Near-eye display glasses and methods for manufacturing near-eye display glasses
By using low-hardness connectors to indirectly mount the temples to the frame in near-eye display glasses, the problem of frame deformation caused by temple stress is solved, extending service life and maintaining good display effect, thus improving user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-05
- Publication Date
- 2026-04-03
AI Technical Summary
Existing near-eye display glasses suffer from frame deformation due to stress on the temples during use, which affects internal optical performance, shortens lifespan, and reduces user experience.
Low-hardness connectors are used to indirectly mount the temples to the frame. The connectors absorb the external force transmitted by the temples, reducing frame deformation and maintaining the stable correspondence of the optical components.
It extends the lifespan of near-eye display glasses, maintains good image display quality, and improves user experience.
Smart Images

Figure CN117555161B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of near-eye display technology, and in particular to a near-eye display eyeglass and a method for manufacturing the near-eye display eyeglass. Background Technology
[0002] In recent years, near-eye display (NED) technologies such as augmented reality (AR) and virtual reality (VR) have become increasingly popular. With the development of LED technology and microdisplay chip technology, projection displays are becoming increasingly miniaturized, making wearable near-eye display systems a focus of attention. While pursuing small size and high resolution, people are also placing higher demands on wearing comfort.
[0003] Currently, near-eye display devices resembling eyeglasses (i.e., existing near-eye display glasses) are widely popular due to their ease of wear and conformity to people's wearing habits. However, because the left and right temples of existing near-eye display glasses are the main stress points during use, and the force on the temples is directly transmitted to the frame, the frame gradually deforms, affecting the internal optical effect. Therefore, existing near-eye display glasses often experience a decline in the display effect of the left and right images with increasing use, seriously affecting their lifespan and the user experience. Summary of the Invention
[0004] One advantage of this invention is that it provides near-eye display glasses and a method for manufacturing near-eye display glasses, which can solve the problem of frame deformation caused by stress on the temples during use, thus helping to extend the service life and improve the user experience.
[0005] Another advantage of the present invention is that it provides near-eye display glasses and a method for manufacturing near-eye display glasses. In one embodiment of the present invention, the near-eye display glasses can use low-hardness detachable parts to reduce the external force exerted on the frame by the temples, so as to reduce or avoid the deformation of the frame during use and the impact on the light engine, and maintain good image display effect.
[0006] Another advantage of this invention is that it provides near-eye display glasses and a method for manufacturing near-eye display glasses, wherein, to achieve the above-mentioned objectives, expensive materials or complex structures are not required. Therefore, this invention successfully and effectively provides a solution that not only offers a simple near-eye display glasses and a method for manufacturing near-eye display glasses, but also increases the practicality and reliability of the manufacturing method.
[0007] To achieve at least one of the above-described advantages or other benefits and objectives of the present invention, the present invention provides near-eye display glasses, comprising:
[0008] An eyeglass frame, comprising a lens frame, a pair of detachable parts located on the left and right sides of the lens frame, and a pair of temples, wherein one end of each detachable part is fixed to the lens frame, and the other end of each detachable part is connected to the temples, and wherein the rigidity of the detachable part is less than the rigidity of the lens frame; and
[0009] A near-eye display assembly, comprising a light engine and a display device located on the projection side of the light engine, wherein the light engine and the display device are respectively fixed to the lens frame.
[0010] According to one embodiment of this application, the hardness of the detachable component is greater than or equal to 2B and less than or equal to 4H.
[0011] According to one embodiment of this application, the Rockwell hardness of the frame is between 25 and 100.
[0012] According to one embodiment of this application, the eyeglass frame includes a front frame and a rear frame stacked behind the front frame. The light engine and the display device are both fixed to the front frame, and the front frame and the rear frame are respectively located on the front and rear sides of the display device. The detachable connector is detachably fixed to the rear frame of the eyeglass frame.
[0013] According to one embodiment of this application, the front frame includes a front eye socket portion for mounting the display device and a front extension portion extending rearward from the front eye socket portion, and the light engine is mounted on the front extension portion of the front frame; the rear frame includes a rear eye socket portion corresponding to the front eye socket portion and a rear extension portion extending rearward from the rear eye socket portion, the display device is sandwiched between the front eye socket portion and the rear eye socket portion, and the detachable member is fixed to the rear extension portion of the rear frame.
[0014] According to one embodiment of this application, the extension length of the front extension of the front frame is shorter than the extension length of the rear extension of the rear frame, so as to form a disassembly space on the left and right sides of the frame for accommodating the disassembly piece.
[0015] According to one embodiment of this application, the front frame further includes a limiting ring fixed to the front extension, and the lens of the light engine is fitted onto the limiting ring of the front frame.
[0016] According to one embodiment of this application, a glue outlet is provided on the outer side of the front extension of the front frame, and the glue outlet corresponds to the limiting ring; the detachable component includes an upper cover, an outer cover integrally connected to the upper cover, and a glue outlet cover extending forward from the outer cover. The upper cover and the outer cover respectively abut against the rear extension from the upper side and the outer side of the light engine, and the glue outlet cover seals the glue outlet of the front frame.
[0017] According to one embodiment of this application, the eyeglass frame further includes a pivot assembly disposed between the connector and the temple, for rotatably mounting the temple to the connector via the pivot assembly.
[0018] According to one embodiment of this application, the pivot assembly has a retracted state and an extended state. When the pivot assembly is in the retracted state, the temple abuts against the connector; when the pivot assembly is in the extended state, the temple moves away from the connector to form a deformation gap between the temple and the connector.
[0019] According to another aspect of this application, this application further provides a method for manufacturing near-eye display glasses, comprising the steps of:
[0020] The light engine and display device of the near-eye display component are respectively assembled into the frame of the eyeglasses;
[0021] After the light engine is calibrated, glue is applied to fix the light engine to the lens frame; and
[0022] The temples are indirectly mounted to the left and right sides of the frame using a connector, wherein the hardness of the connector is less than that of the frame. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the structure of near-eye display glasses according to an embodiment of this application;
[0024] Figure 2 An exploded view of near-eye display glasses according to the above embodiments of this application is shown;
[0025] Figure 3 A partially enlarged schematic diagram of the near-eye display glasses according to the above embodiments of this application after the detachment is removed is shown;
[0026] Figure 4 A cross-sectional enlarged schematic diagram of near-eye display glasses according to the above embodiments of this application is shown;
[0027] Figure 5 An exploded view of the rotating shaft assembly in near-eye display glasses according to the above embodiments of this application is shown;
[0028] Figure 6 A cross-sectional schematic diagram of a shaft assembly according to the above embodiments of this application is shown.
[0029] Key component symbols: 1. Near-eye display glasses; 10. Eyeglass frame; 11. Lens frame; 111. Front frame; 1111. Front eye socket; 1112. Front extension; 1113. Limiting ring; 1114. Adhesive dot; 112. Rear frame; 1121. Rear eye socket; 1122. Rear extension; 12. Connecting parts; 121. Top cover; 122. Outer cover; 123. Adhesive dot cover; 13. Lens 14. Leg; 14. Rotating shaft assembly; 141. First connecting member; 142. Pivot shaft; 143. Sliding mechanism; 1431. Sliding rod; 1432. Second connecting member; 14321. Sliding block; 14322. Temple fixing block; 14323. Clamping screw; 1433. Reset element; 14330. Compression spring; 20. Near eye display assembly; 21. Light engine; 22. Display device; 220. Waveguide lens.
[0030] The above description of the main component symbols, together with the accompanying drawings and specific embodiments, provides a further detailed explanation of this application. Detailed Implementation
[0031] The following description is intended to disclose the present invention and enable those skilled in the art to implement it. The preferred embodiments described below are merely examples, and other obvious variations will occur to those skilled in the art. The basic principles of the invention defined in the following description can be applied to other embodiments, modifications, improvements, equivalents, and other technical solutions that do not depart from the spirit and scope of the invention.
[0032] Those skilled in the art should understand that, in the disclosure of this invention, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as limiting this invention.
[0033] In this invention, the term "a" in the claims and specification should be understood as "one or more," that is, in one embodiment, the number of an element can be one, while in another embodiment, the number of the element can be multiple. Unless explicitly indicated in the disclosure of this invention that the number of the element is only one, the term "a" should not be construed as unique or single, and the term "a" should not be construed as a limitation on the quantity.
[0034] In the description of this invention, it should be understood that terms such as "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance. In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, terms such as "connected" or "linked" should be interpreted broadly. For example, it can refer to a fixed connection, a detachable connection, or an integral connection; it can refer to a mechanical connection or an electrical connection; it can refer to a direct connection or an indirect connection through a medium. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0035] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.
[0036] Considering that existing near-eye display glasses suffer from frame deformation due to external forces on the temples during use, affecting internal optical performance, and causing the left and right image display quality to deteriorate over time, severely impacting their lifespan and user experience, this application creatively proposes a near-eye display lens and its manufacturing method that solves the problem of frame deformation caused by temple forces during use, thus extending lifespan and improving user experience.
[0037] Specifically, refer to the accompanying drawings in the specification of this application. Figures 1 to 6 According to one embodiment of this application, near-eye display glasses 1 are provided, which may include an eyeglass frame 10 and a near-eye display component 20 disposed on the eyeglass frame 10, so that users can obtain near-eye display experiences such as VR / AR by wearing glasses.
[0038] More specifically, such as Figure 1 , Figure 2 as well as Figure 3As shown, the eyeglass frame 10 may include a frame 11, a pair of detachable parts 12 located on the left and right sides of the frame 11, and a pair of temples 13. One end of each detachable part 12 is fixed to the frame 11, and the other end of each detachable part 12 is connected to the temple 13. The rigidity of the detachable part 12 is less than that of the frame 11. The near-eye display assembly 20 may include a light engine 21 and a display device 22 located on the projection side of the light engine 21. The light engine 21 and the display device 22 are respectively fixed to the frame 11.
[0039] It is worth noting that, since the detachable component 12 of this application indirectly mounts the temple 13 to the frame 11, and the hardness of the detachable component 12 is less than that of the frame 11, when the user uses the near-eye display glasses 1, the external force on the temple 13 will be transmitted to the detachable component 12, and the detachable component 12 itself will deform to weaken or reduce the external force transmitted to the frame 11, so that the frame 11 will not be subjected to a large external force and deform. This ensures that the correspondence between the light engine 21 and the display device 22 set on the frame 11 remains constant, which helps to maintain a stable and good display effect and extend the service life of the near-eye display glasses.
[0040] According to the above embodiments of this application, the hardness of the detachable component 12 is preferably between 2B and 4H, that is, the hardness of the detachable component 12 is greater than or equal to 2B and less than or equal to 4H, so that the detachable component 12 can better absorb the external force transmitted through the temple 13, and avoid the frame 11 from deforming and affecting the image display effect of the near eye display component 20.
[0041] Optionally, the Rockwell hardness of the frame 11 in this application is between 25 and 100, that is, the hardness HR of the frame 11 is greater than or equal to 25 and less than or equal to 100, so that the frame 11 can withstand a certain external force without deformation, which helps to reliably maintain the correspondence between the light engine 21 and the display device 22.
[0042] Optionally, such as Figure 1 and Figure 2 As shown, the display device 22 of the near-eye display component 20 of this application can be, but is not limited to, implemented as a waveguide lens 220, used to transmit image light projected by the light engine 21 to the human eye for imaging; and to transmit ambient light to the human eye for imaging, enabling the user to obtain an AR experience. Of course, in other examples of this application, the display device 22 can also be implemented as other types of display lenses, as long as it enables the user to obtain a near-eye display experience, which will not be elaborated further in this application.
[0043] For example, such as Figure 1 and Figure 2As shown, the eyeglass frame 10's frame 11 may include a front frame 111 and a rear frame 112 stacked behind the front frame 111. The light engine 21 and the display device 22 are both fixed to the front frame 111, and the front frame 111 and the rear frame 112 are respectively located on the front and rear sides of the display device 22. Meanwhile, as... Figure 2 and Figure 4 As shown, the detachable connector 12 is detachably fixed to the rear frame 112 of the lens frame 11, so that the temple 13 can be detachably installed on the rear frame 112 of the lens frame 11. In this way, when the external force on the temple 13 is transmitted to the detachable connector 12, the detachable connector 12 reduces most of the external force by deforming itself, and transmits a small part of the external force to the rear frame 112 instead of directly to the front frame 111. This prevents the front frame 111 from deforming under force and affecting the image display effect of the near-eye display assembly 20, thereby further improving the near-eye display effect and extending its service life.
[0044] Optionally, such as Figure 2 and Figure 3 As shown, the front frame 111 includes a front eye socket portion 1111 for mounting the display device 22 and a front extension portion 1112 extending rearward from the front eye socket portion 1111. The light engine 21 is mounted on the front extension portion 1112 of the front frame 111 so that the lens of the light engine 21 is aligned with the coupling area of the display device 22. Correspondingly, the rear frame 112 may include a rear eye socket portion 1121 corresponding to the front eye socket portion 1111 and a rear extension portion 1122 extending rearward from the rear eye socket portion 1121. The display device 22 is sandwiched between the front eye socket portion 1111 and the rear eye socket portion 1121, and the connector 12 is fixed to the rear extension portion 1122 of the rear frame 112.
[0045] Optionally, such as Figure 1 and Figure 3 As shown, the extension length of the front extension 1112 of the front frame 111 is shorter than the extension length of the rear extension 1122 of the rear frame 112, so as to form a disassembly space on the left and right sides of the frame 11 to accommodate the disassembly piece 12, so as to cover the optical engine 21 installed on the front frame 111 through the disassembly piece 12. In this way, when the disassembly piece 12 is fixed to the rear extension 1122 of the rear frame 112, the disassembly piece 12 will cover the optical engine 21 installed on the front frame 111 to protect the optical engine 21; while when the disassembly piece 12 is removed from the rear extension 1122 of the rear frame 112, the optical engine 21 will be exposed for inspection and maintenance.
[0046] Optionally, such as Figure 2 and Figure 3As shown, the front frame 111 further includes a limiting ring 1113 fixed to the front extension 1112. The lens of the light engine 21 is fitted into the limiting ring 1113 of the front frame 111 so as to fix the light engine 21 to the front frame 111.
[0047] Optionally, such as Figure 2 and Figure 3 As shown, a glue outlet 1114 is provided on the outer side of the front extension 1112 of the front frame 111. The glue outlet 1114 corresponds to the limiting ring 1113 so that after the light engine 21 is calibrated, glue is applied to the limiting ring 1113 through the glue outlet 1114 to fix the light engine 21.
[0048] Optionally, such as Figure 1 and Figure 2 As shown, the detachable component 12 includes an upper cover 121, an outer cover 122 integrally connected to the upper cover 121, and a glue port cover 123 extending forward from the outer cover 122. When the detachable component 12 is fixed to the rear frame 112, the upper cover 121 and the outer cover 122 abut against the rear extension 1122 from the upper side and the outer side of the light engine 21, respectively, and the glue port cover 123 seals the glue port 1114 of the front frame 111.
[0049] It is worth noting that the detachable part 12 can be, but is not limited to, fixed to the front extension 1112 of the front frame 111 by screwing, which will not be described in detail here. In addition, the temple 13 can be, but is not limited to, rotatably connected to the detachable part 12; of course, in other examples of the application, the temple 13 can also be fixed to the detachable part 12 non-rotatably, which will not be described in detail here.
[0050] Specifically, according to the above embodiments of this application, such as Figure 1 and Figure 4 As shown, the eyeglass frame 10 may further include a pivot assembly 14 disposed between the connector 12 and the temple 13, so that the temple 13 can be rotatably mounted to the connector 12 via the pivot assembly 14, so as to open the temple 13 for wearing or close the temple 13 for storage.
[0051] More specifically, the pivot assembly 14 has a retracted state and an extended state. When the pivot assembly 14 is in the retracted state, the temple 13 abuts against the connector 12; when the pivot assembly 14 is in the extended state, the temple 13 moves away from the connector 12 to form a deformation gap between the temple 13 and the connector 12. In this way, users with larger head sizes can freely adjust the pivot assembly 14 of the near-eye display glasses 1 to switch between the retracted and extended states, thereby adjusting the size of the deformation gap formed between the temple 13 and the connector 12, thereby increasing the distance from the frame 11 to the end of the temple 13, allowing users with larger head sizes to wear the near-eye display glasses 1.
[0052] In other words, the hinge assembly 14 can switch between a retracted state and an extended state to adjust the size of the deformation gap formed between the temple 13 and the detachable member 12, thereby extending the temple 13 to accommodate users with different head sizes. Simultaneously, when the hinge assembly 14 is in the extended state, because the deformation gap is formed between the temple 13 and the detachable member 12 (i.e., the temple 13 is not against the detachable member 12), the temple 13 can be slightly turned outwards from the frame 11. At this time, the front extension 1112 with greater hardness can support (protect) the position of the light engine 21 and keep it unchanged, while the detachment part 12 with less hardness will deform to a certain extent due to the pressure of the temple 13. In this way, the force generated by the temple turning slightly to the outside of the frame will not be transmitted to the rear extension 1122 with greater hardness through the detachment part 12, nor to the front frame 111 with greater hardness. This avoids the light engine 21 from being subjected to force, thereby ensuring that the relative position of the light engine 21 and the display device 22 remains unchanged. This allows the near-eye display glasses 1 to maintain good performance even after long-term use, thus extending the service life of the glasses.
[0053] For example, such as Figure 4 and Figure 5As shown, the pivot assembly 14 includes a first connector 141 connected to the detachable member 12, a pivot shaft 142 rotatably disposed on the first connector 141, and a sliding mechanism 143 rotatably disposed on the pivot shaft 142. The sliding mechanism 143 is connected to the temple 13 to rotatably slide the temple 13 onto the detachable member 12, so that when the temple 13 slides relative to the detachable member 12, the pivot assembly 14 can switch between a retracted state and an extended state. With this configuration, the temple 13 slides relative to the detachable member 12 via the sliding mechanism 143 to create a gap between the detachable member 12 and the temple 13, allowing the pivot assembly 14 to switch between the retracted state and the extended state. It is understood that this application uses a sliding connection as the extension / retraction method of the pivot assembly 14, giving the pivot assembly 14 sufficient rigidity to withstand large loads. It is understood that in other examples of this application, the sliding mechanism 143 may also be connected to the detachable member 12; correspondingly, the first connecting member 141 is connected to the temple 13. With this arrangement, the pivot assembly 14 can also be switched between the retracted state and the extended state in a sliding manner.
[0054] Optionally, such as Figure 4 and Figure 6 As shown, the sliding mechanism 143 includes a slide rod 1431 rotatably connected to the pivot shaft 142, a second connector 1432 slidably connected to the slide rod 1431, and a reset element 1433 disposed between the slide rod 1431 and the second connector 1432. The temple 13 is fixed to the second connector 1432. When the temple 13 is subjected to an external force to move away from the frame 11, the second connector 1432 slides along the slide rod 1431 to allow the reset element 1433 to accumulate potential energy. When the external force applied to the temple 13 is removed, the second connector 1432 slides along the slide rod 1431 under the action of the reset element 1433 to approach the disassembly member 12. With this configuration, the reset element 1433 can switch the pivot assembly 14 to a retracted state when the near-eye display glasses 1 are not worn; and when the pivot assembly 14 is in an extended state, it provides a clamping force to the temple 13, making the near-eye display glasses 1 more secure for the user.
[0055] In other words, when the near-eye display glasses 1 are not worn, the pivot assembly 14 remains in the retracted state. When the AR glasses are worn, the pivot assembly 14 is pulled open and remains in the extended state; at this time, the reset element 1433 accumulates potential energy. When the external force is removed, the reset element 1433 releases the accumulated potential energy to provide a thrust to the temple 13, sliding the temple 13 toward the connector 12. Under this thrust, the temple 13 can provide a clamping force to the user's ear, preventing the near-eye display glasses 1 from slipping off. In other words, the hardness range of 2B to 4H of the connector 12 not only allows the reset element in the pivot assembly 14 to accumulate potential energy, but also allows for appropriate deformation when the temple 13 rotates outward toward the frame 11, preventing external forces from changing the relative position of the light engine 21 and the display device 22.
[0056] Optionally, according to one embodiment of this application, such as Figure 5 and Figure 6 As shown, the second connector 1432 includes a slider 14321 slidably sleeved on the slider 1431, a temple fixing block 14322 fixed to the temple 13, and a clamping screw 14323 connecting the temple fixing block 14322 to the slider 14321.
[0057] Optionally, such as Figure 5 and Figure 6 As shown, according to one embodiment of this application, the reset element 1433 is implemented as a compression spring 14330, which is sleeved on the slide rod 1431. One end of the compression spring 14330 abuts against the slider 14321, and the other end of the compression spring 14330 abuts against the free end of the slide rod 1431. Thus, when the rotating shaft assembly 14 switches from a retracted state to an extended state, the slider 14321 slides along the slide rod 1431 toward the free end of the slide rod 1431. At this time, the compression spring 14330 is compressed and accumulates elastic potential energy, thereby providing a clamping force to the temple 13 toward the frame 11. It is understood that the reset element 1433 can also be a tension spring or a magnetic element, as long as it can provide a force to the temple 13 to give it a tendency to slide toward the disassembly member 12. This application will not elaborate further on this.
[0058] According to another aspect of this application, this application further provides a method for manufacturing near-eye display glasses, comprising the steps of:
[0059] S100: The light engine and display device of the near-eye display component are respectively assembled into the frame of the eyeglasses frame;
[0060] S200: After the light engine is calibrated, apply adhesive to fix the light engine to the lens frame; and
[0061] S300: The temples are indirectly installed on the left and right sides of the frame via a connector, wherein the hardness of the connector is less than that of the frame.
[0062] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0063] The above embodiments merely illustrate several implementation methods of the present invention, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the invention patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these all fall within the protection scope of the present invention. Therefore, the protection scope of this invention patent should be determined by the appended claims.
Claims
1. Near-eye display glasses, characterized in that, include: An eyeglass frame, comprising a frame, a pair of detachable parts located on the left and right sides of the frame, and a pair of temples, wherein one end of each detachable part is fixed to the frame and the other end of each detachable part is connected to the temples, and wherein the hardness of the detachable part is less than that of the frame. and A near-eye display assembly, the near-eye display assembly including a light engine and a display device located on the projection side of the light engine, the light engine and the display device being respectively fixed to the lens frame; The eyeglass frame includes a front frame and a rear frame stacked behind the front frame; the front frame includes a front eye socket portion for mounting the display device and a front extension portion extending rearward from the front eye socket portion; the front frame further includes a limiting ring fixed to the front extension portion, and the lens of the light engine is fitted into the limiting ring of the front frame. The front extension of the front frame has an adhesive inlet on its outer side, which corresponds to the limiting ring. The detachable component includes an upper cover, an outer cover integrally connected to the upper cover, and an adhesive inlet cover extending forward from the outer cover. The upper cover and the outer cover abut against the rear extension from the upper and outer sides of the light engine, respectively, and the adhesive inlet cover seals the adhesive inlet of the front frame.
2. The near-eye display glasses according to claim 1, characterized in that, The hardness of the detachable component is greater than or equal to 2B and less than or equal to 4H.
3. The near-eye display glasses according to claim 1, characterized in that, The Rockwell hardness of the frame is between 25 and 100.
4. The near-eye display glasses according to any one of claims 1 to 3, characterized in that, The light engine and the display device are both fixed to the front frame, and the front frame and the rear frame are respectively located on the front and rear sides of the display device; the detachable connector is detachably fixed to the rear frame of the lens frame.
5. The near-eye display glasses according to claim 4, characterized in that, The light engine is mounted on the front extension of the front frame; the rear frame includes a rear eye socket corresponding to the front eye socket and a rear extension extending rearward from the rear eye socket, the display device is held between the front eye socket and the rear eye socket, and the connector is fixed to the rear extension of the rear frame.
6. The near-eye display glasses according to claim 5, characterized in that, The extension length of the front extension of the front frame is shorter than the extension length of the rear extension of the rear frame, so as to form a disassembly space on the left and right sides of the frame to accommodate the disassembly piece.
7. The near-eye display glasses according to any one of claims 1 to 3, characterized in that, The eyeglass frame further includes a pivot assembly disposed between the connector and the temple, for rotatably mounting the temple to the connector via the pivot assembly.
8. The near-eye display glasses according to claim 7, characterized in that, The pivot assembly has a retracted state and an extended state. When the pivot assembly is in the retracted state, the temple abuts against the connector. When the pivot assembly is in the extended state, the temple moves away from the connector to form a deformation gap between the temple and the connector.
9. A method for manufacturing near-eye display glasses, characterized in that, For near-eye display glasses as described in any one of claims 1 to 8, the steps include: The light engine and display device of the near-eye display component are respectively assembled into the frame of the eyeglasses; After the light engine is calibrated, glue is applied to fix the light engine to the lens frame; and The temples are indirectly mounted to the left and right sides of the frame using a connector, wherein the hardness of the connector is less than that of the frame.
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