Glasses structure supported by cheekbone
The glasses feature a cheekbone-supported structure with temple components designed to support the cheekbones, distributing weight and clamping force. This solves the discomfort on the bridge of the nose and ears caused by prolonged wear of traditional glasses, providing a stable and comfortable wearing experience. It also adapts to different head shapes and offers personalized functionality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-24
- Publication Date
- 2026-03-27
AI Technical Summary
Traditional glasses are supported by nose pads and temples. Wearing them for a long time can easily cause discomfort to the bridge of the nose and ears, especially for children, particularly those under 12 years old, who may experience head and facial deformation due to gravity and clamping force.
Design a zygomatic bone support eyeglass structure. The temple assembly includes a support member and an ear hook member. The support member abuts against the zygomatic bone through a support surface to distribute gravity and clamping force. The temple assembly includes an elastic layer, a buffer layer, and an outer shell layer, an airbag assembly, and a clamp member to provide stable and comfortable support.
It reduces pressure on the ears and bridge of the nose, improving wearing comfort, especially during long-term wear, reducing local discomfort and minimizing impact on the bridge of the nose. It adapts to different head shapes and provides personalized and intelligent functions.
Smart Images

Figure CN224052509U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glasses technical field, especially in a kind of glasses structure of malar bone support. BACKGROUND
[0002] Traditional glasses are usually supported on the nose bridge by nose pad, and the leg is hung on the ear, and long time wearing can cause nose bridge and ear discomfort, and glasses exert downward gravity and inward clamping force to human head and face, gravity compresses nose bridge and ear, and clamping force compresses temporal region. Adult nose bridge is not easy to form deformation under long-term stress, but the using group of glasses has a part of children under 12 years old, and the using group uses glasses for a long time every day, even if glasses are light, after long time gravity and clamping force compression, there is still a greater possibility to cause deformation to children head and face. And, nasal cartilage, temporal region on the side of head is relatively weak, whether adult or children, under long-term gravity and clamping force, discomfort also appears, therefore, glasses capable of converting glasses frame stress position are needed to reduce the influence of conventional glasses on human face. SUMMARY
[0003] The main purpose of the utility model is to provide a kind of glasses structure of malar bone support, to change the position of the exertion force to human head when wearing glasses, reduce the influence on human face.
[0004] To achieve the above-mentioned purpose, the utility model provides a kind of glasses structure of malar bone support, comprising:
[0005] glasses frame assembly;
[0006] leg assembly, the leg assembly includes two legs, each of the leg includes a connecting piece, a support and an ear hook, the connecting piece is connected to the support and one end of the glasses frame assembly at both ends of the extension direction, the ear hook is connected to one end of the support away from the connecting piece, the ear hook is used to wear the glasses structure of malar bone support on the ear, the side of the support facing the head is formed with a support surface, and the support surface is used to abut against the malar bone.
[0007] In an embodiment, the support includes an elastic layer, a buffer layer and an outer shell layer, the elastic layer, the buffer layer and the outer shell layer are sequentially stacked in the direction away from the human head.
[0008] In an embodiment, the support further includes an abutting portion, the abutting portion is connected to the outer shell layer and extends in the direction close to the head, the abutting portion penetrates the elastic layer and the buffer layer and is exposed to the elastic layer, and the abutting portion is used to abut against the human malar bone.
[0009] In an embodiment, the material of the abutting portion is one of polystyrene and silica gel.
[0010] In an embodiment, the ear hook comprises a hooking portion and a positioning portion, the positioning portion is connected to an end of the hooking portion away from the support, the hooking portion is in an arc structure to be lapped on the ear of the human body, and the positioning portion is provided with a positioning surface facing the head of the human body to abut the zygomatic arch of the human body.
[0011] In an embodiment, the support is provided with a gas bag assembly, the gas bag assembly comprises a plurality of spaced gas bag units, and the distance between two adjacent gas bag units is a, 0.5mm≤a≤1.5mm.
[0012] In an embodiment, the hooking portion and the positioning portion are both provided with a gas bag assembly, and the gas bag assemblies of the support, the hooking portion and the positioning portion are distributed in a triangular shape.
[0013] In an embodiment, the malar bone supporting glasses further comprise a hoop connecting member, the hoop connecting member comprises a connecting segment and a hoop segment, the connecting segment comprises two, and the two ends of the connecting segment are connected to the hoop segment and the support respectively, the hoop segment is arranged in an arc shape, and the angle of the connecting segment away from the head of the human body along the vertical direction is b, 15°≤b≤30°.
[0014] In an embodiment, the hoop segment and the connecting segment are hollow, the hoop segment is provided with a control assembly, the support is further provided with a massage assembly, and the massage assembly is electrically connected to the control assembly.
[0015] In an embodiment, the bottom of the support is provided with a mounting portion, the mounting portion and the support enclose a mounting hole to connect a band-shaped member.
[0016] The utility model discloses a kind of glasses structures of malar bone support, including frame assembly and temple component, temple component is further subdivided into connecting piece, support and ear hook piece.Connecting piece two ends are connected support and frame assembly respectively, ear hook piece is used to wear in ear, and the side of support facing head forms curved surface support surface, for adhering and abutting malar bone part.Through the setting of ear hook piece and support, the glasses structure of malar bone support not only can be stably worn in ear, but also can provide additional support force by the contact of support surface and malar bone, to reduce the pressure of ear.In addition, malar bone part and ear support the weight of the glasses structure of malar bone support, avoid the oppression of conventional glasses with nose pad to nasal arch, so that glasses are more comfortable when wearing, especially in the case of long time wearing, can effectively disperse pressure, reduce the discomfort caused by local excessive stress, and the influence of long time wearing glasses to nasal arch, it is favorable to improve the wearing experience of user. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or prior art, the drawings needed to be used in the embodiment or prior art description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and those skilled in the art can obtain other drawings from the structure shown in these drawings without creating labor.
[0018] Figure 1 Structure diagram of an embodiment of the glasses structure of malar bone support provided by the utility model is shown in the figure.
[0019] Figure 2 Structure diagram of another embodiment of the glasses structure of malar bone support provided by the utility model is shown in the figure. Figure 1 Bottom view of the glasses structure of malar bone support.
[0020] Figure 3 Structure diagram of another embodiment of the glasses structure of malar bone support provided by the utility model is shown in the figure.
[0021] Figure 4 Rear view of the glasses structure of malar bone support. Figure 1
[0022] Sectional view of an embodiment of the support in the glasses structure of malar bone support provided by the utility model. Figure 5
[0023] Sectional view of another embodiment of the support in the glasses structure of malar bone support provided by the utility model. Figure 6 Explanation of reference numerals:
[0024]
[0025] 1000, glasses structure for supporting malar bone; 1, frame assembly; 2, leg assembly; 21, connecting piece; 22, supporting piece; 221, elastic layer; 222, buffer layer; 223, shell layer; 224, abutting portion; 225, air bag assembly; 226, massage assembly; 23, ear hook piece; 231, hooking portion; 232, positioning portion; 3, hoop connecting piece; 31, connecting section; 32, hoop connecting section; 4, mounting portion.
[0026] The purposes, functional features and advantages of the present application will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION
[0027] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0028] It should be noted that if the embodiments of the present application involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative positional relationship, movement condition, etc. between the components in a certain specific posture, and if the specific posture changes, the directional indications also change accordingly.
[0029] In addition, if the embodiments of the present application involve descriptions of "first", "second", etc., the descriptions of "first", "second", etc. are only for description purposes, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features with "first" and "second" can explicitly or implicitly include at least one of the features. In addition, "and / or" or "and / or" appearing throughout the text means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B simultaneously satisfy the scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skilled in the art, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the scope of protection required by the present application.
[0030] Traditional glasses usually rely on the nose pad to support the nose bridge, and the glasses legs hang on the ears. Long-term wearing can cause discomfort to the nose bridge and ears. The glasses exert a downward gravity and an inward clamping force on the head and face of the person. The gravity presses the nose bridge and ears, and the clamping force presses the temporal region. The nose bridge of an adult is not easy to deform under long-term pressure, but a part of the user group of glasses is children under the age of 12, and the user group uses glasses for a long time every day. Even if the glasses are light, after a long time of gravity and clamping force pressure, there is still a high possibility of causing deformation to the head and face of the child. In addition, the nasal cartilage and the temporal region on the side of the head are relatively weak. Whether it is an adult or a child, discomfort will occur under long-term gravity and clamping force. Therefore, glasses that can change the force position of the glasses frame are needed to reduce the impact of conventional glasses on the human face.
[0031] To solve the above problems, please refer to Figures 1 to 6 The utility model provides a kind of zygomatic bone support glasses structure 1000, including glasses frame assembly 1 and glasses leg assembly 2, glasses leg assembly 2 includes two glasses legs, each glasses leg includes connecting piece 21, support piece 22 and ear hook piece 23, the both ends of connecting piece 21 are connected with support piece 22 and one end of glasses frame assembly 1 respectively, ear hook piece 23 is connected to the end of support piece 22 away from connecting piece 21, ear hook piece 23 is used to wear zygomatic bone support glasses structure 1000 in ear, the side of support piece 22 facing head is formed with support surface, and support surface is used to abut zygomatic bone part.
[0032] The technical scheme of the utility model provides a kind of zygomatic bone support glasses structure 1000 basic structure, including glasses frame assembly 1 and glasses leg assembly 2, glasses leg assembly 2 is further subdivided into connecting piece 21, support piece 22 and ear hook piece 23. The both ends of connecting piece 21 are connected with support piece 22 and glasses frame assembly 1 respectively, and ear hook piece 23 is used to wear in ear, and the side of support piece 22 facing head is formed with curved surface support surface, for adhering and abutting zygomatic bone part. By the setting of ear hook piece 23 and support piece 22, zygomatic bone support glasses structure 1000 not only can be stably worn in ear, but also can provide additional support force by the contact of support surface and zygomatic bone, to reduce the pressure of ear. In addition, zygomatic bone part and ear support the weight of zygomatic bone support glasses structure 1000, avoid the oppression of conventional glasses with nose pad to nose bridge, so that glasses are more comfortable when wearing, especially in the case of long-term wearing, can effectively disperse pressure, reduce the discomfort caused by excessive local force, and the influence of long-term wearing glasses on nose bridge, improve the wearing experience of user.
[0033] In an optional embodiment, to improve the comfort of user when wearing zygomatic bone support glasses structure 1000, please refer to Figure 5The support 22 includes an elastic layer 221, a buffer layer 222, and an outer shell layer 223, which are sequentially stacked in a direction away from the human head. The core of this layered design is to achieve the synergy of multiple functions through the combination of different materials. The presence of the elastic layer 221 enables the support 22 to adapt to the head shapes of different users, providing good fit and ensuring comfort and stability during wear. In addition, the elastic layer can ensure that the user has no obstruction and discomfort during facial activities and muscle movements. Moreover, when the wearer performs facial activities (such as speaking, chewing, laughing, etc.) and head movements (such as lowering the head, raising the head, turning the head, etc.), the shape of the zygomatic bone support surface may change temporarily, and the elastic layer can ensure that the zygomatic bone always fits the support part after the facial activity is completed, thereby ensuring the wearing effect of the zygomatic bone support eyewear structure 1000. The buffer layer 222 further enhances the shock absorption capability of the support 22, which can effectively absorb the pressure and impact generated during wear and reduce the feeling of compression on the head. The outer shell layer 223 serves to protect the internal structure and can also be designed in appearance as needed to improve the aesthetics of the product. This layered structure design not only improves the comfort of wear but also provides the possibility for subsequent functional expansion, such as setting a massage component 226 in the buffer layer 222 or setting a sensor in the elastic layer 221. Through this design, the functionality and adaptability of the support 22 have been significantly improved, providing users with a more comfortable and personalized wearing experience. Optionally, the material of the elastic layer 221 can be similar to memory foam, which has elastic deformation space. It has a certain deformation space to adapt to the size of different user's heads, ensuring the stability during wear, and can also avoid the discomfort caused by the rigid extrusion of the zygomatic bone support eyewear structure 1000 on the user's face, improving the user's wearing experience. The middle buffer layer 222 is made of high molecular materials such as polyethylene closed-cell foam (PE foam), ethylene-vinyl acetate, polyethylene-vinyl acetate (EVA), etc. These materials have excellent elasticity and softness, can maintain shape, and have good resilience for bending and stretching, which has a certain strength and elasticity to ensure the connection and transition between the outer shell layer 223 and the elastic layer 221. The outermost outer shell layer 223 is made of hard plastic, which has certain strength and corrosion resistance to ensure the stability of the support 22.
[0034] In an optional embodiment, to further reduce the impact of long-term wearing of the zygomatic bone support eyewear structure 1000 on the user's face, please refer to Figure 5 and Figure 6The support 22 also includes an abutting portion 224 connected to the shell layer 223 and extending in a direction close to the head. The abutting portion 224 penetrates through the elastic layer 221 and the buffer layer 222 and is exposed to the elastic layer 221. The abutting portion 224 is used to abut against the human cheekbone. The core of this design is to further optimize the contact mode of the support 22 with the human head. Through the arrangement of the abutting portion 224, the contact between the support 22 and the cheekbone is more accurate and concentrated, which can better disperse the pressure and reduce the discomfort caused by excessive local stress. At the same time, the shape and position of the abutting portion 224 can be optimized according to the ergonomics principle, further improving the comfort of wearing. In addition, the existence of the abutting portion 224 also provides the possibility for subsequent functional expansion, such as arranging sensors inside it to realize the function of health monitoring. This design not only improves the functionality and comfort of the support 22, but also provides new ideas and directions for the intelligentization and multifunctional development of the product. Specifically, the abutting portion 224 is made of high-density EPS foam (polystyrene foam) or silicone material. After wearing, the abutting portion 224 on both sides of the eyewear structure 1000 supported by the cheekbone abuts against the position of the cheekbone. On the one hand, the abutting portion 224 on both sides extrudes the cheekbone to further ensure the stability of the eyewear structure 1000 supported by the cheekbone when worn, avoiding the situation that the front end of the eyewear structure 1000 supported by the cheekbone drops under its own gravity when the nose pad is removed, reducing the pressure of the eyewear structure 1000 supported by the cheekbone on the user's nose bridge. On the other hand, the extrusion of the abutting portion 224 on the cheekbone can produce a certain face shaping effect to some extent, especially for children who are still in the development stage. The lateral extrusion of the abutting portion 224 can produce a certain inhibitory effect on the lateral growth of the cheekbone, correcting the position of the cheekbone, thereby reducing the impact of the wide cheekbone on the face.
[0035] In an optional embodiment, to further ensure the stability of the eyewear structure 1000 supported by the cheekbone when worn, please refer to Figures 1 to 3 The ear hook 23 includes a hooking portion 231 and a positioning portion 232. The positioning portion 232 is connected to the end of the hooking portion 231 away from the support 22. The hooking portion 231 is in an arc structure to lap the ear of the human body. The positioning portion 232 faces the head of the human body and forms a positioning surface to abut against the zygomatic arch of the human body. The arc structure of the hooking portion 231 can better fit the shape of the ear, providing stable support and reducing discomfort caused by differences in ear shape. The positioning portion 232 further enhances the stability of the eyewear structure 1000 supported by the cheekbone. Through contact with the zygomatic arch, it can effectively prevent the eyewear structure 1000 supported by the cheekbone from slipping or shifting during wearing. Through this optimization, the functionality and wearing experience of the hook are significantly improved, providing a more stable and comfortable wearing method for the user.
[0036] Further, the support piece 22 is provided with an air bag assembly 225, which includes a plurality of air bag units arranged at intervals, and the interval between adjacent two air bag units is a, and 0.5mm≤a≤1.5mm. The existence of the air bag unit can be dynamically adjusted according to the head shape and pressure distribution of the user, and a more uniform supporting force is provided, so as to reduce the problem of excessive local stress. At the same time, the interval of the air bag assembly 225 is arranged between 0.5mm and 1.5mm, which can ensure that there is enough space between the air bag units for pressure transmission and adjustment, and further optimize the supporting effect. This design not only improves the comfort and adaptability of the support piece 22, but also provides the possibility for subsequent functional expansion, such as realizing the massage function or pressure adjustment function by controlling the inflation and deflation of the air bag, so as to improve the wearing experience of the user. Optionally, the hooking part 231 and the positioning part 232 are both provided with the air bag assembly 225, and the air bag assemblies of the support piece 22, the hooking part 231 and the positioning part 232 are triangularly distributed. Through the wide application of the air bag assembly 225, the functionality and comfort of the entire malar bone supporting glasses structure 1000 are further improved. The air bag assembly 225 arranged in the hooking part 231 and the positioning part 232 can be dynamically adjusted according to the shape and pressure distribution of the ear and temple, and a more uniform supporting force is provided, so as to reduce the problem of excessive local stress. At the same time, the existence of the air bag assembly 225 can also enhance the stability and comfort of the hooking part, and further optimize the wearing experience. This design not only improves the functionality and comfort of the hooking part, but also provides the possibility for subsequent functional expansion, such as realizing the massage function or pressure adjustment function by controlling the inflation and deflation of the air bag.
[0037] By arranging the air bag assembly 225 in the support piece 22, the hooking part 231 and the positioning part 232, on the one hand, the elasticity of the air bag assembly 225 can alleviate the pressure of the malar bone supporting glasses structure 1000 on the wearing part, and relieve the discomfort during wearing, on the other hand, by inflating and deflating the air bag, the tightness of the malar bone supporting glasses structure 1000 during wearing can be adjusted to adapt to the head size of different users, and the universality of the malar bone supporting glasses structure 1000 is improved. Optionally, a control chip and a micro air pump can be arranged in the temple to realize the inflation and deflation of the air bag assembly 225, and a pressure sensor is arranged on the side close to the face to control the inflation amount. When the pressure sensor detects that the pressure of the air bag on the face reaches a preset critical value, the control chip controls the micro air pump to stop inflating to ensure the stability of wearing. In this way, by arranging the air bag assembly 225 in the support piece 22, the hooking part 231 and the positioning part 232, the three form a triangular stable support, which further ensures the stability of the malar bone supporting glasses structure 1000. Optionally, the air bag on the support piece 22 can be arranged on the entire contact surface facing the face of the user, or can be arranged only at the position facing the face of the user of the abutting part 224. The specific arrangement can be selected according to actual needs.
[0038] In an optional embodiment, please refer to Figure 3 and Figure 4 The zygomatic bone supporting glasses structure 1000 further includes a hoop connector 3, which includes a connecting segment 31 and a hoop segment 32. The connecting segment 31 includes two ends, each of which is connected to the hoop segment 32 and the support 22. The hoop segment 32 is arranged in an arc shape. The connecting segment 31 is arranged at an angle b of 15°≤b≤30° away from the human head in the vertical direction. Through the arrangement of the hoop connector 3, the wearing stability and comfort of the zygomatic bone supporting glasses structure 1000 are further enhanced. The arc-shaped hoop segment 32 of the hoop connector 3 can better fit the shape of the head, providing stable support while reducing sliding or deviation caused by head movement. The angle of the connecting segment 31 is set between 15° and 30°, which can ensure that the contact between the hoop connector 3 and the head is more natural and comfortable. By offsetting the connecting segment 31 outward by a certain angle, the side end of the hoop connector 3 is avoided from pressing the temporal region of the user, thereby affecting the wearing experience. Only the upper hoop segment 32 is used to hoop the user's head to ensure stability, without causing excessive compression to the user's wearing experience. This design not only improves the stability and comfort of the zygomatic bone supporting glasses structure 1000, but also provides the possibility for subsequent functional expansion, such as setting sensors or massage elements in the hoop segment 32 to realize health monitoring or massage functions in the top head region.
[0039] In an optional embodiment, please refer to Figure 6 The hoop segment 32 and the connecting segment 31 are hollow inside. The hoop segment 32 is provided with a control assembly, and the support 22 is further provided with a massage assembly 226, which is electrically connected to the control assembly. To reduce the volume of the support 22, a part of the control assembly, such as a control chip and a control valve, can be arranged in the hoop segment 32, reducing the weight of the side end structure of the zygomatic bone supporting glasses structure 1000 to facilitate the user to maintain stability when wearing. Through the arrangement of the control assembly and the massage assembly 226, intelligent functional expansion is realized. The presence of the control assembly allows the user to control the working state of the massage assembly 226 through simple operation, such as adjusting the intensity, mode or time of massage. The arrangement of the massage assembly 226 can provide massage function for the user to relieve head fatigue caused by long-term wearing of the zygomatic bone supporting glasses structure 1000.
[0040] In an optional embodiment, please refer to Figure 3The bottom of the support 22 is provided with a mounting portion 4, and the mounting portion 4 and the support 22 enclose a mounting hole for connecting the band-shaped member. The mounting hole provides more possibilities for the function expansion of the cheekbone supporting glasses structure 1000. Optionally, the band-shaped member can be an elastic band or some other type of face slimming component, which can be selected according to actual needs. The introduction of the elastic band can further enhance the wearing stability of the cheekbone supporting glasses structure 1000, especially in intense exercise or special environment, the elastic band can provide additional fixing effect to prevent the cheekbone supporting glasses structure 1000 from falling off. In addition, the elastic band is tied on the mounting portion 4, and the muscles around the user's cheeks and chin are covered by the elastic band, so as to achieve the effects of assisting face slimming, assisting edema reduction and muscle lifting, and provide more personalized choices for the user, for example, the elastic band of different colors or materials can be selected according to needs, so as to improve the appearance and personalization of the product.
[0041] The above is only an exemplary embodiment of the present application, and does not limit the patent scope of the present application, and any equivalent structural transformation or direct / indirect application in other related technical fields within the technical concept of the present application is included in the patent protection scope of the present application.
Claims
1. A malar support eyeglass structure, characterized by, The application relates to a structure of a zygomatic bone supporting glasses, which comprises a glasses frame assembly and a glasses leg assembly. The glasses leg assembly comprises two glasses legs, each of which comprises a connecting piece, a supporting piece and an ear hook piece, the two ends of the connecting piece are connected with the supporting piece and one end of the glasses frame assembly respectively, the ear hook piece comprises a hooking part and a positioning part, the positioning part is connected to one end of the hooking part away from the supporting piece, the hooking part is in an arc structure and is used for lapping the human ear, the positioning part is used for abutting against the zygomatic arch of the human head, the side of the supporting piece facing the head is provided with a supporting surface, the supporting surface is used for abutting against the malar bone, and the width of the supporting piece is greater than that of the ear hook piece. The supporting piece comprises an elastic layer, a buffer layer and an outer shell layer, and the elastic layer, the buffer layer and the outer shell layer are sequentially stacked in a direction away from the human head.
2. The cheekbone supported eyeglass structure of claim 1, wherein, The supporting piece further comprises an abutting part, the abutting part is connected to the outer shell layer and extends in a direction close to the head, the abutting part penetrates through the elastic layer and the buffer layer and is exposed on the elastic layer, and the abutting part is used for abutting against the malar bone of the human head.
3. The cheekbone supported eyeglass structure of claim 2, wherein, The abutting part is made of one of polystyrene and silica gel.
4. The cheekbone supported eyeglass structure of claim 3, wherein, The supporting piece is provided with a gas bag assembly, the gas bag assembly comprises a plurality of spaced gas bag units, and the distance between two adjacent gas bag units is a, 0.5mm<=a<=1.5mm.
5. The cheekbone supported eyeglass structure of claim 1, wherein, The hooking part and the positioning part are provided with the gas bag assembly, and the gas bag assemblies of the supporting piece, the hooking part and the positioning part are distributed in a triangular shape.
6. The cheekbone supported eyeglass structure of claim 5, wherein, The zygomatic bone supporting glasses further comprise a hoop connecting piece, the hoop connecting piece comprises a connecting section and a hoop section, the connecting section comprises two, and the two ends of the connecting section are connected with the hoop section and the supporting piece respectively, the hoop section is arranged in an arc shape, and the angle between the connecting section and the head of the human body in the vertical direction is b, 15<=b<=30.
7. The cheekbone supported eyeglasses structure according to any one of claims 5 to 6, wherein The hoop section and the connecting section are hollow, the hoop section is provided with a control assembly, the supporting piece is further provided with a massage assembly, and the massage assembly is electrically connected with the control assembly.
8. The cheekbone supported eyeglass structure of claim 7, wherein, The bottom of the supporting piece is provided with a mounting part, the mounting part and the supporting piece form a mounting hole, and the mounting hole is used for connecting a band-shaped piece.
9. The cheekbone supported eyeglass structure of claim 7, wherein,