Intelligent glasses structure
The design of the connecting parts, including the temple, hinge block, and torsion spring, enables the adjustable length and stable fit of the smart glasses temples, solving the problems of wearing discomfort and stability, improving the user experience, and enhancing the aesthetics.
Patent Information
- Application Number
- CN202520319008.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2035-02-26
AI Technical Summary
The fixed size of the temples in existing smart glasses leads to discomfort and instability issues for different users, and the reduced elasticity causes them to slip off.
The frame and temples are connected by a connector, which includes a headband, a hinge block, and a torsion spring. The temples can deflect relative to the frame, and the torsion spring provides a restoring force, allowing the temples to be adjusted in length and have a tendency to close when open, ensuring comfort. The connecting wire is hidden inside the connector, inside the frame, and the temples fit snugly against the user's head.
The adjustable length and stable fit of the temples enhance wearing comfort and stability, while the concealed wiring improves aesthetics.
Smart Images

Figure CN223637832U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of wearing equipment, in particular to a kind of intelligent glasses structure. BACKGROUND
[0002] In the rapid development of science and technology, as the key product in the field of intelligent wearing equipment, intelligent glasses bear many expectations of people for convenient intelligent life. It combines artificial intelligence, communication, display and other various frontier technologies, and can theoretically bring great convenience to users in information acquisition, interactive experience and other aspects, and is widely applied in security monitoring, medical assistance, entertainment games and other fields.
[0003] However, there are still some defects in the wearing process of the current intelligent glasses, as follows:
[0004] 1. The current intelligent glasses are mostly designed with fixed size structure, and when different users wear them, there are problems such as discomfort, for example, when a user with a large head circumference wears intelligent glasses with fixed size legs, the legs will tightly compress the skin and blood vessels near the temple, and after a long time, pain and numbness will occur. When a user with a small head circumference wears them, the intelligent glasses will be too loose and will frequently slide down, and the user needs to constantly hold them in place with his hand, which is very troublesome.
[0005] 2. The clamping between the legs of the current intelligent glasses and the user's head mainly depends on the deformation elasticity of the legs, and after long-term wearing, due to the material and other reasons, the elasticity will weaken, and it will not be able to provide stable clamping force, that is, it is easy to fall off and slide down, affecting the wearing experience.
[0006] Therefore, an intelligent glasses structure is needed to solve the above problems. CONTENT OF THE UTILITY MODEL
[0007] The utility model aims to provide an intelligent glasses structure to effectively improve the adaptability and stability, thereby providing better wearing experience for users.
[0008] To solve the above technical problems, the utility model provides an intelligent glasses structure, which comprises a frame, a leg and a connecting part.
[0009] The leg and the frame are connected by the connecting part, so that the leg can be deflected relative to the frame to be in an open state or a closed state.
[0010] The connecting part comprises a head, a hinge block and a torsional spring.
[0011] One end of the head is slidingly fixedly connected with the frame, for adjusting the length of the leg extended when in the open state, and the other end has a receiving groove.
[0012] One end of the hinge block is arranged in the accommodating groove and detachably connected with the temple, and the other end is detachably fixedly connected with the temple leg;
[0013] The torsional spring is embedded and fixed on the upper and lower end faces of the hinge block, and when the temple leg is in the open state, the torsional spring applies a reset elastic force to the hinge block, so that the temple leg has a switching trend to the closed state.
[0014] Further, when the temple leg is in the closed state, the torsional spring and the hinge block remain relatively stationary.
[0015] Further, the upper and lower end faces of the hinge block are provided with mounting grooves for mounting the torsional spring, and one end of the torsional spring away from the hinge block has a movable stress angle;
[0016] When the movable stress angle is extruded, the torsional spring can apply a reset elastic force to the hinge block;
[0017] The top wall and the bottom wall of the accommodating groove cavity both have extending protrusions;
[0018] When the temple leg is in the open state, the protrusions extrude the movable stress angle;
[0019] When the temple leg is in the closed state, the protrusions are separated from the movable stress angle.
[0020] Further, the frame includes a frame body, a frame cover, and a positioning locking member;
[0021] The frame body is provided with a groove with two adjacent side openings;
[0022] The temple is detachably and slidably installed in the groove, and has a plurality of positioning grooves in the sliding direction;
[0023] The frame cover is detachably installed at one side opening of the groove through the positioning locking member, and one end of the positioning locking member can extend to be threadedly connected with the positioning groove.
[0024] Further, the inner wall of the groove is provided with a first sliding groove and a second sliding groove arranged vertically, and one end of the first sliding groove extends to the opening of the groove;
[0025] The outer wall of the temple is provided with a sliding block matched with the first sliding groove and the second sliding groove, for detachable connection of the temple with the frame body and sliding of the temple.
[0026] Further, a positioning fixing member is arranged at the top of the temple and penetrates the accommodating groove and the hinge block, so that the hinge block can be deflected relative to the temple with the positioning fixing member as the axis;
[0027] The torsional spring is sleeved outside the positioning fixing member.
[0028] Further, the mirror frame is internally provided with a connecting wire connected with the built-in PCB board.
[0029] The two ends of the connecting portion extend into the mirror frame and the mirror leg respectively, and are provided with a threading hole matched with the connecting wire, so that the connecting wire is always hidden in the smart glasses structure when the mirror leg is in the open state or the folded state.
[0030] Further, one end of the temple extends into the mirror frame, and one end of the hinge block extends into the mirror leg.
[0031] The threading hole is arranged in the interior of the temple and the hinge block.
[0032] Further, the hinge block is provided with an extension block extending into the mirror leg, and the extension block is detachably fixedly connected with the mirror leg.
[0033] One end of the connecting wire is threaded out of the threading hole and extends to the outer wall of the extension block.
[0034] Further, the mirror leg and the extension block are detachably fixedly connected through screws or buckles.
[0035] Compared with the prior art, the present application has at least the following beneficial effects:
[0036] By connecting the mirror frame and the mirror leg through the connecting portion, and the connecting portion comprising the temple, the hinge block and the torsional spring, and enabling the temple to be slidingly and fixedly connected with the mirror frame, the length of the mirror leg extended in the open state can be adjusted, so as to meet the wearing needs of different users and ensure that the user will not feel uncomfortable due to the too long or too short mirror leg.
[0037] In addition, by arranging the torsional spring, the torsional spring can exert a reset elastic force on the hinge block when the mirror leg is in the open state, and since the hinge block is detachably fixedly connected with the mirror leg, the mirror leg is also subjected to the reset elastic force, so that the mirror leg has a tendency to switch to the folded state, that is, when the user wears it, the mirror leg will be subjected to a pre-tightening force to fit the user's head, so as to ensure the stability of wearing, thereby achieving the purpose of improving the comfort and stability of wearing, and providing better wearing experience for the user.
[0038] Further, by setting the wire passing hole inside the connecting part, and extending two ends of the connecting part to the inside of the frame and the temple respectively, the connecting wire inside the frame is always hidden in the connecting part and the temple, that is, the connecting wire is not exposed during use, so as to improve the beauty of the whole device during application. BRIEF DESCRIPTION OF DRAWINGS
[0039] Figure 1 It is an exploded view of the structure of the intelligent glasses structure in an embodiment of the present application.
[0040] Figure 2 It is a structure schematic view of the intelligent glasses structure in an embodiment of the present application.
[0041] Figure 3 It is a structure schematic view of the intelligent glasses structure in an embodiment of the present application.
[0042] Figure 4 It is an internal structure schematic view of the intelligent glasses structure in an embodiment of the present application.
[0043] Figure 5 It is a structure schematic view of the hinge block in the intelligent glasses structure in an embodiment of the present application.
[0044] Figure 6 It is a half sectional view of the connecting wire in the intelligent glasses structure in an embodiment of the present application.
[0045] LIST OF REFERENCE NUMERALS
[0046] 1, frame; 11, frame body; 12, frame cover; 13, positioning locking piece;
[0047] 2, temple;
[0048] 3, connecting part; 31, head; 311, positioning groove; 312, sliding block; 32, hinge block; 321, extension block; 33, torsional spring; 331, movable stress angle;
[0049] 4, accommodating groove; 41, protruding block;
[0050] 5, mounting groove;
[0051] 6, recess; 61, first sliding groove; 62, second sliding groove;
[0052] 7, positioning and fixing piece;
[0053] 8, connecting wire;
[0054] 9, wire passing hole. DETAILED DESCRIPTION
[0055] The intelligent glasses structure of the present application will be described in more detail below with reference to the accompanying drawings, in which the preferred embodiments of the present application are shown, it should be understood that the present application described herein can be modified by those skilled in the art, and still achieve the advantageous effects of the present application. Therefore, the following description should be understood as a broad knowledge for those skilled in the art, and not as a limitation of the present application.
[0056] The present application will be described in more detail below with reference to the accompanying drawings, in which the preferred embodiments of the present application are shown, it should be understood that the present application described herein can be modified by those skilled in the art, and still achieve the advantageous effects of the present application. Therefore, the following description should be understood as a broad knowledge for those skilled in the art, and not as a limitation of the present application.
[0057] As shown in Figures 1 to 3 The present application proposes an intelligent glasses structure, comprising a frame 1, a leg 2 and a connecting part 3.
[0058] The leg 2 is connected with the frame 1 through the connecting part 3, so that the leg 2 can be deflected relative to the frame 1 to be in an open state or a closed state.
[0059] It should be noted that when the leg 2 is in the open state, it is used for the user to wear, and when it is in the closed state, it is used for the storage of the intelligent glasses structure.
[0060] In this embodiment, a specific connecting part 3 is proposed to better connect the leg 2 and the frame 1. Specifically, the connecting part 3 comprises a head 31, a hinge block 32 and a torsional spring 33.
[0061] The head 31 is slidably fixedly connected to one end of the frame 1, and is used to adjust the length of the leg 2 in the open state, that is, to adjust the wearing length of the leg 2 to meet the wearing needs of users with different head shapes, so that the problem of wearing discomfort caused by too long or too short leg 2 does not occur.
[0062] In addition, the other end of the head 31 has a receiving groove 4 for installing the hinge block 32. Specifically, one end of the hinge block 32 is arranged in the receiving groove 4 and is detachably rotatably connected with the head 31, and the other end is detachably fixedly connected with the leg 2. Therefore, the rotation of the hinge block 32 relative to the head 31 drives the leg 2 to switch between the open state and the closed state.
[0063] In addition, the torsion spring 33 is embedded and fixed on the upper and lower end faces of the hinge block 32, and when the temple 2 is in the open state, the torsion spring 33 exerts a restoring elastic force on the hinge block 32, so that the temple 2 has a tendency to switch to the closed state. Since the hinge block 32 is detachably fixedly connected with the temple 2, when the torsion spring 33 exerts the restoring elastic force on the hinge block 32, it can correspondingly drive the temple 2 to have a deflection tendency. Since the temple 2 can be used for the user to wear when it is in the open state, when the user wears the smart glasses, the temple 2 can be elastically attached to the human head under the action of the restoring elastic force, so as to ensure the stability of wearing.
[0064] The device connects the frame 1 and the temple 2 through the connecting part 3, and the connecting part 3 includes the hinge head 31, the hinge block 32 and the torsion spring 33, and the hinge head 31 is slidably fixedly connected with the frame 1 to adjust the length of the temple 2 in the open state, so as to meet the wearing needs of different users and ensure that the user will not feel uncomfortable due to the too long or too short temple 2 when wearing.
[0065] In addition, by arranging the torsion spring 33, when the temple 2 is in the open state, the torsion spring 33 can exert a restoring elastic force on the hinge block 32, and since the hinge block 32 is detachably fixedly connected with the temple 2, the temple 2 is also correspondingly subjected to the restoring elastic force, so that the temple 2 has a tendency to switch to the closed state, that is, when the user wears, the temple 2 will be subjected to a pre-tightening force to attach to the user's head, so as to ensure the stability of wearing, so as to improve the comfort and stability of wearing, and provide better wearing experience for the user.
[0066] It should be noted that when the temple 2 is in the closed state, the torsion spring 33 and the hinge block 32 are relatively stationary, that is, the torsion spring 33 does not exert an elastic force on the hinge block 32 in this state, so as to ensure that the smart glasses can be normally stored.
[0067] Please refer to 4 and Figure 5 In further embodiments, the structure of the hinge block 32 and the accommodating groove 4 are further limited, so that when the temple 2 is in the open state, the hinge block 32 and the temple 2 can be better provided with a restoring elastic force by the torsion spring 33, and when the temple 2 is in the closed state, the torsion spring 33 and the hinge block 32 can also be relatively stationary.
[0068] Specifically, the upper and lower end faces of the hinge block 32 are provided with mounting grooves 5 for mounting the torsion spring 33. One end of the torsion spring 33 away from the hinge block 32 has a movable stress angle 331.
[0069] It should be noted that when the active stress angle 331 is pressed, the torsion spring 33 can exert a reset elastic force on the hinge block 32, and correspondingly, when the active stress angle 331 is not subjected to external force, the torsion spring 33 and the hinge block 32 remain relatively stationary.
[0070] In the embodiment, the top wall and the bottom wall of the accommodating groove 4 have an extended protrusion 41, which is in a fixed state, and the active stress angle 331 can be in contact or separated from the protrusion 41 during deflection.
[0071] Specifically, when the temple 2 is in an open state, the protrusion 41 presses the active stress angle 331 to complete the output of the reset elastic force. When the temple 2 is in a folded state, the protrusion 41 is separated from the active stress angle 331, so that the hinge block 32 and the torsion spring 33 are relatively stationary.
[0072] In other embodiments, a specific eyeglass frame 1 is also proposed, so that the head 31 can be quickly and detachably and slidingly fixedly connected with the eyeglass frame 1.
[0073] Specifically, the eyeglass frame 1 comprises a frame body 11, a frame cover 12, and a positioning and locking member 13.
[0074] The frame body 11 is provided with a groove 6 with two adjacent side openings.
[0075] The head 31 is detachably and slidingly installed in the groove 6 and has a plurality of positioning grooves 311 in the sliding direction.
[0076] The frame cover 12 is detachably installed at one side opening of the groove 6 through the positioning and locking member 13, and one end of the positioning and locking member 13 can extend to be threadedly fixedly connected with the positioning groove 311.
[0077] Therefore, the detachable installation and sliding fixation of the head 31 can be realized by first installing the head 31 in the groove 6 and then installing the frame cover 12.
[0078] In the embodiment, the positioning and locking member 13 is a fastening screw.
[0079] Please continue to refer to Figure 1 It should be particularly noted that in order to ensure that the head 31 moves along the predetermined track in the groove 6 to realize the function of adjusting the length of the extension direction of the temple 2, the groove 6 is further limited.
[0080] Specifically, the inner wall of the groove 6 is provided with a first sliding groove 61 and a second sliding groove 62 arranged vertically, and one end of the first sliding groove 61 extends to the opening of the groove 6.
[0081] The outer wall of the temple 31 is provided with a sliding block 312 matched with the first sliding groove 61 and the second sliding groove 62, which is used for detachable connection of the temple 31 with the frame body 11 and sliding of the temple 31. That is, by limiting the first sliding groove 61, the temple 31 can slide out to separate from the groove 6, and by providing the second sliding groove 62, the temple 31 can move along the extension direction of the mirror leg 2 in the opened state when it is inside the groove 6, to complete the adjustment function.
[0082] Please refer to Figures 1 to 4 In order to ensure the stability of rotation between the hinge block 32 and the temple 31, a positioning fixing part 7 is additionally provided.
[0083] Specifically, the top of the temple 31 is provided with a positioning fixing part 7 penetrating the accommodating groove 4 and the hinge block 32, so that the hinge block 32 can be deflected relative to the temple 31 with the positioning fixing part 7 as the axis.
[0084] It should be noted that the positioning fixing part 7 is detachably fixed with the temple 31, so when the positioning fixing part 7 is separated from the temple 31, the hinge block 32 can also be separated from the temple 31, realizing the function of quick disassembly of each component, facilitating maintenance and assembly.
[0085] It should also be noted that the torsional spring 33 is sleeved outside the positioning fixing part 7, so as to ensure that the torsional spring 33 will not interfere with the positioning fixing part 7 when it rotates with the hinge block 32.
[0086] Please refer to Figure 5 and Figure 6 In other embodiments, the mirror frame 1 is provided with a connecting line 8 connected with the built-in PCB board, in order to improve the aesthetic appearance of the connecting line 8 installed in the smart glasses, the connecting part 3 is further limited.
[0087] Specifically, the two ends of the connecting part 3 extend into the mirror frame 1 and the mirror leg 2 respectively, and have a threading hole 9 matched with the connecting line 8, so that the connecting line 8 is always hidden in the structure of the smart glasses when the mirror leg 2 is in the opened state or the folded state, that is, the connecting line 8 will not be exposed to the outside in the application process, so the overall aesthetic appearance can be effectively improved.
[0088] In the embodiment, one end of the temple 31 extends into the frame 1, one end of the hinge block 32 extends into the temple leg 2, and the threading hole 9 is arranged inside the temple 31 and the hinge block 32. By extending the end of the temple 31 and the end of the hinge block 32 into the frame 1 and the temple leg 2 respectively, when the connecting line 8 passes through the connecting part 3, the parts of the connecting line 8 are hidden in the frame 1, the connecting part 3 and the temple leg 2 respectively, and the function of hiding the connecting line 8 is achieved.
[0089] In other embodiments, the hinge block 32 has an extension block 321 extending into the temple leg 2, and the extension block 321 is detachably fixedly connected with the temple leg 2.
[0090] In addition, one end of the connecting line 8 is threaded out of the threading hole 9 and extends to the outer wall of the extension block 321 to prevent the connecting line 8 from being broken due to folding.
[0091] In addition, the temple leg 2 and the extension block 321 are detachably fixedly connected by screws or buckles.
[0092] In summary, by detachably fixedly connecting the frame 1 and the connecting part 3, the connecting part 3 and the temple leg 2, and the temple 31 and the hinge block 32, the installation difficulty of the overall structure can be effectively reduced, and the operator can effectively and conveniently thread and thread out the connecting line 8, so as to achieve the purposes of convenient assembly and convenient maintenance.
[0093] Obviously, those skilled in the art can make various modifications and variations to the present application without departing from the spirit and scope of the present application. Therefore, if these modifications and variations of the present application fall within the scope of the claims of the present application and their equivalent technologies, the present application also intends to include these modifications and variations.
Claims
1. A smart glasses structure, characterized by, The mirror frame, the mirror leg and the connecting part are included. The mirror leg is connected with the mirror frame through the connecting part, so that the mirror leg can be deflected relative to the mirror frame to be in an open state or a closed state. The connecting part includes a handle, a hinge block and a torsion spring. One end of the handle is in sliding fixed connection with the mirror frame, and the other end has a receiving groove. One end of the hinge block is arranged in the receiving groove and is in detachable rotary connection with the handle, and the other end is in detachable fixed connection with the mirror leg. The torsion spring is embedded and fixed on the upper and lower end faces of the hinge block, and when the mirror leg is in the open state, the torsion spring applies a reset elastic force to the hinge block, so that the mirror leg has a tendency to switch to the closed state.
2. The smart glasses structure of claim 1, wherein, When the mirror leg is in the closed state, the torsion spring and the hinge block remain relatively stationary.
3. The smart glasses structure of claim 2, wherein, The upper and lower end faces of the hinge block are provided with mounting grooves for mounting the torsion spring, and one end of the torsion spring away from the hinge block has a movable stress angle. When the movable stress angle is pressed, the torsion spring can apply a reset elastic force to the hinge block. The top wall and the bottom wall of the receiving groove cavity each have an extended protrusion. When the mirror leg is in the open state, the protrusion presses the movable stress angle. When the mirror leg is in the closed state, the protrusion is separated from the movable stress angle.
4. The smart glasses structure of claim 1, wherein, The mirror frame includes a frame body, a frame cover and a positioning locking member. The frame body is provided with a groove with two adjacent side openings. The handle is detachably and slidably mounted in the groove and has a plurality of positioning grooves in the sliding direction. The frame cover is detachably mounted at one side opening of the groove through the positioning locking member, and one end of the positioning locking member can extend to be in threaded fixed connection with the positioning groove.
5. The smart glasses structure of claim 4, wherein, The inner wall of the groove is provided with a first sliding groove and a second sliding groove arranged vertically, and one end of the first sliding groove extends to the opening of the groove. The outer wall of the handle is provided with a sliding block matched with the first sliding groove and the second sliding groove, for detachable connection of the handle with the frame body and sliding of the handle.
6. The smart glasses structure of claim 1, wherein, The top of the handle is provided with a positioning fixing member penetrating through the receiving groove and the hinge block, so that the hinge block can be deflected relative to the handle with the positioning fixing member as the axis. The torsion spring is sleeved outside the positioning fixing member.
7. The smart glasses structure of claim 1, wherein, The mirror frame is provided with a connecting line connected with an internal PCB board. The two ends of the connecting part extend to the inside of the mirror frame and the mirror leg respectively, and have a threading hole matched with the connecting line, so that the connecting line is always hidden in the structure of the smart glasses when the mirror leg is in the open state or the closed state.
8. The smart glasses structure of claim 7, wherein, One end of the handle extends to the inside of the mirror frame, and one end of the hinge block extends to the inside of the mirror leg. The threading hole is arranged inside the handle and the hinge block.
9. The smart glasses structure of claim 8, wherein, The hinge block has an extension block extending to the inside of the mirror leg, and the extension block is detachably fixedly connected with the mirror leg. One end of the connecting line is threaded out of the threading hole and extends to the outer wall of the extension block. The mirror frame includes a frame body, a frame cover and a positioning locking member. The frame body is provided with a groove with two adjacent side openings. The handle is detachably and slidably mounted in the groove and has a plurality of positioning grooves in the sliding direction. The frame cover is detachably mounted at one side opening of the groove through the positioning locking member, and one end of the positioning locking member can extend to be in threaded fixed connection with the positioning groove. The inner wall of the groove is provided with a first sliding groove and a second sliding groove arranged vertically, and one end of the first sliding groove extends to the opening of the groove. The outer wall of the handle is provided with a sliding block matched with the first sliding groove and the second sliding groove, for detachable connection of the handle with the frame body and sliding of the handle. The top of the handle is provided with a positioning fixing member penetrating through the receiving groove and the hinge block, so that the hinge block can be deflected relative to the handle with the positioning fixing member as the axis. The torsion spring is sleeved outside the positioning fixing member. The mirror frame is provided with a connecting line connected with an internal PCB board. The two ends of the connecting part extend to the inside of the mirror frame and the mirror leg respectively, and have a threading hole matched with the connecting line, so that the connecting line is always hidden in the structure of the smart glasses when the mirror leg is in the open state or the closed state. One end of the handle extends to the inside of the mirror frame, and one end of the hinge block extends to the inside of the mirror leg. The threading hole is arranged inside the handle and the hinge block. The hinge block has an extension block extending to the inside of the mirror leg, and the extension block is detachably fixedly connected with the mirror leg. One end of the connecting line is threaded out of the threading hole and extends to the outer wall of the extension block.
10. The smart glasses structure of claim 9, wherein, The temple and the extension block are detachably fixedly connected through screws or buckles.