Endoscope storage rack

By designing the endoscope storage rack with its hanging base, clamping base, and anti-slip lock, the problems of inconvenience in retrieving and adaptability of endoscopes have been solved, achieving stable fixation and safe monitoring, and improving the service life and safety of endoscopes.

CN223845764UActive Publication Date: 2026-01-30ZHEJIANG PROVINCIAL LITONGDE HOSPITAL (ZHEJIANG PROVINCIAL INST OF MENTAL HEALTH)
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Patent Information

Application Number
CN202520246989.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2026-01-30
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

Existing endoscope storage devices are inconvenient to access due to their high hanging position, are easily damaged by bumps and knocks, and cannot be adapted to different models and specifications of endoscopes, increasing the risk of injury.

Method used

An endoscope storage rack was designed, comprising a frame, a sealed compartment, a limiting structure, and an adjustment structure. It uses a suspension seat, a clamping seat, an anti-slip buckle, and elastic polymer material. Combined with the adjustment structure and operation input device, it achieves stable fixation and angle adjustment, and is suitable for endoscopes of different sizes. The rack also enhances security through an RFID module and a camera.

Benefits of technology

It achieves stable fixation and convenient retrieval of endoscopes, reduces the risk of damage, adapts to different models and specifications, extends service life, and ensures equipment safety through recording and monitoring functions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a storage rack for endoscopes, which is convenient for personnel in an endoscope center to quickly and conveniently store, take and place the endoscopes and can stably store the endoscopes, so that endoscope equipment is effectively protected, the service life is prolonged, the cost of a hospital is reduced, and the storage rack can be suitable for different endoscope structures. According to the key points of the technical scheme, the device comprises a frame body, a sealing bin, a limiting structure and an adjusting structure, the sealing bin is arranged in the frame body, the sealing bin is divided into a plurality of classification chambers, each classification chamber is provided with a chamber door, the chamber doors are connected with the classification chambers in a lockable mode, and the sealing bin is provided with an operation input piece used for controlling the chamber doors to be unlocked; a plurality of sets of limiting structures are arranged in each classification chamber, each limiting structure comprises a hanging base, a clamping base and an anti-skid lock catch, the hanging bases and the clamping bases are arranged at the positions, close to the upper ends, of the inner walls of the classification chambers, the anti-skid lock catches are arranged at the positions, close to the lower sides, of the inner walls of the classification chambers, and self-locking pieces are arranged on the anti-skid lock catches; and the inner wall of the clamping seat is provided with an adaptive layer made of an elastic high polymer material.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the medical field, concretely is a storage rack of endoscope. BACKGROUND

[0002] As an important tool of modern medical diagnosis and treatment, endoscope is widely used in the field of gastroenterology, respiratory department, urology department and so on. Because its structure is precise, the price is expensive, and the use frequency is high, the storage and storage of endoscope become the important link in hospital management.

[0003] However, the existing endoscope (endoscope) storage technology has many problems in practical application:

[0004] At present, the suspension end structure of the endoscope storage device used in many hospitals is usually designed to be horizontally arranged, and the suspension position is relatively high. When the medical staff takes or stores the endoscope, the mirror body needs to be pulled down from a high position. During the storage or taking process, improper force or limited operation space may cause the endoscope to collide with the storage device or other equipment, resulting in scratches on the surface of the mirror body or damage to the internal structure.

[0005] And during the taking and placing process, the curved part or the mirror body of the endoscope is easy to be pulled, causing stress concentration, which may cause the mirror body to deform or the internal optical fiber to break, affecting its optical performance and service life.

[0006] The suspension end structure of the existing storage device is usually fixed size or single design, which cannot adapt to different models and specifications of endoscope, causing the mirror body to shake or slip during storage, increasing the risk of damage.

[0007] Therefore, a new type of endoscope storage rack is needed to solve the above technical problems and provide a safer, more convenient and intelligent storage solution. INVENTION CONTENTS

[0008] The utility model aims at providing an endoscope storage rack, which can be used by personnel in the endoscope center to quickly and conveniently store and take the endoscope, and can be stably stored, thereby effectively protecting the endoscope equipment, increasing the service life, reducing the hospital cost, and being applicable to different endoscope structures.

[0009] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0010] The utility model provides a storage rack of endoscope, including frame body, sealed storehouse, limiting structure and adjustment structure, sealed storehouse is located in the frame body, sealed storehouse divides into multiple classified room, is equipped with a room door in each classified room, the room door can be locked with classified room, and the operation entry for controlling the room door is unlocked on sealed storehouse, and each classified room is equipped with multiple sets of limiting structure, the limiting structure includes suspension seat, clamping seat and multiple antiskid lock, suspension seat and clamping seat are located in the position of near upper end of classified room inner wall, and antiskid lock is located in the position of near lower side of classified room inner wall, and the antiskid lock is equipped with self -locking spare, and the inner wall of clamping seat is equipped with the adaptive layer made of elastic polymer material, and adjustment structure is located in the inner wall of classified room to control the angle of suspension seat and clamping seat simultaneously.

[0011] Compared with the prior art, the storage rack of endoscope with the above technical scheme has the following beneficial effects:

[0012] The storage rack of endoscope of the utility model, through the cooperation of the suspension seat and the clamping seat, realizes the stable fixation of the end of the endoscope, avoids the end of the endoscope from being separated, and further reinforces the clamping effect by using the deformation and reset effect of the adaptive layer, and is suitable for fixing endoscopes of different specifications, so that the cost is greatly reduced without the need to specially purchase storage racks corresponding to different endoscopes. The elastic polymer material has both supporting force and flexibility, and avoids scratching the lens body by hard materials.

[0013] Meanwhile, the adjustment structure is used to adjust the placement angle of the suspension seat and the clamping seat, which is convenient for the placement requirements of clamping and suspension, and facilitates storage and use. The antiskid lock is used to limit and fix the tube body of the endoscope, which further increases the protection effect of the entire endoscope.

[0014] The operation entry is used to unlock, which can not only avoid the problem of random opening and closing by unauthorized persons, but also record the operation times and user information in real time, which is convenient for subsequent tracing, thereby ensuring the safety of the endoscope equipment.

[0015] Preferably, the adjustment structure includes a docking seat, a control rod, a driving gear, a driven gear, a reset member, and a pull knob. The docking seat is rotatably connected to the inner wall of the classified room through the driven gear. The suspension seat and the clamping seat are located on the side of the docking seat away from the inner wall of the classified room. The control rod is movably arranged on the inner wall of the classified room. The driving gear is rotatably arranged on the inner wall of the classified room and is in meshing connection with the control rod and the driven gear. The pull knob is movably arranged on the outer side of the inner wall of the classified room and is connected with the control rod. The reset member is arranged between the control rod and the bottom of the classified room.

[0016] Preferably, the reset member includes, but is not limited to, a reset spring and an elastic block.

[0017] The meshing relationship of the driving gear, the control rod and the driven gear is utilized, and only the control of the pulling knob is needed to drive the adjustment angle requirement of the docking seat, which is convenient and efficient, and the subsequent reuse is facilitated through the reset member.

[0018] Preferably, a limiting member is arranged between the docking seat and the classification chamber, which is elastically arranged or flexibly arranged. By utilizing the buffering effect of the limiting member, the endoscope can be prevented from being subjected to excessive reaction force, so as to simultaneously realize the reset requirement of the docking seat in the storage state and the protection requirement of the equipment.

[0019] Preferably, the middle part of the anti-skid lock buckle is a lock hole, the self-locking member includes a lock piece and an elastic strip, and the anti-skid lock buckle is provided with a slot communicating with the lock hole on the side facing the chamber door. One side of the anti-skid lock buckle corresponding to the slot is provided with a movable slot for the lock piece to enter and exit, the lock piece is connected to the inside of the movable slot through the elastic strip, and the end of the lock piece away from the elastic strip is a holding portion. By utilizing the characteristics of the elastic strip that can automatically stretch and reset and can be contracted and deformed under force, the automatic locking function of the slot can be realized by releasing the holding portion or the lock piece after the lock piece is controlled to shrink into the movable slot.

[0020] Preferably, the operation input member includes but is not limited to an RFID module, a graphical code scanner, a physical keyboard and a touch screen input module. The RFID module can quickly read the information of the operator (such as a bracelet or other information identity card with a magnetic stripe), quickly register and unlock the internal module, and facilitate subsequent tracing; the graphical code scanner can quickly identify the basic information on a work card and real-time record the relevant information in the internal system, identify and compare the use authority of the owner of the graphical code; the keyboard and the touch screen input module belong to equivalent technical means, and the password of the corresponding authority can be input on the physical key or virtual keyboard.

[0021] Preferably, one end of the slot without the movable slot is provided with a trigger button and a signal sending unit, and the signal sending unit includes but is not limited to a wireless signal transmitter and a Bluetooth module. The storage management is optimized through the Internet of Things or local area network technology, the background can be conveniently viewed and supervised, and the problem of data loss after the storage rack is powered off can be avoided.

[0022] Preferably, an ultraviolet lamp and a power supply mechanism are arranged in each classification chamber. The ultraviolet lamp is used to effectively reduce the microbial load of the medical instrument and ensure the use safety of the endoscope equipment.

[0023] Preferably, the safety management module and the camera lens are further included, the safety management module is integrally arranged on the rack body, and the camera lens is arranged on the operation input member or above the front side of the chamber door corresponding to the rack body. The facial data of the user can be recorded, or the video of the person approaching the storage rack within the last few minutes can be recorded and separately recorded in a special video module, so as to further ensure the safety of the endoscope equipment.

[0024] Preferably, the door is transparent, and a damping ring is provided at the connection between the door and the sorting chamber to effectively prevent the door from moving freely during use. Attached Figure Description

[0025] Figure 1 This is a structural schematic diagram of an embodiment of the endoscope storage rack of this utility model.

[0026] Figure 2 This is a structural diagram showing the interior of the sorting room in the embodiment (with the door open).

[0027] Figure 3 This is a cross-sectional schematic diagram of the adjusted structure in the embodiment.

[0028] Figure 4 This is an enlarged cross-sectional view of point A in the embodiment.

[0029] Figure 5 This is a cross-sectional structural diagram of the anti-slip latch in the embodiment.

[0030] Figure 6 This is a schematic cross-sectional view of the door and damping ring in the embodiment.

[0031] Reference numerals: 1. Frame; 2. Sealed compartment; 20. Classification chamber; 21. Chamber door; 3. Limiting structure; 30. Suspension seat; 31. Clamping seat; 32. Anti-slip lock; 33. Adaptation layer; 34. Lock hole; 35. Slot; 36. Movable slot; 4. Adjustment structure; 40. Connecting seat; 41. Control lever; 42. Driving gear; 43. Driven gear; 44. Reset component; 45. Pull button; 46. Limiting component; 5. Operation input component; 6. Self-locking component; 60. Locking plate; 61. Elastic strip; 62. Grip; 7. Trigger button; 8. Camera lens; 9. Damping ring. Detailed Implementation

[0032] The present invention will now be further described with reference to the accompanying drawings.

[0033] like Figures 1 to 6 The endoscope storage rack shown includes a frame 1, a sealing chamber 2, a limiting structure 3, and an adjustment structure 4.

[0034] The sealed compartment 2 is located in the frame 1. The sealed compartment 2 is divided into multiple classification chambers 20. Each classification chamber 20 is equipped with a door 21. The door 21 is locked to the classification chamber 20. The sealed compartment 2 is equipped with an operation input device 5 for controlling the unlocking of the door 21.

[0035] The operation input 5 includes but is not limited to an RFID module, a graphic code scanner, a physical keyboard, and a touch screen input module. The locking connection between the room door 21 and the classification room 20, the bottom logic of the operation input component, and the structural principle can refer to the existing password door structure.

[0036] Each classification room 20 is provided with a plurality of limiting structures 3, which include a hanging seat 30, a clamping seat 31, and a plurality of anti-skid buckles 32. The hanging seat 30 and the clamping seat 31 are arranged on the inner wall of the classification room 20 near the upper end, and the anti-skid buckles 32 are arranged on the inner wall of the classification room 20 near the lower side. The inner wall of the clamping seat 31 is provided with an adaptive layer 33 made of elastic polymer material. The adjusting structure 4 is arranged on the inner wall of the classification room 20 to simultaneously control the angle of the hanging seat 30 and the clamping seat 31. The adaptive layer 33 is made of elastic polymer material, memory foam, or other memory materials, taking into account the support force and flexibility to avoid scratching the lens by hard materials.

[0037] The adjusting structure 4 includes a docking seat 40, a control rod 41, a driving gear 42, a driven gear 43, a reset component 44, and a pulling knob 45. The docking seat 40 is rotatably connected to the inner wall of the classification room 20 through the driven gear 43. The hanging seat 30 and the clamping seat 31 are arranged on the side of the docking seat 40 away from the inner wall of the classification room 20. The control rod 41 is movably arranged on the inner wall of the classification room 20. The driving gear 42 is rotatably arranged on the inner wall of the classification room 20, and is simultaneously meshed and connected with the control rod 41 and the driven gear 43. The pulling knob 45 is movably arranged on the outer side of the inner wall of the classification room 20, and is connected with the control rod 41. The reset component 44 is arranged between the control rod 41 and the bottom of the classification room 20.

[0038] The reset component 44 includes but is not limited to a reset spring and an elastic block. A limiting component 46 is arranged between the docking seat 40 and the classification room 20, which is elastically or flexibly arranged.

[0039] The anti-skid buckle 32 has a lock hole 34 in the middle. The anti-skid buckle 32 is provided with a self-locking component 6. The self-locking component 6 includes a locking piece 60 and an elastic strip 61.

[0040] The side of the anti-skid buckle 32 facing the room door 21 is provided with a slot 35 communicating with the lock hole 34. One side of the anti-skid buckle 32 corresponding to the slot 35 is provided with a movable slot 36 for the locking piece 60 to pass through. The locking piece 60 is connected with the inside of the movable slot 36 through the elastic strip 61. The end of the locking piece 60 away from the elastic strip 61 is a holding portion 62.

[0041] The end of the slot 35 without the movable slot 36 is provided with a trigger button 7 and a signal sending unit. The signal sending unit includes but is not limited to a wireless signal transmitter and a Bluetooth module. In this embodiment, the signal sending unit can be connected to the hospital internal Internet of Things or local area network, and can synchronize the locking state information of the self-locking component 6 to the background server.

[0042] Further comprising a safety management module and a camera lens 8, the safety management module is integrated on the frame body 1, and the camera lens 8 is arranged on the operation input piece 5 or above the front side of the corresponding room door 21 of the frame body 1.

[0043] In addition, an ultraviolet lamp and a power supply mechanism are arranged in each classification room 20, and the classification room 20 can be disinfected in sections, different disinfection levels can be set, and a temperature control module and a drying module corresponding to the existing structure are arranged in the classification room 20, and the environment in the sealed warehouse 2 is dry to avoid moisture to protect the equipment.

[0044] In addition, the room door 21 is transparent, and in order to avoid the room door 21 from moving randomly during use, a damping ring 9 is arranged at the connection between the room door 21 and the classification room 20.

[0045] In use, first, the warehouse door is opened through the operation input piece 5, then the pulling button 45 is pulled down, the control rod 41 moves downward and the reset piece 44 is forced to contract, as shown in the figure, the driving gear 42 rotates counterclockwise, the driven gear 43 drives the docking seat 40 to rotate clockwise, the docking seat 40 drives the clamping seat 31 and the hanging seat 30 to tilt downward to the outside of the classification room 20, so that the clamping seat 31 and the hanging seat 30 are at an angle that is convenient to place. Figure 3 When the inner lens end is placed, the reset piece 44 drives each component of the adjusting structure 4 to reset when the pulling button 45 is released, and the limiting piece 46 avoids the reaction force as much as possible when the docking seat 40 is reset. Then, the locking piece 60 is pushed into the movable slot 36 by the hand-held holding part 62, the elastic strip 61 is forced to contract, so as to open the slot 35, the tube body of the endoscope can be placed in the locking hole 34 through the slot 35, the holding part 62 is released, the elastic strip 61 drives the locking piece 60 to reset in the slot 35, and the locking piece 60 presses the trigger button 7 to operate the signal sending unit, and synchronizes the operation frequency, time and other related information to the server of the hospital background.

[0046] The preferred embodiments of the present application are described above, and those skilled in the art can make some modifications and improvements without departing from the principle of the present application, which should be regarded as the protection scope of the present application.

Claims

1. A storage rack for endoscopes, characterized by: The utility model relates to a kind of sealed warehouse, including frame (1), sealed warehouse (2), limiting structure (3) and adjustment structure (4), the sealed warehouse (2) is located in frame (1), sealed warehouse (2) is divided into multiple classification room (20), each classification room (20) is equipped with one room door (21), the room door (21) is lockable with classification room (20), and operation entry piece (5) for controlling the room door (21) is unlocked is equipped on sealed warehouse (2), each classification room (20) is equipped with multiple sets of limiting structure (3) in, the limiting structure (3) includes suspension seat (30), clamping seat (31) and multiple antiskid lock (32), suspension seat (30) and clamping seat (31) are located in the position of classification room (20) inner wall near upper end, antiskid lock (32) is located in the position of classification room (20) inner wall near lower side, self-locking piece (6) is equipped on the antiskid lock (32), and the inner wall of clamping seat (31) is equipped with the adaptive layer (33) made of elastic polymer material, adjustment structure (4) is located in the inner wall of classification room (20) to control the angle of suspension seat (30), clamping seat (31) simultaneously.

2. The endoscope storage rack of claim 1, wherein: The adjustment structure (4) includes docking seat (40), control rod (41), driving gear (42), driven gear (43), reset piece (44) and pull button (45), the docking seat (40) is rotatably connected with the inner wall of the classification room (20) by the driven gear (43), the suspension seat (30) and the clamping seat (31) are located on the side of the docking seat (40) away from the inner wall of the classification room (20), the control rod (41) is movably arranged on the inner wall of the classification room (20), the driving gear (42) is rotatably arranged on the inner wall of the classification room (20), and the driving gear (42) is simultaneously meshed with the control rod (41) and the driven gear (43), the pull button (45) is movably arranged on the outer side of the inner wall of the classification room (20), and the pull button (45) is connected with the control rod (41), the reset piece (44) is arranged between the control rod (41) and the bottom of the classification room (20).

3. The endoscope storage rack of claim 2, wherein: The reset piece (44) includes but is not limited to a reset spring and an elastic block.

4. The endoscope storage rack of claim 3, wherein: A limiting piece (46) is arranged between the docking seat (40) and the classification room (20), and the limiting piece (46) is elastically arranged or flexibly arranged.

5. The endoscope storage rack of claim 1, wherein: The middle part of the antiskid lock (32) is a lock hole (34), the self-locking piece (6) includes a lock piece (60) and an elastic strip (61), one side of the antiskid lock (32) facing the room door (21) is provided with a slot (35) communicating with the lock hole (34), one side of the antiskid lock (32) corresponding to the slot (35) is provided with a movable slot (36) for the lock piece (60) to enter and exit, the lock piece (60) is connected with the inside of the movable slot (36) through the elastic strip (61), and the end of the lock piece (60) away from the elastic strip (61) is a holding portion (62).

6. The endoscope storage rack of claim 1, wherein: The operation entry piece (5) includes but is not limited to an RFID module, a graphical code scanner, a physical keyboard, and a touch screen input module.

7. The endoscope storage rack of claim 5, wherein: The one end of the slot (35) without the movable slot (36) is provided with a trigger button (7) and a signal sending unit, and the signal sending unit includes but is not limited to a wireless signal transmitter and a Bluetooth module.

8. The endoscope storage rack of claim 1, wherein: An ultraviolet lamp and a power supply mechanism are arranged in each of the classification chambers (20).

9. The endoscope storage rack of claim 1, wherein: The security management module is integrated on the frame body (1), and the camera lens (8) is arranged on the operation input part (5) or above the front side of the frame body (1) corresponding to the chamber door (21).

10. The housing for endoscopes according to any one of claims 1 to 9, characterized in that: The chamber door (21) is transparent, and a damping ring (9) is arranged at the connection between the chamber door (21) and the classification chamber (20).