CN107463002A - The unified horizontal double-motor driving device slided of the overlapping eyeglass eyes of vision correction - Google Patents

The unified horizontal double-motor driving device slided of the overlapping eyeglass eyes of vision correction Download PDF

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CN107463002A
CN107463002A CN201710699205.7A CN201710699205A CN107463002A CN 107463002 A CN107463002 A CN 107463002A CN 201710699205 A CN201710699205 A CN 201710699205A CN 107463002 A CN107463002 A CN 107463002A
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eyeglass
equidistant
vertical
bar
stripe
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CN107463002B (en
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陈奎
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    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C7/00Optical parts
    • G02C7/02Lenses; Lens systems ; Methods of designing lenses
    • G02C7/08Auxiliary lenses; Arrangements for varying focal length
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B7/00Mountings, adjusting means, or light-tight connections, for optical elements
    • G02B7/02Mountings, adjusting means, or light-tight connections, for optical elements for lenses
    • G02B7/04Mountings, adjusting means, or light-tight connections, for optical elements for lenses with mechanism for focusing or varying magnification
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C7/00Optical parts
    • G02C7/02Lenses; Lens systems ; Methods of designing lenses
    • G02C7/06Lenses; Lens systems ; Methods of designing lenses bifocal; multifocal ; progressive
    • G02C7/061Spectacle lenses with progressively varying focal power
    • G02C7/063Shape of the progressive surface
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C7/00Optical parts
    • G02C7/02Lenses; Lens systems ; Methods of designing lenses
    • G02C7/08Auxiliary lenses; Arrangements for varying focal length
    • G02C7/088Lens systems mounted to spectacles
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P40/00Technologies relating to the processing of minerals
    • Y02P40/50Glass production, e.g. reusing waste heat during processing or shaping
    • Y02P40/57Improving the yield, e-g- reduction of reject rates

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  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Ophthalmology & Optometry (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • General Health & Medical Sciences (AREA)
  • Eyeglasses (AREA)
  • Rehabilitation Tools (AREA)

Abstract

The present invention is used for the device that the unified horizontal double-motor driving device slided of the overlapping eyeglass eyes of vision correction belongs to the slideable varifocal vision correction of two groups of collimating optics lens of electric drive.Two reducing motor assemblies including being fixed on both ends " L " shape supporting plate above diplopore stripe board, two eyeglass assemblies of slip are respectively equipped with two bar holes of diplopore stripe board;Eyeglass assembly mutually interdependent order connects from bottom to top the flute profile strip, sliding substrate, the top clamp plate that have more vertical equidistant zoom stripe surface eyeglasses, connect eyeglass;More than the two pieces vertical equidistant zoom stripe surface eyeglass connected in one flute profile strip is into a two lenses group;Two reducing motors drive two eyeglass assemblies to make relative slip respectively, and overlapping two eyeglasses produce substantial amounts of combination diopters.So the zoom trainer of eyes of the present invention, helps myopia to recover eyesight.

Description

The unified horizontal double-motor driving device slided of the overlapping eyeglass eyes of vision correction
Technical field
The invention belongs to Zoom optical lens technologies field, more particularly to two groups of collimating optics lens of electric drive slidably Formula varifocal, the two lenses group sliding motor drive device that overlaps for vision correction.
Background technology
Chinese patent 201610092191.8《A kind of gradual change punktal lens》It is plane to provide a kind of lens base, another Face is free form surface, and the free form surface is made up of concave surface, and is provided with some regions, and each area in the free form surface The vertical extension in domain is equal.The length in region is 0.1.0mm~100mm, and the refractive diopter in region is 1~2000 degree, diopter Number is evenly distributed on lens, and each unit length etc. point distribution focus.
It is above-mentioned《A kind of gradual change punktal lens》Defect is the eyeglass of " free form surface " as the training of myopia correction, it is difficult to The training method into rule being engaged with " free form surface " is set, and " free form surface " eyeglass can only be used as and be trained to people oneself hand The eyeglass that work movement two lenses relative position is trained.And " free form surface " eyeglass does not point out the shape knot in " some regions " Structure, the shape and structure for not knowing " some regions " are sphere, ellipsoidal surface or trapezoidal faces;The length in 0.1.0mm~100mm The refractive diopter for spending region is 1~2000 degree, i.e., it is 1 that refractive diopter can not be realized in 0.1.0mm~100mm length areas ~2000 degree of change, the change for realizing that refractive diopter is 1~2000 degree in 0.1.0mm~100mm length areas is not indicated yet What the structure of change is.So the technical scheme can not realize the effect of correction.
Chinese patent 201520246792.0《One kind can any focus-variable lens group》Provide one kind:One of every eyeglass Surface is horizontal plane, and another surface of eyeglass is to meet the non-aqueous plane surface that mathematics changing rule height rises and falls;Described mirror A peak and a minimum point are provided with the non-aqueous plane surface of piece;The peak of the non-aqueous plane surface of described eyeglass with most Multiple optical centres of consecutive variations are evenly distributed between low spot, along the non-aqueous plane surface of eyeglass;Described multiple optical centres Refractive diopter successively decrease successively or be incremented by.Defect is " the meeting mathematics changing rule " does not indicate it is what rule.Described " being uniformly distributed an optical centre at interval of 1.0mm ", then the curved surface can only be spherical shape structure to an optical centre, and ball Face shape and structure is difficult to the training function of vision correction, because the sight of human eye is to pass through eyeglass in a point, and eyeglass In each interval be an optic center point, the two points of the point and optic center point of sight are difficult to overlap.So technology Scheme can not realize the training of vision correction, can not realize thoroughly solve the problems such as asthenopia.And " non-aqueous plane surface " Record does not indicate it is what curved surface.
Chinese patent 201310311306.4《A kind of new Ortho-K and its application method》Disclose an eye Different-diameter position is arranged to four arc rings of different curvature on eyeglass, one glasses of wearing is obtained four different curvatures Arc ring ill eyes are treated.Shortcoming is:One glasses only has the arc ring of four kinds of different curvatures, put on one this Very little, to select to most suitable glasses to put the quantity for the optional curvature mirror that kind glasses are treated to ill eyes There is a family of a large amount of standby glasses, it is very inconvenient and influence treatment;Glasses for selection are too many and cost increases.
Chinese patent 201521122053.7《A kind of Zoom glasses》Disclose a kind of images of left and right eyes has two varifocal mirrors respectively Piece is by electronic motor-driven carry out zoom, the glasses treated to eyes.Shortcoming is:
(1) goal of the invention can not be realized:This patent only discloses transmission mechanism, does not disclose the structure of " focus-variable lens ", So how the how sharp transmission mechanism of eyeglass realizes that zoom is unclear, i.e., with 201521122053.7《A kind of Zoom glasses》Pass Motivation structure matches somebody with somebody 201310311306.4《A kind of new Ortho-K and its application method》Ophthalmic len, then 201521122053.7《A kind of Zoom glasses》The zoom application of " visual training " can not be realized;
(2) drive mechanism is wrong:The transmission order of the structure is motor-reduction gear box-positive and negative tooth screw rod-fixation Bolt-front lens and rear lens are slided round about.Common knowledge " positive and negative tooth screw rod " be not have on a screw rod orthodontic and Anti- tooth, i.e. a screw rod only have orthodontic or a certain kind of only anti-tooth.So common knowledge is:A piece screw rod can only drive simultaneously Direct engaging member rotates to a direction.And 201310311306.4 patents are a screw rod while the directly occlusion of driving two Part " fixing bolt " rotates to opposite both direction, is wrong knot so as to be slided with former and later two eyeglasses to both direction Structure.
(3) " fixing bolt " can not realize transmission:From the word and accompanying drawing of the patent document, " fixing bolt " be by " positive and negative tooth screw rod " and the intermediate member of " eyeglass " transmission, but the word of patent document and accompanying drawing do not provide " fixing bolt " energy Enough structures that " positive and negative tooth screw rod " is driven with " eyeglass ".The position relationship of only each part, without structural relation, it is impossible to realize Reach the drive mechanism of goal of the invention needs.
The content of the invention
It is an object of the invention to provide a kind of with the eyeglass for thering is one side to be more vertical different diopter stripeds, and front and rear Two lenses group can be relatively moved by motor, and two lenses are combined into varifocal before and after realizing, front and rear two lenses group can produce Raw regular diopter change, convenient to use each eyeglass assembly of computer programme-control, front and rear two lenses group can be produced by rule Rule is corrected defects of vision, the horizontal double-motor driving device of the two lenses group slip that overlaps used.
The structure of the present invention:
The unified horizontal double-motor driving device slided of the overlapping eyeglass eyes of vision correction, it is characterised in that:Including diplopore Stripe board 101, two reducing motor assemblies 102 at both ends above diplopore stripe board 101 are separately fixed at, in diplopore stripe board Two eyeglass assemblies 104 being slidably connected are respectively equipped with 101 two bar holes 103;
The structure of diplopore stripe board 101:Two bar holes 103 parallel to each other, the bar hole are provided with one piece of stripe board 103 stripe boards are divided into outer panel 106, median septum 107, interior plate 108;
The structure of eyeglass assembly 104:Be sequentially connected mutually from bottom to top have more vertical equidistant zoom stripe surfaces 2, Connect flute profile strip 109, sliding substrate 110, the top clamp plate 111 of eyeglass;The top margin of more vertical equidistant zoom stripe surfaces 2 112 are entrapped in the neck of flute profile strip 109, more vertical equidistant zoom stripe surfaces 2 is fixedly connected with flute profile strip 109;Groove Sliding substrate 110 is fixedly connected with above shape bar 109, in the side bolt connection vertical rack plate 113 of sliding substrate 110;It is perpendicular Top clamp plate 111 is connected with above to rack-plate 113;The gross thickness of sliding substrate 110 and vertical rack plate 113 with it is double Size of the width of the bar hole 103 of hole stripe board 101 into tight fit;More vertical equidistant zoom stripe surfaces 2 divide to be smooth flat Sliding surface 1 and there are more vertical equidistant zoom stripe surfaces 2;More than two pieces vertical equidistant change is connected with one flute profile strip 109 Burnt stripe surface 2, for the smooth even surface 1 of this more than two pieces vertical equidistant zoom stripe surfaces 2 to same face, this more than two pieces perpendicular There are more vertical equidistant zoom stripe surfaces 2 to same face to equidistant zoom stripe surface 2;Connect in one flute profile strip 109 More than the two pieces vertical equidistant zoom stripe surface 2 connect is into a two lenses group 116;
Diplopore stripe board 101 and the attachment structure of eyeglass assembly 104:101 two bar shapeds parallel to each other of diplopore stripe board Card has the sliding substrate 110 and vertical rack plate 113 of an eyeglass assembly 104 respectively in hole 103, two eyeglass assemblies 104 Vertical rack plate 113 is adjacent with the both sides of median septum 107 of diplopore stripe board 101 respectively;Bar hole 103 is with being stuck in slip therein The 113 one-tenth slidable tight fit contacts of substrate 110 and vertical rack plate;The width of flute profile strip 109 below bar hole 103 is big In the width of bar hole 103, the width of top clamp plate 111 above bar hole 103 is more than the width of bar hole 103, makes cunning Dynamic substrate 110 and vertical rack plate 113 are stuck in bar hole 103 and slided;The two lenses group 116 of two eyeglass assemblies 104 is put down It is adjacent to flatten sliding surface 1;The tooth form of two vertical rack plates 113 of eyeglass assembly 104 is identical;
The structure of reducing motor assembly 102:Including " L " shape supporting plate 119, reducing motor 120, guiding bar 121, spill trip Dynamic card 122;Reducing motor 120 is fixed on one end of " L " shape supporting plate 119, and the rotary shaft of reducing motor 120 is threaded shaft 124, threaded shaft 124 and " L " the shape supporting plate 119 of reducing motor 120 are rotatablely connected;Be additionally provided with " L " shape supporting plate 119 with The parallel guiding bar 121 of threaded shaft 124;The travelling card 122 of spill is cased with threaded shaft 124 and guiding bar 121, spill is moved about For card 122 with threaded shaft 124 to be threadedly coupled, spill is travelling to block 122 with guiding bar 121 to be slidably connected;The travelling card 122 of spill Driven by the rotation of threaded shaft 124, and slided along guiding bar 121;
The attachment structure of one reducing motor assembly 102, diplopore stripe board 101 and an eyeglass assembly 104:Reducing motor " L " the shape supporting plate 119 of assembly 102 is fixed on one end of diplopore stripe board 101, in the top clamp plate 111 of eyeglass assembly 104 Projection 123 is provided with above;Above the travelling card 122 of the spill of reducing motor assembly 102 and the top clamp plate 111 of eyeglass assembly 104 It is connected together provided with projection 123;
Being driven order is:Reducing motor 120 rotates, threaded shaft 124 and guiding bar 121 make spill 122 straight lines of travelling card Slide, the travelling card 122 of spill blocks linear slide projection 123 linear slide of top clamp plate 111, top clamp plate 111 is driven one Individual eyeglass assembly 104 slides in a cathetus of bar hole 103 of diplopore stripe board 101;Divide in two reducing motor assemblies 102 Other two reducing motors 120 each drive the two lenses group 116 of an eyeglass assembly 104 to move respectively;
More vertical equidistant zoom stripe surfaces 2 include two relative transparent surfaces, and one is smooth even surface 1, another Individual is more vertical equidistant zoom stripe surfaces 2;More vertical equidistant zoom stripe surfaces 2 are bent for multiple equidistant width bar shapeds Face 3 is parallel to be formed side by side, makes the more vertical equidistant cross sections of zoom stripe surface 2 into equidistant width sawtooth corrugation shape structure,
Each the strip width d of equidistant width bar shaped curved surface 3 side by side is equal, and each strip width d scope is 0.5mm is to some value between 3.0mm;
The lens strength numerical value of same equidistant width bar shaped curved surface 3 is identical, and same equidistant width bar shaped is bent Whole lens focus in face 3 are point-blank;
The lens focus of the equidistant width bar shaped curved surface 3 of whole of same more vertical equidistant zoom stripe surfaces 2 connects Line is parallel to each other;
The diopter numerical value extreme difference N of same more vertical equidistant zoom stripe surfaces 2 is certain between 10 degree to 100 degree One value;
The equidistant width bar shaped curved surface 3 of whole of same more vertical equidistant zoom stripe surfaces 2 is arranged side by side, and Lens strength numerical value extreme difference N is identical;
Separator bar 5 and the angle a of diplopore stripe board 101 between any two neighboring equidistant width bar shaped curved surface 3 are Some value between 70 degree to 90 degree.
Said apparatus plus power supply, controller, shell and glasses hook with regard to can make overlapped for vision correction it is double The glasses that lens set is slided.The effect of this glasses is as follows:
Diplopore stripe board 101 is used as support frame, a reducing motor 102 is driven a two lenses group of eyeglass assembly 104 The vertical equidistant zoom stripe surface 2 of more than two of 116 is synchronous together to be slided round about;Both ends in diplopore stripe board 101 Two reducing motors 102 then drive respectively more than two of the respective two lenses group 116 of an eyeglass assembly 104 it is vertical equidistant Moved from zoom stripe surface 2;So that mutually with smooth even surface more than 1 equitant two piece between two eyeglass assemblies 104 The vertical equidistant relative position of zoom stripe surface 2 is moved, and should be taken office with smooth 1 equitant two piece of eyeglass movement of even surface During what diverse location, each equidistant width bar shaped curved surface 3 in more than two pieces vertical equidistant zoom stripe surface 2 can be acquired The different diopters of synthesis.
Equitant two pieces of eyeglasses bar shaped curved surface separator bar 5 can be selected to be parallel to each other:The two of i.e. two eyeglass assemblies 104 The combining structure form that separator bar 5 between the vertical equidistant zoom stripe surface 2 of more of block is parallel to each other, when equitant two pieces Eyeglass slides over each other to any position, multiple equidistant width bar shaped curved surfaces 3 and the equitant another piece of eyeglass of one piece of eyeglass Multiple equidistant width bar shaped curved surfaces 3 can synthesize multiple new synthesis diopter bar-shaped zones, these new synthesis dioptrics It is same diopter from top to bottom to spend bar-shaped zone, the different equidistant positions of width bar shaped curved surface 3 of transverse direction newly It is different to synthesize diopter.These equitant two pieces of eyeglasses generate new synthesis diopter during exercise, make same mutually overlapping Two pieces of folded eyeglasses generate the synthesis diopter that former eyeglass is no, new, add the dioptric of the zoom training for eyes Content can be selected in degree, makes a glasses of the present invention equivalent to the function of many glasses, the how many new synthesis diopters of specific increase It is set forth below.
Equitant two pieces of eyeglasses bar shaped curved surface separator bar 5 can also be selected to intersect:That is two eyeglass assemblies 104 The cross one another combining structure form of separator bar 5 between more than two pieces vertical equidistant zoom stripe surface 2, such as one piece vertical in the wrong The equidistant separator bar 5 of width bar shaped curved surface 3 of luminosity striped eyeglass 105 and diplopore stripe board 101 are equitant another into an angle of 90 degrees The separator bar 5 of the equidistant width bar shaped curved surface of the vertical diopter striped eyeglass 105 of block 3 and diplopore stripe board 101 are into 70 degree of angles;Then, The equitant equidistant separator bar 5 of width bar shaped curved surface 3 of eyeglass is into 20 degree of angles of the crossing.When equitant two pieces of eyeglasses slide over each other During position, multiple equidistant width bar shaped curved surfaces 3 of one piece of eyeglass and multiple equidistant width of equitant another piece of eyeglass Bar shaped curved surface 3 can synthesize multiple new synthesis diopter bar-shaped zones, these new synthesis diopter bar-shaped zones from upper It is to have different diopters under.When equitant two pieces of eyeglasses slide over each other position, the new synthesis of a certain occurrence Diopter bar-shaped zone can move from the top down, or move from bottom to top.So, not only in the different equidistant width of transverse direction The new synthesis diopter of the position of bar shaped curved surface 3 is different, and the synthesis diopter bar-shaped zone of a certain occurrence is also into upper Lower movement.Its zoom to eyes is trained, and has and promotes eyeball transverse movement, there is the new synthesis for making eyeball move up and down again Diopter.Considerably increase for eyes zoom training diopter can be selected content, make a glasses of the present invention equivalent to The function of many glasses, the how many new synthesis diopters of specific increase are set forth below.
Because the strip width d of each equidistant width bar shaped curved surface 3 side by side is equal, and each strip width d Scope is 0.5mm to some value between 3.0mm.If the width of more than one piece vertical equidistant zoom stripe surface 2 is 40mm, each strip width d scope are 1.0mm, and every piece more vertical equidistant zoom stripe surfaces 2 have 40 equidistant width Bar shaped curved surface 3.The vertical equidistant zoom stripe surface 2 of more than two pieces of two eyeglass assemblies 104, which mutually slides, changes relative position, The different diopter of 40*40=1600 kinds can be obtained.And the Chinese patent 201310311306.4 of prior art《It is a kind of new Ortho-K and its application method》The arc ring that one glasses only has four kinds of different curvatures only has four kinds of different dioptrics Degree.It can be seen that the glasses that the device of this patent is made have 1600 kinds of different diopters, than a glasses for prior art There is the diopter that four kinds of diopters add 400 times of quantity.It is using upper meaning, is trained for the zoom of eyes, side Help the patient of myopia to recover eyesight, recover eyesight to complete with regard to that can solve patient with the glasses that the device of this patent is made The needs of portion's diopter, solve prior art and require that patient oneself is difficult to correctly select different glasses, can only be in treatment, eye The problem of mirror is costly.
" L " the shape supporting plate 119 of one reducing motor assembly 102 is fixed on one end of diplopore stripe board 101, makes deceleration electric Machine 120 can be arranged on a side of diplopore stripe board 101 with horizontal mode, horizontal setting reducing motor 120, can subtract Few height of the reducing motor 120 in diplopore stripe board 101, increase is attractive in appearance, increases practicality.
Said apparatus of the present invention is made glasses plus power supply, controller, shell and glasses hook, the advantages of having is as follows:
1st, the remote controlled patient to recovering eyesight of doctor is trained:It is each equidistant in same lens straight burr monolithic Identical from the lens strength numerical value extreme difference N of width bar shaped curved surface, meaning is with computer program controlled motor driving forward and backward two During block lens straight burr monolithic displacement, two equidistant width bar shaped curved surfaces of velocity of displacement and two each positions of straight burr monolithic Synthesis lens strength numerical value has fixed functional relation, you can to control each position with the velocity of displacement between two pieces of monolithics Synthesis lens strength numerical value, Portable computer by way of network remote controlled motor rotating speed, corner, realize control before, The remote controlled patient to recovering eyesight of the synthesis lens strength value of monolithic afterwards, i.e. doctor is trained.
2nd, any position of forward and backward two eyeglass can all produce accurately synthesis lens strength simultaneously:In straight burr monolithic Each strip width d is identical, when two straight burr monolithics synthesize lens, respectively has an equidistant width bar shaped curved surface to be combined into One synthesis lens for having setting diopter numerical value, other equidistant width bar shaped curved surfaces in the two straight burr monolithics can also divide Zu Cheng there are not the synthesis lens of setting diopter numerical value, the region that can not be imaged will not be produced.
3rd, any lap position of forward and backward two eyeglass, a variety of synthesis lens strengths can be all produced simultaneously and are selected for patient With:The structure type of each equidistant width bar shaped curved surface in same lens straight burr monolithic, each equidistant width bar shaped are bent There is a lens focus line in face, there is a plurality of lens focus line being parallel to each other, forward and backward two association eyeglass phase in every piece of monolithic When mutually sliding change position, the sight of patient passes through the point of forward and backward monolithic to find the synthesis lens of most suitable patient's eye and bent Luminosity, it is best suitable for a variety of gradients synthesis lens strength of the adjacent position of the synthesis lens strength of trouble and is used as to eyes Zoom training be used, help myopia patient recover eyesight use.A glasses of the invention can obtain more than 1000 kinds of gradient Synthesize lens strength, hence it is evident that can only obtain 4 kinds of gradient synthesis lens strengths better than one glasses of prior art.
The glasses made of the present invention, forward and backward eyeglass mutually can produce more than 1000 different compound lens with respect to slip Diopter effect, these are substantial amounts of, slidably and the compound lens diopter that changes is the zoom training to eyes, help myopia The patient of eye recovers the good method of eyesight.So the equidistant change punktal lens straight burr monolithic of the present invention can be as to eyes Zoom is trained, and helps the part of the glasses of patient's recovery eyesight of myopia.
4th, the smooth even surface of forward and backward eyeglass makes contact to overlapping ensures synthesis lens strength number without interval gap structure Accurately:Two bar holes parallel to each other of diplopore stripe board, having placed restrictions on forward and backward eyeglass can only be past along the long side direction of bar hole Multiple motion.
5th, the equidistant width bar shaped curved surface of overlapping forward and backward eyeglass can be substantially parallel or have a clamp Angle, for angle within 5-20 degree, the new synthesis diopter that two eyeglasses are formed can be preferably as in the zoom training of eyes Lower change training method.
6th, the equidistant width bar shaped curved surface angle of overlapping forward and backward eyeglass in 5-20 degree with inner structure, the weight of focus line A coincidence point is synthesized, and coincidence point is exactly the crosspoint of two focus lines.Currently, during rear lens displaced posi, two The crosspoint of bar focus line will be moved, then the coincidence point of two focus lines will also move, and this is just instructed to vision correction zoom Practice and add training content, and it is important that the vision correction zoom of this two focus lines coincidence point movement is trained significantly The motion of eyeball is added, more preferable to vision correction effect, the time for recovering eyesight is shorter.
7th, the travelling card of spill is driven with the threaded shaft of reducing motor, then drives engaging rather than the projection being directly connected to, Finally drive more vertical diopter striped eyeglasses;Compared to the type of drive that threaded shaft is directly connected to projection, of the invention has Beneficial part is that vibration when reducing motor starts will not be transmitted to more vertical diopter striped eyeglasses;When i.e. reducing motor starts Vibration do not interfere with eyes.
8th, two reducing motors drive two eyeglass assemblies to make relative slip respectively, i.e. a motor drives an eyeglass Assembly makes the movement of assembly more steady, convenient to use each eyeglass assembly of computer programme-control.
Brief description of the drawings
Fig. 1 is the three-dimensional assembling structure schematic diagram of the present invention;
Fig. 2 is the vertical vertical equidistant zoom stripe surface planar structure schematic diagram of more of the present invention;
Fig. 3 is the vertical vertical equidistant zoom stripe surface dimensional structure diagram of more of the present invention;
Fig. 4 is the smooth even surface sliding contact shape with more than the two pieces vertical vertical equidistant zoom stripe surface of the present invention State, composition is nonseptate can be mutually with respect to the cross-sectional view slided;
Fig. 5 is more of the present invention and vertically tilts equidistant zoom stripe surface planar structure schematic diagram;
Fig. 6 is more of the present invention and vertically tilts equidistant zoom stripe surface dimensional structure diagram;
Fig. 7 is more than the two pieces smooth even surface sliding contact shape for vertically tilting equidistant zoom stripe surface with the present invention State, composition is nonseptate can be mutually with respect to the cross-sectional view slided.
In figure, 1 it is smooth even surface, 2 is that more vertical equidistant zoom stripe surface eyeglasses, 3 are equidistant width bar shapeds Curved surface, 5 be separator bar, 101 be diplopore stripe board, 102 be reducing motor, 103 be bar hole, 104 be eyeglass assembly, 106 be Outer panel, 107 be median septum, 108 be interior plate, 109 be flute profile strip, 110 be sliding substrate, 111 be top clamp plate, 112 be Top margin, 113 be vertical rack plate, 116 be two lenses group, 119 be " L " shape supporting plate, 120 be reducing motor, 121 be guiding Bar, 122 be the travelling card of spill, 123 be projection, 124 be threaded shaft.
Embodiment
The unified horizontal double-motor driving device slided of the overlapping eyeglass eyes of embodiment 1, vision correction
Such as Fig. 1,2,3,4,5,6,7,
The unified horizontal double-motor driving device slided of the overlapping eyeglass eyes of vision correction, including diplopore stripe board 101, point Two reducing motor assemblies 102 at both ends above diplopore stripe board 101 are not fixed on, in two bar shapeds of diplopore stripe board 101 Two eyeglass assemblies 104 being slidably connected are respectively equipped with hole 103;
The structure of diplopore stripe board 101:Two bar holes 103 parallel to each other, the bar hole are provided with one piece of stripe board 103 stripe boards are divided into outer panel 106, median septum 107, interior plate 108;
The structure of eyeglass assembly 104:Be sequentially connected mutually from bottom to top have more vertical equidistant zoom stripe surfaces 2, Connect flute profile strip 109, sliding substrate 110, the top clamp plate 111 of eyeglass;The top margin of more vertical equidistant zoom stripe surfaces 2 112 are entrapped in the neck of flute profile strip 109, more vertical equidistant zoom stripe surfaces 2 is fixedly connected with flute profile strip 109;Groove Sliding substrate 110 is fixedly connected with above shape bar 109, in the side bolt connection vertical rack plate 113 of sliding substrate 110;It is perpendicular Top clamp plate 111 is connected with above to rack-plate 113;The gross thickness of sliding substrate 110 and vertical rack plate 113 with it is double Size of the width of the bar hole 103 of hole stripe board 101 into tight fit;More vertical equidistant zoom stripe surfaces 2 divide to be smooth flat Sliding surface 1 and there are more vertical equidistant zoom stripe surfaces 2;More than two pieces vertical equidistant change is connected with one flute profile strip 109 Burnt stripe surface 2, for the smooth even surface 1 of this more than two pieces vertical equidistant zoom stripe surfaces 2 to same face, this more than two pieces perpendicular There are more vertical equidistant zoom stripe surfaces 2 to same face to equidistant zoom stripe surface 2;Connect in one flute profile strip 109 More than the two pieces vertical equidistant zoom stripe surface 2 connect is into a two lenses group 116;
Diplopore stripe board 101 and the attachment structure of eyeglass assembly 104:101 two bar shapeds parallel to each other of diplopore stripe board Card has the sliding substrate 110 and vertical rack plate 113 of an eyeglass assembly 104 respectively in hole 103, two eyeglass assemblies 104 Vertical rack plate 113 is adjacent with the both sides of median septum 107 of diplopore stripe board 101 respectively;Bar hole 103 is with being stuck in slip therein The 113 one-tenth slidable tight fit contacts of substrate 110 and vertical rack plate;The width of flute profile strip 109 below bar hole 103 is big In the width of bar hole 103, the width of top clamp plate 111 above bar hole 103 is more than the width of bar hole 103, makes cunning Dynamic substrate 110 and vertical rack plate 113 are stuck in bar hole 103 and slided;The two lenses group 116 of two eyeglass assemblies 104 is put down It is adjacent to flatten sliding surface 1;The tooth form of two vertical rack plates 113 of eyeglass assembly 104 is identical;
The structure of reducing motor assembly 102:Including " L " shape supporting plate 119, reducing motor 120, guiding bar 121, spill trip Dynamic card 122;Reducing motor 120 is fixed on one end of " L " shape supporting plate 119, and the rotary shaft of reducing motor 120 is threaded shaft 124, threaded shaft 124 and " L " the shape supporting plate 119 of reducing motor 120 are rotatablely connected;Be additionally provided with " L " shape supporting plate 119 with The parallel guiding bar 121 of threaded shaft 124;The travelling card 122 of spill is cased with threaded shaft 124 and guiding bar 121, spill is moved about For card 122 with threaded shaft 124 to be threadedly coupled, spill is travelling to block 122 with guiding bar 121 to be slidably connected;The travelling card 122 of spill Driven by the rotation of threaded shaft 124, and slided along guiding bar 121;
The attachment structure of one reducing motor assembly 102, diplopore stripe board 101 and an eyeglass assembly 104:Reducing motor " L " the shape supporting plate 119 of assembly 102 is fixed on one end of diplopore stripe board 101, in the top clamp plate 111 of eyeglass assembly 104 Projection 123 is provided with above;Above the travelling card 122 of the spill of reducing motor assembly 102 and the top clamp plate 111 of eyeglass assembly 104 It is connected together provided with projection 123;
Being driven order is:Reducing motor 120 rotates, threaded shaft 124 and guiding bar 121 make spill 122 straight lines of travelling card Slide, the travelling card 122 of spill blocks linear slide projection 123 linear slide of top clamp plate 111, top clamp plate 111 is driven one Individual eyeglass assembly 104 slides in a cathetus of bar hole 103 of diplopore stripe board 101;Divide in two reducing motor assemblies 102 Other two reducing motors 120 each drive the two lenses group 116 of an eyeglass assembly 104 to move respectively;
More vertical equidistant zoom stripe surfaces 2 include two relative transparent surfaces, and one is smooth even surface 1, another Individual is more vertical equidistant zoom stripe surfaces 2;More vertical equidistant zoom stripe surfaces 2 are bent for multiple equidistant width bar shapeds Face 3 is parallel to be formed side by side, makes the more vertical equidistant cross sections of zoom stripe surface 2 into equidistant width sawtooth corrugation shape structure,
Each the strip width d of equidistant width bar shaped curved surface 3 side by side is equal, and each strip width d scope is 0.5mm is to some value between 3.0mm;
The lens strength numerical value of same equidistant width bar shaped curved surface 3 is identical, and same equidistant width bar shaped is bent Whole lens focus in face 3 are point-blank;
The lens focus of the equidistant width bar shaped curved surface 3 of whole of same more vertical equidistant zoom stripe surfaces 2 connects Line is parallel to each other;
The diopter numerical value extreme difference N of same more vertical equidistant zoom stripe surfaces 2 is certain between 10 degree to 100 degree One value;
The equidistant width bar shaped curved surface 3 of whole of same more vertical equidistant zoom stripe surfaces 2 is arranged side by side, and Lens strength numerical value extreme difference N is identical.
The separator bar 5 of equidistant width bar shaped curved surface 3 and the diplopore stripe board 101 of the vertical diopter striped eyeglass 105 of root Structure is as follows:
The equidistant width bar shaped curved surface 3 of the vertical equidistant zoom stripe surface 2 of more of whole of two eyeglass assemblies 104 divides Every the angle a of line 5 and diplopore stripe board 101 be 90 degree.
The equidistant width bar shaped curved surface 3 of whole of more than one vertical equidistant zoom stripe surface 2 is arranged side by side structure such as Under, the equidistant lens strength numerical value extreme difference N of width bar shaped curved surface 3 of whole of more than one vertical equidistant zoom stripe surface 2 Identical, lens strength numerical value is that 200 degree to -800 of specific arranged distribution is as follows:
In above-mentioned table:
Ordinal number refers to:1 to 41 refers to the sequence number of totally 41 equidistant width bar shaped curved surfaces 3;
The number of degrees refer to:The lens strength numerical value of the equidistant width bar shaped curved surface 3 of each sequence number;
Width refers to:The strip width d of each equidistant width bar shaped curved surface 3 side by side is 1.0mm;
Lens strength numerical value extreme difference N in above-mentioned table is 25 degree.
The unified horizontal double-motor driving device slided of the overlapping eyeglass eyes of embodiment 2, vision correction
Such as Fig. 1,2,3,4,5,6,7,
It is only different with regard to herein below such as the primary structure of embodiment 1:
The separator bar 5 of equidistant width bar shaped curved surface 3 and the diplopore stripe board 101 of the vertical diopter striped eyeglass 105 of root Structure is as follows:
The equidistant width bar shaped curved surface 3 of the vertical equidistant zoom stripe surface 2 of more of whole of one eyeglass assembly 104 divides Every the angle a of line 5 and diplopore stripe board 101 be 90 degree.
The equidistant width bar shaped curved surface 3 of the vertical equidistant zoom stripe surface 2 of more of whole of another eyeglass assembly 104 Separator bar 5 and the angle a of diplopore stripe board 101 are 70 degree.
The equidistant width bar shaped curved surface 3 of the vertical equidistant zoom stripe surface 2 of more of whole of two eyeglass assemblies 104 divides Every line 5 into 20 degree of angle.
The equidistant width bar shaped curved surface 3 of whole of more than one vertical equidistant zoom stripe surface 2 is arranged side by side structure such as Under, the equidistant lens strength numerical value extreme difference N of width bar shaped curved surface 3 of whole of more than one vertical equidistant zoom stripe surface 2 Identical, lens strength numerical value is that 200 degree to -800 of specific arranged distribution is as follows:
In above-mentioned table:
Ordinal number refers to:1 to 41 refers to the sequence number of totally 41 equidistant width bar shaped curved surfaces 3;
The number of degrees refer to:The lens strength numerical value of the equidistant width bar shaped curved surface 3 of each sequence number;
Width refers to:The strip width d of each equidistant width bar shaped curved surface 3 side by side is 1.0mm;
Lens strength numerical value extreme difference N in above-mentioned table is 25 degree.

Claims (1)

1. the unified horizontal double-motor driving device slided of the overlapping eyeglass eyes of vision correction, it is characterised in that:Including diplopore bar Shape plate (101), two reducing motor assemblies (102) at diplopore stripe board (101) both ends above are separately fixed at, in diplopore bar shaped Two eyeglass assemblies (104) being slidably connected are respectively equipped with two bar holes (103) of plate (101);
The structure of diplopore stripe board (101):Two bar holes (103) parallel to each other, the bar hole are provided with one piece of stripe board (103) stripe board is divided into outer panel (106), median septum (107), interior plate (108);
The structure of eyeglass assembly (104):Be sequentially connected mutually from bottom to top have more vertical equidistant zoom stripe surfaces (2), Connect flute profile strip (109), sliding substrate (110), the top clamp plate (111) of eyeglass;More vertical equidistant zoom stripe surfaces (2) Top margin (112) be entrapped in the neck of flute profile strip (109), make more vertical equidistant zoom stripe surfaces (2) and flute profile strip (109) it is fixedly connected;Sliding substrate (110) is fixedly connected with above flute profile strip (109), in the side spiral shell of sliding substrate (110) Tether and connect vertical rack plate (113);Top clamp plate (111) is connected with above vertical rack plate (113);Sliding substrate (110) and the gross thickness of vertical rack plate (113) and diplopore stripe board (101) bar hole (103) width into tight fit chi It is very little;More vertical equidistant zoom stripe surfaces (2) are divided into smooth even surface (1) and have more vertical equidistant zoom stripe surfaces (2);More than two pieces vertical equidistant zoom stripe surface (2) is connected with one flute profile strip (109), this more than two pieces vertical equidistant From zoom stripe surface (2) smooth even surface (1) to same face, this more than two pieces vertical equidistant zoom stripe surfaces (2) There are more vertical equidistant zoom stripe surfaces (2) to same face;More than two pieces of connection is vertical etc. in one flute profile strip (109) Apart from zoom stripe surface (2) into a two lenses group (116);
Diplopore stripe board (101) and the attachment structure of eyeglass assembly (104):(101) two bars parallel to each other of diplopore stripe board Card has the sliding substrate (110) and vertical rack plate (113) of an eyeglass assembly (104), two eyeglasses respectively in shape hole (103) The vertical rack plate (113) of assembly (104) is adjacent with median septum (107) both sides of diplopore stripe board (101) respectively;Bar hole (103) contacted with being stuck in sliding substrate therein (110) and vertical rack plate (113) into slidable tight fit;Positioned at bar shaped Flute profile strip (109) width of hole (103) below is more than the width of bar hole (103), positioned at the top folder of bar hole (103) above Plate (111) width is more than the width of bar hole (103), sliding substrate (110) and vertical rack plate (113) is stuck in bar hole (103) slided in;The smooth even surface (1) of the two lenses group (116) of two eyeglass assemblies (104) is adjacent;Two eyeglass assemblies (104) tooth form of vertical rack plate (113) is identical;
The structure of reducing motor assembly (102):Including " L " shape supporting plate (119), reducing motor (120), guiding bar (121), recessed The travelling card (122) of shape;Reducing motor (120) is fixed on one end of " L " shape supporting plate (119), the rotary shaft of reducing motor (120) For threaded shaft (124), threaded shaft (124) and " L " the shape supporting plate (119) of reducing motor (120) are rotatablely connected;" L " shape The guiding bar (121) parallel with threaded shaft (124) is additionally provided with supporting plate (119);In threaded shaft (124) and guiding bar (121) the travelling card (122) of spill is cased with, spill is travelling to block (122) with threaded shaft (124) to be threadedly coupled, the travelling card of spill (122) with guiding bar (121) to be slidably connected;The travelling card (122) of spill is driven by the rotation of threaded shaft (124), and edge Guiding bar (121) is slided;
The attachment structure of one reducing motor assembly (102), diplopore stripe board (101) and an eyeglass assembly (104):Slow down electricity " L " the shape supporting plate (119) of machine assembly (102) is fixed on one end of diplopore stripe board (101), on the top of eyeglass assembly (104) Projection (123) is provided with above portion's clamping plate (111);The travelling card (122) of the spill of reducing motor assembly (102) and eyeglass assembly (104) it is connected together above top clamp plate (111) provided with projection (123);
Being driven order is:Reducing motor (120) rotates, threaded shaft (124) and guiding bar (121) make the travelling card (122) of spill The travelling card (122) of linear slide, spill, which blocks linear slide projection (123), makes top clamp plate (111) linear slide, top clamp plate (111) an eyeglass assembly (104) is driven to be slided in bar hole (103) cathetus of diplopore stripe board (101);Two subtract Two reducing motors (120) in speed motor assembly (102) respectively each drive the two lenses of an eyeglass assembly (104) respectively Group (116) is moved;
More vertical equidistant zoom stripe surfaces (2) include two relative transparent surfaces, and one is smooth even surface (1), another Individual is more vertical equidistant zoom stripe surfaces (2);More vertical equidistant zoom stripe surfaces (2) are multiple equidistant width bars Shape curved surface (3) is parallel to be formed side by side, makes more vertical equidistant zoom stripe surface (2) cross sections into equidistant width sawtooth corrugation Shape structure,
Each the strip width d of equidistant width bar shaped curved surface (3) side by side is equal, and each strip width d scope is 0.5mm To some value between 3.0mm;
The lens strength numerical value of same equidistant width bar shaped curved surface (3) is identical, same equidistant width bar shaped curved surface (3) whole lens focus are point-blank;
The lens focus of the equidistant width bar shaped curved surface (3) of whole of same more vertical equidistant zoom stripe surfaces (2) connects Line is parallel to each other;
The diopter numerical value extreme difference N of same more vertical equidistant zoom stripe surfaces (2) be 10 degree to 100 degree between it is a certain Individual value;
The equidistant width bar shaped curved surface (3) of whole of same more vertical equidistant zoom stripe surfaces (2) is arranged side by side, and Lens strength numerical value extreme difference N is identical;
Separator bar (5) and the angle a of diplopore stripe board (101) between any two neighboring equidistant width bar shaped curved surface (3) For some value between 70 degree to 90 degree.
CN201710699205.7A 2017-04-27 2017-08-06 Horizontal double-motor driving device for unified sliding of two eyes of vision correction overlapped lens Active CN107463002B (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109597218A (en) * 2018-12-27 2019-04-09 陈奎 Eyesight correcting glasses with the unified sliding of horizontal Dual-motors Driving overlapping eyeglass
CN109620662A (en) * 2018-12-27 2019-04-16 陈奎 There are the two lens that overlap to assemble the eyesight correcting glasses of vertical single motor driving device

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN207764492U (en) * 2017-04-27 2018-08-24 陈奎 The horizontal double-motor driving device that vision correction overlapping eyeglass eyes slide respectively
CN108828791A (en) * 2018-06-25 2018-11-16 广州锐之目光学科技有限公司 A kind of far and near adjustment mirror
CN109407343A (en) * 2018-11-26 2019-03-01 吴志胜 A kind of Focusable glasses
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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1138253A2 (en) * 2000-03-30 2001-10-04 Kabushiki Kaisha TOPCON Eye test system
WO2002065197A2 (en) * 2001-02-12 2002-08-22 Klaus Hoffmann Binocular optical device, in particular electronic spectacles, comprising an electronic camera for automatically setting a focus that includes the correction of different vision defects
CN105560025A (en) * 2016-02-04 2016-05-11 刘伟中 Visual performance optimization training equipment
CN106054403A (en) * 2015-08-14 2016-10-26 丛繁滋 Glasses having dynamic slight defocusing and zooming functions in emmetropia direction
CN205920262U (en) * 2016-08-08 2017-02-01 江苏鹰视菲诺智能科技有限公司 A motor drive mechanism that is used for intelligent zoom glass lens group to adjust
CN106405780A (en) * 2016-11-03 2017-02-15 杭州延华多媒体科技有限公司 Lens operating mechanism for zooming long-distance looking training apparatus
CN208013586U (en) * 2017-04-27 2018-10-26 陈奎 Vision correction is overlapped the horizontal double-motor driving device of the unified sliding of eyeglass eyes

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5644374A (en) * 1992-02-03 1997-07-01 Seiko Epson Corporation Variable focus type eyesight correcting apparatus
NL1028171C2 (en) * 2005-02-02 2006-08-03 Vereniging Voor Christelijk Ho Glasses.
CN105467618A (en) * 2015-12-31 2016-04-06 江苏鹰视菲诺智能科技有限公司 Electronic focal-length-adjustable glasses
CN105527665A (en) * 2016-02-18 2016-04-27 陈奎 Lens with gradually-changed focus

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1138253A2 (en) * 2000-03-30 2001-10-04 Kabushiki Kaisha TOPCON Eye test system
WO2002065197A2 (en) * 2001-02-12 2002-08-22 Klaus Hoffmann Binocular optical device, in particular electronic spectacles, comprising an electronic camera for automatically setting a focus that includes the correction of different vision defects
CN106054403A (en) * 2015-08-14 2016-10-26 丛繁滋 Glasses having dynamic slight defocusing and zooming functions in emmetropia direction
CN105560025A (en) * 2016-02-04 2016-05-11 刘伟中 Visual performance optimization training equipment
CN205920262U (en) * 2016-08-08 2017-02-01 江苏鹰视菲诺智能科技有限公司 A motor drive mechanism that is used for intelligent zoom glass lens group to adjust
CN106405780A (en) * 2016-11-03 2017-02-15 杭州延华多媒体科技有限公司 Lens operating mechanism for zooming long-distance looking training apparatus
CN208013586U (en) * 2017-04-27 2018-10-26 陈奎 Vision correction is overlapped the horizontal double-motor driving device of the unified sliding of eyeglass eyes

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109597218A (en) * 2018-12-27 2019-04-09 陈奎 Eyesight correcting glasses with the unified sliding of horizontal Dual-motors Driving overlapping eyeglass
CN109620662A (en) * 2018-12-27 2019-04-16 陈奎 There are the two lens that overlap to assemble the eyesight correcting glasses of vertical single motor driving device

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CN208013586U (en) 2018-10-26
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CN107450197A (en) 2017-12-08
CN207764492U (en) 2018-08-24

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