CN211048810U - Storage device is preserved to special film of medical science image - Google Patents

Storage device is preserved to special film of medical science image Download PDF

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Publication number
CN211048810U
CN211048810U CN201920737083.0U CN201920737083U CN211048810U CN 211048810 U CN211048810 U CN 211048810U CN 201920737083 U CN201920737083 U CN 201920737083U CN 211048810 U CN211048810 U CN 211048810U
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film
motor
gear
heat
storage
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CN201920737083.0U
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Chinese (zh)
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马海彦
肖梦
李武超
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Guizhou Provincial Peoples Hospital
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Guizhou Provincial Peoples Hospital
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Abstract

The utility model discloses a film storage and storage device special for medical images, which belongs to the technical field of medical instruments and comprises a feed inlet, a film rolling shaft, a first gear, a first motor, a second gear, a flat film shaft, an upper toothed chain, a second motor, a lower toothed chain, a third motor, a heat sealing roller, a third gear, a fourth motor, a fifth motor, a cutter, a controller, a control panel, a storage box and a shell, after the film is inserted from the feed inlet, by means of the control panel starting device, the film winding shaft is driven to rotate by the rotation of the motor to drive the plastic films on the upper side and the lower side to be close to the film, the upper toothed chain is replaced by the rotation of the motor, thereby driving the flat film shaft to rotate, the flat film shaft is used for keeping the film in a horizontal state, the plastic film is conveyed by the conveyor belt to move towards the rear side, thereby drive the film and to the rear side motion, compare traditional film storage mode, this device has carried out a membrane processing to the film, prevents film secondary exposure or folding.

Description

Storage device is preserved to special film of medical science image
Technical Field
The utility model relates to the technical field of medical equipment, specifically relate to a storage device is preserved to special film of medical science image.
Background
Medical imaging refers to the technique and process of obtaining images of internal tissues of a human body or a part of the human body in a non-invasive manner for medical treatment or medical research. It contains the following two relatively independent directions of study: medical imaging systems (medical imaging systems) and medical image processing (medical image processing). The former refers to the process of image formation, including the research on the problems of imaging mechanism, imaging equipment, imaging system analysis and the like; the latter refers to further processing of the acquired images, either to restore the original less sharp image, to highlight some feature information in the image, to classify the pattern of the image, or the like.
For medical images with research significance, long-term preservation is required, medical images are often preserved in the form of films, and in a conventional preservation mode, the films are affected by factors such as oxidation and abrasion, so that the preservation time of the films is reduced, and a special medical image preservation device is required.
SUMMERY OF THE UTILITY MODEL
To above technical problem, the utility model provides a storage device is preserved to special film of medical science image.
The technical scheme of the utility model is that:
the utility model provides a storage device is preserved to special film of medical science image, includes feed inlet, roll up membrane axle, gear one, motor one, gear two, flat membrane axle, goes up the chain, motor two, lower chain, motor three, heat-seal roller, gear three, motor four, motor five, stock cutter, controller, control panel, storage box, casing, the feed inlet is established the front end of casing, roll up the membrane axle and have two, two roll up the membrane axle longitudinal symmetry and rotate and connect in the casing, and lie in the feed inlet rear side, two roll up the membrane axle through gear one meshing transmission, the right-hand member of downside roll up the membrane axle rotates and is connected with motor one, rolls up the membrane axle and adopts ceramic material, deposit the membrane pipe has two, two and deposit the connection of membrane pipe longitudinal symmetry in the rear side of roll up the membrane axle, and through gear two and roll up membrane axle meshing transmission, deposit the inside plastic film pipe that is equipped with of membrane, flat membrane axle has twelve, twelve flat film shafts are symmetrically distributed at the rear side of the film storage tube up and down, the left sides of the six upper flat film shafts are in same-direction meshing transmission with the upper toothed chain, the front end of the upper toothed chain is connected with a second motor in a rotating way, the right sides of the six lower flat film shafts are in same-direction meshing transmission with the lower toothed chain, the front end of the lower toothed chain is connected with a third motor in a rotating way, four heat-sealing rollers are symmetrically distributed at the rear end of the flat film shafts up and down, four gears are fixed at the outer sides of the heat-sealing rollers respectively, the upper heat-sealing rollers and the lower heat-sealing rollers are in three-meshing transmission through the gears, the rear end of the left heat-sealing rollers is in three-meshing transmission with the left gears through the motor four, the rear end of the right heat-sealing rollers is in three-meshing transmission with the right gears through the motor five, the cutting machine is fixed at the rear end of the, the rear end of casing is equipped with the discharge gate, the controller is located the casing right side, and respectively with motor one, motor two, motor three, motor four, motor five, stock cutter electric connection, the controller is the product on sale, control panel divides to fix on casing right side outer wall, the storage box is fixed in the casing below.
Furthermore, the two sides of the upper side flat film shaft and the two sides of the lower side flat film shaft are respectively connected with a conveying belt, the conveying belts are positioned on the inner sides of the upper toothed chain and the lower toothed chain, and the two sides of the film can be conveyed smoothly through the conveying belts.
Furthermore, the storage box adopts a drawer type design, and the drawer is designed to be convenient to store.
Further, a plurality of plastic sleeves are placed inside the storage box, medical images after film sealing are installed inside the plastic sleeves, and a plurality of films can be grouped through the plastic sleeves.
Furthermore, the rear end of the shell is provided with a material receiving shell, the near end of the material receiving shell is hinged to the rear side of the shell, a film falls into the material receiving shell after being sealed, and the material receiving shell can cover the upper surface of the shell after rotating anticlockwise.
The utility model discloses a working method:
s1: after the film is inserted from the feed inlet, the motor rotates to drive the film winding shaft to rotate and drive the plastic films on the upper side and the lower side to be close to the film by starting the device through the control panel;
s2: the second motor rotates to replace the upper toothed chain so as to drive the flat film shaft to rotate, the flat film shaft is used for keeping the film in a horizontal state, and the conveying belt conveys the plastic film to move towards the rear side so as to drive the film to move towards the rear side;
and S3, adhering two sides of the plastic film through the heat-sealing rollers, pushing the film to be conveyed to a discharge port, starting a cutting machine through the control panel, cutting off the continuous plastic film, controlling the motors to reversely rotate through the control panel to drive the plastic film in the shell to move towards the lower part of the film rolling shaft, waiting for the next film to be inserted, placing the films after film sealing into the plastic sleeves for grouping, and then placing the plastic sleeves into a storage box for storage.
The utility model has the advantages that:
compare traditional film storage mode, this device has carried out the membrane processing of sealing to the film, prevents film secondary exposure or folding to avoid the pollution of medical data, seal the medical film after the membrane is accomplished and can divide into groups by rethread plastic sheath, can classify single patient's a lot of films, also can carry out contrastive analysis with a plurality of films of the same kind of disease, and the use is changeable and nimble, storage mode safe and reliable.
Drawings
FIG. 1 is a view of the interior of the housing of the present invention;
FIG. 2 is a right-view transmission structure diagram of the present invention;
FIG. 3 is an external view of the present invention;
fig. 4 is a structural view of the present usage model.
The film winding machine comprises a feeding port 1, a film winding shaft 2, a gear I3, a gear I4, a motor I5, a gear II 6, a flat film shaft 7, an upper toothed chain 7, a motor II 8, a gear II 9, a motor III 10, a heat-sealing roller 11, a gear III 12, a motor IV 13, a motor V14, a cutter 15, a controller 16, a control panel 17, a storage box 18, a shell 19, a discharge port 191, a film storage pipe 20, a conveyor belt 21, a plastic sleeve 22 and a material receiving shell 23.
Detailed Description
For the convenience of understanding the embodiments of the present invention, the following description is further explained with reference to fig. 1 to 4, which are not intended to limit the scope of the present invention.
As shown in fig. 1, a film storage and storage device for medical images comprises a feed inlet 1, a film rolling shaft 2, a first gear 3, a first motor 4, a second gear 5, a flat film shaft 6, an upper gear 7, a second motor 8, a lower gear 9, a third motor 10, a heat sealing roller 11, a third gear 12, a fourth motor 13, a fifth motor 14, a cutter 15, a controller 16, a control panel 17, a storage box 18 and a shell 19, as shown in fig. 2, the feed inlet 1 is arranged at the front end of the shell 19, the film rolling shafts 2 are two, the two film rolling shafts 2 are symmetrically and rotatably connected to the inside of the shell 19 from top to bottom and are positioned at the rear side of the feed inlet 1, the two film rolling shafts 2 are in meshing transmission through the first gear 3, the right end of the lower film rolling shaft 2 is rotatably connected with the first motor 4, the film rolling shafts are made of ceramic materials, the two film storage tubes 20 are symmetrically and connected to the rear side of the film rolling shafts 2, the film storage tube 20 is internally provided with plastic films through the meshing transmission of a second gear 5 and a film winding shaft 2, twelve flat film shafts 6 are symmetrically distributed at the rear side of the film storage tube 20 up and down, the left sides of six upper flat film shafts 6 are meshed with an upper toothed chain 7 in the same direction, the front end of the upper toothed chain 7 is rotatably connected with a second motor 8, the right sides of six lower flat film shafts 6 are meshed with a lower toothed chain 9 in the same direction, the front end of the lower toothed chain 9 is rotatably connected with a third motor 10, two sides of the upper flat film shaft 6 and two sides of the lower flat film shaft 6 are respectively connected with a transmission belt 21, the transmission belts are positioned at the inner sides of the upper toothed chain 7 and the lower toothed chain 9 and can more smoothly transmit two sides of the films through the transmission belts 21, four heat-sealing rollers 11 are symmetrically distributed at the rear end of the flat film shafts 6 up and down, four gears 12 are respectively fixed at the outer sides of the heat-sealing rollers 11, the upper heat-seal roller 11 and the lower heat-seal roller 11 are in meshing transmission through a gear three 12, the rear end of the left heat-seal roller 11 is in meshing transmission with a gear three 12 through a motor four 13, the rear end of the right heat-seal roller 11 is in meshing transmission with a gear three 12 through a motor five 14, a cutter 15 is fixed at the rear end of the heat-seal roller 11 and adopts an electrothermal cutting principle to be a commercially available product, the rear end of a shell 19 is provided with a discharge port 191, as shown in fig. 4, a controller 16 is positioned at the right side of the shell 19 and is respectively electrically connected with a motor one 4, a motor two 8, a motor three 10, a motor four 13, a motor five 14 and the cutter 15, the controller is a commercially available product, a control panel 17 is respectively fixed on the outer wall at the right side of the shell 19, as shown in fig. 3, a storage box 18 is fixed below the shell 19, the storage box 18 adopts a drawer, the medical image after the plastic sheath 22 is equipped with the interior seal membrane, and a plurality of films can be grouped through the plastic sheath 22, and the rear end of the casing 19 is equipped with connects the material shell 23, connects the material shell 23 near-end and is articulated with the casing 19 rear side, and the film falls into after sealing the membrane and connects the material shell 23, connects the material shell 23 anticlockwise rotation can cover on the casing 19 upper surface.
S1: after a film is inserted from the feeding hole 1, the device is started through the control panel 17, and the motor I4 rotates to drive the film winding shaft 2 to rotate to drive the plastic films on the upper side and the lower side to be close to the film;
s2: the second motor rotates to drive the flat film shaft to rotate by replacing the upper toothed chain, the flat film shaft 6 is used for keeping the film in a horizontal state, and the conveyor belt 21 conveys the plastic film to move towards the rear side so as to drive the film to move towards the rear side;
and S3, adhering the two sides of the plastic films by the heat-sealing rollers 11, pushing the films to be conveyed to a discharge port, starting the cutter 15 by the control panel, cutting off the continuous plastic films, controlling the motors to rotate reversely by the control panel 17 to drive the plastic films in the shell 19 to move towards the lower part of the film winding shaft 2, waiting for the insertion of the next film, placing the films after film sealing in the plastic sleeves 22 for grouping, and then placing the plastic sleeves 22 in the storage box 18 for storage.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that various changes, modifications, and equivalents may be made therein without departing from the spirit and scope of the invention; such modifications and substitutions do not depart from the spirit and scope of the embodiments of the present invention.

Claims (5)

1. The film storage and storage device special for medical images is characterized by comprising a feed inlet (1), two film rolling shafts (2), a first gear (3), a first motor (4), a second gear (5), a flat film shaft (6), an upper toothed chain (7), a second motor (8), a lower toothed chain (9), a third motor (10), a heat sealing roller (11), a third gear (12), a fourth motor (13), a fifth motor (14), a cutter (15), a controller (16), a control panel (17), a storage box (18), a shell (19) and a film storage pipe (20), wherein the feed inlet (1) is formed in the front end of the shell (19), the two film rolling shafts (2) are vertically symmetrically and rotatably connected inside the shell (19) and are positioned on the rear side of the feed inlet (1), the two film rolling shafts (2) are in meshing transmission through the first gear (3), the right-hand member of downside roll up membrane axle (2) is rotated and is connected with motor (4), it has two to deposit membrane pipe (20), and two are deposited the connection of membrane pipe (20) longitudinal symmetry and are being rolled up the rear side of membrane axle (2), and pass through gear two (5) and roll up membrane axle (2) meshing transmission, flat membrane axle (6) have twelve, twelve flat membrane axle (6) longitudinal symmetry distribute deposit the rear side of membrane pipe (20), the left side of six flat membrane axles of upside (6) all with go up sprocket (7) syntropy meshing transmission, the front end of going up sprocket (7) is rotated and is connected with motor two (8), the right side of six flat membrane axles of downside (6) all with sprocket (9) syntropy meshing transmission down, the front end of sprocket (9) is rotated and is connected with motor three (10) down, heat-seal roller (11) have four, four heat-seal roller (11) longitudinal symmetry distribute in flat membrane axle (6) rear end, the three gears (12) are four, the four gears (12) are respectively fixed on the outer side of the heat-sealing roller (11), the upper heat-sealing roller (11) and the lower heat-sealing roller (11) are in meshing transmission through the gear three (12), the rear end of the left heat-sealing roller (11) is in meshing transmission through the motor four (13) and the left gear three (12), the rear end of the right heat-sealing roller (11) is in meshing transmission through the motor five (14) and the right gear three (12), the cutting machine (15) is fixed at the rear end of the heat-sealing roller (11), the rear end of the shell (19) is provided with a discharge hole (191), the controller (16) is positioned on the right side of the shell (19) and is respectively electrically connected with the motor I (4), the motor II (8), the motor III (10), the motor IV (13), the motor five (14) and the cutting machine (15), and the control panel (17) is respectively fixed on the outer wall of, the storage box (18) is fixed below the housing (19).
2. A film storage and storage device for medical image as claimed in claim 1, wherein the two sides of the upper flat film shaft (6) and the two sides of the lower flat film shaft (6) are respectively connected with a conveyor belt (21) which is located inside the upper chain (7) and the lower chain (9).
3. A film storage and retrieval device for medical image as claimed in claim 1, wherein said storage box (18) is of drawer type design.
4. A film storage and retrieval device for medical image according to claim 1, wherein a plurality of plastic sleeves (22) are disposed inside the storage box (18), and the plastic sleeves (22) contain the medical image after being sealed.
5. A film storage and storage device as claimed in claim 1, wherein a material receiving case (23) is provided at the rear end of the housing (19), and the proximal end of the material receiving case (23) is hinged to the rear side of the housing (19).
CN201920737083.0U 2019-05-22 2019-05-22 Storage device is preserved to special film of medical science image Active CN211048810U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920737083.0U CN211048810U (en) 2019-05-22 2019-05-22 Storage device is preserved to special film of medical science image

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920737083.0U CN211048810U (en) 2019-05-22 2019-05-22 Storage device is preserved to special film of medical science image

Publications (1)

Publication Number Publication Date
CN211048810U true CN211048810U (en) 2020-07-21

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113534597A (en) * 2021-07-14 2021-10-22 北京邮电大学 Novel film storing and taking device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113534597A (en) * 2021-07-14 2021-10-22 北京邮电大学 Novel film storing and taking device

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