Flexible massage equipment

By incorporating a pore restrictor into the flexible massage device, the problem of air retention during the installation of the telescopic airbag and the restrictor kit is solved, resulting in a faster response speed and a better fit, thus improving the device's sensitivity and safety.

CN223799922UActive Publication Date: 2026-01-16SHANGHAI DREAMREADY INFORMATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422867933.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-25
Publication Date
2026-01-16
Estimated Expiration
2034-11-25

AI Technical Summary

Technical Problem

In existing flexible massage devices, air can easily get trapped during the installation of the telescopic airbag and the restraint kit, leading to inconsistent response sensitivity, air leakage at the connection point, and difficulty in achieving a perfect fit between the irregularly shaped telescopic airbag and the restraint kit, affecting the performance and safety.

Method used

A pore restrictor is fitted onto the outside of the telescopic structure and positioned opposite the inside of the outer jacket. This pore restrictor connects the gap between itself and the telescopic structure, as well as the gap between itself and the inner wall of the outer jacket. This ensures that the pore restrictor is tightly connected to the telescopic structure during expansion and contraction, reducing the influence of air and improving sensitivity and safety.

Benefits of technology

It achieves rapid response and better restraint of the telescopic structure, prevents air accumulation, improves the smoothness of the cover and the user experience, and reduces installation steps and material costs.

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Abstract

The utility model relates to the field of flexible massage, and provides flexible massage equipment which comprises an installation base and a telescopic structure. The telescopic assembly comprises a telescopic structure, a pore limiting part and a jacket, the telescopic structure is provided with a telescopic cavity, the pore limiting part sleeves the telescopic structure, the jacket is suitable for sleeving the telescopic structure, a first gap is formed between the pore limiting part and the telescopic structure, and a second gap is formed between the pore limiting part and the inner side wall of the jacket; the first void and the second void communicate with each other through a void restrictor. The pore limiting piece is arranged on the outer side of the telescopic structure in a sleeving mode and relatively located on the inner side of the outer sleeve, the pore limiting piece is connected with the first gap and the second gap in a communicating mode, so that when the telescopic structure expands and stretches out and draws back, the pore limiting piece is tightly connected with the telescopic structure, and the limiting effect of the pore limiting piece on the telescopic structure is better; the air between the pore limiting piece and the telescopic structure can be effectively prevented from influencing the sensitivity and safety of the telescopic structure.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of flexible massage, further relates to a flexible massage equipment. BACKGROUND

[0002] The existing flexible massage equipment mostly limits the lateral restriction of the telescopic air bag through the limiting kit, when installing, the limiting kit needs to be sleeved on the outer side of the telescopic air bag, and then the limiting kit and the telescopic air bag are installed on the mounting seat together, at this time, part of air may be left between the limiting kit and the telescopic air bag, when the telescopic air bag expands and telescopes, the telescopic air bag extrudes the gas between it and the limiting kit, so that the gas shifts to both ends of the telescopic air bag, resulting in that the response sensitivity of each position of the telescopic air bag is not the same, and part of the gas extrudes the connecting part between the limiting kit and the telescopic air bag, which easily causes the connecting part of the limiting kit and the telescopic air bag to separate from each other, increasing the risk of air leakage and disengagement.

[0003] In particular, at present, the telescopic air bag is set to a folded shape or the like heterogeneous shape to obtain faster response speed, or the top of the telescopic air bag is provided with a vibration assembly, so that the whole telescopic air bag presents ups and downs, the limiting kit only extrudes the telescopic air bag as a whole, cannot be closely attached to the wrinkle of the telescopic air bag, so that more air is left after the limiting kit and the telescopic air bag are installed, which more affects the response effect of the limiting kit on the telescopic air bag, and also more easily causes the misplacement of the limiting kit and the telescopic air bag, affecting the limiting effect of the limiting kit on the telescopic air bag. At this time, the limiting kit needs to be designed to be completely consistent with the outer side wall of the telescopic air bag, but the cost of individually customizing the limiting kit is high, and the process is complex. Therefore, when installing the limiting kit and the telescopic air bag, the telescopic air bag needs to be manually completely matched with the limiting kit and the gas needs to be discharged as much as possible, which is time-consuming and laborious. SUMMARY

[0004] In view of the above technical problems, the purpose of the utility model is to provide a flexible massage equipment, the pore limiting kit is sleeved on the outer side of the telescopic structure and is relatively located on the inner side of the sleeve, the pore limiting kit guides the first gap between the pore limiting kit and the telescopic structure and the second gap between the pore limiting kit and the inner side wall of the sleeve, so that when the telescopic structure expands and telescopes, the pore limiting kit is closely connected with the telescopic structure, the limiting effect of the pore limiting kit on the telescopic structure is better, which can effectively prevent the air between the pore limiting kit and the telescopic structure from affecting the sensitivity and safety of the telescopic structure, and also improve the smoothness of the sleeve.

[0005] In order to achieve the above object, the utility model provides a flexible massage equipment, including mounting seat and telescopic structure, the mounting seat is suitable for installing pressure charging component, telescopic component is suitable for fixed mounting in mounting seat, telescopic component includes telescopic structure, interstice limiting piece and outer cover, telescopic structure has telescopic cavity, pressure charging component communicates telescopic cavity, interstice limiting piece is set up in telescopic structure outside, the outer cover is suitable for setting up in telescopic structure outside, first interstice is equipped with between interstice limiting piece with telescopic structure, second interstice is equipped with between interstice limiting piece with the inner wall of outer cover, first interstice and second interstice are communicated with each other through interstice limiting piece, so that interstice limiting piece always closely follows telescopic structure.

[0006] In some embodiments, one end of the telescopic structure is provided with a first opening, one end of the interstice limiting piece is provided with a second opening, and one end of the outer cover is provided with a third opening. The first opening of the telescopic structure, the second opening of the interstice limiting piece, and the third opening of the outer cover are all suitable for being sleeved on the mounting seat.

[0007] In some embodiments, the telescopic structure is folded, and the length of the interstice limiting piece is longer than that of the telescopic structure, so that the interstice limiting piece is also folded and closely adheres to the outer wall of the telescopic structure after installation.

[0008] In some embodiments, the telescopic structure includes a first mounting portion and a first extension portion. The first mounting portion is suitable for being sleeved on the mounting seat, and the first extension portion is axially folded.

[0009] The interstice limiting piece includes a second mounting portion and a second extension portion. The second mounting portion is suitable for being sleeved on the outside of the first mounting portion, and the second extension portion is suitable for being attached to the first extension portion.

[0010] In some embodiments, a first limiting ring is further included, which is sleeved on the outside of the second mounting portion, so that the second mounting portion and the first mounting portion are closely sleeved on the mounting seat.

[0011] In some embodiments, the telescopic structure further includes a first placement portion, which is provided at one end of the first extension portion away from the first mounting portion. The first placement portion is suitable for placing a vibration assembly therein.

[0012] The interstice limiting piece further includes a second placement portion, which is provided at one end of the second extension portion away from the second mounting portion.

[0013] In some embodiments, a second limiting ring is further included, which is sleeved on the outside of the second placement portion, so that the vibration assembly is fixedly arranged inside the first placement portion.

[0014] In some embodiments, the porosity restrictor is a knitted fabric, and the knitted fabric is provided with air-permeable holes, and the axial and radial stretching ability of the porosity restrictor can be changed by changing the shape of the air-permeable holes.

[0015] In some embodiments, the porosity restrictor is a high-elasticity polymer, and the high-elasticity polymer is provided with a plurality of air guide holes.

[0016] In some embodiments, the mounting seat comprises a first seat body and a second seat body, the first seat body is provided with a first mounting groove and a second mounting groove at two ends respectively, the telescopic structure is provided with a first mounting block at one end, the first mounting block is sleeved in the first mounting groove, the porosity restrictor is sleeved outside the first mounting block of the telescopic structure through a first restrictor, the outer sleeve is provided with a third mounting block at one end, the third mounting block is sleeved in the second mounting groove, and the second seat body is sleeved outside the outer sleeve.

[0017] Compared with the prior art, the flexible massage device provided by the utility model has at least one of the following beneficial effects:

[0018] 1. The porosity restrictor is sleeved outside the telescopic structure and is located opposite to the inner side of the outer sleeve, the porosity restrictor is connected with the first gap between the porosity restrictor and the telescopic structure and the second gap between the porosity restrictor and the inner side wall of the outer sleeve, so that the porosity restrictor is tightly connected with the telescopic structure when the telescopic structure expands and contracts, the air between the porosity restrictor and the telescopic structure does not affect the sensitivity and safety of the telescopic structure, and the smoothness of the outer sleeve is improved.

[0019] 2. The telescopic structure and the porosity restrictor are both folded, the axial telescopic response speed of the telescopic structure is faster, the porosity restrictor is tightly attached to the telescopic structure during the telescopic process of the telescopic structure, the restriction effect of the porosity restrictor on the telescopic structure is better and more sensitive, and the shape of the outer sleeve is more flexible.

[0020] 3. The telescopic structure is provided with a first placement part at the top, the first placement part is provided with a vibration assembly, the vibration assembly can bring better use experience, the shape of the first placement part is different from that of the first extension part and the first mounting part, the shape of the telescopic structure is further changed, the size of the second gap between the telescopic structure and the porosity restrictor is increased, and the porosity restrictor can also perfectly solve the problem. BRIEF DESCRIPTION OF DRAWINGS

[0021] The above characteristics, technical features, advantages and implementation modes of the utility model will be further described in the following in a clear and understandable manner in combination with the preferred embodiments and the attached drawings.

[0022] Figure 1It is a whole section view of a flexible massage device;

[0023] Figure 2 It is a structure view of a telescopic assembly;

[0024] Figure 3 It is a section view of a mounting seat;

[0025] Figure 4 It is a structure view of a sleeve;

[0026] Figure 5 It is a structure view of a telescopic structure;

[0027] Figure 6 It is an explosion view of a mounting seat.

[0028] Explanation of the reference signs:

[0029] Mounting seat 1, first seat body 11, first mounting groove 111, second mounting groove 112, second seat body 12, telescopic assembly 2, telescopic structure 21, telescopic cavity 211, first mounting part 212, first extension part 213, first placement part 214, first mounting block 215, vibration assembly 216, aperture limiting part 22, first gap 221, second mounting part 222, second extension part 223, second placement part 224, sleeve 23, second gap 231, third mounting block 232, first limiting ring 24, second limiting ring 25, pressure charging assembly 3. DETAILED DESCRIPTION

[0030] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the specific embodiments of the present application will be described below with reference to the drawings. Obviously, the drawings described below are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained from these drawings without creative labor, and other embodiments can also be obtained.

[0031] In order to make the drawing simple, only the parts related to the present application are shown in each drawing, and they do not represent the actual structure of the product. In addition, in order to make the drawing simple and easy to understand, in some drawings, only one of the components with the same structure or function is shown, or only one of them is marked. In this paper, "one" not only means "only one", but also means "more than one".

[0032] It should be further understood that the term "and / or" used in the specification and the appended claims means any combination of one or more of the associated listed items and all possible combinations, and includes these combinations.

[0033] In this article, it is necessary to explain that, unless otherwise specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0034] In addition, in the description of the present application, the terms "first", "second" and the like are only used to distinguish the description, and cannot be understood as indicating or implying relative importance. It should be pointed out that the above embodiments can be freely combined according to the needs. The above is only the preferred embodiment of the utility model, and it should be pointed out that for ordinary skilled in the art, without departing from the principle of the utility model, some improvements and refinements can be made, which should be regarded as the protection scope of the utility model.

[0035] Reference Figures 1 to 4 The utility model provides a kind of flexible massage equipment, including mounting seat 1 and telescopic component 2, mounting seat 1 is suitable for installing pressure charging component 3;Telescopic component 2 is suitable for fixedly installed in mounting seat 1, telescopic component 2 includes telescopic structure 21, interstice restriction piece 22 and outer sleeve 23, telescopic structure 21 has telescopic cavity 211, pressure charging component 3 is communicated telescopic cavity 211, interstice restriction piece 22 is sleeved on the outside of telescopic structure 21, outer sleeve 23 is sleeved on the outside of telescopic structure 21, first interstice 221 is arranged between interstice restriction piece 22 and telescopic structure 21, second interstice 231 is arranged between the inner wall of interstice restriction piece 22 and outer sleeve 23, first interstice 221 and second interstice 231 are communicated each other by interstice restriction piece 22.

[0036] In the embodiment, interstice restriction piece 22 is sleeved on the outside of telescopic structure 21 and is located on the inside of outer sleeve 23, interstice restriction piece 22 is connected with the first interstice between interstice restriction piece 22 and telescopic structure 21 and the second interstice 231 between interstice restriction piece 22 and the inner wall of outer sleeve 23, so that when telescopic structure 21 expands and contracts, interstice restriction piece 22 is closely connected with telescopic structure 21, the restriction effect of interstice restriction piece 22 to telescopic structure 21 is better, which can effectively prevent the air between interstice restriction piece 22 and telescopic structure 21 from affecting the sensitivity and safety of telescopic structure 21, and improve the smoothness of outer sleeve 23.

[0037] Specifically, the telescopic structure 21 is provided with a first opening at one end, the porosity limiting member 22 is provided with a second opening at one end, and the outer sleeve 23 is provided with a third opening at one end. The first opening of the telescopic structure 21, the second opening of the porosity limiting member 22, and the third opening of the outer sleeve 23 are all adapted to be sleeved on the mounting seat 1. The outer sleeve 23, the porosity limiting member 22, and the telescopic structure 21 are sequentially sleeved, so that the telescopic structure 21 is located inside the porosity limiting member 22, and the porosity limiting member 22 is located inside the outer sleeve 23. The porosity limiting member 22 communicates the first gap 221 between the porosity limiting member 22 and the telescopic structure 21 and the second gap 231 between the porosity limiting member 22 and the inner side wall of the outer sleeve 23. When the telescopic structure 21 and the porosity limiting member 22 are installed, the porosity limiting member 22 will extrude the telescopic structure 21 and connect the first gap 221 with the outside, so that the air between the telescopic structure 21 and the porosity limiting member 22 is discharged through the porosity limiting member 22. The porosity limiting member 22 can be tightly attached to the telescopic structure 21, that is, the shape of the porosity limiting member 22 is consistent with the shape of the telescopic structure 21, without the need for manual extrusion of the porosity limiting member 22 to manually discharge the air in the first gap 221, reducing the installation steps. When the telescopic structure 21 expands and contracts, the telescopic structure 21 extrudes the air in the first gap 221 into the second gap 231. The inner side wall of the porosity limiting member 22 and the outer side wall of the telescopic structure 21 always abut, so that the porosity limiting member 22 can timely limit the change of the telescopic structure 21, has better response speed, avoids the air between the telescopic structure 21 and the porosity limiting member 22 being gathered at a certain place in the first gap 221 after the telescopic structure 21 completely expands and contracts, causes the outer surface of the porosity limiting member 22 to be concave-convex, and further affects the smoothness of the outer surface of the outer sleeve 23, so that the hardness of each position of the outer sleeve 23 is not the same, and even can cause an abnormal bulge of the outer sleeve 23. Therefore, the telescopic structure 21 is sleeved on the porosity limiting member 22 to discharge the air between the porosity limiting member 22 and the telescopic structure 21, so that the porosity limiting member 22 is more attached to the telescopic structure 21 during installation and work, improves the limiting sensitivity of the porosity limiting member 22 to the telescopic structure 21, increases the smoothness of the surface of the porosity limiting member 22, and makes it more attached to the surface of the telescopic structure 21. The porosity limiting member 22 is a knitted fabric, and the knitted fabric is provided with air holes. By changing the shape of the air holes, the axial and radial stretching capabilities of the porosity limiting member 22 can be changed. Moreover, the porosity limiting member 22 can adjust the axial and radial stretching capabilities of the porosity limiting member 22 by changing the shape of the pores, to meet different stretching scene requirements. The pores of the porosity limiting member 22 are not further limited in the present application, and preferably, the pores are rhombic, and the axial elongation capability is greater than the width elongation capability.

[0038] The air-permeable holes of the knitted fabric are formed during its manufacturing process, so there is no need to reopen the air-permeable holes on the knitted fabric. This is because the loops that constitute the knitted fabric are intertwined with each other, forming countless isolated air bags inside the fabric, which has good warmth retention and air permeability. The knitted fabric includes warp-knitted fabric and weft-knitted fabric. The present application adopts weft-knitted fabric and knits into loops. The narrow side of the loop is wide, so that the overall movement of the stretch structure 21 will be biased to the vertical direction and be contracted. The knitted fabric is also a double-reverse fabric, which has great extensibility and elasticity when stretched in the longitudinal direction. This is because in the free state, the loop column is recessed, which shortens the longitudinal direction. When the knitted fabric is stretched in the longitudinal direction, the inclined loop is straightened, the loop column is exposed, and then the transfer of the loop occurs. At the same time, the pressure between the contact points of the loop increases during stretching, which hides more elastic potential energy, so the characteristics of returning to the original state are better when the external force is removed. The material of the knitted fabric is aramid fiber, carbon fiber, polyethylene fiber, glass fiber, polyester fiber, cotton fiber, nylon fiber, and polyester fiber.

[0039] It is worth noting that the knitting method of the knitted fabric is not limited further in the present application, which can be integrated or combined.

[0040] In the deformation embodiment, the pore restrictor 22 can also be a high-elasticity polymer, and a plurality of air guide holes are provided on the high-elasticity polymer. The high-elasticity polymer includes but is not limited to rubber and thermoplastic elastomer. The air guide holes are exposed or cut out during molding.

[0041] Further, referring to Figure 1 and Figure 5 , the stretch structure 21 is folded, and the length of the pore restrictor 22 is longer than that of the stretch structure 21, so that the pore restrictor 22 is also folded and tightly attached to the outer side wall of the stretch structure 21 after installation.

[0042] In the embodiment, the stretch structure 21 and the pore restrictor 22 are both folded, the axial stretching response speed of the stretch structure 21 is faster, and the pore restrictor 22 is tightly attached to the stretch structure 21 during the stretching process of the stretch structure 21. The restriction effect of the pore restrictor 22 on the stretch structure 21 is better and more sensitive, and the shape of the outer cover 23 is also more soft.

[0043] Specifically, the telescopic structure 21 is folded, and has wave crests and troughs and is at least partially foldable. The telescopic structure 21 includes a first mounting portion 212 adapted to be sleeved on the mounting seat 1 and a first extension portion 213 axially folded. The length of the aperture limiting member 22 is longer than that of the telescopic structure 21, so that the aperture limiting member 22 can be fitted with the shape of the telescopic structure 21 after being sleeved on the telescopic structure 21, that is, the aperture limiting member 22 is also folded. The aperture limiting member 22 includes a second mounting portion 222 adapted to be sleeved outside the first mounting portion 212 and a second extension portion 223 adapted to be fitted with the first extension portion 213. When the pressurizing assembly 3 fills fluid into the inside of the telescopic structure 21, the telescopic structure 21 first axially elongates and radially shrinks, at which time the aperture limiting member 22 changes following the change of the telescopic structure 21 and is not affected by the air between the aperture limiting member 22 and the telescopic structure 21; when the telescopic structure 21 axially telescopes, the telescopic structure 21 radially thickens, at which time the aperture limiting member 22 also restricts the radial expansion of the telescopic structure 21. The aperture limiting member 22 has a faster and more accurate sensitivity response to the telescopic structure 21.

[0044] Reference Figure 2 The second mounting portion 222 further has a first limiting ring 24 outside, the first limiting ring 24 is sleeved outside the second mounting portion 222, so that the second mounting portion 222 and the first mounting portion 212 are tightly sleeved on the mounting seat 1. The first limiting ring 24 fixes the aperture limiting member and the telescopic structure 21 to be sleeved on the mounting seat 1. The telescopic structure 21 and the aperture limiting member 22 are both fixed on the mounting seat 1 through the first limiting ring 24, and the aperture limiting member 22 always fits the telescopic structure 21 in the change process of the telescopic structure 21, preventing the telescopic structure 21 from extruding the air in the first gap 221 to the position of the first limiting ring 24 and increasing the working strength of the first limiting ring 24 and the risk of the first limiting ring 24 being separated from the outside of the aperture limiting member 22. It is worth noting that the telescopic structure 21 includes but is not limited to a folded shape, and can also be a zigzag shape and the like. The connection between the aperture limiting member 22 and the telescopic structure 21 can also be through a fastening mode such as glue, which is not limited further in the present application.

[0045] More specifically, referring to Figure 6 The mounting seat 1 includes a first seat body 11 and a second seat body 12, the first seat body 11 has a first mounting groove 111 and a second mounting groove 112 at both ends, the telescopic structure 21 has a first mounting block 215 at one end, the first mounting block 215 is sleeved in the first mounting groove 111, the aperture limiting member is sleeved outside the first mounting block 215 of the telescopic structure 21 through a first limiting member, one end of the outer sleeve 23 has a third mounting block 232, the third mounting block 232 is sleeved in the second mounting groove 112, and the second seat body 12 is sleeved outside the outer sleeve 23.

[0046] Further, referring to Figure 1 and Figure 2 , the telescopic structure 21 further comprises a first placement portion 214, which is arranged at one end of the first extension portion 213 away from the first mounting portion 212, and the first placement portion 214 is adapted to place the vibration assembly; the aperture limiting member 22 further comprises a second placement portion 224, which is arranged at one end of the second extension portion 223 away from the second mounting portion 222,

[0047] In the embodiment, the telescopic structure 21 is provided with the first placement portion 214 at the top, and the vibration assembly is arranged in the first placement portion 214, which can bring better use experience. Moreover, the first placement portion is not shaped as the first extension portion 213 and the first mounting portion 212, which further increases the shape variability of the telescopic structure 21 and the size of the second gap 231 between the telescopic structure 21 and the aperture limiting member 22. The aperture limiting member 22 can also perfectly solve this problem.

[0048] Specifically, the first placement portion 214 is located at one end of the first extension portion 213 away from the first mounting portion 212, the second placement portion 224 is arranged outside the first placement portion 214, and the second limiting ring 25 is further arranged outside the second placement portion 224, which is arranged outside the second placement portion 224, so that the vibration assembly is fixed inside the first placement portion 214. The second limiting ring 25 has a stronger constraint effect, which can prevent the vibration assembly fixed in the first placement portion 214 from falling after the telescopic structure 21 expands. It should be noted that the vibration assembly can also be fixed in the first placement portion 214 by using glue, and the aperture limiting member 22 and the telescopic structure 21 can also be fixed and connected by using glue, and even the first placement portion 214 of the telescopic structure 21 can be locally hardened.

[0049] It should be noted that the above embodiments can be freely combined as needed. The above is only a preferred embodiment of the present application, and it should be pointed out that for ordinary skilled in the art, on the premise of not departing from the principles of the present application, a number of improvements and refinements can be made, which should be considered as the protection scope of the present application.

Claims

1. A flexible massaging apparatus, characterized by comprising: The flexible massage device comprises: a mounting base, which is adapted to mount a pressurizing assembly thereon; a telescopic assembly, which is adapted to be fixedly mounted on the mounting base, the telescopic assembly comprising a telescopic structure, an aperture limiting member and an outer sleeve, the telescopic structure having a telescopic cavity, the pressurizing assembly being in communication with the telescopic cavity, the aperture limiting member being sleeved outside the telescopic structure, the outer sleeve being adapted to be sleeved outside the telescopic structure, a first gap being provided between the aperture limiting member and the telescopic structure, a second gap being provided between the aperture limiting member and the inner wall of the outer sleeve, the first gap and the second gap being in communication with each other through the aperture limiting member.

2. The flexible massage device according to claim 1, wherein one end of the telescopic structure is provided with a first opening, one end of the aperture limiting member is provided with a second opening, and one end of the outer sleeve is provided with a third opening, the first opening of the telescopic structure, the second opening of the aperture limiting member and the third opening of the outer sleeve being adapted to be sleeved on the mounting base.

3. The flexible massage device according to claim 2, wherein the telescopic structure is in a folded shape, and the length of the aperture limiting member is longer than that of the telescopic structure, so that the aperture limiting member is also in a folded shape and closely adheres to the outer wall of the telescopic structure after being mounted.

4. The flexible massage device according to claim 3, wherein the telescopic structure comprises a first mounting portion and a first extension portion, the first mounting portion being adapted to be sleeved on the mounting base, and the first extension portion being in a folded shape in the axial direction; the aperture limiting member comprises a second mounting portion and a second extension portion, the second mounting portion being adapted to be sleeved outside the first mounting portion, and the second extension portion being adapted to be in close contact with the first extension portion.

5. The flexible massage device according to claim 4, further comprising a first limiting ring, which is sleeved outside the second mounting portion, so that the second mounting portion and the first mounting portion are closely sleeved on the mounting base.

6. The flexible massage device according to claim 4, wherein the telescopic structure further comprises a first placement portion, which is provided at one end of the first extension portion away from the first mounting portion, and the first placement portion is adapted to place a vibration assembly therein; the aperture limiting member further comprises a second placement portion, which is provided at one end of the second extension portion away from the second mounting portion.

7. The flexible massage device according to claim 6, further comprising a second limiting ring, which is sleeved outside the second placement portion, so that the vibration assembly is fixedly arranged inside the first placement portion.

8. The flexible massage device according to any one of claims 1-7, wherein the aperture limiting member is a knitted fabric, and the knitted fabric is provided with air-permeable holes, and the axial and radial stretching capabilities of the aperture limiting member can be changed by changing the shape of the air-permeable holes.

9. The flexible massage device according to any one of claims 1-7, wherein The porosity limiting member is a high-elastic polymer, and a plurality of gas guide holes are arranged on the high-elastic polymer.

10. The flexible massaging device of claim 1, wherein, The mounting seat comprises a first seat body and a second seat body, the first seat body is respectively provided with a first mounting groove and a second mounting groove at both ends, one end of the telescopic structure is provided with a first mounting block, the first mounting block is sleeved in the first mounting groove, the porosity limiting member is sleeved outside the first mounting block of the telescopic structure through a first limiting member, one end of the sleeve is provided with a third mounting block, the third mounting block is sleeved in the second mounting groove, and the second seat body is sleeved outside the sleeve.