CN216061383U - Efficient sterilization and disinfection device of ovulation obstacle detection kit for infertility department - Google Patents

Efficient sterilization and disinfection device of ovulation obstacle detection kit for infertility department Download PDF

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Publication number
CN216061383U
CN216061383U CN202122716708.5U CN202122716708U CN216061383U CN 216061383 U CN216061383 U CN 216061383U CN 202122716708 U CN202122716708 U CN 202122716708U CN 216061383 U CN216061383 U CN 216061383U
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China
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bevel gear
gear
infertility
department
detection kit
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CN202122716708.5U
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Chinese (zh)
Inventor
王铁英
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Taizhou Maternity Hospital Co ltd
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Taizhou Maternity Hospital Co ltd
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Abstract

The utility model is suitable for the technical field of medical sterilization and disinfection, and provides a high-efficiency sterilization and disinfection device for ovulation failure detection kits for the infertility department, wherein a plurality of groups of clamping components for clamping and fixing the detection kits are arranged in two groups of fixing plates, an ultraviolet lamp for sterilizing and disinfecting the detection kits is arranged between the two groups of fixing plates, a motor drives the plurality of groups of clamping components to simultaneously clamp and fix the detection kits through a transmission component, the motor can drive the two groups of fixing plates to rotate through the transmission component, the detection kits are placed between a first clamping plate and a second clamping plate, then the motor drives the plurality of groups of first clamping plates and second clamping plates to move inwards relatively through the transmission component, the first clamping plate and the second clamping plate clamp and fix the detection kits, and then the ultraviolet lamp is turned on to sterilize and disinfect the detection kits, one more is not required for sterilization.

Description

Efficient sterilization and disinfection device of ovulation obstacle detection kit for infertility department
Technical Field
The utility model belongs to the technical field of medical sterilization and disinfection, and particularly relates to an efficient sterilization and disinfection device for an ovulation failure detection kit for an infertility department.
Background
Ovulation obstacle detect reagent packing carton that sterility branch of academic or vocational study was used all need disinfect the disinfection through sterilizing device before using, and current sterilizing device can only disinfect disinfection to a packing carton simultaneously, and when needs use detect reagent in a large number, one is disinfected the disinfection and can not follow up the volume of using to the packing carton, influences work efficiency.
SUMMERY OF THE UTILITY MODEL
The utility model provides a high-efficiency sterilization and disinfection device for an ovulation failure detection kit for an infertility department, and aims to solve the problem that only one kit can be used for sterilizing and disinfecting a detection reagent packaging box.
The utility model discloses a high-efficiency sterilization and disinfection device for an ovulation failure detection kit for an infertility department, which comprises a main body, wherein a motor is arranged at the lower end of the main body, two groups of fixing plates are arranged in the main body, a plurality of groups of clamping assemblies for clamping and fixing the detection kit are arranged in the two groups of fixing plates, an ultraviolet lamp for sterilizing and disinfecting the detection kit is arranged between the two groups of fixing plates, the motor drives the plurality of groups of clamping assemblies through a transmission assembly and simultaneously clamps and fixes the detection kit, and the motor can drive the two groups of fixing plates to rotate through the transmission assembly.
Preferably, the transmission assembly comprises a rotating shaft, the rotating shaft is fixedly mounted on the motor, a first flat gear is fixedly mounted on the rotating shaft, and the first flat gear is respectively meshed with the second flat gear and the third flat gear.
Preferably, the second and third flat gears are fixedly mounted on a first rotating rod, and a first bevel gear and a second bevel gear are respectively fixedly mounted at two ends of the first rotating rod.
Preferably, the first bevel gear is meshed with the third bevel gear, the third bevel gear is fixedly arranged at the lower end of the second rotating rod, the second rotating rod is fixedly provided with two fourth bevel gears, the two fourth bevel gears are all meshed with the fifth bevel gear, the two fifth bevel gears are fixedly arranged on the connecting rod, and the other ends of the connecting rod are fixedly connected with the fixing plate.
Preferably, the second bevel gear is meshed with a sixth bevel gear, the sixth bevel gear is fixedly mounted at the lower end of a third rotating rod, two seventh bevel gears are fixedly mounted on the third rotating rod, and the two seventh bevel gears are meshed with an eighth bevel gear.
Preferably, the eighth bevel gears are fixedly mounted on the fourth rotating rods, the fourth rotating rods penetrate through the sleeve rods, one ends of the sleeve rods are fixedly connected with the fixing plates, and the other ends of the sleeve rods are rotatably connected with the main body.
Preferably, two fixed mounting has a fourth spur gear on the fourth dwang, two the fourth spur gear all meshes with the fifth spur gear mutually, two the equal fixed mounting of fifth spur gear is in threaded rod one end.
Preferably, a plurality of the centre gripping subassembly includes a plurality of first grip blocks and a plurality of second grip blocks, and is a plurality of first grip blocks and a plurality of second grip blocks all set up in two relatively inside the fixed plate, two the threaded rod all runs through in a plurality of first grip blocks and a plurality of second grip block lower extreme.
Compared with the prior art, the utility model has the beneficial effects that: according to the efficient sterilization and disinfection device for the ovulation failure detection kit for the infertility department, the detection kit is placed between the first clamping plate and the second clamping plate, then the motor drives the multiple groups of first clamping plates and the second clamping plates to move inwards relatively through the transmission assembly, the first clamping plates and the second clamping plates clamp and fix the detection kit, and then the ultraviolet lamps are turned on to sterilize and disinfect the detection kits without one another.
Simultaneously the motor can drive two fixed plates through drive assembly and rotate, and two fixed plates drive a plurality of detect reagent boxes that are fixed by the centre gripping and rotate, can all be shone by ultraviolet lamp with every angle of detect reagent box like this, and the detect reagent box of every angle all can disinfect the disinfection like this.
Drawings
FIG. 1 is a schematic cross-sectional view of the present invention;
FIG. 2 is a schematic front view of the present invention;
FIG. 3 is a schematic cross-sectional view of a fixing plate according to the present invention;
in the figure: 1. a main body; 2. a motor; 3. a rotating shaft; 4. a first spur gear; 5. a second spur gear; 6. a third spur gear; 7. a first rotating lever; 8. a first bevel gear; 9. a second bevel gear; 10. a third bevel gear; 11. a second rotating lever; 12. a fourth bevel gear; 13. a fifth bevel gear; 14. a connecting rod; 15. a fixing plate; 16. a sixth bevel gear; 17. a third rotating rod; 18. a seventh bevel gear; 19. an eighth bevel gear; 20. a loop bar; 21. a fourth rotating rod; 22. a fourth spur gear; 23. a fifth spur gear; 24. a threaded rod; 25. a first clamping plate; 26. a second clamping plate; 27. an ultraviolet lamp.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
Referring to fig. 1-3, the present invention provides a technical solution: the utility model provides an infertility branch of academic or vocational study is with high-efficient degassing unit that disinfects of ovulation obstacle detect reagent box, includes main part 1, and 1 lower extreme in main part is provided with motor 2, and 1 is inside to be provided with two sets of fixed plates 15 in the main part, and two sets of fixed plates 15 are inside to be provided with the multiunit and to be used for carrying out the fixed centre gripping subassembly of centre gripping to detect reagent box, are provided with in the middle of two sets of fixed plates 15 and are used for disinfecting's ultraviolet lamp 27 to detect reagent box, and motor 2 drives the multiunit through drive assembly centre gripping subassembly carries out the centre gripping simultaneously to detect reagent box fixed, and motor 2 can drive two sets of fixed plates 15 through drive assembly and rotate.
Through placing a plurality of detect reagent box in the middle of the centre gripping subassembly, motor 2 drives multiunit centre gripping subassembly simultaneous movement through drive assembly, it is fixed to carry out the centre gripping with a plurality of detect reagent box simultaneously, then through the regulation of inside drive assembly, open ultraviolet lamp 27, motor 2 drives two sets of fixed plates 15 through drive assembly and rotates, two sets of fixed plates 15 drive a plurality of detect reagent box rotations, every angle of detect reagent box can be shone to ultraviolet lamp 27 like this, just can disinfect the disinfection to a plurality of detect reagent box simultaneously.
The transmission assembly comprises a rotating shaft 3, the rotating shaft 3 is fixedly installed on a motor 2, a first flat gear 4 is fixedly installed on the rotating shaft 3, the first flat gear 4 is respectively meshed with a second flat gear 5 and a third flat gear 6, the second flat gear 5 and the third flat gear 6 are fixedly installed on a first rotating rod 7, two ends of the first rotating rod 7 are respectively fixedly installed with a first bevel gear 8 and a second bevel gear 9, the first bevel gear 8 is meshed with a third bevel gear 10, the third bevel gear 10 is fixedly installed at the lower end of a second rotating rod 11, two fourth bevel gears 12 are fixedly installed on the second rotating rod 11, the two fourth bevel gears 12 are respectively meshed with a fifth bevel gear 13, the two fifth bevel gears 13 are respectively and fixedly installed on connecting rods 14, and fixing plates 15 are respectively and fixedly connected to the other ends of the two connecting rods 14.
The first flat gear 4 is meshed with the second flat gear 5 or the third flat gear 6 by pulling the first rotating rod 7, when the first flat gear 4 is meshed with the second flat gear 5, the first bevel gear 8 is meshed with the third bevel gear 10, the motor 2 drives the first rotating rod 7 to rotate through the first flat gear 4 and the second flat gear 5, the first rotating rod 7 drives the third bevel gear 10 to rotate through the first bevel gear 8, the third bevel gear 10 drives two groups of fourth bevel gears 12 to rotate through the second rotating rod 11, the two groups of fourth bevel gears 12 drive the two connecting rods 14 to rotate through the two fifth bevel gears 13, and the two connecting rods 14 drive the two fixing plates 15 to rotate.
Second bevel gear 9 meshes with sixth bevel gear 16 mutually, sixth bevel gear 16 fixed mounting is at third dwang 17 lower extreme, fixed mounting has two seventh bevel gears 18 on the third dwang 17, two seventh bevel gears 18 all mesh with eighth bevel gear 19 mutually, two equal fixed mounting of eighth bevel gear 19 are on fourth dwang 21, two fourth dwang 21 all run through inside loop bar 20, two loop bar 20 one end with two fixed plate 15 fixed connection, two loop bar 20 other ends and main part 1 are rotated and are connected.
Promote first bull stick 7 and make third pinion 6 and first pinion 4 mesh mutually, second bevel gear 9 and sixth bevel gear 16 mesh this moment, motor 2 drives first bull stick 7 through first pinion 4 and third pinion 6 and rotates, first bull stick 7 drives sixth bevel gear 16 through second bevel gear 9 and rotates, sixth bevel gear 16 drives two seventh bevel gears 18 through third dwang 17 and rotates, two seventh bevel gears 18 drive two fourth dwang 21 through even eighth bevel gear 19 and rotate, two loop bars 20 are used for supporting fixed plate 15, when fixed plate 15 rotates, loop bar 20 also can follow the rotation.
Fixed mounting has fourth spur gear 22 on two fourth dwangs 21, two fourth spur gears 22 all mesh with fifth spur gear 23 mutually, two equal fixed mounting in threaded rod 24 one end of fifth spur gear 23, a plurality of centre gripping subassemblies include a plurality of first grip blocks 25 and a plurality of second grip blocks 26, a plurality of first grip blocks 25 and a plurality of second grip blocks 26 homogeneous phase are relative to be set up inside two fixed plates 15, two threaded rods 24 all run through at a plurality of first grip blocks 25 and a plurality of second grip blocks 26 lower extreme.
Two fourth dwang 21 drive two fifth spur gear 23 through two fourth spur gear 22 and rotate, two fifth spur gear 23 drive two threaded rods 24 and rotate, the corresponding screw thread with threaded rod 24 is seted up to first grip block 25 and second grip block 26 lower extreme, put into first grip block 25 and second grip block 26 with the detection kit in the middle of, two threaded rods 24 drive first grip block 25 and the relative inward movement of second grip block 26, are held a plurality of detection kits simultaneously.
The working principle and the using process of the utility model are as follows: after the detection kit is installed, the first rotating rod 7 is pushed to enable the third flat gear 6 to be meshed with the first flat gear 4, at the moment, the second bevel gear 9 is meshed with the sixth bevel gear 16, the motor 2 drives the first rotating rod 7 to rotate through the first flat gear 4 and the third flat gear 6, the first rotating rod 7 drives the sixth bevel gear 16 to rotate through the second bevel gear 9, the sixth bevel gear 16 drives the two seventh bevel gears 18 to rotate through the third rotating rod 17, the two seventh bevel gears 18 drive the two fourth rotating rods 21 to rotate through the eighth bevel gear 19, the two fourth rotating rods 21 drive the two fifth flat gears 23 to rotate through the two fourth flat gears 22, the two fifth flat gears 23 drive the two threaded rods 24 to rotate, the lower ends of the first clamping plate 25 and the second clamping plate 26 are provided with threads corresponding to the threaded rods 24, the detection kit is placed between the first clamping plate 25 and the second clamping plate 26, two threaded rods 24 drive a first clamping plate 25 and a second clamping plate 26 to move inwards relatively, a plurality of detection reagent boxes are clamped simultaneously, an ultraviolet lamp 27 is turned on, when a first flat gear 4 and a second flat gear 5 are meshed by pulling a first rotating rod 7, a first bevel gear 8 and a third bevel gear 10 are meshed, a motor 2 drives the first rotating rod 7 to rotate through the first flat gear 4 and the second flat gear 5, the first rotating rod 7 drives the third bevel gear 10 to rotate through the first bevel gear 8, the third bevel gear 10 drives two groups of fourth bevel gears 12 to rotate through a second rotating rod 11, the two groups of fourth bevel gears 12 drive two connecting rods 14 to rotate through two fifth bevel gears 13, the two connecting rods 14 drive two fixing plates 15 to rotate, the two groups of fixing plates 15 drive a plurality of detection reagent boxes to rotate, so that the ultraviolet lamp 27 can irradiate each angle of the detection reagent boxes, a plurality of detection kits can be sterilized and disinfected simultaneously.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the utility model, and any modifications, equivalents and improvements made within the spirit and principle of the present invention are intended to be included within the scope of the present invention.

Claims (8)

1. The utility model provides an infertile branch of academic or vocational study is with high-efficient degassing unit that disinfects of ovulation obstacle detect reagent box which characterized in that: including main part (1), main part (1) lower extreme is provided with motor (2), main part (1) inside is provided with two sets of fixed plate (15), and is two sets of fixed plate (15) inside is provided with the multiunit and is used for carrying out the fixed centre gripping subassembly of centre gripping to detect reagent box, and is two sets of be provided with in the middle of fixed plate (15) and be used for disinfecting sterile ultraviolet lamp (27) to detect reagent box, motor (2) drive the multiunit through drive assembly centre gripping subassembly carries out the centre gripping simultaneously to detect reagent box fixed, motor (2) can drive two sets ofly through drive assembly fixed plate (15) rotate.
2. The highly effective sterilization and disinfection device of ovulation failure detection kit for infertility department as claimed in claim 1, wherein: the transmission assembly comprises a rotating shaft (3), the rotating shaft (3) is fixedly installed on the motor (2), a first flat gear (4) is fixedly installed on the rotating shaft (3), and the first flat gear (4) is meshed with a second flat gear (5) and a third flat gear (6) respectively.
3. The highly effective sterilization and disinfection device of ovulation failure detection kit for infertility department as claimed in claim 2, wherein: the second flat gear (5) and the third flat gear (6) are fixedly arranged on a first rotating rod (7), and a first bevel gear (8) and a second bevel gear (9) are fixedly arranged at two ends of the first rotating rod (7) respectively.
4. The highly effective sterilization and disinfection device of ovulation failure detection kit for infertility department as claimed in claim 3, wherein: first bevel gear (8) and third bevel gear (10) mesh mutually, third bevel gear (10) fixed mounting second dwang (11) lower extreme, fixed mounting has two fourth bevel gears (12), two on second dwang (11) fourth bevel gear (12) all mesh mutually with fifth bevel gear (13), two the equal fixed mounting of fifth bevel gear (13) is on connecting rod (14), two the equal fixedly connected with of connecting rod (14) other end fixed plate (15).
5. The highly effective sterilization and disinfection device of ovulation failure detection kit for infertility department as claimed in claim 4, wherein: the second bevel gear (9) is meshed with a sixth bevel gear (16), the sixth bevel gear (16) is fixedly installed at the lower end of a third rotating rod (17), two seventh bevel gears (18) are fixedly installed on the third rotating rod (17), and the seventh bevel gears (18) are meshed with an eighth bevel gear (19).
6. The highly effective sterilization and disinfection device of ovulation failure detection kit for infertility department as claimed in claim 5, wherein: two equal fixed mounting of eighth bevel gear (19) is on fourth dwang (21), two fourth dwang (21) all runs through inside loop bar (20), two loop bar (20) one end and two fixed plate (15) fixed connection, two the loop bar (20) other end with main part (1) rotates and connects.
7. The highly effective sterilization and disinfection device of ovulation failure detection kit for infertility department as claimed in claim 6, wherein: two fixed mounting has fourth spur gear (22), two on fourth dwang (21) fourth spur gear (22) all meshes mutually with fifth spur gear (23), two the equal fixed mounting in threaded rod (24) one end of fifth spur gear (23).
8. The highly effective sterilization and disinfection device of ovulation failure detection kit for infertility department as claimed in claim 7, wherein: the clamping assemblies comprise a plurality of first clamping plates (25) and a plurality of second clamping plates (26), the first clamping plates (25) and the second clamping plates (26) are arranged in the two fixing plates (15) in a relative mode, and the threaded rods (24) penetrate through the lower ends of the first clamping plates (25) and the second clamping plates (26).
CN202122716708.5U 2021-11-08 2021-11-08 Efficient sterilization and disinfection device of ovulation obstacle detection kit for infertility department Active CN216061383U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122716708.5U CN216061383U (en) 2021-11-08 2021-11-08 Efficient sterilization and disinfection device of ovulation obstacle detection kit for infertility department

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122716708.5U CN216061383U (en) 2021-11-08 2021-11-08 Efficient sterilization and disinfection device of ovulation obstacle detection kit for infertility department

Publications (1)

Publication Number Publication Date
CN216061383U true CN216061383U (en) 2022-03-18

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Application Number Title Priority Date Filing Date
CN202122716708.5U Active CN216061383U (en) 2021-11-08 2021-11-08 Efficient sterilization and disinfection device of ovulation obstacle detection kit for infertility department

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CN (1) CN216061383U (en)

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