Eye massage instrument
By introducing a mid-frame to support the silicone inner shell in the eye massager, the problem of deformation and collapse of the silicone inner shell was solved, improving the massage effect and production efficiency, while reducing costs and maintaining aesthetics.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-26
- Publication Date
- 2026-03-31
AI Technical Summary
In existing eye massagers, the silicone inner shell is prone to deformation and collapse under stress, which affects the effective contact between the massage head and the face, resulting in poor massage effect.
The middle frame supports the silicone inner shell, and the middle frame is close to the inner wall of the silicone inner shell to prevent the silicone inner shell from deforming and collapsing under stress. The edges of the silicone inner shell, face cover and middle frame are fixed by the flange and snap-fit structure to ensure effective contact between the massage head and the human face.
It improves the massage effect of the massage head, increases production efficiency, reduces production costs, and maintains the aesthetics of the silicone inner shell.
Smart Images

Figure CN224056276U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of massager technology, and in particular to an eye massager. Background Technology
[0002] In daily life and work, prolonged use of the eyes can cause eye fatigue. Eye massagers can effectively massage and relax the eyes to relieve eye fatigue.
[0003] Eye massagers generally consist of a housing and an eye massage head located on the outer surface of the housing (the side closest to the eyes). The eye massage head massages the area around the eyes (the eye socket area). The housing typically includes a front cover and an inner shell positioned opposite each other. The inner shell is located on the side of the front cover closest to the eyes and is fixedly connected to the front cover. To improve wearing and massage comfort and facilitate assembly, some eye massagers currently use silicone for the inner shell, and the eye massage head is integrated with the inner shell, meaning it is also made of silicone, giving it a soft and tactile feel.
[0004] However, in the above structure, since the inner shell is made of soft silicone, it is prone to deformation and collapse when the human face comes into contact with the eye massage head, thus preventing the eye massage head from making effective contact with the human face and affecting the massage effect of the eye massage head. Utility Model Content
[0005] The purpose of this invention is to provide an eye massager that supports the silicone inner shell with a middle frame, thereby preventing the silicone inner shell from deforming and collapsing under stress and ensuring the massage effect of the eye massage head.
[0006] This utility model provides an eye massager, including a housing. The housing includes a face cover, a middle frame, and a silicone inner shell. The silicone inner shell is located on the side of the face cover facing the human eye. The middle frame is located between the face cover and the silicone inner shell, and the middle frame abuts against the inner wall of the silicone inner shell to support the silicone inner shell. The silicone inner shell is provided with a plurality of eye massage heads, which protrude from the outer wall of the silicone inner shell facing the human eye. The eye massage heads and the silicone inner shell are an integral structure.
[0007] The inner silicone shell has a flange at its edge, which is located on the side of the inner silicone shell closer to the faceplate. The edge of the middle frame is sandwiched between the flange and the inner silicone shell. A groove is formed between the flange and the inner wall of the inner silicone shell, and the edge of the middle frame is located in the groove. A support portion is provided at the edge of the middle frame, and the inner wall of the groove fits against the support portion.
[0008] The edge of the cover is provided with a first snap-fit part, and the edge of the middle frame is provided with a second snap-fit part. The second snap-fit part passes through the flange and engages with the first snap-fit part.
[0009] In one possible implementation, the support portion is a long strip structure that extends continuously from the left end to the right end of the middle frame along the left-right direction of the housing.
[0010] In one possible implementation, the support portion has a support surface, and the inner wall of the slot is in contact with the support surface; the support surface is a continuously extending flat structure along the left-right direction of the housing.
[0011] In one possible implementation, the support portion has a plurality of weight-reducing grooves on the side near the silicone inner shell, and the plurality of weight-reducing grooves are spaced apart along the left-right direction of the shell.
[0012] In one possible implementation, the upper and lower edges of the silicone inner shell are respectively provided with the flange, the upper edge of the middle frame is sandwiched between the upper flange and the silicone inner shell, and the lower edge of the middle frame is sandwiched between the lower flange and the silicone inner shell; the support portion is provided at the upper and lower edges of the middle frame.
[0013] The first snap-fit portion is disposed at the edge position of the upper and lower sides of the cover, and the upper and lower edges of the cover are respectively provided with a plurality of first snap-fit portions spaced apart;
[0014] The second snap-fit portion is located at the upper and lower edges of the middle frame, and the upper and lower edges of the middle frame are each provided with a plurality of second snap-fit portions spaced apart.
[0015] In one possible implementation, a first limiting part is provided at the edge of the cover, and a second limiting part is provided at the edge of the middle frame; the second limiting part passes through the flange and abuts against the first limiting part vertically.
[0016] In one possible implementation, there is an engagement gap between the edge of the faceplate and the edge of the middle frame, the engagement gap corresponding to the second limiting portion; the flange is provided with a locking protrusion, the locking protrusion being vertically corresponding to the second limiting portion, the locking protrusion being engaged in the engagement gap, and the locking protrusion being sandwiched between the edge of the faceplate and the second limiting portion.
[0017] In one possible implementation, the length of the latching protrusion is greater than the length of the second limiting portion along the left-right direction of the housing.
[0018] In one possible implementation, the first limiting part is disposed at the edge position of the upper and lower sides of the cover, and the upper and lower edges of the cover are respectively provided with a plurality of first limiting parts spaced apart.
[0019] The second limiting part is disposed at the upper and lower edges of the middle frame, and the upper and lower edges of the middle frame are respectively provided with a plurality of second limiting parts spaced apart.
[0020] In one possible implementation, the flange is provided with a first through hole through which the second snap-fit portion passes and a second through hole through which the second limiting portion passes.
[0021] The eye massager provided by this utility model integrates the eye massage head and the silicone inner shell into one structure, eliminating the need for assembly during production, thereby improving production efficiency and saving production costs. Moreover, since the silicone inner shell is made of flexible silicone, and the eye massage head is integrally molded with the silicone inner shell, the eye massage head is also made of silicone, thus providing better massage comfort.
[0022] Meanwhile, by setting a middle frame, which is a rigid structure, and abutting against the inner wall of the silicone inner shell, the soft silicone inner shell is supported, preventing the human face from deforming and collapsing after contact with the eye massage head and the silicone inner shell from being stressed. This ensures that the eye massage head can always maintain effective contact with the human face, thereby guaranteeing the massage effect of the eye massage head.
[0023] Meanwhile, by providing a flange at the edge of the silicone inner shell, the edge of the middle frame is sandwiched between the flange and the silicone inner shell. The second snap-fit part on the middle frame passes through the flange and engages with the first snap-fit part, meaning the flange can be hooked onto the second snap-fit part. This allows the edges of the silicone inner shell, middle frame, and face cover to be fixed together by snap-fit, facilitating assembly. Moreover, since the flange is located on the inside of the silicone inner shell, it does not affect the aesthetics of the silicone inner shell. Additionally, by providing a support part at the edge of the middle frame, the inner wall of the groove fits against the support part, allowing the support part to support the edge of the silicone inner shell and prevent the edge of the silicone inner shell from collapsing during use. Attached Figure Description
[0024] Figure 1 This is a schematic diagram of the shell structure in an embodiment of the present invention.
[0025] Figure 2 for Figure 1 A schematic diagram of the explosion structure.
[0026] Figure 3 for Figure 2 A structural diagram in another direction.
[0027] Figure 4 This is a schematic diagram of the assembly structure of the silicone inner shell and the middle frame in an embodiment of this utility model.
[0028] Figure 5 for Figure 4 A schematic diagram of the explosion structure.
[0029] Figure 6 This is a schematic diagram of the assembly structure of the faceplate and the middle frame in an embodiment of this utility model.
[0030] Figure 7 This is a schematic diagram of the structure of the silicone inner shell in an embodiment of this utility model.
[0031] Figure 8 This is a schematic diagram of the structure of the middle frame in an embodiment of this utility model.
[0032] Figure 9 for Figure 8 A structural diagram in another direction.
[0033] Figure 10 This is a schematic diagram of the structure of the face cover in an embodiment of the present invention. Detailed Implementation
[0034] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit the scope of this utility model.
[0035] The terms “first,” “second,” “third,” “fourth,” etc. (if present) in the specification and claims of this utility model are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence.
[0036] The directional terms such as "up," "down," "left," "right," "front," "back," "top," and "bottom" (if present) used in the specification and claims of this utility model are defined according to the position of the structures in the drawings and the relative positions of the structures, and are only for the purpose of clarity and convenience in expressing the technical solution. It should be understood that the use of directional terms should not limit the scope of protection claimed by this utility model.
[0037] like Figures 1 to 10As shown, the eye massager provided in this embodiment of the present invention includes a generally arched housing 1. The housing 1 includes a face cover 11, a middle frame 12, and a silicone inner shell 13. The face cover 11, the middle frame 12, and the silicone inner shell 13 are all generally arched. The silicone inner shell 13 is arranged opposite to the face cover 11, with the silicone inner shell 13 located on the side of the face cover 11 facing the human eye. The middle frame 12 is located between the face cover 11 and the silicone inner shell 13. The middle frame 12 abuts against the inner wall of the silicone inner shell 13 (the inner wall of the silicone inner shell 13 is the side wall of the silicone inner shell 13 closest to the face cover 11) to support the silicone inner shell 13 (that is, the middle frame 12 and the inner wall of the silicone inner shell 13 are in contact).
[0038] The silicone inner shell 13 is provided with multiple eye massage heads 14, which are spaced apart. The eye massage heads 14 are used to massage the human eye area (specifically the eye socket area). The eye massage heads 14 protrude from the outer wall of the silicone inner shell 13 on the side facing the human eye, and the eye massage heads 14 and the silicone inner shell 13 are an integral structure.
[0039] The edges of the silicone inner shell 13, the middle frame 12, and the face cover 11 are fixed together by snap-fit; specifically, the upper edge of the silicone inner shell 13, the upper edge of the middle frame 12, and the upper edge of the face cover 11 are fixed together by snap-fit, and the lower edge of the silicone inner shell 13, the lower edge of the middle frame 12, and the lower edge of the face cover 11 are fixed together by snap-fit.
[0040] A flange 131 is provided at the edge of the silicone inner shell 13. The flange 131 is an integral structure with the silicone inner shell 13. The flange 131 is located on the side of the silicone inner shell 13 near the faceplate 11, that is, the flange 131 is formed by folding the edge of the silicone inner shell 13 inward. The edge of the middle frame 12 is sandwiched between the flange 131 and the silicone inner shell 13. The flange 131 and the inner sidewall of the silicone inner shell 13 are spaced apart, forming a groove 130 between the flange 131 and the inner sidewall of the silicone inner shell 13. The edge of the middle frame 12 is located in the groove 130. A support part 125 is provided at the edge of the middle frame 12. The support part 125 is an integral structure with the middle frame 12. The support part 125 is located in the groove 130. The inner wall of the groove 130 fits against the support part 125. The support part 125 can support the edge of the silicone inner shell 13.
[0041] A first snap-fit portion 111 is provided on the edge of the face cover 11. The first snap-fit portion 111 is located on the side of the face cover 11 near the silicone inner shell 13, and protrudes from the face cover 11 toward the side near the silicone inner shell 13. The first snap-fit portion 111 and the face cover 11 are integrally formed. A second snap-fit portion 121 is provided on the edge of the middle frame 12. The second snap-fit portion 121 is located on the middle frame 12 near the face cover 11, and protrudes from the middle frame 12 toward the side near the face cover 11. The second snap-fit portion 121 and the middle frame 12 are integrally formed. After the second snap-fit portion 121 passes through the flange 131, it engages with the first snap-fit portion 111, thereby fixing the edges of the silicone inner shell 13, the middle frame 12, and the face cover 11 by snap-fit. The flange 131 is provided with a first through hole 132 for the second snap-fit part 121 to pass through, that is, the second snap-fit part 121 passes through the first through hole 132 on the flange 131 and then engages with the first snap-fit part 111.
[0042] The eye massager provided in this embodiment of the utility model integrates the eye massage head 14 and the silicone inner shell 13 into a single structure. During production, there is no need to assemble the eye massage head 14 and the silicone inner shell 13 separately, thereby improving production efficiency and saving production costs. Moreover, since the silicone inner shell 13 is made of flexible silicone, and the eye massage head 14 and the silicone inner shell 13 are integrally molded, the eye massage head 14 is also made of silicone, thus providing better massage comfort.
[0043] Meanwhile, by setting a middle frame 12, which is a rigid structure, and having it abutting against the inner wall of the silicone inner shell 13, the soft silicone inner shell 13 is supported. This prevents the silicone inner shell 13 from deforming and collapsing after the human face comes into contact with the eye massage head 14 and is subjected to force, thus ensuring the massage effect of the eye massage head 14. Specifically, the middle frame 12 and the face cover 11 can be made of rigid materials such as plastic.
[0044] Meanwhile, by providing a flange 131 at the edge of the silicone inner shell 13, the edge of the middle frame 12 is sandwiched between the flange 131 and the silicone inner shell 13. The second snap-fit part 121 on the middle frame 12 passes through the flange 131 and engages with the first snap-fit part 111, that is, the flange 131 can be hooked onto the second snap-fit part 121, thereby fixing the edges of the silicone inner shell 13, the middle frame 12, and the face cover 11 by snap-fit, which is convenient for assembly; moreover, since the flange 131 is located on the inner side of the silicone inner shell 13, it does not affect the aesthetics of the silicone inner shell 13. At the same time, by providing a support part 125 at the edge of the middle frame 12, the inner wall of the groove 130 fits against the support part 125, so that the support part 125 can support the edge of the silicone inner shell 13, preventing the edge of the silicone inner shell 13 from collapsing during use.
[0045] like Figure 3and Figure 5 As shown, in one embodiment, the inner wall of the silicone inner shell 13 is provided with a plurality of grooves 136, each groove 136 corresponding to a plurality of eye massage heads 14. Each groove 136 is provided with a vibration motor (not shown in the figure), which drives the eye massage head to vibrate, thereby massaging the area around the eyes (eye socket area). The working principle of the vibration motor can be found in the prior art and will not be elaborated here.
[0046] like Figures 2 to 10 As shown, in one embodiment, the upper and lower edges of the silicone inner shell 13 are each provided with a flange 131. The upper flange 131 is formed by folding the upper edge of the silicone inner shell 13 inward and downward, and the lower flange 131 is formed by folding the lower edge of the silicone inner shell 13 inward and upward. The upper edge of the middle frame 12 is sandwiched between the upper flange 131 and the silicone inner shell 13, and the lower edge of the middle frame 12 is sandwiched between the lower flange 131 and the silicone inner shell 13.
[0047] Grooves 130 are formed between the upper flange 131 and the inner wall of the silicone inner shell 13, and between the lower flange 131 and the inner wall of the silicone inner shell 13. Support portions 125 are provided at the upper and lower edges of the middle frame 12. The upper support portion 125 is located in the upper groove 130 and fits against the inner wall of the upper groove 130 to support the upper edge of the silicone inner shell 13; the lower support portion 125 is located in the lower groove 130 and fits against the inner wall of the lower groove 130 to support the lower edge of the silicone inner shell 13.
[0048] The first snap-fit portion 111 is provided at the upper and lower edges of the cover 11, and the upper and lower edges of the cover 11 are each provided with a plurality of first snap-fit portions 111 spaced apart (that is, the upper edge of the cover 11 is provided with a plurality of first snap-fit portions 111 spaced apart in the left-right direction X, and the lower edge of the cover 11 is also provided with a plurality of first snap-fit portions 111 spaced apart in the left-right direction X).
[0049] The second latching part 121 is provided at the upper and lower edges of the middle frame 12, and the upper and lower edges of the middle frame 12 are each provided with a plurality of second latching parts 121 spaced apart (that is, the upper edge of the middle frame 12 is provided with a plurality of second latching parts 121 spaced apart in the left and right direction X, and the lower edge of the middle frame 12 is also provided with a plurality of second latching parts 121 spaced apart in the left and right direction X).
[0050] In this configuration, multiple first snap-fit portions 111 on the upper edge of the face cover 11 are snapped into multiple second snap-fit portions 121 on the upper edge of the middle frame 12, and multiple first snap-fit portions 111 on the lower edge of the face cover 11 are snapped into multiple second snap-fit portions 121 on the lower edge of the middle frame 12, thereby fixing the upper and lower edges of the silicone inner shell 13, the middle frame 12 and the face cover 11 by snap-fit, thereby improving the stability of the connection.
[0051] like Figures 2 to 9 As shown, in one embodiment, along the left-right direction X of the housing 1, each support portion 125 is a long strip structure that extends continuously from the left end of the middle frame 12 to its right end (i.e., there are no gaps or other structures on the support portion 125 that would break it apart). This arrangement ensures that the support portion 125 provides good support for all parts of the edge of the silicone inner shell 13, preventing local collapse of the edge of the silicone inner shell 13 (if the support portion 125 is not a continuous structure, for example, if the support portion 125 is composed of multiple spaced support blocks, there will be gaps between adjacent support blocks, and the edge of the silicone inner shell 13 cannot be effectively supported at these gaps, making the silicone inner shell 13 prone to collapse at these gaps).
[0052] like Figures 2 to 9 As shown, in one embodiment, the support part 125 is provided with a support surface 1251, and the inner wall of the groove 130 is in contact with the support surface 1251. Along the left-right direction X of the shell 1, the support surface 1251 is a continuously extending flat structure (that is, there are no gaps, protrusions or other structures on the support surface 1251 that would make the support surface 1251 uneven), so that the support surface 1251 can provide good support for all parts of the edge of the silicone inner shell 13.
[0053] like Figure 2 , Figure 8 and Figure 9 As shown, in one embodiment, the support portion 125 has a plurality of weight-reducing grooves 1252 on the side near the silicone inner shell 13, and the plurality of weight-reducing grooves 1252 are spaced apart along the left-right direction X of the shell 1; the weight-reducing grooves 1252 are located between the support surface 1251 and the middle frame 12. By setting the weight-reducing grooves 1252, it is beneficial to reduce the weight of the middle frame 12, thereby facilitating the lightweight design of the shell 1.
[0054] like Figures 2 to 10As shown, in one embodiment, a first limiting portion 112 is provided at the edge of the face cover 11. The first limiting portion 112 is located on the side of the face cover 11 near the silicone inner shell 13, and protrudes from the face cover 11 toward the side near the silicone inner shell 13. The first limiting portion 112 and the face cover 11 are integrally formed. A second limiting portion 122 is provided at the edge of the middle frame 12. The second limiting portion 122 is located on the side of the middle frame 12 near the face cover 11, and protrudes from the middle frame 12 toward the side near the face cover 11. The second limiting portion 122 and the middle frame 12 are integrally formed. The second limiting portion 122 passes through the flange 131 and abuts against the first limiting portion 112 vertically. The flange 131 is provided with a second through hole 133 for the second limiting portion 122 to pass through, that is, the second limiting portion 122 passes through the second through hole 133 on the flange 131 and abuts against the first limiting portion 112 vertically.
[0055] Specifically, the first limiting part 112 and the second limiting part 122 can guide the middle frame 12 and the cover 11 during assembly, and also limit the vertical movement of the middle frame 12 and the cover 11 (i.e., prevent the middle frame 12 and the cover 11 from moving relative to each other vertically). Furthermore, they increase the support points of the flange 131 (i.e., the flange 131 can be hooked onto the second limiting part 122), improving the connection stability of the silicone inner shell 13, the middle frame 12, and the cover 11. The differences between the first limiting part 112 and the first snap-fit part 111, and between the second limiting part 122 and the second snap-fit part 121, are as follows: the first snap-fit part 111 and the second snap-fit part 121 have snap-fit structures (such as slots, hooks, etc.) that allow them to snap together front and back; while the first limiting part 112 and the second limiting part 122 do not have snap-fit structures, and they can only abut vertically, failing to provide front and back snap-fit limiting.
[0056] In this embodiment, the first limiting part 112 is disposed at the upper and lower edges of the cover 11, and the upper and lower edges of the cover 11 are each provided with a plurality of spaced first limiting parts 112 (that is, the upper edge of the cover 11 is provided with a plurality of spaced first limiting parts 112 along the left-right direction X, and the lower edge of the cover 11 is also provided with a plurality of spaced first limiting parts 112 along the left-right direction X); each first limiting part 112 is located between adjacent first snap-fit parts 111. The second limiting part 122 is disposed at the upper and lower edges of the middle frame 12, and the upper and lower edges of the middle frame 12 are each provided with a plurality of spaced second limiting parts 122 (that is, the upper edge of the middle frame 12 is provided with a plurality of spaced second limiting parts 122 along the left-right direction X, and the lower edge of the middle frame 12 is also provided with a plurality of spaced second limiting parts 122 along the left-right direction X); each second limiting part 122 is located between adjacent second snap-fit parts 121.
[0057] In this configuration, multiple first limiting portions 112 on the upper edge of the cover 11 respectively abut against multiple second limiting portions 122 on the upper edge of the middle frame 12, and multiple first limiting portions 112 on the lower edge of the cover 11 respectively abut against multiple second limiting portions 122 on the lower edge of the middle frame 12, thereby improving the stability of the connection.
[0058] like Figures 2 to 10 As shown, in one embodiment, there is a locking gap 110 between the edge of the face cover 11 and the edge of the middle frame 12. The locking gap 110 corresponds to the second limiting part 122 (that is, the locking gap 110 is located between the edge of the face cover 11 and the second limiting part 122). A locking protrusion 134 is provided on the flange 131. The locking protrusion 134 is located on the side of the flange 131 near the face cover 11. The locking protrusion 134 protrudes from the flange 131 toward the side near the face cover 11. The locking protrusion 134 and the flange 131 are an integral structure. The locking protrusion 134 and the second limiting part 122 are arranged vertically and vertically (the second through hole 133 is arranged correspondingly to the locking protrusion 134). The locking protrusion 134 is engaged in the locking gap 110, and the locking protrusion 134 is sandwiched between the edge of the face cover 11 and the second limiting part 122, thereby further improving the connection stability and sealing of the silicone inner shell 13, the middle frame 12 and the face cover 11. Meanwhile, since the latching protrusion 134 is made of soft material, while the face cover 11 and the second limiting part 122 are both made of hard material, the soft latching protrusion 134 is sandwiched between the hard face cover 11 and the second limiting part 122. The second limiting part 122 can support the latching protrusion 134, so that the latching protrusion 134 can be tightly connected with the silicone inner shell 13 and the middle frame 12, preventing the edge of the silicone inner shell 13 from separating from the silicone inner shell 13 and the middle frame 12 and creating gaps (if the latching protrusion 134 is not supported by the second limiting part 122, since the latching protrusion 134 is relatively soft, the latching protrusion 134 is prone to deformation and comes out of the engagement gap 110).
[0059] In this embodiment, there are multiple engagement gaps 110 between the upper edge of the cover 11 and the upper edge of the middle frame 12, and between the lower edge of the cover 11 and the lower edge of the middle frame 12. Multiple spaced-apart protrusions 134 are provided on the upper and lower flanges 131 (i.e., multiple spaced-apart protrusions 134 are provided on the upper flange 131 and multiple spaced-apart protrusions 134 are also provided on the lower flange 131). The multiple protrusions 134 on the upper and lower sides are respectively engaged in the multiple engagement gaps 110 on the upper and lower sides. The upper protrusion 134 is sandwiched between the upper edge of the cover 11 and the upper second limiting part 122, and the lower protrusion 134 is sandwiched between the lower edge of the cover 11 and the lower second limiting part 122.
[0060] like Figures 4 to 9As shown, in one embodiment, along the left-right direction X of the housing 1, the length of the latching protrusion 134 is greater than the length of the second limiting part 122 (along the left-right direction X of the housing 1, the opposite ends of the latching protrusion 134 extend beyond the opposite ends of the second limiting part 122); this arrangement makes the length of the latching protrusion 134 longer, increasing the connection part and connection strength between the latching protrusion 134 and the silicone inner shell 13 and the middle frame 12, and enabling the latching protrusion 134 to better seal the engagement gap 110.
[0061] like Figures 2 to 5 As shown, in one embodiment, the inner wall of the silicone inner shell 13 is provided with protrusions 135, which are located between the upper and lower edges of the silicone inner shell 13. The middle frame 12 is provided with locking holes 123, which are located between the upper and lower edges of the middle frame 12. The protrusions 135 are inserted into and locked in the locking holes 123, thereby connecting the middle position of the silicone inner shell 13 and the middle frame 12, further improving the connection stability between the silicone inner shell 13 and the middle frame 12. In this embodiment, the inner wall of the silicone inner shell 13 is provided with multiple spaced protrusions 135, and the middle frame 12 is provided with multiple spaced locking holes 123, with the multiple protrusions 135 respectively locked in the multiple locking holes 123.
[0062] like Figures 1 to 9 As shown, in one embodiment, the middle frame 12 is provided with mounting portions 124 at both ends, and the mounting portions 124 and the middle frame 12 are integral structures; along the left-right direction X of the housing 1, the mounting portions 124 at both ends extend to the opposite sides of the face cover 11 and the silicone inner shell 13, respectively. The mounting portions 124 at both ends are used to install temple massage heads (not shown in the figure), and the temple massage heads at both ends are used to massage the temples on both sides of the human body.
[0063] Specifically, in this embodiment, an air pump (not shown) is provided inside the housing 1. The air pump is connected to the massage airbag (not shown) inside the temple massage head through components such as a reversing control valve (not shown), an air pipe, and an air nozzle. The reversing control valve has a first state and a second state. When the reversing control valve is in the first state, the air pump is connected to the massage airbag through the reversing control valve, and the air pump inflates the massage airbag, causing the temple massage head to bulge. When the reversing control valve is in the second state, the air pump is disconnected from the massage airbag and the massage airbag is connected to the external environment. At this time, the massage airbag deflates, causing the temple massage head to collapse. By controlling the working state of the reversing control valve (i.e., the reversing control valve frequently switches between the first and second states), the massage airbag can be continuously inflated and deflated, so that the temple massage head continuously expands and contracts, thereby achieving the effect of massaging the temples. The working principle of the temple massage head can be found in the prior art, and will not be elaborated here.
[0064] In one embodiment, the eye massager also includes a headband (not shown), with its two ends connected to the opposite ends of the housing 1. The headband is used to cooperate with the housing 1 to wear the eye massager on the user's head. Specifically, in this embodiment, the headband is an elastic band, and its two ends are connected to the mounting portions 124 at opposite ends.
[0065] The above are merely specific embodiments of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.
Claims
1. An eye massager comprising a shell (1), characterized in that, The shell (1) comprises a face cover (11), a middle frame (12) and a silica gel inner shell (13), the silica gel inner shell (13) is located on the side of the face cover (11) facing the human eye, the middle frame (12) is located between the face cover (11) and the silica gel inner shell (13), and the middle frame (12) is in close contact with the inner side wall of the silica gel inner shell (13) to support the silica gel inner shell (13); a plurality of eye massage heads (14) are arranged on the silica gel inner shell (13), the eye massage heads (14) are protruded on the outer side wall of the silica gel inner shell (13) on the side facing the human eye, and the eye massage heads (14) and the silica gel inner shell (13) are in an integrated structure; An edge position of the silica gel inner shell (13) is provided with a turned edge (131), the turned edge (131) is located on the side of the silica gel inner shell (13) close to the face cover (11), and the edge of the middle frame (12) is clamped between the turned edge (131) and the silica gel inner shell (13); a separation groove (130) is formed between the turned edge (131) and the inner side wall of the silica gel inner shell (13), and the edge of the middle frame (12) is located in the separation groove (130); an edge position of the middle frame (12) is provided with a support portion (125), and the inner wall of the separation groove (130) is in close contact with the support portion (125); An edge position of the face cover (11) is provided with a first clamping portion (111), and an edge position of the middle frame (12) is provided with a second clamping portion (121), the second clamping portion (121) passes through the turned edge (131) and is clamped with the first clamping portion (111).
2. The eye massager of claim 1, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. Along the left-right direction (X) of the shell (1), the support portion (125) is a long strip structure continuously extending from the left end to the right end of the middle frame (12).
3. The eye massager of claim 2, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. The support portion (125) is provided with a support surface (1251), and the inner wall of the separation groove (130) is in close contact with the support surface (1251); along the left-right direction (X) of the shell (1), the support surface (1251) is a continuous flat structure.
4. The eye massager of claim 1, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. A plurality of lightening grooves (1252) are arranged on one side of the support portion (125) close to the silica gel inner shell (13), and the plurality of lightening grooves (1252) are arranged at intervals along the left-right direction (X) of the shell (1).
5. The eye massager of claim 1, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. The upper side edge and the lower side edge of the silica gel inner shell (13) are respectively provided with the turned edge (131), the upper side edge of the middle frame (12) is clamped between the upper side turned edge (131) and the silica gel inner shell (13), and the lower side edge of the middle frame (12) is clamped between the lower side turned edge (131) and the silica gel inner shell (13); the edge positions of the upper side and the lower side of the middle frame (12) are provided with the support portion (125); The first clamping portion (111) is arranged at the edge positions of the upper side and the lower side of the face cover (11), and a plurality of first clamping portions (111) are arranged at intervals on the upper side edge and the lower side edge of the face cover (11); The second clamping portions (121) are arranged at the edge positions of the upper and lower sides of the middle frame (12), and the upper and lower edges of the middle frame (12) are respectively provided with a plurality of second clamping portions (121) arranged at intervals.
6. The eye massager of any one of claims 1-5, wherein the first massage element and the second massage element are arranged in a same plane. The edge position of the face cover (11) is provided with a first limiting portion (112), and the edge position of the middle frame (12) is provided with a second limiting portion (122); the second limiting portion (122) abuts against the first limiting portion (112) from above and below after passing through the turn-up portion (131).
7. The eye massager of claim 6, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. The edge of the face cover (11) and the edge of the middle frame (12) have a clamping gap (110) therebetween, the clamping gap (110) corresponds to the second limiting portion (122); the turn-up portion (131) is provided with a clamping protrusion (134), the clamping protrusion (134) is arranged corresponding to the second limiting portion (122) from above and below, the clamping protrusion (134) is clamped in the clamping gap (110), and the clamping protrusion (134) is clamped between the edge of the face cover (11) and the second limiting portion (122).
8. The eye massager of claim 7, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. The length of the clamping protrusion (134) is greater than the length of the second limiting portion (122) along the left-right direction (X) of the shell (1). 9.The eye massager of claim 6, wherein, The first limiting portions (112) are arranged at the edge positions of the upper and lower sides of the face cover (11), and the upper and lower edges of the face cover (11) are respectively provided with a plurality of first limiting portions (112) arranged at intervals. The second limiting portions (122) are arranged at the edge positions of the upper and lower sides of the middle frame (12), and the upper and lower edges of the middle frame (12) are respectively provided with a plurality of second limiting portions (122) arranged at intervals.
10. The eye massager of claim 6, wherein the first massage element and the second massage element are arranged to be rotated in the same direction. The turn-up portion (131) is provided with a first through hole (132) for the second clamping portion (121) to pass through and a second through hole (133) for the second limiting portion (122) to pass through.