Anti-pinch telescopic separation blade for endoscope
By using a vacuum suction cup to fix the baffle and transparent glass in the endoscope cabinet, the problem of the lack of a shielding device in the endoscope cabinet is solved, preventing the endoscope from being damaged when the door is closed and ensuring the normal use of the endoscope.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TIANJIN INTEGRATED TRADITIONAL CHINESE & WESTERN MEDICINE HOSPITAL (TIANJIN NANKAI HOSPITAL)
- Filing Date
- 2025-01-08
- Publication Date
- 2026-04-10
AI Technical Summary
The existing endoscope cabinets lack shielding devices, which makes the endoscope and tail tube easily damaged when the door is closed, increasing maintenance costs.
Design a telescopic baffle for preventing endoscope pinching. Use a vacuum suction cup to fix the baffle to the inner wall of the endoscope cabinet. Install transparent glass between the baffles to prevent the endoscope from being pinched and damaged when the door is closed.
This effectively prevents the endoscope and tail tube from being damaged when the door is closed, reducing the risk of damage and ensuring the normal use of the endoscope.
Smart Images

Figure CN224099324U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to medical instrument technical field, concretely relates to a telescopic baffle for endoscope anti -clamping. BACKGROUND
[0002] Endoscope is a kind of detection instrument integrated traditional optics, human engineering, precision machinery, modern electronics and other multidisciplinary technology. It is widely used in medical diagnosis, and it enters the body through natural body orifice or surgical incision, directly surveys the change of relevant part.
[0003] And the existing endoscope cabinet mostly adopts the design of push-pull door or turnover door, when the endoscope is placed and disinfected, the cabinet door needs to be closed, and the hose at the tail end of the endoscope is generally long, which leads to the situation that even if the entire endoscope is hung, the endoscope is dragged on the ground, and then when the door is closed, the endoscope or its tail pipe is easily crushed, finally leading to the endoscope being damaged and unable to be used, delaying the next use and increasing the cost.
[0004] Therefore, how to provide a telescopic baffle for endoscope anti -clamping to solve the defects of the existing endoscope cabinet structure is a technical problem to be solved by the person skilled in the art. CONTENT OF THE UTILITY MODEL
[0005] Therefore, the utility model provides a telescopic baffle for endoscope anti -clamping to solve the problem that the endoscope is easily damaged when the door is closed due to the lack of endoscope shielding device in the prior art.
[0006] In order to achieve the above purpose, the utility model provides the following technical scheme:
[0007] The utility model discloses a telescopic baffle for endoscope anti -clamping, which comprises:
[0008] Cabinet body, a plurality of endoscopes are installed on the inner top surface of the cabinet body;
[0009] Connecting block, installed in the interior of the cabinet body;
[0010] First baffle, vacuum chuck is installed on the left end surface, the vacuum chuck is arranged in pairs, and the vacuum chuck is adsorbed on the left side surface in the interior of the cabinet body;
[0011] Second baffle, the left end is connected to the right end of the first baffle, and two vacuum chucks are installed on the right end surface of the second baffle;
[0012] Transparent glass, arranged in pairs, respectively installed in the second baffle and the first baffle.
[0013] In a possible implementation mode, the first baffle comprises:
[0014] Connecting sleeves, arranged in pairs, with a vacuum chuck mounted on the right end surface;
[0015] Mounting plates, arranged in pairs, mounted between two connecting sleeves, with a moving space formed between the two connecting sleeves and the two mounting plates, and with the second blocking piece drivingly connected in the moving space;
[0016] Mounting grooves, provided on the mounting plates and outside the moving space, with an extrusion member mounted in one of the mounting grooves, and with the transparent glass mounted between the mounting groove and the extrusion member;
[0017] Sliding grooves, arranged in pairs, provided on the inner surface of the connecting sleeve;
[0018] Arc grooves, provided on the mounting plate.
[0019] In a possible implementation, the extrusion member comprises:
[0020] An extrusion spring, mounted on one end of the surface of the mounting groove;
[0021] A pressing plate, mounted on the other end of the extrusion spring, with one end surface of the pressing plate abutting against the surface of the transparent glass.
[0022] In a possible implementation, the second blocking piece comprises:
[0023] A displacement plate, with displacement rods connected to the upper and lower ends of the displacement plate, and with the displacement rods drivingly connected in the first blocking piece;
[0024] A slot, provided on the right side of the displacement plate;
[0025] An arc-shaped hole, provided in the displacement plate and extending to the front and rear surfaces of the displacement plate;
[0026] A limiting member, mounted in the slot, with the transparent glass mounted between the limiting member and the slot;
[0027] Limiting blocks, arranged in pairs, mounted on the left end side surface of the displacement rod.
[0028] In a possible implementation, the limiting member comprises:
[0029] A limiting spring, mounted on the side wall of the slot;
[0030] A U-shaped limiting block, mounted on the other end of the limiting spring;
[0031] A slope, provided on the end surface of the U-shaped limiting block.
[0032] In a possible implementation, the first baffle left end is inserted with the second baffle right end with a limiting piece, and the limiting piece comprises:
[0033] The connecting plate is provided with a clamping block on one end surface, and the outer surface of the clamping block is wrapped with a rubber ring layer.
[0034] In a possible implementation, the vacuum chuck is made of rubber.
[0035] The utility model discloses a vacuum chuck is set up first, then according to the length of the cabinet, the second baffle is pulled out, and the second baffle is connected to the other end of the cabinet inner wall through the vacuum chuck, at this moment, the whole baffle blocks in front of the endoscope, after installation, the transparent glass is installed in the second baffle and the first baffle respectively before being installed to the cabinet, which is convenient for observing the situation of the endoscope in the mirror cabinet, and the whole baffle can be made larger to block the lower surface of the front end of the cabinet, at this moment, the endoscope is blocked by the baffle and cannot be set in the door gap, so that the endoscope can be effectively prevented from being clamped when the door is closed, and the endoscope is prevented from being damaged accidentally. BRIEF DESCRIPTION OF DRAWINGS
[0036] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only exemplary, and for those skilled in the art, other implementation drawings can be obtained according to the provided drawings without creative labor.
[0037] The structure, proportion, size and the like shown in the specification are only used to cooperate with the content disclosed in the specification, for understanding and reading by those skilled in the art, and are not used to limit the limiting conditions that can be implemented by the utility model, so they do not have technical substantive significance, any modification of structure, change of proportion relationship or adjustment of size, without affecting the effect and purpose that can be produced by the utility model, should still fall within the scope covered by the technical content disclosed by the utility model.
[0038] Figure 1 A three-dimensional view of the telescopic baffle for preventing the endoscope from being clamped is provided for the utility model;
[0039] Figure 2 A three-dimensional view of the first baffle is provided for the utility model;
[0040] Figure 3 A three-dimensional view of the extrusion member is provided for the utility model;
[0041] Figure 4 A three-dimensional view of the second baffle is provided for the utility model;
[0042] Figure 5 The utility model provides a limiting component perspective view;
[0043] Figure 6 The utility model provides a limiting piece perspective view;
[0044] Figure 7 The utility model provides a clamping block perspective view;
[0045] In the drawing: 1 second baffle;11 slot;12 limiting component;121 limiting spring;122 inclined plane;123 U type limiting block;13 displacement plate;14 limiting block;15 displacement rod;16 arc hole;2 transparent glass;3 vacuum chuck;4 first baffle;41 movement space;42 sliding groove;43 mounting plate;44 mounting groove;45 circular arc groove;46 connecting sleeve;47 extrusion component;471 extrusion spring;472 pressing plate;5 cabinet;6 connecting block;7 endoscope;8 limiting piece;81 clamping block;82 connecting plate. Specific implementation
[0046] The following specific embodiments illustrate the embodiments of the utility model, and those skilled in the art can easily understand other advantages and effects of the utility model from the disclosed content of the specification, obviously, the described embodiments are a part of the embodiments of the utility model, instead of all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.
[0047] Please refer to Figures 1-7 , now a kind of for endoscope anti-pinch telescopic baffle disclosed in the utility model will be described, the utility model has seven parts, such as Figure 1 , including second baffle 1, transparent glass 2, vacuum chuck 3, first baffle 4, cabinet 5, connecting block 6 and endoscope 7, the top surface of the inside of cabinet 5 is installed with several endoscopes 7, connecting block 6 is installed in the inside of cabinet 5, first baffle 4 left end surface is installed with vacuum chuck 3, vacuum chuck 3 is set in pairs, vacuum chuck 3 is adsorbed on the left side surface in the inside of cabinet 5, second baffle 1 left end is drivingly connected at first baffle 4 right end, two vacuum chucks 3 are installed on the right end surface of second baffle 1, transparent glass 2 is set in pairs and is installed in second baffle 1 and first baffle 4 respectively.
[0048] The utility model in use, for the endoscope 7 of different lengths, the selected baffle length is also different, for part endoscope 7 longer, tail pipe is placed on the endoscope 7 of the bottom surface in the inside of cabinet 5, need whole baffle to plug the lower end of cabinet 5, can prevent endoscope 7 from being clamped and broken, and for Figure 1The endoscope 7 is relatively short, mainly to prevent the endoscope 7 from being placed immediately after the door is closed, at this time the endoscope 7 has not been hung on the cabinet under the action of gravity, and the endoscope 7 will appear slight swing, in the swing process, if the staff does not see the door closed, it is easy to damage the endoscope 7 in the process of closing the door, at this time the baffle needs to be installed to limit the swing of the endoscope 7, the baffle is installed, first, the first baffle 4 is attached to the right surface inside the cabinet 5, in the installation process, the vacuum suction cup 3 is attached to the surface, then the vacuum suction cup 3 is pressed hard, the air in the vacuum suction cup 3 is discharged, and the installation is completed under the action of pressure difference, after the first baffle 4 is installed, the second baffle 1 is pulled out of the first baffle 4 again, the pulling distance is determined according to the width of the inside of each mirror cabinet, and the second baffle 1 after pulling out is adsorbed to the surface on the other end inside the cabinet 5 by the vacuum suction cup, at this time the baffle will be arranged in front of the endoscope 7 and will not hinder the closing of the door, which can effectively prevent the endoscope 7 from being damaged by the rapid closing of the door in the process of slight swing after being placed back after use, the baffle can limit the swing of the endoscope 7. As for the installation of the transparent glass 2, the second baffle 1 is pulled out of the first baffle 4 by a part, the circular arc groove 45 and the installation groove 44 are exposed, and another installation method is to directly push the transparent glass 2 between the installation groove 44 and the pressing plate 472, in the process of pushing, the spring 471 is compressed to generate elastic force, the elastic force is applied to the pressing plate 472, the pressing plate 472 pushes the transparent glass 2, so that a part of the other end surface of the transparent glass 2 is attached to the installation groove 44, and when the transparent glass 2 is pushed in, the clamping block 81 is inserted at the installation groove 44 to prevent the movement of the transparent glass 2, and as for the installation of the transparent glass 2 in the second baffle 1, the transparent glass 2 is moved along the inclined surface 122, in the moving process, the transparent glass 2 is placed between the U-shaped limiting block 123 and the insertion groove 11, when the transparent glass 2 enters, the limiting spring 121 is compressed and generates elastic force, the elastic force is applied to the U-shaped limiting block 123, at this time the insertion groove 11 on the surface of the force clamps the transparent glass 2, when the transparent glass 2 completely enters the insertion groove 11, the limiting piece 8 is inserted at the entrance of the insertion groove 11, at this time the limiting of the transparent glass 2 can be completed, after the transparent glass 2 is installed, the whole baffle can be installed in the cabinet 5 for use.
[0049] In one specific embodiment, as Figure 2The first baffle 4 comprises a moving space 41, a sliding groove 42, a mounting plate 43, a mounting groove 44, a circular-arc groove 45, a connecting sleeve 46 and an extrusion member 47. The connecting sleeves 46 are arranged in pairs, and the right end surface is provided with the vacuum chuck 3. The mounting plates 43 are arranged in pairs and are mounted between the two connecting sleeves 46. The moving space 41 is formed between the two connecting sleeves 46 and the two mounting plates 43. The second baffle 1 is drivingly connected in the moving space 41. The mounting groove 44 is arranged on the mounting plate 43 and is arranged outside the moving space 41. The extrusion member 47 is arranged in one of the mounting grooves 44. The transparent glass 2 is arranged between the mounting groove 44 and the extrusion member 47. The sliding grooves 42 are arranged in pairs and are arranged on the inner surface of the connecting sleeve 46. The circular-arc groove 45 is arranged on the mounting plate 43. The moving space 41 is used to realize the movement of the displacement plate 13 and the displacement rod 15. The sliding groove 42 is used to realize the sliding of the limiting block 14. A stop block is arranged at one end of the sliding groove 42, that is, at the right end of the connecting sleeve 46. The stop block is arranged to limit the displacement of the limiting block 14, thereby limiting the sliding range of the second baffle 1, effectively preventing the second baffle 1 from sliding out of the first baffle 4 completely. The distance between the two mounting grooves 44 is greater than the thickness of the transparent glass 2. One of the mounting grooves 44 is provided with the extrusion member 47, and the extrusion member 47 cooperates with the other mounting groove 44 to clamp the transparent glass 2, thereby effectively preventing the transparent glass 2 from shaking after being installed. The circular-arc groove 45 is arranged to expose most of the transparent glass 2, thereby facilitating the observation of the internal condition of the cabinet 5 by the staff.
[0050] In one specific embodiment, as Figure 3 The extrusion member 47 comprises an extrusion spring 471 and a pressing plate 472. One end of the extrusion spring 471 is mounted on the surface of the mounting groove 44. The pressing plate 472 is mounted on the other end of the extrusion spring 471. One end surface of the pressing plate 472 abuts against the surface of the transparent glass 2. The elastic force generated by the compression of the extrusion spring 471 is applied to the pressing plate 472, pushing the pressing plate 472 towards the transparent glass 2, and the pressing plate 472 pushes the transparent glass 2 against the mounting groove 44.
[0051] In one specific embodiment, as Figure 4The second blocking piece 1 comprises a slot 11, a limiting member 12, a displacement plate 13, a limiting block 14, a displacement rod 15 and an arc-shaped hole 16. The displacement rod 15 is connected to the first blocking piece 4 and is connected to the upper and lower ends of the displacement plate 13. The slot 11 is arranged on the right side of the displacement plate 13. The arc-shaped hole 16 is arranged in the displacement plate 13 and extends to the front and back surfaces of the displacement plate 13. The limiting member 12 is arranged in the slot 11. The transparent glass 2 is arranged between the limiting member 12 and the slot 11. The limiting block 14 is arranged on the left end of the displacement rod 15. The width of the slot 11 is greater than that of the transparent glass 2. On one hand, the limiting member 12 can be arranged in the slot 11. On the other hand, the transparent glass 2 with different thicknesses can be arranged in the slot 11. The arc-shaped hole 16 is arranged to arrange the transparent glass 2 with a circular shape or a semi-elliptical shape. The arc-shaped hole 16 is arranged to arrange the transparent glass 2 with different shapes. The circular arc-shaped hole 45 has the same effect.
[0052] In a specific embodiment, as shown in Figure 5 The limiting member 12 comprises a limiting spring 121, an inclined surface 122 and a U-shaped limiting block 123. The limiting spring 121 is arranged on the side wall of the slot 11. The U-shaped limiting block 123 is arranged on the other end of the limiting spring 121. The inclined surface 122 is arranged on the surfaces of the two ends of the U-shaped limiting block 123. The U-shaped limiting block 123 and the limiting spring 121 have the same clamping method as the extrusion member 47. The inclined surface 122 is arranged to guide the transparent glass 2.
[0053] In a specific embodiment, as shown in Figures 6-7 The first blocking piece 4 is connected to the second blocking piece 1 through the limiting member 8. The limiting member 8 comprises a clamping block 81 and a connecting plate 82. The clamping block 81 is arranged on the surface of the connecting plate 82. The clamping block 81 is covered with a rubber ring. The limiting member 8 is clamped in the slot 11 and the mounting groove 44 through the rubber ring.
[0054] In a specific embodiment, the vacuum chuck 3 is made of rubber. The rubber material is soft, so that the cabinet 5 is not damaged. The vacuum chuck 3 can be reused. The second blocking piece 1 and the first blocking piece 4 can be used in endoscope cabinets with different widths.
[0055] Although the utility model has been described in detail above with general description and specific embodiments, some modifications or improvements can be made on the basis of the utility model, which is obvious to those skilled in the art. Therefore, these modifications or improvements made on the basis of not deviating from the spirit of the utility model belong to the scope of protection required by the utility model.
Claims
1. An anti-pinch telescoping shield for an endoscope, comprising: The utility model relates to a kind of medical treatment endoscope cleaning and disinfecting device, including: Cabinet (5), install several endoscopes (7) on internal top surface; Connecting block (6), installed inside the cabinet (5); First baffle (4), vacuum chuck (3) is installed on the left end surface, the vacuum chuck (3) is arranged in pairs, the vacuum chuck (3) is adsorbed on the left side surface inside the cabinet (5); Second baffle (1), left end transmission is connected in the right end of the first baffle (4), two vacuum chucks (3) are installed on the right end surface of the second baffle (1); Transparent glass (2), arranged in pairs, respectively installed in the second baffle (1) and first baffle (4).
2. The anti-pinch telescoping shield for an endoscope of claim 1, wherein, The first baffle (4) includes: Connecting sleeve (46), arranged in pairs, right end surface is installed with the vacuum chuck (3); Mounting plate (43), arranged in pairs, is installed between two connecting sleeves (46), and the moving space (41) is formed between two connecting sleeves (46) and two mounting plates (43), and the second baffle (1) is transmission connected in the moving space (41); Mounting groove (44), is opened in the mounting plate (43), the mounting groove (44) is arranged outside the moving space (41), one of the mounting grooves (44) is installed with extrusion component (47), and the transparent glass (2) is installed between the mounting groove (44) and extrusion component (47); Chute (42), arranged in pairs, is opened on the inner surface of the connecting sleeve (46); Arc slot (45), is opened in the mounting plate (43).
3. The anti-pinch telescoping shield for an endoscope of claim 2, wherein, The extrusion component (47) includes: Extrusion spring (471), one end is installed on the surface of the mounting groove (44); Pressing plate (472), is installed on the other end of the extrusion spring (471), and one end surface of the pressing plate (472) is abutted on the surface of the transparent glass (2).
4. The anti-pinch telescoping shield for an endoscope of claim 1, wherein, The second baffle (1) includes: Displacement plate (13), displacement rod (15) is connected to the upper and lower ends, the displacement rod (15) is transmission connected in the first baffle (4); Slot (11), is opened in the right side of the displacement plate (13); Arc-shaped hole (16), is opened in the displacement plate (13) and extends to the front and back surfaces of the displacement plate (13); Limiting component (12), is installed in the slot (11), and the transparent glass (2) is installed between the limiting component (12) and slot (11); Limiting block (14), arranged in pairs, is installed on the left end side surface of the displacement rod (15).
5. The anti-pinch telescoping shield for an endoscope of claim 4, wherein, The limiting component (12) includes: Limiting spring (121), is installed on the side wall of the slot (11); U-shaped limiting block (123), is installed on the other end of the limiting spring (121); Inclined surface (122), is opened on the two end surfaces of the U-shaped limiting block (123).
6. The anti-pinch telescoping shield for an endoscope of claim 1, wherein, The left end of the first baffle (4) and the right end of the second baffle (1) are inserted with limiting piece (8), and the limiting piece (8) includes: Connecting plate (82), the clamping block (81) is installed on one end surface, and the clamping block (81) is wrapped with rubber ring layer on the outer surface.
7. The anti-pinch telescoping shield for an endoscope of claim 1, wherein, The vacuum chuck (3) adopts rubber material.