Disclosure of Invention
The invention provides detachable glasses, aiming at realizing the quick disassembly and the quick replacement of glasses legs of intelligent glasses and traditional glasses and providing the flexibility of use for users.
The present invention provides a pair of detachable glasses, comprising:
picture frame, mirror leg and being located connection structure between picture frame and the mirror leg, connection structure includes:
the hollow base is fixedly connected to the two ends of the mirror frame, the wall surface of the hollow base is provided with at least one limiting mechanism, and the limiting mechanism comprises an opening and a clamping groove which are communicated;
the lug boss is positioned at one end of the glasses leg;
wherein, the boss can get into the opening and rotate to in the draw-in groove, make the mirror leg with the picture frame is connected.
Further preferably, the limiting mechanism is L-shaped.
Further preferably, the height of the clamping groove is equal to the length of the boss along the direction of the glasses legs.
Further preferably, the opening is communicated with the clamping groove through a rotary groove, and the height of the rotary groove is greater than or equal to the length of the boss in the direction of the glasses legs.
Further preferably, the width of the clamping groove is equal to the width of the boss, and the height of the clamping groove is greater than the height of the rotating groove.
Further preferably, the bottom of the hollow base is provided with an elastic member.
Further preferably, when the glasses legs are connected with the glasses frame, the bosses are matched and fixed with the clamping grooves, and the bottoms of the glasses legs are abutted to the elastic pieces.
Further preferably, the glasses also comprise a hardware structure positioned inside the glasses leg, wherein the hardware structure comprises: the Bluetooth mobile phone comprises a main control chip, a microphone, a loudspeaker, a power supply module, a battery and a Bluetooth module, wherein the power supply module is provided with a charging hole.
Further preferably, the temple has a protrusion, and the hardware structure is located in the protrusion.
Further preferably, the number of the limiting mechanisms is two, two bosses are arranged on each glasses leg, and the two limiting mechanisms are symmetrical about the central axis of the hollow base.
The invention has the beneficial effects that: the invention provides a pair of detachable glasses, wherein a connecting structure between a glasses frame and glasses legs comprises a hollow base fixedly connected to two ends of the glasses frame and a boss positioned at one end of each of the glasses legs. The wall surface of the hollow base is provided with at least one limiting mechanism which comprises an opening and a clamping groove which are communicated. The lug boss can enter the opening and rotate a certain angle to enter the clamping groove, namely, the lug boss is fixed in the clamping groove, so that the glasses legs are connected with the glasses frame; when the temples rotate in the opposite direction for a certain angle, the temples can be withdrawn from the clamping grooves and then pulled out from the openings, so that the temples can be detached. When needs switch intelligent mirror leg and traditional mirror leg or when intelligent mirror leg need charge the change, can realize the quick detach quick change of mirror leg, provide the flexibility of using for the user.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. It is to be understood that the described embodiments are merely exemplary of the invention, and not restrictive of the full scope of the invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In the present invention, unless otherwise expressly stated or limited, "above" or "below" a first feature means that the first and second features are in direct contact, or that the first and second features are not in direct contact but are in contact with each other via another feature therebetween. Also, the first feature being "on," "above" and "over" the second feature includes the first feature being directly on and obliquely above the second feature, or merely indicating that the first feature is at a higher level than the second feature. A first feature being "under," "below," and "beneath" a second feature includes the first feature being directly under and obliquely below the second feature, or simply meaning that the first feature is at a lesser elevation than the second feature.
Referring to fig. 1, fig. 1 is a schematic structural diagram of detachable glasses according to a first embodiment of the present invention. Theremovable eyeglasses 100 comprise aframe 10,temples 11 and a connecting structure 12 between theframe 10 and thetemples 11, only onetemple 11 being shown in fig. 1. Theframe 10 is provided with two lenses, and theframe 10 and thetemples 11 may be made of metal, plastic, resin, natural material, or a mixture thereof. The metal materials include copper alloy, nickel alloy and noble metal, and are required to have certain hardness, flexibility, elasticity, wear resistance, corrosion resistance, light weight, luster, good color and the like; the natural materials comprise hawksbill carapace, special wood, animal horn and the like; the mixed material is formed by mixing metal and plastic. The connecting structure 12 comprises ahollow base 121 fixedly connected to both ends of thespectacle frame 10 and aboss 122 fixedly connected to one end of thetemple 11, and thetemple 11 and thehollow base 121 can be mounted and dismounted by the connection and separation between theboss 122 and thehollow base 121.
Specifically, please refer to fig. 2, fig. 2 is a schematic structural diagram of a hollow base according to a first embodiment of the present invention. Thehollow base 121 is a hollow cylinder without a top cover, the bottom of the cylinder is fixedly connected to the edges of the two ends of theframe 10, and the side of the cylinder is a wall with a certain thickness. The wall of thehollow base 121 has at least one position-limiting mechanism 1210, and the position-limiting mechanism 1210 includes anopening 1211 and aslot 1212 that are connected, so that the thickness of theopening 1211 and theslot 1212 is equal to the thickness of the side wall of thehollow base 121. Thelimiting mechanism 1210 is L-shaped, theopening 1211 is disposed along a long side of the L-shaped limiting mechanism 1210, and thecard slot 1212 is disposed along a short side of the L-shapedlimiting mechanism 1210, such that the height h1 of theopening 1211 is greater than the height h2 of thecard slot 1212, and theopening 1211 and the bottom of thecard slot 1212 are at the same height, i.e., at the same plane.
Wherein, the number of thelimiting mechanisms 1210 is at least one. In the present embodiment, the number of thelimiting mechanisms 1210 is two, and the twolimiting mechanisms 1210 are symmetrical with respect to the central axis of the hollow base 121 (i.e., the central axis of the cylinder). Specifically, the twoopenings 1211 are symmetrical about a central axis, and the twoslots 1212 are also symmetrical about the central axis. In some embodiments, the number ofstop mechanisms 1210 can be one. Compared with a connecting structure of onelimiting mechanism 1210, the twolimiting mechanisms 1210 in the embodiment can enhance the mounting stability.
Referring to fig. 3a and 3b, fig. 3a is a schematic perspective view of a temple according to a first embodiment of the present invention, fig. 3b is a schematic plan view of a temple according to a first embodiment of the present invention, and fig. 3b is a plan view of a temple 11 (an end having a boss 122) as viewed from a bottom thereof. The end of thetemple 11 connected to theframe 10 is cylindrical in shape and has a diameter smaller than that of thehollow base 121 so that thetemple 11 can be inserted into the hollow portion of thehollow base 121 and the other end of thetemple 11 away from theframe 10 is bent to conform to the curvature of the ear of the user. In this embodiment, twobosses 122 are fixed to thetemple 11, and the twobosses 122 are located at one end of thetemple 11 connected to theframe 10 and are respectively aligned with the twoopenings 1211 of thehollow base 121. Specifically, the distribution distance of the twoopenings 1211 of the two limitingmechanisms 1210 on the side wall of thehollow base 121 is the same as the distribution distance of the twobosses 122 on thetemple 11 on the outer surface of thetemple 11.
As shown in fig. 3a, the length of theboss 122 in the direction of thetemple 11 is h0, and the width of theboss 122 in the direction perpendicular to thetemple 11 is W0. As shown in FIG. 3b, the thickness of theprotrusion 122 is W1, and the thickness W1 of theprotrusion 122 is equal to the thickness of the sidewall of thehollow base 121 and also equal to the thickness of theopening 1211 and theslot 1212.
In this embodiment, when thetemple 11 is connected to theframe 10 through the connecting structure 12, the twobosses 122 on thetemple 11 are respectively inserted into the twoopenings 1211 of the two limitingmechanisms 1210, and when thebosses 122 are inserted into the lowest ends of theopenings 1211, thetemple 11 is rotated by a certain angle toward thecard slot 1212, and then thebosses 122 enter thecard slot 1212 to be fixed. When thetemple 11 needs to be replaced or the usedtemple 11 needs to be charged, thetemple 11 is rotated in the opposite direction by a certain angle, theboss 122 withdraws from thecard slot 1212, and thetemple 11 is pulled out from theopening 1211 to detach thetemple 11.
Preferably, the length h0 of theprotrusion 122 along the direction of the temple 11 (or the direction of the central axis) is equal to the height h2 of theslot 1212, so that theprotrusion 122 can be just caught in theslot 1212 without moving up and down when thetemple 11 is connected to theframe 10. The width of theslot 1212 is as large as possible so that theboss 122 can be rotated a greater angle further away from theopening 1211, which reduces the risk of theboss 122 slipping out of theopening 1211. In this embodiment, when the number of the limitingmechanisms 1210 is two, the angle of rotation of thetemple 11 is less than 180 °.
In the present embodiment, thetemple 11 can be an intelligent temple, a traditional temple or a sports temple, etc., and thetemple 11 with different functions has the same feature in appearance, i.e. aboss 122 is provided at one end of the connectingframe 10 to realize the connection with thehollow base 121.
Referring to fig. 4, fig. 4 is a circuit diagram of an internal hardware structure of a temple according to a first embodiment of the present invention. In this embodiment, the mirror leg is intelligent mirror leg, can realize functions such as music broadcast and conversation. The hardware structure comprises amain control chip 111, amicrophone 112, anamplifier 113, aloudspeaker 114, abattery 115, apower supply module 116 and aBluetooth module 117, wherein thepower supply module 116 is provided with a charginghole 118. Themicrophone 112, theamplifier 113, thespeaker 114, thebattery 115, thepower supply module 116, and thebluetooth module 117 are connected to themain control chip 111. The hardware structure may further include asensor 119 connected to themain control chip 111, such as a hall sensor, which receives a control signal sent by themain control chip 111 to control the hardware structure to turn on and off the circuit. The hardware structure may further include function keys (e.g., a volume key, a play pause key, etc.) and a switch key, etc. connected to themain control chip 111.
In this embodiment, themicrophone 112 is used to collect sound and transmit the sound to themain control chip 111 for data processing, then themain control chip 111 sends the processed data to the amplifier to realize sound amplification, theamplifier 113 transmits a sound signal to thespeaker 114, and the communication function of the smart temple is realized through themicrophone 112 and thespeaker 114. In order to ensure that themicrophone 112 and thespeaker 114 can perform corresponding functions, a sound receiving hole and a sound guiding hole which are matched with themicrophone 112 and thespeaker 114 are additionally arranged on thetemple 11. To ensure a better sound transmission, it is preferable to provide the sound guide holes at a position facing the ear of the user when thetemple 11 is worn, and the sound guide holes may be provided on a separate sound chamber of thespeaker 114 in thetemple 11. In addition, thetemple 11 is also provided with a charginghole 118, when thetemple 11 is in a charging state, thepower supply module 116 is connected with a power supply through the charginghole 118, so that thepower supply module 116 charges thebattery 115; thebattery 115 supplies power to themain control chip 111 when thetemple 11 is in use. Thebluetooth module 117 and themain control chip 111 communicate with each other to realize the communication between the mobile terminal and theglasses leg 11 through thebluetooth module 117, the user can operate on the mobile terminal to realize the bluetooth connection between the mobile terminal and theglasses leg 11, and then the user can control various functions of theglasses leg 11 through the operation at the mobile terminal.
In this embodiment, thetemple 11 is the support piece that the user wore glasses, and simultaneously is the bearer of hardware structure, through the inside of putting intemple 11 withmain control chip 111 andbluetooth module 117 etc. integration as an organic whole, has effectively promoted the integrated degree. Becausespeaker 114 installs inmirror leg 11 inside, and sound passes through the sound guiding hole and spreads for the user, the user need not again with speaker (headset) plug in the earhole, and the appearance of integration intelligent bluetooth glasses just is the same with a ordinary glasses, can carry out the customization service according to different users' needs.
Preferably, thetemple 11 has aprotrusion 110, and the hardware structure may be located in theprotrusion 110, so that the hardware structure may be protected from damage caused by deformation of the temple. In some embodiments, the hardware structure may be located in the main body of thetemple 11, or in theboss 122 and the temple main body, so that the structure of thetemple 11 may be simplified, the appearance of thetemple 11 may be simpler, the influence of excessive peripheral components on the overall aesthetic property of the eyeglasses may be avoided, and the original use habit of the eyeglasses by consumers may not be influenced.
In thedetachable glasses 100 according to the first embodiment of the present invention, the connecting structure 12 for connecting theglasses frame 10 and theglasses legs 11 comprises thehollow bases 121 located at the edges of the two ends of theglasses frame 10 and thebosses 122 located at one end of theglasses legs 11, the bottom surfaces of thehollow bases 121 are fixedly connected with theglasses frame 10, thebosses 122 are fixedly connected with theglasses legs 11, and the connection and the detachment between theglasses legs 11 and theglasses frame 10 can be realized through the connection and the separation of thebosses 122 on theglasses legs 11 and thehollow bases 121 on theglasses frame 10. Specifically, thehollow base 121 includes two position-limitingmechanisms 1210, and the position-limitingmechanisms 1210 include anopening 1211 and aslot 1212 that are communicated with each other. Theboss 122 is inserted from theopening 1211, and when theboss 122 abuts on the lower portion of theopening 1211, thetemple 11 is rotated in the direction of theclip groove 1212. Since the height h2 of thecard slot 1212 is equal to the length h0 of theboss 122 along the direction of thetemple 11, theboss 122 can be just clipped in thecard slot 1212 without moving up and down, thereby realizing the fixed connection of thetemple 11 and theframe 10. When thetemple 11 with different functions needs to be removed or replaced, thetemple 11 is rotated in the opposite direction, and when the side of theboss 122 abuts against the side wall of theopening 1211, thetemple 11 is pulled out to remove thetemple 11 from theframe 10. Therefore, thedetachable glasses 100 provided by the embodiment are convenient and flexible to mount and dismount, and can be quickly detached and replaced when the types of the glasses legs need to be replaced or the glasses legs need to be charged, so that the use flexibility is provided for users.
Referring to fig. 5, fig. 5 is a schematic structural diagram of detachable glasses according to a second embodiment of the present invention. Theeyeglasses 200 include aframe 20,temples 21 and a connectingstructure 22 between theframe 20 and thetemples 21, only onetemple 21 being shown in fig. 1. The connectingstructure 22 comprises ahollow base 221 fixedly connected to both ends of theframe 20 and aboss 222 located at one end of thetemple 21, and thetemple 21 and thehollow base 221 can be mounted and dismounted by the connection and separation between theboss 122 and thehollow base 121.
Theframe 20 is provided with two lenses, and theframe 20 and thetemples 21 may be made of a metal material, a plastic or resin, a natural material, a mixed material, or the like. The metal materials include copper alloy, nickel alloy and noble metal, and are required to have certain hardness, flexibility, elasticity, wear resistance, corrosion resistance, light weight, luster, good color and the like; the natural materials comprise hawksbill carapace, special wood, animal horn and the like; the mixed material is formed by mixing metal and plastic.
Referring to fig. 6, fig. 6 is a schematic structural view of a hollow base according to a second embodiment of the present invention, and fig. 6 shows a structure of a temple during a process of detaching or mounting. Thehollow base 221 is a cylinder having a hollow interior and no top surface, the bottom surface of the cylinder is fixedly connected to the edges of the two ends of theframe 20, and the side surface of the cylinder is a wall surface having a certain thickness. The wall surface of thehollow base 221 is provided with at least one limitingmechanism 2210, the limitingmechanism 2210 comprises anopening 2211, aclamping groove 2212 and arotating groove 2213, theopening 2211 is communicated with the clampinggroove 2212 through therotating groove 2213, and the thicknesses of theopening 2211, the clampinggroove 2212 and therotating groove 2213 are all equal to the thickness of the side wall of thehollow base 221.
Wherein, the quantity ofstop 2210 is at least one. In this embodiment, the number of theposition limiting mechanisms 2210 is two, and the twoposition limiting mechanisms 2210 are symmetrical with respect to the central axis of the hollow base. Specifically, the twoopenings 2211 are symmetrical about a central axis, the twocard slots 2212 are symmetrical about the central axis, and the tworotary slots 2213 are also symmetrical about the central axis. In some embodiments, the number ofstop mechanisms 2210 may be one. Compared with the connection structure of one limitingmechanism 2210, the two limitingmechanisms 2210 in the embodiment can enhance the stability of installation.
Referring to fig. 7, fig. 7 is a schematic plan view of the detachable eyeglasses shown in fig. 6 according to a second embodiment of the present invention, and fig. 7 is a view for more clearly showing the structure of the connectingstructure 22. The end of thetemple 21 connected to theframe 20 is cylindrical in shape and has a diameter smaller than that of thehollow base 221 so that thetemple 21 can be inserted into the hollow portion of thehollow base 221 and the other end of thetemple 21 remote from theframe 20 is bent to conform to the curvature of the user's ear. In this embodiment, twobosses 222 are fixed to thetemple 21, and the twobosses 222 are located at one end of thetemple 21 connected to theframe 20 and can be aligned with the twoopenings 2211 of thehollow base 221. Specifically, the distribution pitch of the twoopenings 2211 of the twoposition limiting mechanisms 2210 on the side wall of thehollow base 221 is the same as the distribution pitch of the twobosses 222 on thetemple 21 on the outer surface of thetemple 21.
The height of theopening 2211 is H1, the height of thecard slot 2212 is H2, the height of therotating slot 2213 is smaller than the height H2 of thecard slot 2212, and the height H2 of thecard slot 2212 is smaller than the height H1 of theopening 2211. The position-limitingmechanism 2210 is U-shaped with two asymmetric sides, one side of the height is anopening 2211, the other side of the height is aclamping groove 2212, and the middle part is arotating groove 2213. Specifically, theopening 2211 and thecard slot 2212 are communicated through therotary slot 2213, and the bottoms of theopening 2211, thecard slot 2212 and therotary slot 2213 are located at the same height.
Referring to fig. 8, fig. 8 is a schematic plan view of a connecting structure according to a second embodiment of the present invention, in which the connectingstructure 22 includes ahollow base 221 and aboss 222, and fig. 8 shows a structure of thetemple 21 in an installation state, in which theboss 222 is just locked in theslot 2212. In this embodiment, the bottom of thehollow base 221 is mounted with anelastic member 2214, such as a spring sheet or a spring. Theelastic member 2214 is vertically provided in thehollow base 221, and has one end fixed to the bottom of thehollow base 221 and the other end abutting against the bottom of thetemple 21. When thetemple 21 is in the attached state, the sum of the length H4 of the exposedelastic piece 2214 and the length H0 of theboss 222 is equal to the height H2 of thecard slot 2212. It will be appreciated that since fig. 8 is a plan view from a single perspective, only a portion of theelastic member 2214 is shown.
In this embodiment, when thetemple 21 is connected to theframe 20 through the connectingstructure 22, the twobosses 222 of thetemple 21 are inserted into the twoopenings 2211 of the two position-limitingmechanisms 2210, respectively, and when thebosses 222 are lowered to the lowermost ends of theopenings 2211, the bottom of thetemple 21 comes into contact with theelastic members 2214. Then, thetemple 21 is rotated to a certain angle in the direction of thecard slot 2212, at this time, theboss 222 passes through therotating slot 2213, when theboss 222 rotates to the position of thecard slot 2212, thetemple 21 is pushed upwards by theelastic member 2214 at the bottom, theboss 222 enters thecard slot 2212 upwards and is fixed, and the bottom of thetemple 21 abuts against theelastic member 2214. When thetemple 21 needs to be replaced, thetemple 21 is first pressed downwards for a certain distance so that theboss 222 descends to the position of therotating groove 2213, then thetemple 11 is rotated for a certain angle towards theopening 2211, and after passing through therotating groove 2213, thetemple 21 is then pulled out from theopening 2211, so that the detachment of thetemple 21 can be realized. It will be appreciated that fig. 6 and 7 show a configuration in which theboss 222 is positioned just inside therotational slot 2213 during rotation of thetemple 21.
Preferably, the height H3 of therotating slot 2213 is greater than or equal to the length H0 of theboss 222 in the direction of thetemple 21 so that therotating slot 2213 can receive theboss 222. In the present embodiment, the length H0 of theboss 222 is equal to the height H3 of therotation slot 2213. In some embodiments, the height H3 of therotating slot 2213 may be greater than the length H0 of theboss 222 because therotating slot 2213 only serves to rotate theboss 222 and not thestationary boss 222.
Preferably, the height H2 of thecard slot 2212 is greater than the height H3 of therotary slot 2212, so that thecard slot 2212 forms a three-sided enclosed groove at the top. The width of theslot 2212 is equal to the width of theboss 222, so that theboss 222 cannot rotate when being clamped into theslot 2212 and is fixed in theslot 2212.
Thedetachable glasses 200 according to the second embodiment of the present invention comprises aframe 20 and atemple 21, and a connectingstructure 22 for connecting theframe 20 and thetemple 21, wherein the connectingstructure 22 comprises ahollow base 221 fixedly installed at the edge of theframe 20 and aboss 222 fixedly connected to one end of thetemple 21, and anelastic member 2214 is fixedly connected to the bottom of thehollow base 221. The attachment and detachment of thetemples 21 to and from theframe 20 can be achieved by the connection and detachment of thebosses 222 to and from thehollow bases 221. Specifically, thehollow base 221 includes two position-limitingmechanisms 2210, and each position-limitingmechanism 2210 includes anopening 2211, aslot 2212, and arotating slot 2213 communicating theopening 2211 and theslot 2212. The bottoms of theopening 2211, thecard slot 2212 and therotary slot 2213 are in the same plane, but are not the same height. When thetemple 21 is connected to theframe 20 through the connectingstructure 22, the twobosses 222 of thetemple 21 are inserted into the twoopenings 2211 of the two position-limitingmechanisms 2210, respectively, and when thebosses 222 are lowered to the lowermost ends of theopenings 2211, the bottom of thetemple 21 comes into contact with theelastic members 2214. Then, thetemple 21 is rotated to a certain angle towards the direction of thecard slot 2212, at this time, theboss 222 passes through therotating slot 2213, when theboss 222 rotates to the position of thecard slot 2212, thetemple 21 is pushed upwards by theelastic piece 2214 at the bottom, theboss 122 enters thecard slot 1212 upwards and is fixed, and the bottom of thetemple 21 abuts against theelastic piece 2214. When thetemple 11 needs to be replaced, thetemple 21 is removed by first pressing thetemple 21 downward a certain distance (theelastic member 2214 is compressed downward) to lower theboss 222 to the position of therotating slot 2213, then rotating thetemple 21 in the direction of theopening 2211 by a certain angle, passing through therotating slot 2213, and then drawing out thetemple 21 from theopening 2211. Therefore, thedetachable glasses 200 provided by the embodiment are convenient and flexible to mount and dismount, and can be quickly detached and replaced when the types of the glasses legs need to be replaced or the glasses legs need to be charged, so that the use flexibility is provided for users.
On the other hand, in this embodiment, by setting thecard slot 2212 with a height higher than therotation slot 2213, and the width of thecard slot 2212 is equal to the width of theboss 222, theboss 222 can be just fixed in thecard slot 2212 without rotating, and the top of theboss 222 abuts against the top of thecard slot 2212, and the bottom of theboss 222 is suspended but the bottom of thetemple 21 abuts against theelastic member 2214, so that thetemple 21 does not move up and down. Therefore, the present embodiment provides thedetachable eyeglasses 200 that are not only easy to detach but also stable to mount.
The above description of the embodiments is only for helping understanding the technical solution of the present invention and its core idea; those of ordinary skill in the art will understand that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and such modifications or substitutions do not depart from the spirit and scope of the corresponding technical solutions of the embodiments of the present invention.