Auxiliary sterilization device for instruments in reproductive department

By designing a driving transmission, automatic flip and sterilization spraying mechanism, the auxiliary reproductive instrument sterilization device realizes automatic flip and efficient sterilization of the instrument, solving the problem of increasing steps and time of manual flip in the prior art, and improving sterilization efficiency and equipment adaptability.

CN120501909AInactive Publication Date: 2025-08-19SHANGHAI FIRST MATERNITY & INFANT HOSPITAL
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Patent Information

Application Number
CN202510555071.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2025-08-19
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When sterilizing instruments, existing sterilization devices require manual flipping of items to ensure that both sides are sprayed with medicaments, which increases the operation steps and time and cannot meet the needs of fast turnaround, especially when handling large quantities of items.

Method used

An assisted reproductive instrument sterilization device is designed, including a drive conveying mechanism, an automatic flip mechanism and a sterilization spraying mechanism, which can automatically complete the 180-degree flip operation of the instrument, exposing both sides to the agent spraying environment, and adapting to different specifications of the instrument through the spacing adjustment mechanism.

Benefits of technology

It realizes sterilization without manual flipping, improves sterilization efficiency, protects the health of operators, and enhances the adaptability and space use efficiency of equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an auxiliary reproductive department instrument sterilization device, and belongs to the technical field of medical instrument sterilization equipment.The auxiliary reproductive department instrument sterilization device comprises a working bottom plate, two fixing side plates are fixedly connected to the working bottom plate, a supporting frame is fixedly installed on the working bottom plate, and a connecting table is fixedly connected to the supporting frame; a sterilization spraying mechanism is mounted on the lower surface of the connecting table; a driving conveying mechanism is installed on the inner side of the fixed side plate, an automatic overturning mechanism is arranged at the upper end of the inner side of the fixed side plate, and a synchronous driving mechanism is fixedly installed on the inner side of the fixed side plate. By designing the driving conveying mechanism, the automatic turnover mechanism and the sterilization spraying mechanism which are matched with one another, the to-be-sterilized instruments in the receiving assembly can be turned over by 180 degrees without manual turning over, and by designing the distance adjusting mechanism, the adaptability of the sterilization equipment to different instrument sterilization tasks is enhanced.
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Description

Technical Field

[0001] The present invention belongs to the technical field of medical instrument sterilization equipment, and in particular relates to a sterilization device for assisted reproductive instruments. Background Art

[0002] Assisted reproductive instrument sterilization equipment is used to disinfect and sterilize various instruments used in assisted reproductive procedures, ensuring sterility, preventing infection, and ensuring the safety and success of assisted reproductive technology. Sterilization of medical devices typically involves spraying with chemical agents to kill microorganisms. Commonly used chemical agents include hydrogen peroxide, peracetic acid, formaldehyde, and glutaraldehyde. These agents can destroy microbial cell structures, proteins, and nucleic acids, thereby achieving the desired sterilization effect.

[0003] Existing sterilization devices can only spray the sterilizer on one side of the device, leaving microorganisms on the unsprayed side. To sterilize both sides, operators must manually flip the device over and spray it again, adding steps and extending the sterilization process. Frequent flipping and spraying consumes significant manpower and time, especially when processing large numbers of items. This also limits the number of items the sterilizer can process per unit time, making it difficult to meet the demand for rapid turnover of medical devices. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to overcome the shortcomings of the above-mentioned prior art and provide a sterilization device for assisted reproductive instruments.

[0005] The technical solution adopted to solve the above technical problems is: a sterilization device for assisted reproductive instruments, including a working base plate, two fixed side plates are fixedly connected to the working base plate, a fixed platform is fixedly installed on one side of the fixed side plate, and a guide platform is symmetrically fixedly connected to the fixed side plate on one side, a support frame is fixedly installed on the working base plate, a connecting platform is fixedly connected to the support frame, and a sterilization spray mechanism is installed on the lower surface of the connecting platform; a driving transmission mechanism is installed on the inner side of the fixed side plate, an automatic flipping mechanism is provided at the upper end of the inner side of the fixed side plate, a synchronous driving mechanism is fixedly installed on the inner side of the fixed side plate, mounting grooves are symmetrically opened in the two fixed side plates, and an adjustment mechanism is provided in the mounting groove; arc grooves are opened in the two fixed side plates, and a spacing adjustment mechanism is installed on the fixed platform.

[0006] Through the above technical solution, the matching drive transmission mechanism, automatic flipping mechanism and sterilization spraying mechanism are designed, which can enable the sterilized instruments in the receiving assembly to complete a 180-degree flip operation without manual flipping, so that both sides of the instruments can be fully exposed to the sterilization environment of the drug spraying.

[0007] The transmission gear of the present invention is a gear which is connected to the first gear of the driving member and the gear is connected with the gear train of the driving member, and the transmission gear of the driving member is connected with the gear train of the driving member.

[0008] Through the above technical solution, the output end of the first motor drives the driving wheel to rotate, and the driving wheel drives the first driven wheel to rotate through the first transmission belt, so that the first driven wheel simultaneously drives the fourth driven wheel on the driving shaft to rotate, and the first driven wheel drives the third driven wheel to rotate through the second transmission belt. The rotation of multiple sets of wheels causes the transmission belt to rotate to transmit the material receiving component.

[0009] Furthermore, the automatic flipping mechanism includes a flip plate, which is symmetrically connected to a first auxiliary wheel for rotation on the flip plate, and a second auxiliary wheel is rotatably connected to one end of the flip plate away from the first auxiliary wheel. A limiting block is fixedly connected to one side of the flip plate, and the limiting block is slidably connected to the arc groove. The inner sides of the two fixed side plates are respectively rotatably connected to an adjusting pressure plate, a placement groove is provided in the adjusting pressure plate, a transmission belt is provided in the placement groove, a steel ball groove is provided in the placement groove, and a plurality of rolling steel balls are evenly provided in the steel ball groove.

[0010] Through the above technical solution, the automatic flipping mechanism can isolate the operator from the sterilization environment, effectively protecting the operator's health and safety, and multiple rolling steel balls can reduce the transmission resistance of the material receiving component.

[0011] The transmission gear is mounted on a link cam of the second end of the driving member, and the transmission gear is mounted on a link cam of the second end of the driving member, wherein the transmission gear is mounted on a link cam of the second end of the driving member, and the transmission gear is mounted on a link cam of the second end of the driving member.

[0012] Through the above technical solution, the output end of the second motor drives the driving wheel to rotate, and the driving wheel drives the second mounting wheel to rotate through the first connecting belt, so that the second mounting wheel simultaneously drives the first mounting wheel and the transmission shaft to rotate, and the first mounting wheel drives the third mounting wheel to rotate through the second connecting belt, and the transmission shaft transmits power to the fourth mounting wheel, and then transmits power to the fifth mounting wheel through the third connecting belt, so that the fifth mounting wheel and the third mounting wheel simultaneously drive the flip plates on both sides to rotate.

[0013] Furthermore, the adjustment mechanism includes a sliding track fixedly connected to the mounting groove, a slider is slidably connected to the sliding track, an adjusting wheel is fixedly installed on the slider, a return spring is fixedly connected to one side of the slider, the other side of the return spring is fixedly connected to the mounting column, and the mounting column is fixedly installed between the mounting groove.

[0014] Through the above technical solution, the output end of the fourth motor drives the driving gear to rotate, and the driving gear drives the mounting ring gear to rotate through engagement. The mounting ring gear transmits power to the main pipe and the branch pipe, so that the branch pipe drives the spray pipe to rotate, and the atomizing nozzle can rotate to spray the agent to sterilize the instruments below.

[0015] Furthermore, the spacing adjustment mechanism includes a third motor fixedly mounted on the fixed platform, the output end of the third motor is fixedly connected to the driving gear, one side of the driving gear is meshed with a driven gear, the driven gear is fixedly mounted between the threaded rod, a wire cylinder is threadedly connected to the threaded rod, the wire cylinder is fixedly mounted to the corresponding fixed side plate, a guide rod is slidably connected in the guide platform, and both ends of the guide rod are respectively fixed to the fixed side plate on one side and the fixed platform on the other side.

[0016] Through the above technical solution, the output end of the third motor drives the driving gear to rotate, and the driving gear drives the driven gear to rotate through engagement, thereby causing the wire cylinder to drive one side of the fixed side plate to slide along the direction of the guide rod. The spacing between the fixed side plates on both sides can be adjusted at will, allowing staff to use different specifications of receiving components according to the number of sterilization instruments required.

[0017] Furthermore, the material receiving assembly includes a mounting frame, and movable plates are symmetrically fixedly connected on both sides of the mounting frame, and the movable plates are arranged in a placement groove. A cover plate is rotatably connected in the mounting frame, and a mounting net is fixedly installed in the cover plate and on the side of the mounting frame away from the cover plate. A fixing groove is opened on one side of the cover plate, and a limiting buckle is provided in the fixing groove, and the limiting buckle is fixedly connected to the mounting frame.

[0018] Through the above technical solution, the staff can place the instruments to be sterilized in the installation frame and close and lock the cover by rotating the limit buckle, which facilitates the subsequent sterilization of both sides of the instruments in the installation frame.

[0019] Furthermore, the sterilization spraying mechanism includes a medicine box fixedly connected to the connecting platform, the lower end of the medicine box is fixedly connected to a fourth motor, the output end of the fourth motor is fixedly connected to the driving gear, and a mounting ring is provided on one side of the driving gear for meshing transmission, the mounting ring is fixedly installed between the main pipeline, the main pipeline is rotatably connected to the medicine box, a plurality of diversion pipes are fixedly installed on the lower end of the main pipeline in a uniform circumference, the lower end of the diversion pipe is fixedly connected to a connecting support seat, an auxiliary support frame is provided on the outside of the connecting support seat, the connecting support seat is rotatably connected to the auxiliary support frame, the auxiliary support frame is fixedly installed to the connecting platform, a spray pipe is fixedly installed on the lower end of the connecting support seat, a plurality of atomizing nozzles are evenly fixedly installed on the lower end of the spray pipe, and the diversion pipe and the spray pipe are connected to each other.

[0020] Through the above technical solution, the output end of the fourth motor drives the driving gear to rotate, and the driving gear drives the mounting ring gear to rotate through engagement. The mounting ring gear transmits power to the main pipe and the branch pipe, so that the branch pipe drives the spray pipe to rotate, and the atomizing nozzle can rotate to spray the agent to sterilize the instruments below.

[0021] The beneficial effects of the present invention are as follows: (1) The present invention can complete a 180-degree flip operation on the sterilized instruments in the receiving assembly without manual flipping by designing a matching driving transmission mechanism, an automatic flipping mechanism and a sterilization spraying mechanism, so that both sides of the instruments can be fully exposed to the sterilization environment of the drug spraying. The device can work continuously and efficiently, matching the large-scale sterilization production process, and helping to improve the overall sterilization efficiency. The automatic flipping mechanism can isolate the operator from the sterilization environment, effectively protecting the health and safety of the operator; (2) The present invention designs a spacing adjustment mechanism, and the spacing of the fixed side panels on both sides can be adjusted at will, so that the staff can use receiving assemblies of different specifications according to the number of instruments to be sterilized. Whether it is a small precision instrument or a large surgical instrument group, it can be placed in a suitable space, which not only enhances the adaptability of the sterilization equipment to the disinfection tasks of different instruments, but also improves the utilization efficiency of the internal space of the disinfection equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 It is a three-dimensional structural diagram of the present invention; Figure 2 This is a first-perspective three-dimensional structural diagram of the synchronous drive mechanism of the present invention; Figure 3 This is a second perspective structural diagram of the synchronous drive mechanism of the present invention; Figure 4 It is a three-dimensional structural diagram of the drive transmission mechanism of the present invention; Figure 5 is a cross-sectional view of the drive shaft of the present invention; Figure 6 It is a three-dimensional structural diagram of the automatic flipping mechanism of the present invention; Figure 7 is a cross-sectional view of the working base plate of the present invention; Figure 8 This invention Figure 6 A partial enlarged view of point A in the middle; Figure 9 It is a three-dimensional structural diagram of the sterilization spraying mechanism of the present invention; Figure 10 1. It is a diagram of the internal structure of the sterilizing spraying mechanism of the present invention; Figure 11 is a cross-sectional view of the sterilization spraying mechanism of the present invention; Figure 12 This is a first-perspective three-dimensional structural diagram of the material receiving assembly of the present invention; Figure 13 This is a second perspective three-dimensional structural diagram of the material receiving assembly of the present invention.

[0023] 1. Working base plate; 11. Fixed platform; 12. Fixed side plate; 13. Support frame; 14. Connecting platform; 15. Arc groove; 16. Mounting groove; 17. Guide platform; 2. Drive transmission mechanism; 20. First motor; 21. Driving wheel; 22. Driving shaft; 23. First driven wheel; 24. Second driven wheel; 25. First transmission belt; 26. Second transmission belt; 27. Third driven wheel; 28. Fourth driven wheel; 29. Fifth driven wheel; 210. Transmission belt; 3. Automatic turning mechanism; 30. Turning plate; 31. First auxiliary wheel; 32. Second auxiliary wheel; 33. Limit block; 34. Adjusting pressure plate; 35. Placement groove; 36. Steel ball groove; 37. Rolling steel ball; 4. Synchronous driving mechanism; 40. Second motor; 41. Driving wheel; 42. Transmission shaft; 43. First mounting wheel; 44. Second mounting wheel; 45 , first connecting belt; 46, third mounting wheel; 47, second connecting belt; 48, fourth mounting wheel; 49, third connecting belt; 410, fifth mounting wheel; 5, adjusting mechanism; 50, sliding track; 51, slider; 52, adjusting wheel; 53, reset spring; 54, mounting column; 6, spacing adjustment mechanism; 60, third motor; 61, driving gear; 62, driven gear; 63, threaded rod; 64, wire cylinder; 65, guide rod; 7, material receiving assembly; 70, mounting frame; 71, cover plate; 72, moving plate; 73, mounting net; 74, fixing groove; 75, limiting buckle; 8, sterilization spray mechanism; 80, medicine box; 81, fourth motor; 82, driving gear; 83, mounting gear ring; 84, main pipeline; 85, diversion pipeline; 86, connecting support seat; 87, spray pipe; 88, atomizing nozzle; 89, support auxiliary frame. DETAILED DESCRIPTION

[0024] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0025] like Figure 1-Figure 3As shown, a sterilization device for assisted reproductive instruments in this embodiment includes a working base plate 1, two fixed side plates 12 are fixedly connected to the working base plate 1, a fixed platform 11 is fixedly installed on one side of the fixed side plate 12, a guide platform 17 is symmetrically fixedly connected to one side of the fixed side plate 12, a support frame 13 is fixedly installed on the working base plate 1, a connecting platform 14 is fixedly connected to the supporting frame 13, and a sterilization spraying mechanism 8 is installed on the lower surface of the connecting platform 14; a driving transmission mechanism 2 is installed on the inner side of the fixed side plate 12, and an automatic turning mechanism is provided on the inner upper end of the fixed side plate 12. Structure 3, a synchronous drive mechanism 4 is fixedly installed on the inner side of the fixed side plate 12, and mounting grooves 16 are symmetrically opened in the two fixed side plates 12, and an adjustment mechanism 5 is provided in the mounting groove 16; an arc groove 15 is opened in the two fixed side plates 12, and a spacing adjustment mechanism 6 is installed on the fixed platform 11. The design of the supporting drive transmission mechanism 2, automatic flipping mechanism 3 and sterilization spraying mechanism 8 can enable the sterilized instruments in the receiving component 7 to complete a 180-degree flip operation without manual flipping, so that both sides of the instruments can be fully exposed to the sterilization environment of the drug spraying.

[0026] like Figure 1-Figure 5 As shown, the drive transmission mechanism 2 includes a first motor 20 fixedly connected to a fixed side plate 12 on one side, a drive shaft 22 is symmetrically connected between the fixed side plates 12 for rotation, one end of the drive shaft 22 is rotationally connected to the fixed platform 11, one end of the drive shaft 22 on one side is fixedly connected to a first driven wheel 23 and a second driven wheel 24, the output end of the first motor 20 is fixedly connected to a drive wheel 21, a first transmission belt 25 is sleeved on the outside of the drive wheel 21, the end of the first transmission belt 25 away from the drive wheel 21 is sleeved on the second driven wheel 24, the first driven wheel 23 is sleeved with a second transmission belt 26, the end of the second transmission belt 26 away from the first driven wheel 23 is sleeved on the outside of the third driven wheel 27, the third driven wheel 27 is fixedly connected to the drive shaft 22 on one side, The two driving shafts 22 are symmetrically engaged and slidingly connected with the fourth driven wheel 28, and the inner sides of the two fixed side plates 12 are symmetrically rotatably connected with the fifth driven wheel 29. The fifth driven wheel 29 and the fourth driven wheel 28 are provided with a transmission belt 210, and the transmission belt 210 is respectively passed through the automatic flipping mechanism 3 and the adjustment mechanism 5. The output end of the first motor 20 drives the driving wheel 21 to rotate, and the driving wheel 21 drives the first driven wheel 23 to rotate through the first transmission belt 25, so that the first driven wheel 23 simultaneously drives the fourth driven wheel 28 on the driving shaft 22 to rotate, and the first driven wheel 23 drives the third driven wheel 27 to rotate through the second transmission belt 26. The rotation of multiple sets of wheels causes the transmission belt 210 to rotate to transmit the material receiving component 7.

[0027] like Figures 1-13As shown, the automatic flipping mechanism 3 includes a flip plate 30, and a first auxiliary wheel 31 is symmetrically connected to the flip plate 30 for rotation. The flip plate 30 is rotatably connected to the second auxiliary wheel 32 at one end away from the first auxiliary wheel 31. A limit block 33 is fixedly connected to one side of the flip plate 30, and the limit block 33 is slidably connected to the arc groove 15. The inner sides of the two fixed side plates 12 are respectively rotatably connected to an adjusting pressure plate 34, and a placement groove 35 is provided in the adjusting pressure plate 34, and a transmission belt 210 is provided in the placement groove 35. A steel ball groove 36 is provided in the placement groove 35, and a plurality of rolling steel balls 37 are evenly provided in the steel ball groove 36. The automatic flipping mechanism 3 can isolate the operator from the sterilization environment, effectively protecting the operator's health and safety, and the plurality of rolling steel balls 37 can make the transmission resistance of the material receiving component 7 smaller.

[0028] like Figure 1-Figure 4 As shown, the synchronous drive mechanism 4 includes a second motor 40 fixedly connected to a fixed side plate 12 on one side, a transmission shaft 42 is symmetrically connected between the fixed side plates 12 for rotation, one end of the transmission shaft 42 is rotationally connected to the fixed platform 11, one end of the transmission shaft 42 on one side is fixedly connected to a first mounting wheel 43 and a second mounting wheel 44, and the output end of the second motor 40 is fixedly connected to a driving wheel 41, a first connecting belt 45 is sleeved on the outer side of the driving wheel 41, and the end of the first connecting belt 45 away from the driving wheel 41 is sleeved on the second mounting wheel 44, a second connecting belt 47 is sleeved on the first mounting wheel 43, and the end of the second connecting belt 47 away from the first mounting wheel 43 is sleeved on the outer side of the third mounting wheel 46, the third mounting wheel 46 is fixedly connected to the flip plate 30, and the fourth mounting wheel is slidably connected to the transmission shaft 42 48. A third connecting belt 49 is provided on the fourth mounting wheel 48. The third connecting belt 49 is provided on the fifth mounting wheel 410 away from the side of the fourth mounting wheel 48. The fifth mounting wheel 410 is fixedly connected to the flip plate 30 on the other side. The output end of the second motor 40 drives the driving wheel 41 to rotate. The driving wheel 41 drives the second mounting wheel 44 to rotate through the first connecting belt 45, so that the second mounting wheel 44 simultaneously drives the first mounting wheel 43 and the transmission shaft 42 to rotate, and the first mounting wheel 43 drives the third mounting wheel 46 to rotate through the second connecting belt 47. The transmission shaft 42 transmits power to the fourth mounting wheel 48, and then transmits power to the fifth mounting wheel 410 through the third connecting belt 49, so that the fifth mounting wheel 410 and the third mounting wheel 46 simultaneously drive the flip plates 30 on both sides to rotate.

[0029] like Figures 1-8As shown, the adjustment mechanism 5 includes a sliding track 50 fixedly connected to the mounting groove 16, a slider 51 is slidably connected to the sliding track 50, an adjusting wheel 52 is fixedly installed on the slider 51, a return spring 53 is fixedly connected to one side of the slider 51, and the other side of the return spring 53 is fixedly connected to the mounting column 54, and the mounting column 54 is fixedly installed between the mounting groove 16. The output end of the fourth motor 81 drives the driving gear 82 to rotate, and the driving gear 82 drives the mounting ring gear 83 to rotate through engagement. The mounting ring gear 83 transmits power to the main pipe 84 and the shunt pipe 85, so that the shunt pipe 85 drives the spray pipe 87 to rotate, and the atomizing nozzle 88 can rotate to spray the agent to sterilize the instruments below.

[0030] like Figures 1-6 As shown, the spacing adjustment mechanism 6 includes a third motor 60 fixedly mounted on the fixed platform 11, and the output end of the third motor 60 is fixedly connected to the driving gear 61, and a driven gear 62 is meshed and transmitted on one side of the driving gear 61, and the driven gear 62 is fixedly installed between the threaded rod 63, and a wire cylinder 64 is threadedly connected to the threaded rod 63, and the wire cylinder 64 is fixedly mounted on the corresponding fixed side plate 12 on one side, and a guide rod 65 is slidably connected in the guide platform 17, and the two ends of the guide rod 65 are respectively fixed to the fixed side plate 12 on one side and the fixed platform 11 on the other side. The output end of the third motor 60 drives the driving gear 61 to rotate, and the driving gear 61 drives the driven gear 62 to rotate by meshing, thereby causing the wire cylinder 64 to drive the fixed side plate 12 on one side to slide along the direction of the guide rod 65. The spacing between the fixed side plates 12 on both sides can be adjusted at will, so that the staff can use material receiving components 7 of different specifications according to the number of sterilization instruments required.

[0031] like Figures 1-13 As shown, the material receiving assembly 7 includes a mounting frame 70, and movable plates 72 are symmetrically fixedly connected on both sides of the mounting frame 70. The movable plates 72 are arranged in the placement groove 35. A cover plate 71 is rotatably connected in the mounting frame 70. A mounting net 73 is fixedly installed in the cover plate 71 and on the side of the mounting frame 70 away from the cover plate 71. A fixing groove 74 is opened on one side of the cover plate 71, and a limiting buckle 75 is provided in the fixing groove 74. The limiting buckle 75 is fixedly connected to the mounting frame 70. The staff can place the instruments to be sterilized in the mounting frame 70 and close and lock the cover plate 71 by rotating the limiting buckle 75, so as to facilitate the subsequent sterilization of both sides of the instruments in the mounting frame 70.

[0032] like Figures 1-11As shown, the sterilization spraying mechanism 8 includes a medicine box 80 fixedly connected to the connecting platform 14, the lower end of the medicine box 80 is fixedly connected to a fourth motor 81, the output end of the fourth motor 81 is fixedly connected to a driving gear 82, and a mounting ring gear 83 is provided on one side of the driving gear 82 for meshing transmission. The mounting ring gear 83 is fixedly installed between the main pipe 84, and the main pipe 84 is rotatably connected to the medicine box 80. A plurality of shunt pipes 85 are fixedly installed on the lower end of the main pipe 84 in a uniform circumference, and the lower end of the shunt pipe 85 is fixedly connected to a connecting support seat 86, and a supporting auxiliary frame 89 is provided on the outside of the connecting support seat 86. The connecting support seat 86 is connected to The support auxiliary frame 89 is rotatably connected, the support auxiliary frame 89 is fixedly installed with the connecting platform 14, the lower end of the connecting support seat 86 is fixedly installed with a spray pipe 87, and the lower end of the spray pipe 87 is evenly fixedly installed with a plurality of atomizing nozzles 88. The shunt pipe 85 and the spray pipe 87 are interconnected, and the output end of the fourth motor 81 drives the driving gear 82 to rotate, and the driving gear 82 drives the mounting ring gear 83 to rotate through engagement. The mounting ring gear 83 transmits power to the main pipe 84 and the shunt pipe 85, so that the shunt pipe 85 drives the spray pipe 87 to rotate, and the atomizing nozzle 88 can rotate to spray the agent to sterilize the instruments below.

[0033] The working principle of this embodiment is as follows: the power supply of the first motor 20 is started, and the output end of the first motor 20 drives the driving wheel 21 to rotate. The driving wheel 21 drives the first driven wheel 23 to rotate through the first transmission belt 25, thereby causing the first driven wheel 23 to simultaneously drive the fourth driven wheel 28 on the driving shaft 22 to rotate, and the first driven wheel 23 drives the third driven wheel 27 to rotate through the second transmission belt 26. The rotation of multiple groups of wheels causes the transmission belt 210 to rotate to transport the material receiving assembly 7;

[0034] The staff places the instrument to be sterilized in the mounting frame 70 and closes and locks the cover 71 by rotating the limit buckle 75, so that the movable plate 72 is aligned with the placement slot 35 and placed. The transmission belt 210 drives the receiving assembly 7 to move;

[0035] When the material receiving assembly 7 moves to the automatic turning mechanism 3, the power supply of the second motor 40 is started, and the output end of the second motor 40 drives the driving wheel 41 to rotate, and the driving wheel 41 drives the second mounting wheel 44 to rotate through the first connecting belt 45, so that the second mounting wheel 44 simultaneously drives the first mounting wheel 43 and the transmission shaft 42 to rotate, and the first mounting wheel 43 drives the third mounting wheel 46 to rotate through the second connecting belt 47, and the transmission shaft 42 transmits power to the fourth mounting wheel 48, and then transmits power to the fifth mounting wheel 410 through the third connecting belt 49, so that the fifth mounting wheel 410 and the third mounting wheel 46 simultaneously drive the turning plates 30 on both sides to rotate;

[0036] The rotation of the flip plate 30 drives the receiving assembly 7 between the transmission belts 210 to flip. Since the center of the mounting frame 70 corresponds to the first auxiliary wheel 31, the rotation of the flip plate 30 can drive the receiving assembly 7 to flip 180 degrees in place. The flipped receiving assembly 7 is then transported to the unloading location on the other side of the device via the transmission belt 210.

[0037] Start the power supply of the fourth motor 81, and the output end of the fourth motor 81 drives the driving gear 82 to rotate. The driving gear 82 drives the mounting ring gear 83 to rotate through engagement. The mounting ring gear 83 transmits power to the main pipe 84 and the branch pipe 85, so that the branch pipe 85 drives the spray pipe 87 to rotate, and the atomizing nozzle 88 can rotate to spray the agent to sterilize the instruments below.

[0038] The above description is merely a preferred embodiment of the present invention and is not intended to limit the scope of protection of the present invention.

Claims

1. A sterilization device for assisted reproductive instruments, comprising a working base plate (1), characterized in that: Two fixed side plates (12) are fixedly connected to the working base plate (1), a fixed platform (11) is fixedly installed on one side of the fixed side plate (12), a guide platform (17) is symmetrically fixedly connected to the fixed side plate (12) on one side, a support frame (13) is fixedly installed on the working base plate (1), a connecting platform (14) is fixedly connected to the supporting frame (13), and a sterilizing spraying mechanism (8) is installed on the lower surface of the connecting platform (14); A driving transmission mechanism (2) is installed on the inner side of the fixed side plate (12), an automatic flipping mechanism (3) is provided on the upper end of the inner side of the fixed side plate (12), a synchronous driving mechanism (4) is fixedly installed on the inner side of the fixed side plate (12), and mounting grooves (16) are symmetrically opened in the two fixed side plates (12), and an adjustment mechanism (5) is provided in the mounting grooves (16); Arc grooves (15) are provided in the two fixed side plates (12), and a spacing adjustment mechanism (6) is installed on the fixed platform (11).

2. The sterilization device for assisted reproductive instruments according to claim 1, characterized in that: The driving transmission mechanism (2) includes a first motor (20) fixedly connected to a fixed side plate (12) on one side, a driving shaft (22) is symmetrically connected to the fixed side plates (12), one end of the driving shaft (22) is rotatably connected to the fixed platform (11), one end of the driving shaft (22) is fixedly connected to a first driven wheel (23) and a second driven wheel (24), the output end of the first motor (20) is fixedly connected to a driving wheel (21), the outer side of the driving wheel (21) is provided with a first transmission belt (25), the end of the first transmission belt (25) away from the driving wheel (21) is provided on the second driven wheel (24), and the first A second transmission belt (26) is sleeved on the driven wheel (23), and one end of the second transmission belt (26) away from the first driven wheel (23) is sleeved on the outside of the third driven wheel (27). The third driven wheel (27) is fixedly connected to a driving shaft (22) on one side. A fourth driven wheel (28) is symmetrically engaged and slidably connected on the two driving shafts (22). A fifth driven wheel (29) is symmetrically rotatably connected on the inner sides of the two fixed side plates (12). A transmission belt (210) is sleeved on the fifth driven wheel (29) and the fourth driven wheel (28), and the transmission belt (210) is sleeved through the automatic turning mechanism (3) and the adjustment mechanism (5).

3. The sterilization device for assisted reproductive instruments according to claim 1, characterized in that: The automatic flipping mechanism (3) comprises a flipping plate (30), a first auxiliary wheel (31) is symmetrically rotatably connected to the flipping plate (30), a second auxiliary wheel (32) is rotatably connected to one end of the flipping plate (30) away from the first auxiliary wheel (31), a limiting block (33) is fixedly connected to one side of the flipping plate (30), the limiting block (33) is slidably connected to the arc groove (15), and an adjusting pressure plate (34) is rotatably connected to the inner side of the two fixed side plates (12), a placement groove (35) is provided in the adjusting pressure plate (34), a transmission belt (210) is provided in the placement groove (35), a steel ball groove (36) is provided in the placement groove (35), and a plurality of rolling steel balls (37) are evenly provided in the steel ball groove (36).

4. The sterilization device for assisted reproductive instruments according to claim 3, characterized in that: The synchronous drive mechanism (4) includes a second motor (40) fixedly connected to a fixed side plate (12) on one side, a transmission shaft (42) is symmetrically connected between the fixed side plates (12), one end of the transmission shaft (42) is rotatably connected to the fixed platform (11), one end of the transmission shaft (42) is fixedly connected to a first mounting wheel (43) and a second mounting wheel (44), an output end of the second motor (40) is fixedly connected to a driving wheel (41), an outer side of the driving wheel (41) is provided with a first connecting belt (45), and an end of the first connecting belt (45) away from the driving wheel (41) is provided on the second mounting wheel (44). The first mounting wheel (43) is provided with a second connecting belt (47), and the second connecting belt (47) is provided on the outside of the third mounting wheel (46) at one end away from the first mounting wheel (43). The third mounting wheel (46) is fixedly connected to the flip plate (30). The transmission shaft (42) is engaged and slidably connected with a fourth mounting wheel (48). The fourth mounting wheel (48) is provided with a third connecting belt (49). The third connecting belt (49) is provided on the fifth mounting wheel (410) at one side away from the fourth mounting wheel (48). The fifth mounting wheel (410) is fixedly connected to the flip plate (30) on the other side.

5. The sterilization device for assisted reproductive instruments according to claim 1, characterized in that: The adjustment mechanism (5) comprises a sliding track (50) fixedly connected to the mounting groove (16); a slider (51) is slidably connected to the sliding track (50); an adjustment wheel (52) is fixedly mounted on the slider (51); a return spring (53) is fixedly connected to one side of the slider (51); the other side of the return spring (53) is fixedly connected to a mounting post (54); and the mounting post (54) is fixedly mounted to the mounting groove (16).

6. The sterilization device for assisted reproductive instruments according to claim 1, characterized in that: The spacing adjustment mechanism (6) includes a third motor (60) fixedly mounted on the fixed platform (11), an output end of the third motor (60) is fixedly connected to a driving gear (61), one side of the driving gear (61) is meshed with a driven gear (62), the driven gear (62) is fixedly mounted on a threaded rod (63), a wire cylinder (64) is threadedly connected to the threaded rod (63), the wire cylinder (64) is fixedly mounted to the corresponding fixed side plate (12), a guide rod (65) is slidably connected in the guide platform (17), and two ends of the guide rod (65) are respectively fixed to the fixed side plate (12) on one side and the fixed platform (11) on the other side.

7. The sterilization device for assisted reproductive instruments according to claim 3, characterized in that: The receiving assembly (7) comprises a mounting frame (70), wherein movable plates (72) are symmetrically fixedly connected to both sides of the mounting frame (70), wherein the movable plates (72) are arranged in the placement groove (35), wherein a cover plate (71) is rotatably connected in the mounting frame (70), wherein a mounting net (73) is fixedly installed in the cover plate (71) and on a side of the mounting frame (70) away from the cover plate (71), wherein a fixing groove (74) is provided on one side of the cover plate (71), wherein a limiting buckle (75) is arranged in the fixing groove (74), and wherein the limiting buckle (75) is fixedly connected to the mounting frame (70).

8. The sterilization device for assisted reproductive instruments according to claim 1, characterized in that: The sterilization spraying mechanism (8) includes a medicine box (80) fixedly connected to the connecting platform (14), a fourth motor (81) fixedly connected to the lower end of the medicine box (80), an output end of the fourth motor (81) fixedly connected to a driving gear (82), a mounting ring gear (83) meshingly provided on one side of the driving gear (82), the mounting ring gear (83) fixedly installed with the main pipe (84), the main pipe (84) and the medicine box (80) are rotatably connected, and a plurality of diversion pipes are fixedly installed on the lower end of the main pipe (84) at a uniform circumference. The shunt pipe (85) is fixedly connected to a connecting support seat (86) at the lower end thereof, an auxiliary support frame (89) is provided outside the connecting support seat (86), the connecting support seat (86) and the auxiliary support frame (89) are rotatably connected, the auxiliary support frame (89) is fixedly installed to the connecting platform (14), a spray pipe (87) is fixedly installed at the lower end of the connecting support seat (86), and a plurality of atomizing nozzles (88) are evenly fixedly installed at the lower end of the spray pipe (87), and the shunt pipe (85) and the spray pipe (87) are interconnected.