CN213779282U - Imaging device for operating polarization technology - Google Patents
Imaging device for operating polarization technology Download PDFInfo
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- CN213779282U CN213779282U CN202023277756.0U CN202023277756U CN213779282U CN 213779282 U CN213779282 U CN 213779282U CN 202023277756 U CN202023277756 U CN 202023277756U CN 213779282 U CN213779282 U CN 213779282U
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- imager body
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Abstract
The utility model discloses an imaging device of operation polarization technology, which belongs to the technical field of polarization imaging, and comprises a polarization imager body, wherein a first mounting frame is arranged on the right side surface of the polarization imager body, a rotating column is rotationally arranged in the first mounting frame, one end of the rotating column passes through the rear side of the first mounting frame and is provided with a turntable, and one end of a wide cloth strip passes through an opening arranged on the upper surface of the first mounting frame and extends to the upper part of the first mounting frame and is provided with two first fixing plates; this imaging device of operation polarization technique, through setting up wide cloth and couple, utilize the carousel to drive and rotate the post and rotate, carry out winding work to wide cloth, the effect of cooperation couple and ring carries out fixed work to wide cloth for wide cloth forms the structure of a fixed area of hanging, thereby conveniently removes the polarization imager body and carries, increases the stability of polarization imager body, prevents to remove in-process polarization imager body and appears damaging.
Description
Technical Field
The utility model belongs to the technical field of polarization imaging, concretely relates to operation polarization technology's image device.
Background
The polarization imager can be used for fluorescence intensity, time-resolved fluorescence, fluorescence polarization, the detection of absorbed light and chemiluminescence, utilizes imaging technology to acquire spatial information, utilizes spectral technique to acquire spectral information, utilizes polarization technique to acquire polarization state information, and along with the rapid development of optical technology, the index of optical information acquisition technique constantly promotes, the function is constantly perfect, the information content of acquireing constantly increases.
But current formation of image polarimeter is inconvenient to be carried, and most formation of image polarimeters lack the structure that conveniently carries, when carrying the transfer to formation of image polarimeter, can only take formation of image polarimeter with the hand, because formation of image polarimeter shell is comparatively smooth, and formation of image polarimeter easily fades on ground, and then leads to the damage of formation of image polarimeter.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an imaging device for operating polarization technology, which utilizes a turntable to drive a rotating column to rotate by arranging a wide cloth strip and a hook, the wide cloth strip is wound and fixed under the action of the hook and the ring, so that the wide cloth strip forms a structure of a fixed hanging belt, thereby facilitating the moving and carrying of the polarization imager body, increasing the stability of the polarization imager body, preventing the polarization imager body from being damaged in the moving process so as to solve the problems that the prior polarization imager proposed in the background art is inconvenient to carry, most projectors lack a structure convenient to carry, when carrying the transfer to the formation of image polarimeter, can only take the formation of image polarimeter with the hand, because the formation of image polarimeter shell is comparatively smooth, the formation of image polarimeter easily fades on ground, and then leads to the problem of the damage of formation of image polarimeter.
In order to achieve the above object, the utility model provides a following technical scheme: an imaging device for operating a polarization technology comprises a polarization imager body, wherein a first installation frame is installed on the right side face of the polarization imager body, a rotating column is installed in the first installation frame in a rotating mode, the outer side of the rotating column is connected with a wide cloth strip in a winding mode, one end of the rotating column penetrates through the rear side of the first installation frame and is provided with a rotary table, one end of the wide cloth strip penetrates through an opening formed in the upper surface of the first installation frame and extends to the upper side of the first installation frame, two first fixing plates are installed on the opening, the other end of the wide cloth strip is fixedly connected with the rotating column, hooks are installed on the upper surfaces of the first fixing plates, a second installation frame is installed on the left side face of the polarization imager body, a movable plate is installed in the second installation frame in a sliding mode through a sliding assembly, two circular rings are installed on the upper surface of the movable plate, an opening second is formed in the upper surface of the first installation, the circular ring is matched with the opening.
Adopt above-mentioned scheme, through setting up wide cloth and couple, utilize the carousel to drive the rotation post and rotate, carry out winding work to wide cloth, the effect of cooperation couple and ring carries out fixed work to wide cloth for wide cloth forms the structure in a fixed area of hanging, thereby conveniently removes the polarization imaging appearance body and carries, and the stability of increase polarization imaging appearance body prevents to remove the in-process polarization imaging appearance body and appears damaging.
As a preferred embodiment, the diaphragm is installed to the right flank of polarization imager body, the diaphragm is located directly over first installing frame, the fixed block, two are all installed to both sides around the diaphragm upper surface install the stock between the fixed block.
Adopt above-mentioned scheme, through setting up the stock, utilize the stock to articulate the couple, avoid getting into first installing frame when retrieving wide cloth, prevent to influence the use to the polarization imaging appearance body in later stage.
As a preferred embodiment, the sliding assembly includes two sliding blocks, the two sliding blocks are respectively installed on the front and rear side surfaces of the moving plate, sliding grooves i are respectively formed in the front and rear sides of the inner wall surface of the second installation frame, and the sliding blocks are slidably installed in the sliding grooves.
By adopting the scheme, the sliding block is arranged, the plate is driven to move in the second mounting frame by utilizing the sliding effect of the sliding block in the first sliding groove, and the circular ring is retracted and placed when not in use.
As a preferred embodiment, the front side and the rear side of the second mounting frame are both connected with bolts in a threaded manner, the lower surface of the moving plate is provided with a push plate, and the push plate passes through a third opening formed in the bottom of the second mounting frame and extends to the lower side of the second mounting frame.
Adopt above-mentioned scheme, through setting up bolt and push pedal, utilize the bolt to fix the slider to carry out the stationary work to the movable plate, the stability of increase ring cooperates the effect of push pedal, makes things convenient for the staff to release the ring.
As a preferred embodiment, a hollow cylinder is installed on the front side of the polarization imager body, an annular soft rubber pad is arranged inside the hollow cylinder, a plurality of springs I are installed on the inner wall surface of the hollow cylinder, and one ends of the springs I are fixedly connected with the annular soft rubber pad.
Adopt above-mentioned scheme, through setting up the soft cushion of annular, utilize the soft cushion of annular to protect the preceding imaging lens of formation of image polarization appearance, prevent that the damage from appearing in the camera lens, avoid influencing the later stage and use the formation of image polarization appearance, the effect of cooperation spring one forms the shock attenuation effect to the camera lens of formation of image polarization appearance.
As a preferred embodiment, the lower surface mounting of polarization imager body has the bottom plate, spout two has all been seted up to the left and right sides face of bottom plate, install the telescopic link in the spout two, fixed plate two is installed to the telescopic shaft tip of telescopic link, spring two has been cup jointed in the outside of telescopic link, the both ends of spring two respectively with spout two and fixed plate two fixed connection, spout three has all been seted up to the left and right sides of bottom plate front side, slidable mounting has the carriage release lever in the spout three, the one end and the fixed plate two fixed connection of carriage release lever.
By adopting the scheme, the second fixing plate is moved out by the aid of the moving rod through the arrangement of the telescopic rod, the second spring, the second fixing plate and the moving rod, the imaging polarimeter is fixedly installed, the second fixing plate is reset by the aid of elasticity of the second spring, and the second fixing plate is conveniently moved out or retracted at any time.
Compared with the prior art, the beneficial effects of the utility model are that:
according to the imaging device for operating the polarization technology, the wide cloth strip and the hook are arranged, the rotating column is driven by the rotary table to rotate, the wide cloth strip is wound, and the wide cloth strip is fixed under the action of the hook and the ring, so that the wide cloth strip forms a fixed hanging belt structure, the polarization imager body is convenient to move and carry, the stability of the polarization imager body is improved, and the polarization imager body is prevented from being damaged in the moving process;
this imaging device of operation polarization technique through setting up the soft cushion of annular, utilizes the soft cushion of annular to protect the preceding imaging lens of formation of image polarization appearance, prevents that the damage from appearing in the camera lens, avoids influencing the later stage and uses the formation of image polarization appearance, and the effect of cooperation spring one forms the shock attenuation effect to the camera lens of formation of image polarization appearance.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural diagram of the present invention viewed from the right;
fig. 3 is a left side view of the present invention.
In the figure: 1. a polarization imager body; 2. a first mounting frame; 3. rotating the column; 4. a turntable; 5. wide cloth strips; 6. a first fixing plate; 7. hooking; 8. moving the plate; 9. a circular ring; 10. a transverse plate; 11. a fixed block; 12. a long rod; 13. a hollow cylinder; 14. a first spring; 15. an annular soft rubber pad; 16. a slider; 17. a bolt; 18. pushing the plate; 19. a telescopic rod; 20. a second spring; 21. a second fixing plate; 22. a travel bar; 23. a base plate; 24. and a second mounting frame.
Detailed Description
The present invention will be further described with reference to the following examples.
The following examples are intended to illustrate the invention, but are not intended to limit the scope of the invention. The condition in the embodiment can be further adjusted according to concrete condition the utility model discloses a it is right under the design prerequisite the utility model discloses a simple improvement of method all belongs to the utility model discloses the scope of claiming.
Referring to fig. 1-3, the present invention provides an imaging device for operating polarization technology, which comprises a polarization imager body 1, a first mounting frame 2 is installed on the right side surface of the polarization imager body 1, a rotating column 3 is rotatably installed in the first mounting frame 2, a wide cloth strip 5 is wound around the outer side of the rotating column 3, one end of the rotating column 3 passes through the rear side of the first mounting frame 2 and is provided with a turntable 4, one end of the wide cloth strip 5 passes through an opening formed on the upper surface of the first mounting frame 2 and extends to the upper side of the first mounting frame 2 and is provided with two fixing plates 6, the other end of the wide cloth strip 5 is fixedly connected with the rotating column 3, hooks 7 are installed on the upper surfaces of the two fixing plates 6, a second mounting frame 24 is installed on the left side surface of the polarization imager body 1, a movable plate 8 is slidably installed in the second mounting frame 24 through a sliding assembly, two rings 9 are installed on the upper surface of the movable plate 8, opening two has been seted up to the upper surface of first installing frame 2, ring 9 matches with opening two, through setting up wide cloth 5 and couple 7, utilize carousel 4 to drive rotation post 3 and rotate, carry out winding work to wide cloth 5, the effect of cooperation couple 7 and ring 9 carries out fixed work to wide cloth 5, make wide cloth 5 form the structure in a fixed string area, thereby the convenience removes polarization imaging appearance body 1 and carries, increase polarization imaging appearance body 1's stability, prevent to remove in-process polarization imaging appearance body 1 and appear damaging.
The sliding assembly comprises two sliding blocks 16, the two sliding blocks 16 are respectively arranged on the front side surface and the rear side surface of the moving plate 8, sliding grooves I are formed in the front side surface and the rear side surface of the inner wall surface of the second mounting frame 24, the sliding blocks 16 are slidably arranged in the sliding grooves, the sliding blocks 16 are driven to move in the second mounting frame 24 under the action of sliding in the sliding grooves I, and the circular ring 9 when not used is retracted and placed.
The equal threaded connection in both sides has bolt 17 around the second installing frame 24, and the lower surface mounting of movable plate 8 has push pedal 18, and push pedal 18 passes the opening three that second installing frame 24 bottom was seted up and extends to the below of second installing frame 24, through setting up bolt 17 and push pedal 18, utilizes bolt 17 to fix slider 16 to carry out fixed work to movable plate 8, increase ring 9's stability, cooperation push pedal 18's effect makes things convenient for the staff to release ring 9.
There is bottom plate 23 polarization imager body 1's lower surface mounting, spout two has all been seted up to bottom plate 23's the left and right sides face, install telescopic link 19 in the spout two, fixed plate two 21 is installed to telescopic link 19's telescopic shaft tip, spring two 20 has been cup jointed in telescopic link 19's the outside, spring two 20's both ends respectively with spout two and fixed plate two 21 fixed connection, spout three has all been seted up to the left and right sides of bottom plate 23 front side, slidable mounting has carriage release lever 22 in the spout three, carriage release lever 22's one end and fixed plate two 21 fixed connection, through setting up telescopic link 19, spring two 20, fixed plate two 21 and carriage release lever 22, utilize carriage release lever 22 to shift out fixed plate two 21, install fixed work to the polarization imager, utilize spring two 20's elasticity, reset fixed plate two 21, it is convenient to shift out or withdraw fixed plate two 21 at any time.
When the polarization imager is used, when the polarization imager body 1 needs to be moved, the ring 9 is moved out of the second installation, the push plate 18 is pushed upwards, the push plate 18 drives the moving plate 8 to move upwards, the moving plate 8 drives the sliding block 16 to slide in the first sliding groove, the ring 9 is pushed out of the second installation frame 24, then the bolt 17 is rotated, when one end of the bolt 17 is contacted with the sliding block 16, the bolt 17 is stopped to rotate, then the hook 7 is taken down from the long rod 12, the wide cloth 5 is drawn out, the hook 7 is hung on the ring 9, at the moment, the polarization imager body 1 can be moved, when the polarization imager body 1 does not need to be moved, the hook 7 is taken down from the ring 9, then the rotary table 4 is rotated, the rotary table 4 drives the rotary column 3 to rotate, at the moment, the rotary column 3 carries out recovery and winding work on the wide cloth 5, when the polarization imager body 1 needs to be fixed, remove carriage release lever 22, carriage release lever 22 drives two 21 fixed plates and outwards removes in two spouts, and two 21 fixed plates drive telescopic link 19 tensile, when two 21 fixed plates shift out, fix two 21 fixed plates, alright fix polarization imaging appearance body 1, when need not fix polarization imaging appearance body 1, the elasticity of two 20 springs contracts telescopic link 19 back to drive two 21 fixed plates and remove convenient operation to two spouts.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (6)
1. An imaging device operating polarization technology, characterized by: the polarization imager comprises a polarization imager body (1), wherein a first installation frame (2) is installed on the right side face of the polarization imager body (1), a rotation column (3) is installed in the first installation frame (2) in a rotating mode, a wide cloth strip (5) is wound on the outer side of the rotation column (3), one end of the rotation column (3) penetrates through the rear side of the first installation frame (2) and is provided with a turntable (4), one end of the wide cloth strip (5) penetrates through an opening formed in the upper surface of the first installation frame (2) and extends to the upper side of the first installation frame (2) in the lump and is provided with two first fixing plates (6), the other end of the wide cloth strip (5) is fixedly connected with the rotation column (3), a hook (7) is installed on the upper surfaces of the two first fixing plates (6), a second installation frame (24) is installed on the left side face of the polarization imager body (1), and a movable plate (8) is installed in the second installation frame (24) through a sliding assembly, two circular rings (9) are mounted on the upper surface of the moving plate (8), a second opening is formed in the upper surface of the first mounting frame (2), and the circular rings (9) are matched with the second opening.
2. The polarization technology operated imaging apparatus according to claim 1, wherein: diaphragm (10) are installed to the right flank of polarization imager body (1), diaphragm (10) are located first installing frame (2) directly over, fixed block (11), two are all installed to both sides around diaphragm (10) upper surface install stock (12) between fixed block (11).
3. The polarization technology operated imaging apparatus according to claim 1, wherein: the sliding assembly comprises two sliding blocks (16), the two sliding blocks (16) are respectively installed on the front side surface and the rear side surface of the moving plate (8), sliding grooves I are formed in the front side surface and the rear side surface of the inner wall surface of the second installation frame (24), and the sliding blocks (16) are installed in the sliding grooves in a sliding mode.
4. The polarization technology operated imaging apparatus according to claim 1, wherein: bolts (17) are connected to the front side and the rear side of the second mounting frame (24) in a threaded mode, a push plate (18) is installed on the lower surface of the moving plate (8), the push plate (18) penetrates through a third opening formed in the bottom of the second mounting frame (24) and extends to the position below the second mounting frame (24).
5. The polarization technology operated imaging apparatus according to claim 1, wherein: the polarization imager is characterized in that a hollow cylinder (13) is installed on the front side of the polarization imager body (1), an annular soft rubber pad (15) is arranged inside the hollow cylinder (13), a plurality of springs (14) are installed on the inner wall surface of the hollow cylinder (13), and one ends of the springs (14) are fixedly connected with the annular soft rubber pad (15).
6. The polarization technology operated imaging apparatus according to claim 1, wherein: the lower surface mounting of polarization imager body (1) has bottom plate (23), two spout have all been seted up to the left and right sides face of bottom plate (23), install telescopic link (19) in the two spout, fixed plate two (21) are installed to the telescopic shaft tip of telescopic link (19), spring two (20) have been cup jointed in the outside of telescopic link (19), the both ends of spring two (20) respectively with two spout and two (21) fixed connection of fixed plate, spout three has all been seted up to the left and right sides of bottom plate (23) front side, slidable mounting has carriage release lever (22) in the three spout, the one end and two (21) fixed connection of fixed plate of carriage release lever (22).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202023277756.0U CN213779282U (en) | 2020-12-31 | 2020-12-31 | Imaging device for operating polarization technology |
Applications Claiming Priority (1)
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CN202023277756.0U CN213779282U (en) | 2020-12-31 | 2020-12-31 | Imaging device for operating polarization technology |
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CN213779282U true CN213779282U (en) | 2021-07-23 |
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CN202023277756.0U Active CN213779282U (en) | 2020-12-31 | 2020-12-31 | Imaging device for operating polarization technology |
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