Anti-infection isolation device convenient for clinical medicine of neonatology department

The design of the motor-driven rotating side plate and disinfection components enables convenient operation and safe disinfection of the neonatal infection prevention and isolation device, solving the problems of cumbersome operation and pathogen hazards of existing devices, and improving the practicality and safety of the device.

CN121891202APending Publication Date: 2026-04-21YANGZHOU FIRST PEOPLES HOSPITAL
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
YANGZHOU FIRST PEOPLES HOSPITAL
Filing Date
2023-07-24
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

In existing neonatal infection prevention and isolation devices, the operation of raising the neonatal cot and operating the closed isolation box are separate, which makes the operation cumbersome, and manual operation by medical staff may introduce pathogens.

Method used

An infection prevention and isolation device was designed. The control component controls the synchronous movement of the rotating side plate and the placement bed by controlling the motor, so as to realize the automatic opening and closing of the isolation cover. The disinfection component protects medical staff when the isolation cover is open and disinfects the inner cavity of the isolation box when it is closed.

Benefits of technology

The operation process has been simplified, the convenience and safety of the device have been improved, the safety of medical staff has been protected, and pathogens have been prevented from entering the isolation chamber and causing harm to newborns.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an anti-infection isolation device convenient for clinical medicine of the neonatology department, and particularly relates to the technical field of isolation devices.The anti-infection isolation device comprises a base, bearing plates are fixed to the left end and the right end of the base, an anti-infection isolation component is fixed to the upper ends of the two bearing plates jointly, and a control assembly is fixed to the left side of the front end of the base; a mounting frame is fixed to the left end of the anti-infection isolation part, a first motor is fixed to the upper end of the mounting frame, a disinfection part is fixed to the rear sides of the left end and the right end of the anti-infection isolation part, and an air interchanger is arranged at the rear end of the anti-infection isolation part. According to the anti-infection isolation device convenient for clinical medicine of the neonatology department, the placement bed can be moved upwards while the isolation cover is opened, medical staff of different heights can nurse a newborn in the isolation box conveniently, the operation process is simplified, the isolation cover is controlled through the control assembly, and the operation efficiency is improved. And the closing and opening of the device can be conveniently operated by a single medical worker.
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Description

Technical Field

[0001] This invention relates to the field of isolation device technology, and in particular to an infection prevention isolation device that is convenient for clinical use in neonatal intensive care. Background Technology

[0002] Newborns have poor adaptability to the external environment and weak resistance to diseases, making them prone to various infections, including environmental and iatrogenic infections. After infection, recovery is slow and the mortality rate is high. In order to prevent hospital-acquired infections and ensure the safety of newborns, it is necessary to use infection prevention devices for isolation and protection, avoid environmental and iatrogenic infections, and enhance the newborn's resistance.

[0003] Chinese patent document CN112494250A discloses an infection-prevention isolation device for neonatal clinical medicine, which solves the problems of existing neonatal isolation devices being small in size, making it inconvenient to place newborns inside, and the limited space hindering medical staff from performing medical procedures on newborns. The device includes a linkage lifting mechanism, consisting of an upper linkage and a lower linkage. The newborn cradle of this device can be raised and lowered autonomously. It can rise from inside the isolation box to the top of the box for easy placement of newborns and medical procedures by medical staff, and then the cradle can be lowered back into the isolation box and the top isolation cover closed, making operation convenient and flexible for medical staff.

[0004] The neonatal cradle in the device is driven by a lifting mechanism, while the lid of the isolation box needs to be manually closed by medical staff. This operation is cumbersome and inconvenient to use. Furthermore, when medical staff manually close the isolation lid, germs may enter the isolation box and cause harm to the newborn. Summary of the Invention

[0005] The main objective of this invention is to provide a convenient infection prevention and isolation device for clinical use in neonatal wards, which can effectively solve the problem that the operation of the device is cumbersome because the raising of the neonatal cradle and the closed isolation box are operated separately.

[0006] To achieve the above objectives, the technical solution adopted by the present invention is as follows:

[0007] A convenient infection prevention and isolation device for clinical use in neonatal wards includes a base, with support plates fixed at both ends of the base. An infection prevention and isolation component is fixed at the upper end of both support plates. A control component is fixed at the left front end of the base. A mounting frame is fixed at the left end of the infection prevention and isolation component. A motor is fixed at the upper end of the mounting frame. A disinfection component is fixed at the rear sides of both ends of the infection prevention and isolation component. A ventilation device is provided at the rear end of the infection prevention and isolation component.

[0008] The disinfection component includes two pillars, with a protective block fixed to one end of each pillar close to the other. A mounting plate is fixed to the front end of each pillar. A disinfection lamp is fixed to the end of the mounting plate on the right side near the protective block. A connecting plate is provided at the end of the mounting plate on the left side away from the protective block. A mounting shaft is fixed to the left end of the connecting plate, and a pulley is fixed to the outer surface of the mounting shaft. A protective tube is fixed to the right end of the connecting plate, and a circular plate is fixed to the left side of the inner surface of the protective tube.

[0009] Preferably, the protective tube passes through the mounting plate on the left side and is rotatably connected to the mounting plate on the right side, and the left end of the disinfection lamp is rotatably connected to the right end of the circular plate.

[0010] Preferably, the infection prevention isolation component includes an isolation box, with two operating components at the front end of the isolation box, an isolation groove at the top of the isolation box, and rotating grooves on both the left and right sides of the top of the isolation box. Rotating side plates are provided inside the inner cavities of both rotating grooves, and an isolation cover is fixed to the outer surfaces of both rotating side plates. An arc-shaped groove adapted to the isolation cover is provided on the rear side of the top of the isolation box, and a cleaning block that mates with the isolation cover is fixed to the rear side of the top of the isolation box. Matching plates are fixed to the left and right side walls of the inner cavity of the isolation groove, and a moving component is fixed to the bottom wall of the isolation groove. A placement component is provided at the ends of the two matching plates that are close to each other.

[0011] Preferably, the left end of the isolation box is provided with a rotating shaft one and a rotating shaft two. The rotating shaft one passes through the isolation box and extends out of the right end of the isolation box. The rotating shaft two passes through the isolation box and is rotatably connected to the right side wall of the inner cavity of the isolation groove. The left and right sides of the outer surface of the rotating shaft one are fixed with pulley three. The left side of the outer surface of the rotating shaft two is fixed with pulley four. The outer surface of the pulley four and the outer surface of the pulley one are together wound with a transmission belt. The outer surfaces of the rotating shaft one and the rotating shaft two are each fixed with two symmetrical gears.

[0012] Preferably, a connecting shaft is fixed at the center of the two rotating side plates at their opposite ends, and a second pulley is fixed on the outer surface of each of the two connecting shafts. A transmission belt is wound around the outer surface of the second pulley and the third pulley on the same side. The output end of the first motor is fixedly connected to the connecting shaft on the left side.

[0013] Preferably, the mating plate has two symmetrical mating grooves at one end near the mounting component.

[0014] Preferably, the placement component includes a placement bed, with a placement pad fixed inside the placement component. Two mating posts are fixed at both ends of the placement bed, and the two mating posts on the same side are adapted to the two mating grooves on the same side. An installation block is provided at the lower end of the placement bed, and two symmetrical installation grooves are opened at the upper end of the installation block. Connecting springs are fixed on the front and rear side walls of the inner cavity of the two installation grooves. A slider is fixed at one end of the two connecting springs on the same side that is close to each other. The upper ends of the two sliders are fixedly connected to the lower end of the placement bed. Two symmetrical sliding posts are fixed on both the left and right sides of the lower end of the installation block.

[0015] Preferably, the moving component includes a moving box, with rack plates fixed at both the front and rear ends of the moving box. Two fixing plates are fixed to the bottom wall of the inner cavity of the moving box. A connecting inclined plate is fixed to the upper end of each of the two fixing plates. A buffer plate is fixed to the end of each of the two connecting inclined plates away from the fixing plates. Two sliding grooves adapted to the sliding columns on the same side are opened on the upper end of each of the two buffer plates. Two symmetrical buffer springs are fixed to the upper end of each of the two buffer plates.

[0016] Preferably, the rack plate engages with the two gears on the same side.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] 1. When in use, this device controls the rotation of motor number one via the control component, which causes the two rotating side plates to open the isolation cover. Simultaneously, with the cooperation of the internal transmission components, the placement bed moves upwards while swaying left and right at the top of the mounting block. This swaying alleviates discomfort to the newborn caused by the movement of the placement bed. The device's ability to move the placement bed upwards while opening the isolation cover facilitates care for newborns in the isolation box by medical personnel of different heights, simplifying the operation process. Controlling the isolation cover via the control component also allows for single-person operation of the device's opening and closing, enhancing its convenience.

[0019] 2. This device, through its disinfection components, operates by rotating two gears via a rack and pinion plate at the rear when the isolation chamber is open. This causes the pulley four on the outer surface of the rotating shaft two to rotate via a transmission belt, which in turn rotates the connecting plate carrying the protective tube, blocking the disinfection lamp and preventing it from shining on medical personnel, thus protecting their safety. When the isolation chamber is closed, the rotation of the pulley one causes the connecting plate to rotate the protective tube, aligning the notch in the protective tube with the notch in the protective block. This allows the disinfection lamp to shine on the outer surface of the isolation chamber, preventing pathogens from entering the inner cavity of the isolation chamber and harming the newborn inside. This enhances the practicality of the device. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0021] Figure 2 This is a rear view of the overall structure of the present invention;

[0022] Figure 3 This is a schematic diagram of the disinfection component structure of the present invention;

[0023] Figure 4 This is a cross-sectional view of the disinfection component of the present invention;

[0024] Figure 5 This is a schematic diagram of the anti-infection isolation component of the present invention;

[0025] Figure 6 This is a schematic diagram of the isolation box structure of the present invention;

[0026] Figure 7 This is a cross-sectional view of the isolation box of the present invention;

[0027] Figure 8 This is a cross-sectional view of the infection-proof isolation component of the present invention;

[0028] Figure 9 This is a schematic diagram of the mounting component structure of the present invention. Figure 1 ;

[0029] Figure 10 This is a schematic diagram of the mounting component structure of the present invention. Figure 2 ;

[0030] Figure 11 This is a schematic diagram of the moving component structure of the present invention;

[0031] Figure 12 This is a cross-sectional view of the movable component of the present invention.

[0032] In the diagram: 1. Base; 2. Support plate; 3. Infection-proof isolation component; 30. Isolation box; 301. Rotating groove; 302. Isolation groove; 303. Arc groove; 304. Rotating shaft one; 305. Rotating shaft two; 306. Pulley three; 307. Pulley four; 308. Gear; 31. Operating component; 33. Cleaning block; 34. Rotating side plate; 340. Connecting shaft; 341. Pulley two; 35. Isolation cover; 36. Mating plate; 360. Mating groove; 37. Moving component; 370. Moving box; 371. Rack plate; 372. Fixed plate; 3 73. Connecting inclined plate; 374. Buffer plate; 375. Buffer spring; 38. Placement component; 380. Placement bed; 381. Placement pad; 382. Matching column; 383. Mounting block; 384. Mounting groove; 385. Connecting spring; 386. Slider; 387. Sliding column; 4. Disinfection component; 40. Support column; 41. Protective block; 42. Disinfection lamp; 43. Mounting plate; 44. Connecting plate; 45. Mounting shaft; 46. Belt pulley one; 47. Protective tube; 48. Circular plate; 5. Control component; 6. Mounting frame; 7. Motor No. 1; 9. Ventilation device. Detailed Implementation

[0033] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.

[0034] like Figure 1-12 As shown, a convenient infection prevention and isolation device for neonatal clinical use includes a base 1, with support plates 2 fixed at both ends of the base 1. An infection prevention and isolation component 3 is fixed at the upper end of both support plates 2. A control component 5 is fixed at the left front end of the base 1. The control component 5 is electrically connected to a No. 1 motor 7. The control component 5 can control the start and stop of the No. 1 motor 7, making the device more convenient to use. A mounting bracket 6 is fixed at the left end of the infection prevention and isolation component 3. The mounting bracket 6 is used to install the motor. The No. 1 motor 7 is fixed at the upper end of the mounting bracket 6. Disinfection components 4 are fixed at the rear sides of both ends of the infection prevention and isolation component 3. A ventilation device 9 is provided at the rear end of the infection prevention and isolation component 3. The ventilation device 9 is existing technology. The input end of the ventilation device 9 extends into the inner cavity of the isolation box 30 to keep the oxygen in the inner cavity of the isolation box 30 sufficient.

[0035] To disinfect and sterilize the outer surface of the isolation cover 35, a disinfection component 4 is installed at the upper end of the isolation box 30, specifically as follows: Figure 3-4As shown, the disinfection component 4 includes two support pillars 40, which are fixed to the left and right ends of the isolation box 30. A protective block 41 is fixed to the end of the two support pillars 40 that is close to each other. A cylindrical groove is opened on the front surface of the protective block 41 for installing the protective tube 47. A notch is formed between the cylindrical groove and the protective block 41 so that the disinfection lamp 42 can irradiate the outer surface of the isolation cover 35. A mounting plate 43 is fixed to the front end of each of the two support pillars 40. The end of the mounting plate 43 on the right side that is close to the protective block 41 is fixed with the disinfection lamp 42. The disinfection lamp 42 is a commonly used existing technology in hospitals.

[0036] Furthermore, a connecting plate 44 is provided at the end of the mounting plate 43 on the left side away from the protective block 41. The connecting plate 44 is rotatably connected to the mounting plate 43. A mounting shaft 45 is fixed at the left end of the connecting plate 44. A pulley 46 is fixed on the outer surface of the mounting shaft 45. A protective tube 47 is fixed at the right end of the connecting plate 44. The protective tube 47 is installed in the inner cavity of the cylindrical groove on the front side of the protective block 41. The protective tube 47 is a round tube with one-quarter cut off. Therefore, when the disinfection lamp 42 is opened in the inner cavity of the protective block 41, it can only irradiate from the one-quarter cut off of the protective tube 47. The irradiated area is only on the upper surface of the isolation cover 35. A round plate 48 is fixed on the left side of the inner surface of the protective tube 47.

[0037] The protective tube 47 passes through the mounting plate 43 on the left and is rotatably connected to the mounting plate 43 on the right. The protective tube 47 is also rotatably connected to the mounting plate 43 on the left. The left end of the disinfection lamp 42 is rotatably connected to the right end of the circular plate 48. When the circular plate 48 rotates with the protective tube 47, the disinfection lamp 42 rotates on the circular plate 48. The end of the disinfection lamp 42 away from the circular plate 48 is fixed, so the disinfection lamp 42 can be kept fixed and its operation is not affected.

[0038] To facilitate the isolation of newborns, this device is equipped with an infection-proof isolation component 3, specifically as follows: Figure 5-12 As shown, the infection prevention isolation component 3 includes an isolation box 30. The front end of the isolation box 30 is provided with two operating components 31, which penetrate through the isolation box 30. The inside is hollow, and the outside has a detachable cover, which facilitates medical staff to perform nursing operations on the newborn on the placement bed 380 without opening the isolation cover 35. The upper end of the isolation box 30 is provided with an isolation groove 302, which is a T-shaped groove, wider at the top and narrower at the bottom. The left and right sides of the upper end of the isolation box 30 are provided with rotating grooves 301. The inner cavity of the two rotating grooves 301 is provided with rotating side plates 34, which rotate within the inner cavity of the rotating grooves 301. The outer surfaces of the two rotating side plates 34 are jointly fixed with an isolation cover 35. The isolation cover 35 is protected against ultraviolet radiation to prevent the disinfection lamp 42 from shining on the isolation cover 35 and causing harm to the newborn. The isolation cover 35 is also transparent, which makes it easy for medical staff to observe the condition of the newborn on the placement bed 380.

[0039] Furthermore, an arc-shaped groove 303 adapted to the isolation cover 35 is provided on the upper rear side of the isolation box 30. When the isolation cover 35 rotates, it can enter the inner cavity of the arc-shaped groove 303. A cleaning block 33 that cooperates with the isolation cover 35 is fixed on the upper rear side of the isolation box 30. The arc-shaped surface of the cleaning block 33 is in close contact with the outer surface of the isolation cover 35, and the arc-shaped surface of the cleaning block 33 is covered with sterile cloth, which can clean the outer surface of the isolation cover 35. The left and right side walls of the inner cavity of the isolation groove 302 are fixed with mating plates 36. The bottom wall of the isolation groove 302 is fixed with a moving part 37. The two mating plates 36 are close to each other and are provided with a placement part 38. The two mating plates 36 are slidably connected to the placement part 38.

[0040] Then, the left end of the isolation box 30 is provided with a rotating shaft 304 and a rotating shaft 305. The rotating shaft 304 and the rotating shaft 305 are also rotatably connected to the left end of the isolation box 30. The rotating shaft 304 passes through the isolation box 30 and extends out of the right end of the isolation box 30. The rotating shaft 305 passes through the isolation box 30 and is rotatably connected to the right side wall of the inner cavity of the isolation groove 302. The rotating shaft 304 and the rotating shaft 305 are parallel to each other. The left and right sides of the outer surface of the rotating shaft 304 are fixed with pulleys 306. The left side of the outer surface of the rotating shaft 305 is fixed with pulley 407. The pulleys 306 and 407 are not on the same plane. The outer surfaces of the pulleys 407 and 46 are wound with a transmission belt. The rotation of the pulleys 407 can drive the pulleys 46 to rotate. The outer surfaces of the rotating shafts 304 and 205 are fixed with two symmetrical gears 308. The gears 308 are adapted to the rack plate 371.

[0041] Furthermore, a connecting shaft 340 is fixed at the center of the two rotating side plates 34 at their opposite ends. The connecting shaft 340 passes through the isolation box 30 and is rotatably connected to the isolation box 30. A second pulley 341 is fixed on the outer surface of each of the two connecting shafts 340. A transmission belt is wound around the outer surface of the second pulley 341 and the third pulley 306 on the same side. The output end of the first motor 7 is fixedly connected to the left connecting shaft 340. When the first motor 7 is started, the second pulley 341 can rotate, and the rotating side plate 34 can also rotate. When the second pulley 341 rotates, it can drive the third pulley 306 to rotate through the transmission belt.

[0042] The mating plate 36 has two symmetrical mating grooves 360 at one end near the placement component 38. The mating grooves 360 are wavy in shape. Two mating posts 382 on the same side are adapted to the two mating grooves 360 on the same side. When the placement component 38 moves upward, the mating posts 382 slide in the inner cavity of the mating grooves 360, which can cause the placement bed 380 to sway slightly from side to side, which can relieve the discomfort of the newborn when the placement bed 380 moves upward.

[0043] The placement component 38 is a component used to place the newborn, specifically as follows: Figure 8-10As shown, the placement component 38 includes a placement bed 380, and a placement pad 381 is fixed inside the placement component 38. The placement pad 381 is existing technology and is sterile. Two mating columns 382 are fixed at both ends of the placement bed 380.

[0044] Furthermore, the lower end of the placement bed 380 is provided with a mounting block 383, which is slidably connected to the placement bed 380. The upper end of the mounting block 383 has two symmetrical mounting grooves 384. The front and rear side walls of the inner cavity of the two mounting grooves 384 are fixed with connecting springs 385. The two connecting springs 385 on the same side are fixed with sliders 386 at their close ends. The sliders 386 slide in the inner cavity of the mounting grooves 384 on the same side. The upper ends of the two sliders 386 are fixedly connected to the lower end of the placement bed 380, so that the placement bed 380 can slide left and right on the upper end of the mounting block 383. The lower left and right sides of the mounting block 383 are fixed with two symmetrical sliding posts 387. The two sliding posts 387 on the same side can be inserted into the two sliding grooves on the upper end of the buffer plate 374 on the same side, so that the mounting block 383 is fixed with the buffer springs 375, which can provide elastic support for the placement component 38, making the newborn more comfortable on the placement pad 381.

[0045] To enable the mounting component 38 to move upward, a movable component 37 for fixing the mounting component 38 is provided on the lower side of the mounting component 38, specifically as follows: Figure 11-12 As shown, the movable component 37 includes a movable housing 370. Rack plates 371 are fixed to both the front and rear ends of the movable housing 370. The rack plates 371 mesh with two gears 308 on the same side. Two fixing plates 372 are fixed to the bottom wall of the inner cavity of the movable housing 370. Connecting inclined plates 373 are fixed to the upper ends of both fixing plates 372. The connecting inclined plates 373 are fixed at a certain angle to increase the strength of the support.

[0046] Then, buffer plates 374 are fixed to the ends of the two connecting inclined plates 373 away from the fixed plate 372. Two sliding grooves that are adapted to the sliding columns 387 on the same side are opened on the upper end of the two buffer plates 374. Two symmetrical buffer springs 375 are fixed to the upper end of the two buffer plates 374. The buffer springs 375 are fixedly connected to the lower end of the mounting block 383. The four buffer springs 375 provide support for the mounting block 383. When the newborn is placed in the cavity of the placement bed 380, the four buffer springs 375 can provide cushioning.

[0047] It should be noted that the isolation box 30, operating component 31, placement pad 381, disinfection lamp 42 and ventilation device 9 in this invention are all conventional technologies in the prior art, and their installation methods and control methods are all conventional designs.

[0048] Specific implementation of this embodiment: This device is an isolation device for infection prevention in neonatal clinical medicine. When in use, the isolation cover 35 of the device is open. The newborn is placed on the placement pad 381 in the inner cavity of the placement bed 380. Then, the control component 5 is used to control the start of the first motor 7. The output end of the first motor 7 is fixedly connected to the left connecting shaft 340, so that the left rotating side plate 34 rotates with the left pulley 341. The outer surfaces of the two rotating side plates 34 are fixed together to the isolation cover 35, so the right rotating side plate 34 also rotates, so that the isolation cover 35 rotates from the inner cavity of the arc groove 303 to cover the upper end of the isolation box 30.

[0049] When motor 7 starts, pulley 2 341 on the left side rotates with connecting shaft 340 on the left side. Connecting shaft 340 and pulley 306 on the same side are connected to a transmission belt. Therefore, rotating shaft 1 304, which is fixed to pulley 306, will also rotate, thereby causing the two gears 308 connected to rotating shaft 1 304 to rotate.

[0050] The two gears 308 on the outer surface of the rotating shaft 304 rotate, causing the rack plate 371 on the same side to move downward under the drive of the two gears 308. This causes the mounting block 383, which is fixed to the upper end of the four buffer springs 375, to also move downward. When the mounting block 383 moves downward, the mating columns 382 at the left and right ends of the placement bed 380 slide in the inner cavity of the mating groove 360 ​​on the same side, causing the placement bed 380 to sway left and right, relieving the discomfort caused to the newborn by the movement of the placement bed 380. Meanwhile, the two sliders 386 at the lower end of the placement bed 380 slide in the inner cavity of the mounting groove 384. The two connecting springs 385 on the same side provide buffering force for the sliders 386, preventing the placement bed 380 from shaking violently and causing discomfort to the newborn.

[0051] When the movable box 370 moves downward, the rack plate 371 on the rear side also moves downward, thereby causing the two gears 308 on the outer surface of the rotating shaft 305 that are matched with it to rotate. The rotation of the two gears 308 causes the rotating shaft 305 to rotate, thereby driving the pulley 307 to rotate. Since the pulley 307 is connected to the outer surface of the pulley 46, the pulley 46 will also rotate. The rotation of the pulley 46 can drive the connecting plate 44 fixed on the mounting shaft 45 to rotate, and then cause the protective tube 47 to rotate, so that the notch of the protective tube 47 corresponds to the notch of the cylindrical groove of the protective block 41, so that the disinfection lamp 42 can irradiate the outer surface of the isolation cover 35 to disinfect and sterilize the outer surface of the isolation cover 35.

[0052] When the isolation cover 35 is opened, the control component 5 is used to control the start of motor 7. Motor 7 starts, causing the two rotating side plates 34 to rotate rearward, rotating the isolation cover 35 into the inner cavity of the arc-shaped groove 303. The two pulleys 341 drive the two pulleys 306 to rotate, causing the gears 308 on the outer surface of the pulleys 306 to rotate. The two gears 308 engage with the front rack plate 371, moving the movable box 370 upward, thereby moving the placement bed 380 upward, facilitating medical personnel to examine the newborn's condition. While the placement bed 380 is moving upward, the... The mating columns 382 at both ends of the bed 380 slide within the mating groove 360, causing the bed 380 to sway left and right, thus alleviating discomfort caused to the newborn by the movement of the bed 380. The rack plate 371 on the rear side causes the two gears 308 on the outer surface of the rotating shaft 305 to rotate, thereby causing the pulley 407 to drive the pulley 46 to rotate. The rotation of the pulley 46 causes the connecting plate 44 to drive the protective tube 47 to rotate, so that the protective tube 47 blocks the notch in the cylindrical groove of the protective block 41 and blocks the disinfection lamp 42, preventing the disinfection lamp 42 from shining on the medical staff and protecting their safety.

[0053] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.

Claims

1. A convenient infection prevention and isolation device for clinical use in neonatal departments, comprising a base (1), characterized in that: The base (1) is fixed with a bearing plate (2) at both ends. The two bearing plates (2) are fixed with an anti-infection isolation component (3) at their upper ends. The base (1) is fixed with a control component (5) at the front left side. The anti-infection isolation component (3) is fixed with a mounting bracket (6) at its left end. The mounting bracket (6) is fixed with a No. 1 motor (7) at its upper end. The anti-infection isolation component (3) is fixed with a disinfection component (4) at both ends of its rear side. The anti-infection isolation component (3) is equipped with a ventilation device (9) at its rear end. The disinfection component (4) includes two pillars (40), with a protective block (41) fixed to one end of each pillar (40) that is close to each other. A mounting plate (43) is fixed to the front end of each pillar (40). A disinfection lamp (42) is fixed to the end of the mounting plate (43) on the right side that is close to the protective block (41). A connecting plate (44) is provided at the end of the mounting plate (43) on the left side that is away from the protective block (41). A mounting shaft (45) is fixed to the left end of the connecting plate (44). A pulley (46) is fixed to the outer surface of the mounting shaft (45). A protective tube (47) is fixed to the right end of the connecting plate (44). A circular plate (48) is fixed to the left side of the inner surface of the protective tube (47).

2. The infection prevention and isolation device for convenient neonatal clinical use according to claim 1, characterized in that: The protective tube (47) passes through the mounting plate (43) on the left side and is rotatably connected to the mounting plate (43) on the right side. The left end of the disinfection lamp (42) is rotatably connected to the right end of the circular plate (48).

3. The infection prevention and isolation device for convenient neonatal clinical use according to claim 1, characterized in that: The infection prevention isolation component (3) includes an isolation box (30). The front end of the isolation box (30) is provided with two operating components (31). An isolation groove (302) is opened at the upper end of the isolation box (30). Rotating grooves (301) are opened on both the left and right sides of the upper end of the isolation box (30). Rotating side plates (34) are provided in the inner cavity of the two rotating grooves (301). An isolation cover (35) is fixed on the outer surface of the two rotating side plates (34). An arc-shaped groove (303) adapted to the isolation cover (35) is opened on the rear side of the upper end of the isolation box (30). A cleaning block (33) that cooperates with the isolation cover (35) is fixed on the rear side of the upper end of the isolation box (30). Matching plates (36) are fixed on the left and right side walls of the inner cavity of the isolation groove (302). A moving component (37) is fixed on the bottom wall of the isolation groove (302). A placement component (38) is provided at the end of the two matching plates (36) that are close to each other.

4. The infection prevention and isolation device for convenient neonatal clinical use according to claim 3, characterized in that: The left end of the isolation box (30) is provided with a rotating shaft one (304) and a rotating shaft two (305). The rotating shaft one (304) passes through the isolation box (30) and extends out of the right end of the isolation box (30). The rotating shaft two (305) passes through the isolation box (30) and is rotatably connected to the right side wall of the inner cavity of the isolation groove (302). The left and right sides of the outer surface of the rotating shaft one (304) are fixed with pulley three (306). The left side of the outer surface of the rotating shaft two (305) is fixed with pulley four (307). The outer surface of the pulley four (307) and the outer surface of the pulley one (46) are together wound with a transmission belt. The outer surfaces of the rotating shaft one (304) and the rotating shaft two (305) are each fixed with two symmetrical gears (308).

5. The infection prevention and isolation device for convenient neonatal clinical use according to claim 4, characterized in that: A connecting shaft (340) is fixed at the center of the two rotating side plates (34) at their opposite ends. A pulley two (341) is fixed on the outer surface of each of the two connecting shafts (340). A transmission belt is wound around the outer surface of the pulley two (341) and the pulley three (306) on the same side. The output end of the first motor (7) is fixedly connected to the connecting shaft (340) on the left side.

6. The infection prevention and isolation device for convenient clinical use in neonatal wards according to claim 5, characterized in that: The mating plate (36) has two symmetrical mating grooves (360) at one end near the mounting component (38).

7. The infection prevention and isolation device for convenient clinical use in neonatal wards according to claim 6, characterized in that: The placement component (38) includes a placement bed (380), a placement pad (381) is fixed in the inner cavity of the placement component (38), two mating columns (382) are fixed at both ends of the placement bed (380), the two mating columns (382) on the same side are adapted to the two mating grooves (360) on the same side, an installation block (383) is provided at the lower end of the placement bed (380), two symmetrical installation grooves (384) are opened at the upper end of the installation block (383), a connecting spring (385) is fixed on the front and rear side walls of the inner cavity of the two installation grooves (384), a slider (386) is fixed at one end of the two connecting springs (385) on the same side that are close to each other, the upper ends of the two sliders (386) are fixedly connected to the lower end of the placement bed (380), and two symmetrical sliding columns (387) are fixed on both the left and right sides of the lower end of the installation block (383).

8. The infection prevention and isolation device for convenient clinical use in neonatal wards according to claim 7, characterized in that: The movable component (37) includes a movable box (370), with rack plates (371) fixed at both the front and rear ends of the movable box (370). Two fixing plates (372) are fixed to the bottom wall of the inner cavity of the movable box (370). A connecting inclined plate (373) is fixed to the upper end of each of the two fixing plates (372). A buffer plate (374) is fixed to the end of each of the two connecting inclined plates (373) away from the fixing plate (372). Two sliding grooves adapted to the sliding column (387) on the same side are opened on the upper end of each of the two buffer plates (374). Two symmetrical buffer springs (375) are fixed to the upper end of each of the two buffer plates (374).

9. The infection prevention and isolation device for convenient clinical use in neonatal wards according to claim 8, characterized in that: The rack plate (371) engages with the two gears (308) on the same side.

Citation Information

Patent Citations

  • Anti-infection isolation device for clinical medicine of neonatology department

    CN112494250A