Glasses and wearable device
By adjusting the adjustment components and shape memory alloy material in the module, the problem of uncomfortable clamping force for users with different head shapes in existing glasses has been solved, realizing flexible adjustment of ear bending moment and improving the wearing experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2026-03-24
AI Technical Summary
Existing glasses have the following drawbacks: users with larger heads need to apply too much pressure to hold them, preventing their ears from touching the temples; users with smaller heads need to apply too little pressure, causing the smart glasses to slip down and affecting the wearing experience.
An adjustment module was designed, including a fixing component, a connecting component, and an adjusting component. The ear bending moment of the temples is adjusted by moving the adjusting component. Stable and convenient adjustment is achieved by using the elastic component of shape memory alloy material and threaded connection to adapt to wearers with different head circumferences.
It allows for adjustment of the ear curvature according to the user's head circumference, improving wearing comfort and stability, and is suitable for users with different head shapes.
Smart Images

Figure CN224035717U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of electronic equipment, in particular to a pair of glasses and a wearable device. BACKGROUND
[0002] In the design process of the existing glasses, the ear bending moment is fixed. However, the user group of the glasses is large. When a user with a large head wears the glasses, the clamping force is too large, and the ear cannot contact the temple. When a user with a small head wears the glasses, the clamping force is too small, which causes the smart glasses to slide down, and affects the wearing experience of the glasses. CONTENT OF THE UTILITY MODEL
[0003] The embodiment of the present application aims to provide a pair of glasses and a wearable device, which is beneficial to adjust the ear bending moment of the glasses and improve the wearing experience of the glasses.
[0004] To achieve the above-mentioned purpose, the embodiment of the present application provides the following technical scheme:
[0005] In one aspect, a pair of glasses is provided, which comprises a temple, a frame and an adjusting module. The adjusting module comprises a fixing member, a connecting member and an adjusting member. The fixing member comprises a receiving cavity, which has a first end and a second end along a first direction. The connecting member comprises a first part, an intermediate part and a second part connected in sequence. The first part is located in the receiving cavity, the second part is located outside the receiving cavity and connected with the temple, and the intermediate part is rotationally connected with the fixing member and located between the two ends of the fixing member in the first direction. The adjusting member penetrates through the fixing member and can move along the first direction relative to the fixing member. One end of the adjusting member is located in the receiving cavity, and the other end is located outside the receiving cavity. When the adjusting module is in a first state, the adjusting member is located at one end of the receiving cavity and abuts against the first part. The frame is connected to the end of the fixing member away from the adjusting member.
[0006] In the eyeglasses provided in this embodiment, the adjustment module is connected to both the frame and the temples. The middle part is rotatably connected to a fixing member, so the connecting member can rotate under external force. When the adjustment module is in its first state, when the adjustment member moves towards the first part, the end of the adjustment member extending into the receiving cavity can push the first part away from the adjustment member, thereby pushing the connecting member to rotate. At this time, the second part can drive the temples away from the other temple, thereby increasing the ear curvature of the eyeglasses. Conversely, when the adjustment member moves away from the first part, the first part can move towards the adjustment member, allowing the connecting member to rotate. At this time, the second part can drive the temples towards the other temple, thereby decreasing the ear curvature of the eyeglasses. In this embodiment, by adjusting the position of the adjustment member, the position of the connecting member can be adjusted, thereby adjusting the ear curvature of the eyeglasses so that the eyeglasses can match the user's head circumference, improving the user's wearing experience.
[0007] In some embodiments, the adjustment module further includes: a first elastic member disposed in the receiving cavity, the first elastic member being elastically connected to the side of the first portion opposite to the adjustment member; when the adjustment module is in a first state, the first elastic member is in a compressed state.
[0008] When the adjustment module is in the first state, the first elastic element is in a compressed state. At this time, the first elastic element can provide a fourth-direction support force to the first part, wherein the fourth direction can be the arrangement direction of the first part and the adjustment element.
[0009] In some embodiments, a first protrusion is provided on one of the first portion and the first elastic member, and a first assembly cavity is provided on the other of the first portion and the first elastic member, with the first protrusion located within the first assembly cavity.
[0010] With this configuration, the first protrusion and the first assembly cavity mutually limit each other, thereby limiting the first elastic element and preventing it from moving around.
[0011] In some embodiments, the material of the first elastic element includes a shape memory alloy.
[0012] Among them, shape memory alloy has good corrosion resistance and wear resistance. In addition, by setting the first elastic element as a shape memory alloy material, the user's feel can be improved when adjusting the bending moment of the ear through the adjusting element.
[0013] In some embodiments, the adjusting member is screwed to the fixing member.
[0014] The rotating adjustment member can be moved towards the first part or away from the first part, so as to control the position of the adjustment member, the position of the connecting member and the ear bend moment of the glasses. The rotating adjustment member is simple in mode and convenient to operate. In addition, the adjustment member and the fixing member are connected through threads, so that the connection between the adjustment member and the fixing member is stable. When the adjustment member is adjusted to a proper position, the adjustment member can be positioned at the position due to the threaded connection between the adjustment member and the fixing member through the mounting hole, so that the connecting member can be prevented from shaking.
[0015] In some embodiments, the adjustment module further comprises a second elastic member, the second elastic member is located in the accommodating cavity, the second elastic member is connected to the adjustment member, and the second elastic member is elastically connected to the side of the first part close to the adjustment member.
[0016] After the adjustment of the ear bend moment is completed, the first part can be moved towards the adjustment member due to the elasticity of the second elastic member, and the temple can be moved towards the other temple, so that the ear bend moment is reduced. In addition, the first part can also be moved away from the adjustment member, and the temple can be moved away from the other temple, so that the ear bend moment is increased. In the embodiments of the present application, the second elastic member is arranged, and the ear bend moment has a certain adjustment range, so that the glasses are suitable for wearers with different head circumferences.
[0017] In some embodiments, one of the second elastic member and the first part is provided with a second protrusion, and the other of the second elastic member and the first part is provided with a second assembly cavity, and the second protrusion is located in the second assembly cavity.
[0018] In this way, the second protrusion and the second assembly cavity limit each other, so that the second elastic member can be limited and prevented from moving.
[0019] In some embodiments, the rigidity of the second elastic member is greater than the rigidity of the first elastic member.
[0020] The greater the rigidity, the more easily the elastic member deforms. Therefore, the second elastic member is less likely to deform than the first elastic member. In this way, the second elastic member can be prevented from deforming due to the elastic force of the first elastic member, so that the connecting member moves towards the first end and changes the ear bend moment.
[0021] In some embodiments, the fixing member comprises a first fixing part and a second fixing part, the first fixing part is provided with a groove, the second fixing part covers the first fixing part, the groove and the second fixing part jointly define the accommodating cavity, and the first fixing part and the second fixing part are bonded; the adjustment member is connected to the second fixing part, and the middle part is rotationally connected to the first fixing part.
[0022] The first fixing part and the second fixing part are bonded together, and the connection between the two is relatively simple and easy to operate.
[0023] In some embodiments, the end face of the fastener away from the adjusting member is a stepped surface, and the stepped surface is connected to the frame.
[0024] By setting the end face of the fastener away from the adjustment surface as a stepped surface, the connection area between the fastener and the frame can be increased. In addition, the stepped surface can be connected to the frame from multiple directions, thereby increasing the stability of the connection between the fastener and the frame.
[0025] In some embodiments, the fastener has an opening that communicates with the receiving cavity, and a middle portion is located inside the opening; the size of the middle portion is smaller than the size of the opening.
[0026] This design avoids restricting the rotation of the connector by limiting the edge of the opening.
[0027] In some embodiments, the adjustment module further includes a rotating member, and the intermediate portion is rotatably connected to the fixed member by means of: the intermediate portion and the fixed member being rotatably connected by the rotating member; the extension direction of the rotating member is perpendicular to the first direction.
[0028] The solution involves using a rotating component to achieve a rotatable connection between the middle part and the fixed component, which is simple and easy to operate.
[0029] In some embodiments, the second portion includes a first sub-part and a second sub-part, the first sub-part being connected between the intermediate portion and the second sub-part, wherein the extending direction of the first sub-part is at an obtuse angle to the extending direction of the second sub-part, and the second sub-part is closer to the adjusting member than the first sub-part.
[0030] This design allows the second part to bend, thereby increasing the strength of the connector.
[0031] In some embodiments, the temple includes a third end and a fourth end disposed opposite to each other, wherein the third end is connected to a connector and an adjustment member is located on the side of the third end away from the fourth end.
[0032] By positioning the adjusting member on the side of the third end away from the fourth end, interference between the third end and the adjusting member can be avoided, thus facilitating the adjustment of the adjusting member's position.
[0033] On the other hand, a wearable device is provided, which includes: an imaging module and glasses provided in some of the above embodiments; the imaging module is used to emit a light beam, and the glasses frame is used to receive the light beam from the imaging module.
[0034] In some embodiments, the wearable device can include all the structures of the glasses provided in some embodiments above, and thus can include all the beneficial effects of the glasses provided in some embodiments above, which will not be repeated here. BRIEF DESCRIPTION OF DRAWINGS
[0035] In order to more clearly illustrate the technical solutions in the present application, the drawings needed to be used in some embodiments of the present application will be briefly introduced as follows. Obviously, the drawings in the following description are only the drawings of some embodiments of the present application, and other drawings can also be obtained by those skilled in the art according to these drawings. In addition, the drawings in the following description can be regarded as schematic diagrams, and are not limited to the actual size, actual process, actual timing of signals, etc. of the products involved in the embodiments of the present application.
[0036] Figure 1 Structure diagram of glasses provided in some embodiments of the present application;
[0037] Figure 2 Structure diagram of the frame, adjustment module and temple in some embodiments of the present application; Figure 1
[0038] Structure diagram of the adjustment module in some embodiments of the present application; Figure 3 Figure 2 Front view of the adjustment module in some embodiments of the present application;
[0039] Figure 4 Figure 3 Structure explosion diagram of the adjustment module in some embodiments of the present application;
[0040] Figure 5 Sectional view of B-B' in some embodiments of the present application; Figure 3
[0041] Another structure diagram of the adjustment module provided in some embodiments of the present application; Figure 6 Figure 4 Front view of the adjustment module in some embodiments of the present application;
[0042] Figure 7 Sectional view of C-C' in some embodiments of the present application;
[0043] Figure 8 Figure 7 Structure diagram of the adjustment member and the second elastic member in some embodiments of the present application. DETAILED DESCRIPTION
[0044] Figure 9 Figure 8
[0045] Figure 10 Figure 9 DETAILED DESCRIPTION
[0046] In the following, the technical solutions in the embodiments of the present disclosure will be described clearly and completely with reference to the drawings. Obviously, the described embodiments are only some, but not all of the embodiments of the present disclosure. Based on the embodiments provided by the present disclosure, all other embodiments obtained by a person of ordinary skill in the art are within the protection scope of the present disclosure.
[0047] Unless otherwise required by context, the term "comprise" and its other forms such as "comprises" and "comprising" are to be construed as open, inclusive, meaning that "comprising" means "including, but not limited to." In the description of the specification, the terms "some embodiments", "example", or "some examples" and the like are intended to indicate that the particular feature, structure, material, or characteristic being described is included in at least one embodiment or example of the present disclosure. The illustrative appearance of the above terms in various places in the specification are not necessarily intended to refer to the same embodiment or example. In addition, the particular features, structures, materials, or characteristics described can be included in any suitable embodiment or example in any appropriate manner.
[0048] Hereinafter, the terms "first", "second" are used only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the embodiments of the present disclosure, unless otherwise stated, the meaning of "a plurality of" is two or more.
[0049] As used herein, "parallel", "perpendicular" includes the stated case and the case similar to the stated case within an acceptable deviation range, wherein the acceptable deviation range is determined by a person of ordinary skill in the art considering the measurement being discussed and the error related to the measurement of a specific quantity (i.e., the limitation of the measurement system). For example, "parallel" includes absolute parallel and approximately parallel, wherein the acceptable deviation range of approximately parallel can be, for example, within 5° deviation; "perpendicular" includes absolute perpendicular and approximately perpendicular, wherein the acceptable deviation range of approximately perpendicular can also be, for example, within 5° deviation.
[0050] The wearable device provided by the embodiments of the present application comprises: an imaging module and glasses. The imaging module is used for emitting a light beam, and the frame 1000 is used for receiving the light beam emitted by the imaging module. The wearable device can be a virtual reality (VR) device, an AR device or an MR device. For example, the wearable device can be smart glasses, which can be virtual reality (VR) glasses, augmented reality (AR) glasses or mixed reality (MR) glasses.
[0051] The frame 1000 can receive the light beam emitted by the imaging module, so that the user can view the image generated by the imaging module through the frame.
[0052] Figure 1 The structure diagram of the glasses provided by some embodiments of the present application is shown. The glasses 4000 provided by the embodiments of the present application can be smart glasses, and in some embodiments, the smart glasses can also be other types of glasses, such as ordinary glasses with a shooting function, myopia glasses, sunglasses or diving glasses, etc., but are not limited thereto.
[0053] In addition, the glasses 4000 can also be non-smart glasses, such as myopia glasses, sunglasses, diving glasses, etc.
[0054] Please refer to Figure 1 The embodiments of the present application provide a pair of glasses 4000. The glasses 4000 comprise: a frame 1000, an adjusting module 2000 and a temple 3000. The adjusting module 2000 is connected to the frame 1000 and the temple 3000, respectively.
[0055] For example, the frame 1000 can comprise two eyeglass frames 1100, the two eyeglass frames 1100 are connected, and the two eyeglass frames 1100 are sequentially arranged along a third direction F3.
[0056] For example, the frame 1000 can further comprise a nose bridge 1200, two ends of the nose bridge 1200 are connected to the two eyeglass frames 1100, so that the two eyeglass frames 1100 can be connected through the nose bridge 1200.
[0057] In the glasses 4000, the number of the adjusting module 2000 can be two, and the two adjusting modules 2000 are arranged on both sides of the frame 1000 in the third direction F3, and the adjusting module 2000 is connected to the eyeglass frame 1100.
[0058] The number of the temple 3000 can be two, the temple 3000 is connected to the adjusting module 2000, and the two adjusting modules 2000 and the two temples 3000 are connected one by one.
[0059] The adjustment module 2000 is used to adjust the ear-bend moment between the two temples 3000. For example... Figure 1 As shown, the temple 3000 may include a bend, and the distance H1 between the bends of the two temples 3000 is the ear bending moment. Point A is the bend of the temple 3000.
[0060] When the wearer of the glasses 4000 has a large head circumference, the user can adjust the adjustment module 2000 to increase the distance between the two temples 3000, thereby increasing the ear bending moment.
[0061] When the wearer of the glasses 4000 has a small head circumference, the user can adjust the adjustment module 2000 to reduce the distance between the two temples 3000, thereby reducing the ear bending moment.
[0062] Figure 2 for Figure 1 The structural diagram of the frame 1000, adjustment module 2000, and temple 3000 is shown. Figure 3 for Figure 2 The structural diagram of the adjustment module 2000 in the middle. Figure 4 for Figure 3 The main view of the adjustment module 2000 in the middle; Figure 5 for Figure 3 Exploded view of the adjustment module structure in the middle. Figure 6 for Figure 4 Cross-sectional view at point B-B'.
[0063] Please see Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 The adjustment module 2000 includes: a fixing component 100, a connecting component 200, and an adjusting component 300.
[0064] Please see Figure 6 The fastener 100 includes a receiving cavity 110, which has a first end 111 and a second end 112 along the first direction F1.
[0065] For example, the receiving cavity 110 may be strip-shaped, with a first end 111 and a second end 112 being the two ends of the strip-shaped receiving cavity 110, respectively. The receiving cavity 110 may include cavity sidewalls, wherein the cavity sidewalls are located between the first end 111 and the second end 112.
[0066] Please see Figure 5 and Figure 6The connecting piece 200 comprises a first part 210, an intermediate part 220 and a second part 230 connected in sequence, the first part 210 is located in the accommodating cavity 110, the second part 230 is located outside the accommodating cavity 110 and connected with the temple 3000, the intermediate part 220 is rotationally connected with the fixing piece 100, and the intermediate part 220 is located between two ends of the adjusting piece 300 in the first direction F1.
[0067] The first part 210 and the second part 230 are connected through the intermediate part 220. The first part 210 is located between the first end 111 and the second end 112.
[0068] For example, the two ends of the fixing piece 100 arranged opposite in the first direction F1 are the fifth end 121 and the sixth end 122, and the intermediate part 220 is located between the fifth end 121 and the sixth end 122. The distance between the fifth end 121 and the second end 112 is less than the distance between the fifth end 121 and the first end 111.
[0069] Since the intermediate part 220 is rotationally connected with the fixing piece 100, the connecting piece 200 can rotate under the action of an external force.
[0070] Please refer to Figure 6 The adjusting piece 300 penetrates the fixing piece 100 and can move along the first direction F1 relative to the fixing piece 100, and one end of the adjusting piece 300 is located in the accommodating cavity 110 and the other end is located outside the accommodating cavity 110; when the adjusting module 2000 is in the first state, the adjusting piece 300 is located in the accommodating cavity 110 and abuts against the first part 210.
[0071] The frame 1000 is connected to the end of the fixing piece 100 away from the adjusting piece 300. For example, the end of the fixing piece 100 away from the adjusting piece 300 is connected to the eyeglass ring 1100. For example, the adjusting piece 300 can be bonded with the eyeglass ring 1100, and the fixing piece 100 and the eyeglass ring 1100 are fixed by bonding, which is a simple and easy-to-operate connection method.
[0072] The adjusting piece 300 penetrates the fixing piece 100, and at this time, the adjusting piece 300 can penetrate the fixing piece 100, and part of the adjusting piece 300 can be located in the accommodating cavity 110. For example, the adjusting piece 300 can be arranged opposite to the second end 112 of the accommodating cavity 110, and at this time, the adjusting piece 300 has a spacing with the second end 112. At this time, the adjusting piece 300 can be located on the side away from the second end 112 of the first part 210.
[0073] The adjusting member 300 can be connected to the fixing member 100, and the adjusting member 300 can move relative to the fixing member 100 in a first direction F1. For example, the adjusting member 300 can move towards the first part 210 or away from the first part 210.
[0074] In the embodiments of this application, the state in which one end of the adjusting member 300 located in the receiving cavity 110 can abut against the first part 210 is referred to as the first state of the adjusting module 2000.
[0075] In some examples, the adjusting member 300 has a critical position. When the adjusting member 300 is in the critical position, it cannot restrict the rotation of the first part 210. If the adjusting member 300 moves away from the critical position, the distance between the adjusting member 300 and the first part 210 increases until it can no longer contact the first part 210. If the adjusting member 300 moves closer to the first part 210 from the critical position, the adjusting module 2000 can enter the first state. In this state, the adjusting member 300 can contact the first part 210 and push the first part 210 to rotate.
[0076] In some other examples, when one end of the adjusting member 300 is located inside the receiving cavity 110, the end of the adjusting member 300 located inside the receiving cavity 110 can abut against the first part 210. At this time, the adjusting module 2000 is in the first state.
[0077] In this case, the adjusting member 300 is located at one end of the receiving cavity 110 and abuts against the first part 210. At this time, the adjusting member 300 can directly contact the first part 210. In other examples, the adjusting member 300 can abut against the first part 210 through other components.
[0078] When the adjustment module 2000 is in the first state, when the adjustment member 300 moves towards the first part 210 (e.g.) Figure 6 When the first part moves (in the direction indicated by arrow S1), the adjusting member 300 extends into one end of the receiving cavity 110, which can push the first part to move away from the adjusting member 300, thereby pushing the connecting member 200 to rotate. At this time, the second part 230 can drive the temple 3000 to move away from the other temple 3000, thereby increasing the ear bending moment of the eyeglasses 4000.
[0079] When the adjusting member 300 moves away from the first part 210 (e.g.) Figure 6When the connecting piece 200 moves in the direction indicated by the arrow S2, the first part 210 can move in the direction of approaching the adjusting piece 300, so that the connecting piece 200 can rotate, at this time, the second part 230 can drive the temple 3000 to move in the direction of approaching the other temple 3000, so as to reduce the ear bending moment of the glasses 4000.
[0080] In the embodiment of the present application, by adjusting the position of the adjusting piece 300, the position of the connecting piece 200 can be adjusted, so as to adjust the ear bending moment of the glasses 4000, so that the glasses 4000 can match the head circumference of the user, and the wearing experience of the user is improved.
[0081] Please refer to Figure 3 , Figure 5 and Figure 6 In some embodiments, the fixing piece 100 can include a first fixing part 120 and a second fixing part 130, the first fixing part 120 is provided with a groove 131, and the second fixing part 130 covers the first fixing part 120, and the groove 131 and the second fixing part 130 jointly enclose the accommodating cavity 110. The first fixing part 120 and the second fixing part 130 are bonded, the adjusting piece 300 is connected with the second fixing part 130, and the intermediate part 220 is rotationally connected with the first fixing part 120.
[0082] Among them, the groove bottom of the groove 131 is the second end 112 of the accommodating cavity 110, and the part of the second fixing part 130 covering the groove of the groove 131 can be the first end 111 of the accommodating cavity 110.
[0083] For example, the second fixing part 130 can be plate-shaped.
[0084] In some examples, the second fixing part 130 can be provided with a mounting groove, and the groove of the mounting groove can be butt-jointed with the groove of the groove 131, at this time, the groove 131 can jointly enclose the accommodating cavity 110 with the mounting groove.
[0085] Among them, the first fixing part 120 and the second fixing part 130 are bonded, and the connection mode between the two is relatively simple and easy to operate.
[0086] Please refer to Figure 3 , Figure 5 and Figure 6 In some embodiments, the fixing piece 100 is provided with an opening 150, the opening 150 is communicated with the accommodating cavity 110, the intermediate part 220 is located in the opening 150, and the size of the intermediate part 220 is smaller than the size of the opening 150.
[0087] Among them, the first part 210 of the connecting piece 200 can be installed into the accommodating cavity 110 from the opening 150.
[0088] The size of the intermediate portion 220 is smaller than the size of the opening 150, and the width of the opening 150 in the first direction F1 is greater than the thickness of the connecting piece 200 in the first direction F1. In this way, the edge of the opening 150 can avoid limiting the rotation of the connecting piece 200.
[0089] In some examples, the opening 150 can be arranged on the first fixing portion 120 and communicated with the groove wall of the groove 131.
[0090] Please refer to Figure 3 , Figure 5 and Figure 6 In some examples, the end surface of the fixing piece 100 away from the adjusting piece 300 is a stepped surface, and the stepped surface is connected to the frame 1000 (as shown in Figure 2 ).
[0091] The stepped surface can increase the connection area between the fixing piece 100 and the frame 1000, and the stepped surface can be connected to the frame 1000 from multiple directions, thereby increasing the stability of the connection between the fixing piece 100 and the frame 1000.
[0092] In some examples, the stepped surface is bonded to the frame 1000, and the two are connected in a bonded manner, which is convenient to operate.
[0093] In some examples, the stepped surface is connected to the frame 1000. In other examples, part of the stepped surface is connected to the frame 1000.
[0094] In some examples, the stepped surface can include a first connecting surface 160, a second connecting surface 170, and a third connecting surface 180. The first connecting surface 160 and the second connecting surface 170 are away from the adjusting piece 300, the distance between the first connecting surface 160 and the adjusting piece 300 is smaller than the distance between the second connecting surface 170 and the adjusting piece 300, and the third connecting surface 180 is connected between the first connecting surface 160 and the second connecting surface 170. The first connecting surface 160 is connected to the frame 1000, and the third connecting surface 180 is connected to the frame 1000.
[0095] In some examples, the first connecting surface 160 can be parallel to the second connecting surface 170, the third connecting surface 180 can be perpendicular to the first connecting surface 160, and the third connecting surface 180 can be perpendicular to the second connecting surface 170. Of course, in other examples, the first connecting surface 160 can not be parallel to the second connecting surface 170, and the third connecting surface 180 can not be perpendicular to the first connecting surface 160.
[0096] The first connecting surface 160, the second connecting surface 170 and the third connecting surface 180 can be approximately planar surfaces. For example, the first connecting surface 160 can be provided with recesses, protrusions or other structures.
[0097] For example, the stepped surface can be arranged on a surface of the first fixing portion 120 away from the first fixing portion 120.
[0098] For example, the first portion 210 can be arranged on the first fixing portion 120. Figure 5 In some embodiments, the second portion 230 includes a first sub-portion 231 and a second sub-portion 232, the first sub-portion 231 is connected between the intermediate portion 220 and the second sub-portion 232, the extension direction of the first sub-portion 231 forms an obtuse angle with the extension direction of the second sub-portion 232, and the second sub-portion 232 is closer to the adjusting member 300 than the first sub-portion 231.
[0099] In this way, the second portion 230 can have a bend, thereby improving the strength of the connecting member 200.
[0100] For example, the first sub-portion 231 can be plate-shaped.
[0101] For example, the second sub-portion 232 can be plate-shaped.
[0102] In some examples, the intermediate portion 220 is plate-shaped, the first portion 210 is plate-shaped, and the first sub-portion 231, the intermediate portion 220 and the first portion 210 can be located in the same plane.
[0103] For example, the first portion 210 can be arranged on the first fixing portion 120. Figure 5 In some embodiments, the adjusting module 2000 further includes a rotating member 500, and the intermediate portion 220 is rotationally connected to the fixing member 100, including that the intermediate portion 220 is rotationally connected to the fixing member 100 through the rotating member 500, and the extension direction of the rotating member 500 is perpendicular to the first direction F1.
[0104] In this way, the rotating member 500 is arranged to rotationally connect the intermediate portion 220 to the fixing member 100, which is simple and easy to operate.
[0105] In some examples, the adjusting member 300 is in interference fit with the fixing member 100, when adjusting the position of the adjusting member 300, the adjusting member 300 can be pulled to change the position of the adjusting member 300, and after adjusting the position of the adjusting member 300, the position of the adjusting member 300 can be fixed due to the interference fit between the adjusting member 300 and the fixing member 100, thereby avoiding the position of the adjusting member 300 from shifting.
[0106] For example, the first portion 210 can be arranged on the first fixing portion 120. Figure 5 In some embodiments, the adjusting member 300 is screwed to the fixing member 100.
[0107] The adjusting member 300 can be moved towards the first part 210 or away from the first part 210 by rotating the adjusting member 300, so as to control the position of the adjusting member 300, control the position of the connecting member 200, and adjust the ear bend of the glasses 4000. The rotating adjusting member 300 is simple and convenient to operate. In addition, the adjusting member 300 is connected with the fixing member 100 through threads, so that the connection between the adjusting member 300 and the fixing member 100 is stable.
[0108] In addition, when the adjusting member 300 is adjusted to a proper position, the adjusting member 300 can be positioned at the position because the adjusting member 300 is connected with the fixing member 100 through the mounting hole 140, so as to avoid the shaking of the connecting member 200.
[0109] Referring to Figure 5 and Figure 6 , for example, the second end 112 of the fixing member 100 is provided with the mounting hole 140, and the mounting hole 140 is communicated with the first end 111 of the accommodating cavity 110. The adjusting member 300 extends into the accommodating cavity 110 through the mounting hole 140, and the adjusting member 300 is connected with the fixing member 100 through threads.
[0110] The surface of the adjusting member 300 is provided with external threads, and the surface of the mounting hole 140 is provided with internal threads. The external threads of the adjusting member 300 can be matched with the internal threads of the mounting hole 140, so that the adjusting member 300 can be connected with the fixing member 100 through threads.
[0111] In some examples, the mounting hole 140 can be arranged on the second fixing part 130.
[0112] Referring to Figure 5 and Figure 6 , in some embodiments, the adjusting member 300 can include the first adjusting rod 310 and the first knob 320. The first adjusting rod 310 extends through the fixing member 100, one end of the adjusting member 300 is located in the accommodating cavity 110, and the other end is located outside the accommodating cavity 110. The first adjusting rod 310 is screwed with the fixing member 100. The first knob 320 is connected to the end of the first adjusting rod 310 away from the first part 210. The cross-sectional area of the first knob 320 is greater than that of the first adjusting rod 310.
[0113] When the adjusting module 2000 is in the first state, one end of the first adjusting rod 310 abuts against the first part 210. At this time, the end of the first adjusting rod 310 located in the accommodating cavity 110 can be abutted against the first part 210. In this way, the first adjusting rod 310 can move the first part 210 away from the first adjusting rod 310, and the first adjusting rod 310 can also limit the movement of the first part 210 towards the first adjusting rod 310.
[0114] The cross section of the first adjusting rod 310 is perpendicular to the axial direction L of the first adjusting rod 310, wherein the axial direction L of the first adjusting rod 310 can be the same as the direction in which the first end 111 points to the second end 112.
[0115] The cross section of the first knob 320 can be perpendicular to the axial direction L of the first adjusting rod 310.
[0116] Wherein, when the user adjusts the position of the adjusting member 300, the user can operate the first knob 320, and because the cross-sectional area of the first knob 320 is larger than that of the first adjusting rod 310, the first knob 320 is more convenient for the user to pinch, thereby improving the user's hand feeling.
[0117] Wherein, the first adjusting rod 310 is installed in the mounting hole 140 and extends into the accommodating cavity 110 through the mounting hole 140, the first adjusting rod 310 is threadedly connected with the fixing member 100 through the mounting hole 140, and the end of the first adjusting rod 310 extending into the accommodating cavity 110 is in contact with the connecting member 200.
[0118] Wherein, the surface of the first adjusting rod 310 is provided with external threads, so as to be connected with the mounting hole 140.
[0119] Please refer to Figure 5 and Figure 6 In some embodiments, the adjusting module 2000 can further include a first elastic member 400, the first elastic member 400 is arranged in the accommodating cavity 110, and the first elastic member 400 and the first part 210 are elastically connected away from the adjusting member 300. When the adjusting module 2000 is in the first state, the first elastic member 400 is in a compressed state.
[0120] Wherein, the first elastic member 400 is located away from the adjusting member 300 on the side of the first part 210. The elastic connection between the first elastic member 400 and the first part 210 means that the first elastic member 400 can be compressed by the first part 210, thereby generating elastic force.
[0121] When the adjusting module 2000 is in the first state, the first elastic member 400 is in a compressed state, at this time, the first elastic member 400 can provide the first part 210 with a support force in the fourth direction F4, wherein the fourth direction F4 can be the arrangement direction of the first part 210 and the adjusting member 300.
[0122] Wherein, since the first elastic member 400 can provide the connecting member 200 with a supporting force in the fourth direction F4, when the adjusting member 300 moves away from the first part 210 in the case that the adjusting module 2000 is in the first state, the first part 210 can move towards the first part 210 under the support of the elasticity of the first elastic member 400, so as to avoid the first part 210 from being separated from the adjusting member 300. Therefore, the first elastic member 400 can stabilize the first part 210 between the first elastic member 400 and the adjusting member 300, so as to avoid the first part 210 from shaking.
[0123] For example, the first elastic member 400 is a spring.
[0124] Wherein, the spring has a simple structure and low cost, so as to reduce the cost of the adjusting module 2000.
[0125] In addition to the spring, the first elastic member 400 can also be a clockwork, a bellows, etc., which are not listed here.
[0126] Please refer to Figure 5 and Figure 6 In some embodiments, one of the first part 210 and the first elastic member 400 is provided with a first protrusion 240, and the other of the first part 210 and the first elastic member 400 is provided with a first assembly cavity, and the first protrusion 240 is located in the first assembly cavity.
[0127] In this way, the first protrusion 240 and the first assembly cavity limit each other, so as to limit the first elastic member 400 and avoid the first elastic member 400 from moving around.
[0128] In some examples, the first protrusion 240 can be clamped in the first assembly cavity, at this time, the first elastic member 400 is more stable.
[0129] In other examples, the first protrusion 240 can be gap-fitted with the first assembly cavity, so as to facilitate disassembly of the first elastic member 400.
[0130] The first protrusion 240 can be arranged on the side of the first part 210 facing the first elastic member 400, and the first assembly cavity can be arranged on the side of the first elastic member 400 facing the first part 210. In addition, the first protrusion 240 can also be arranged on the side of the first elastic member 400 facing the first part 210, and the first assembly cavity can be arranged on the side of the first part 210 facing the first elastic member 400.
[0131] For example, in the case that the first elastic member 400 is a spring, the spring is wound by a spring wire, and if the first assembly cavity is arranged on the spring, at this time, the first assembly cavity can be a space surrounded by the spring wire.
[0132] In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200.
[0133] In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200.
[0134] In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200.
[0135] In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200.
[0136] In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200.
[0137] Figure 7 In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200. Figure 8 In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200. Figure 7 In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200. Figure 9 In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200. Figure 8 In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200. Figure 10 In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200. Figure 9 In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200.
[0138] In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200. Figure 7 In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200. Figure 8 In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200. Figure 9 In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200. Figure 10 In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200.
[0139] In some examples, the first elastic member 400 can be adhered to the end of the connecting member 200 close to the first portion 210, so as to fix the end of the first elastic member 400 close to the connecting member 200. Figure 6When the adjusting member 300 moves towards the first part 210, the adjusting member 300 can push the second elastic member 600 to move towards the first part 210, so as to push the first part 210 to move away from the adjusting member 300, and then the connecting member 200 can rotate, and the second part 220 can drive the temple 3000 to move away from the other temple 3000, so as to increase the ear bending moment of the glasses 4000.
[0140] When the adjusting member 300 moves towards the first part 210, the adjusting member 300 can push the second elastic member 600 to move towards the first part 210, so as to push the first part 210 to move away from the adjusting member 300, and then the connecting member 200 can rotate, and the second part 220 can drive the temple 3000 to move away from the other temple 3000, so as to increase the ear bending moment of the glasses 4000.
[0141] When the adjusting member 300 moves towards the first part 210, the adjusting member 300 can push the second elastic member 600 to move towards the first part 210, so as to push the first part 210 to move away from the adjusting member 300, and then the connecting member 200 can rotate, and the second part 220 can drive the temple 3000 to move away from the other temple 3000, so as to increase the ear bending moment of the glasses 4000.
[0142] When the adjusting member 300 moves towards the first part 210, the adjusting member 300 can push the second elastic member 600 to move towards the first part 210, so as to push the first part 210 to move away from the adjusting member 300, and then the connecting member 200 can rotate, and the second part 220 can drive the temple 3000 to move away from the other temple 3000, so as to increase the ear bending moment of the glasses 4000.
[0143] Please refer to Figure 9 In some embodiments, the second elastic member 600 and one of the first part 210 (as shown in Figure 6 The other one of the second elastic member 600 and the first part 210 is provided with a second assembly cavity, and the second protrusion 250 is located in the second assembly cavity.
[0144] In this way, the second protrusion 250 and the second assembly cavity limit each other, so as to limit the second elastic member 600, and avoid the second elastic member 600 from moving.
[0145] The second protrusion 250 can be matched with the second assembly cavity gap, and then the second elastic member 600 is conveniently disassembled. In the case of screwing the adjusting member 300 and the fixing member 100, the rotation of the adjusting member 300 drives the rotation of the second elastic member 600, and the second protrusion 250 is matched with the second assembly cavity gap, and the rotation of the second elastic member 600 is not limited.
[0146] In some other examples, the second protrusion 250 can be matched with the second assembly cavity. In the case of interference fit between the adjusting member 300 and the fixing member 100, when the adjusting member 300 moves along the first direction F1, the adjusting member 300 can drive the second elastic member 600 to move along the first direction F1, and since the second protrusion 250 and the second assembly cavity are matched, the second elastic member 600 can drive the first part 210 to move, at this time, the first part 210 rotates, and the first part 210 can move in an arc line, and since the second elastic member 600 can be bent, the second elastic member 600 does not limit the arc line movement of the first part 210.
[0147] The second protrusion 250 can be arranged on the side of the first part 210 facing the second elastic member 600, and the second assembly cavity is arranged on the side of the second elastic member 600 facing the first part 210. For example, in the case of the second elastic member 600 being a spring, the spring is wound by a spring wire, and if the second assembly cavity is arranged on the spring, at this time, the second assembly cavity can be a space surrounded by the spring wire.
[0148] In addition, the second protrusion 250 can also be arranged on the side of the second elastic member 600 facing the first part 210, and the second assembly cavity can be arranged on the side of the first part 210 facing the second elastic member 600.
[0149] For example, the second elastic member 600 can be a spring, a clockwork, a bellows, etc., which are not listed one by one.
[0150] Please refer to Figure 9 In some embodiments, the rigidity of the second elastic member 600 is greater than the rigidity of the first elastic member 400.
[0151] The greater the rigidity, the more easily the elastic member deforms. Therefore, the second elastic member 600 is less likely to deform than the first elastic member 400. In this way, the deformation of the second elastic member 600 caused by the elastic force of the first elastic member 400 can be avoided, so that the connecting member 200 moves towards the first end 111, and the ear bending moment is changed.
[0152] Please refer to Figure 1 and Figure 2In some embodiments, the temple 3000 comprises a third end 3001 and a fourth end 3002 oppositely arranged, wherein the third end 3001 is connected with the connecting member 200, and the adjusting member 300 is located on a side of the third end 3001 away from the fourth end 3002.
[0153] The third end 3001 can be directly connected with the connecting member 200 or indirectly connected through other structures.
[0154] By locating the adjusting member 300 on a side of the third end 3001 away from the fourth end 3002, the third end 3001 can be prevented from interfering with the adjusting member 300, thereby facilitating the adjustment of the position of the adjusting member 300.
[0155] Please refer to Figure 2 、 Figure 3 and Figure 5 In some embodiments, the adjusting module 2000 can further comprise a rotating connecting member 700, which can comprise a rotating connecting portion 710, a shaft sleeve 720 and a rotating shaft 730, wherein the rotating connecting portion 710 is connected to an end of the second portion 230 away from the intermediate portion 220, the rotating connecting portion 710 is provided with an assembly hole, the shaft sleeve 720 is arranged in the assembly hole, the rotating shaft 730 is arranged in the shaft sleeve 720, and the rotating shaft 730 is rotatably connected with the shaft sleeve 720. The rotating shaft 730 is connected with the temple 3000.
[0156] The temple 3000 is provided with a mounting lug on a side close to the frame 1000, and the rotating shaft 730 is connected with the mounting lug.
[0157] In this way, the temple 3000 can be rotatably connected with the rotating connecting portion 710, and the temple 3000 can be rotated towards the frame 1000 until the temple 3000 is folded with the frame 1000, thereby facilitating the storage of the smart glasses.
[0158] In addition, the temple 3000 can also be rotated away from the frame 1000, so that the temple 3000 can be opened for the user to wear.
[0159] The above is merely specific embodiments of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art can think of changes or replacements within the technical range disclosed in the present application, which shall be covered in the protection scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.
Claims
1. A pair of eyeglasses, characterized in that, The eyeglasses include: temples, frames, and an adjustment module; wherein, the adjustment module includes: a fixing member, a connecting member, and an adjusting member; the fixing member includes a receiving cavity, the receiving cavity having a first end and a second end along a first direction; the connecting member includes a first part, a middle part, and a second part connected in sequence, the first part being located inside the receiving cavity, the second part being located outside the receiving cavity and connected to the temples, the middle part being rotatably connected to the fixing member, the middle part being located between the two ends of the fixing member in the first direction; the adjusting member passes through the fixing member and is capable of moving relative to the fixing member along the first direction, with one end of the adjusting member located inside the receiving cavity and the other end located outside the receiving cavity; when the adjustment module is in a first state, the end of the adjusting member located in the receiving cavity abuts against the first part; The frame is connected to the end of the fixing member away from the adjusting member.
2. The eyeglasses according to claim 1, characterized in that, The adjustment module further includes: a first elastic element, which is disposed in the receiving cavity, and the first elastic element and the first part opposite to the adjustment element are elastically connected; When the adjustment module is in the first state, the first elastic element is in a compressed state.
3. The eyeglasses according to claim 2, characterized in that, One of the first part and the first elastic member is provided with a first protrusion, and the other of the first part and the first elastic member is provided with a first assembly cavity, wherein the first protrusion is located in the first assembly cavity.
4. The eyeglasses according to claim 2, characterized in that, The material of the first elastic element includes a shape memory alloy.
5. The eyeglasses according to claim 2, characterized in that, The adjusting member is screwed to the fixing member.
6. The eyeglasses according to claim 5, characterized in that, The adjustment module further includes a second elastic element, which is located within the receiving cavity and connected to the adjustment element. The second elastic element is elastically connected to the side of the first portion near the adjustment element.
7. The eyeglasses according to claim 6, characterized in that, A second protrusion is provided on one of the second elastic member and the first part, and a second assembly cavity is provided on the other of the second elastic member and the first part, with the second protrusion located inside the second assembly cavity.
8. The eyeglasses according to claim 6, characterized in that, The stiffness of the second elastic element is greater than that of the first elastic element.
9. The eyeglasses according to any one of claims 1-8, characterized in that, The fastener includes a first fixing part and a second fixing part. The first fixing part is provided with a groove. The second fixing part covers the first fixing part. The groove and the second fixing part together form the receiving cavity. The first fixing part and the second fixing part are bonded together. The adjusting member is connected to the second fixing part, and the middle part is rotatably connected to the first fixing part.
10. The eyeglasses according to any one of claims 1-8, characterized in that, The end face of the fixing member away from the adjusting member is a stepped surface, and the stepped surface is connected to the mirror frame.
11. The eyeglasses according to any one of claims 1-8, characterized in that, The fastener has an opening that communicates with the receiving cavity, and the middle portion is located inside the opening; the size of the middle portion is smaller than the size of the opening.
12. The eyeglasses according to any one of claims 1-8, characterized in that, The adjustment module further includes a rotating component, and the rotatable connection between the middle part and the fixed component includes: the middle part and the fixed component are rotatably connected through the rotating component; the extension direction of the rotating component is perpendicular to the first direction.
13. The eyeglasses according to any one of claims 1-8, characterized in that, The second part includes a first sub-part and a second sub-part, the first sub-part being connected between the intermediate part and the second sub-part, wherein the extending direction of the first sub-part forms an obtuse angle with the extending direction of the second sub-part, and the second sub-part is closer to the adjusting member than the first sub-part.
14. The eyeglasses according to any one of claims 1-8, characterized in that, The temple includes a third end and a fourth end disposed opposite to each other, wherein the third end is connected to the connector, and the adjusting member is located on the side of the third end away from the fourth end.
15. A wearable device, characterized in that, The wearable device includes: An imaging module and eyeglasses according to any one of claims 1-14; the imaging module is used to emit a light beam, and the frame is used to receive the light beam from the imaging module.