Aisle medical care cleaning agent hanging bracket
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-29
- Publication Date
- 2026-08-11
AI Technical Summary
本发明可以解决现有的清洗剂瓶的安装不方便
[0016]该医用护理清洗剂悬挂支架,通过设置存放机构使得在清洗剂使用完后可以及时对其进行补充,且该存放机构与回弹机构通过定位杆进行连接,当回弹机构中有清洗剂时便不会再次下落。
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Figure CN118697577B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of bracket suspension technology, specifically to a corridor medical care cleaning agent suspension bracket. Background Technology
[0002] The cleaning agent is mainly used for cleaning various medical machines such as surgical supplies, medical equipment plastics, instruments and equipment, and laboratory containers. If it is a fully automatic cleaning, it can also be used with sterilizers and ultrasonic cleaners to clean various flexible and rigid electronic endoscopes, surgical supplies, tubing, vulcanized rubber, medical equipment plastics, instruments and equipment, and laboratory containers.
[0003] Patent application number CN201910884610.5 discloses a hanging bracket for medical care cleaning agents in corridors, including a mounting frame, a storage box, and a placement frame. The storage box is installed on the upper left side of the mounting frame, and the placement frame is located on the right side of the storage box. The placement frame is installed on the upper right side of the mounting frame, and a round hole is provided in the middle of the placement frame. This invention can solve the problem of inconvenient installation of existing cleaning agent bottles.
[0004] The problem with this cleaning agent hanging bracket is that after the cleaning agent is used up, staff still need to manually control it to reach the desired position. This is because after use, there is residue on the staff's hands, making it difficult to lower the cleaning agent. This makes manual control inconvenient and prevents the cleaning agent from being replaced. Summary of the Invention
[0005] The purpose of this invention is to provide a corridor medical care cleaning agent suspension bracket to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a corridor medical care cleaning agent suspension bracket, comprising a housing and a fixing rod, wherein a retrieval mechanism is fixedly connected to the top of the housing, the top of the retrieval mechanism is fixedly connected to the bottom of the fixing rod, a transverse rod is fixedly connected to the top of the fixing rod, two clamping plates are fixedly connected to the front and rear ends of the transverse rod, and a first connecting rod is fixedly connected to the side of the two clamping plates that are close to each other, and further comprising:
[0007] The storage mechanism includes a protective shell and rollers. Rollers are installed on the inner wall of the protective shell. Two first connecting rods are fixedly connected to the front and back sides of the protective shell, respectively. Two second connecting rods are fixedly connected to the inner wall of the protective shell. Rollers are fixedly connected to the sides of the two second connecting rods away from the protective shell. A sliding groove is formed on the back of the protective shell, and a slider is installed within the groove. The groove wall is slidably connected to the slider. A movable rod is fixedly connected to the front of the slider. Two rotating blocks are fixedly connected to the side of the movable rod away from the slider. Both rotating blocks are rotatably connected to the protective shell via bearings. Funnels are fixedly connected to the bottom of two clamping plates. A top plate is provided on the top of the two rotating blocks. A limiting plate is rotatably connected to the top of the top plate via bearings. Two first springs are fixedly connected to the side of the limiting plate near the rollers. The sides of the two first springs away from the limiting plate are fixedly connected to the rollers. There are two sets of the top plate, the limiting plate, and the two first springs, symmetrical about the center of the rollers.
[0008] The rebound mechanism includes a protective shell, the bottom of which is fixedly connected to the top of the outer shell. Rectangular holes are provided on the left and right sides of the protective shell. An elastic plate is fixedly connected to the bottom of the inner wall of the protective shell. Pull rods are fixedly connected to both sides of the elastic plate.
[0009] The recycling mechanism includes a protective cover, an inner wall of which is provided with a pressure plate, the right side of which is fixedly connected to the inner wall of the protective cover, a first reset plate is rotatably connected to the inner wall of the protective cover via a bearing, a rotating plate is provided to the right side of the first reset plate, and the rotating plate is rotatably connected to the protective cover via a bearing.
[0010] Preferably, the protective shell and the clamping plate have a groove on the rear end near the horizontal rod, the slider is fixedly connected to a positioning rod on the side away from the protective shell, and the positioning rod is fixedly connected to an elastic plate on the side away from the clamping plate.
[0011] Preferably, the protective shell has a groove on the reverse side and a groove on the bottom. A movable block is provided on the left side of the inner wall of the protective shell, and a roller is rotatably connected to the bottom of the movable block via a bearing. The outer wall of the roller contacts the groove wall at the bottom of the protective shell.
[0012] Preferably, the movable block has a groove, and the groove wall contacts the pull rod. Two second springs are fixedly connected to the side of the movable block away from the elastic plate. A protective shell is fixedly connected to the side of the two second springs away from the movable block. The movable block, the pull rod, and the roller are all connected in pairs, and the two second springs are symmetrical about the center of the protective shell.
[0013] Preferably, an elastic plate is fixedly connected to the bottom of the rotating plate, and the side of the elastic plate away from the rotating plate is fixedly connected to the protective cover.
[0014] Preferably, a sliding plate is provided at the bottom of the elastic plate, and both sides of the sliding plate are fixedly connected to the inner wall of the outer shell. A second reset plate is rotatably connected to the inner wall of the outer shell through a bearing. A bracket is fixedly connected to the bottom of the inner wall of the outer shell, and a discharge port is provided on the reverse side of the outer shell.
[0015] Compared with the prior art, the beneficial effects of the present invention are:
[0016] This medical care cleaning agent suspension bracket has a storage mechanism that allows for timely replenishment of the cleaning agent after use. The storage mechanism is connected to the rebound mechanism via a positioning rod, so that the rebound mechanism will not fall again when there is cleaning agent in it.
[0017] This medical care cleaning agent suspension bracket restricts the cleaning agent through a rotating block. When there is cleaning agent in the rebound mechanism, the rotating block is in the closed state, preventing the cleaning agent in the storage mechanism from falling into the next step mechanism. When the rotating block is in the open state, it can drive the limiting block, allowing the cleaning agent to fall into the next step.
[0018] This medical cleaning agent suspension bracket moves the movable block by setting a pull rod. When the cleaning agent falls, it will not fly out of the rebound mechanism due to the elastic force when the rectangular hole is too large. Moreover, the pull rod moves the movable block by the weight of the cleaning agent itself.
[0019] This medical care cleaning agent suspension bracket collects and stores empty bottles after use through a recycling mechanism, eliminating the need to process each bottle after it's used, which wastes time and manpower. After use, the bottle is automatically launched into the recycling mechanism by a spring force. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the structure of the present invention;
[0021] Figure 2 This is a cross-sectional view of the present invention;
[0022] Figure 3 This is a schematic diagram of the storage mechanism, clamp, and funnel of the present invention;
[0023] Figure 4 This is a cross-sectional view of the storage mechanism of the present invention;
[0024] Figure 5 This is a schematic diagram of the springback mechanism of the present invention;
[0025] Figure 6 This is a cross-sectional view of the springback mechanism of the present invention;
[0026] Figure 7 This is a schematic diagram of the springback mechanism of the present invention after removing the protective shell;
[0027] Figure 8 This is a schematic diagram of the recycling mechanism of the present invention.
[0028] In the diagram: 1. Outer shell; 2. Clamping plate; 3. First connecting rod; 4. Storage mechanism; 401. Roller; 402. Limiting plate; 403. First spring; 404. Second connecting rod; 405. Top plate; 406. Rotating block; 407. Movable rod; 408. Slider; 409. Protective shell; 5. Positioning rod; 6. Rebound mechanism; 601. Protective shell; 602. Elastic plate; 603. Moving block; 604. Roller; 605. Second spring; 606. Pull rod; 7. Funnel; 8. Recycling mechanism; 801. Pressure plate; 802. Protective cover; 803. First reset plate; 804. Rotating plate; 805. Elastic plate; 806. Sliding plate; 807. Second reset plate; 808. Support; 809. Discharge port. Detailed Implementation
[0029] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0030] Example 1, please refer to Figure 1-4 This invention provides a technical solution: a corridor medical care cleaning agent suspension bracket, including a housing 1 and a fixing rod 10. A retrieval mechanism 8 is fixedly connected to the top of the housing 1, and the top of the retrieval mechanism 8 is fixedly connected to the bottom of the fixing rod 10. A transverse rod 9 is fixedly connected to the top of the fixing rod 10, and two clamping plates 2 are fixedly connected to the front and rear ends of the transverse rod 9. A first connecting rod 3 is fixedly connected to the side of the two clamping plates 2 that are close to each other. The invention also includes:
[0031] The storage mechanism 4 includes a protective shell 409 and a roller 401. The roller 401 is installed on the inner wall of the protective shell 409. Two first connecting rods 3 are fixedly connected to the front and back sides of the protective shell 409, respectively. Two second connecting rods 404 are fixedly connected to the inner wall of the protective shell 409. Each of the two second connecting rods 404 is fixedly connected to a roller 401 on the side away from the protective shell 409. A sliding groove is provided on the back side of the protective shell 409. A slider is installed in the sliding groove, and the groove wall is slidably connected to the slider 408. A movable rod 407 is fixedly connected to the front of the 08. A rotating block 406 is fixedly connected to the side of the movable rod 407 away from the slider 408. There are two rotating blocks 406, and both rotating blocks 406 are rotatably connected to the protective shell 409 via bearings. Funnels 7 are fixedly connected to the bottom of the two clamping plates 2. The cleaning agent falling through the funnels 7 is constrained and falls smoothly from top to bottom, preventing it from falling laterally into the next mechanism due to gravity. This avoids the problem of the cleaning agent failing to work due to incorrect direction. The problem is that the top of the two rotating blocks 406 is provided with a top plate 405. The top of the top plate 405 is rotatably connected to a limit plate 402 via a bearing. By setting the top plate 405, the distance of the limit plate 402 is controlled, avoiding the problem that the limit plate 402 cannot be controlled when it needs to be far from the edge, which would prevent the cleaning agent from falling out and prevent the mechanism from operating normally. Two first springs 403 are fixedly connected to the side of the limit plate 402 near the roller 401, and the side of the two first springs 403 away from the limit plate 402 is fixedly connected to the roller 401. The top plate 405 and the limit plate 402 are connected to the roller 401. The number of position plates 402 and the two sets of first springs 403 are both two sets, and they are symmetrical about the center of roller 401. The protective shell 409 and the clamping plate 2 have grooves on the rear end near the transverse rod 9. The side of the slider 408 away from the protective shell 409 is fixedly connected to the positioning rod 5. The side of the positioning rod 5 away from the clamping plate 2 is fixedly connected to the elastic plate 602. The positioning rod 5 is connected to the elastic plate 602 so that the position of the positioning rod 5 can be controlled by the elastic plate 602. The positioning rod 5 can be quickly controlled by the elastic plate 602 so that it can react quickly to control the slider 408.
[0032] The working principle of this embodiment is as follows: When medical personnel need to use the storage mechanism, they directly put the cleaning agent into the roller 401. At this time, the limiting plate 402 is fixed in the limiting plate 402 by the squeezing force of the first spring 403, preventing it from falling out. At this time, the rotating block 406 is in a vertical state. When the elastic plate 602 in the rebound mechanism 6 descends, it causes the positioning rod 5 to move downward, thereby driving the slider 408 to slide downward in the groove of the protective shell 409. As the slider 408 slides downward, it can drive the movable rod 407 to move downward synchronously. At this time, the rotating block 406 is driven to rotate downward. When the rotating block 406 rotates downward, it touches the top plate 405 and moves towards the center, thus closing the rotating block 406. When the elastic plate 602 rises, the opposite is true. The positioning rod 5 drives the slider 408 to slide downward. At the same time, the moving rod 407 and the rotating block 406 move upward in sync. At this time, the rotating block 406 will push against the top plate 405 and move to both sides. At this time, the limiting plate 402 can no longer fix the cleaning agent, so it falls into the funnel 7 below, and then further falls into the rebound mechanism 6.
[0033] Example 2, based on Example 1: Please refer to... Figure 5-7The rebound mechanism 6 includes a protective shell 601, the bottom of which is fixedly connected to the top of the outer shell 1. Rectangular holes are provided on both sides of the protective shell 601. An elastic plate 602 is fixedly connected to the bottom of the inner wall of the protective shell 601. Pull rods 606 are fixedly connected to both sides of the elastic plate 602. The rectangular holes allow the cleaning agent to be removed through them after use by medical personnel. A groove is provided on the back and bottom of the protective shell 601. A movable block 603 is provided on the left side of the inner wall of the protective shell 601. A roller 604 is rotatably connected to the bottom of the movable block 603 via a bearing. The outer wall of the roller 604 contacts the groove wall at the bottom of the protective shell 601. The movable block 603 is used to prevent the cleaning agent from falling out of the protective shell 601 when it falls onto the elastic plate 602. If a positional shift occurs, the cleaning agent falls directly backward, preventing it from compressing the elastic plate 602 and thus disrupting the operation of the storage mechanism 4. The moving block 603 has a groove, with its wall in contact with the pull rod 606. A second spring 605 is fixedly connected to the side of the moving block 603 furthest from the elastic plate 602. The second spring 605 is designed to position the moving block 603 to block the cleaning agent when the pull rod 606 pulls it. If the moving block 603 cannot automatically return to its original position when the cleaning agent needs to be ejected to the next mechanism, it will prevent the cleaning agent from reaching the next step and the mechanism from functioning again. A protective shell 601 is fixedly connected to the side of the second spring 605 furthest from the moving block 603. The moving block 603, pull rod 606, and roller 604 all have two sets of second springs 605, symmetrically positioned around the center of the protective shell 601.
[0034] The working principle of this embodiment is as follows: When the cleaning agent in the funnel 7 falls into the protective shell 601, it falls perfectly onto the elastic plate 602. At this time, the weight of the cleaning agent itself causes the elastic plate 602 to continuously compress downwards, causing the elastic plate 602 to begin to contract. As the elastic plate 602 moves downwards, it drives the pull rod 606 to slide in the groove on the moving block 603, causing the moving block 603 to move inwards. At this time, the roller 401 slides in the groove inside the protective shell 601, causing the moving block 603 to move. The second spring 605 begins to stretch, and stops moving when the moving block 603 is in the middle of the rectangular hole, which can prevent the cleaning agent from falling backward. With the continuous use of medical staff, the cleaning agent is continuously reduced, which will cause the elastic plate 602 to continuously rebound. When the cleaning agent is used up, it rebounds to its original position through the elastic plate 602. At this time, the pull rod 606 slides upward, and the second spring 605 begins to rebound, driving the moving block 603 to reset, so that the cleaning agent is ejected into the protective shell 601 through the elastic plate 602.
[0035] Example 3, based on Example 2: Please refer to... Figure 8 The recycling mechanism 8 includes a protective cover 802. A pressure plate 801 is installed on the inner wall of the protective cover 802. The right side of the pressure plate 801 is fixedly connected to the inner wall of the protective cover 802. A first reset plate 803 is rotatably connected to the inner wall of the protective cover 802 via a bearing. The first reset plate 803 is designed to allow the cleaning agent to fall horizontally, preventing it from falling vertically and thus avoiding interference with the next step. A rotating plate 804 is installed on the right side of the first reset plate 803. The rotating plate 804 is rotatably connected to the protective cover 802 via a bearing. An elastic plate 805 is fixedly connected to the bottom of the rotating plate 804. The side of the elastic plate 805 away from the rotating plate 804 is fixedly connected to the protective cover 802. The rotating plate 804 and the elastic plate 805 are provided to assist the normal use of the first reset plate 803. When the cleaning agent falls vertically, it will fall directly onto the rotating plate 804. The position and direction of the cleaning agent can be adjusted by the rebound impact of the rotating plate 804, so that it is in the ideal position. A sliding plate 806 is provided at the bottom of the elastic plate 805. Both sides of the sliding plate 806 are fixedly connected to the inner wall of the outer shell 1. The inner wall of the outer shell 1 is rotatably connected to the second reset plate 807 through the bearing. The second reset plate 807 is provided to buffer the force of the cleaning agent rolling downward, so as to avoid the inability to arrange slowly in sequence due to excessive speed. A bracket 808 is fixedly connected to the bottom of the inner wall of the outer shell 1. A discharge port 809 is opened on the reverse side of the outer shell 1.
[0036] The working principle of this embodiment is as follows: When the cleaning agent is ejected into the rebound mechanism 6, it will bounce directly onto the pressure plate 801 through the elastic force. At this time, the pressure is absorbed by the elastic element on the pressure plate 801, and the cleaning agent can fall onto the first reset plate 803 below through the pressure plate 801. If the cleaning agent is in a vertical position after being processed by the first reset plate 803, it will first pass through the first reset plate 803 and then fall onto the rotating plate 804. At this time, the rotating plate 804 is subjected to downward pressure, which will squeeze the elastic plate 805, and the elastic plate 805 is temporarily compressed. During the rebound, the rotating plate 804 rebounds upward, striking the cleaning agent and causing it to move upward again. It then falls laterally onto the first reset plate 803, then onto the sliding plate 806, and finally slides directly onto the second reset plate 807. At this time, because the sliding plate 806 is at an angle, the rolling speed of the cleaning agent is increased. The second reset plate 807 controls the rolling speed of the cleaning agent. It then falls onto the bracket 808 for arrangement. When too much cleaning agent is stored directly, it can be removed from the discharge port 809 so as not to affect the next arrangement.
Claims
1. A corridor medical care cleaning agent suspension bracket, comprising a housing (1) and a fixing rod (10), wherein a retrieval mechanism (8) is fixedly connected to the top of the housing (1), the top of the retrieval mechanism (8) is fixedly connected to the bottom of the fixing rod (10), a transverse rod (9) is fixedly connected to the top of the fixing rod (10), and two clamping plates (2) are fixedly connected to the front and rear ends of the transverse rod (9), and a first connecting rod (3) is fixedly connected to the side of the two clamping plates (2) that are close to each other, characterized in that, Also includes: The storage mechanism (4) includes a protective shell (409) and a roller (401). The inner wall of the protective shell (409) is provided with the roller (401). The front and back sides of the protective shell (409) are respectively fixedly connected to two first connecting rods (3). The inner wall of the protective shell (409) is fixedly connected with a second connecting rod (404). There are two second connecting rods (404). The roller (401) is fixedly connected to the side of each second connecting rod (404) away from the protective shell (409). A sliding groove is opened on the back side of the protective shell (409). A slider (408) is provided in the sliding groove opened on the protective shell (409). The groove wall is slidably connected to the slider (408). A movable rod (407) is fixedly connected to the front side of the slider (408). The movable rod (407) is away from the slider (408). A rotating block (406) is fixedly connected to one side of the roller (408). There are two rotating blocks (406). Both rotating blocks (406) are rotatably connected to the protective shell (409) through bearings. A funnel (7) is fixedly connected to the bottom of the two clamping plates (2). A top plate (405) is provided on the top of the two rotating blocks (406). A limiting plate (402) is rotatably connected to the top of the top plate (405) through bearings. Two first springs (403) are fixedly connected to the side of the limiting plate (402) near the roller (401). The side of the two first springs (403) away from the limiting plate (402) is fixedly connected to the roller (401). There are two sets of the top plate (405), the limiting plate (402), and the two first springs (403), and they are symmetrical about the center of the roller (401). The rebound mechanism (6) includes a protective shell (601). The bottom of the protective shell (601) is fixedly connected to the top of the outer shell (1). Rectangular holes are provided on the left and right sides of the protective shell (601). An elastic plate (602) is fixedly connected to the bottom of the inner wall of the protective shell (601). A pull rod (606) is fixedly connected to both the front and back sides of the elastic plate (602). The elastic plate (602) drives the slider (408) to slide downward. The slider (408) drives the movable rod (407) to move, which in turn drives the rotating block (406) to move, so that the rotating block (406) closes. The positioning rod (5) drives the slider (408) to slide downward, so that the movable rod (407) and the rotating block (406) move. The rotating block (406) will push against the top plate (405) and move to both sides, so that the limiting plate (402) cannot fix the cleaning agent, so that it falls into the funnel (7) below. The recycling mechanism (8) includes a protective cover (802). A pressure plate (801) is provided on the inner wall of the protective cover (802). The right side of the pressure plate (801) is fixedly connected to the inner wall of the protective cover (802). A first reset plate (803) is rotatably connected to the inner wall of the protective cover (802) through a bearing. A rotating plate (804) is provided on the right side of the first reset plate (803). The rotating plate (804) is rotatably connected to the protective cover (802) through a bearing.
2. The corridor medical care cleaning agent suspension bracket according to claim 1, characterized in that: The protective shell (409) and the clamping plate (2) have grooves on the rear end near the transverse rod (9). The slider (408) is fixedly connected to a positioning rod (5) on the side away from the protective shell (409). The positioning rod (5) is fixedly connected to an elastic plate (602) on the side away from the clamping plate (2).
3. The corridor medical care cleaning agent suspension bracket according to claim 2, characterized in that: The protective shell (601) has a groove on the reverse side and a groove at the bottom. A movable block (603) is provided on the left side of the inner wall of the protective shell (601). A roller (604) is rotatably connected to the bottom of the movable block (603) through a bearing. The outer wall of the roller (604) is in contact with the groove wall at the bottom of the protective shell (601).
4. The corridor medical care cleaning agent suspension bracket according to claim 3, characterized in that: The movable block (603) has a groove, and the groove wall is in contact with the pull rod (606). Two second springs (605) are fixedly connected to the side of the movable block (603) away from the elastic plate (602). A protective shell (601) is fixedly connected to the side of the two second springs (605) away from the movable block (603). The movable block (603), the pull rod (606), and the roller (604) are connected. There are two sets of two second springs (605), and they are symmetrical about the center of the protective shell (601).
5. The corridor medical care cleaning agent suspension bracket according to claim 1, characterized in that: An elastic plate (805) is fixedly connected to the bottom of the rotating plate (804), and the side of the elastic plate (805) away from the rotating plate (804) is fixedly connected to the protective cover (802).
6. The corridor medical care cleaning agent suspension bracket according to claim 5, characterized in that: The bottom of the elastic plate (805) is provided with a sliding plate (806). Both sides of the sliding plate (806) are fixedly connected to the inner wall of the outer shell (1). The inner wall of the outer shell (1) is rotatably connected to a second reset plate (807) through a bearing. The bottom of the inner wall of the outer shell (1) is fixedly connected to a bracket (808). The back of the outer shell (1) is provided with a discharge port (809).
Citation Information
Patent Citations
A hanging bracket for medical care cleaning agents in corridors
CN110584929B
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