed in the inner cavity of the housing (2), and the bowl (1) is installed on the outer wall of the housing (2).
2. The squeeze-type massager according to claim 1, characterized in that, The clamping drive device (3) includes a drive assembly (31), a linear reciprocating member (35), and at least one linear guide member (314). The linear reciprocating member (35) is slidably mounted on the linear guide member. The drive assembly (31) is connected to the linear reciprocating member (35) to drive the linear reciprocating member (35) to perform linear reciprocating motion. Each clamping member (7) is at least partially located in the inner cavity of the housing (2) so that the rotational connection part (72) of each clamping member (7) is rotatably connected to the housing (2) through a rotating shaft. The motion control part (73) of each clamping member (7) is slidably connected to the linear reciprocating member (35). The angle between the clamping part (71) and the motion control part (73) of each clamping member (7) is an obtuse angle.
3. The squeeze massager according to claim 2, characterized in that, The drive assembly (31) includes a motor (311) and a rotating component (312). The rotating component (312) is connected to the rotating shaft of the motor (311) via a transmission connection. An eccentric shaft (313) is provided on the rotating component (312), and the eccentric shaft (313) is slidably connected to the linear reciprocating component (35).
4. The squeeze massager according to claim 3, characterized in that, The drive assembly (31) further includes a bracket (36), a drive gear (32), and a driven gear (33). The bracket (36) is mounted on the inner wall of the housing (2). The motor (311) and the linear guide (314) are both mounted on the bracket (36). The drive gear (32) is mounted on the rotating shaft of the motor (311). The driven gear (33) is connected to the rotating member (312), and one of them is provided with a rotating shaft (34). The rotating shaft (34) is rotatably connected to the bracket (36).
5. The squeeze massager according to claim 4, characterized in that, The bracket (36) is provided with an installation space. The driving gear (32), driven gear (33), rotating component (312), linear reciprocating component (35) and linear guide component (314) are all located in the installation space. The motion control part (73) of each clamping component (7) passes through the through hole (365) at the upper end of the bracket (36) and is slidably connected to the linear reciprocating component (35).
6. The squeeze massager according to claim 1, characterized in that, The air extraction assembly includes an air pump (14), a solenoid valve (17), a first three-way connector (15), and a second three-way connector (16). The housing (2) is provided with a pressure relief hole. The air extraction port of the air pump (14) is connected to the first channel of the first three-way connector (15) through a pipeline. One port of the solenoid valve (17) and the air extraction channel are respectively connected to the second channel and the third channel of the first three-way connector (15) through pipelines. The first channel of the second three-way connector (16) is connected to the pressure relief hole through a pipeline. The exhaust port of the air pump (14) and the other port of the solenoid valve (17) are respectively connected to the second channel and the third channel of the second three-way connector (16) through pipelines.
7. The squeeze massager according to claim 1, characterized in that, Each pinching part (71) of the pinching piece (7) located in the bowl (1) is covered with a flexible massage layer (5).
8. The squeeze massager according to claim 7, characterized in that, The flexible massage layer (5) is embedded with a vibration device, or a vibration device is provided between the inner wall of the flexible massage layer (5) and the pinching part (71) of the pinching member (7).
9. The squeeze massager according to claim 7, characterized in that, It also includes a connecting ring (6), which is fitted onto the part of the housing (2) through which each clamping piece (7) passes. The bowl (1) is provided with a connecting hole (12), and the connecting ring (6) is inserted into the connecting hole (12). The flexible massage layer (5) includes a connector (52) and a clamping body (51) adapted to the clamping part (71) of each clamping member (7). Each clamping body (51) is disposed on the connector (52). The connector (52) is at least partially embedded in the connecting groove (61) of the connecting ring (6). The clamping parts (71) of the two clamping members (7) are respectively placed in each clamping body (51). The connector (52) is provided with an air extraction hole, and the connecting ring (6) is provided with an air suction hole. The air extraction hole and the air suction hole are connected to each other to form an air extraction channel.
10. The squeeze massager according to claim 9, characterized in that, The outer wall of the connecting ring (6) and the inner wall of the connecting hole (12) are respectively provided with a slot (62) and a block (13). The slot (62) and the block (13) engage with each other to fix the bowl (1) on the connecting ring (6). The opening edge of the bowl (1) is covered with a soft layer (4).
Citation Information
Patent Citations
Chest enhancement massage instrument
CN204016944U