Mounting member for a massager and massager having the same
Through the design of integrated flexible mounting parts, substrates and connectors, the problem that existing massagers cannot process multiple rows of massage heads at the same time is solved, efficient assembly and processing is achieved, and production efficiency is improved.
Patent Information
- Application Number
- CN202110542466.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-05-18
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2041-05-18
AI Technical Summary
The connecting plate structure of existing massagers limits the number of rows of massage heads, resulting in low production efficiency and the inability to process multiple rows of massage heads at the same time.
Using an integrated molded flexible mounting member, a plurality of connectors are provided on the substrate. Each connector is open away from one end of the substrate, and a communication cavity is installed inside. It can open the mold in the axial direction, which facilitates the installation of massage units and wiring, and simplifies the assembly process.
It improves the production efficiency and assembly efficiency of the massager, reduces processing costs, ensures the convenient installation and smooth wiring of the massage unit, and reduces the problem of disconnection.
Smart Images

Figure CN115363930B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of massagers, and more particularly to a mounting member for a massager and a massager having the same. Background Art
[0002] In some massagers in the related art, a hollow massage head is integrally formed on a connecting plate. One end of the massage head connected to the connecting plate is open for arranging massage elements such as a vibration motor in the massage head. The other end of the massage head away from the connecting plate is closed to achieve the effect of enclosing and protecting the built-in massage elements. However, this structure can only be molded from left to right, so that only a single row of massage heads can be processed on the connecting plate, and multiple rows of massage heads cannot be processed on the connecting plate, resulting in limited number of rows of massage heads on the connecting plate. When multiple rows of massage heads are required, they can only be processed row by row separately, which affects the overall production efficiency of the massager. Summary of the Invention
[0003] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention provides a mounting member for a massager, which can improve the production efficiency of the massager.
[0004] The present invention also provides a massager having the above mounting member.
[0005] According to an embodiment of the first aspect of the present invention, a mounting member for a massager is provided. The massager includes a body and a massage unit. The mounting member is an integrally formed flexible member and includes: a substrate adapted to be mounted on the body, and a plurality of through holes are formed in the substrate; and a plurality of connectors adapted to mount the massage unit, and one connector is respectively connected to each through hole. One end of each connector away from the substrate is open to form a core-pulling port. A communication cavity is formed in each connector. One end of the communication cavity in the axial direction of the connector communicates with the through hole, and the other end of the communication cavity in the axial direction of the connector communicates with the core-pulling port. Wherein, the communication cavity is configured to: when the connector does not deform, all the cores in the communication cavity can be withdrawn from the core-pulling port, or a part of the cores in the communication cavity can be withdrawn from the core-pulling port, and the remaining parts of the cores in the communication cavity can be withdrawn from the through hole, so that the mounting member can be molded along the axial direction of the connector.
[0006] The mounting member for a massager according to an embodiment of the present invention. Since multiple connectors are integrally formed on the substrate, the assembly steps of separately installing each connector on the body can be omitted. The entire mounting member can be installed only by installing the substrate on the body, with fewer assembly processes and high assembly efficiency. Moreover, since a core-pulling port is provided on the side of the connector away from the substrate, and a communication cavity connecting the core-pulling port and the through hole is provided inside the connector, and the mounting member is configured to be suitable for core-pulling through the core-pulling port and suitable for mold opening along the axial direction of the connector, it is convenient for the processing and demolding of the mounting member, making it possible to integrally process multiple rows of massage components arranged at intervals in the row direction on the substrate, improving the processing efficiency and reducing the processing cost. Moreover, the massage unit can be installed on the connector through the core-pulling port, making the installation of the massage unit convenient, the wiring convenient, and it is not easy to have the problem of wire breakage during assembly.
[0007] In some embodiments, each of the connectors includes a mounting post portion and a connecting post portion. The connecting post portion is connected between the mounting post portion and the substrate. Both the mounting post portion and the connecting post portion are hollow column structures. One end of the connecting post portion away from the mounting post portion is connected to the through hole, and one end of the mounting post portion away from the connecting post portion is open to form the core-pulling port. Wherein, the cross-sectional area of the inner column surface of the mounting post portion is larger than the cross-sectional area of the outer column surface of the connecting post portion.
[0008] In some embodiments, one end of the connecting post portion away from the substrate is directly connected to one end of the mounting post portion close to the substrate.
[0009] In some embodiments, the mounting post portion and the connecting post portion are coaxially arranged.
[0010] In some embodiments, the wall thickness of the connecting post portion is smaller than the wall thickness of the mounting post portion.
[0011] In some embodiments, the wall thickness at the connection between the connecting post portion and the through hole is smaller than the wall thickness of the mounting post portion.
[0012] In some embodiments, a thinning portion is formed at the connection between the connector and the substrate, and the wall thickness of the thinning portion is smaller than the wall thickness of at least part of the communication cavity.
[0013] In some embodiments, the thinning portion is configured as a groove surrounding the connector, and the wall thickness of the groove is smaller than the wall thickness of at least part of the communication cavity.
[0014] In some embodiments, multiple connectors form multiple rows of massage groups. Each row of the massage groups includes multiple connectors arranged in the column direction, and multiple rows of the massage groups are arranged at intervals in the row direction.
[0015] In some embodiments, the substrate includes: two first plate bodies and a second plate body. The two first plate bodies are spaced apart, and two ends of the second plate body are respectively connected to the two first plate bodies. The two first plate bodies and the second plate body configure the substrate into an open annular structure, and the connecting head is disposed on the two first plate bodies.
[0016] In some embodiments, a notch is provided on the second plate body.
[0017] In some embodiments, the width of the second plate body is smaller than the width of the first plate body.
[0018] In some embodiments, a flanging extending towards the thickness side of the substrate is provided on the side of the substrate.
[0019] In some embodiments, only one side of the two width sides of the substrate has the flanging.
[0020] In some embodiments, the substrate is an open ring, the outer ring side of the substrate has the flanging, and the inner ring side of the substrate does not have the flanging.
[0021] In some embodiments, the substrate is formed into a flat plate structure.
[0022] In some embodiments, connection holes and / or positioning holes are provided on the substrate.
[0023] The massager according to the embodiment of the second aspect of the present invention includes: a body; a mounting member, the mounting member is the mounting member for the massager according to the embodiment of the first aspect of the present invention, and the substrate is mounted on the body; a plurality of massage units, the plurality of massage units are respectively mounted on the plurality of connecting heads, and each massage unit closes the core-pulling port of the corresponding connecting head.
[0024] The massager according to the embodiment of the present invention has a simple structure and high production efficiency.
[0025] In some embodiments, at least a part of the massage unit is received in the communication cavity.
[0026] In some embodiments, a first positioning member is provided in each communication cavity, and a second positioning member is provided on each massage unit. The first positioning member and the second positioning member cooperate to position the massage unit.
[0027] In some embodiments, the substrate is mounted in the body, the connecting head penetrates the body, the axial inner end of the connecting head is located inside the body to be connected to the substrate, the axial outer end of the connecting head is located outside the body, and the massage unit is located outside the body and mounted on the axial outer end of the connecting head.
[0028] In some embodiments, the body includes a mounting shell and a pressing plate, the substrate is clamped between the pressing plate and the mounting shell, and the mounting shell has a perforation adapted for the connector to pass through.
[0029] In some embodiments, the mounting shell and the pressing plate are fixedly connected by fasteners.
[0030] In some embodiments, screw posts are provided on the mounting shell, connection holes are provided on the substrate, the screw posts pass through the connection holes, the fasteners are screws and the heads abut against the pressing plate, and the rod portions of the screws pass through the pressing plate and are threadedly connected to the screw posts.
[0031] In some embodiments, a sleeve post sleeved on the screw post is provided on the pressing plate, a sinking groove is provided at one axial end of the sleeve post, the head of the screw is embedded in the sinking groove, and the rod portion of the screw passes through the sleeve post and is threadedly connected to the screw post.
[0032] In some embodiments, positioning posts are provided on the mounting shell, through holes are provided on the pressing plate, and positioning holes are provided on the substrate, and the positioning posts pass through the positioning holes and the through holes.
[0033] In some embodiments, an included angle is formed between the central axis of the through hole and the thickness direction of the pressing plate.
[0034] In some embodiments, the substrate is bonded to the pressing plate.
[0035] In some embodiments, the body further includes a protective shell and a flexible circuit board. The protective shell is located on the side of the pressing plate away from the mounting shell, the protective shell is assembled and connected to the mounting shell, the flexible circuit board is disposed between the pressing plate and the protective shell, and is electrically connected to a plurality of the massage units.
[0036] In some embodiments, the pressing plate has an avoidance opening disposed opposite to the connector.
[0037] In some embodiments, the massager is an eye massager, the massager further includes temple pieces, the temple pieces are connected to the body, and the body includes two frame parts, and the massage units are respectively provided on the upper and lower frames of each frame part.
[0038] In some embodiments, at least one of the temple pieces includes a power supply device and / or an electronic control device electrically connected to the massage unit.
[0039] Additional aspects and advantages of the invention will be given in part in the following description, become apparent in part from the following description, or be learned through the practice of the invention. Description of the Drawings
[0040] Figure 1 is a perspective view of a massager according to an embodiment of the present invention;
[0041] Figure 2 is a perspective view of a mounting member according to an embodiment of the present invention;
[0042] Figure 3 is Figure 2 a perspective view of the mounting member shown in from another angle;
[0043] Figure 4 is Figure 3 an exploded view of the mounting member, massage unit and pressing plate shown in ;
[0044] Figure 5 is Figure 4 an assembly view of the mounting member, massage unit and pressing plate shown in ;
[0045] Figure 6 is a forming state diagram of the mounting member according to an embodiment of the present invention;
[0046] Figure 7 is a forming state diagram of the mounting member according to another embodiment of the present invention;
[0047] Figure 8 is Figure 6 a top view of the forming state of the mounting member including multiple rows of connectors shown in ;
[0048] Figure 9 is a forming state diagram of the mounting member in an embodiment of the related art;
[0049] Figure 10 is Figure 9 a top view of the forming state of the mounting member including a single row of connectors shown in ;
[0050] Figure 11 is assuming Figure 9 a forming design diagram of the mounting member including multiple rows of connectors shown in ;
[0051] Figure 12 is Figure 11 a top view of ;
[0052] Figure 13 is a forming design diagram of the mounting member in an embodiment of the related art assuming;
[0053] Figure 14 is a perspective view of a massager according to an embodiment of the present invention;
[0054] Figure 15 is Figure 14 an exploded view of the body, massage unit and mounting member shown in ;
[0055] Figure 16 is Figure 14 a mating diagram of the mounting member and a partial body shown in
[0056] Figure 17 along Figure 16 a sectional view taken along the X-X line in
[0057] Figure 18 along Figure 14 a perspective view of the mounting member shown in
[0058] Figure 19 along Figure 14 a perspective view of the two pressing plates shown in
[0059] Figure 20 along Figure 14 an exploded view of a part of the mounting member and a massage unit shown in
[0060] Figure 21 is Figure 14 a top view of the massager with the temple hidden shown in
[0061] Figure 22 is Figure 14 a perspective view of a temple shown in
[0062] Figure 23 is Figure 22 an exploded view of the temple shown in
[0063] Reference numerals:
[0064] Massager 1000;
[0065] Massage unit 100; Second positioning member 101;
[0066] Mounting member 200;
[0067] Substrate 1; Through hole 11; Thinning portion 12; Mounting groove 13; Flange 14;
[0068] First plate body 15; Second plate body 16; Notch 161; Connection hole 17; Positioning hole 18;
[0069] Connector 2; Communication cavity 201; Minimum cross-section cavity section 201a; Upper cavity 201b; Lower cavity 201c;
[0070] Core-pulling port 202; Massage group 20; First massage group 2A; Second massage group 2B;
[0071] Connection column portion 21; Inner cavity of the connection column portion 211;
[0072] Mounting column portion 22; Inner cavity of the mounting column portion 221; First positioning member 222;
[0073] Step surface 23;
[0074] Machine body 300;
[0075] Frame part 301; Left frame part 3A; Right frame part 3B; Connecting part 302;
[0076] Mounting shell 3; Perforation 31; Screw post 32; Positioning post 33;
[0077] Pressing plate 4; Sleeve post 41; Through hole 42; Avoidance opening 43; Upper pressing plate 4a; Lower pressing plate 4b;
[0078] Flexible circuit board 5; Protective shell 6; Fastener 7;
[0079] Temple 400;
[0080] Left temple 4A; Right temple 4B;
[0081] Mounting part 81; Support part 82; Power supply device 83; Electric control device 84; Free end 85; Connection end 86. Detailed implementation manners
[0082] The embodiments of the invention will be described in detail below. Examples of the embodiments are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are intended to explain the invention and should not be construed as limiting the invention.
[0083] The following disclosure provides many different embodiments or examples for implementing different structures of the invention. To simplify the disclosure of the invention, components and settings of specific examples are described below. Of course, they are only examples and are not intended to limit the invention. In addition, the invention may repeat reference numerals and / or letters in different examples. This repetition is for the purpose of simplification and clarity and does not in itself indicate the relationship between the various embodiments and / or settings discussed. In addition, the invention provides examples of various specific processes and materials, but those of ordinary skill in the art may be aware of the applicability of other processes and / or the use of other materials.
[0084] Next, with reference to the drawings, the mounting member 200 for the massager 1000 according to the first aspect embodiment of the present invention will be described. It should be noted that the specific type of the massager 1000 to which the mounting member 200 is applied is not limited. For example, it may be an eye massager (such as Figure 1 shown), or a neck massager, or a massage chair, or a massage mat, etc.
[0085] As Figure 1As shown, the massager 1000 may include a body 300 and a massage unit 100. There is at least one massage unit 100, and the massage functions of each massage unit 100 are not limited. For example, it may have at least one of a vibration massage function, an electrostimulation massage function, and a hot compress massage function, etc. There is no limitation here.
[0086] As Figure 2 and Figure 3 shown, the mounting member 200 is an integrally formed flexible member and includes: a substrate 1 and a plurality of connectors 2. That is to say, the plurality of connectors 2 are integrally formed on the substrate 1 so that the substrate 1 and the plurality of connectors 2 are connected into an inseparable integral member, and both the connector 2 and the substrate 1 are made of flexible materials so that the mounting member 200 as a whole is a flexible member. Among them, the substrate 1 is adapted to be mounted on the body 300 of the massager 1000. Thus, when the substrate 1 is assembled to the body 300, the substrate 1 can complete the assembly with the body 300 together with the plurality of connectors 2, thereby eliminating the step of separately assembling the plurality of connectors 2 to the body 300 one by one, and thus improving the assembly efficiency.
[0087] Combined Figure 4 and Figure 5 , the connector 2 is adapted to mount the massage unit 100. For example, in a specific example, only one massage unit 100 can be mounted on one connector 2, so that the plurality of massage units 100 are respectively mounted on the plurality of connectors 2, or in other words, the plurality of massage units 100 and the plurality of connectors 2 are mounted in one-to-one correspondence. Also, for example, in some other specific examples, several connectors 2 may jointly mount one massage unit 100, which will not be elaborated here.
[0088] As Figure 2 and Figure 3 shown, a plurality of through holes 11 are formed on the substrate 1, and each through hole 11 is respectively connected to a connector 2. One end of each connector 2 away from the substrate 1 is open to form a core-pulling port 202, and a communication cavity 201 communicating the core-pulling port 202 and the through hole 11 is formed in each connector 2. That is to say, one end of the communication cavity 201 in the axial direction of the connector 2 communicates with the through hole 11, and the other end of the communication cavity 201 in the axial direction of the connector 2 communicates with the core-pulling port 202. It should be noted that the connector 2 is generally columnar, and the extending direction of the central axis of the connector 2 is the axial direction of the connector 2.
[0089] Thus, when the massage unit 100 is installed on the connector 2 through the core-pulling port 202, the massage unit 100 can route wires through the core-pulling port 202, the communication cavity 201, and the through-hole 11, thereby realizing the wire routing installation of the massage unit 100. In some alternative examples, when the massage unit 100 is installed on the connector 2 through the core-pulling port 202, at least a part of the massage unit 100 can be received in the communication cavity 201, thus facilitating the installation of the massage unit 100. However, the invention is not limited thereto. In other embodiments of the invention, the massage unit 100 may not be received in the communication cavity 201 at all, that is, it is entirely located outside the communication cavity 201, which will not be elaborated here.
[0090] In an embodiment of the invention, when one end of the communication cavity 201 in the axial direction of the connector 2 communicates with the through-hole 11 and the other end of the communication cavity 201 in the axial direction of the connector 2 communicates with the core-pulling port 202, the mounting member 200 is simultaneously configured to be suitable for core-pulling from the core-pulling port 202 and for mold opening along the axial direction of the connector 2. It should be noted that, in combination with Figure 6 and Figure 7 , "mold opening along the axial direction of the connector 2" means that the upper mold A1 can be removed along the direction from the through-hole 11 to the core-pulling port 202 (for example, the upward direction shown in Figure 6 ), and the lower mold A2 can be removed along the direction from the core-pulling port 202 to the through-hole 11 (for example, the downward direction shown in Figure 6 ); in combination with Figure 6 and Figure 7 , "core-pulling from the core-pulling port 202" means that at least a part of the core A3 in the communication cavity 201 is suitable for being pulled out from the core-pulling port 202.
[0091] Thus, the mold removal method of the mounting member 200 is simple, and since the mold opening direction is to separate the upper mold A1 and the lower mold A2 along the axial direction of the connector 2, thus in combination with Figure 8 , multiple rows of massage groups 20 arranged at intervals in the row direction can be integrally processed on the substrate 1 at the same time (for example, two rows of massage groups 2C arranged at intervals in the row direction as shown in Figure 8 ), each row of massage groups 20 includes a plurality of connectors 2 arranged in the column direction (for example, each row of massage groups 2C shown in Figure 8 includes four connectors 2 arranged in the column direction), and the mold opening direction of each row of massage groups 20 is the axial direction of the connector 2, so that multiple rows of massage groups 20 arranged at intervals in the row direction can be mold opened simultaneously without mutual interference.
[0092] For example, in Figure 6In the specific example shown, the axial direction of the connector 2 is the up-and-down direction. The core A3 is integrally formed with the upper mold A1. When the mold is opened, the upper mold A1 is moved upward, and the core A3 is removed upward from the communication cavity 201. At the same time, the lower mold A2 is moved downward to remove the lower mold A2. Then, by utilizing the flexibility of the mounting member 200, the substrate 1 is pulled downward, and the multiple connectors 2 can be disengaged downward from the corresponding through holes on the mold core A4, thereby completing the demolding of the mounting member 200. Thus, regardless of how the multiple connectors 2 are arranged on the substrate 1, the integral molding process of the multiple connectors 2 and the substrate 1 can be achieved.
[0093] In the related art, as Figure 9 and Figure 10 shown, one end of the connector is connected and communicated with the through hole on the substrate, and the other end of the connector is closed. The core B4 is integrally formed with the bottom mold B3. When the mold is opened, the left mold B1 is moved to the left, and the right mold B2 is moved to the right, that is, the mold is opened along the transverse direction of the connector. Then, the bottom mold B3 is moved downward, and the core B4 moves downward with the bottom mold B3. By utilizing the flexibility of the mounting member, the core A3 is removed downward from the through hole, thereby completing the demolding of the mounting member. Thus, since the mounting member can only be opened along the transverse direction of the connector when demolding, that is, the left mold B1 and the right mold B2 are separated left and right, and then the core can be pulled out downward, so that only a single row of massage groups can be made on each mounting member, otherwise the mold cannot be opened. For example, the following is described by way of example.
[0094] First, in combination with Figure 11 and Figure 12 , assuming that two rows of massage groups 2D arranged at intervals in the row direction are to be made on the mounting member, and each row of massage groups 2D includes multiple connectors arranged in the column direction, then the intermediate mold B5 between the two rows of massage groups 2D cannot be removed, resulting in the inability to demold the mounting member. Then, when the massager needs to have multiple rows of massage groups arranged at intervals in the row direction, only each single row of massage groups can be processed separately, and then the multiple single row of massage groups are bonded together, resulting in cumbersome processing procedures, low assembly efficiency, and low bonding yield.
[0095] Secondly, as Figure 13 shown, for this structure in the related art, that is, one end of the connector is connected and communicated with the through hole on the substrate, and the other end of the connector is closed. Since the upper end of the connector is large and the lower end is small, it is impossible to open the mold along the axial direction of the connector. For example, Figure 13 shown, assuming that the upper mold A1, the lower mold A2, and the mold core A4 are provided, and the lower mold A2 and the core A3 are integrally formed. When the upper mold A1 is moved upward and removed, the core A3 cannot be removed downward due to interference by the mold core A4. Similarly, the mold core A4 cannot be removed upward due to interference by the core A3. This shows that this assumption is impossible, that is, for this structure in the related art where one end of the connector is closed and the upper end is large and the lower end is small, it is impossible to open the mold along the axial direction of the connector.
[0096] In summary, for the mounting member 200 of the massager 1000 according to the embodiment of the present invention, since multiple connectors 2 are integrally formed on the substrate 1, the assembly steps of separately installing each connector 2 on the body 300 can be omitted. Only by installing the substrate 1 on the body 300 can the installation of the entire mounting member 200 be achieved. The assembly process is less, and the assembly efficiency is high. Moreover, since a core-pulling port 202 is provided on the side of the connector 2 away from the substrate 1, and a communication cavity 201 communicating the core-pulling port 202 and the through hole 11 is provided in the connector 2, and the mounting member 200 is configured to be suitable for core-pulling by the core-pulling port 202 and suitable for mold opening along the axial direction of the connector 2, it is convenient for the processing and demolding of the mounting member 200, making it possible to integrally process multiple rows of massage groups 20 arranged at intervals in the row direction on the substrate 1 at the same time, improving the processing efficiency and reducing the processing cost. Moreover, the massage unit 100 can be installed on the connector 2 through the core-pulling port 202, so that the installation of the massage unit 100 is convenient, the wiring is convenient, and the problem of wire breakage during assembly is not likely to occur.
[0097] It should be noted that the specific structural shape of the communication cavity 201 is not limited, as long as it can meet the requirement that "the mounting member 200 is configured to be suitable for core-pulling by the core-pulling port 202 and suitable for mold opening along the axial direction of the connector 2". The applicant has found that as long as the communication cavity 201 is configured such that: when the connector 2 hardly deforms, all of the core A3 in the communication cavity 201 can be withdrawn through the core-pulling port 202, or a part of the core A3 in the communication cavity 201 can be withdrawn through the core-pulling port 202, and the remaining part of the core A3 in the communication cavity 201 can be withdrawn through the through hole 11. Thus, after all of the core A3 is withdrawn, mold opening along the axial direction of the connector 2 can be achieved, thereby meeting the requirement that "the mounting member 200 is configured to be suitable for core-pulling by the core-pulling port 202 and suitable for mold opening along the axial direction of the connector 2".
[0098] Then, in order to meet this requirement, for example, in some embodiments, the communication cavity 201 can be processed as follows: along the axial direction of the connection head 2, it can be a constant cross-section structure or a variable cross-section structure. When the communication cavity 201 is a variable cross-section structure, the communication cavity 201 has a minimum cross-section position. The minimum cross-section position of the communication cavity 201 can be located at the through hole 11, or can be located between the through hole 11 and the core-pulling port 202. Among them, for the part from the minimum cross-section of the communication cavity 201 to the core-pulling port 202, along the direction from the minimum cross-section of the communication cavity 201 to the core-pulling port 202, the cross-section of the communication cavity 201 can only increase (including gradually increasing and / or stepwise increasing), and cannot decrease (including locally decreasing, gradually decreasing as a whole, stepwise decreasing). When the minimum cross-section position of the communication cavity 201 is located between the through hole 11 and the core-pulling port 202, for the part from the minimum cross-section of the communication cavity 201 to the through hole 11, along the direction from the minimum cross-section of the communication cavity 201 to the through hole 11, the cross-section of the communication cavity 201 can also only increase (including gradually increasing and / or stepwise increasing), and cannot decrease (including locally decreasing, gradually decreasing as a whole, stepwise decreasing).
[0099] For example, in Figure 6 and Figure 7 In the specific examples shown, the communication cavity 201 includes a plurality of cavity segments arranged along the axial direction of the connection head 2. Among them, the plurality is at least two, and each cavity segment is in the form of a constant cross-section along the axial direction of the connection head 2. The cross-section of the communication cavity 201 changes suddenly at the connection of two adjacent cavity segments, that is, the cross-section of the communication cavity 201 is not in the form of continuous gradual change from one cavity segment to another cavity segment. The cavity segment with the smallest cross-sectional area among the plurality of cavity segments is the minimum cross-section cavity segment 201a. There is at least one cavity segment between the minimum cross-section cavity segment 201a and the core-pulling port 202. However, between the minimum cross-section cavity segment 201a and the through hole 11, there may be no cavity segment, or there may be at least one cavity segment.
[0100] Such as Figure 6 and Figure 7 As shown in Figure 6 and Figure 7 , regardless of whether there is a cavity segment between the minimum cross-section cavity segment 201a and the through hole 11, the cross-sectional area of any cross-section of the communication cavity 201 located between the minimum cross-section cavity segment 201a and the core-pulling port 202 (such as the upper cavity 201b of the communication cavity 201 shown in Figure 6 and Figure 7In any two cross-sections of the upper cavity 201b) of the communicating cavity 201 shown in the figure, the area of the cross-section relatively closer to the core-pulling port 202 is greater than or equal to the area of the cross-section relatively farther from the core-pulling port 202, and on the projection plane perpendicular to the axial direction of the connecting head 2, the orthographic projection of the cross-section relatively farther from the core-pulling port 202 does not exceed the orthographic projection of the cross-section relatively closer to the core-pulling port 202.
[0101] It should be noted that one orthographic projection not exceeding another orthographic projection includes at least part of the edge of one orthographic projection coinciding with at least part of the edge of another orthographic projection, and one orthographic projection completely falling within another orthographic projection. Thus, it can be simply and effectively ensured that the mounting member 200 is configured to be suitable for core-pulling by the core-pulling port 202 and suitable for mold opening along the axial direction of the connecting head 2. Moreover, among the multiple cavity segments of the communicating cavity 201, there is a cavity segment with the smallest cross-section, so that the connecting head 2 is prone to deform or deflect at the smallest cross-section cavity segment 201a to adapt to the human body shape.
[0102] Furthermore, as Figure 7 shown, when there is at least one cavity segment between the smallest cross-section cavity segment 201a and the through-hole 11, the cross-sectional area of any cross-section of the communicating cavity 201 located between the smallest cross-section cavity segment 201a and the through-hole 11 (such as the lower cavity 201c of the communicating cavity 201 shown in Figure 7 the figure, and the lower cavity 201c may include at least one cavity segment) is greater than the cross-sectional area of the smallest cross-section cavity segment 201a. At this time, the communicating cavity 201 includes at least three cavity segments arranged along the axial direction of the connecting head 2, and in any two cross-sections of the communicating cavity 201 located between the smallest cross-section cavity segment 201a and the through-hole 11 (such as the lower cavity 201c of the communicating cavity 201 shown in Figure 7 the figure), the area of the cross-section relatively closer to the through-hole 11 is greater than or equal to the area of the cross-section relatively farther from the through-hole 11, and on the projection plane perpendicular to the axial direction of the connecting head 2, the orthographic projection of the cross-section relatively farther from the through-hole 11 does not exceed the orthographic projection of the cross-section relatively closer to the through-hole 11. Thus, it can be simply and effectively ensured that the mounting member 200 is configured to be suitable for core-pulling by the core-pulling port 202 and suitable for mold opening along the axial direction of the connecting head 2.
[0103] Of course, the invention is not limited to this. The communicating cavity 201 may not include multiple cavity segments arranged along the axial direction of the connecting head 2, and the cross-section of the communicating cavity 201 has a sudden change at the connection of two adjacent cavity segments. For example, in some alternative embodiments, the communicating cavity 201 may be in an overall continuously varying form, that is, there is no position with a sudden change in cross-section, and it can gradually continuously increase along the direction from the small cross-section to the core-pulling port 202, or, along the direction from the small cross-section to the core-pulling port 202, and at the same time, along the direction from the small cross-section to the through-hole 11, which will not be elaborated here.
[0104] Alternatively, in some other alternative embodiments, when the communication cavity 201 includes a plurality of cavity segments arranged along the axial direction of the connecting head 2, and the cross-section of the communication cavity 201 changes abruptly at the connection of two adjacent cavity segments, the communication cavity 201 may also include a part with a continuously varying cross-section, as long as it meets the above conditions that when the connecting head 2 hardly deforms, all of the core A3 in the communication cavity 201 can be withdrawn from the core extraction port 202, or a part of the core A3 in the communication cavity 201 can be withdrawn from the core extraction port 202, and the remaining part of the core A3 in the communication cavity 201 can be withdrawn through the through hole 11. Details are not described herein.
[0105] In some embodiments of the invention, as Figure 3 shown, each connecting head 2 includes a mounting post portion 22 and a connecting post portion 21. The connecting post portion 21 is connected between the mounting post portion 22 and the substrate 1. That is to say, the mounting post portion 22 is connected to the side of the connecting post portion 21 away from the substrate 1. Both the mounting post portion 22 and the connecting post portion 21 are hollow column structures. One end of the connecting post portion 21 away from the mounting post portion 22 is connected to the through hole 11, and one end of the mounting post portion 22 away from the connecting post portion 21 is open to form the core extraction port 202. Among them, the cross-sectional area of the inner cylindrical surface of the mounting post portion 22 is larger than the cross-sectional area of the outer cylindrical surface of the connecting post portion 21.
[0106] Thus, the structure of the connecting head 2 is simple and easy to design, and it can simply and effectively ensure that when processing the mounting member 200, core extraction can be performed from the communication cavity 201 through the core extraction port 202 along the direction from the through hole 11 to the core extraction port 202. And because the cross-sectional area of the inner cylindrical surface of the mounting post portion 22 is larger than the cross-sectional area of the outer cylindrical surface of the connecting post portion 21, it is ensured that the inner cavity 221 of the mounting post portion 22 is larger, which is used to accommodate at least part of the massage unit 100, improving the connection reliability and connection compactness between the connecting head 2 and the massage unit 100. In addition, it can also ensure that the connecting post portion 21 is thinner, so that the thinner connecting post portion 21 is prone to deformation or deflection to adapt to the human body shape. It should be noted that the cylindrical shape described herein is not limited to a cylindrical shape. For example, it can also be an elliptical cylindrical shape, a prismatic shape, etc. Details are not described herein.
[0107] For example, in some embodiments, as Figure 3 and Figure 20As shown, a stepped surface 23 may be formed between the mounting column portion 22 and the connecting column portion 21, and the stepped surface 23 may be used to support and / or position the massage unit 100, etc. Further, in some embodiments, the massage unit 100 may also be bonded to the stepped surface 23 by bonding, so as to facilitate connection. It should be noted that the present invention is not limited thereto, and there may also be no contact between the stepped surface 23 and the massage unit 100. The massage unit 100 may be supported and / or positioned by the end of the mounting column portion 22 away from the connecting column portion 21, and the inner peripheral surface or the end surface of the end of the mounting column portion 22 away from the connecting column portion 21 may be bonded to the massage unit 100, etc.
[0108] In some embodiments of the invention, such as Figure 3 As shown, the end of the connecting column portion 21 away from the substrate 1 is directly connected to the end of the mounting column portion 22 close to the substrate 1. From this, it can be seen that the connecting head 2 is composed of two sections, namely the connecting column portion 21 and the mounting column portion 22, which can simplify the structure, reduce the cost, and in some cases, the interface between the connecting column portion 21 and the mounting column portion 22 (such as Figure 3 the lower end surface of the mounting column portion 22 shown in) can support and position the massage unit 100, thereby improving the installation reliability and working stability of the massage unit 100. In addition, it can be understood that when the connecting head 2 is composed of two sections, namely the connecting column portion 21 and the mounting column portion 22, the inner cavity 211 of the connecting column portion 21 and the inner cavity 221 of the mounting column portion 22 form a communicating cavity 201.
[0109] In some embodiments of the invention, such as Figure 3 As shown, the mounting column portion 22 and the connecting column portion 21 are coaxially arranged. Thus, it is convenient for the processing of the connecting head 2, and the stability and balance of the yaw of the connecting head 2 can be ensured. For example, when the massage unit 100 includes a vibration device, the vibration device may be at least partially located within the mounting column portion 22. When vibrating, it drives the mounting column portion 22 to swing. When the mounting column portion 22 swings, due to the coaxial arrangement of the mounting column portion 22 and the connecting column portion 21, the overall yaw stability and balance of the connecting head 2 can be improved, the user experience can be enhanced, and the service life of the mounting member 200 can be extended.
[0110] In some embodiments of the invention, such as Figure 3 As shown, the wall thickness of the mounting column portion 22 (i.e., half of the difference between the outer column surface and the inner column surface dimensions of the mounting column portion 22) is greater than the wall thickness of the connecting column portion 21 (i.e., half of the difference between the outer column surface and the inner column surface dimensions of the connecting column portion 21). Thus, the connecting column portion 21 with a thinner wall thickness is prone to deformation or yaw to adapt to the human body shape, and is beneficial for vibrating or yawing massage.
[0111] Based on the above description, in a specific embodiment of the invention, the mounting column portion 22 is formed in a hollow cylindrical shape, the connecting column portion 21 is formed in a hollow cylindrical shape, the mounting column portion 22 and the connecting column portion 21 are coaxially arranged, and the inner diameter of the mounting column portion 22 is larger than the inner diameter of the connecting column portion 21, the outer diameter of the mounting column portion 22 is larger than the outer diameter of the connecting column portion 21, and the wall thickness of the mounting column portion 22 is larger than the wall thickness of the connecting column portion 21. Thus, the structure of the connector 2 is simple, facilitating processing, the installation, support and limitation of the massage unit 100, and the working effect is reliable.
[0112] In some embodiments of the invention, as Figure 3 shown, the wall thickness of the connecting column portion 21 at the connection with the through hole 11 is smaller than the wall thickness of the mounting column portion 22. Thus, the connection between the connecting column portion 21 and the substrate 1 can be regarded as a thinning portion 12, weakening the resistance to deformation of the connection portion between the connecting column portion 21 and the substrate 1, that is, it is more likely to deform, and the connecting column portion 21 is likely to deflect to adapt to the human body shape.
[0113] In some embodiments of the invention, as Figure 3 shown, a thinning portion 12 is formed at the connection between the connector 2 and the substrate 1, and the wall thickness of the thinning portion 12 is smaller than the wall thickness of at least a part of the communication cavity 201. Thus, by providing the thinning portion 12, the resistance to deformation of the connection portion between the connecting column portion 21 and the substrate 1 can be weakened, that is, it is more likely to deform, and the connecting column portion 21 is likely to deflect to adapt to the human body shape.
[0114] In some embodiments of the invention, as Figure 3 shown, the thinning portion 12 can be configured as a groove surrounding the connector 2, and the wall thickness of the groove is smaller than the wall thickness of at least a part of the communication cavity 201. Thus, the processing of the thinning portion 12 is convenient, and the resistance to deformation of the connection portion between the connecting column portion 21 and the substrate 1 can be weakened more fully and effectively, that is, it is more likely to deform, and the connecting column portion 21 is likely to deflect to adapt to the human body shape.
[0115] In some embodiments of the invention, as Figure 3 shown, a plurality of connectors 2 form a multi-row massage group 20, for example Figure 3 the first massage group 2A and the second massage group 2B shown. Each row of the massage group 20 includes a plurality of connectors 2 arranged in the column direction (such as Figure 3 the left-right direction shown), and the multi-row massage groups 20 are arranged at intervals in the row direction (for example Figure 3 the up-down direction shown in). Among them, the specific directions of the "row direction" and the "column direction" are not limited, as long as the "row direction" and the "column direction" are perpendicular or substantially perpendicular. Thus, the number of connectors 2 on the substrate 1 can be increased, so that the mounting member 200 can mount more massage units 100, improving the assembly efficiency.
[0116] In some embodiments of the invention, such as Figure 3 shown, there are two first plate bodies 15 and a second plate body 16. The two first plate bodies 15 are arranged at intervals (for example, spaced apart in the up and down direction as shown Figure 3 ). The two ends of the second plate body 16 are respectively connected to the two first plate bodies 15, and the two first plate bodies 15 and the second plate body 16 configure the substrate 1 into an open annular structure. The connecting head 2 is arranged on the two first plate bodies 15. That is to say, the two ends of the second plate body 16 are respectively connected to the ends of the two first plate bodies 15 close to the second plate body 16, so that the whole mounting member 200 is in a C shape. Among them, a connecting head 2 is arranged on each first plate body 15, so that there can be two rows of connecting heads 2 arranged at intervals on the substrate 1. Thus, the massage range after the mounting member 200 is provided with the massage unit 100 can be increased, and the mounting member 200 can be used to mount a larger number of massage units 100.
[0117] In a specific example, in combination with Figure 1 , the massager 1000 is an eye massager, and the massage unit 100 protrudes from the inner side of the body 300 (that is, the side of the body 300 facing the human eye). In combination with Figure 2 and Figure 3 , the two first plate bodies 15 are spaced apart in the up and down direction, and the upper and lower ends of the second plate body 16 are respectively connected to the two first plate bodies 15. Thus, the mounting member 200 can be adapted to the shape of the human eye area, avoiding the human eyeball and massaging the eye socket part. In addition, it should be noted that in this embodiment, a connecting head 2 can be arranged on the second plate body 16 or not. When the connecting head 2 is provided, the two sides of the eye socket can be massaged. When the connecting head 2 is not provided, the position of the temple 400 can be avoided, so as to prevent interference between the temple 400 in the folded state and the massage unit 100 mounted on the connecting head 2 on the second plate body 16.
[0118] For example, in the example shown in Figure 1 , the eye massager is in the form of glasses. The body 300 includes a left frame part 3A and a right frame part 3B. The left frame part 3A includes four frames, and the right frame part 3B also includes four frames. The left frame part 3A is connected with a left temple 4A, and the right frame part 3B is connected with a right temple 4B. Connecting heads 2 are respectively arranged on the upper and lower frames of the left frame part 3A, and a massage unit 100 is respectively mounted on each connecting head 2. However, no connecting head 2 is arranged on the left side frame of the left frame part 3A to avoid mutual interference with the left temple 4A and the right temple 4B in the folded state. Connecting heads 2 are respectively arranged on the upper and lower frames of the right frame part 3B, and a massage unit 100 is respectively mounted on each connecting head 2. However, no connecting head 2 is arranged on the right side frame of the right frame part 3B to avoid mutual interference with the left temple 4A and the right temple 4B in the folded state.
[0119] In some embodiments of the invention, the substrate 1 is installed inside the body 300, the connecting head 2 penetrates the body 300, the inner end in the axial direction of the connecting head 2 is located inside the body 300 to be connected to the substrate 1, and the outer end in the axial direction of the connecting head 2 is located outside the body 300. The massage unit 100 is located outside the body 300 and installed at the outer end in the axial direction of the connecting head 2. Thus, the substrate 1 can be protected, and the connection part between the connecting head 2 and the substrate 1 can be protected. Of course, the invention is not limited to this. In other embodiments of the invention, the substrate 1 can also be used as a part of the appearance surface of the body 300, which will not be elaborated here.
[0120] In some embodiments of the invention, such as Figure 2 and Figure 3 shown, the width of the second plate body 16 is smaller than the width of the first plate body 15 of the substrate 1. Thus, the part of the substrate 1 where the connecting head 2 can be not provided is set to be narrower in width, so as to meet the width requirements of the left and right side frames of the eye massager, and the resistance of the substrate 1 to deformation can be reduced, making the substrate 1 softer and easier to be clamped and shaped by the pressing plate 4, so that the shape of the substrate 1 is shaped to be adapted to the shape of the left frame part or the right frame part. For example, the left frame part and the right frame part are arc-shaped. The reason is that the shape of the human head is approximately spherical, and setting the left frame part and the right frame part as arc-shaped can be adapted to the shape of the human head, so that the massage unit can contact the user's eye area more effectively. Moreover, it can be ensured that the part of the substrate 1 for setting the connecting head 2 is set to be wider in width, so as to ensure the connection reliability and stability between the connecting head 2 and the substrate 1. Among them, the width refers to the dimension in the radial direction of the open ring.
[0121] In some embodiments of the invention, such as Figure 4 and Figure 5 shown, a notch 161 is provided on the second plate body 16. The number of the notches 161 is at least one, so that the resistance of the substrate 1 to deformation can be reduced, making the substrate 1 softer and easier to be shaped.
[0122] In some embodiments of the invention, such as Figure 14 and Figure 15 shown, the body 300 includes a mounting shell 3 and a pressing plate 4. Combining Figure 16 and Figure 17 , the substrate 1 is adapted to be clamped between the pressing plate 4 and the mounting shell 3. It can be understood that the mounting shell 3 has a through hole 31 for the connecting head 2 to pass through. Since the mounting member 200 is made of a flexible material, when pulling the connecting head 2 along the direction from the substrate 1 to the mounting shell 3, it is easy to pull out a part of the substrate 1 from the through hole 31 on the mounting shell 3. Thus, by providing the pressing plate 4, the substrate 1 can be limited to avoid the problem that a part of the substrate 1 is pulled out from the through hole 31 on the mounting shell 3 by pulling the connecting head 2.
[0123] In some embodiments, the pressing plate 4 has an avoidance opening 43 disposed opposite to the connector 2. Thus, the axial movement of the connector 2 can be avoided, so that the overall thickness of the body 300 can be reduced. It can be understood that if the pressing plate is set in the form of having an avoidance protrusion, that is, only the outer edge of the substrate is pressed, and the avoidance protrusion is spaced apart from the substrate to form an avoidance space for avoiding the axial movement of the connector, this will make the body thick and heavy.
[0124] In some embodiments of the invention, such as Figure 18 As shown, the substrate 1 has a connection hole 17. Thus, the substrate 1 can be connected to the body 300 by using the connection hole 17, so as to achieve fixation simply and effectively. For example, the substrate 1 and the body 300 can be fixed together by using the connection hole 17 and a screw post, a screw, etc. that cooperate with the connection hole 17.
[0125] In some embodiments of the invention, such as Figure 18 As shown, the substrate 1 has a positioning hole 18. Thus, the substrate 1 and the body 300 can be positioned by using the positioning hole 18, so as to improve the assembly efficiency. For example, the substrate 1 and the body 300 can be positioned together by using the positioning hole 18 and a positioning post that cooperate with the positioning hole 18.
[0126] In some specific examples, such as Figure 16 and Figure 17 As shown, the side of the substrate 1 is provided with a flanging 14 extending toward the thickness side of the substrate 1, so as to improve the strength of the edge of the substrate 1. Moreover, if in the above specific example, the side of the substrate 1 can be provided with a flanging 14 extending away from the mounting shell 3, the flanging 14 stops the side of the pressing plate 4, and the flanging 14 stops and bonds the side of the pressing plate 4. Thus, the cooperation reliability between the substrate 1 and the pressing plate 4 can be improved, and when the substrate 1 and the pressing plate 4 are bonded, the fitting area can be increased, so that the bonding between the pressing plate 4 and the substrate 1 is more reliable, and thus the problem that the substrate 1 is pulled out from the through hole 31 on the mounting shell 3 by pulling the connector 2 can be better avoided.
[0127] In some embodiments, such as Figure 16 and Figure 17 As shown, only one side of the two width sides of the substrate 1 has a flanging 14, that is to say, one of the two width sides of the substrate 1 can have a flanging 14, and the other side can not have a flanging 14, so as to reduce the width of the substrate 1, which is beneficial to the miniaturization of the product.
[0128] For example, in Figure 16 and Figure 17In the specific example shown, the substrate 1 can be an open ring shape. The outer ring side of the substrate 1 has a flanging 14, and the inner ring side does not have the flanging 14. Thus, by only arranging the flanging 14 on the outer ring side, not only can it play a relatively effective blocking role for the pressing plate 4, but also the width of the substrate 1 can be reduced, which is beneficial to the miniaturization of the product.
[0129] In some embodiments of the invention, such as Figure 17 shown, an installation groove 13 is provided on the substrate 1. The installation groove 13 is suitable for installing the pressing plate 4, and the substrate 1 is clamped between the pressing plate 4 and the installation shell 3. Thus, by arranging the installation groove 13, the installation stability of the pressing plate 4 can be improved, and the overall structural compactness of the massager 1000 can be improved. And the groove wall of the installation groove 13 can form a certain degree of protection for the pressing plate 4. For example, the installation groove 13 can be defined by the main body of the substrate 1 and the above-mentioned flanging 14. Another example is that a thinning area can also be provided on the substrate 1 as the installation groove 13, which will not be elaborated here.
[0130] In some embodiments of the invention, the substrate 1 is formed into a flat plate structure. That is to say, the substrate 1 is in a flat plate shape in the natural state, that is, the surface is a plane and is basically of an equal thickness form. Thus, it is easier to be molded and demolded. Of course, the invention is not limited thereto. In other embodiments of the invention, the substrate 1 can also be a stepped plate or a curved plate, etc., which will not be elaborated here.
[0131] Next, the massager 1000 according to the embodiments of the second aspect of the present invention will be described.
[0132] Such as Figure 14 and Figure 15 shown, the massager 1000 includes: a body 300, a mounting member 200, and a plurality of massage units 100. The mounting member 200 is the mounting member 200 for the massager 1000 according to the embodiments of the first aspect of the present invention. The substrate 1 is mounted on the body 300. The plurality of massage units 100 are arranged in one-to-one correspondence with the plurality of connecting heads 2. The plurality of massage units 100 are respectively mounted on the plurality of connecting heads 2, and each massage unit 100 closes the core-pulling opening 202 of the corresponding connecting head 2. Thus, the structure of the massager 1000 is simple and convenient for assembly.
[0133] In some specific examples of the invention, the massage unit 100 can include a unit housing and a massage device arranged in the unit housing, such as a hot compress massage device, a vibration massage device, or an electro-pulse massage device. During installation, the massage unit 100 can be completely arranged outside the connecting head 2, or at least part of the massage unit 100 can be assembled inside the connecting head 2, which is not limited here. When the massage unit 100 is mounted on the corresponding connecting head 2, the massage unit 100 can close the corresponding core-pulling opening 202.
[0134] In some embodiments of the invention, such as Figure 20As shown, at least a part of the massage unit 100 is received in the communication cavity 201. Thereby, the structural compactness can be improved, and the connection stability and reliability of the massage unit 100 can be improved. For example, in Figure 20 In the specific example shown, a first positioning member 222 is provided in each communication cavity 201, and a second positioning member 101 is provided on each massage unit 100. The first positioning member 222 and the second positioning member 101 cooperate to position the massage unit 100. Thereby, the assembly of the massage unit 100 is facilitated, and an anti-fooling effect is achieved. For example, in Figure 20 In the example shown, the first positioning member 222 can be configured as a convex portion provided in the communication cavity 201, and the second positioning member 101 can be configured as a groove provided on the unit housing. Thereby, the positioning cooperation is facilitated, but the invention is not limited thereto, as long as the positioning cooperation can be achieved.
[0135] In some embodiments of the invention, such as Figure 15 As shown, the body 300 includes a mounting shell 3 and a pressing plate 4. The substrate 1 is clamped between the pressing plate 4 and the mounting shell 3, and the mounting shell 3 has a through hole 31 adapted for the connection head 2 to pass through. It can be understood that the mounting shell 3 has the through hole 31 for the connection head 2 to pass through. Since the mounting member 200 is made of a flexible material, when the connection head 2 is pulled along the direction from the substrate 1 to the mounting shell 3, it is easy to pull out a part of the substrate 1 from the through hole 31 of the mounting shell 3. Thereby, by providing the pressing plate 4, the substrate 1 can be limited to avoid the problem that a part of the substrate 1 is pulled out from the through hole 31 of the mounting shell 3 by pulling the connection head 2.
[0136] In some embodiments of the invention, such as Figure 17 As shown, the mounting shell 3 and the pressing plate 4 are fixedly connected by a fastener 7. Thereby, it can be simply and effectively ensured that the mounting shell 3 and the pressing plate 4 clamp the flexible substrate 1, so that the massage unit 100 mounted on the mounting member 200 can work stably and reliably. Of course, the invention is not limited thereto, and the pressing plate 4 can also be fixed to the substrate 1, and the substrate 1 can be fixed to the mounting shell 3.
[0137] In some embodiments of the invention, the substrate 1 can be bonded to the pressing plate 4. Thereby, the problem that a part of the substrate 1 is pulled out from the through hole 31 of the mounting shell 3 by pulling the connection head 2 can be better avoided.
[0138] In some embodiments of the invention, such as Figure 16 - Figure 19As shown, screw posts 32 are provided on the mounting shell 3, and connection holes 17 are provided on the substrate 1. The screw posts 32 pass through the connection holes 17, and the fastener 7 is a screw with its head abutting against the pressing plate 4. The rod portion of the screw passes through the pressing plate 4 and is threadedly connected to the screw post 32. Thus, the fixed connection between the mounting shell 3 and the pressing plate 4 can be simply and effectively achieved, and it can be ensured that there are no screw holes or screw heads on the side of the mounting shell 3 away from the pressing plate 4, improving the sealing of the appearance. And the relative limitation between the mounting shell 3 and the substrate 1 can be realized by the cooperation of the screw posts 32 passing through the connection holes 17, improving the installation stability and reliability.
[0139] In some embodiments of the invention, as Figure 15 shown, a sleeve post 41 sleeving on the screw post 32 is provided on the pressing plate 4. One axial end of the sleeve post 41 has a sunk groove, the head of the screw is embedded in the sunk groove, and the rod portion of the screw passes through the sleeve post 41 and is threadedly connected to the screw post 32. Thus, the pre-positioning between the pressing plate 4 and the mounting shell 3 can be realized by the cooperation of the sleeve post 41 and the screw post 32, and by providing the sunk groove, the exposure of the screw head can be avoided, improving the flatness of the surface.
[0140] In some embodiments of the invention, as Figure 17 - Figure 19 shown, positioning posts 33 are provided on the mounting shell 3, through holes 42 are provided on the pressing plate 4, and positioning holes 18 are provided on the substrate 1. The positioning posts 33 pass through the positioning holes 18 and the through holes 42. Thus, the positioning function can be simply and effectively achieved, improving the assembly efficiency and providing convenience for subsequent screw connection. For example, the positioning posts 33 can be hot melt posts integrally formed on the mounting shell 3, etc.
[0141] In some embodiments of the invention, an included angle exists between the central axis of the through hole 42 and the thickness direction of the pressing plate 4. That is to say, the through hole 42 is configured as an inclined hole opened on the pressing plate 4, and the positioning post 33 is correspondingly configured as an inclined post. Thus, when the positioning post 33 cooperates with the through hole 42, a certain limiting effect on the pressing plate 4 can be achieved in the thickness direction of the pressing plate 4. Thus, during the process of locking the screw, the positioning post 33 can play a reliable positioning role, avoiding the through hole 42 of the pressing plate 4 from disengaging from the positioning post 33 and causing positioning failure.
[0142] In some embodiments of the invention, as Figure 14 and Figure 15As shown, the body 300 further includes a protective case 6 and a flexible circuit board 5. The protective case 6 is located on the side of the pressing plate 4 away from the mounting case 3. The protective case 6 is assembled and connected to the mounting case 3. The flexible circuit board 5 is disposed between the pressing plate 4 and the protective case 6 and is electrically connected to a plurality of massage units 100. Thus, a receiving cavity can be formed between the protective case 6 and the mounting case 3, and the substrate 1, the pressing plate 4, and the flexible circuit board 5 can all be protected in the receiving cavity, thereby improving the use safety of the massager 1000. Moreover, by disposing the flexible circuit board 5 on the side of the pressing plate 4 away from the substrate 1, it is convenient to electrically connect the massage unit 100 to the flexible circuit board 5.
[0143] In some embodiments of the invention, as Figure 14 and Figure 15 shown, the massager 1000 is an eye massager. The massager 1000 further includes temple pieces 400. The temple pieces 400 are connected to the body 300. The body 300 includes two frame portions 301. A massage unit 100 is provided on each of the upper and lower frames of each frame portion 301. Thus, when the user wears it, the upper and lower parts of the eye socket can be massaged respectively, and the massage effect is good.
[0144] For example, in the specific example shown in Figure 14 and Figure 15 , the body 300 includes a left frame portion 3A and a right frame portion 3B. The left frame portion 3A and the right frame portion 3B respectively correspond to the left and right eyes of the human body. The left frame portion 3A and the right frame portion 3B can be symmetrically arranged. Therefore, for the sake of simplicity of description, only the left frame portion 3A will be described in detail. The left frame portion 3A is hollow, and a lens can be selectively disposed in the hollow portion. A plurality of massage units 100 are provided in the upper frame area of the left frame portion 3A at intervals in the left-right direction, and a plurality of massage units 100 are provided in the lower frame area of the left frame portion 3A at intervals in the left-right direction.
[0145] To achieve the installation of the massage unit 100, in combination with Figure 18 and Figure 19 , a C-shaped mounting member 200 is provided inside the left frame portion 3A. The substrate 1 of the mounting member 200 includes two first plate bodies 15 spaced up and down. The two first plate bodies 15 are respectively opposite to the upper and lower frame areas. An upper pressing plate 4a is provided on one side of the thickness of the upper first plate body 15, and a lower pressing plate 4b is provided on one side of the thickness of the lower first plate body 15.
[0146] In combination with Figure 15, the flexible circuit board 5 is configured to be adapted to the shape of the body 300. A reinforcing plate may be provided at a position of the flexible circuit board 5 corresponding to the left side frame of the left frame portion 3A. For example, it may be a steel sheet or the like. The reinforcing plate may be screwed to the protruding screw posts in the left frame portion 3A to clamp the area of the substrate 1 opposite to the left side frame of the left frame portion 3A, that is, to clamp the second plate body 16 of the substrate 1 within the left frame portion 3A.
[0147] In some specific examples, electronic components may be provided at a position of the flexible circuit board 5 corresponding to the right side frame of the left frame portion 3A, that is, electronic components are provided corresponding to the position of the annular opening of the mounting member 200 within the left frame portion 3A. Since there is no substrate 1 here, interference with the electronic components can be avoided, the working reliability of the massager 1000 can be improved, and the thickness of the body 300 can be reduced, making the massager 1000 thinner and more comfortable to wear.
[0148] In a specific example of the invention, as Figure 14 and Figure 15 shown, the eye massager according to an embodiment of the present invention may include a body 300, two temple pieces 400, a plurality of massage units 100, and two mounting members 200. The left end and the right end of the body 300 are respectively connected to the temple pieces 400 so that the two temple pieces 400 are respectively rotatably connected to the left and right sides of the body 300. The massage units 100 are floatingly and deformably connected to the inner side of the body 300 (i.e., the side close to the user's eyes). As Figure 21 and Figure 22 shown, the body 300 includes a frame portion 301 and a connecting portion 302. The connecting portion 302 is connected to the end of the frame portion 301, and the connecting portion 302 protrudes from the frame portion 301. The temple piece 400 is rotatably connected to the connecting portion 302. By providing the connecting portion 302 and extending the connecting portion 302, the connection between the body 300 and the temple piece 400 can be facilitated, and the installation difficulty caused by the interference of the frame portion 301 can be avoided.
[0149] As Figure 21 shown, the connecting portion 302 and the frame portion 301 are configured to be a smooth arc, and the distance between the two connecting portions 302 gradually increases. In this way, when the eye massager meets the normal wearing function, the frame portion 301 can be set smaller, which is beneficial to reducing the size of the eye massager and miniaturizing the product. For example, the length of the connecting portion 302 protruding from the frame portion 301 may be 1.92 cm, so as to be adapted to the size of the human head, and the frame portion 301 can be made smaller.
[0150] In some embodiments, at least one of the temple arms 400 includes a power supply device 83 and / or an electronic control device 84 that is electrically connected to the massage unit 100. Thus, compared with arranging the power supply device and / or the electronic control device in the main body, the weight and thickness of the main body 300 can be reduced. In addition, it should be noted that the specific type of the power supply device 83 is not limited. For example, it can be a common battery, a rechargeable battery, etc., and the electronic control device 84 can be a circuit board, an electric pulse generating device, etc.
[0151] As Figure 22 and Figure 23 In the specific example shown, the temple arm 400 may include a mounting portion 81 and a supporting portion 82. The mounting portion 81 is hollow inside for mounting the power supply device 83 and the electronic control device 84. The supporting portion 82 has deformability to be adapted to closely fit the head shapes of different users. In the storage state, the supporting portion 82 contacts the side portion of the main body 300, and the supporting portion 82 extends obliquely downward in the direction away from the main body 300. In this way, when rotating and storing, the supporting portion 82 will not interfere with the mounting portion 81.
[0152] As Figure 22 and Figure 23 As shown, the temple arm 400 has a free end 85 and a connection end 86 connected to the main body 300. The straight-line length from the free end 85 to the connection end 86 is L1, and the straight-line length from the left end to the right end of the main body 300 is L2. The length of L1 is greater than the length of L2. In this way, when the temple arm 400 rotates and stores, the free end 85 of the temple arm 400 will cross over the main body 300, so that the free end 85 of the temple arm 400 will not interfere with the massage unit 100 or the lens inside the inner ring of the frame portion 301, which can play a role in protecting the massage unit 100 and the lens in a way. For example, the length from the rotation axis of the free end 85 of the temple arm 400 to the connection end 86 is 15.40 cm, and the distance between the rotation axes of the two connection portions 302 is 14.40 cm, so that it can be basically adapted to the eye size of the human body and is convenient to wear.
[0153] In some embodiments, the supporting portion 82 can be made of a soft material. When the temple arm 400 contacts the main body 300 during storage, there will be no hard collision, the noise is small, it is not easy to be scratched, and it also plays a shock-absorbing role to ensure the structural stability of the power supply device 83 and the flexible circuit board 5 inside the temple arm 400. In addition, when the temple arm 400 rotates to the storage state, one of the temple arms 400 will press on the other temple arm 400 in a crossed shape. Thus, when storing, the eye massager can be stably placed on the tabletop with the two temple arms 400 and the two frame portions 301 as the contact parts.
[0154] In the description of this specification, the description referring to terms such as "one embodiment", "some embodiments", "examples", "specific examples", or "some examples", etc. means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the invention. In this specification, the schematic expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.
[0155] Although the embodiments of the invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the invention, and the scope of the invention is defined by the claims and their equivalents.
Claims
1. An installation member (200) for a massager (1000), the massager (1000) comprising a body (300) and a massage unit (100), characterized in that, The mounting member (200) is an integrally formed flexible member and includes: A substrate (1), the substrate (1) being adapted to be mounted on the body (300), and a plurality of through holes (11) being formed on the substrate (1); and A plurality of connectors (2), the connectors (2) being adapted to mount the massage unit (100), and each of the through holes (11) being respectively connected to one of the connectors (2). One end of each connector (2) away from the substrate (1) is open to form a core-pulling port (202). A communication cavity (201) is formed in each of the connectors (2). One end of the communication cavity (201) in the axial direction of the connector (2) communicates with the through hole (11), and the other end of the communication cavity (201) in the axial direction of the connector (2) communicates with the core-pulling port (202). Wherein, the communication cavity (201) is configured such that: when the connector (2) does not deform, all of the core (A3) in the communication cavity (201) can be withdrawn from the core-pulling port (202), or a part of the core (A3) in the communication cavity (201) can be withdrawn from the core-pulling port (202), and the remaining part of the core (A3) in the communication cavity (201) can be withdrawn from the through hole (11), so that the mounting member (200) can be mold-opened along the axial direction of the connector (2). Each of the connectors (2) includes a mounting column portion (22) and a connecting column portion (21). The connecting column portion (21) is connected between the mounting column portion (22) and the substrate (1). Both the mounting column portion (22) and the connecting column portion (21) are hollow column structures. One end of the connecting column portion (21) away from the mounting column portion (22) is connected to the through hole (11). One end of the mounting column portion (22) away from the connecting column portion (21) is open to form the core-pulling port (202). Wherein, the cross-sectional area of the inner cylindrical surface of the mounting column portion (22) is larger than the cross-sectional area of the outer cylindrical surface of the connecting column portion (21).
2. The mounting member (200) for the massager (1000) according to claim 1, characterized in that, One end of the connecting column portion (21) away from the substrate (1) is directly connected to one end of the mounting column portion (22) close to the substrate (1).
3. The mounting member (200) for the massager (1000) according to claim 1, characterized in that, The mounting column portion (22) and the connecting column portion (21) are coaxially arranged.
4. The mounting member (200) for the massager (1000) according to claim 1, characterized in that, The wall thickness of the connecting column portion (21) is smaller than the wall thickness of the mounting column portion (22).
5. The mounting member (200) for a massager (1000) according to claim 1, characterized in that, The wall thickness at the connection between the connecting column portion (21) and the through hole (11) is smaller than the wall thickness of the mounting column portion (22).
6. The mounting member (200) for the massager (1000) according to claim 1, characterized in that, A thinning portion (12) is formed at the connection between the connector (2) and the substrate (1). The wall thickness of the thinning portion (12) is smaller than the wall thickness of at least a part of the communication cavity (201).
7. The mounting member (200) for the massager (1000) according to claim 6, characterized in that, The thinning portion (12) is configured as a groove surrounding the connector (2). The wall thickness of the groove is smaller than the wall thickness of at least a part of the communication cavity (201).
8. The mounting member (200) for the massager (1000) according to claim 1, characterized in that, A plurality of the connecting heads (2) form a multi-row massage group (20). Each row of the massage group (20) includes a plurality of the connecting heads (2) arranged in a column direction, and the multi-row massage groups (20) are arranged at intervals in a row direction.
9. The mounting member (200) for the massager (1000) according to claim 1, characterized in that, The substrate (1) includes: two first plate bodies (15) and a second plate body (16). The two first plate bodies (15) are arranged at intervals, and two ends of the second plate body (16) are respectively connected to the two first plate bodies (15). Moreover, the two first plate bodies (15) and the second plate body (16) configure the substrate (1) into an open annular structure, and the connecting heads (2) are arranged on the two first plate bodies (15).
10. The mounting member (200) for the massager (1000) according to claim 9, characterized in that, A notch (161) is provided on the second plate body (16).
11. The mounting member (200) for a massager (1000) according to claim 9, characterized in that, The width of the second plate body (16) is smaller than the width of the first plate body (15).
12. The mounting member (200) for a massager (1000) according to any one of claims 1-11, characterized in that, A flanging (14) extending toward the thickness side of the substrate (1) is provided on the side of the substrate (1).
13. The mounting member (200) for a massager (1000) according to claim 12, characterized in that, Only one side of the two width sides of the substrate (1) has the flanging (14).
14. The mounting member (200) for the massager (1000) according to claim 13, characterized in that, The substrate (1) is an open ring, and the outer ring side of the substrate (1) has the flanging (14), while the inner ring side of the substrate (1) does not have the flanging (14).
15. The mounting member (200) for a massager (1000) according to any one of claims 1-11, characterized in that, The substrate (1) is formed into a flat plate structure.
16. The mounting member (200) for the massager (1000) according to any one of claims 1-11, characterized in that, The substrate (1) has connecting holes (17) and / or positioning holes (18).
17. A massager (1000), characterized in that, Comprising: A body (300); A mounting member (200), which is the mounting member (200) for a massager (1000) according to any one of claims 1-16, and the substrate (1) is mounted on the body (300); A plurality of massage units (100), and the plurality of massage units (100) are respectively mounted on the plurality of connecting heads (2), and each massage unit (100) closes the core-pulling opening (202) of the corresponding connecting head (2).
18. The massager (1000) according to claim 17, characterized in that, At least a part of the massage unit (100) is received in the communication cavity (201).
19. The massager (1000) according to claim 18, wherein, A first positioning member (222) is provided in each communication cavity (201), and a second positioning member (101) is provided on each massage unit (100). The first positioning member (222) and the second positioning member (101) cooperate to position the massage unit (100).
20. The massager (1000) according to claim 17, characterized in that, The substrate (1) is mounted in the body (300), the connecting head (2) penetrates through the body (300), the axial inner end of the connecting head (2) is located in the body (300) to be connected to the substrate (1), the axial outer end of the connecting head (2) is located outside the body (300), and the massage unit (100) is located outside the body (300) and mounted on the axial outer end of the connecting head (2).
21. The massager (1000) according to claim 20, characterized in that, The body (300) includes a mounting shell (3) and a pressing plate (4). The substrate (1) is clamped between the pressing plate (4) and the mounting shell (3), and the mounting shell (3) has a through hole (31) adapted for the connecting head (2) to pass through.
22. The massager (1000) according to claim 21, characterized in that, The mounting shell (3) and the pressing plate (4) are fixedly connected by fasteners (7).
23. The massager (1000) according to claim 22, characterized in that, The mounting shell (3) is provided with screw posts (32), the substrate (1) is provided with connection holes (17), the screw posts (32) pass through the connection holes (17), the fastener (7) is a screw and its head abuts against the pressing plate (4), and the rod portion of the screw passes through the pressing plate (4) and is threadedly connected to the screw posts (32).
24. The massager (1000) according to claim 23, characterized in that, The pressing plate (4) is provided with a sleeve post (41) sleeved on the screw post (32). One axial end of the sleeve post (41) has a counterbore, the head of the screw is embedded in the counterbore, and the rod portion of the screw passes through the sleeve post (41) and is threadedly connected to the screw posts (32).
25. The massager (1000) according to claim 21, characterized in that, The mounting shell (3) is provided with positioning posts (33), the pressing plate (4) is provided with through holes (42), and the substrate (1) has positioning holes (18). The positioning posts (33) pass through the positioning holes (18) and the through holes (42).
26. The massager (1000) according to claim 25, characterized in that, There is an included angle between the central axis of the through hole (42) and the thickness direction of the pressing plate (4).
27. The massager (1000) according to claim 21, wherein, The substrate (1) is bonded to the pressing plate (4).
28. The massager (1000) according to claim 21, characterized in that, The body (300) further includes a protective shell (6) and a flexible circuit board (5). The protective shell (6) is located on the side of the pressing plate (4) away from the mounting shell (3). The protective shell (6) is assembled and connected to the mounting shell (3). The flexible circuit board (5) is arranged between the pressing plate (4) and the protective shell (6) and is electrically connected to a plurality of the massage units (100).
29. The massager (1000) according to claim 21, wherein, The pressing plate (4) has an avoidance opening (43) arranged opposite to the connection head (2).
30. The massager (1000) according to any one of claims 17-29, characterized in that, The massager (1000) is an eye massager. The massager (1000) further includes temple pieces (400). The temple pieces (400) are connected to the body (300). The body (300) includes two frame parts (301), and the massage units (100) are respectively arranged on the upper and lower frames of each frame part (301).
31. The massager (1000) according to claim 30, characterized in that, At least one of the temple pieces (400) includes a power supply device (83) and / or an electronic control device (84) electrically connected to the massage unit (100).
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