CN219788043U - Detection device convenient to location - Google Patents

Detection device convenient to location Download PDF

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Publication number
CN219788043U
CN219788043U CN202223485442.9U CN202223485442U CN219788043U CN 219788043 U CN219788043 U CN 219788043U CN 202223485442 U CN202223485442 U CN 202223485442U CN 219788043 U CN219788043 U CN 219788043U
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China
Prior art keywords
adjusting
sliding
rod
block
fixed
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CN202223485442.9U
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Chinese (zh)
Inventor
刘硕
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Changchun Beigete Crystal Material Co ltd
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Changchun Beigete Crystal Material Co ltd
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Priority to CN202223485442.9U priority Critical patent/CN219788043U/en
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Abstract

The utility model discloses a detection device convenient to position, which belongs to the technical field of positioning and comprises a sliding base, wherein side plates are fixedly arranged at two side edges of the top of the sliding base, a sliding component is arranged at the bottom of the sliding base in a penetrating way, an adjusting rotating rod is arranged at the middle part of the inner side of the side plate through a bearing, an optical element to be detected is placed at the top of a clamping plate, the adjusting hinging block is driven to slide at the outer side by manually rotating the threaded rotating rod, the hinging rod is driven to slide at the outer side of the limiting sliding component, the clamping plate is driven to position the optical element, the later detection is facilitated, the clamped and fixed optical element can be driven to rotate at an angle by starting a reverse rotation adjusting component, the optical element can be conveniently detected in multiple aspects, and the clamped optical element can be driven to slide through a linear sliding rod, so that the optical element can be conveniently detected under detection equipment with different functions.

Description

Detection device convenient to location
Technical Field
The utility model relates to a detection device, in particular to a detection device convenient to position, and belongs to the technical field of positioning.
Background
Transparent optical materials are very important elements in various optical systems, and common transparent optical materials are various glasses, fused silica, and various crystalline materials.
When the transparent optical element is used in many optical systems, some thin film layers such as an antireflection film or a high reflection film are often plated on the surface, and sometimes the transparent optical element is tightly attached to other optical element materials or plastic supports to realize certain specific functions.
The application number is: the utility model of CN202120987869.5 discloses an optical element appearance detection device, wherein a clamp provided with an optical element is fixedly arranged in a clamp fixing seat through a clamp positioning device, then a clamp moving device is driven to detect through an optical microscope above, so that the appearance detection of the optical element can be performed, and the content observed by the optical microscope is transmitted to a display screen of an image display, so that the appearance of the optical element can be observed more conveniently.
Similar to the above-mentioned application, there are currently disadvantages: the distance between the two groups of clamping components cannot be adjusted according to the specification of the optical element, so that the practicability of the device is reduced.
Accordingly, the present utility model has been made in view of the above circumstances, and an object of the present utility model is to provide a detection device which is easy to be positioned, and which has a more practical value.
Disclosure of Invention
The utility model mainly aims to provide a detection device convenient to position, an optical element to be detected is placed at the top of a clamping plate, a threaded rotating rod is manually rotated to drive an adjusting hinge block to slide outside and drive a hinge rod to slide outside a limiting sliding component, so that the clamping plate is driven to position the optical element, later detection is facilitated, the clamped and fixed optical element can be driven to rotate at an angle by starting a reversing adjusting component, multiple aspects of detection on the optical element are facilitated, the clamped optical element can be driven to slide through a linear sliding rod, and detection of the optical element under detection equipment with different functions is facilitated.
The aim of the utility model can be achieved by adopting the following technical scheme:
the utility model provides a detection device convenient to fix a position, including slide base, slide base top both sides limit department fixed mounting has the curb plate, the bottom runs through slide base and is equipped with sliding component, the inboard middle part of curb plate is installed through the bearing and is adjusted the bull stick, it is equipped with the regulation through-hole to adjust bull stick top and bottom, and be equipped with reverse rotation adjusting part in the regulation bull stick outside, inside runs through the bearing and installs rotation adjusting part, and run through and adjust the through-hole, and it has spacing sliding component to articulate in the outside, adjust bull stick tip fixed mounting and have first slide bar, and articulated pole subassembly slidable mounting is in the outside, and articulated clamping and locating component that has at articulated pole subassembly tip.
Preferably, the sliding assembly comprises a base and a linear slide bar.
Preferably, the two ends of the linear slide bar are arranged at the two ends of the top of the base through the fixing blocks, and the sliding base is arranged at the outer side of the linear slide bar in a sliding manner.
Preferably, the reverse rotation adjusting assembly comprises a driven bevel gear, a drive bevel gear, a rotating rod, a fixed block and a rotating motor, wherein the fixed block is fixed at the end part of the inner side of a group of side plates, the rotating motor is arranged at the top of the fixed block, the rotating rod is arranged at the outer side of the output end and penetrates through the fixed block, the drive bevel gear is arranged at the end part, the driven bevel gear is arranged at the outer side of the adjusting rotating rod, and the top of the driven bevel gear is meshed with the drive bevel gear.
Preferably, the rotation adjusting component comprises a threaded rotating rod, an adjusting hinge block and a hinge rod, one end of the threaded rotating rod is installed at the inner end part of the adjusting rotating rod through a bearing, the other end of the threaded rotating rod penetrates through a side plate, the adjusting hinge block is rotatably installed at the outer side of the threaded rotating rod, two ends of the adjusting hinge block penetrate through an adjusting through hole and are hinged with the hinge rod at two ends of the adjusting hinge block.
Preferably, the spacing slip subassembly includes first slide bar, second slide bar, stopper, adjusts sliding block and fixed connection board, and second slide bar side middle part is fixed and is being adjusted the bull stick tip, and both ends are fixed with fixed connection board, and fixed connection board's other end bottom is fixed with first slide bar, adjusts sliding block slidable mounting in the second slide bar outside, and top middle part is equipped with the stopper to spacing slidable mounting is in the slip through-hole of articulated pole.
Preferably, the clamping and positioning assembly comprises a hinging block and a clamping plate, wherein the hinging block is slidably arranged on the outer side of the first sliding rod, the end part of the hinging block is hinged with one end of the hinging rod, and the clamping plate is fixed at the other end of the hinging block.
The beneficial technical effects of the utility model are as follows:
according to the detection device convenient to position, the optical element to be detected is placed at the top of the clamping plate, the threaded rotating rod is manually rotated to drive the adjusting hinge block to slide outside, and the hinge rod is driven to slide outside the limiting sliding assembly, so that the clamping plate is driven to position the optical element, later detection is facilitated, the clamped and fixed optical element can be driven to rotate in an angle by starting the reversing adjusting assembly, multiple aspects of detection on the optical element are facilitated, the clamped optical element can be driven to slide through the linear sliding rod, and detection of the optical element under detection equipment with different functions is facilitated.
Drawings
FIG. 1 is a front view of the device as a whole of a preferred embodiment of a detection device for facilitating positioning according to the present utility model;
FIG. 2 is a block diagram of a rotation adjustment assembly of a preferred embodiment of a detection device for facilitating positioning in accordance with the present utility model;
FIG. 3 is an enlarged view of the structure at A of a preferred embodiment of a detection device for facilitating positioning according to the present utility model;
FIG. 4 is a top view of an adjustment lever of a preferred embodiment of a conveniently located detection device in accordance with the present utility model;
fig. 5 is a top view of a slide assembly of a preferred embodiment of a detection device for facilitating positioning in accordance with the present utility model.
In the figure: the device comprises a side plate, a 2-threaded rotating rod, a 3-adjusting hinged block, a 4-sliding base, a 5-base, a 6-linear sliding rod, a 7-clamping plate, an 8-driven bevel gear, a 9-driving bevel gear, a 10-rotating rod, an 11-fixed block, a 12-rotating motor, a 13-adjusting rotating rod, a 15-first sliding rod, a 16-second sliding rod, a 17-hinged rod, a 18-limiting block, a 19-adjusting sliding block, a 20-fixed connecting plate, a 21-hinged block and a 23-adjusting through hole.
Detailed Description
In order to make the technical solution of the present utility model more clear and obvious to those skilled in the art, the present utility model will be described in further detail with reference to examples and drawings, but the embodiments of the present utility model are not limited thereto.
Example 1
As shown in fig. 1-5, a detection device convenient to fix a position, including slide base 4, slide base 4 top both sides limit department fixed mounting has curb plate 1, the bottom runs through slide base 4 and is equipped with slide assembly, adjust bull stick 13 through the bearing is installed at the inboard middle part of curb plate 1, adjust bull stick 13 top and bottom and be equipped with the regulation through-hole 23, and be equipped with the reverse rotation regulation subassembly in adjusting bull stick 13 outside, inside runs through and installs rotation regulation subassembly through the bearing, and run through regulation through-hole 23, and it has spacing slide assembly to articulate in the outside, adjust bull stick 13 tip fixed mounting and have first slide bar 15, and articulated pole subassembly slidable mounting is in the outside, and articulated clamping and positioning assembly that has at articulated pole subassembly tip.
Firstly, the optical element to be detected is placed at the top of a group of clamping plates 7, the screw thread rotating rod 2 is manually rotated to drive the adjusting hinging block 3 to slide outside, when the adjusting hinging block 3 slides, the hinging rod 17 is driven to hinge, and the limiting block 18 is used for driving the adjusting sliding block 19 to slide outside the second sliding rod 16, so that the sliding limiting function is achieved.
When the hinging rod 17 is hinged, the end part drives the hinging block 21 to be hinged, and slides outside the first sliding rod 15, and drives the two groups of clamping plates 7 to move relatively, so that the optical element is clamped, the clamping and fixing functions are realized, and the later detection is facilitated.
The linear slide rod 6 can drive the sliding base 4 to horizontally move, so that the clamped and positioned optical element is driven to move under different detection devices for detection, the tedious work of repeated clamping and taking down is avoided, and meanwhile, the damage to the optical element caused by repeated clamping can be avoided.
The rotating motor 12 is started to drive the rotating rod 10 to rotate, the rotating rod 10 drives the driving bevel gear 9 to rotate, thereby driving the driven bevel gear 8 to rotate, and the adjusting rotating rod 13 is driven to rotate through the driven bevel gear 8, so that the clamped and fixed optical element is driven to rotate reversely, and the function of multi-aspect detection is realized.
In this embodiment, the slide assembly comprises a base 5 and a linear slide bar 6.
In this embodiment, two ends of the linear slide bar 6 are mounted at two ends of the top of the base 5 through fixing blocks, and the sliding base 4 is slidably mounted outside the linear slide bar 6.
The linear slide rod 6 can drive the sliding base 4 to horizontally move, so that the optical element is driven to move and detect under different detection devices.
Example two
In this embodiment, as shown in fig. 2 to 5, the reverse rotation adjusting assembly includes a driven bevel gear 8, a drive bevel gear 9, a rotating rod 10, a fixed block 11 and a rotating motor 12, the fixed block 11 is fixed to the inner end of the group of side plates 1, the rotating motor 12 is mounted on the top of the fixed block 11, the rotating rod 10 is mounted on the outer side of the output end and penetrates through the fixed block 11, the drive bevel gear 9 is mounted on the end, the driven bevel gear 8 is mounted on the outer side of the adjusting rotating rod 13, and the top is meshed with the drive bevel gear 9.
The rotary motor 12 is started to drive the rotary rod 10 to rotate, the rotary rod 10 drives the driving bevel gear 9 to rotate, the driven bevel gear 8 is driven to rotate, the adjusting rotary rod 13 is driven to rotate through the driven bevel gear 8, and the clamping and positioning assembly is driven to rotate reversely.
In this embodiment, the rotation adjusting assembly includes a threaded rotation rod 2, an adjusting hinge block 3 and a hinge rod 17, one end of the threaded rotation rod 2 is installed at the inner end of the adjusting rotation rod 13 through a bearing, the other end penetrates through the side plate 1, the adjusting hinge block 3 is rotatably installed at the outer side of the threaded rotation rod 2, two ends penetrate through the adjusting rotation rod 13 through an adjusting through hole 23, and the hinge rod 17 is hinged at two ends.
The threaded rotating rod 2 is rotated to drive the adjusting hinging block 3 to slide outside, and when the adjusting hinging block 3 slides, the hinging rod 17 is driven to hinge outside the limiting sliding component to slide, and the clamping positioning component is driven to clamp.
In this embodiment, the limiting sliding component comprises a first sliding rod 15, a second sliding rod 16, a limiting block 18, an adjusting sliding block 19 and a fixed connecting plate 20, wherein the middle part of the side of the second sliding rod 16 is fixed at the end part of the adjusting rotating rod 13, the fixed connecting plates 20 are fixed at the two ends of the second sliding rod, the first sliding rod 15 is fixed at the bottom of the other end of the fixed connecting plate 20, the adjusting sliding block 19 is slidably mounted on the outer side of the second sliding rod 16, the limiting block 18 is arranged at the middle part of the top of the second sliding rod, and the limiting sliding block is mounted in a sliding through hole of the hinging rod 17.
When the hinging rod 17 is hinged, the limiting block 18 drives the adjusting sliding block 19 to slide outside the second sliding rod 16.
In this embodiment, the clamping and positioning assembly comprises a hinge block 21 and a clamping plate 7, wherein the hinge block 21 is slidably mounted on the outer side of the first slide rod 15, the end of the hinge block is hinged with one end of the hinge rod 17, and the clamping plate 7 is fixed on the other end of the hinge block 21.
When the hinging rod 17 is hinged, the hinging block 21 driving the end to be hinged slides outside the first sliding rod 15 and drives the two groups of clamping plates 7 to move relatively, so as to clamp the optical elements and realize the clamping and fixing functions.
The above is merely a further embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto, and any person skilled in the art will be able to apply equivalents and modifications according to the technical solution and the concept of the present utility model within the scope of the present utility model disclosed in the present utility model.

Claims (7)

1. Detection device convenient to location, including slide base (4), its characterized in that: the sliding base (4) top both sides limit department fixed mounting has curb plate (1), the bottom runs through sliding base (4) and is equipped with sliding component, the inboard middle part of curb plate (1) is equipped with adjusts bull stick (13) through the bearing, adjust bull stick (13) top and bottom and be equipped with regulation through-hole (23), and be equipped with reverse rotation adjusting part in adjusting bull stick (13) outside, inside runs through installing rotation adjusting part through the bearing, and run through adjusting through-hole (23) to articulated in the outside has spacing sliding component, adjust bull stick (13) tip fixed mounting has first slide bar (15), and articulated pole subassembly slidable mounting is in the outside, and articulated clamping and locating component that has at articulated pole subassembly tip.
2. A positioning-facilitating detection device as defined in claim 1, wherein: the sliding component comprises a base (5) and a linear sliding rod (6).
3. A positioning-facilitating detection device as defined in claim 2, wherein: the two ends of the linear slide bar (6) are arranged at the two ends of the top of the base (5) through fixed blocks, and the sliding base (4) is slidably arranged outside the linear slide bar (6).
4. A positioning-facilitating detection apparatus as defined in claim 3, wherein: the reversing adjusting assembly comprises a driven bevel gear (8), a driving bevel gear (9), a rotating rod (10), a fixed block (11) and a rotating motor (12), wherein the fixed block (11) is fixed at the inner side end part of a group of side plates (1), the rotating motor (12) is installed at the top of the fixed block (11), the rotating rod (10) is installed at the outer side of the output end and penetrates through the fixed block (11), the driving bevel gear (9) is installed at the end part, the driven bevel gear (8) is installed at the outer side of the adjusting rotating rod (13), and the top is meshed with the driving bevel gear (9).
5. The positioning-facilitating detection device of claim 4, wherein: the rotation adjusting assembly comprises a threaded rotating rod (2), an adjusting hinging block (3) and a hinging rod (17), one end of the threaded rotating rod (2) is installed at the inner end part of the adjusting rotating rod (13) through a bearing, the other end of the threaded rotating rod penetrates through the side plate (1), the adjusting hinging block (3) is rotatably installed at the outer side of the threaded rotating rod (2), two ends of the adjusting hinging block penetrate through the adjusting rotating rod (13) through adjusting through holes (23), and the hinging rod (17) is hinged at two ends of the adjusting hinging block.
6. The positioning-facilitating detection device of claim 5, wherein: the limiting sliding assembly comprises a first sliding rod (15), a second sliding rod (16), a limiting block (18), an adjusting sliding block (19) and a fixed connecting plate (20), wherein the middle part of the side of the second sliding rod (16) is fixed at the end part of the adjusting rotating rod (13), the two ends of the second sliding rod are fixed with the fixed connecting plates (20), the first sliding rod (15) is fixed at the bottom of the other end of the fixed connecting plate (20), the adjusting sliding block (19) is slidably mounted on the outer side of the second sliding rod (16), the limiting block (18) is arranged in the middle of the top of the second sliding rod, and the limiting sliding block is mounted in a sliding through hole of the hinging rod (17).
7. The positioning-facilitating detection device of claim 6, wherein: the clamping and positioning assembly comprises a hinging block (21) and a clamping plate (7), wherein the hinging block (21) is slidably arranged on the outer side of the first sliding rod (15), the end part of the hinging block is hinged with one end of the hinging rod (17), and the clamping plate (7) is fixed at the other end of the hinging block (21).
CN202223485442.9U 2022-12-26 2022-12-26 Detection device convenient to location Active CN219788043U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223485442.9U CN219788043U (en) 2022-12-26 2022-12-26 Detection device convenient to location

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223485442.9U CN219788043U (en) 2022-12-26 2022-12-26 Detection device convenient to location

Publications (1)

Publication Number Publication Date
CN219788043U true CN219788043U (en) 2023-10-03

Family

ID=88151089

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223485442.9U Active CN219788043U (en) 2022-12-26 2022-12-26 Detection device convenient to location

Country Status (1)

Country Link
CN (1) CN219788043U (en)

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