Medical lead clothes disinfection device

By designing a medical lead clothing disinfection device including articulated seats, connecting rods, pressing rollers and heating wires, the problem that existing cleaning devices are difficult to avoid damage to lead clothing while ensuring the cleaning effect, efficient disinfection and smoothing treatment are achieved, and the service life of lead clothing is extended.

CN120053703AActive Publication Date: 2025-05-30SHANDONG JITE IND TECH CO LTD
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Patent Information

Application Number
CN202510372180.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2025-05-30
Estimated Expiration
2045-03-27

AI Technical Summary

Technical Problem

Existing medical lead clothing cleaning devices are difficult to avoid damage to lead clothing while ensuring the cleaning effect, resulting in insufficient cleaning strength or wear and rupture of lead clothing.

Method used

A medical lead sanitation device is designed, including a vertical support wall and a disinfection mechanism. The disinfection mechanism consists of a hinged seat, connecting rod, press roller and heating wire. Through the cooperation of the press roller thermal conductivity and variable resistance rod, high-temperature disinfection and smoothing of the lead clothing can be achieved.

Benefits of technology

The device can effectively disinfect the lead coat to ensure cleaning effect. At the same time, through smoothing and friction control, it avoids wear and tear on the lead coat and extends its service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of lead clothes disinfection, in particular to a medical lead clothes disinfection device which is used for solving the problem that an existing cleaning device is not easy to disinfect lead clothes. The device comprises a vertical supporting wall, a disinfection mechanism is arranged on the opposite side of the supporting wall, and a heating wire is arranged in a pressing roller; when the hinge seat is close to the lead clothes, the compression roller can compress the lead clothes, so that heat is conducted to the lead clothes; a variable-resistance rod is connected to the connecting rod in a sliding mode and can be attached to or away from the pressing roller, and when the hinge base is close to the lead clothes, the variable-resistance rod is attached to the pressing roller, and when the hinge base moves downwards to the lead clothes, the variable-resistance rod is away from the pressing roller; after the lead clothes make contact with the supporting wall, the disinfection mechanism starts to conduct high-temperature disinfection on the lead clothes, at the moment, the pressing roller presses the lead clothes on the supporting plate, the connecting rod can swing upwards along with approaching of the disinfection mechanism to the lead clothes, therefore, the pressing roller rolls downwards on the lead clothes, at the moment, heat of a heating wire in the pressing roller is conducted to the lead clothes, and the lead clothes are subjected to high-temperature disinfection.
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Description

Technical Field

[0001] The present invention relates to the technical field of lead clothing disinfection, belonging to A61L2 / 04, and particularly relates to a medical lead clothing disinfection device. Background Art

[0002] In the medical field, medical protective lead clothing is an indispensable protective equipment for medical staff during operations such as radiological examinations and treatments. It can effectively block harmful rays such as X-rays and protect the physical health of medical staff. However, since the lead clothing comes into frequent contact with the bodies of medical staff and various medical environments during use, it is extremely easy to be contaminated with dust, stains, germs and other pollutants. Therefore, regular cleaning is crucial.

[0003] There are many problems with traditional cleaning methods for medical protective lead clothing. On the one hand, manual cleaning is inefficient and it is difficult to ensure the comprehensiveness and uniformity of cleaning. And simply relying on manual wiping cannot achieve the effect of disinfecting the lead clothing.

[0004] In addition, the material of the lead clothing is relatively special. Its surface is usually a soft protective material, and it contains a lead layer inside. This makes it necessary to ensure the cleaning effect while avoiding damage to the lead clothing during the cleaning and disinfection process. Existing equipment often cannot achieve a good balance between the two. Either the cleaning strength is insufficient and the stains cannot be completely removed, or the lead clothing is worn and cracked due to improper operation during the cleaning process, reducing the protective performance and service life of the lead clothing. Summary of the Invention

[0005] The present invention provides a medical lead clothing disinfection device to solve the problem that existing cleaning devices are not easy to disinfect lead clothing.

[0006] In order to alleviate the above technical problems, the technical solution provided by the present invention is as follows:

[0007] A medical lead clothing disinfection device includes a vertical support wall. A disinfection mechanism is arranged on the opposite side of the support wall. The lead clothing is hung between the support wall and the disinfection mechanism. The disinfection mechanism includes a hinge seat, a connecting rod hinged to the hinge seat, and a pressure roller rotating at the end of the connecting rod. A heating wire is arranged inside the pressure roller;

[0008] When the hinge seat approaches the lead clothing, the pressure roller can press the lead clothing tightly, thereby conducting heat to the lead clothing;

[0009] A variable resistance rod is slidably connected to the connecting rod. The variable resistance rod can fit or move away from the pressure roller. Moreover, when the hinge seat approaches the lead clothing, the variable resistance rod fits the pressure roller. When the hinge seat moves down relative to the lead clothing, the variable resistance rod moves away from the pressure roller.

[0010] Further, the disinfection mechanism further includes a rotating rod connected to the connecting rod. A limiting ring is provided on the rotating rod, and a torsion spring is connected between the limiting ring and the hinge seat.

[0011] Further, the disinfection mechanism further includes a sliding seat. The variable resistance rod slides in the sliding seat. A rotating wheel is rotatably connected to the rotating rod. One end of the variable resistance rod away from the pressure roller is in contact with the side wall of the rotating wheel. When the hinge seat moves downward, the rotating wheel rotates, thereby driving the variable resistance rod away from the pressure roller.

[0012] Further, a limiting plate is connected to the variable resistance rod, and a first spring is connected between the limiting plate and the sliding seat.

[0013] Further, a wiping mechanism is further included. The wiping mechanism is arranged above the disinfection mechanism. The wiping mechanism includes a mounting seat. Two rotating rollers are rotatably connected to the mounting seat. A wiping cloth is drivingly connected between the two rotating rollers. The mounting seat and the hinge seat approach the lead apron synchronously, and after the pressure roller swings downward, the wiping cloth fits against the lead apron.

[0014] Further, the wiping mechanism further includes a large gear and a small gear connected to the roller shaft of one of the rotating rollers. When the pressure roller contacts the lead apron, the small gear is fixed to the roller shaft and the large gear rotates on the roller shaft.

[0015] Further, the wiping mechanism further includes an L-shaped seat connected to the mounting seat. An electric telescopic rod is connected to the L-shaped seat. The output end of the electric telescopic rod coaxially penetrates the roller shaft and is fixedly connected with a synchronous ring. The synchronous ring is located between the large gear and the small gear. When the electric telescopic rod expands and contracts, the synchronous ring can abut against the large gear or the small gear so that the large gear or the small gear is fixed to the roller shaft.

[0016] Further, an angle sensor is provided on the rotating rod. After the pressure roller disengages from the lead apron, the connecting rod can swing upward, so that the angle sensor can detect the rotation of the rotating rod, causing the electric telescopic rod to shorten, and thus the synchronous ring abuts against the large gear.

[0017] Further, a driving mechanism is further included. The driving mechanism includes a mounting block. A first rack meshing with the small gear and a second rack meshing with the large gear are provided on the mounting block, and the rotating wheel rolls on the mounting block.

[0018] Further, a screw rod is rotatably connected to the mounting block. Threaded holes matching with the screw rod are provided on both the mounting seat and the hinge seat.

[0019] The beneficial effects of the present invention are analyzed as follows:

[0020] A medical lead apron disinfection device includes a vertical support wall, a disinfection mechanism is arranged on the opposite side of the support wall, the lead apron is hung between the support wall and the disinfection mechanism, the disinfection mechanism includes a hinge seat, a connecting rod hinged to the hinge seat, and a pressure roller rotating at the end of the connecting rod, and a heating wire is arranged inside the pressure roller; when the hinge seat approaches the lead apron, the pressure roller can press the lead apron tightly, so as to conduct heat to the lead apron; a variable resistance rod is slidably connected to the connecting rod, the variable resistance rod can fit or move away from the pressure roller, and when the hinge seat approaches the lead apron, the variable resistance rod fits the pressure roller, and when the hinge seat moves down relative to the lead apron, the variable resistance rod moves away from the pressure roller.

[0021] When the disinfection mechanism moves towards the lead apron, the lead apron moves towards the vertical support wall synchronously. The vertical support wall is the inner wall of the box body. After the lead apron contacts this support wall, the disinfection mechanism starts to disinfect the lead apron at high temperature. At this time, the pressure roller presses the lead apron on the support plate, and the connecting rod can swing upwards as the disinfection mechanism approaches the lead apron, so that the pressure roller rolls downwards on the lead apron. At this time, the heat of the heating wire inside the pressure roller is conducted to the lead apron, so that the lead apron is disinfected at high temperature. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the related art, the following will briefly introduce the drawings required to be used in the description of the specific embodiments or the related art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0023] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0024] Figure 2 It is a schematic diagram of the structure of the present invention when the box door is in the open state;

[0025] Figure 3 It is a schematic diagram of the structure of the driving mechanism of the present invention;

[0026] Figure 4 It is a schematic diagram of the structure of the disinfection mechanism of the present invention;

[0027] Figure 5 It is a schematic diagram of the structure of the wiping mechanism of the present invention;

[0028] Figure 6 It is a schematic diagram of the structure of the hanging mechanism of the present invention;

[0029] Figure 7 It is a cross-sectional view of the present invention.

[0030] ICON:

[0031] 100, protection mechanism; 110, box body; 120, box door; 200, hanging mechanism; 210, N-shaped frame; 220, slide bar; 230, moving seat; 240, slide plate; 250, hanging ring; 300, driving mechanism; 310, mounting block; 320, limit seat; 330, second spring; 400, disinfection mechanism; 410, screw rod; 420, hinged seat; 430, connecting rod; 431, slide seat; 440, pressure Roller; 450, rotating rod; 451, limiting ring; 452, torsion spring; 460, resistance rod; 461, limiting plate; 462, first spring; 463, rotating wheel; 500, wiping mechanism; 510, first rack; 520, second rack; 530, mounting seat; 540, rotating roller; 541, wiping cloth; 550, roller shaft; 551, small gear; 552, large gear; 560, synchronization ring; 570, electric telescopic rod. DETAILED DESCRIPTION

[0032] The technical solution of the present invention will be described clearly and completely below in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0033] In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", and "third" are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance.

[0034] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0035] Examples, such as Figures 1-7As shown in the figure, a medical lead apron disinfection device includes a vertical support wall. A disinfection mechanism 400 is provided on the opposite side of the support wall. The lead apron is hung between the support wall and the disinfection mechanism 400. The disinfection mechanism 400 includes a hinge seat 420, a connecting rod 430 hinged to the hinge seat 420, and a pressure roller 440 rotating at the end of the connecting rod 430. A heating wire is arranged inside the pressure roller 440. When the hinge seat 420 approaches the lead apron, the pressure roller 440 can press the lead apron tightly, thereby conducting heat to the lead apron. A variable resistance rod 460 is slidably connected to the connecting rod 430. The variable resistance rod 460 can fit or move away from the pressure roller 440. Moreover, when the hinge seat 420 approaches the lead apron, the variable resistance rod 460 fits the pressure roller 440. When the hinge seat 420 moves downward relative to the lead apron, the variable resistance rod 460 moves away from the pressure roller 440.

[0036] The working mechanism of the lead apron disinfection device provided in this embodiment:

[0037] When the disinfection mechanism 400 moves towards the lead apron, the lead apron moves towards the vertical support wall synchronously. The vertical support wall is the inner wall of the box body 110. After the lead apron contacts this support wall, the disinfection mechanism 400 starts to disinfect the lead apron at high temperature. At this time, the pressure roller 440 presses the lead apron on the support plate. The connecting rod 430 can swing upward as the disinfection mechanism 400 approaches the lead apron, so that the pressure roller 440 rolls downward on the lead apron. At this time, the heat of the heating wire inside the pressure roller 440 is conducted to the lead apron, so that the lead apron is disinfected at high temperature.

[0038] When the pressure roller 440 contacts the lead apron and causes the connecting rod 430 to swing upward, the variable resistance rod 460 is in contact with the shaft of the pressure roller 440 at this time, so that the rotation of the pressure roller 440 is blocked at this time. However, the pressure roller 440 can still rotate slightly at this time, so that the friction between the pressure roller 440 and the lead apron increases, so that the pressure roller 440 can press the lead apron and at the same time rely on the friction to pull and smooth the lead apron. When the hinge seat 420 moves downward, the hinge seat 420 can drive the pressure roller 440 to roll on the lead apron through the connecting rod 430, so that the tension on the lead apron increases, making the lead apron tend to be flat, so as to facilitate the cleaning of the lead apron. At this time, the variable resistance rod 460 does not contact the pressure roller 440, so that the variable resistance rod 460 can roll on the lead apron, and the static friction between the two is reduced, preventing the pressure roller 440 from causing too much friction to the lead apron when moving downward and causing the lead apron to be worn and damaged.

[0039] Regarding the structure of the disinfection mechanism 400, specifically:

[0040] The disinfection mechanism 400 further includes a rotating rod 450 connected to the connecting rod 430. A limiting ring 451 is arranged on the rotating rod 450. A torsion spring 452 is connected between the limiting ring 451 and the hinge seat 420.

[0041] There are two connecting rods 430, which are respectively connected to both ends of the pressure roller 440. In the initial state, the two connecting rods 430 are slightly lifted upward. The two connecting rods 430 are fixedly connected by a rotating rod 450, so that the two connecting rods 430 can swing synchronously. The axis of the rotating rod 450 coincides with the swing point of the connecting rod 430. When the connecting rod 430 swings, the rotating rod 450 rotates synchronously. When the rotating rod 450 rotates, the limiting ring 451 fixedly connected thereto rotates synchronously. The two ends of the torsion spring 452 are respectively fixedly connected to the limiting ring 451 and the hinge seat 420. The limiting ring 451 rotates relative to the hinge seat 420, so that the torsion spring 452 is twisted and applies a restoring force to the connecting rod 430, so that a downward swing force is applied to the pressure roller 440 after it swings upward, so that the pressure roller 440 can be firmly pressed on the upper part of the lead apron. Subsequently, the pressure roller 440 moves downward and can roll on the lead apron;

[0042] In addition, it is also possible to first control the mounting block 310 to approach the lead apron, and then use a separate power source, such as a motor, to control the connecting rod 430 to swing downward, so that the pressure roller 440 is pressed on the lead apron.

[0043] In an alternative embodiment of the present invention, a more preferred method is as follows:

[0044] The disinfection mechanism 400 further includes a sliding seat 431. The variable resistance rod 460 slides in the sliding seat 431. A rotating wheel 463 is rotatably connected to the rotating rod 450. One end of the variable resistance rod 460 away from the pressure roller 440 is in contact with the side wall of the rotating wheel 463. When the hinge seat 420 moves downward, the rotating wheel 463 rotates, thereby driving the variable resistance rod 460 away from the pressure roller 440.

[0045] The variable resistance rod 460 slides linearly in the sliding seat 431, and the variable resistance rod 460 is parallel to the connecting rod 430. One end of the variable resistance rod 460 is provided with an arc-shaped block, which can be in contact with the shaft of the pressure roller 440, so that the rotational friction force of the pressure roller 440 increases. The other end of the variable resistance rod 460 is in contact with the side wall of the rotating wheel 463. When the hinge seat 420 moves downward, the rotating rod 450 moves downward synchronously. At this time, the rotating wheel 463 rolls on the mounting block 310, so that the rotating wheel 463 drives the variable resistance rod 460 to slide through friction, so that the arc-shaped block at the end of the variable resistance rod 460 moves away from the shaft of the pressure roller 440. Furthermore, when the pressure roller 440 moves downward, its rotational resistance decreases;

[0046] The length of the variable resistance rod 460 extending beyond the rotating wheel 463 is relatively short, so that the sliding distance of the variable resistance rod 460 driven by the rotating wheel 463 is not too far.

[0047] In an alternative embodiment of the present invention, a more preferred method is as follows:

[0048] A limiting plate 461 is connected to the variable resistance rod 460, and a first spring 462 is connected between the limiting plate 461 and the sliding seat 431.

[0049] There is friction between the resistance rod 460 and the rotating wheel 463. When the rotating wheel 463 continues to rotate, the rotating wheel 463 can drive the resistance rod 460 to slide, and the resistance rod 460 will not be pushed by the first spring 462 to reset. When the rotating wheel 463 stops rotating, the first spring 462 can push the resistance rod 460 to slowly reset.

[0050] Regarding the structure of the wiping mechanism 500, specifically:

[0051] The wiping mechanism 500 is arranged on the upper part of the disinfection mechanism 400, and the wiping mechanism 500 includes a mounting seat 530, and two rollers 540 are rotatably connected to the mounting seat 530, and a wiping cloth 541 is transmission-connected between the two rollers 540. The mounting seat 530 and the hinged seat 420 are synchronously approached to the lead coat, and after the pressure roller 440 swings down, the wiping cloth 541 fits the lead coat.

[0052] After the disinfection mechanism 400 presses the lead coat onto the support plate, the wiping mechanism 500 can contact the lead coat. When the disinfection mechanism 400 moves downward, the wiping mechanism 500 moves downward synchronously to wipe the smoothed lead coat. The two rollers 540 are connected by a wiping cloth 541. When the mounting seat 530 moves downward, the roller 540 rotates continuously so that the wiping cloth 541 can wipe the lead coat. The direction of the roller 540 can be the same as that of the pressure roller 440, or it can be opposite to the direction of the pressure roller 440, so as to ensure that the wiping cloth 541 keeps moving to wipe the lead coat. Cleanser is adhered to the wiping cloth 541 to ensure the wiping effect on the lead coat. The wiping cloth 541 is a rectangular piece of cloth, and the two ends of the patch are sewn with matching Velcro. After the wiping cloth 541 is dipped in the cleanser, it is wrapped around the two rollers 540 and the Velcro is bonded to form a ring.

[0053] Among the optional methods of this embodiment, the more preferred ones are:

[0054] The wiping mechanism 500 further includes a large gear 552 and a small gear 551 connected to a roller shaft 550 of one of the rotating rollers 540 . When the pressure roller 440 contacts the lead coat, the small gear 551 is fixed to the roller shaft 550 and the large gear 552 rotates on the roller shaft 550 .

[0055] The end of the roller 540 near the mounting block 310 is connected to the large gear 552 and the small gear 551. When the small gear 551 drives the roller 540 to rotate, the rotation speed of the roller 540 is relatively fast. When the large gear 552 drives the roller 540 to rotate, the rotation speed of the roller 540 is relatively slow. Here, the rotation direction of the roller 540 is the same as that of the pressure roller 440. When the pressure roller 440 contacts the lead apron, the lead apron is smoothed by the pressure roller 440. At this time, the small gear 551 drives the roller 540 to rotate, reducing the sliding friction between the wiping cloth 541 and the lead apron, thereby reducing the friction of the wiping cloth 541 on the lead apron. After the pressure roller 440 moves away from the lead apron, the lead apron is no longer smoothed by the pressure roller 440. At this time, to ensure the flatness of the lead apron, the large gear 552 drives the roller 540 to rotate. At this time, the rotation speed of the roller 540 is lower than that driven by the small gear 551. At this time, the sliding friction force between the wiping cloth 541 and the lead apron increases. At this time, the wiping cloth 541 not only performs wiping operations on the lead apron, but also the increased sliding friction force between the two increases the smoothing force received by the lead apron, ensuring that the lead apron can still be smoothed after the pressure roller 440 leaves the lead apron.

[0056] In an alternative embodiment of the present embodiment, preferably:

[0057] The wiping mechanism 500 further includes an L-shaped seat connected to the mounting seat 530. An electric telescopic rod 570 is connected to the L-shaped seat. The output end of the electric telescopic rod 570 coaxially penetrates the roller shaft 550 and is fixedly connected to a synchronous ring 560. The synchronous ring 560 is located between the large gear 552 and the small gear 551. When the electric telescopic rod 570 expands and contracts, the synchronous ring 560 can abut against the large gear 552 and the small gear 551, so that the large gear 552 or the small gear 551 is fixed to the roller shaft 550.

[0058] When the electric telescopic rod 570 expands and contracts, it can drive the synchronous ring 560 to move between the large gear 552 and the small gear 551. A bracket is connected inside the synchronous ring 560. A chute cooperating with the bracket is provided on the roller shaft 550. The output end of the electric telescopic rod 570 is rotatably connected to the bracket. When the electric telescopic rod 570 shortens, the synchronous ring 560 abuts against the large gear 552, and the two rotate synchronously through the action of friction. When the electric telescopic rod 570 extends, the synchronous ring 560 abuts against the small gear 551, and the two rotate synchronously through the action of friction.

[0059] In an alternative embodiment of the present embodiment, preferably:

[0060] An angle sensor is provided on the rotating rod 450. After the pressure roller 440 disengages from the lead apron, the connecting rod 430 can swing upward, so that the angle sensor can detect the rotation of the rotating rod 450, causing the electric telescopic rod 570 to shorten, and thus the synchronous ring 560 abuts against the large gear 552.

[0061] The lead apron has a thickness. When the pressure roller 440 disengages from the lead apron, it can directly contact the support wall. At this time, the connecting rod 430 can swing, and then the rotating rod 450 rotates. When the angle sensor detects the swing of the rotating rod 450, the control system controls the electric telescopic rod 570 to shorten and reduces the rotation speed of the rotating roller 540.

[0062] Regarding the structure of the driving mechanism 300, specifically:

[0063] The driving mechanism 300 includes a mounting block 310. A first rack 510 meshing with the pinion 551 and a second rack 520 meshing with the large gear 552 are provided on the mounting block 310, and the runner 463 rolls on the mounting block 310.

[0064] The runner 463 rolls on the mounting block 310. Thus, when the disinfection mechanism 400 moves downward, the runner 463 can rotate. The relative positions of the first rack 510 and the second rack 520 with the corresponding gears are set such that the rotation direction of the rotating roller 540 is changed when the wiping mechanism 500 moves downward. If the tooth directions of the two racks are as Figure 3 shown, then when the wiping mechanism 500 moves downward, the rotation direction of the rotating roller 540 is opposite to that of the pressure roller 440. If the direction of the rack is opposite to Figure 3 that, then the rotation direction of the rotating roller 540 is the same as that of the pressure roller 440.

[0065] In an optional manner of this embodiment, preferably:

[0066] A screw rod 410 is rotatably connected to the mounting block 310. Threaded holes cooperating with the screw rod 410 are provided on both the mounting seat 530 and the hinge seat 420.

[0067] The screw rod 410 is threadedly connected to the mounting block 310 and the hinge seat 420. Thus, when the screw rod 410 rotates, it can drive the disinfection mechanism 400 and the wiping mechanism 500 to move synchronously, ensuring the wiping effect on the lead apron.

[0068] In an optional manner of this embodiment, preferably:

[0069] It further includes a protection mechanism 100. The protection mechanism 100 includes a box body 110. A box door 120 is provided on the box body 110. Opening the box door 120 enables the lead apron to be taken in and out of the box body 110;

[0070] A hanging mechanism 200 is arranged inside the box body 110. The hanging mechanism 200 includes an N-shaped frame 210. The N-shaped frame 210 penetrates the box body 110 and is connected to the moving seat 230 inside the box body 110. A sliding piece 240 is slidably connected to the lower part of the moving seat 230. A hanging ring 250 is rotatably connected to the lower part of the sliding piece 240. The lead apron is hung on the hanging ring 250 through a clothes hanger. Then, the sliding piece 240 is pushed to make the lead apron enter the box body 110, and the box door 120 is closed;

[0071] The mounting block 310 is driven by devices such as an external hydraulic rod to slide relative to the box body 110. In the initial stage of the movement of the mounting block 310, the N-shaped frame 210 is driven to move by the second spring 330. The N-shaped frame 210 drives the moving seat 230 to approach the support wall formed by the inner wall of the box body 110. When the moving seat 230 contacts the support wall, the continuous movement of the mounting block 310 causes the second spring 330 to be compressed. At this time, the sliding rod 220 slides on the limit seat 320, so that both the disinfection mechanism 400 and the wiping mechanism 500 approach the lead apron;

[0072] After one side of the lead apron is cleaned, control the mounting block 310 to reset, open the box door 120 and pull out the sliding piece 240, rotate the hanging ring 250 so that the other side of the lead apron faces the mounting block 310, and then clean the other side of the lead apron. When cleaning the inside of the lead apron, turn the lead apron over and place it in the box body 110.

[0073] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.

Claims

1. A medical lead clothing disinfection device, characterized in that: It comprises a vertical supporting wall, a disinfection mechanism (400) is arranged on the opposite side of the supporting wall, a lead coat is hung between the supporting wall and the disinfection mechanism (400), the disinfection mechanism (400) comprises a hinge seat (420), a connecting rod (430) hinged to the hinge seat (420), and a pressure roller (440) rotating at the end of the connecting rod (430), and a heating wire is arranged inside the pressure roller (440); When the hinged seat (420) is close to the lead coat, the pressing roller (440) can press the lead coat tightly, thereby conducting heat to the lead coat; A resistance rod (460) is slidably connected to the connecting rod (430), and the resistance rod (460) can be close to or away from the pressure roller (440), and when the hinge seat (420) is close to the lead coat, the resistance rod (460) is close to the pressure roller (440), and when the hinge seat (420) moves down to the lead coat, the resistance rod (460) is away from the pressure roller (440).

2. The medical lead clothing disinfection device according to claim 1, characterized in that: The disinfection mechanism (400) further comprises a rotating rod (450) connected to the connecting rod (430), a limiting ring (451) is arranged on the rotating rod (450), and a torsion spring (452) is connected between the limiting ring (451) and the hinge seat (420).

3. The medical lead clothing disinfection device according to claim 2, characterized in that: The disinfection mechanism (400) further comprises a slide seat (431), the resistance rod (460) slides on the slide seat (431), a rotating wheel (463) is rotatably connected to the rotating rod (450), one end of the resistance rod (460) away from the pressure roller (440) is in contact with the side wall of the rotating wheel (463), and when the hinge seat (420) moves downward, the rotating wheel (463) rotates, thereby driving the resistance rod (460) away from the pressure roller (440).

4. The medical lead clothing disinfection device according to claim 3, characterized in that: The resistance changing rod (460) is connected to a limit plate (461), and a first spring (462) is connected between the limit plate (461) and the sliding seat (431).

5. The medical lead clothing disinfection device according to claim 4, characterized in that: The invention also comprises a wiping mechanism (500), wherein the wiping mechanism (500) is arranged on the upper part of the disinfection mechanism (400), and the wiping mechanism (500) comprises a mounting seat (530), and two rollers (540) are rotatably connected to the mounting seat (530), and a wiping cloth (541) is transmission-connected between the two rollers (540), and the mounting seat (530) and the hinged seat (420) are synchronously approached to the lead coat, and after the pressing roller (440) swings down, the wiping cloth (541) fits the lead coat.

6. The medical lead clothing disinfection device according to claim 5, characterized in that: The wiping mechanism (500) further comprises a large gear (552) and a small gear (551) connected to a roller shaft (550) of one of the rotating rollers (540); when the pressure roller (440) contacts the lead coat, the small gear (551) is fixed to the roller shaft (550) and the large gear (552) rotates on the roller shaft (550).

7. The medical lead clothing disinfection device according to claim 6, characterized in that: The wiping mechanism (500) further comprises an L-shaped seat connected to the mounting seat (530), the L-shaped seat being connected to an electric telescopic rod (570), the output end of the electric telescopic rod (570) coaxially passing through the roller shaft (550) and being fixedly connected to a synchronizing ring (560), the synchronizing ring (560) being located between the large gear (552) and the small gear (551), and when the electric telescopic rod (570) is extended or retracted, the synchronizing ring (560) can abut against the large gear (552) or the small gear (551), so that the large gear (552) or the small gear (551) is fixed to the roller shaft (550).

8. The medical lead clothing disinfection device according to claim 7, characterized in that: An angle sensor is provided on the rotating rod (450). After the pressure roller (440) is detached from the lead coat, the connecting rod (430) can swing upward, so that the angle sensor can detect the rotation of the rotating rod (450), thereby shortening the electric telescopic rod (570) and causing the synchronous ring (560) to abut against the large gear (552).

9. The medical lead clothing disinfection device according to claim 8, characterized in that: The invention also comprises a driving mechanism (300), wherein the driving mechanism (300) comprises a mounting block (310), wherein a first rack (510) meshing with the pinion (551) and a second rack (520) meshing with the large gear (552) are arranged on the mounting block (310), and the rotating wheel (463) rolls on the mounting block (310).

10. The medical lead clothing disinfection device according to claim 9, characterized in that: The mounting block (310) is rotatably connected to a screw rod (410), and both the mounting seat (530) and the hinge seat (420) are provided with threaded holes that match the screw rod (410).

Citation Information

Patent Citations

  • Lead clothes wiping storage cabinet for radiology department

    CN112244509A

  • Lead clothes storage device

    CN115892742A

  • Drying and sterilizing device for garment production and processing

    CN213147280U

  • Lead clothes disinfecting and cleaning machine for composite operating room

    CN218251736U

  • Lead clothes nursing and cleaning machine

    CN220295369U