Optical device detection device and equipment

By designing an optical device inspection device and utilizing the cooperation of a support base and limiting components, stable installation and angle adjustment of optical devices are achieved, solving the problem of low inspection efficiency of handheld optical devices in existing technologies and improving inspection efficiency and ease of operation.

CN223756633UActive Publication Date: 2026-01-02HEFEI I TEK OPTOELECTRONICS CO LTD
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Patent Information

Application Number
CN202520270073.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2026-01-02
Estimated Expiration
2035-02-20

AI Technical Summary

Technical Problem

In existing technologies, handheld tablet-type optical devices have low detection efficiency and are inconvenient to operate for extended periods.

Method used

An optical device testing device was designed, including a support, a limiting component, and a rotation adjustment component. By engaging the space and the limiting component, the optical device can be stably installed and its angle adjusted. The rotation adjustment component synchronously controls the rotation of the limiting component, simplifying the operation process.

Benefits of technology

It improves the efficiency of optical device testing, simplifies the installation and disassembly process of optical devices, reduces operation time, and provides stable testing conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an optical device detection device and equipment, the detection device comprises a bearing seat used for installing a flat plate type optical device, a plurality of first limiting pieces used for limiting the movement of the optical device so as to cooperate with a light source for detection, and at least one supporting seat which is rotatably connected with the bearing seat and used for supporting the bearing seat, therefore, the space required by rotation of the bearing seat is provided. The rotary adjusting part is used for driving the first limiting part to rotate, so that the optical device is freely mounted on the bearing seat; wherein the bearing seat is provided with a clamping space which is matched with the optical device, and the clamping space is arranged in a through manner so as to detect two surfaces which are oppositely distributed on the optical device; the first limiting piece is rotationally mounted on the bearing seat and is used for preventing the optical device from being separated from the clamping space in a free state; the first limiting pieces are synchronously controlled to rotate through the rotation adjusting piece, the rotation time of the first limiting pieces is greatly saved, and the detection efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of detection equipment, especially relates to an optical device detection device and equipment. BACKGROUND

[0002] In the field of optics, the cleanliness of the surface of flat plate optical devices such as lenses and mirrors is crucial to optical performance. Dust, oil stains and other pollutants not only affect the light transmittance and imaging quality of optical devices, but also may scratch or wear the device surface due to improper wiping. Therefore, before wiping, a specific method is usually used to detect the pollutants on the device surface.

[0003] Holding the flat plate optical device by hand and adjusting the light angle of the flashlight is a commonly used detection method. By adjusting the light angle of the flashlight, the light can be incident on the surface of the optical device at different angles, thereby enhancing or highlighting the visibility of the pollutants on the device surface. This method is simple and easy to operate, and does not require complex equipment, so it has been widely used in actual operation.

[0004] Chinese patent CN221926168U discloses a cover plate glass detection clamp, which includes a rectangular frame and mounting blocks arranged on the front and rear side walls of the rectangular frame. Fish lines are arranged between the corresponding two groups of mounting blocks. Limiting mechanisms are arranged at the middle of the four groups of side walls in the opening of the rectangular frame. Adjusting mechanisms corresponding to the fish lines are also arranged on the two side walls in the rectangular frame. The limiting mechanisms include fixed plates parallel to the corresponding side walls of the rectangular frame. L-shaped rods are arranged on the front surface of the fixed plates. The fixed plates are fixedly connected to the inner wall of the rectangular frame through extension rods. A plurality of screw pipes are arranged on the back surface of the fixed plates. Screw rods are arranged in the screw pipes and penetrate through the side walls of the rectangular frame. Rolling bearings are arranged on the screw rods. The clamp has a simple structure and is easy to use. It can effectively limit the glass cover plate through the four limiting mechanisms to prevent horizontal shaking of the glass cover plate on the fish lines during detection. However, the four-direction clamps need to be disassembled and assembled in sequence, which is low in efficiency.

[0005] In summary, in the prior art, the flat plate optical device needs to be held by hand, and the light needs to be manually adjusted, which is not conducive to long-term accurate operation and is low in efficiency.

[0006] Based on the above problems, an optical device detection device and equipment are provided. Utility model content

[0007] The utility model aims at overcoming the above problems in the prior art, and provides an optical device detection device and equipment. The detection device can replace the hand-held flat plate optical device, and freely adjust the light angle, which is convenient and efficient.

[0008] In order to achieve the above technical purpose, reach the above technical effect, the utility model discloses the following technical scheme realizes:

[0009] An optical device detection device, comprising: a bearing seat for installing flat optical devices, and a plurality of first limit pieces for limiting the movement of the optical device, cooperating with the light source for detection, further comprising:

[0010] At least one support seat is rotatably connected with the bearing seat and is used for supporting the bearing seat to provide the space required when the bearing seat rotates;

[0011] A rotary adjusting piece is installed in cooperation with the first limit piece and is used for driving the first limit piece to rotate to allow the optical device to be freely installed to the bearing seat;

[0012] Wherein, the bearing seat is provided with a clamping space matched with the optical device, and the clamping space is provided through, so as to detect two surfaces relatively distributed on the optical device;The first limit piece is rotatably installed on the bearing seat and is used for preventing the optical device from leaving the clamping space in a free state.

[0013] Further, the first limit piece comprises:

[0014] A rotating shaft part is rotatably installed on the bearing seat, and at least one spiral groove is distributed on the surface of the rotating shaft part;

[0015] A limiting part is connected with one end of the rotating shaft part and is used for receiving the torque of the rotating shaft part to change the pose;

[0016] Wherein, the rotary adjusting piece cooperates with the other end of the rotating shaft part, and has a guide protrusion matched with the spiral groove, so that the rotary adjusting piece moves and drives the rotating shaft part to rotate.

[0017] Further, further comprising:

[0018] An elastic piece is connected with the rotary adjusting piece in abutment and makes the rotating shaft part pass through the bearing seat, the rotary adjusting piece and the elastic piece are connected, and is used for elastically limiting the rotary adjusting piece.

[0019] Further, the rotary adjusting piece comprises: a sliding pressing part, which is slidingly matched with the bearing seat, is used for pressing the rotary adjusting piece, so that the rotary adjusting piece moves and drives the rotating shaft part to rotate.

[0020] Further, the number of support seats is two, which are relatively distributed and are used for supporting both ends of the bearing seat.

[0021] Further, further comprising: a rotary connecting piece is fixedly installed on the top of the support seat and is used for rotatably installing the bearing seat and limiting the movement of the installed bearing seat.

[0022] Further, further comprising:

[0023] The first positioning connecting piece is fixedly connected to one side of the bearing seat and rotatably connected to one of the rotating connecting pieces, so as to rotatably install the bearing seat;

[0024] The second positioning connecting piece is rotatably connected to the other rotating connecting piece;

[0025] The positioning adjusting piece is fixedly connected to the second positioning connecting piece and used for adjusting the second positioning connecting piece to connect the opposite side of the bearing seat.

[0026] Further, the utility model further comprises:

[0027] The guide rail is distributed along the direction of the rotating shaft of the bearing seat and used for providing a moving path of the support seat;

[0028] The sliding seat is connected to the support seat and used for driving the support seat to move along the guide rail.

[0029] Further, the utility model further comprises a base used for fixedly installing the guide rail.

[0030] The utility model also provides a kind of equipment, comprising:

[0031] The above detection device;

[0032] The light source is used to project light beam to the surface of optical device for detection.

[0033] The utility model has the beneficial effects that:

[0034] 1、the utility model discloses, through the clamping space of being provided in bearing seat, optical device is positioned to clamping, and using the setting of first limit piece, so that optical device can be stably clamped in clamping space under free state, it is convenient to provide the stable detection condition of operator, cooperation rotating adjusting piece and the cooperation installation of first limit piece, so that through rotating adjusting piece drive several first limit pieces rotation and drive away the installation path of optical device, to facilitate disassembly and installation optical device, and through rotating adjusting piece synchronous control several first limit pieces rotation, it is greatly saved that several first limit pieces rotates time, and the detection efficiency is promoted.

[0035] 2、the utility model discloses, through the cooperation setting of guide protrusion and helical groove, so that guide protrusion follows adjusting seat and makes feed movement, and through the limiting effect of helical groove, so that rotating shaft portion realizes rotation under the action of first bearing, to drive limiting portion rotation by rotating shaft portion, realize clamping or loosening optical device, and several first limit pieces can be driven by rotating adjusting piece to realize rotation, without rotating several first limit pieces multiple times, and then save operation time.

[0036] 3. The utility model discloses, through the cooperation setting of rotation adjusting spare and elastic part, make through pressing the slide pressing portion and realize the adjustment seat to go down, to realize the rotation of first limit spare through the cooperation setting of guide protruding and helical groove, and elastic piece is extruded to the compression state of rotation adjusting spare to store the elastic potential energy simultaneously, and after the slide pressing portion is loosened, the elastic piece releases the elastic potential energy to realize the reset of rotation adjusting spare, and then realize the synchronous reset of a plurality of first limit spare, reset fast, convenient and fast operation process, and the practicality is strong.

[0037] 4. The utility model discloses, through the first positioning connecting piece and realize the rotary installation of bearing seat and one support seat, through the second positioning connecting piece and realize the rotary installation of bearing seat and another support seat, and through the first threaded shaft and second threaded shaft convenient realization bearing seat's dismouting, and the practicality is strong, through the installation cooperation of slide and guide rail realizes the horizontal movement of support seat, and the interval of two support seat is adjusted conveniently, to adapt to the bearing seat of different size, bearing seat after the installation of support seat still can be positioned through bolt, improve the detection stability, complete the installation process of detection device. BRIEF DESCRIPTION OF DRAWINGS

[0038] The drawings described herein are used to provide further understanding of the utility model, and constitute a part of the application, and the illustrative embodiment of the utility model and its explanation are used to explain the utility model, and do not constitute improper limitation to the utility model. In the drawings:

[0039] Figure 1 It is the structural schematic diagram of the utility model;

[0040] Figure 2 It is the partial structure explosion drawing of the utility model;

[0041] Figure 3 It is the partial structure explosion drawing of the utility model;

[0042] Figure 4 It is the partial structure schematic diagram of the utility model;

[0043] Figure 5 It is the partial structure explosion drawing of the utility model;

[0044] Figure 6 It is the partial structure explosion drawing of the utility model.

[0045] In the diagram: 10, base; 101, mounting slot; 20, guide rail; 201, first mounting hole; 30, slide; 301, slide groove; 40, support base; 401, support plate; 402, support base; 403, bearing groove; 50, rotating connector; 60, first positioning connector; 601, first fixed shaft; 602, first threaded shaft; 70, second positioning connector; 701, second fixed shaft; 702, second threaded shaft; 80, optical component; 90, light source; 1, bearing... 1. Carrier; 11. Threaded hole; 12. First through hole; 13. Sliding groove; 14. Bearing platform; 2. Positioning adjustment component; 21. Positioning plate; 22. Positioning shaft; 23. Positioning handle; 3. First limiting component; 31. Limiting part; 32. Rotating shaft part; 33. Spiral groove; 34. Abutting part; 4. Rotation adjustment component; 41. Second through hole; 42. Sliding pressing part; 43. Guide protrusion; 5. Elastic component; 6. Second limiting component; 61. Limiting block; 62. Fastening bolt; 7. First bearing. Detailed Implementation

[0046] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0047] like Figures 1-6 As shown, this embodiment first provides an optical device testing device, including: a carrier 1 for mounting a flat optical device 80, and a plurality of first limiting members 3 for restricting the movement of the optical device 80, so as to cooperate with the light source 90 for testing, and further including:

[0048] At least one support base 40 is rotatably connected to the bearing base 1 to support the bearing base 1 and provide the space required for the bearing base 1 to rotate;

[0049] The rotating adjustment component 4 is installed in conjunction with the first limiting component 3 to drive the first limiting component 3 to rotate so that the optical device 80 can be freely installed onto the carrier 1;

[0050] The carrier 1 is provided with a locking space adapted to the optical device 80, and the locking space is through-type to detect two relatively distributed surfaces on the optical device 80; the first limiting member 3 is rotatably mounted on the carrier 1 to prevent the optical device 80 from disengaging from the locking space in a free state.

[0051] In the utility model, the optical device 80 can be placed in the clamping space of the bearing seat 1 and rotate with the bearing seat 1, so that the double sides of the optical device 80 can be conveniently detected, the detection efficiency is high, and through the rotation of the optical device 80, the angle of the optical device 80 can be changed, the irradiation angle of the light emitted by the light source 90 irradiated on the optical device 80 is adjusted, and the observation angle of the operator to the surface of the optical device 80 is adjusted, so that the optical device 80 can be conveniently adjusted to the best dirty detection angle.

[0052] In the utility model, the free state of the first limiting piece 3 is a state not subjected to external force, at this time, the first limiting piece 3 abuts on the optical device 80, and is used for limiting the movement of the optical device 80 to ensure that the optical device 80 is stably installed in the clamping space, so that stable detection conditions are conveniently provided.

[0053] In some embodiments, the number of the first limiting pieces 3 is two or more, so that the synchronous movement of the two or more first limiting pieces 3 can be realized through the action of the rotary adjusting piece 4, so that the rotation time of the first limiting pieces 3 is saved, and the clamping efficiency of the optical device 80 is improved.

[0054] In some embodiments, the shape of the bearing seat 1 includes but is not limited to a rectangle, a triangle, a sector, an arc and the like.

[0055] In the utility model embodiment, the number of the first limiting pieces 3 is set to four groups, in order to adapt to the use requirement of the four groups of first limiting pieces 3, the bearing seat 1 is set to a rectangular frame.

[0056] In the utility model, the rotary adjusting piece 4 is synchronously installed with the first limiting piece 3, so that the installation path of the optical device 80 is driven away through the rotation of the first limiting piece 3 driven by the rotary adjusting piece 4, and the optical device 80 can be freely installed in the clamping space.

[0057] In conclusion, in the utility model, the optical device 80 is clamped and positioned in the clamping space of the bearing seat 1, and the first limiting piece 3 is arranged, so that the optical device 80 can be stably clamped in the clamping space in the free state, stable detection conditions are conveniently provided for the operator, the rotary adjusting piece 4 is cooperatively installed with the first limiting piece 3, so that the installation path of the optical device 80 is driven away through the rotation of the first limiting piece 3 driven by the rotary adjusting piece 4, so that the optical device 80 can be conveniently disassembled and installed, and the rotation time of the first limiting piece 3 is greatly saved through the synchronous control of the rotation of the first limiting piece 3 by the rotary adjusting piece 4, so that the detection efficiency is improved.

[0058] In the embodiment of the utility model, in order to conveniently place optical device 80, the inner side surface of bearing seat 1 is fixedly provided with bearing table 14, optical device 80 is placed on bearing table 14, and first limiting piece 3 is used to extrude optical device 80 to carry out abutment positioning, the position of first limiting piece 3 abutting with optical device 80 is provided with abutment part 34, and flexible material is used to avoid the damage of optical device 80.

[0059] As Figure 5 Indicated in the embodiment of the utility model, first limiting piece 3 includes:

[0060] Rotary shaft part 32 is rotatably installed on bearing seat 1, and at least one helical groove 33 is distributed on the surface of rotary shaft part 32;

[0061] Limiting part 31 is connected with one end of rotary shaft part 32, is used to receive the torque of rotary shaft part 32 to change the pose;

[0062] Wherein, rotary adjusting part 4 is matched with the other end of rotary shaft part 32, and has the guide protrusion 43 matched with helical groove 33, so that rotary adjusting part 4 rotates when moving rotary shaft part 32.

[0063] In order to install and cooperate installation first limiting piece 3, the end of bearing seat 1 is provided with a plurality of first through holes 12 matched with rotary shaft part 32.

[0064] As Figure 5 Indicated, rotary adjusting part 4 includes:

[0065] Adjusting seat, in order to avoid interference with the clamping space provided in bearing seat 1, the shape of adjusting seat is set as rectangular frame matched with the shape of bearing seat 1;

[0066] Second through hole 41 is set in the end of adjusting seat and is matched with the position of first through hole 12, second through hole 41 is matched with rotary shaft part 32, is used to install rotary shaft part 32 to limit the movement of first limiting piece 3, and guide protrusion 43 is set in the inner bottom end of second through hole 41.

[0067] In the utility model, the number of helical groove 33 on the surface of rotary shaft part 32 and the guide protrusion 43 in second through hole 41 is more than one, is used to realize the rotation of first limiting piece 3 by mutual cooperation.

[0068] In order to make the rotation stability of first limiting piece 3 better, in the embodiment of the utility model, the number of helical groove 33 on the surface of rotary shaft part 32 and guide protrusion 43 is set as two groups.

[0069] The utility model discloses, in order to guarantee the rotation stability of pivot part 32 in first through -hole 12 and second through -hole 41, the first bearing 7 is fixedly connected to the top of pivot part 32 outer surface, and the outer ring of first bearing 7 is fixed in first through -hole 12, and the inner ring is fixed on the pivot part 32 outer surface, to make the rotation of limiting portion 31 more stablely realize the restriction and the release of restriction of optical device 80.

[0070] The utility model discloses, in order to avoid the separation of pivot part 32 in the moving process of first through -hole 12 and second through -hole 41, be provided with second limit piece 6 at the bottom of pivot part 32, be used for limiting first limit piece 3 to separate the preset working position, wherein, second limit piece 6 includes:

[0071] Limiting block 61, limiting block 61 is located at the bottom of adjusting seat, and the top of limiting block 61 is fixedly provided with fastening bolt 62, and the fastening bolt 62 is matched and installed with the bolt hole of pivot part 32 bottom, to realize the fixed mounting of limiting block 61 at the bottom of pivot part 32.

[0072] In conclusion, in the utility model, through the cooperation of the guide protrusion 43 and the spiral groove 33, the guide protrusion 43 follows the adjusting seat to move, and through the limiting effect of the spiral groove 33, the pivot part 32 rotates under the action of the first bearing 7, so that the limiting part 31 is rotated by the pivot part 32, the optical device 80 is clamped or loosened, and the first limit piece 3 can be driven synchronously by the rotary adjusting part 4 to rotate, without rotating the first limit piece 3 several times, thereby saving operation time.

[0073] In the embodiment of the utility model, in order to realize the quick reset of the rotary adjusting part 4, the first limit piece 3 further includes:

[0074] The elastic member 5 is connected with the rotary adjusting part 4 in abutment, and the pivot part 32 passes through the bearing seat 1, the rotary adjusting part 4 and the elastic member 5, which are connected, to elastically limit the rotary adjusting part 4.

[0075] In the utility model, the types of the elastic member 5 include but are not limited to springs, elastic rubbers and the like, and components that can realize the elastic reset function all fall within the protection scope of the utility model.

[0076] In the embodiment of the utility model, the elastic member 5 is a spring, which is sleeved on the outer surface of the pivot part 32 and has one end fixed on the second limit piece 6 and the other end abutting on the bottom of the adjusting seat, to store the elastic potential energy in the compressed state under the action of external force, and release the elastic potential energy to realize the reset function when the external force is removed.

[0077] In the embodiment of the utility model, in order to conveniently realize the pressing of the adjusting seat, the rotary adjusting part 4 further comprises: a sliding pressing part 42, which is in sliding cooperation with the bearing seat 1 and is used for pressing the rotary adjusting part 4, so that the rotary adjusting part 4 moves and drives the rotating shaft part 32 to rotate.

[0078] In the utility model, the sliding pressing part 42 is arranged in the sliding groove 13 on the bearing seat 1, and the top of the sliding pressing part 42 is located above the bearing seat 1, so that the movement of the rotary adjusting part 4 can be realized by directly pressing the sliding pressing part 42, thereby facilitating actual operation.

[0079] In the utility model, the number of the sliding pressing part 42 and the sliding groove 13 is set to more than one, in order to save cost and realize the stable movement of the rotary adjusting part 4, the number of the sliding pressing part 42 and the sliding groove 13 in the embodiment of the utility model is two, and the two are symmetrically arranged on both sides of the middle part of the bearing seat 1.

[0080] In summary, in the utility model, through the cooperation of the rotary adjusting part 4 and the elastic part 5, the adjusting seat is lowered by pressing the sliding pressing part 42, the first limiting part 3 is rotated through the cooperation of the guide protrusion 43 and the spiral groove 33, the elastic part 5 is compressed to store elastic potential energy under the extrusion of the rotary adjusting part 4, and the elastic potential energy of the elastic part 5 is released to realize the reset of the rotary adjusting part 4 after the sliding pressing part 42 is released, thereby realizing the synchronous reset of the plurality of first limiting parts 3, the reset speed is fast, the operation process is convenient and fast, and the utility model has high practicability.

[0081] In the embodiment of the utility model, in order to realize the more stable support of the bearing seat 1 and provide a rotating space, the number of the support seat 40 is two, which are oppositely distributed and used for supporting the two ends of the bearing seat 1.

[0082] In the utility model, the position of the support seat 40 is diversified, which can be arranged at the two ends of the bearing seat 1, and also can be arranged on both sides of the middle part of the bearing seat 1, used for positioning the two sides of the bearing seat 1, and also can be arranged above the bearing seat 1, used for positioning the upper part of the bearing seat 1, but it is necessary to ensure that the support seat 40 does not interfere with the observation of the optical device 80, in the embodiment of the utility model, the two support seats 40 are located at the two ends of the bearing seat 1 and used for positioning the two ends of the bearing seat 1.

[0083] The support seat 40 comprises:

[0084] The support plate 401 is fixedly provided with a support base 402 at the bottom of the side away from the bearing seat 1.

[0085] In the embodiment of the utility model, the utility model further comprises: a rotating connecting part 50, which is fixedly installed at the top of the support seat 40 and is used for rotatingly installing the bearing seat 1 and limiting the movement of the installed bearing seat 1.

[0086] The utility model discloses, rotating connecting piece 50 is the second bearing, second bearing, including the inner ring and the outer ring, the outer ring of second bearing is fixedly arranged in the bearing groove 403 of setting in the support plate 401 side part.

[0087] As Figure 3 The utility model discloses, rotating connecting piece 50 is the second bearing, second bearing, including the inner ring and the outer ring, the outer ring of second bearing is fixedly arranged in the bearing groove 403 of setting in the support plate 401 side part.

[0088] The utility model discloses, rotating connecting piece 50 is the second bearing, second bearing, including the inner ring and the outer ring, the outer ring of second bearing is fixedly arranged in the bearing groove 403 of setting in the support plate 401 side part.

[0089] The utility model discloses, rotating connecting piece 50 is the second bearing, second bearing, including the inner ring and the outer ring, the outer ring of second bearing is fixedly arranged in the bearing groove 403 of setting in the support plate 401 side part.

[0090] The utility model discloses, rotating connecting piece 50 is the second bearing, second bearing, including the inner ring and the outer ring, the outer ring of second bearing is fixedly arranged in the bearing groove 403 of setting in the support plate 401 side part.

[0091] The utility model discloses, rotating connecting piece 50 is the second bearing, second bearing, including the inner ring and the outer ring, the outer ring of second bearing is fixedly arranged in the bearing groove 403 of setting in the support plate 401 side part.

[0092] Specifically, first positioning connecting piece 60 includes first fixed shaft 601 and first threaded shaft 602, and the first fixed shaft 601 is fixedly arranged on the inner ring of one of the second bearings, and the first threaded shaft 602 is screw-mounted in the preset threaded hole 11 on the side of the bearing seat 1, and is used for mounting the first positioning connecting piece 60 with the bearing seat 1.

[0093] Second positioning connecting piece 70 includes second fixed shaft 701 and second threaded shaft 702, and the second fixed shaft 701 is fixedly arranged on the inner ring of the other second bearing, and the second threaded shaft 702 is screw-mounted in the preset threaded hole 11 on the side of the bearing seat 1, and is used for mounting the second positioning connecting piece 70 with the bearing seat 1.

[0094] Positioning adjusting part 2 includes positioning shaft 22, one end of second fixed shaft 701 passes through second bearing and is fixedly installed in positioning shaft 22, positioning plate 21 is fixedly arranged on the side, away from second fixed shaft 701, of positioning shaft 22, positioning handle 23 is fixedly arranged on the side, away from positioning shaft 22, of positioning plate 21, and is used for rotating positioning shaft 22 on positioning plate 21 by positioning handle 23, so as to drive second fixed shaft 701 to rotate and realize the screw mounting of second threaded shaft 702 and bearing seat 1.

[0095] As Figure 2 To realize the more accurate movement direction of support seat 40, the utility model discloses, still include:

[0096] The guide rail 20 is distributed along the rotation axis direction of the bearing seat 1, and is used for providing a moving path of the support seat 40.

[0097] The sliding seat 30 is connected with the support seat 40, and is used for driving the support seat 40 to move along the guide rail 20.

[0098] In the utility model, the bottom of the sliding seat 30 is provided with a sliding groove 301 matched with the guide rail 20, and the top of the sliding seat 30 is fixedly connected with the support base 402, so as to provide a moving path for the stable movement of the support seat 40 by the sliding cooperation between the sliding seat 30 and the guide rail 20.

[0099] In the embodiment of the utility model, the base 10 is used for fixedly installing the guide rail 20.

[0100] In the utility model, the top of the base 10 is provided with an installation groove 101.

[0101] The guide rail 20 comprises:

[0102] The first installation hole 201 is one-to-one corresponding to the second installation hole 201 in the installation groove 101, so as to realize the fixed installation of the guide rail 20 and the sliding seat 30 by the bolt connection between the first installation hole 201 and the second installation hole.

[0103] In conclusion, in the utility model, the bearing seat 1 and one of the support seats 40 are rotatably installed by the first positioning connecting piece 60, the bearing seat 1 and the other support seat 40 are rotatably installed by the second positioning connecting piece 70, and the bearing seat 1 is conveniently disassembled and assembled by the first threaded shaft 602 and the second threaded shaft 702, so that the utility model has high practicability, the horizontal movement of the support seat 40 is realized by the installation cooperation of the sliding seat 30 and the guide rail 20, the distance between the two support seats 40 is conveniently adjusted, the bearing seat 1 of different sizes is adapted, the support seat 40 after the installation of the bearing seat 1 is bolted, the detection stability is improved, and the installation process of the detection device is completed.

[0104] The utility model provides a kind of equipment, comprising:

[0105] The above detection device;

[0106] The light source 90 is used for projecting light beam to the surface of optical device 80 to detect.

[0107] In the description of the specification, the description of the terms "one embodiment", "an example", "a specific example" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the utility model. In the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0108] The basic principle, main features and advantages of the utility model are shown and described above. Those skilled in the art should understand that the utility model is not limited by the above embodiments, and the above embodiments and the description in the specification are only to illustrate the principle of the utility model, and various changes and improvements of the utility model can be made without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed.

Claims

1. An optical device detection apparatus, comprising: A carrier for mounting flat-panel optical devices, and several first limiting members for restricting the movement of the optical devices to cooperate with the light source for detection, characterized in that it further includes: At least one support base is rotatably connected to the bearing base to support the bearing base and provide the space required for the bearing base to rotate; A rotating adjustment component, which is installed in conjunction with a first limiting component, is used to drive the first limiting component to rotate so that the optical device can be freely installed onto the carrier. The carrier is provided with a locking space adapted to the optical device, and the locking space is through to detect two relatively distributed surfaces on the optical device; the first limiting member is rotatably mounted on the carrier to prevent the optical device from disengaging from the locking space in a free state.

2. The optical device detection device according to claim 1, characterized in that, The first limiting component includes: The rotating shaft is rotatably mounted on the bearing seat, and at least one spiral groove is distributed on the surface of the rotating shaft. The limiting part is connected to one end of the rotating shaft and is used to receive the torque of the rotating shaft to change its position; The rotary adjustment component is matched with the other end of the rotating shaft and has a guide protrusion adapted to the spiral groove so that the rotary adjustment component drives the rotating shaft to rotate when it moves.

3. The optical device detection device according to claim 2, characterized in that, Also includes: The elastic element abuts against the rotary adjustment element, and the rotating shaft passes through the bearing seat. The rotary adjustment element is connected to the elastic element and is used to elastically limit the rotation adjustment element.

4. The optical device detection device according to claim 3, characterized in that, The rotary adjustment component includes a sliding pressing part that slides in conjunction with the bearing seat to press the rotary adjustment component, thereby causing the rotary adjustment component to move and drive the rotating shaft to rotate.

5. An optical device detection apparatus according to any one of claims 1-4, characterized in that, There are two support bases, which are distributed opposite each other and are used to support the two ends of the bearing base.

6. The optical device detection device according to claim 5, characterized in that, Also includes: The rotating connector is fixedly installed on the top of the support base and is used to rotate the support base and restrict the movement of the support base.

7. The optical device detection device according to claim 6, characterized in that, Also includes: The first positioning connector is fixedly connected to one side of the bearing seat and is rotatably connected to one of the rotating connectors to rotatably install the bearing seat; The second positioning connector is rotatably connected to another rotating connector. A positioning adjustment component is fixedly connected to a second positioning connector and is used to adjust the second positioning connector to connect to the opposite side of the bearing seat.

8. The optical device detection device according to claim 5, characterized in that, Also includes: Guide rails, distributed along the axis of rotation of the support, are used to provide the movement path of the support. The slide block, connected to the support block, is used to drive the support block to move along the guide rail.

9. The optical device detection device according to claim 8, characterized in that, Also includes: The base is used to fix the guide rail in place.

10. A device, characterized in that, include: The detection device as described in any one of claims 1-9; A light source is used to project a light beam onto the surface of an optical device for detection.

Citation Information

Patent Citations

  • Cover plate glass detection clamp

    CN221926168U