Massager

By using meshing parts and incomplete gears, the transmission structure of the massager is simplified, solving the problem of high cost in existing massagers and realizing a low-cost massager design.

CN223696296UActive Publication Date: 2025-12-23DONGGUAN QIANHE ELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202422157938.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-12-23
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

Existing massagers have complex structures, resulting in high costs.

Method used

By employing a meshing component and an incomplete gear, the massage component is driven by a drive assembly to perform reciprocating motion, thus simplifying the transmission structure.

Benefits of technology

This invention achieves a massager design that is simple in structure, has few parts, is easy to assemble, and is low in cost.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a massager which comprises at least one massage assembly, a transmission assembly and a driving assembly. The transmission assembly comprises a meshing piece connected with the at least one massage assembly and an incomplete gear meshed with the meshing piece. The driving assembly is connected with the incomplete gear and drives the at least one massage assembly to reciprocate through the incomplete gear and the meshing piece. The massager is simple in structure and low in cost.
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Description

TECHNICAL FIELD

[0001] The utility model relates to health care massage instrument technical field especially, relate to a massage device. BACKGROUND

[0002] With the increasing pace of life, people's work pressure is also growing, in order to complete the work task, people often work overtime. After experiencing a day of intense work, the body becomes tired, in order to relieve fatigue, keep healthy, people generally use the massage machine to massage the body. For example, people will use the massage machine to massage the back, neck, hand, leg, waist and foot parts, to relieve fatigue. However, the structure of the existing massage machine is complex, such as the telescopic transmission structure, which leads to high cost of the massage machine. SUMMARY

[0003] In view of the above defects of the prior art, the utility model provides a massage machine, which aims at solving the problem of complex structure of the existing massage machine.

[0004] The utility model provides a massage machine, which comprises

[0005] At least one massage assembly;

[0006] A transmission assembly, comprising:

[0007] A meshing part connected with the at least one massage assembly; and

[0008] An incomplete gear meshing with the meshing part; and

[0009] A drive assembly connected with the incomplete gear, which drives the at least one massage assembly to reciprocate through the incomplete gear and the meshing part.

[0010] Further, the meshing part comprises:

[0011] Two oppositely arranged meshing parts, and the incomplete gear is located between the two meshing parts and alternately meshes with the two meshing parts.

[0012] Further, the massage machine further comprises:

[0013] A housing for accommodating the transmission assembly, which is provided with at least one first through hole; and

[0014] The transmission assembly further comprises:

[0015] At least one connecting rod connected with the meshing part, which passes through the first through hole and is connected with the massage assembly.

[0016] Further, the transmission assembly further comprises:

[0017] at least one stopper fixedly sleeved on the connecting rod; and

[0018] at least one spring sleeved on the connecting rod between the stopper and the hole wall of the first through hole.

[0019] Further, the massager further comprises a support assembly, the support assembly comprising:

[0020] at least one support rod comprising a first rod body and a second rod body, the first rod body being telescopically connected with the second rod body; and

[0021] at least one first adjusting member comprising a sleeve sleeved on the first rod body and a rotating cylinder rotatably sleeved on the sleeve and the second rod body, the sleeve being elastic, the size of the sleeve gradually increasing away from the rotating cylinder.

[0022] Further, the massager further comprises a housing and a support assembly, the support assembly comprising:

[0023] at least two support rods for supporting the housing; and

[0024] at least two second adjusting members, each second adjusting member comprising an adjusting part rotatably connected with the housing and a first connecting part connecting the adjusting part and the support rod, the adjusting part being provided with tooth parts, adjacent tooth parts being engaged to adjust the angle between the support rods.

[0025] Further, the second adjusting member further comprises a fixing part, the fixing part comprising:

[0026] a first outer flange provided outside the adjusting part;

[0027] a first intermediate section connected with the first outer flange and accommodated in a second through hole of the adjusting part; and

[0028] a terminal end connected with the first intermediate section and the housing.

[0029] Further, the support assembly further comprises at least one support member, the support member comprising:

[0030] a second connecting part connected with the housing and provided with two third through holes; and

[0031] two support parts provided on the second connecting part, each support part being provided with a fourth through hole in communication with the third through hole, the adjusting part being rotatably sleeved on the support part, the first intermediate section being accommodated in the second through hole and the fourth through hole, and the terminal end passing through the third through hole and the fourth through hole to be connected with the housing.

[0032] Further, one of the at least two supporting parts is provided with at least one first opening, and the second connecting part is provided with at least one second opening communicated with the first opening.

[0033] The support assembly further comprises a locking member, which comprises a mounting part, at least one elastic sheet protruding from the mounting part, and a clamping block protruding from the elastic sheet, the mounting part is provided with a fifth through hole, and the mounting part is mounted between the shell and the second connecting part, and the terminal is movably connected with the shell through the third through hole, the fourth through hole and the fifth through hole.

[0034] One of the at least two adjusting parts is provided with at least one clamping groove, the elastic sheet passes through the second opening, the clamping block extends out of the first opening and is clamped in the clamping groove.

[0035] Further, one of the at least two fixing parts further comprises a supporting cylinder sleeved outside the second intermediate section, a gap is formed between the second intermediate section and the supporting cylinder, and the terminal is movably connected with the shell, wherein,

[0036] When the second outer flange is pressed, the supporting cylinder moves in a direction close to the shell, the elastic sheet extends into the gap, the supporting cylinder supports the elastic sheet, the elastic sheet is deformed to drive the clamping block to disengage from the clamping groove, and the adjusting part is released;

[0037] When the supporting cylinder is moved away from the shell, the supporting cylinder is separated from the elastic sheet, the elastic sheet is deformed to drive the clamping block to be clamped in the clamping groove, and the adjusting part is fixed.

[0038] In the massage device of the technical scheme, the massage device comprises at least one massage assembly, a transmission assembly and a driving assembly. The transmission assembly comprises a meshing piece connected with the at least one massage assembly and an incomplete gear meshing with the meshing piece. The driving assembly is connected with the incomplete gear, and drives the at least one massage assembly to reciprocate through the incomplete gear and the meshing piece. The massage device has the advantages of simple structure, few parts, convenient assembly and maintenance, low cost and the like. BRIEF DESCRIPTION OF DRAWINGS

[0039] In order to more clearly illustrate the scheme of the utility model, the following will be a brief description of the drawings needed to be used in the embodiment description, and obviously, the following description of the drawings is some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained according to these drawings without creative labor.

[0040] Figure 1 It is the structure schematic view of the massage device of one embodiment of the utility model.

[0041] Figure 2 is Figure 1 an exploded view of the massager shown in FIG. 1.

[0042] Figure 3 is Figure 2 an enlarged view of A in FIG. 1.

[0043] Figure 4 is Figure 2 an exploded view of the lower shell of the massager shown in FIG. 1.

[0044] Figure 5 A is Figure 2 a structural schematic view of the drive assembly of the massager shown in FIG. 1.

[0045] Figure 5 B is Figure 2 a structural schematic view of the drive assembly of the massager shown in FIG. 1 from another angle.

[0046] Figure 6 is Figure 2 an exploded view of the drive assembly of the massager shown in FIG. 1.

[0047] Figure 7 is Figure 2 a structural schematic view of the drive assembly, the circuit board and the switch of the massager shown in FIG. 1.

[0048] Figure 8 is Figure 2 a structural schematic view of the support assembly of the massager shown in FIG. 1.

[0049] Figure 9 is Figure 2 an exploded view of the support assembly of the massager shown in FIG. 1.

[0050] Figure 10 A is Figure 9 a structural schematic view of the sleeve of the support assembly shown in FIG. 1.

[0051] Figure 10 B is Figure 9 a structural schematic view of the sleeve of the support assembly shown in FIG. 1 from another angle.

[0052] Figure 11 A is Figure 9 an exploded view of the second adjusting member of the support assembly shown in FIG. 1.

[0053] Figure 11 B is Figure 9 an exploded view of the second adjusting member of the support assembly shown in FIG. 1 from another angle.

[0054] Figure 12 A is Figure 9 a structural schematic view of a support member of the support assembly shown in FIG. 1.

[0055] Figure 12 B is Figure 12 Another angle of the support shown in A is a structural schematic view.

[0056] Figure 13 A is Figure 9 Another support of the bracket assembly shown in B is a structural schematic view.

[0057] Figure 13 B is Figure 13 Another angle of the support shown in A is a structural schematic view.

[0058] Figure 14 A is Figure 9 The locking member of the bracket assembly shown in B is a structural schematic view.

[0059] Figure 14 B is Figure 9 Another angle of the locking member of the bracket assembly shown in B is a structural schematic view.

[0060] Figure 15 A is Figure 9 The adjusting part of the bracket assembly shown in B is a structural schematic view.

[0061] Figure 15 B is Figure 15 Another angle of the adjusting part shown in A is a structural schematic view.

[0062] Figure 16 A is Figure 9 Another fixing part of the bracket assembly shown in B is a structural schematic view.

[0063] Figure 16 B is Figure 16 Another angle of the fixing part shown in A is a structural schematic view.

[0064] The realization, functional features and advantages of the utility model will be further described with reference to the drawings in combination with embodiments. DETAILED DESCRIPTION

[0065] The technical solutions in the embodiments of the utility model will be clearly and completely described in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0066] Referring to Figures 1-16The utility model first embodiment provides a massager 100 can be used for massaging back, head, shoulder, neck, hand, leg, waist, abdomen and foot etc. The massager 100 can be back massager, head massager, shoulder and neck massager, hand massager, waist massager, abdomen massager, leg massager, foot massager, massage chair or massage chair pad etc. The above is only exemplified the use of the utility model massager 100 and is not limited, and the user can use the massager 100 according to the demand, preference.

[0067] The massager 100 includes a housing 10, at least one massage assembly 20 connected with the housing 10, a transmission assembly 30 contained in the housing 10, a drive assembly 40 connected with the transmission assembly 30, and a support assembly 50 connected with the housing 10. The drive assembly 40 can drive the at least one massage assembly 20 to reciprocate along the axial direction of the housing 10 through the transmission assembly 30 to perform massage. The support assembly 50 is used to support the housing 10 and can adjust the height of the massager 100.

[0068] The housing 10 includes an upper shell 11 and a lower shell 12 for accommodating the transmission assembly 30, and the upper shell 11 is arranged on the lower shell 12. The lower shell 12 includes a side wall 121 and a bottom wall 122 connected with each other, the side wall 121 is substantially elliptical, and the shape of the bottom wall 122 and the upper shell 11 matches the side wall 121. The side wall 121 is provided with two oppositely arranged mounting portions 1211, the mounting portion 1211 can be a groove, which is arranged on the outer surface of the side wall 121, and two spaced-apart through holes 1212 are arranged on the bottom wall of each mounting portion 1211. One of the mounting portions 1211 can further be recessed with a groove 1213, and the through hole 1212 is arranged on the bottom wall of the groove 1213.

[0069] The lower shell 12 is further provided with at least one support plate 123 for supporting the transmission assembly 30. In an embodiment, the number of the support plates 123 is two, which are respectively arranged at the two ends of the lower shell 12. The two support plates 123 are provided with through holes 1231, and the opposite surfaces of the two support plates 123 are further provided with protrusions 1232, and the through holes 1231 penetrate the protrusions 1232. The two ends of the lower shell 12 are further provided with through holes 1214, and the center axes of the through holes 1231 and the through holes 1214 are arranged in parallel. Further, the projections of the through holes 1231 and the through holes 1214 along the axial direction of the lower shell 12 can at least partially coincide.

[0070] The lower shell 12 is further provided with two opposite shielding members 124. The shielding member 124 comprises an upper shielding part 1241, a side shielding part 1242, and a connecting part 1243. The upper shielding part 1241 is generally arc-shaped, and the side shielding part 1242 is generally triangular. The side shielding part 1242 is connected with the upper shielding part 1241 and is generally perpendicular to the upper shielding part 1241. In an embodiment, the lower shell 12 comprises two connecting parts 1216 located at both sides of the mounting part 1211, and the number of the connecting part 1243 is two, which are respectively arranged at both ends of the upper shielding part 1241 and connected with the two connecting parts 1216 of the lower shell 12, so as to connect the shielding member 124 with the lower shell 12.

[0071] The massage assembly 20 comprises a massage member 21 and a connecting member 22 connected with each other, and the connecting member 22 is connected with the transmission assembly 30. The massage member 21 can be located outside the shell 10 and used for massaging the user. The connecting member 22 can also be located outside the shell 10 and connected with the part of the transmission assembly 30 extending out of the shell 10. The central axis of the massage assembly 20 is arranged in parallel with the central axes of the shell 10 and the transmission assembly 30. Further, the projections of the massage assembly 20, the shell 10, and the transmission assembly 30 along the axial direction of the lower shell 12 can at least partially coincide, so that the structure of the shell 10, the massage assembly 20, and the transmission assembly 30 is compact, which can reduce the cost. It can be understood that, according to actual needs, the massage assembly 20 and the transmission assembly 30 of different shapes or different functions can be connected, such as connecting the massage cylinder of a hand massager with the transmission assembly 30, connecting the massage pad of a waist massager with the transmission assembly 30, and the like.

[0072] The transmission assembly 30 comprises an engaging member 31, an incomplete gear 32 engaged with the engaging member 31, and at least one connecting rod 33 connected with the engaging member 31. In an embodiment, the number of the connecting rod 33 is two, which are connected with both ends of the engaging member 31 by screws or the like. The incomplete gear 32, the engaging member 31, and the connecting rod 33 are matched to realize the reciprocating motion of the massage assembly 20 under the driving of the driving assembly 40, which has the advantages of simple structure, few parts, convenient assembly and maintenance, and low cost.

[0073] The engaging member 31 is substantially in an elliptical structure. The engaging member 31 is provided with a through hole 310, and further comprises two oppositely arranged engaging portions 311 (which can be a rack or the like) respectively arranged on two oppositely arranged inner walls (not shown) of the through hole 310, and the extending direction of the teeth of the engaging portion 311 is perpendicular to the axial direction of the shell 10. The incomplete gear 32 can be located in the through hole 310, and the teeth 321 of the incomplete gear 32 can alternately engage with the two oppositely arranged engaging portions 311, and the extending direction of the teeth 321 is perpendicular to the axial direction of the shell 10. The two sides of the engaging member 31 are further provided with connecting portions 312, which can be connected with the connecting portion 331 of the connecting rod 33 through connecting members 313 (such as screws or the like), so as to connect the connecting rod 33 with the engaging member 31.

[0074] The lower surface of the incomplete gear 32 is further provided with a connecting portion 322, and the output shaft 421 of the driving member 42 of the driving assembly 40 can pass through the bottom wall of the lower shell 12 and be connected with the connecting portion 322. In this way, when the driving member 42 rotates, it can drive the incomplete gear 32 to rotate, and the incomplete gear 32 alternately engages with the two oppositely arranged engaging portions 311, and the connecting rod 33 drives the massage assembly 20 to reciprocate.

[0075] The connecting rod 33 can pass through the through hole 1231 and the through hole 1214 in sequence and extend out of the lower shell 12. The shaft sleeve 34 can be accommodated in the through hole 1231, and another shaft sleeve 35 can be accommodated in the through hole 1214 to protect the connecting rod 33. The spring 37 can be arranged between the stopper 36 and the shaft sleeve 35 to prevent the spring 37 from passing through the through hole 1231 or the through hole 1214. One end of the spring 37 can be fixedly connected with the stopper 36, or can be connected to the outer surface of the stopper 36, or can be accommodated in the stopper 36. The stopper 36 can be located between the protrusion 1232 and the shaft sleeve 35 and be sleeved on the connecting rod 33. When the connecting rod 33 reciprocates, the stopper 36 also reciprocates. For example, when the connecting rod 33 moves towards a first direction, the stopper 36 can compress the spring 37, and the spring 37 is in a compressed state and plays a buffering role; when the connecting rod 33 moves towards a second direction, the spring 37 in the compressed state gradually recovers to a natural state, which helps the connecting rod 37 to move towards the second direction and plays a labor-saving role, wherein the first direction and the second direction are opposite. The part of the connecting rod 33 extending out of the lower shell 12 can be accommodated in the protective sleeve 38, and the protective sleeve 38 can be partially mounted in the through hole 1214 and connected with the lower shell 12. The protective sleeve 38 protects and supports the connecting rod 33 to ensure that the connecting rod 33 does not shake during reciprocation.

[0076] The driving assembly 40 further comprises a protection shell 41, in which the driving member 42 is accommodated. The protection shell 41 can be connected with the lower surface of the lower shell 12. The driving member 42 can be an electric motor, and an output shaft 421 of the driving member 42 can be connected with the connecting portion 322 of the incomplete gear 32 through a through hole (not shown) of the lower shell 12, for driving the incomplete gear 32 to rotate. In an embodiment, the central axis of the output shaft 421 is arranged in parallel with the central axis of the connecting portion 322, and is arranged perpendicularly to the central axes of the engaging member 31 and the connecting rod 33. Arranging the driving assembly 40 on the lower surface of the lower shell 12 instead of in the lower shell 12 is advantageous for reducing the volume of the shell body 100, and thus for miniaturizing the massager 100.

[0077] The massager 100 further comprises a circuit board 60 accommodated in the protection shell 41 and a switch 70 exposed by the protection shell 41. The switch 70 and the driving member 42 can be electrically connected with the circuit board 60. The switch 70 can control the start and stop of the massager 100, and can also control the massage strength and speed of the massager 100. Of course, a battery (not shown) can also be arranged in the protection shell 41, for supplying power to the massager 100.

[0078] The support assembly 50 comprises at least one support leg 51, at least one support rod 52, at least one first adjusting member 53, at least one second adjusting member 54, at least one support member 55, and at least one locking member 56. In an embodiment, the support assembly 50 comprises two oppositely arranged support legs 51, four support rods 52, four first adjusting members 53, four second adjusting members 54, two support members 55, and one locking member 56. The first adjusting member 53 can be a length adjusting member, for adjusting the length of the support rod 52. The second adjusting member 54 can be an angle adjusting member, for adjusting the included angle between two adjacent support rods 52. The first adjusting member 53 and the second adjusting member 54 can be used to adjust the height of the massager 100.

[0079] The support leg 51 can be used to place the massager 100 on a platform, such as on the ground or on a table top. Two support rods 52 can be arranged on each support leg 51 at intervals. One end of each of the two support rods 52 is connected with the support leg 51, and the other end is connected with the lower shell 12 through the second adjusting member 54, for supporting the shell body 10, the massage assembly 20, the transmission assembly 30, and the driving assembly 40.

[0080] The support rod 52 comprises a first rod body 521 and a second rod body 522 connected together, and the first adjusting member 53 is arranged at the connection between the first rod body 521 and the second rod body 522. The lower end of the first rod body 521 is connected with the support leg 51, and the upper end is telescopically connected with the second rod body 522. The lower end of the second rod body 522 is telescopically connected with the first rod body 521, and the upper end is connected with the second adjusting member 54. The upper end of the first rod body 521 can be sleeved with a protective sleeve 5211 to avoid abrasion when the first rod body 521 is telescopically moved. The second rod body 522 is provided with an opening 5221, and the first rod body 521 can telescopically move in the opening 5221. The upper end of the second rod body 522 can be provided with a connecting hole 5222, and the second adjusting member 54 can be accommodated in the connecting hole 5222. The connecting hole 5222 can be a threaded hole. The connecting hole 5222 and the opening 5221 can be arranged at intervals to avoid interference between the first rod body 521 and the second adjusting member 54.

[0081] The first adjusting member 53 comprises a sleeve 531 sleeved on the first rod body 521, a rotating cylinder 532 rotatably sleeved on the sleeve 531 and the second rod body 522, and a connecting sleeve 533. When the rotating cylinder 532 is rotated downward, the rotating cylinder 532 can move downward to clamp the sleeve 531, and the sleeve 531 further clamps the first rod body 521, so as to lock the first rod body 521 and the second rod body 522, and the relative sliding between the first rod body 521 and the second rod body 522 does not occur. When the rotating cylinder 532 is reversely rotated, the rotating cylinder 532 can move upward to release the sleeve 531, and the sleeve 531 releases the first rod body 521, so that the first rod body 521 can be telescopically moved relative to the second rod body 522. When the first rod body 521 / second rod body 522 is moved to a proper position, the rotating cylinder 532 is reversely rotated again to lock the first rod body 521 and the second rod body 522. The connecting sleeve 533 is sleeved outside the rotating cylinder 532 and the sleeve 531, and has an aesthetic effect. The connecting sleeve 533 can be rotated to rotate the rotating cylinder 532.

[0082] The sleeve 531 is substantially in a cylindrical structure, has a through hole 5310, includes a first end 5311 (which can be an upper end) and a second end 5312 (which can be a lower end), and gradually increases in size (e.g. outer diameter) from the first end 5311 to the second end 5312. When the sleeve 531 is sleeved on the first rod body 521, the first end 5311 is closer to the housing 10 than the second end 5312. The second end 5312 of the sleeve 531 is annularly provided with a protrusion 5313 to prevent the rotating cylinder 532 from being separated from the sleeve 531 when the rotating cylinder 532 is rotated downward. The second end 5312 of the sleeve 531 is annularly provided with a groove 5314 to increase the elasticity of the second end 5312. The sleeve 531 is axially provided with at least one elastic groove 5315, at least one elastic groove 5316, and a through groove 5317. In an embodiment, the elastic grooves 5315, the elastic grooves 5316, and the through groove 5317 are spaced apart. The elastic grooves 5315 can pass through the second end 5312 of the sleeve 531, the elastic grooves 5316 can pass through the first end 5311 of the sleeve 531, and the through groove 5317 can pass through both ends of the sleeve 531. The through groove 5317 can facilitate the sleeve 531 to be sleeved on the first rod body 521, and the elastic grooves 5315, the elastic grooves 5316, and the through groove 5317 can make the sleeve 531 elastic. Rotating the rotating cylinder 532 and the connecting sleeve 533 can move the rotating cylinder 532 and the connecting sleeve 533 downward to clamp the sleeve 531, and the sleeve 531 can clamp the first rod body 521 when being pressed, the rotating cylinder 532 can clamp the first rod body 521 and the second rod body 522, and thus the first rod body 521 and the second rod body 522 are locked. Rotating the rotating cylinder 532 and the connecting sleeve 533 in the opposite direction can move the rotating cylinder 532 and the connecting sleeve 533 upward to release the sleeve 531, and the rotating cylinder 532 can release the first rod body 521, and thus the first rod body 521 and the second rod body 522 are unlocked.

[0083] The second adjusting member 54 includes an adjusting portion 541, a first connecting portion 542 connected with the adjusting portion 541 and at least partially accommodated in the connecting hole 5222, and a fixing portion 543 which can prevent the adjusting portion 541 from being separated from the lower shell 12. The upper shielding portion 1241 and the side shielding portion 1242 can be used to shield the adjusting portion 541.

[0084] The adjusting part 541 is substantially cylindrical, and has a through hole 5410. The outer surface of the adjusting part 541 is provided with a tooth part 5411 (which can be an incomplete gear). The tooth part 5411 is substantially flush with the surface 5412 of the adjusting part 541 close to the lower shell 12. The tooth parts 5411 of two adjacent second adjusting members 54 can be engaged with each other. When the support rod 52 is rotated, the adjusting part 541 is rotated together (or when the adjusting part 541 is rotated, the support rod 52 is rotated together). The two adjacent tooth parts 5411 are also rotated and engaged with each other, so as to adjust the angle between the support rods 52, and further adjust the height of the massager 100.

[0085] The first outer flange 5431 of the fixing part 543 can be arranged outside the through hole 5410 and abut against the hole wall of the through hole 5410. The second intermediate section 5432 of the fixing part 543 can be accommodated in the through hole 5410. The size of the end 5433 can be smaller than that of the second intermediate section 5432. The end 5433 can pass through the through hole 1212 of the lower shell 12 and extend into the lower shell 12. A nut (not shown) can be sleeved on the end 5433 to prevent the second adjusting member 54 from being separated from the lower shell 12.

[0086] The support member 55 includes a second connecting part 551 mounted on the mounting part 1211 of the lower shell 12, and two spaced support parts 552 arranged on the second connecting part 551. The second connecting part 551 is substantially strip-shaped and has two spaced through holes 5510. The support part 552 is substantially cylindrical and has a through hole 5520. The through hole 5510 is in communication with the through hole 1212 of the lower shell 12 and the through hole 5520 of the support part 552. The adjusting part 541 is rotatably sleeved on the support part 552. The first outer flange 5431 of the fixing part 543 can be arranged outside the through hole 5410. The second intermediate section 5432 of the fixing part 543 can be accommodated in the through hole 5410 of the adjusting part 541 and the through hole 5520 of the support part 552. The end 5433 of the fixing part 543 can pass through the through hole 5510 of the second connecting part 551 and the through hole 1212 of the lower shell 12 and extend into the lower shell 12. A nut (not shown) can be sleeved on the end 5433 to prevent the second adjusting member 54 from being separated from the lower shell 12.

[0087] In the four support parts 552, the lower end of one support part 552' has at least one opening 5522' in communication with the through hole 5520'. The region of the second connecting part 551 corresponding to the opening 5522' also has at least one opening 5512' in communication with the opening 5522'. The opening 5512' is substantially T-shaped. In an embodiment, the number of the openings 5522' and 5512' can be multiple, specifically two, three, or four, etc. The openings 5522' and 5512' can be arranged around the through hole 5510.

[0088] The locking member 56 comprises a mounting portion 561, at least one elastic sheet 562 protruding from the mounting portion 561, and a clamping block 563 protruding from the elastic sheet 562. The mounting portion 561 is provided with a through hole 5610, and can be accommodated in the groove 1213 of the lower shell 12, and can be in contact with or separated from the lower surface of the second connecting portion 551'. The elastic sheet 562 can pass through the T-shaped opening 5512' and extend into the through hole 5520' of the supporting portion 552', and the clamping block 563 can extend out of the opening 5522' at this time. The free end of the elastic sheet 562 can be provided with an inclined surface 5621 inclined toward the center of the mounting portion 561.

[0089] Among the four adjusting portions 541, one adjusting portion 541' is further provided with at least one clamping groove 5413'. In an embodiment, the adjusting portion 541' is provided with a plurality of clamping grooves 5413' arranged at intervals. The clamping groove 5413' can be provided on the inner wall 5414' of the through hole 5410', and can further penetrate part of the surface 5412' to facilitate the clamping block 563 to be clamped into the clamping groove 5413' to fix the angle between the supporting rods 52.

[0090] Among the four fixing portions 543, the first and second outer flanges 5431' of one fixing portion 543' can further extend downward to form a stop end 5437', and when the first and second outer flanges 5431' are pressed, the stop end 5437' can be stopped on the hole wall of the through hole 5410' of the adjusting portion 541'. The second intermediate section 5432' of the fixing portion 543' is smaller in size than the second intermediate sections 5432 of the other fixing portions 543, so that the outer side of the second intermediate section 5432' is sleeved with a bearing cylinder 5434', and a gap 5435' is formed between the bearing cylinder 5434' and the second intermediate section 5432', and the elastic sheet 562 can extend into the gap 5435'. The inner wall of the bearing cylinder 5434' can be further provided with a step 5436'.

[0091] A spring 57 can be arranged in the supporting part 552', between the periphery of the through hole 5510' and the second intermediate section 5432'. The end 5433' of the fixing part 543' can be sleeved on the spring 57 and protrude out of the through hole 1212 of the lower shell 12. When the clamping block 563 is clamped in the clamping groove 5413', the clamping block 563 limits the rotation of the adjusting part 541', and at this time, it is difficult to adjust the angle between the supporting rods 52; the first second outer flange 5431' is pressed, the abutting cylinder 5434' of the fixing part 543' moves in the direction close to the lower shell 12 under the guidance of the inclined surface 5621, the spring piece 562 / inclined surface 5621 is accommodated in the gap 5435' of the abutting cylinder 5434', the spring piece 562 is deformed under the force, and drives the clamping block 563 to be separated from the clamping groove 5413', so as to loosen the adjusting part 541', at this time, the angle between the supporting rods 52 can be adjusted, the spring piece 562 / inclined surface 5621 / clamping block 563 abut outwardly on the inner wall or the step 5436' of the abutting cylinder 5434', so as to keep the position of the abutting cylinder 5434', so as to facilitate the adjustment of the angle between the supporting rods 52, and the spring 57 can be in a compressed state, and during the movement of the abutting cylinder 5434', the spring 57 plays a buffering role; the first second outer flange 5431' is pressed again, the spring 57 in the compressed state drives the abutting cylinder 5434' to move away from the lower shell 12, the abutting cylinder 5434' is separated from the spring piece 562, the spring piece 562 returns to the natural state, the clamping block 563 is clamped in the clamping groove 5413', so as to fix the adjusting part 541', and at this time, it is difficult to adjust the angle between the supporting rods 52.

[0092] The working principle of the utility model is as follows:

[0093] The massage device 100 is started through the switch 70, the driving piece 42 drives the incomplete gear 32 to rotate, the incomplete gear 32 is alternately engaged with the two opposite engagement parts 311, the connecting rod 33 drives the massage assembly 20 to reciprocate, and massage is carried out.

[0094] When the height of the massage device 100 needs to be adjusted, the connecting sleeve 533 and the rotating cylinder 532 are rotated, the connecting sleeve 533 and the rotating cylinder 532 move away from the first rod body 521, the rotating cylinder 532 and the sleeve 531 loosen the first rod body 521, the first rod body 521 can be telescopically moved relative to the second rod body 522, after the length of the supporting rod 52 is adjusted, the connecting sleeve 533 and the rotating cylinder 532 are rotated, the connecting sleeve 533 and the rotating cylinder 532 move away from the second rod body 522, the rotating cylinder 532 and the sleeve 531 clamp the first rod body 521, and the first rod body 521 and the second rod body 522 are locked.

[0095] When the height of the massager 100 needs to be adjusted, the first second outer flange 5431' can be pressed to move the abutting cylinder 5434' along the direction close to the lower shell 12 under the guidance of the inclined surface 5621, the elastic sheet 562 / inclined surface 5621 is accommodated in the gap 5435' of the abutting cylinder 5434', the elastic sheet 562 is deformed under force to drive the clamping block 563 to disengage from the clamping groove 5413', so as to release the adjusting part 541', at this time, the angle between the support rods 52 can be adjusted, the elastic sheet 562 / inclined surface 5621 / clamping block 563 abut outward on the inner wall or step 5436' of the abutting cylinder 5434', which can keep the position of the abutting cylinder 5434' to facilitate the adjustment of the angle between the support rods 52, and the spring 57 can be in a compressed state, during the movement of the abutting cylinder 5434', the spring 57 plays a buffering role; the first second outer flange 5431' is pressed again, the spring 57 in the compressed state can drive the abutting cylinder 5434' to move away from the lower shell 12, the abutting cylinder 5434' is separated from the elastic sheet 562, the elastic sheet 562 returns to the natural state, the clamping block 563 is clamped in the clamping groove 5413' to fix the adjusting part 541', at this time, it is difficult to adjust the angle between the support rods 52.

[0096] The above only describes the preferred embodiments of the utility model, and does not limit the patent range of the utility model, and any equivalent structural transformation made under the utility model concept of the utility model, or direct / indirect application in other related technical fields is included in the patent protection range of the utility model.

Claims

1. A massager characterized by comprising: The massage device comprises: at least one massage component (20); a transmission component (30) comprising: an engaging member (31) connected to the at least one massage component (20); and an incomplete gear (32) engaged with the engaging member (31); and a driving component (40) connected to the incomplete gear (32), the driving component (40) driving the at least one massage component (20) to reciprocate through the incomplete gear (32) and the engaging member (31). The engaging member (31) comprises:

2. The massager of claim 1, wherein two oppositely arranged engaging portions (311), the incomplete gear (32) being located between the two engaging portions (311) and alternately engaged with the two engaging portions (311).

3. The massage device according to claim 1, wherein the massage device (100) further comprises: a housing (10) for accommodating the transmission component (30), the housing (10) being provided with at least one first through hole (1214); and the transmission component (30) further comprises: at least one connecting rod (33) connected to the engaging member (31), the connecting rod (33) penetrating through the first through hole (1214) and being connected to the massage component (20). The transmission component (30) further comprises:

4. The massager of claim 3, wherein at least one stopper (36) fixedly sleeved on the connecting rod (33); and at least one spring (37) sleeved on the connecting rod (33) and located between the stopper (36) and a hole wall of the first through hole (1214). The massage device (100) further comprises a support component (50), the support component (50) comprising:

5. The massaging device according to claim 1, wherein at least one support rod (52) comprising a first rod body (521) and a second rod body (522), the first rod body (521) being telescopically connected to the second rod body (522); and at least one first adjusting member (53) comprising a sleeve (531) sleeved on the first rod body (521) and a rotating cylinder (532) rotatably sleeved on the sleeve (531) and the second rod body (522), the sleeve (531) being elastic, the size of the sleeve (531) gradually increasing away from the rotating cylinder (532). The massage device (100) further comprises the housing (10) and the support component (50), the support component (50) comprising:

6. The massaging device according to claim 1, wherein at least two support rods (52) for supporting the housing (10); and at least two second adjusting members (54), each second adjusting member (54) comprising an adjusting portion (541) rotatably connected to the housing (10) and a first connecting portion (542) connecting the adjusting portion (541) and the support rod (52), the adjusting portion (541) being provided with tooth portions (5411), adjacent tooth portions (5411) being engaged to adjust the angle between the support rods (52). The second adjusting member (54) further comprises a fixing portion (543), the fixing portion (543) comprising:

7. The massager of claim 6, wherein a first outer flange (5431) arranged outside the adjusting portion (541); and a second outer flange (5432) arranged outside the first connecting portion (542). a first intermediate section (5432) connected with the first outer flange (5431) and accommodated in a second through hole (5410) of the adjusting part (541); and a terminal end (5433) connected with the first intermediate section (5432) and the shell (10).

8. The massager of claim 7, wherein, The support assembly (50) further comprises at least one support member (55), which comprises: a second connecting part (551) connected with the shell (10) and provided with two third through holes (5510); and two support parts (552) provided on the second connecting part (551), each of which is provided with a fourth through hole (5520) in communication with the third through hole (5510), the adjusting part (541) is rotatably sleeved on the support part (552), the first intermediate section (5432) is accommodated in the second through hole (5410) and the fourth through hole (5520), and the terminal end (5433) is connected with the shell (10) through the third through hole (5510) and the fourth through hole (5520).

9. The massager of claim 8, wherein one of the at least two support parts (552) is provided with at least one first opening (5522'), and the second connecting part (551) is provided with at least one second opening (5512') in communication with the first opening (5522'); the support assembly (50) further comprises a locking member (56), which comprises a mounting part (561), at least one elastic sheet (562) protruding from the mounting part (561), and a clamping block (563) protruding from the elastic sheet (562), the mounting part (561) is provided with a fifth through hole (5610), the mounting part (561) is mounted between the shell (10) and the second connecting part (551), and the terminal end (5433) is movably connected with the shell (10) through the third through hole (5510), the fourth through hole (5520), and the fifth through hole (5610); one of the at least two adjusting parts (541) is provided with at least one clamping groove (5413'), the elastic sheet (562) passes through the second opening (5512'), the clamping block (563) protrudes out of the first opening (5522'), and is clamped in the clamping groove (5413').

10. The massager of claim 9, wherein one of the at least two fixing parts (543) further comprises a resisting cylinder (5434') sleeved outside the second intermediate section (5432'), a gap (5435') is formed between the second intermediate section (5432') and the resisting cylinder (5434'), and When the second outer flange (5431') is pressed, the abutting cylinder (5434') moves in the direction of approaching the shell (10), the elastic sheet (562) extends into the gap (5435'), the abutting cylinder (5434') abuts against the elastic sheet (562), the elastic sheet (562) is deformed to drive the clamping block (563) to disengage from the clamping groove (5413'), so as to release the adjusting part; When the abutting cylinder (5434') moves in the direction of moving away from the shell (10), the abutting cylinder (5434') is separated from the elastic sheet (562), the elastic sheet (562) is deformed to drive the clamping block (563) to engage in the clamping groove (5413'), so as to fix the adjusting part.