General purpose modular medical accessory case
Patent Information
- Application Number
- CN202521002784.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-21
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-05-21
AI Technical Summary
从操作层面来看,由于缺乏标准化、集成化的操作平台,医护人员在执行任务时往往需要频繁切换不同设备的操作流程,不同设备间的参数设置也缺乏统一标准,导致操作过程极为繁琐,难以实现高效作业
[0015](一)、本申请操作回收模块盒集成操作平台与抽拉式回收腔体,实现医疗操作与废弃物即时收纳的同步完成,减少操作动线冗余,模块化密封设计与抽拉式回收腔体可减少外部环境干扰,保障耗材活性并降低生物污染风险;
Smart Images

Figure CN224735363U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical device technology, specifically to a universal modular medical auxiliary box. Background Technology
[0002] In the fields of field medicine and disaster relief, medical personnel often face complex working environments. In field physiotherapy scenarios, troops may be deployed in remote areas with limited resources and equipment, requiring the rapid construction of treatment environments. In disaster relief operations, such as after earthquakes and floods, medical rescue work often takes place in damaged buildings or open areas, and medical teams must respond quickly to various emergency medical situations. In these special scenarios of field physiotherapy and disaster relief, traditional medical equipment and storage models have revealed many significant limitations. From an operational perspective, due to the lack of standardized and integrated operating platforms, medical personnel often need to frequently switch between different equipment operating procedures when performing tasks. The parameter settings between different devices also lack unified standards, making the operation process extremely cumbersome and difficult to achieve efficient operation. Regarding the storage of consumables, consumables soaked in volatile liquids, such as some alcohol wipes used for wound disinfection and dressings containing volatile drugs, often suffer from insufficient packaging sealing performance, making the liquid highly susceptible to evaporation during transportation or long-term storage. Taking a common pack of 50 alcohol wipes as an example, after being stored for a week in a field or disaster relief environment, tests showed that their alcohol content decreased by an average of 20%-30%, which significantly affected the effectiveness of the consumables. Furthermore, the storage and retrieval management of medical tools lacks systematic planning; various tools are placed haphazardly without clear classification or labeling. In the critical moments of emergency rescue, medical personnel often need to spend a significant amount of time searching for the necessary tools, easily causing delays and greatly reducing rescue efficiency. Utility Model Content
[0003] This invention aims to solve at least one of the technical problems existing in the prior art. Therefore, one objective of this invention is to propose a universal modular medical auxiliary box. This box adopts a modular architecture and, through the on-demand combination of standardized functional units, meets the usage needs of multiple application scenarios.
[0004] To solve the above-mentioned technical problems, the technical solution provided by this utility model is: a universal modular medical auxiliary box, comprising:
[0005] At least one operation and recycling module box, which provides an operation platform and recycling storage space for user operation;
[0006] At least one volatile material module box, the volatile material module box being used to store consumables soaked in liquid and to provide them with sealed preservation;
[0007] At least one instrument module box, the instrument module box being used to store medical operating tools;
[0008] The operation and recycling module box, the volatile matter module box, and the instrument module box are detachably connected. They can be assembled according to the needs of the work scenario, facilitating quick requisition and replacement during work and improving work efficiency.
[0009] Preferably, the operation and recycling module box includes a first box body with a box-shaped structure. An opening communicating with its inner cavity is provided on one side wall of the first box body. A pull-out box with a recycling cavity is slidably provided in the first box body through the opening. The top surface of the pull-out box is open and a disposable glove is placed in the pull-out box.
[0010] Preferably, the top surface of the first box body is further provided with a groove to form an operating platform.
[0011] Preferably, the volatile item module box includes a second box body with a box-shaped structure and an opening on the top surface. The second box body is provided with a sealing film covering the opening on its top surface. The sealing film is marked with a first easy-tear line by laser flying marks, so that users can easily tear it open to use the items stored inside. A box lid is snapped onto the second box body and covers the sealing film. The box lid is sealed to the second box body.
[0012] Preferably, the instrument module box includes a third box body with a box-shaped structure. The third box body has a second tear line on its top surface and a side surface adjacent to the top surface, so that the top surface and the side surface can be separated from the third box body along the tear line and unfolded to expose the interior of the third box body.
[0013] Preferably, the side walls of the operation and recycling module box, the volatile material module box, and the instrument module box are provided with magnetic blocks that magnetically attract each other, and the detachable connection is achieved by the magnetic blocks attracting each other.
[0014] With the above structure, this utility model has the following advantages:
[0015] (I) The operation and recycling module box of this application integrates the operation platform and the pull-out recycling chamber, so as to realize the simultaneous completion of medical operation and immediate collection of waste, reduce the redundancy of operation line, and the modular sealing design and pull-out recycling chamber can reduce external environmental interference, ensure the activity of consumables and reduce the risk of biological contamination.
[0016] (II) This application forms a standardized partition of “operation area-consumables area-instrument area” by magnetically combining operation and recycling module box, volatile material module box and instrument module box, which solves the problems of large carrying volume and chaotic use of instruments and consumables caused by traditional decentralized packaging. Specific modules can be quickly assembled according to needs during the mission.
[0017] (III) This application adopts a modular design, which allows for the replacement of a module after it has been used up, enabling rapid replenishment.
[0018] (iv) The module combination of this application can cover scenarios such as blood drawing, infusion, testing, and dressing change, solving the problem of fixed functions in traditional medical kits and improving product versatility.
[0019] The above overview is for illustrative purposes only and is not intended to be limiting in any way. In addition to the illustrative aspects, embodiments, and features described above, further aspects, embodiments, and features of the present invention will become readily apparent from the accompanying drawings and the following detailed description. Attached Figure Description
[0020] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0021] Figure 1 This is a schematic diagram of the structure of this utility model.
[0022] Figure 2 This is a structural diagram of the operation and recycling module box.
[0023] Figure 3 This is a structural diagram of a volatile materials module box.
[0024] Figure 4 This is a structural diagram of the instrument module box.
[0025] Figure 5 This is a schematic diagram showing the open state of the instrument module box.
[0026] Figure 6 This is a schematic diagram of the blood type testing scenario module combination.
[0027] As shown in the figure: 1. Operation and recycling module box; 2. Volatile material module box; 3. Instrument module box; 4. First box body; 5. Operation platform; 6. Pull-out box; 7. Second box body; 8. Sealing film; 9. First easy-tear line; 10. Second easy-tear line; 11. Third box body; 12. Box lid. Detailed Implementation
[0028] The embodiments of this application are described in detail below. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.
[0029] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0030] Combination Figures 1-5 A universal modular medical auxiliary box includes at least one operation and recycling module box 1, at least one volatile substance module box 2, and at least one instrument module box 3. Magnetic blocks are embedded in the side walls of the operation and recycling module box 1, volatile substance module box 2, and instrument module box 3, allowing for detachable connection through magnetic attraction. The operation and recycling module box 1, volatile substance module box 2, and instrument module box 3 can be assembled according to work scenario requirements, facilitating quick retrieval and replacement during work, thus improving work efficiency. A uniform basic size frame (e.g., a 30cm × 20cm basic plane) is used, enabling horizontal / vertical combination via magnetic blocks to adapt to different scenario needs. The magnetic blocks use neodymium iron boron strong magnets, with a surface coated with 316L stainless steel or food-grade silicone to avoid metal corrosion and meet medical environment safety requirements.
[0031] The operation and recycling module box 1 provides an operation platform 5 and recycling storage space for user operation. The operation and recycling module box 1 includes a first box body 4 with a box-shaped structure. An opening communicating with its inner cavity is provided on one side wall of the first box body 4. A pull-out box 6 with a recycling cavity is slidably installed in the first box body 4 through the opening. The top surface of the pull-out box 6 is open, and disposable gloves are placed inside. A groove is also formed on the top surface of the first box body 4, creating the operation platform 5. The groove depth is 5mm, the edge radius R≥3mm, and the surface has laser-etched anti-slip texture (texture spacing 1.5mm), conforming to the ISO 13485 medical device anti-slip standard. The first box body 4 is made of ABS+PC composite plastic (thickness ≥2.5mm), which has both impact resistance and chemical corrosion resistance, and can withstand wiping with disinfectants such as alcohol and iodine. The pull-out box 6 is made of food-grade PP material (transparency ≥85%), and an anti-slip silicone strip is added to the bottom.
[0032] The volatile material module box 2 is used to store consumables impregnated with liquids, providing them with sealed preservation. The volatile material module box 2 includes a second box body 7 with a box-shaped structure and an opening on its top surface. A sealing film 8 covers the opening on the top surface of the second box body 7. A first easy-tear line 9 is laser-marked on the sealing film 8, allowing users to easily tear open and access the stored items. Laser marking technology is used to mark a specific layer of the film without damaging the entire film. The laser-cut portion is thin and non-penetrating, having no impact on the sealed storage of the internal items. A box cover 12 is snapped onto the second box body 7, covering the sealing film 8. The second box 7 is sealed together with the volatile matter module 2 containing items including, but not limited to, pre-soaked disinfectant cotton balls / gauze (alcohol cotton balls, iodine swabs, chlorhexidine gauze, etc.), disposable disinfectant wipes, blood typing cards / test strips (pre-filled reaction buffer test cards, anti-A blood typing reagents, anti-B blood typing reagents, anti-Rh blood typing reagents), rapid test strips (blood glucose test strips, infectious disease test strips), pre-moistened saline swabs, medicated dressings, moist hemostatic materials, pre-filled catheter lubricant, cold / hot compresses, lyophilized reconstituted solutions, pre-filled antivenom injections, and long-lasting antiseptic sutures. The second box 7 is made of medical-grade PETG (1.2mm thick) with an oxygen permeability ≤0.5cm². 3 / m 2 • 24h·atm, preventing the escape of volatile components. The sealing film 8 is a three-layer co-extruded composite film (outer layer PET / middle layer aluminum foil / inner layer PE), and the laser scribing depth is controlled within 50% ± 5μm of the outer layer to ensure smooth tearing without penetrating the inner layer. The lid 12 adopts a double-safety structure of magnetic attraction and buckle, and the sealing ring is made of medical-grade silicone (hardness 50±5 Shore A), and the airtightness test has passed the ISO 11607 standard.
[0033] The instrument module box 3 is used to store medical operation tools. The instrument module box 3 includes a third box body 11 with a box-shaped structure. The third box body 11 has a second easy-tear line 10 on its top surface and the side adjacent to the top surface, so that the top surface and the side can be separated from the third box body 11 along the easy-tear line and unfolded to expose the interior of the third box body 11 for easy access to medical operation tools. The items placed in the instrument module box 3 include, but are not limited to, blood collection tubes, blood collection needles, needle holders, tourniquets, specimen labels, syringes (different sizes), infusion sets, indwelling needles, three-way valves, surgical scissors, forceps (flat forceps / tissue forceps), forceps, blades, suture kits, sterile dressing forceps, wound cleaning brushes, wound dressings, elastic bandages, hemostatic forceps, oropharyngeal airways, laryngeal blades (disposable), endotracheal intubation kits, simple breathing bags, tourniquets, thoracentesis needles, cricothyroid membrane puncture kits, AED electrode pads, and disposable tongue depressors. The third box body 11 is made of high-transparency PC (3mm thick), with a bending strength ≥90MPa and a UV coating treatment, achieving an HB-level scratch resistance rating. The second easy-tear line 10 uses a nano-embossing process (0.2mm line width, 0.1mm depth), with tear force controlled within the range of 2-3N, balancing easy opening and transportation protection.
[0034] Scene 1: Changing the dressing
[0035] In this scenario, there are at least two possible combinations.
[0036] One configuration includes an operation and recycling module box 1 containing disposable gloves, four instrument module boxes 3 containing surgical drapes, gauze bandage rolls, disposable medical tweezers, and medical tape respectively, and two volatile item module boxes 2 containing sterile medical gauze pads and alcohol non-woven fabric respectively. The boxes are magnetically connected to each other. The sterile medical gauze pads and alcohol non-woven fabric are arranged in the volatile item module boxes 2 in a paper towel arrangement. After separating the first tear line 9, the sterile medical gauze pads can be pulled out one by one through the opening. For the instrument module boxes 3, the user can tear them along the second tear line 10, and unfold the top and sides to form an "L"-shaped opening, so that the stored items can be taken out for use. The disposable gloves are pre-placed in the pull-out box 6 of the operation and recycling module box 1. When in use, the pull-out box 6 is pulled out to take out the disposable gloves. The generated medical waste is directly placed into the pull-out box 6 for storage.
[0037] Another combination includes an operation recycling module box 1 containing disposable gloves, an instrument module box 3 containing dry cotton balls (gauze, cotton swabs), and three volatile material module boxes 2 containing 75% alcohol cotton balls (gauze, cotton swabs), iodine cotton balls (gauze, cotton swabs), and hydrogen peroxide cotton balls (gauze, cotton swabs), respectively.
[0038] Scenario 2: Injection and Medication Dispensing
[0039] The scenario includes an operation and recycling module box 1 containing disposable gloves, six instrument module boxes 3 containing disposable medical tweezers, 1ml syringes, 2ml syringes, 5ml syringes, 10ml syringes, and 20ml syringes respectively, and a volatile material module box 2 containing alcohol non-woven fabric, for use in injections and medication preparation.
[0040] Scene 3: Blood drawing
[0041] The scenario includes an operation and recycling module box 1 containing disposable gloves, eight instrument module boxes 3 containing disposable tourniquets, disposable intravenous blood collection needles, 5ml purple blood routine tubes, 5ml red additive-free tubes, yellow separation gel + coagulant tubes, blue coagulation 4-item tubes, green heparin lithium tubes, and gray sodium fluoride tubes, and a volatile materials module box 2 containing alcohol non-woven fabric, for use in blood drawing.
[0042] Scenario 4: Infusion
[0043] The scenario includes an operation and recycling module box 1 containing disposable gloves, five instrument module boxes 3 containing disposable tourniquets, medical infusion patches, 5.5# infusion sets, 7# infusion sets and 7.5# infusion sets respectively, and a volatile material module box 2 containing alcohol non-woven fabric, for use in infusion.
[0044] Scenario 5: Blood Type Testing
[0045] like Figure 6 The assembly shown includes an operation and recycling module box 1 containing disposable gloves, six instrument module boxes 3 containing blood collection needles, pipettes, A antigen, B antigen, RH antigen and test cards respectively, and two volatile material module boxes 2 containing alcohol non-woven fabric and dry non-woven fabric respectively.
[0046] The present invention and its embodiments have been described above. This description is not restrictive, and the embodiments shown throughout the text are only one of the embodiments of the present invention. The actual structure is not limited to this. In conclusion, if a person skilled in the art is inspired by this description and designs a similar structure and embodiment without departing from the inventive spirit of the present invention, such design should fall within the protection scope of the present invention.
Claims
1. A universal modular medical accessory case, characterized in that, include: At least one operation and recycling module box, which provides an operation platform and recycling storage space for user operation; At least one volatile material module box, the volatile material module box being used to store consumables soaked in liquid and to provide them with sealed preservation; At least one instrument module box, the instrument module box being used to store medical operating tools; The operation and recycling module box, the volatile matter module box, and the instrument module box are detachably connected. They can be assembled according to the needs of the work scenario, facilitating quick requisition and replacement during work and improving work efficiency.
2. The universal modular medical accessory case of claim 1, wherein: The operation and recycling module box includes a first box body with a box-shaped structure. An opening communicating with its inner cavity is provided on one side wall of the first box body. A pull-out box with a recycling cavity is slidably provided in the first box body through the opening. The top surface of the pull-out box is open and a disposable glove is placed in the pull-out box.
3. The universal modular medical accessory case of claim 2, wherein: The top surface of the first box is also provided with a groove to form an operating platform.
4. The universal modular medical accessory case of claim 3, wherein: The volatile item module box includes a second box body with a box-shaped structure and an opening on the top surface. The second box body is provided with a sealing film covering the opening on its top surface. The sealing film is marked with a first easy-tear line by laser flight marking, which makes it convenient for users to tear open and use the items stored inside. A box lid is snapped onto the second box body and covers the sealing film. The box lid is in a sealed fit with the second box body.
5. The universal modular medical accessory case of claim 4, wherein: The instrument module box includes a third box body with a box-shaped structure. The third box body has a second easy-tear line on its top surface and the side surface adjacent to the top surface, so that the top surface and the side surface can be separated from the third box body along the easy-tear line and unfolded to expose the interior of the third box body.
6. The universal modular medical accessory case of claim 5, wherein: The operation and recycling module box, the volatile material module box, and the instrument module box are equipped with magnetic blocks that magnetically attract each other, and the magnetic blocks attract each other to achieve a detachable connection.