CN220752423U - Turnover type riding glasses structure - Google Patents

Turnover type riding glasses structure Download PDF

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Publication number
CN220752423U
CN220752423U CN202322172650.1U CN202322172650U CN220752423U CN 220752423 U CN220752423 U CN 220752423U CN 202322172650 U CN202322172650 U CN 202322172650U CN 220752423 U CN220752423 U CN 220752423U
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China
Prior art keywords
lens
slide bar
block
glasses
nose
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CN202322172650.1U
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Chinese (zh)
Inventor
李菊香
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Taizhou Zhuoyu Glasses Co ltd
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Taizhou Zhuoyu Glasses Co ltd
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Abstract

The utility model relates to a convertible glasses structure of riding, including picture frame and lens, still include coupling mechanism, coupling mechanism is used for connecting picture frame and lens, coupling mechanism includes the connecting block, articulated piece, slide bar and driving piece, articulated piece is articulated to be connected on the picture frame, the mounting groove that can hold the connecting block has been seted up on the articulated piece, slide bar sliding connection is on the articulated piece, connecting block fixed connection is on the lens, set up on the connecting block with slide bar grafting complex through-hole, the driving piece is used for driving the slip of slide bar, when the slide bar slides to leaving the mounting groove, the mounting groove can be put into to the connecting block, the slide bar is just to the through-hole this moment, when the lens is connected with the picture frame, slide bar and through-hole are pegged graft the cooperation mutually. The connecting block is placed in the mounting groove, the driving piece drives the sliding rod to slide, so that the sliding rod is matched with the through hole, and the mounting of the lens is completed; the sliding rod is driven to leave the through hole, so that the connecting block can be taken out from the mounting groove, and the lens is detached; is convenient for replacing the glasses lens of the riding glasses.

Description

Turnover type riding glasses structure
Technical Field
The utility model relates to the field of glasses, in particular to a turnover riding glasses structure.
Background
Riding glasses are glasses that are specially worn by the rider. It has the common function of common sports glasses and also has the function of blocking ultraviolet irradiation. In order to select a proper pair of riding glasses, many factors need to be considered, and besides the wearing comfort, the other most important factor is the color of the lenses, and the colors of the lenses of the riding glasses are roughly divided into the following colors: the yellow lens is suitable for being used under the condition of dim light and at night, reduces the light reflection of the lens and achieves the effect of intensifying light; the black lens is ultraviolet-proof, and can filter out glare and harmful light to eyes, so as to protect the eyes; colorless lenses are ideal choices for foggy or gray weather; the red or orange color is preferred overall to make the surrounding terrain more clearly visible.
The utility model with the bulletin number of CN217060657U provides glasses convenient to ride and wear, the glasses comprise a glasses frame, lenses are inlaid in the glasses frame, waterproof membranes convenient to waterproof are arranged on one sides of the lenses, connecting mechanisms convenient to install are arranged in the lenses and are connected with the glasses frame, rotating mechanisms convenient to attach faces are arranged in the middle of the glasses frames on two sides, pile heads are arranged at two ends of the glasses frame, glasses legs are connected in the pile heads in a rotating mode, and clamping mechanisms convenient to fall off are arranged at one ends of the glasses legs.
When the riding glasses are used, the lenses are required to be replaced facing different use environments. The glasses of riding among the above-mentioned technical scheme are inlayed on the picture frame to its lens, are difficult to change the lens.
Disclosure of Invention
In order to facilitate replacement of the eyeglass lenses of riding, the application provides a turnover type riding eyeglass structure.
The application provides a convertible glasses structure of riding adopts following technical scheme:
the utility model provides a convertible glasses structure of riding, includes picture frame and lens, the middle part of picture frame is equipped with the nose and holds in the palm, the both ends of picture frame are articulated respectively and are connected the glasses leg, still include coupling mechanism, coupling mechanism is used for connecting picture frame and lens, coupling mechanism includes connecting block, hinge piece, slide bar and driving piece, the hinge piece is articulated to be connected on the picture frame, set up the mounting groove that can hold the connecting block on the hinge piece, slide bar sliding connection is on the hinge piece, connecting block fixed connection is on the lens, set up on the connecting block with slide bar grafting complex through-hole, the driving piece is used for driving the slip of slide bar, and when the slide bar slides to leaving the mounting groove, the mounting groove can be put into to the connecting block, and the slide bar is just to the through-hole this moment, when lens and picture frame are connected, slide bar and through-hole are pegged graft the cooperation mutually.
By adopting the technical scheme, the connecting block is placed in the mounting groove, the driving piece drives the sliding rod to slide, so that the sliding rod is matched with the through hole, and the mounting of the lens is completed; the sliding rod is driven to leave the through hole, so that the connecting block can be taken out from the mounting groove, and the lens is detached; is convenient for replacing the glasses lens of the riding glasses.
Preferably, the driving piece comprises a force application block, a connecting rod and a spring, wherein the connecting rod is fixedly connected to the sliding rod, the force application block is fixedly connected to the connecting rod, the spring is arranged in the hinging block, and the spring always drives the sliding rod to slide towards one side of the mounting groove.
By adopting the technical scheme, when the lens is required to be disassembled, the force application block is applied to slide towards one side far away from the mounting groove by the force application block, and the sliding rod is separated from the mounting groove, so that the connecting block can be placed on the mounting groove; after the lenses are replaced, the sliding rod is driven to slide towards one side of the mounting groove through the springs, so that the sliding rod is matched with the through hole, replacement of the lenses is completed, and replacement of the lenses of the glasses is facilitated. And the spring always drives the sliding rod to slide towards one side of the mounting groove, so that the possibility that the lens falls off from the lens frame can be reduced.
Preferably, the connecting rod is fixedly connected to the middle part of the length direction of the sliding rod, the length direction of the force application block is parallel to the length direction of the sliding rod, the area of the side surface of the force application block, which is close to the hinged block, is larger than the area of the sliding path of the sliding rod, and the force application block is provided with a force application groove.
Through adopting above-mentioned technical scheme, when the slide bar slides, the application of force piece can shelter from the slip route of slide bar all the time, when increasing product aesthetic property, reduces the impaired possibility of slide bar and spring. The force application groove can reduce the possibility that the force application block slips off the finger when a force opposite to the spring is applied to the force application block.
Preferably, the radian of the lens is smaller than that of the lens frame, and a vent is formed between the lens and the lens frame when the lens is turned over to be abutted against the lens frame.
Through adopting above-mentioned technical scheme, through the vent between lens and the picture frame, make the temperature of lens both sides close, reduce the possibility that the lens fogged when riding.
Preferably, the middle part fixedly connected with bridge of the nose of picture frame, be equipped with a plurality of recesses on the bridge of the nose, a plurality of the recess distributes on the bridge of the nose along vertical direction, be equipped with on the bridge of the nose and hold in the palm a plurality of lugs that can with recess joint complex, a plurality of lugs distribute on the bridge of the nose along vertical direction.
Through adopting above-mentioned technical scheme, when being convenient for replace the nose and hold in the palm, the wearer can hold in the palm nose through adjusting lug and recess complex quantity, adjusts suitable nose and holds in the palm the position, reduces the whole pressure to the nose of glasses.
Preferably, the nose pad is made of rubber, and anti-slip lines are arranged on the nose pad.
By adopting the technical scheme, the possibility of sliding down the glasses is reduced when the glasses are worn for riding.
Preferably, the glasses further comprise a silica gel pad, a clamping block is arranged on the silica gel pad, clamping grooves which can be matched with the clamping blocks in a clamping mode are formed in the glasses legs, and when the clamping blocks are matched in the clamping grooves in a clamping mode, the outer surfaces of the silica gel pad are flush with the surfaces of the glasses legs.
Through adopting above-mentioned technical scheme, the silica gel pad can reduce, reduces when riding, and the glasses gliding possibility, the silica gel pad can also reduce the whole pressure to the ear of glasses, increases the travelling comfort when wearing.
The technical effects of the utility model are mainly as follows:
according to the utility model, the connecting mechanism is arranged, the connecting block is placed in the mounting groove, the driving piece drives the sliding rod to slide, so that the sliding rod is matched with the through hole, and the mounting of the lens is completed; the sliding rod is driven to leave the through hole, so that the connecting block can be taken out from the mounting groove, and the lens is detached; the replacement of the glasses lens is convenient;
according to the utility model, the nose pad is replaced conveniently by arranging the plurality of convex blocks and the plurality of grooves, and a wearer can adjust the proper position of the nose pad by adjusting the matched quantity of the convex blocks and the grooves, so that the pressure of the whole glasses to the nose is reduced;
3. according to the utility model, the silica gel pad is arranged, so that the silica gel pad can be reduced, the possibility of sliding down the glasses during riding is reduced, the pressure of the whole glasses to the ears can be reduced by the silica gel pad, and the comfort during wearing is improved.
Drawings
Fig. 1 is a schematic overall structure of an embodiment of the present application.
Fig. 2 is a schematic view of a frame structure according to an embodiment of the present application.
Fig. 3 is an enlarged view at a in fig. 2.
Fig. 4 is a schematic view of a lens structure according to an embodiment of the present application.
Fig. 5 is an exploded view of a frame according to an embodiment of the present application.
Reference numerals illustrate: 1. a frame; 11. a nose bridge; 111. a groove; 12. a nose pad; 121. a bump; 122. anti-skid lines; 13. spectacle legs; 131. a clamping groove; 14. a silica gel pad; 141. a clamping block; 2. a lens; 3. a connecting mechanism; 31. a connecting block; 311. a through hole; 32. a hinge block; 321. a mounting groove; 322. a chute; 33. a slide bar; 34. a driving member; 341. a force application block; 3411. a force application groove; 342. a connecting rod; 343. a spring; 4. and (5) a ventilation opening.
Detailed Description
The following is a further detailed description of the present application with reference to fig. 1-5, so that the technical solutions of the present application may be more easily understood and mastered.
The embodiment of the application discloses a turnover type riding glasses structure.
Referring to fig. 1-5, a turnover type riding glasses structure comprises a glasses frame 1 and lenses 2, wherein a nose support 12 is detachably connected in the middle of the glasses frame 1, two ends of the glasses frame 1 are respectively hinged with glasses legs 13, the turnover type riding glasses structure further comprises a connecting mechanism 3, the connecting mechanism 3 is used for connecting the glasses frame 1 and the lenses 2, the connecting mechanism 3 comprises a connecting block 31, a hinging block 32, two sliding rods 33 and two groups of driving pieces 34, the hinging block 32 is hinged on the glasses frame 1 along the horizontal direction, two sliding grooves 322 are formed in the hinging block 32, the two sliding grooves 322 correspond to the two sliding rods 33, the two sliding rods 33 are respectively connected in the corresponding sliding grooves 322 along the horizontal direction in a sliding manner, a mounting groove 321 capable of accommodating the connecting block 31 is formed in the hinging block 32, two ends of the length direction of the mounting groove 321 are respectively communicated with the two sliding grooves 322, the connecting block 31 is fixedly connected on the lenses 2, a through hole 311 capable of being matched with the two sliding rods 33 in a plugging manner is formed in the connecting block 31, and the driving pieces 34 are used for driving sliding of the sliding rods 33. When the sliding rod 33 slides to leave the mounting groove 321, the connecting block 31 can be placed in the mounting groove 321, at this time, the sliding rod 33 faces the through hole 311, and when the lens 2 is connected with the lens frame 1, the sliding rod 33 is in plug-in fit with the through hole 311.
Referring to fig. 1 to 5, the connection block 31 is placed in the mounting groove 321, and the driving piece 34 drives the slide bar 33 to slide, so that the slide bar 33 is matched with the through hole 311, and the lens 2 is mounted; the driving slide bar 33 leaves the through hole 311, and the connecting block 31 can be taken out from the mounting groove 321, so that the lens 2 is detached; facilitating the replacement of the spectacle lenses 2.
Referring to fig. 1-5, taking a single set of driving members 34 as an example, the driving members 34 include a force application block 341, a connecting rod 342 and a spring 343, the connecting rod 342 is fixedly connected to the sliding rod 33, the force application block 341 is fixedly connected to one end of the connecting rod 342 far away from the sliding rod 33, the spring 343 is located in the sliding groove 322, two ends of the spring 343 are respectively abutted against the sliding rod 33 and the side wall of the sliding groove 322 far away from the mounting groove 321, and the spring 343 always drives the sliding rod 33 to slide towards one side of the mounting groove 321. When the lens 2 needs to be detached, the force application block 341 is applied to slide towards the side far away from the mounting groove 321 by the force application block 341, and the sliding rod 33 is separated from the mounting groove 321, so that the connecting block 31 can be placed on the mounting groove 321; after the lens 2 is replaced, the spring 343 drives the sliding rod 33 to slide towards one side of the mounting groove 321, so that the sliding rod 33 is matched with the through hole 311, replacement of the lens 2 is completed, and replacement of the spectacle lens 2 is facilitated. The spring 343 always drives the slide rod 33 to slide towards the mounting groove 321, so that the possibility that the lens 2 falls off from the lens frame 1 can be reduced.
Referring to fig. 1 to 5, the force application block 341 is a rectangular parallelepiped, the connecting rod 342 is fixedly connected to the middle part of the sliding rod 33 in the length direction, the length direction of the force application block 341 is parallel to the length direction of the sliding rod 33, the area of the side surface of the force application block 341 near the hinge block 32 is larger than the area of the sliding path of the sliding rod 33, and the force application block 341 is provided with a force application groove 3411. When the slide bar 33 slides, the force application block 341 can always block the sliding path of the slide bar 33, thereby improving the aesthetic property of the product and reducing the possibility of damaging the slide bar 33 and the spring 343. The force application groove 3411 can reduce the possibility that the force application block 341 slips off the finger when a force opposite to the spring 343 is applied to the force application block 341.
Referring to fig. 1-5, the curvature of the lens 2 is less than the curvature of the frame 1, and when the lens 2 is flipped over to abut the frame, a vent 4 is formed between the lens 2 and the frame 1. The temperature at two sides of the lens 2 is similar through the ventilation opening 4 between the lens 2 and the lens frame 1, so that the possibility of fogging of the lens 2 during riding is reduced.
Referring to fig. 1-5, a nose bridge 11 is fixedly connected to the middle part of the mirror frame 1, a plurality of grooves 111 are formed in the nose bridge 11, the plurality of grooves 111 are distributed on the nose bridge 11 along the vertical direction, a plurality of protruding blocks 121 which can be matched with the grooves 111 in a clamping manner are fixedly connected to the nose support 12, and the protruding blocks 121 are spheres. The plurality of bumps 121 are distributed on the nose pad 12 in the vertical direction. While being convenient for replace the nose pad 12, the wearer can adjust the proper position of the nose pad 12 by adjusting the matching quantity of the convex blocks 121 and the grooves 111, so as to reduce the pressure of the whole glasses to the nose.
Referring to fig. 1-5, the nose pad 12 is made of rubber, and the nose pad 12 is provided with anti-slip lines 122. The possibility of the frame 1 slipping down when riding with the glasses is reduced.
Referring to fig. 1 to 5, the glasses further comprise a silica gel pad 14, a clamping block 141 is fixedly connected to the silica gel pad 14, a clamping groove 131 which can be matched with the clamping block 141 in a clamping mode is formed in the glasses leg 13, when the clamping block 141 is matched in the clamping groove 131 in a clamping mode, the outer surface of the silica gel pad 14 is flush with the surface of the glasses leg 13, and when the glasses are worn, the silica gel pad 14 is located on one side face, opposite to the glasses leg 13, of each side and is in contact with ears. The silica gel pad 14 can reduce, reduces when riding, and the picture frame 1 gliding possibility, and silica gel pad 14 can also reduce the whole pressure to the ear of glasses, increases the travelling comfort when wearing. The structure of the clamping fit can enable the silica gel pad 14 to be replaced conveniently.
Of course, the foregoing is merely exemplary of the application, and other embodiments of the application are possible, and all modifications and equivalents of the application are intended to fall within the scope of the application.

Claims (7)

1. The utility model provides a convertible glasses structure of riding, includes picture frame (1) and lens (2), the middle part of picture frame (1) is equipped with nose and holds in the palm (12), the both ends of picture frame (1) are articulated respectively and are connected glasses leg (13), its characterized in that: still include coupling mechanism (3), coupling mechanism (3) are used for connecting picture frame (1) and lens (2), coupling mechanism (3) include connecting block (31), articulated piece (32), slide bar (33) and driving piece (34), articulated connection of articulated piece (32) is on picture frame (1), offer mounting groove (321) that can hold connecting block (31) on articulated piece (32), slide bar (33) sliding connection is on articulated piece (32), connecting block (31) fixed connection is on lens (2), offer on connecting block (31) with slide bar (33) grafting complex through-hole (311), driving piece (34) are used for driving the slip of slide bar (33), and when slide bar (33) slides to leaving mounting groove (321), slide bar (33) are just through-hole (311) this moment, when lens (2) are connected with picture frame (1), slide bar (33) cooperatees with through-hole (311) grafting.
2. The flip-over riding eyeglass structure of claim 1, wherein: the driving piece (34) comprises a force application block (341), a connecting rod (342) and a spring (343), wherein the connecting rod (342) is fixedly connected to the sliding rod (33), the force application block (341) is fixedly connected to the connecting rod (342), the spring (343) is arranged in the hinging block (32), and the spring (343) always drives the sliding rod (33) to slide towards one side of the mounting groove (321).
3. The flip-over riding eyeglass structure of claim 2, wherein: the connecting rod (342) is fixedly connected to the middle part of the length direction of the sliding rod (33), the length direction of the force application block (341) is parallel to the length direction of the sliding rod (33), the area of the side surface of the force application block (341) close to the hinge block (32) is larger than the area of the sliding path of the sliding rod (33), and the force application block (341) is provided with a force application groove (3411).
4. A flip-over riding eyeglass construction according to claim 3, wherein: the radian of the lens (2) is smaller than that of the lens frame (1), and when the lens (2) is turned over to be abutted to the lens frame, a ventilation opening (4) is formed between the lens (2) and the lens frame (1).
5. The flip-over riding eyeglass structure of claim 1, wherein: the middle part fixedly connected with bridge of the nose (11) of picture frame (1), be equipped with a plurality of recesses (111) on bridge of the nose (11), a plurality of recess (111) are along vertical direction distribution on bridge of the nose (11), be equipped with on bridge of the nose (12) can with recess (111) joint complex a plurality of lug (121), a plurality of lug (121) are along vertical direction distribution on bridge of the nose (12).
6. The flip-over riding eyeglass structure according to claim 5, wherein: the nose pad (12) is made of rubber, and anti-slip lines (122) are arranged on the nose pad (12).
7. The flip-over riding eyeglass structure of claim 1, wherein: still include silica gel pad (14), be equipped with fixture block (141) on silica gel pad (14), set up on glasses leg (13) can with fixture block (141) joint complex draw-in groove (131), when fixture block (141) joint complex in draw-in groove (131), the surface and glasses leg (13) surface parallel and level of silica gel pad (14).
CN202322172650.1U 2023-08-11 2023-08-11 Turnover type riding glasses structure Active CN220752423U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322172650.1U CN220752423U (en) 2023-08-11 2023-08-11 Turnover type riding glasses structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322172650.1U CN220752423U (en) 2023-08-11 2023-08-11 Turnover type riding glasses structure

Publications (1)

Publication Number Publication Date
CN220752423U true CN220752423U (en) 2024-04-09

Family

ID=90559993

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322172650.1U Active CN220752423U (en) 2023-08-11 2023-08-11 Turnover type riding glasses structure

Country Status (1)

Country Link
CN (1) CN220752423U (en)

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