Ophthalmology precision instrument storage and protection box
By combining the main ring with the limiting ring and the instrument in a tight-fitting and positioning manner, and with the design of a transparent cover and ventilation groove, the problem of instruments loosening and slipping during disinfection, sterilization and transfer is solved, realizing stable storage and efficient cleaning and disinfection of instruments, reducing damage and safety risks.
Patent Information
- Application Number
- CN202520181723.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-05
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-02-05
AI Technical Summary
Existing storage and protection boxes are prone to detachment and slippage of instruments during disinfection, sterilization, and transfer, leading to damage, increased maintenance costs, and the risk of sharp objects injuring operators.
The device uses a main ring combined with a limiting ring to tightly engage and position the instrument. The instrument status can be observed through a transparent cover, reducing the number of handling steps. Combined with the ventilation slot and box design, it enables rapid cleaning and disinfection.
It effectively prevents instruments from detaching and shaking during transfer, reduces damage, lowers maintenance costs, improves cleaning and disinfection efficiency, and reduces the risk of sharp injuries.
Smart Images

Figure CN223804082U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of storage protection box, especially to the ophthalmic precision instrument storage protection box. BACKGROUND
[0002] Ophthalmic precision instruments refer to fine, complex and easily damaged medical instruments used in ophthalmic surgery. These instruments have special methods and technical requirements for cleaning, disinfection and sterilization. They are usually used for eye surgery or intraocular surgery. The characteristics of these instruments include fine and complex structure, various materials, high price, and fragile head end. For example, ophthalmic retinal intraocular forceps, intraocular scissors, diamond knives, reusable puncture knives, gem knives, and double-handed suction handles are precision instruments. They are fine in structure and high in manufacturing precision, usually reaching microns or even nanometers. If such precision instruments are damaged, it may affect the accuracy of surgery and diagnosis. Therefore, when storing such precision instruments, a storage protection box is needed for storage and protection.
[0003] The existing storage protection box is usually used by medical staff to cover the outer end of the instrument with a protective sleeve for storage and protection. After the instrument is used on the operating table, it needs to go through multiple taking and placing links before being disinfected, sterilized and packaged. In order to check its integrity and functional status, the protective sleeve of the instrument tip needs to be frequently taken out, held and checked. At the same time, the instrument may slip off during the process of cleaning, disinfecting and sterilizing, and during the process of transferring and taking it to the operating table after sterilization, which may cause the tip to collide and be damaged, reducing the integrity of the instrument and increasing the maintenance cost of the precision instrument. Even in the operation process, the sharp instrument tip may occasionally cause accidental injury, resulting in sharp injury to the operator and reducing the safety of use.
[0004] Therefore, in view of the above-mentioned existing storage protection box, in order to check the integrity and functional status, the protective sleeve of the instrument tip needs to be frequently taken out, held and checked. At the same time, the instrument may slip off during the process of cleaning, disinfecting and sterilizing, and during the process of transferring and taking it to the operating table after sterilization, which may cause the tip to collide and be damaged, reducing the integrity of the instrument and increasing the maintenance cost of the precision instrument. Even in the operation process, the sharp instrument tip may occasionally cause accidental injury, resulting in sharp injury to the operator and reducing the safety of use. An ophthalmic precision instrument storage protection box can be designed to tightly fit and position the instrument, fix the instrument at a specific position, prevent the instrument from moving during transfer, observe the status of the instrument inside the storage box using a transparent cover plate, eliminate the need for protective sleeve protection, reduce the wear and tear of the instrument caused by the protective sleeve, and reduce the risk of sharp injury during the use of the protective sleeve, thereby protecting the integrity and functionality of the instrument. SUMMARY
[0005] In order to overcome the existing storage protection box, in order to check its integrity and functional integrity, it is necessary to frequently take out and take a look at and remove the protective sleeve of the instrument tip, and the instrument cleaning and disinfection and sterilization links, and in the transfer position and after sterilization, the process of taking to the operating table, the instrument may be loose and fall off to cause the tip to collide and damage, reduce the integrity of the instrument, and increase the maintenance cost of the precision instrument.
[0006] The technical scheme of the utility model discloses: ophthalmic precision instrument storage protection box, including instrument cover, connecting rod, cover plate, connecting ring, storage box, limiting plate, limiting rod, main ring, box fence, the inside of instrument cover is equipped with storage box, and instrument cover is set up with the storage box buckle, and the inside fixed of storage box is equipped with limiting plate, and the inside of limiting plate is equipped with a plurality of limiting holes, and the inside of a plurality of limiting holes is linearly equipped with a plurality of positioning rods, and the one end of a plurality of positioning rods is fixedly equipped with limiting rod, and the outer wall of limiting rod is equipped with main ring, and the outer wall of limiting rod is equipped with limiting ring on the inside of main ring, and the outer wall of limiting ring is fixedly equipped with a plurality of bolts, and the inside of main ring is equipped with a plurality of connecting grooves of accommodating bolt.
[0007] As preferred, the outer wall of the plurality of positioning rods is surrounded by a plurality of gaskets, and the plurality of gaskets are fixedly connected with the positioning rods.
[0008] As preferred, the one end of the storage box is provided with a ventilation groove, and the inside of the ventilation groove is fixedly provided with a sleeve rod, and the outer wall of the sleeve rod is provided with a box fence.
[0009] As preferred, the upper end of the box fence is fixedly provided with two clamping blocks, and the inner wall of the ventilation groove is provided with clamping grooves accommodating the two clamping blocks, and the box fence is fixedly connected with the storage box through the two clamping blocks.
[0010] As preferred, the inside of the instrument cover is fixedly provided with a connecting rod, and the outer side of the connecting rod is provided with two cover plates, and the two cover plates are provided with two connecting rings.
[0011] As preferred, the outer wall of the two cover plates is fixedly provided with a limiting strip, and the two cover plates are provided with the limiting strip.
[0012] As preferred, the surface of the two cover plates is provided with a plurality of ventilation grooves.
[0013] The utility model discloses the beneficial effects:
[0014] 1、Compared with the traditional storage protection box, the instrument is fixed in a specific position by adopting the close fitting positioning of the main ring combined with the limiting ring and the instrument, which effectively limits the instrument from shifting and shaking during the shifting process. The limiting and fixing of the limiting ring are convenient for quick loosening and taking. The cover plate is made of transparent and visible plastic material, so that the state of the instruments in the storage box can be directly observed. The cover plate can also be pressed to open and observe, avoiding damage of the instruments due to collision or separation from the protection box during disinfection, sterilization and packaging, protecting the integrity and functionality of the instruments. In addition, the storage box has a good space, so that the sharp end of the instrument is not easy to collide, the protection of the protective sleeve can be avoided, and the wear and tear of the instrument caused by the protective sleeve and the risk of sharp injury during the use of the protective sleeve can be reduced.
[0015] 2、By injecting disinfectant or cleaning liquid into the storage box through the opening of the box column, the number of taking and storing the instruments is reduced, the dirt and residues on the surface of the instruments including non-lumen instruments and lumen instruments are effectively cleaned, the method of cleaning and disinfecting in the instrument box reduces the frequency of taking and placing the instruments, and the full cleaning of each instrument is improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 The overall structure of the ophthalmic precision instrument storage protection box is shown.
[0017] Figure 2 The cover plate structure of the ophthalmic precision instrument storage protection box is shown.
[0018] Figure 3 The main ring structure of the ophthalmic precision instrument storage protection box is shown.
[0019] Figure 4 The limiting plate structure of the ophthalmic precision instrument storage protection box is shown.
[0020] BRIEF DESCRIPTION OF DRAWINGS: 1, instrument cover; 2, connecting rod; 3, cover plate; 4, connecting ring; 5, limiting strip; 6, storage box; 7, limiting plate; 8, positioning rod; 9, gasket; 10, limiting rod; 11, main ring; 12, limiting ring; 13, box column; 14, sleeve rod; 15, clamping block. DETAILED DESCRIPTION
[0021] The utility model will be further described below in combination with the drawings and examples.
[0022] Please refer to Figures 1-4The utility model provides an embodiment: ophthalmic precision instrument storage protection box, including instrument cover 1, connecting rod 2, apron 3, connecting ring 4, storage box 6, limit stop 7, limit rod 10, main ring 11, box fence 13, the inside of instrument cover 1 is equipped with storage box 6, and instrument cover 1 is set up with the buckle of storage box 6, and the inside fixed of storage box 6 is equipped with limit stop 7, and the inside of limit stop 7 is equipped with multiple sets of limiting hole, and multiple sets of limiting hole are linearly equipped with multiple sets of positioning rod 8, and one end of multiple sets of positioning rod 8 is fixedly equipped with limit rod 10, and the outer wall of limit rod 10 is equipped with main ring 11, and the outer wall of limit rod 10 is located in the inside of main ring 11 and is equipped with limit ring 12, and the outer wall of limit ring 12 is fixedly equipped with multiple sets of bolt, and the inside of main ring 11 is equipped with multiple sets of accommodating bolt connecting groove.
[0023] Please refer to Figures 1-3 Fig. In the embodiment, the outer wall of multiple sets of positioning rod 8 is surrounded by multiple sets of gasket 9, multiple sets of gasket 9 are fixedly connected with positioning rod 8, and positioning rod 8 is limited by gasket 9 and limiting hole. By adopting gasket 9 to assist positioning rod 8 and limiting hole to fit and limit, the gap between positioning rod 8 and limiting hole is effectively filled, so that positioning rod 8 is more stable in limiting hole, avoiding the movement and falling of positioning rod 8 after the instrument is limited, reducing the movement and collision of the instrument, prolonging its service life, one end of storage box 6 is provided with a ventilation groove, the inside of the ventilation groove is fixedly provided with a sleeve rod 14, the outer wall of the sleeve rod 14 is provided with a box fence 13, and the inside is washed through the ventilation groove by turning over the movable opening box fence 13. Without frequently taking out and putting in the instrument, the possible collision damage of the instrument in the process of taking out and putting in is reduced, and the full protection of the instrument is improved.
[0024] Please refer to Figures 2-3 Fig. In the embodiment, the upper end of the box fence 13 is fixedly provided with two sets of clamping blocks 15, and the inner wall of the ventilation groove is provided with a clamping groove accommodating the two sets of clamping blocks 15. The box fence 13 is fixedly connected with the storage box 6 through the two sets of clamping blocks 15. By turning on the box fence 13, the interface of the pipe cavity type instrument can be conveniently cleaned, the dirt and residues in the pipe cavity are effectively cleaned, the cross contamination between different instruments is reduced, the cleaning effect of each instrument is improved, the inside of the instrument cover 1 is fixedly provided with the connecting rod 2, the outer side of the connecting rod 2 is provided with two sets of aprons 3, and the two sets of aprons 3 are provided with two sets of connecting rings 4. By adopting the connecting rod 2 to movably connect the two sets of aprons 3, the apron 3 can be conveniently opened to observe the complete condition of the instrument, avoiding the process of frequently taking out and putting in the instrument, reducing the time of the instrument exposed to the external environment, and reducing the pollution risk.
[0025] Please refer to Figures 2-4As shown in the figure, in the embodiment, the outer walls of the two sets of cover plates 3 are fixedly provided with limiting strips 5, and the two sets of cover plates 3 are arranged in close contact with the instrument cover 1 through the limiting strips 5. The limiting strips 5 are used to assist the cover plates 3 to be tightly buckled, so that the cover plates 3 are prevented from shaking during buckling, and the stability of the whole is improved. The surfaces of the two sets of cover plates 3 are provided with a plurality of ventilation grooves. The ventilation grooves on the surfaces of the cover plates 3 are used to assist the steam to be penetrated out during the sterilization process of the instruments, so that the steam is prevented from accumulating in the box, and it is ensured that each part of the instrument can be fully contacted with the steam, and the sterilization effect is improved.
[0026] When working, first, the positioning rods 8 are inserted into the limiting holes in the limiting plates 7 according to the sizes of the stored instruments in combination with the gaskets 9. The gaskets 9 are used to assist the positioning rods 8 to be in close contact with the limiting holes, so as to fill the gaps between the positioning rods 8 and the limiting holes, and make the positioning rods 8 more stable in the limiting holes. After the positioning rods 8 are inserted and positioned, the limiting ring 12 is opened, the instruments are placed into the interiors of the main ring 11 and the limiting ring 12, and after the instruments are stably placed into the limiting ring 12, the limiting ring 12 is actuated and moved in combination with the bolt to be inserted into the connecting groove in the main ring 11 and be in close contact with the instruments, so as to fix the instruments at specific positions and reduce the risk that the instruments are damaged due to collision during movement or storage. According to different sizes of the ophthalmic precision instruments, the limiting ring 12 is adjusted in combination with the instruments to be fixed, so that different sizes of the instruments can be stored. Then, the instrument cover 1 is buckled to the storage box 6, and the cover plates 3 are made of transparent materials. When it is necessary to check the instruments in the storage box 6, the instruments can be observed through the cover plates 3, so that the frequency of taking out the instruments by the medical staff for checking is reduced. When the instruments need to be taken out for surgical use, the two sets of cover plates 3 can be opened by being pressed, or the instrument cover 1 can be removed from the outer end of the storage box 6 to take out the instruments for surgical work. After the precision instruments are used for surgical work, the instruments are stored again by being sequentially positioned through the limiting ring 12 according to the storage requirements.
[0027] When it is necessary to clean the precision instruments, the box bar 13 is turned over and opened to inject disinfectant liquid or other cleaning agents into the interior of the storage box 6, so as to clean the dirt and residues on the surfaces of the instruments in the storage box 6. The cleaning agents can be injected without frequently taking out the instruments, so that the collision damage of the instruments during taking out and placing in is reduced. When high-temperature disinfection and sterilization are needed, the steam can be penetrated out in combination with the ventilation grooves on the surfaces of the cover plates 3 during the sterilization process of the instruments, so that the steam is prevented from accumulating in the box, and it is ensured that each part of the instrument can be fully contacted with the steam, so that the ophthalmic precision instruments can be stored and protected.
[0028] Through the above steps, by adopting the main ring 11 combined with the limiting ring 12 and the close fitting of the instrument, the instrument is fixed in a specific position and effectively limited, preventing the instrument from shaking and moving away during the transfer process. The limiting ring 12 is limited and fixed, and the cover plate 3 is made of transparent and visible plastic material, so that the state of the instruments in the storage box 6 can be directly observed. The cover plate 3 can also be pressed to open and observe, avoiding damage to the instruments due to collision or separation from the protective box during disinfection, sterilization and packaging, protecting the integrity and functionality of the instruments. Secondly, the storage box 6 has a good space, so that the tip of the instrument is not easy to collide, and the protection of the protective sleeve can be avoided. Moreover, the use of the protective sleeve reduces the wear and tear of the instrument and the risk of sharp instrument injury when using the protective sleeve. The flip-open box bar 13 injects disinfectant or cleaning liquid into the storage box 6, reducing the number of times of taking and storing the instruments, effectively cleaning the dirt and residues on the surface of the instruments in the storage box 6, including non-lumen instruments and lumen instruments. The method of cleaning and disinfecting in the instrument box reduces the frequency of taking and placing the instruments and improves the full cleaning of each instrument.
Claims
1. An ophthalmic precision instrument storage and protection case comprising an instrument cover (1); characterized in that: Also include connecting rod (2), cover plate (3), connecting ring (4), storage box (6), limiting plate (7), limiting rod (10), main ring (11), box fence (13), the inside of the instrument cover (1) is equipped with storage box (6), the instrument cover (1) is buckled with storage box (6), the inside of storage box (6) is fixedly provided with limiting plate (7), a plurality of limiting holes are formed in the inside of limiting plate (7), a plurality of positioning rods (8) are linearly arranged in the inside of the plurality of limiting holes, limiting rods (10) are fixedly arranged at one end of the plurality of positioning rods (8), main rings (11) are sleeved on the outer wall of limiting rods (10), limiting rings (12) are sleeved on the inner side of the outer wall of limiting rods (10), a plurality of latches are fixedly arranged around the outer wall of limiting ring (12), a plurality of connecting grooves for accommodating latches are formed in the inside of main ring (11).
2. The precision ophthalmic instrument storage case of claim 1, wherein: A plurality of gaskets (9) are arranged around the outer wall of the plurality of positioning rods (8), the plurality of gaskets (9) are fixedly connected with the positioning rods (8), and the positioning rods (8) are limited by the gaskets (9) and the limiting holes.
3. The ophthalmic precision instrument storage and protection case of claim 2, wherein: One end of the storage box (6) is provided with a ventilation groove, the inside of the ventilation groove is fixedly provided with a sleeve rod (14), and the sleeve rod (14) is sleeved with a box fence (13).
4. The ophthalmic precision instrument storage and transport case of claim 3, wherein: The upper end of the box fence (13) is fixedly provided with two clamping blocks (15), the inner wall of the ventilation groove is provided with clamping grooves for accommodating the two clamping blocks (15), and the box fence (13) is clamped and fixed with the storage box (6) through the two clamping blocks (15).
5. The precision ophthalmic instrument storage case of claim 1, wherein: The inside of the instrument cover (1) is fixedly provided with a connecting rod (2), the outer side of the connecting rod (2) is provided with two cover plates (3), and the two cover plates (3) and the connecting rod (2) are sleeved with two connecting rings (4).
6. The ophthalmic precision instrument storage and transport case of claim 5, wherein: The outer wall of the two cover plates (3) is fixedly provided with a limiting strip (5), and the two cover plates (3) are arranged in close contact with the instrument cover (1) through the limiting strip (5).
7. The ophthalmic precision instrument storage and transport case of claim 6, wherein: A plurality of air permeable grooves are formed on the surface of the two cover plates (3).