CN212719065U - Image acquisition device for irradiation chamber - Google Patents

Image acquisition device for irradiation chamber Download PDF

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Publication number
CN212719065U
CN212719065U CN202021361117.XU CN202021361117U CN212719065U CN 212719065 U CN212719065 U CN 212719065U CN 202021361117 U CN202021361117 U CN 202021361117U CN 212719065 U CN212719065 U CN 212719065U
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China
Prior art keywords
camera
carriage
slide rail
pole
annular slide
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CN202021361117.XU
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Chinese (zh)
Inventor
杨昌荣
阙龙飞
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Sichuan Runxiang Irradiation Technology Co ltd
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Sichuan Runxiang Irradiation Technology Co ltd
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Abstract

The application relates to an irradiation chamber image acquisition device, it is including being used for setting up the annular slide rail on the wall body roof, it sets up the carriage to slide on the annular slide rail, be provided with transparent protective housing on the carriage, be provided with the camera in the protective housing, the camera lens of camera is vertical down, the protective housing is just right be provided with transparent piece on the lateral wall of the camera lens of camera, one side of annular slide rail is provided with and is used for driving the gliding drive assembly of annular slide rail that the carriage follows. This application has the effect that increases image acquisition device's collection scope, and this application provides an irradiation room image acquisition device.

Description

Image acquisition device for irradiation chamber
Technical Field
The application relates to the field of image acquisition equipment, in particular to an irradiation room image acquisition device.
Background
The irradiation is a new sterilization and fresh-keeping technology, which is based on a radiation processing technology and uses high-energy rays generated by ionizing radiation such as x rays, gamma rays or high-speed electron beams to process food so as to achieve the purposes of killing insects, sterilizing, inhibiting physiological processes, improving the hygienic quality of the food, maintaining the nutritional quality and flavor and prolonging the shelf life.
The radiation in the irradiation processing chamber is very big, so the staff can not get into the irradiation processing chamber, and then need install image acquisition device in the irradiation processing chamber and come to monitor article and equipment in the course of working to can observe whether situations such as damage appear in equipment.
Chinese patent with publication number CN204926817U discloses an irradiation chamber image acquisition device, including installing electron accelerator and beam transmission device in the irradiation chamber, the image acquisition device is installed outside the irradiation wall of irradiation chamber one side, the image acquisition device includes at least two L-shaped reflection return bends, and be connected through the connecting pipe between two adjacent L-shaped reflection return bends, the department of bending of every L-shaped reflection return bend all is provided with the speculum, wherein the anterior segment opening of the L-shaped reflection return bend of the top is just to the irradiation chamber, the rear end opening part of the L-shaped reflection return bend of the bottom sets up camera device, gather image information through the multiple reflection of image.
In view of the above-mentioned related art, the inventors consider that there is a drawback that the acquisition range of the image acquisition device is small.
SUMMERY OF THE UTILITY MODEL
In order to increase image acquisition device's collection scope, the application provides an irradiation room image acquisition device.
The application provides an irradiation room image acquisition device adopts following technical scheme:
the utility model provides an irradiation chamber image acquisition device, is including being used for setting up the annular slide rail on the wall body roof, it sets up the carriage to slide on the annular slide rail, be provided with transparent protective housing on the carriage, be provided with the camera in the protective housing, the camera lens of camera is vertical down, the protective housing is just right be provided with transparent piece on the lateral wall of the camera lens of camera, one side of annular slide rail is provided with the gliding drive assembly of annular slide rail that is used for driving the carriage along.
Through adopting above-mentioned technical scheme, utilize drive assembly drive carriage to remove along annular slide rail, and then make the camera can remove at the horizontal direction to have the effect that can increase image acquisition device's collection scope.
Preferably, the two opposite sides of the annular slide rail are horizontally provided with grooves, and the sliding frame is provided with rollers which roll along the grooves.
Through adopting above-mentioned technical scheme, through setting up the gyro wheel to make the gyro wheel roll along the recess of annular slide rail, thereby have and make the carriage smoothly along the effect of annular slide rail removal.
Preferably, drive assembly is including being used for rotating synchronizing wheel, hold-in range and the driving motor who sets up on the wall body roof, the synchronizing wheel with intermeshing between the hold-in range, driving motor's the coaxial setting of axis of rotation is in on the synchronizing wheel, the carriage is close to one side of hold-in range is articulated to be set up on the hold-in range.
Through adopting above-mentioned technical scheme, the hold-in range is a special conveyer belt, and the transmission of hold-in range is the meshing transmission, does not have the slip, can guarantee fixed transport ratio, starts driving motor and drives the synchronizing wheel and begins to rotate to make the hold-in range with synchronizing wheel intermeshing begin the transmission, and then make articulated carriage that sets up on the hold-in range remove along with the hold-in range, thereby have and be convenient for make the camera at the effect that the horizontal plane removed.
Preferably, the carriage is kept away from one side level of annular slide rail is provided with the mounting bar, the T-shaped groove has been seted up along the length direction of mounting bar on the mounting bar, be provided with the T shape strip on the guard box, the T-shaped groove with the mutual adaptation of T shape strip, be provided with the shielding piece that is used for sheltering from the T shape groove on the mounting bar.
Through adopting above-mentioned technical scheme for the shielding piece no longer acts on, removes the protective housing along the length direction of mounting bar, and then can remove T shape strip from the T shape inslot, thereby has the effect of being convenient for dismantle the protective housing from the carriage.
Preferably, shelter from the piece including sheltering from pole and chucking pole, shelter from the articulated setting of pole and be in on the terminal surface of mounting bar, the chucking pole is fixed to be set up on the terminal surface of mounting bar, just shelter from the pole with the chucking pole is located the both sides in T-slot, shelter from the pole chucking and be in the chucking pole.
Through adopting above-mentioned technical scheme, install guard box and camera back on the carriage, rotate and shelter from the pole to will shelter from in the pole rotates to the chucking pole, and then can shelter from the T-slot, thereby make the effect that the T-shaped strip is difficult for following the interior roll-off of T-slot to a certain extent.
Preferably, one side opening setting of guard box, just the articulated guard plate that is provided with in the position that is close to the opening on the guard box, the guard plate with the screw thread is provided with fixing bolt between the guard box.
Through adopting above-mentioned technical scheme, unscrew fixing bolt, rotate the guard plate that sets up to keeping away from the protective housing with articulated to have the effect of being convenient for overhaul the camera in the protective housing.
Preferably, two opposite side walls of the protective box are provided with sliding grooves, a placing plate is arranged in the sliding grooves in a sliding mode, and the camera is fixed on the placing plate.
Through adopting above-mentioned technical scheme, open the guard plate after, can take out the board of placing that slides the setting from the protective housing to have and be convenient for take out the effect in the camera follow protective housing.
Preferably, the camera is provided with an installation piece, the installation piece is attached to the placing plate, and an installation bolt penetrates through the installation piece and the placing plate through threads.
Through adopting above-mentioned technical scheme, through setting up construction bolt, have and be convenient for fix the effect in the protective housing with the camera steadily.
In summary, the present application includes at least one of the following beneficial technical effects:
the driving motor is started to drive the synchronous belt to rotate, so that the sliding frame moves along the annular sliding rail, the camera can move in the horizontal direction, and the effect of enlarging the acquisition range of the image acquisition device is achieved;
the protective box is moved along the length direction of the mounting strip, so that the T-shaped strip can be removed from the T-shaped groove, and the protective box can be conveniently detached from the sliding frame;
unscrew fixing bolt, rotate the guard plate that sets up to keeping away from the protective housing with articulated to have the effect of being convenient for overhaul the camera in the protective housing.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of the present application.
Fig. 2 is a partial cross-sectional view showing a positional relationship between a camera and a shield box according to an embodiment of the present application.
Fig. 3 is an enlarged schematic view of a portion a in fig. 2.
Fig. 4 is an enlarged schematic view of a portion B in fig. 2.
Description of reference numerals: 1. an annular slide rail; 11. a groove; 12. a synchronizing wheel; 13. a synchronous belt; 14. a drive motor; 2. a carriage; 21. a roller; 22. mounting a bar; 221. a blocking lever; 222. a clamping rod; 23. a T-shaped slot; 3. a protective box; 31. a transdermal patch; 32. t-shaped strips; 33. a protection plate; 331. fixing the bolt; 34. a sliding groove; 35. placing the plate; 4. a camera; 41. mounting a sheet; 42. and (6) installing a bolt.
Detailed Description
The present application is described in further detail below with reference to figures 1-4.
The embodiment of the application discloses irradiation chamber image acquisition device. Referring to fig. 1 and 2, an irradiation chamber image acquisition device, including being used for setting up the annular slide rail 1 on the wall body roof, recess 11 has been seted up to the relative both sides level of annular slide rail 1, and the slip sets up carriage 2 on the annular slide rail 1, is provided with gyro wheel 21 on the carriage 2, and gyro wheel 21 rolls along recess 11, and gyro wheel 21 makes the effect that carriage 2 can more smoothly remove along annular slide rail 1.
Referring to fig. 1 and 2, a driving assembly for driving the sliding frame 2 to slide along the endless sliding rail 1 is arranged on one side of the endless sliding rail 1, the driving assembly comprises a synchronizing wheel 12, a synchronous belt 13 and a driving motor 14, the synchronizing wheel 12 and the synchronous belt 13 are rotatably arranged on the top wall of a wall body, the synchronizing wheel 12 and the synchronous belt 13 are meshed with each other, a rotating shaft of the driving motor 14 is coaxially arranged on the synchronizing wheel 12, and one side of the sliding frame 2, which is close to the synchronous belt 13, is hinged to the synchronous belt 13; the driving motor 14 is started and drives the synchronizing wheel 12 to start rotating, so that the synchronous belt 13 meshed with the synchronizing wheel 12 starts to drive, and the sliding frame 2 hinged on the synchronous belt 13 rotates along with the circumferential direction of the synchronous belt 13.
Referring to fig. 1 and 2, a protective box 3 is arranged on one side of the sliding frame 2 away from the annular sliding rail 1, a camera 4 is arranged in the protective box 3, a lens of the camera 4 faces downwards vertically, and a transparent sheet 31 is arranged on the side wall of the protective box 3, which faces the lens of the camera 4; when the sliding frame 2 moves along the annular sliding rail 1, the protective box 3 and the camera 4 move along the annular sliding rail 1, and then the effect of enlarging the collection range of the image collection device is achieved.
Referring to fig. 2 and 3, two parallel mounting bars 22 are horizontally arranged on one side of the sliding frame 2 away from the annular sliding rail 1, a T-shaped groove 23 is formed in the mounting bar 22 along the length direction of the mounting bar 22, one end of the T-shaped groove 23 penetrates through the side wall of the mounting bar 22, a T-shaped bar 32 is arranged on the protective box 3, and the T-shaped groove 23 and the T-shaped bar 32 are matched with each other; the side wall of the mounting bar 22 penetrated by the T-shaped groove 23 is hinged with a shielding rod 221, the end wall of the mounting bar 22 is provided with a clamping rod 222, the shielding rod 221 and the clamping rod 222 are respectively positioned at two sides of the T-shaped groove 23, and the shielding rod 221 is clamped in the clamping rod 222; the shutter lever 221 is rotated out of the inside of the chucking lever 222 and then the shield case 3 is moved along the length direction of the mounting bar 22, thereby having an effect of facilitating the separation of the shield case 3 from the carriage 2.
Referring to fig. 1 and 4, an opening is formed in one side of the protective box 3, a protective plate 33 is hinged to a position, close to the opening, on the protective box 3, and a fixing bolt 331 is arranged between the protective plate 33 and the protective box 3 in a threaded manner; the sliding grooves 34 are formed in two opposite inner side walls of the protective box 3, the placing plates 35 are arranged in the sliding grooves 34 in a sliding mode, the camera 4 is provided with the installation pieces 41, the installation pieces 41 are attached to the placing plates 35, and the installation pieces 41 and the placing plates 35 are threaded through to be provided with the installation bolts 42.
After the protective box 3 is detached from the sliding frame 2, the fixing bolt 331 is unscrewed, the protective plate 33 which is hinged to the protective box is opened, then the placing plate 35 is drawn out from the protective box 3 along the sliding groove 34, the camera 4 is conveniently taken out from the protective box 3, the camera 4 and the placing plate 35 can be separated by turning the mounting bolt 42, and therefore the camera 4 can be repaired and the like.
The implementation principle of the irradiation chamber image acquisition device in the embodiment of the application is as follows: fixing the camera 4 on the placing plate 35 by using a mounting bolt 42, then pushing the placing plate 35 into the protective box 3 along the length direction of the sliding groove 34, wherein the camera of the camera 4 is just opposite to the transparent sheet 31 in the protective box 3, and then rotating the protective plate 33 to be attached to the side wall of the protective box 3 and fixing by using a fixing bolt 331; the T-bar 32 provided on the shield box 3 is aligned with the T-groove 23, and the T-bar 32 is completely inserted into the T-groove 23, and then the shielding bar 221 is rotated into the chucking bar 222, the shielding bar 221 having an effect of conveniently shielding the T-groove 23.
The driving motor 14 is started and the timing wheel 12 is driven to start rotating, so that the timing belt 13 meshed with the timing wheel 12 starts to drive, and the carriage 2 hinged to the timing belt 13 moves along with the timing belt 13, thereby having an effect of facilitating the movement of the camera 4 in a horizontal plane.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides an irradiation chamber image acquisition device which characterized in that: including being used for setting up annular slide rail (1) on the wall body roof, slip on annular slide rail (1) and set up carriage (2), be provided with protective housing (3) on carriage (2), be provided with camera (4) in protective housing (3), the camera lens of camera (4) is vertical down, protective housing (3) are just right be provided with transparency (31) on the lateral wall of the camera lens of camera (4), one side of annular slide rail (1) is provided with and is used for driving the gliding drive assembly of annular slide rail (1) along carriage (2).
2. The irradiator cell image capture device of claim 1, wherein: the two opposite sides of the annular sliding rail (1) are horizontally provided with grooves (11), the sliding frame (2) is provided with rollers (21), and the rollers (21) roll along the grooves (11).
3. The irradiator cell image capture device of claim 2, wherein: drive assembly is including being used for rotating synchronizing wheel (12), hold-in range (13) and driving motor (14) of setting on the wall body roof, synchronizing wheel (12) with intermeshing between hold-in range (13), the coaxial setting of axis of rotation of driving motor (14) is in on synchronizing wheel (12), carriage (2) are close to one side of hold-in range (13) is articulated to be set up on hold-in range (13).
4. The irradiator cell image capture device of claim 1, wherein: keep away from carriage (2) one side level of annular slide rail (1) is provided with mounting bar (22), T-shaped groove (23) have been seted up along the length direction of mounting bar (22) on mounting bar (22), be provided with T shape strip (32) on protecting box (3), T shape groove (23) with T shape strip (32) mutual adaptation, be provided with the shielding piece that is used for sheltering from T shape groove (23) on mounting bar (22).
5. The irradiator cell image capture device of claim 4, wherein: shelter from the piece including sheltering from pole (221) and chucking pole (222), shelter from that pole (221) are articulated to be set up on the terminal surface of mounting bar (22), chucking pole (222) are fixed to be set up on the terminal surface of mounting bar (22), just shelter from pole (221) with chucking pole (222) are located the both sides of T-slot (23), it is in to shelter from pole (221) chucking in chucking pole (222).
6. The irradiator cell image capture device of claim 1, wherein: the opening of one side of guard box (3) sets up, just it is provided with guard plate (33) to be close to the articulated guard plate that is provided with in open-ended position on guard box (3), guard plate (33) with the screw thread is provided with fixing bolt (331) between guard box (3).
7. The irradiator cell image capture device of claim 6, wherein: the two opposite inner side walls of the protective box (3) are provided with sliding grooves (34), a placing plate (35) is arranged in the sliding grooves (34) in a sliding mode, and the camera (4) is fixed to the placing plate (35).
8. The irradiator cell image capture device of claim 7, wherein: the camera (4) is provided with an installation piece (41), the installation piece (41) is attached to the placing plate (35), and an installation bolt (42) penetrates through the installation piece (41) and the placing plate (35) in a threaded mode.
CN202021361117.XU 2020-07-11 2020-07-11 Image acquisition device for irradiation chamber Active CN212719065U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021361117.XU CN212719065U (en) 2020-07-11 2020-07-11 Image acquisition device for irradiation chamber

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Application Number Priority Date Filing Date Title
CN202021361117.XU CN212719065U (en) 2020-07-11 2020-07-11 Image acquisition device for irradiation chamber

Publications (1)

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CN212719065U true CN212719065U (en) 2021-03-16

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113757511A (en) * 2021-09-23 2021-12-07 智城六新数字科技研究院(南京)有限公司 Assembled building safety monitoring device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113757511A (en) * 2021-09-23 2021-12-07 智城六新数字科技研究院(南京)有限公司 Assembled building safety monitoring device

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