An independent storage device for orthopedic saw blades

CN224639852UActive Publication Date: 2026-08-18SUZHOU XIECHUN PRECISION TOOLS CO LTD
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Patent Information

Application Number
CN202521184644.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-11
Publication Date
2026-08-18
Estimated Expiration
2035-06-11

AI Technical Summary

Technical Problem

[0004]为了解决上述技术问题,本实用新型提供一种骨科锯片独立存储装置,以解决上述背景技术中提出的现有存储装置主要为带间隔的收纳盒结构,需要人工搬起移动,或采用箱式小车移动,不便快速移动并取出锯片来使用,便利性不足的问题

Benefits of technology

[0013]装置采用环绕式收纳设计,将锯片预先安装在相邻硅胶贴片间并通过弹簧夹持固定,每组锯片经消毒后在收存装置内互相隔离,这种隔离存放的方式能有效避免锯片间因接触产生磨损,同时弹簧夹持与硅胶贴片的组合还能减少运输过程中的晃动碰撞,从存储到运输全程保障锯片的完整性与卫生安全,为手术使用提供可靠前提。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of independent storage device of orthopedics saw blade, it is related to medical tool technical field, including storage device, the main part of storage device is annular structure, the external arc surface of storage device equidistantly surrounds and is provided with slot structure, the both sides inner wall of slot structure is fixedly provided with silica gel patch;The side wheel cover is provided at the both sides of storage device, the middle of side wheel cover is integrally provided with support frame, support frame is inclined structure, the middle of support frame is through -hole structure, two groups of support frame can be fixedly connected by bolt;Device adopts around type storage design, saw blade is installed in adjacent silica gel patch in advance and is fixed by spring clamping, each group of saw blade is mutually isolated in storage device after disinfection, the mode of this isolated storage can effectively avoid the wear and tear between saw blade due to contact, and the combination of spring clamping and silica gel patch can also reduce the shaking collision in transportation process, from storage to transportation whole process guarantee the integrity and health safety of saw blade.
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Description

Technical Field

[0001] This utility model belongs to the field of medical tool technology, and more specifically, it relates to an independent storage device for orthopedic saw blades. Background Technology

[0002] Orthopedic saw blades are medical instruments specifically designed for cutting and trimming bones during orthopedic surgery. They possess excellent corrosion resistance and biocompatibility, ensuring that the saw blades will not corrode in the surgical environment or have adverse effects on human tissues. They also have a certain degree of strength and toughness to withstand the cutting forces during surgery. They are typically long or rectangular in shape and are generally disposable tools, not allowed to be reused. Therefore, they need to be stored separately to ensure safety and prevent the saw blades from coming into contact with each other and causing wear.

[0003] Based on the above, the storage devices currently in use are mainly storage boxes with intervals, which need to be moved manually or by using a box-type cart. This makes it inconvenient to move quickly and take out the saw blade for use, resulting in insufficient convenience. Utility Model Content

[0004] To address the aforementioned technical problems, this utility model provides an independent storage device for orthopedic saw blades. This solves the problem mentioned in the background art that existing storage devices are mainly storage boxes with intervals, which require manual lifting and movement or the use of a box-type trolley, making it inconvenient to move and retrieve the saw blades quickly and conveniently.

[0005] The purpose and function of this utility model, an independent storage device for orthopedic saw blades, are achieved by the following specific technical means:

[0006] An independent storage device for orthopedic saw blades includes a storage unit. The main body of the storage unit is a ring structure. Slots are equidistantly arranged around the outer arc surface of the storage unit. Silicone patches are fixedly installed on the inner walls of both sides of the slots. Side wheel covers are provided on both sides of the storage unit. A support frame is integrally installed in the middle of the side wheel cover. The support frame is an inclined structure with a through hole in the middle. Two sets of support frames can be fixedly connected by bolts. T-shaped pulleys are rotatably arranged around the adjacent surfaces of the two sets of side wheel covers. A ring shell has its two edges respectively abutting the two T-shaped pulleys. Rubber tires are fitted onto the outside of each side wheel cover. T-shaped through holes are arranged around the flat surface of each rubber tire. Screw holes are opened on the outside of the side wheel covers, and mounting bolts are installed via threaded connections. The mounting bolts pass through the T-shaped through holes of the rubber tires and are fixed to the outside of the side wheel covers.

[0007] Furthermore, both the storage device and the silicone patch have a groove structure in the middle of their outer surfaces.

[0008] Furthermore, six sets of docking slots are provided around both sides of the storage device; the adjacent surfaces of the two sets of side wheel covers are integrally provided with alignment stakes, which can be inserted into the docking slots.

[0009] Furthermore, a dispensing port is provided at the top center of the annular shell; a handle is fixedly provided at the upper center of the front side of the annular shell.

[0010] Furthermore, a counterweight is eccentrically fixed at the bottom of the annular shell, and the part removal port faces directly upward after the counterweight is installed.

[0011] Furthermore, a sealing plug is fitted into the extraction port, with a handle on the top of the sealing plug and a rubber stopper structure below it.

[0012] Compared with the prior art, the present invention has the following beneficial effects:

[0013] The device adopts a wraparound storage design, pre-installing the saw blades between adjacent silicone patches and securing them with spring clamps. Each set of saw blades is sterilized and then isolated from each other in the storage device. This isolated storage method can effectively prevent wear caused by contact between the saw blades. At the same time, the combination of spring clamps and silicone patches can also reduce shaking and collisions during transportation. From storage to transportation, the integrity and hygiene safety of the saw blades are guaranteed, providing a reliable premise for surgical use.

[0014] The self-balancing structure consisting of the annular shell and the counterweight compensates for the weight of the handle by eccentrically installing the counterweight, ensuring that the retrieval port always faces upwards during the movement of the rubber tire, without the need for manual adjustment. Simply hold the handle to move the device, and after arriving at the operating room, remove the sealing plug to directly pull out the saw blade from between the silicone patches. The entire transportation and retrieval process is smooth and concise, reducing preoperative preparation steps, saving doctors time, and making surgical operations more efficient.

[0015] The rubber tires at the bottom of the device are fixed by mounting bolts. When the tires wear out due to prolonged use, the bolts can be removed directly for replacement or repair. This flexible maintenance method can extend the overall service life of the device. At the same time, the maintenance method can be selected according to different usage scenarios or wear levels, which reduces the cost of use and ensures that the device always maintains good mobile support performance, adapting to the long-term use needs of various professional environments such as operating rooms. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0017] Figure 2 This is a schematic diagram of the tilting structure of this utility model.

[0018] Figure 3 This is a three-dimensional disassembly diagram of the present invention.

[0019] Figure 4 This is a schematic diagram of the side-tilt disassembly structure of this utility model.

[0020] Figure 5 This is a three-dimensional structural diagram of the storage device of this utility model.

[0021] In the diagram, the correspondence between component names and drawing numbers is as follows:

[0022] 1. Storage device; 101. Silicone patch; 102. Docking groove; 2. Side wheel cover; 201. Support frame; 202. T-shaped pulley; 203. Alignment stake; 3. Annular shell; 301. Pick-up port; 302. Handle; 4. Counterweight; 5. Sealing plug; 6. Rubber tire; 7. Assembly bolts. Detailed Implementation

[0023] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. Example 1:

[0024] As attached Figure 1 To be continued Figure 5 As shown:

[0025] This utility model provides an independent storage device for orthopedic saw blades, including a storage device 1. The main body of the storage device 1 is a ring structure. The outer arc surface of the storage device 1 is equidistantly provided with slot structures. Silicone patches 101 are fixedly installed on the inner walls of both sides of the slot structures. Side wheel covers 2 are provided on both sides of the storage device 1. A support frame 201 is integrally provided in the middle of the side wheel cover 2. The support frame 201 is an inclined structure. The middle of the support frame 201 is a through hole structure. The two sets of support frames 201 can be fixedly connected by bolts. T-shaped pulleys 202 are rotatably arranged around the adjacent surfaces of the two sets of side wheel covers 2. A ring shell 3 is provided. The two sides of the ring shell 3 are respectively attached to the two T-shaped pulleys 202. Rubber tires 6 are fitted on the outside of the side wheel covers 2. T-shaped through holes are provided around the plane of the rubber tires 6. Screw holes are opened on the outside of the side wheel covers 2 and mounting bolts 7 are provided by threaded connection. The mounting bolts 7 pass through the T-shaped through holes of the rubber tires 6 and are fixed to the outside of the side wheel covers 2.

[0026] The storage device 1 and the silicone patch 101 both have a groove structure in the middle of their outer surfaces.

[0027] The storage device 1 has six sets of docking slots 102 on both sides; the adjacent surfaces of the two sets of side wheel covers 2 are integrally provided with alignment stakes 203, which can be inserted into the docking slots 102.

[0028] The annular shell 3 has a take-out port 301 in the middle of its top; a handle 302 is fixedly installed on the upper front side of the annular shell 3.

[0029] Among them, a counterweight 4 is eccentrically fixed at the bottom of the annular shell 3, and after the counterweight 4 is installed, the part removal port 301 faces directly upward.

[0030] The receiving port 301 is fitted with a sealing plug 5, which has a handle on top and a rubber stopper structure below it.

[0031] like Figure 1-5 As shown, the saw blade is pre-installed between adjacent silicone patches 101 and fixed by spring clamps. It is arranged around the storage device 1. Each group is isolated from each other after pre-disinfection to avoid contact wear and improve storage effect. When the device is used, it is used as a transportation device. The bottom rubber tire 6 is fixed by mounting bolts 7 and continuously contacts the ground to provide support and movement function. The mounting bolts 7 can be removed to replace or repair the tire according to the wear condition.

[0032] A handle 302 is installed outside the annular shell 3. Its gravity causes the shell of the annular shell 3 to be eccentric. Therefore, a counterweight 4 is installed eccentrically below the annular shell 3. The two form a self-balancing structure to compensate for the weight of the handle 302, so that the retrieval port 301 always faces upward when the rubber tire 6 moves. After holding the handle 302 and pushing the device to the operating room, the sealing plug 5 is removed to expose the retrieval port 301. The saw blade between the silicone patches 101 can then be manually pulled out for bone cutting. The overall design takes into account both the convenience of picking up and placing and transporting and the flexibility of maintenance. Example 2:

[0033] Based on Example 1, long-term static placement can be used for disinfection. Pour medical alcohol into the dispensing port 301. The alcohol will spread to all positions and disinfect the bone saw. Continuously pour alcohol during the movement to evenly disinfect the bone saw at all positions. The alcohol will evaporate naturally in a short time afterward without affecting its use.

[0034] The specific usage and function of this embodiment are as follows:

[0035] In this utility model, the saw blade is pre-installed between adjacent silicone patches 101 and fixed by spring clamps; when in use, the device is directly used as a transportation device, the rubber tire 6 is in continuous contact with the ground, providing support and movement effect, the rubber tire 6 is fixed by mounting bolts 7, the rubber tire 6 can be removed and replaced by disassembling the mounting bolts 7, and the rubber tire 6 can be replaced or repaired as appropriate according to the wear condition after long-term use.

[0036] The annular shell 3 and the counterweight 4 form a self-balancing structure. Since a handle 302 is also provided outside the annular shell 3, the weight of the handle 302 causes the annular shell 3 to be eccentric. Therefore, an eccentrically installed counterweight 4 is provided below the annular shell 3 to compensate for the weight of the handle 302, so that the opening of the picking port 301 is kept facing upward. During the rotation and movement of the rubber tire 6, the picking port 301 can be guaranteed to face upward naturally.

[0037] The entire device can be moved by holding the handle 302;

[0038] After moving the handle 302 into the operating room, remove the sealing plug 5 to expose the retrieval port 301. At this point, the saw blade clamped in the middle of the silicone patch 101 can be manually pulled out, and the bone saw can then be used to cut the bone. The saw blades are arranged in a ring inside the storage device 1. Each set of saw blades is pre-sterilized and isolated from each other after being placed in the storage device 1, which can avoid contact and wear, improve storage efficiency, and facilitate retrieval and transportation.

Claims

1. An orthopedic saw blade independent storage device, characterized by, include: The storage device (1) has a ring structure as its main body. The outer arc surface of the storage device (1) is provided with slot structures at equal intervals. Silicone patches (101) are fixedly installed on the inner walls of both sides of the slot structures. Side wheel covers (2) are provided on both sides of the storage device (1). A support frame (201) is integrally provided in the middle of the side wheel cover (2). The support frame (201) is an inclined structure. The middle of the support frame (201) is a through hole structure. The two sets of support frames (201) can be fixedly connected by bolts. T-shaped pulleys (202) are arranged around the adjacent surfaces of the two sets of side wheel covers (2); an annular shell (3) is attached to the two T-shaped pulleys (202) on both sides of the annular shell (3); rubber tires (6) are fitted around the outside of the side wheel covers (2), and T-shaped through holes are opened around the plane of the rubber tires (6); screw holes are opened on the outside of the side wheel covers (2) and mounting bolts (7) are provided by threaded connection, and the mounting bolts (7) are fixed to the outside of the side wheel covers (2) through the T-shaped through holes of the rubber tires (6).

2. The orthopedic saw blade independent storage device of claim 1, wherein: The storage device (1) and the silicone patch (101) both have a groove structure in the middle of their outer surfaces.

3. The orthopedic saw blade independent storage device as described in claim 1, characterized in that: The storage device (1) has six sets of docking slots (102) on both sides; the adjacent surfaces of the two sets of side wheel covers (2) are integrally provided with alignment stakes (203), and the alignment stakes (203) can be inserted into the docking slots (102).

4. The independent storage device for orthopedic saw blades as described in claim 1, characterized in that: The annular shell (3) has a take-out port (301) in the middle of its top; a handle (302) is fixedly installed on the upper front side of the annular shell (3).

5. The orthopedic saw blade independent storage device as described in claim 4, characterized in that: The bottom of the annular shell (3) is eccentrically fixed with a counterweight (4), and after the counterweight (4) is installed, the take-up port (301) faces directly upward.

6. The orthopedic saw blade independent storage device as described in claim 4, characterized in that: A sealing plug (5) is fitted into the receiving port (301). The top of the sealing plug (5) is provided with a handle, and the bottom of the sealing plug (5) is a rubber plug structure.