A multi-functional case and a portable nursing system thereof
Patent Information
- Application Number
- CN202520825248.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-04-27
AI Technical Summary
这些方法虽然在一定程度上能够满足基本的固定需求,但在实际操作中却显得颇为繁琐且不够便捷
[0013]有益效果:本申请通过在箱体结构内设置了第一固定组件、第二固定组件及第三固定组件,三者紧密配合,形成了一个全方位、多层次的稳固固定系统,这样可以确保箱体内部的设备,无论是移动过程还是长期存放,都能有效防止设备发生任何滑移或偏移,极大地提升了设备的稳定性和保护性能,具有高度的灵活性和适应性,通过微调各组件的排列和紧固力度,可以完美适配不同尺寸和重量的设备。
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Figure CN224777064U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical and nursing equipment, specifically a multifunctional box and its portable nursing system. Background Technology
[0002] The applicant has found that existing multi-functional cases often employ traditional securing methods, such as using straps, foam blocks, or simple supports. While these methods can meet basic securing needs to some extent, they are quite cumbersome and inconvenient in practice. Utility Model Content
[0003] To solve or partially solve the above problems, this application provides a multifunctional enclosure, comprising: an enclosure structure having a hollow cavity for accommodating equipment; a first fixing component located on one side within the enclosure structure; a second fixing component disposed on the other side within the enclosure structure; and a third fixing component disposed between the first fixing component and the second fixing component; for securely fixing the equipment placed within the enclosure structure to prevent it from slipping or shifting during movement or storage.
[0004] This application provides a multifunctional box: the first fixing component includes a first fixing post, a second fixing post, a third fixing post and a fourth fixing post, the first fixing post is provided with the second fixing post along the length direction of the box structure, and the first fixing post and the second fixing post are respectively provided with the third fixing post and the fourth fixing post along the width direction of the box structure.
[0005] The present application provides a multifunctional box: the second fixing component includes a first limiting piece, a second limiting piece, a third limiting piece and a fourth limiting piece, the first limiting piece is provided with the second limiting piece along the length direction of the box structure, and the first limiting piece and the second limiting piece are respectively provided with the third limiting piece and the fourth limiting piece along the width direction of the box structure.
[0006] This application provides a multifunctional enclosure: the third fixing component includes a first fixing block and a second fixing block, the first fixing block is disposed in the middle of the enclosure structure, and the second fixing block is disposed along the width of the enclosure structure, the first fixing block and the second fixing block are disposed opposite to each other.
[0007] This application provides a multifunctional box: a handle is provided on one side of the box structure, and a negative pressure component, a water filling device and an air filling device are also provided inside the box structure. The negative pressure component is located in the first fixed component, the air filling device is located in the second fixed component, and the water filling device is located in the third fixed component.
[0008] This application provides a multifunctional box: a first groove, a second groove, and a third groove are provided on one side of the box structure. The first groove, the second groove, and the third groove are evenly distributed on the side of the box structure, and there is a gap between the first groove, the second groove, and the third groove.
[0009] This application provides a multifunctional enclosure: the upper surface of the enclosure structure is also provided with a display screen to facilitate users to view data.
[0010] The present application provides a multifunctional box structure, which is further provided with pulleys.
[0011] The multifunctional box provided in this application has a handle with an anti-slip texture to facilitate user grip.
[0012] Secondly, this application also provides a portable nursing system, characterized in that it includes a multifunctional housing and a portable nursing device that works in conjunction with it.
[0013] Beneficial effects: This application incorporates a first fixing component, a second fixing component, and a third fixing component within the enclosure structure. These three components work closely together to form a comprehensive, multi-layered, and stable fixing system. This ensures that the equipment inside the enclosure can be effectively prevented from slipping or shifting, whether during movement or long-term storage. This greatly improves the stability and protective performance of the equipment, and provides high flexibility and adaptability. By fine-tuning the arrangement and tightening force of each component, it can perfectly adapt to equipment of different sizes and weights. Attached Figure Description
[0014] Figure 1 This is a partial schematic diagram of a multifunctional box provided in an embodiment of this application; Figure 2 This is an overall schematic diagram of a multifunctional box provided in an embodiment of this application; Figure 3 This is an overall schematic diagram of a portable nursing device provided in an embodiment of this application; Figure 4 A schematic diagram of a contamination receiving device for a portable nursing device provided in an embodiment of this application; Figure 5 A structural diagram of the housing of a portable nursing device provided in this application embodiment: Figure 6 A partial schematic diagram of a portable nursing device provided in this application embodiment: Figure 7 A schematic diagram of a valve in a portable nursing device provided in this application embodiment; Figure 8 This is a partial schematic diagram of a contamination receiving device for a portable nursing device provided in an embodiment of this application; 1. Box structure; 11. Handle; 12. Pulley; 13. Negative pressure assembly; 131. Negative pressure device; 132. Waste collection container; 14. Inflation device; 15. First recess; 16. Second recess; 17. Third recess; 18. Display screen; 2. Integrated rinsing and drying unit; 21. Rinsing pipe; 22. Drying pipe; 23. Water filling equipment; 231. Water pump; 232. Water storage tank; 24. Blower; 25. Rinsing connector; 26. Drying connector; 3. Negative pressure suction pipe; 4. Detachable shorts assembly; 41. Shorts body; 42. First adhesive tape; 421. Fifth groove; 422. Sixth groove; 423. Seventh groove; 424. Fastening buckle; 43. Second adhesive tape; 44. Sewage receiving device; 441. Sewage cavity; 4411. Valve; 4412. Eighth groove; 4413. Ninth groove; 442. Fecal separation mesh; 443. Sensor; 444. Negative pressure connector; 445. Drying interface; 446. Flushing interface; 447. Fourth groove; 448. First arc surface; 449. Second arc surface; 450. Arc surface connector; 5. Air cushion; 6. Inflation pipe; 7. First fixing component; 71. First fixing post; 72. Second fixing post; 73. Third fixing post; 74. Fourth fixing post; 8. Second fixing component; 81. First limiting piece; 82. Second limiting piece; 83. Third limiting piece; 84. Fourth limiting piece; 9. Third fixing component; 91. First fixing block; 92. Second fixing block; Detailed Implementation
[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0016] Example 1 The applicant has found that existing multi-functional cases often employ traditional securing methods, such as using straps, foam blocks, or simple supports. While these methods can meet basic securing needs to some extent, they are quite cumbersome and inconvenient in practice.
[0017] In view of this, and in order to solve the above problems, the applicant proposes a multifunctional enclosure. Please see Figure 1 , Figure 1 A partial schematic diagram of a multifunctional box provided in this application embodiment includes: box structure 1, first fixing component 7, second fixing component 8 and third fixing component 9.
[0018] The housing structure 1 may have a hollow cavity for accommodating the equipment. The first fixing component 7 is located on one side inside the housing structure 1, the second fixing component 8 is located on the other side inside the housing structure 1, and the third fixing component 9 is located between the first fixing component 7 and the second fixing component 8. Through the cooperation of these fixing components, the equipment can be securely fixed inside the housing structure 1 to prevent slippage or displacement during movement or storage.
[0019] The above-mentioned components are secured by a first fixing component 7, a second fixing component 8, and a third fixing component 9 within the enclosure structure 1. These three components work together to form a comprehensive, multi-layered, and stable fixing system. This ensures that the equipment inside the enclosure can be effectively prevented from slipping or shifting, whether during movement or long-term storage. This greatly improves the stability and protection performance of the equipment, and provides high flexibility and adaptability. By fine-tuning the arrangement and tightening force of each component, it can perfectly adapt to equipment of different sizes and weights.
[0020] In addition, the first fixing component 7 may include a first fixing post 71, a second fixing post 72, a third fixing post 73, and a fourth fixing post 74. The first fixing post 71 is provided with the second fixing post 72 along the length direction of the housing structure 1, and the first fixing post 71 and the second fixing post 72 are respectively provided with the third fixing post 73 and the fourth fixing post 74 along the width direction of the housing structure 1. Through the interaction between these fixing posts, a stable frame structure can be formed on one side of the housing structure 1, thereby ensuring that the equipment can be firmly fixed in the housing.
[0021] The first fixing post 71, the second fixing post 72, the third fixing post 73, and the fourth fixing post 74 can be made of metal to enhance their strength and stability. In addition, the number and position of the fixing posts can be adjusted according to actual needs to accommodate equipment of different sizes and shapes.
[0022] Meanwhile, on the other side inside the housing structure 1, a second fixing component 8 can be provided. The first fixing component 7 may include a first limiting piece 81, a second limiting piece 82, a third limiting piece 83, and a fourth limiting piece 84. The first limiting piece 81 is provided with the second limiting piece 82 along the length direction of the housing structure 1, and the first limiting piece 81 and the second limiting piece 82 are provided with the third limiting piece 83 and the fourth limiting piece 84 respectively along the width direction of the housing structure 1. These limiting pieces, by cooperating with each other in different directions on the other side inside the housing structure 1, can effectively restrict the movement of the equipment inside the housing, ensuring that the equipment remains stable during transportation or storage.
[0023] In addition, the third fixing component 9 may include a first fixing block 91 and a second fixing block 92. The first fixing block 91 is located in the middle of the housing structure 1, and the second fixing block 92 is located along the width of the housing structure 1. The first fixing block 91 and the second fixing block 92 are arranged opposite to each other, so that the equipment can be firmly fixed in the middle of the housing structure 1 to prevent the equipment from sliding or shifting during movement or storage.
[0024] The first fixing block 91 and the second fixing block 92 can be made of different materials, such as metal, plastic or composite materials. Specifically, the first fixing block 91 can be fixed to the middle position of the box structure 1 by screws or glue, while the second fixing block 92 can be set opposite to the first fixing block 91 by snap-fit or other fixing methods.
[0025] The cabinet structure 1 integrates multiple functions, including rinsing, drying, dirt collection, and disinfection, providing users with comprehensive services. Inside the cabinet structure 11, a negative pressure component 13, an air inflation device 14, and a water filling device 23 are also installed. The negative pressure component 13 may include a negative pressure device 131 and a dirt collection container 132. The negative pressure device 131 can be placed on top of the dirt collection container 132 to ensure effective attraction and collection of dirt. The water filling device 23 may include a high-performance water pump 231 and a water tank 232 of appropriate capacity. The water tank 232 is placed above the water pump 231, and a blower 24 may be installed above the air inflation device 14.
[0026] A first groove 15, a second groove 16, and a third groove 17 are provided on one side of the box structure 1. The first groove 15, the second groove 16, and the third groove 17 are evenly distributed on the side of the box structure 1. There is a gap between the first groove 15, the second groove 16, and the third groove 17. The first groove 15, the second groove 16, and the third groove 17 are respectively connected to the negative pressure component 13, the water filling device 23, and the air filling device 14.
[0027] To facilitate users' real-time understanding and adjustment of various parameters, we have embedded an intuitive and easy-to-read parameter display screen 18 on the surface of the enclosure structure 11. This display screen 18 can clearly display key indicators such as current temperature and pressure. Users can easily adjust the settings according to their actual needs with simple operations, achieving a personalized and intelligent user experience.
[0028] Four casters 12 can be installed at the bottom of the box structure 1. The casters 12 make the box easier to move, reducing the difficulty and time of handling and improving the convenience of use.
[0029] The pulley 12 can take various forms, such as a fixed pulley 12, a swivel pulley 12, or a caster wheel. A fixed pulley 12 provides stable movement and is suitable for scenarios requiring straight-line movement. A swivel pulley 12 can rotate within a certain range and is suitable for scenarios requiring changes in direction. A caster wheel can move freely in any direction and is suitable for complex movement needs. The pulley 12 can be made of wear-resistant rubber or metal to ensure its durability and stability under various ground conditions.
[0030] In addition, an anti-slip texture can be added to the handle 11 to increase friction when gripping, prevent slippage, and ensure greater stability and safety for users when carrying or using the multi-functional case. The anti-slip texture improves the user experience, especially in situations where hands are sweaty or the environment is slippery. The anti-slip design effectively prevents accidental slippage, enhancing the portability and safety of the case.
[0031] Example 2 This application also provides a portable nursing system, characterized in that it includes a multifunctional housing and a portable nursing device that works in conjunction with it.
[0032] The applicant has observed that with the continuous increase in the number of elderly people, including those with disabilities, dementia, and cognitive impairment, toileting care has become a pressing issue. Traditional methods such as using diapers or bedpans not only fail to protect patient privacy and reduce the workload of caregivers, but also often result in delayed toileting, negatively impacting skin and psychological well-being, increasing the risk of pressure sores. Furthermore, most current nursing robots on the market are bulky and lack portability. While existing nursing systems can detect and suction excrement, they often fail to effectively reduce odor escape during the drying process after defecation and washing, potentially causing a negative experience for patients.
[0033] In view of this, a portable care device is proposed; please refer to [link / reference]. Figure 3 , Figure 3This is an overall schematic diagram of a portable nursing device provided in an embodiment of this application. The portable nursing device includes: a housing structure 1, a washing and drying integrated device 2, a negative pressure suction pipe 3, and a detachable shorts assembly 4.
[0034] The box structure 1 has a receiving space, and the integrated rinsing and drying device 2 is installed in the receiving space. The integrated rinsing and drying device 2 is connected to one side of the box structure 1 and is used to rinse and dry the care area. One end of the negative pressure suction pipe 3 is connected to the box structure 1 for transmitting negative pressure suction, and the detachable shorts assembly 4 is connected to the other end of the negative pressure suction pipe 3 for collecting dirt.
[0035] In the above-described procedure, the user first dons the detachable shorts assembly 4 and connects it to the negative pressure suction pipe 3. Using the control panel on the housing structure 1, the user can easily activate the integrated rinsing and drying device 2 and the negative pressure suction system. At this point, the integrated rinsing and drying device 2 begins operation, dehumidifying and drying the treated area. The negative pressure suction pipe 3 utilizes the principle of negative pressure to draw waste liquid and waste into the collection device within the housing structure 1. By integrating the housing structure 1, the integrated rinsing and drying device 2, and the negative pressure suction pipe 3, and in conjunction with the detachable shorts assembly 4, this device achieves efficient rinsing and drying of the treated area, while effectively collecting and removing dirt and debris. This design not only significantly improves the convenience and efficiency of care but also substantially enhances personal hygiene and safety. It is suitable for various care scenarios and demonstrates excellent overall performance and user experience.
[0036] Whether it's the elderly or children, extra support and comfort are often needed to reduce physical stress during care. Therefore, we have also designed an inflatable air cushion 5, where the backrest can be a standard rectangle or designed into other shapes such as arc or wave, depending on the different body shapes, so as to better fit the user's back curve, thereby further improving the support effect and enhancing comfort.
[0037] To enable the air cushion 5 to inflate, an inflation port is located on the side of the air cushion 5 near the detachable shorts assembly 4. This port connects to one end of the inflation pipe 6, ensuring a smooth and leak-free flow of gas into the air cushion 5. The other end of the inflation pipe 6 connects to the housing structure 1, and the other end connects to a gas supply interface on the housing structure 1. This interface provides the necessary gas pressure to the air cushion 5 through an internal gas supply system (such as a small air pump or compressed gas tank), inflating the air cushion 5. During use, the air cushion 5 is placed on the upper back of the user, providing just the right amount of support and excellent comfort. This design also greatly benefits users who need to be bedridden for extended periods or have limited mobility.
[0038] Specifically, a small air pump can be a miniature air pump. The miniature air pump can drive the rotor inside the pump to rotate through the high-speed rotation of the motor. The rotation of the rotor causes the gas inside the pump to generate high pressure, thereby expelling the gas and inflating the air mattress. At the same time, the saturation of the air mattress can be adjusted according to the comfort of the person's back. The valve plate inside the pump can control the intake and exhaust of gas according to the rotation of the rotor.
[0039] Furthermore, we also prioritized performance and user experience in the material selection for the Air Cushion 5. Common materials used in the Air Cushion 5 include lightweight materials such as rubber, plastic, and nylon, which give it characteristics such as lightness, softness, and durability. In particular, the medical-grade thickened PVC fabric is characterized by its smooth surface, excellent water and mildew resistance, as well as its flame retardancy, low-temperature flexibility, high strength, wide applicable temperature range, and strong acid resistance.
[0040] refer to Figure 5 As shown, Figure 5 This application provides a schematic diagram of the housing structure of a portable care device. The housing structure 1 has four casters 12 at its bottom for easy pushing and moving by the user. A handle 11 is provided on one side of the housing structure 1, both inside and out, making handling and operation easier. The housing structure 1 integrates multiple functions, including rinsing, drying, collecting dirt, and disinfection, providing comprehensive services to the user. Inside the housing structure 1, a negative pressure assembly 13 and an inflation device 14 are also provided. The negative pressure assembly 13 may include a negative pressure device 131 and a waste collection container 132. The negative pressure device 131 is positioned above the waste collection container 132 to ensure effective suction and collection of waste. To facilitate the connection of the negative pressure suction pipe 3, a first groove 15 is provided on the side of the housing structure 1 facing the detachable shorts assembly 4. The waste collection container 132 is located inside the housing structure 1 on the side away from the handle 11, ensuring cleanliness and hygiene during operation. The inflation device 14 can be installed inside the housing structure 1 on the side near the handle 11, making it convenient for users to inflate the device at any time. This design makes the housing structure 1 more compact and practical, bringing great convenience to users.
[0041] Furthermore, an open-ended isolation layer can be installed beneath the cabinet structure 1 to neatly and safely accommodate various necessary pipes, such as the negative pressure suction pipe 3 and the inflation pipe 6. By systematically storing these pipes within the isolation layer, not only can clutter be effectively avoided, but damage during movement or use can also be prevented. The spacious and flexible openings of the isolation layer allow users to easily connect or disconnect pipes as needed, further enhancing the practicality and convenience of the cabinet structure 1 and providing users with a more efficient and comfortable care experience.
[0042] In addition, to facilitate users' real-time understanding and adjustment of various parameters, we have embedded an intuitive and easy-to-read parameter display screen 18 on the surface of the enclosure structure 1. This display screen 18 can clearly display key indicators such as current temperature and pressure. Users can easily adjust the settings according to their actual needs with simple operations, achieving a personalized and intelligent user experience.
[0043] refer to Figure 6 , Figure 6 This is a partial schematic diagram of a portable nursing device provided in an embodiment of this application. To meet different connection needs and for a more aesthetically pleasing appearance, a second groove 16 and a third groove 17 can be provided on the side of the housing structure 1 facing the detachable shorts assembly 4. The second groove 16 is specifically used to connect the rinsing pipe 21 in the integrated rinsing and drying device 2, ensuring smooth rinsing and providing users with a guarantee of cleanliness. The third groove 17 is used to connect the inflation pipe 6, making the inflation operation of the air cushion 5 simple and quick. The design of these two grooves not only improves the neatness of the housing structure 1 but also greatly simplifies the operation process, bringing users a more convenient and efficient care experience. They also ensure a stable connection between the components, improving overall safety.
[0044] To ensure the cleanliness and dryness of the patient's care area and effectively reduce the risk of infection, we can install an integrated washing and drying device 2.
[0045] The integrated rinsing and drying device 2 integrates multiple components such as rinsing pipe 21, drying pipe 22, water filling device 23, and blower 24, forming a highly efficient and coordinated working system. The water filling device 23 may include a high-performance water pump 231 and a water storage tank 232 of appropriate capacity. The water storage tank 232 is positioned above the water pump 231. When rinsing is required, one end of the rinsing pipe 21 is connected to the water storage tank 232 via the second groove 16, and the other end is connected to the waste collection device 44. To ensure sufficient water pressure during rinsing to thoroughly remove residues from the waste collection device 44, a high-performance water pump 231 is also provided. The powerful pump 231 provides continuous power support for the rinsing process, ensuring efficient and thorough rinsing. Furthermore, the water filling device 23 is placed between the waste collection container 132 and the air filling device 14 within the housing structure 1 for easy operation and maintenance.
[0046] One end of the drying duct 22 is tightly connected to the blower 24, and the other end is also connected to the waste collection device 44. The blower 24 is installed above the inflation device 14, providing strong and stable airflow support for the drying duct 22. This design not only improves the rinsing and drying effect, but also ensures the health and safety of the patient's skin.
[0047] In addition, blower 24 can also be connected to a heat pump dryer. After blower 24 is running, the compressor is started and the system starts working. Dry hot air enters the sludge receiving device through drying pipe 22 to remove the moisture from the load. The humid air flows through the evaporator to cool and dehumidify, and then through the condenser to heat up, completing an air cycle. This process is repeated until the load is dried.
[0048] In addition, the integrated rinsing and drying device 2 may also include a rinsing connector 25 and a drying connector 26. The rinsing pipe 21 is securely and smoothly connected to the waste collection device 44 through the rinsing connector 25, while the drying pipe 22 is connected to the waste collection device 44 through the drying connector 26. This ensures the effective implementation of the rinsing and drying functions, greatly improving the convenience and stability of operation. Regarding the material selection for the connectors, we also prioritize patient safety and comfort. To ensure that the connectors will not cause any adverse effects on patients, we can use medical-grade silicone. This material has excellent biocompatibility and will not cause skin irritation or allergic reactions. It also possesses excellent corrosion resistance, high-temperature resistance, and aging resistance, ensuring the long-term stable operation of the connectors. Therefore, our integrated rinsing and drying device 2 is not only powerful in function but also reflects care and respect for patients in its details.
[0049] Furthermore, the drying pipe 22 and the rinsing pipe 21 can be combined into a single composite pipe, capable of both drying and rinsing. Specifically, the composite pipe can be internally configured with switchable fluid channels. When rinsing is required, the water pump 231 is activated, using clean water or other rinsing fluid from the water tank 232 to thoroughly clean the target area through the pipe, effectively removing residue and stains. When drying is needed, the pipe guides warm airflow through, using hot air to quickly remove excess moisture, achieving a rapid drying effect.
[0050] To facilitate the daily activities of the elderly and children, we have designed a detachable shorts component 4. Without the need for care, patients can enjoy the freedom of movement simply by wearing this lightweight detachable shorts component, completely freeing them from the constraints and inconveniences of carrying large equipment.
[0051] The detachable shorts assembly 4 may include a soil collection device 44, as shown in the reference. Figure 6 , Figure 6This is a partial schematic diagram of a portable nursing device provided in an embodiment of this application. The soil collection device 44 can be configured with a "U-shaped" opening structure, specifically including a first arc surface 448, a second arc surface 449, and an arc surface connector 450. One end of the first arc surface 448 is connected to one end of the arc surface connector 450, and the other end is connected to one end of the second arc surface 449. The other end of the second arc surface 449 is tightly connected to the other end of the arc surface connector 450. To prevent urine leakage, the first arc surface 448, the second arc surface 449, and the arc surface connector 450 can be adhered to the periphery of the user's perineum, ensuring they are tightly attached to the skin. This meticulous adhesion forms an effective protective barrier, significantly reducing the risk of urine leakage. In practical applications, this adhesion method is not only easy to operate but also ensures that the product maintains a good seal during prolonged use, providing users with a more reassuring and reliable protective experience.
[0052] The waste collection device 44 may include a waste cavity 441, a feces isolation mesh 442, a fourth groove 447, a sensor 443, and a negative pressure connector 444. The fourth groove 447 is located at one end of the waste collection device 44 near the first adhesive tape 42. The sensor 443 is located on the fourth groove 447. The sensor 443 can monitor the accumulation of excrement in the waste collection device 44 in real time, providing intuitive feedback to users or caregivers. When excrement is produced, the sensor 443 will issue a prompt signal to remind the user to replace or clean the waste collection device 44 in time, thereby effectively avoiding discomfort and hygiene problems that may be caused by excrement overflow or long-term retention. This can improve the practicality and convenience of the shorts, demonstrating a deep understanding and care for user needs, and bringing users a more reassuring and comfortable user experience.
[0053] The feces isolation mesh 442 is located in the middle of the soiled cavity 441. It can separate solid excrement (such as feces) from liquid excrement (such as urine). The negative pressure connector 444 is located at the end of the soiled cavity 441 away from the fourth groove 447 and is used to connect the negative pressure suction pipe 3. When the amount of excrement in the soiled device 44 reaches a cleanable level, the user does not need complicated operations. Simply connect the negative pressure suction pipe 3 to the outside of the soiled device 44 to easily and thoroughly clean the excrement in the soiled device 44 using the negative pressure principle. The whole process is not only simple to operate, but also has excellent cleaning effect, effectively avoiding the residue of excrement and the emission of odors, providing users with a more comfortable and fresh user environment.
[0054] The detachable shorts assembly 4 may further include a shorts body 41, a first adhesive band 42, and a second adhesive band 43. The first adhesive band 42 may be a thin, long, and elastic band. One end of the first adhesive band 42 is attached to the front end of the shorts body 41, and the other end may have an adhesive material (such as Velcro, medical-grade adhesive, etc.) for connecting to the soil collection device 44. The second adhesive band 43 may also be thin and elastic. One end of the second adhesive band 43 is firmly fixed to the rear end of the shorts body 41, and the other end may have an adhesive material for connecting to the other end of the soil collection device 44. The tightness of the first adhesive band 42 and the second adhesive band 43 can be adjusted according to the user's actual needs to ensure that the soil collection device 44 does not fall off or shift when it is in contact with the skin of the perineum.
[0055] Meanwhile, the first adhesive tape 42 and the second adhesive tape 43 are positioned opposite each other on the shorts body 41, which not only helps the soil collection device 44 to remain stable in the front-back direction, but also ensures that it is evenly stressed in the left-right direction, thereby maximizing the leak-proof effect. It also makes it easier for users to intuitively find the position of the adhesive tape when wearing and adjusting the shorts assembly, simplifying the operation process.
[0056] In addition, the shorts body 41 can be made of soft, breathable, and skin-friendly materials, such as cotton, bamboo fiber, or special medical-grade fabrics. To accommodate different body types and ensure sufficient freedom of movement, the shorts body 41 can also be equipped with an elastic waistband to enhance fit and comfort.
[0057] In addition, to facilitate the replacement of the soil collection device 44 and to accommodate different body shapes, the first adhesive tape 42 is also provided with a fifth groove 421, a sixth groove 422 and a seventh groove 423. The fifth groove 421, the sixth groove 422 and the seventh groove 423 are arranged sequentially on the first adhesive tape 42. Users can adjust the size of the grooves according to their comfort. The first adhesive tape 42 can also be provided with a fixing buckle 424 to fix the connection between the first adhesive tape 42 and the shorts body 41. Users only need to loosen the fixing buckle 424 to easily separate the first adhesive tape 42 from the shorts body 41.
[0058] Specifically, the design of the retaining buckle 424 offers several flexible implementation options. For example, using a movable retaining buckle 424, the user can easily insert the retaining buckle 424 into any one of the fifth groove 421, the sixth groove 422, or the seventh groove 423, and then, through a simple pressing or rotating operation, the retaining buckle 424 can be tightly locked into the selected groove, thereby ensuring a secure connection between the shorts body 41 and the soil collection device 44. This ingenious design greatly simplifies the operation process of replacing the soil collection device 44, while significantly improving user convenience and satisfaction, making the entire replacement process easier and faster.
[0059] refer to Figure 7 , Figure 7 This is a schematic diagram of a valve in a portable nursing device provided in this application embodiment. To prevent backflow of liquid in the soiled cavity 441, a valve 4411 structure is designed within the soiled cavity 441. Specifically, the portion where the eighth groove 4412 and the ninth groove 4413 intersect is cleverly designed in the shape of a valve 4411. When there is a tendency for liquid to flow back in the soiled cavity 441, this valve 4411-shaped groove can automatically and effectively close, thus firmly blocking liquid backflow and greatly avoiding the risk of contamination of the soiled receiving device 44. This design not only improves the safety and reliability of the product but also ensures hygiene and peace of mind for users during use.
[0060] In addition, the inner wall of the soiled cavity 441 can be made of a smooth, easy-to-clean material to reduce excrement residue and bacterial growth. The soiled cavity 441 can also have good sealing performance to prevent excrement leakage or odor emission.
[0061] It is worth mentioning that the sensor 443 is available on the market, and the pressure sensor 443 will not be described in detail here.
[0062] The waste receiving device 44 may also include a drying interface 445 and a rinsing interface 446. The drying interface 445 and rinsing interface 446 are located on the side of the waste cavity 441 near the first adhesive tape 42, with a certain distance between them to ensure functional independence and ease of use. Through the rinsing interface 446, the waste cavity 441 and the feces isolation net 442 can be easily and under high pressure, effectively removing excrement residue and stains, ensuring the hygiene of the waste receiving device 44. Through the drying interface 445, the waste cavity 441 and the feces isolation net 442 can be conveniently dried, quickly removing residual moisture and humidity, preventing bacterial growth, and keeping the waste receiving device 44 clean and dry. The arrangement of the drying interface 445 and rinsing interface 446 not only improves the cleaning efficiency and hygiene of the waste receiving device 44 but also provides users with a more convenient and comfortable user experience. Users can flexibly choose between drying or rinsing functions according to their actual needs to meet personalized cleaning requirements.
[0063] Furthermore, the rinsing port 446 and the drying port 445 can be designed with capped snap fasteners. When cleaning the soiled cavity 441, the user simply needs to easily open the cap of the snap fastener, accurately connect the rinsing pipe to the rinsing port 446, and tighten it with a simple rotation to complete the rinsing process. Similarly, the drying port 445 also adopts the same capped snap fastener design, allowing the user to operate in the same way when drying is required. This design not only simplifies the operation process but also ensures the sealing and hygiene of the interfaces, providing users with a more efficient and reassuring user experience.
[0064] Operating principle: When no routine care or cleaning is required, the patient simply wears the detachable shorts assembly. When feces are produced, the high-sensitivity sensor 443, located in the fourth recess 447 within the waste collection device 44, responds immediately, quickly issuing an alarm signal and accurately feeding back the real-time monitored excrement data to the control system. Once the control system receives this crucial information, it immediately notifies relevant personnel. At this point, the user (such as a caregiver) can conveniently push the fully equipped container to the patient's side to prepare for professional nursing care.
[0065] The nursing procedure begins with ensuring the air mattress 5 is fully inflated to provide a soft and comfortable support environment. The patient's upper body must lie steadily on the inflated air mattress 5 to ensure comfort and safety throughout the process. Excrement is quickly and effectively drawn from the waste collection device 44 via the negative pressure suction pipe 3 and transported to the waste collection container 132 inside the housing. After negative pressure suction, the waste collection device 44 is thoroughly rinsed via the flushing pipe 21, cleaning every corner to ensure no residue remains, effectively preventing bacterial growth and maintaining the device's cleanliness. After rinsing, a blower 24 on the housing releases warm airflow through the drying pipe 22 to thoroughly dry the waste collection device 44.
[0066] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It will be apparent to those skilled in the art that this utility model is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model. Therefore, the embodiments should be considered exemplary and non-limiting in all respects. The scope of this utility model is defined by the appended claims rather than the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0067] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A multifunctional box, characterized in that, include; A box structure having a hollow cavity for accommodating the equipment; A first fixing component is located on one side inside the housing structure; The second fixing component is disposed on the other side inside the box structure; A third fixing component is disposed between the first fixing component and the second fixing component to securely fix the equipment placed within the housing structure to prevent it from slipping or shifting during movement or storage.
2. The multifunctional box according to claim 1, characterized in that, The first fixing component includes a first fixing post, a second fixing post, a third fixing post, and a fourth fixing post. The first fixing post is provided with the second fixing post along the length direction of the box structure, and the first fixing post and the second fixing post are respectively provided with the third fixing post and the fourth fixing post along the width direction of the box structure.
3. The multifunctional box according to claim 1, characterized in that, The second fixing component includes a first limiting piece, a second limiting piece, a third limiting piece, and a fourth limiting piece. The first limiting piece is provided with the second limiting piece along the length direction of the box structure, and the first limiting piece and the second limiting piece are respectively provided with the third limiting piece and the fourth limiting piece along the width direction of the box structure.
4. A multifunctional box according to claim 1, characterized in that, The third fixing component includes a first fixing block and a second fixing block. The first fixing block is located in the middle of the box structure, and the second fixing block is located along the width of the box structure. The first fixing block and the second fixing block are arranged opposite to each other.
5. A multifunctional box according to claim 1, characterized in that, A handle is provided on one side of the box structure. A negative pressure component, a water filling device, and an air filling device are also provided inside the box structure. The negative pressure component is located in the first fixing component, the air filling device is located in the second fixing component, and the water filling device is located in the third fixing component.
6. A multifunctional box according to claim 5, characterized in that, The box structure has a first groove, a second groove, and a third groove on one side. The first groove, the second groove, and the third groove are evenly distributed on the side of the box structure, and there is a gap between the first groove, the second groove, and the third groove.
7. A multifunctional box according to claim 1, characterized in that, The upper surface of the enclosure structure is also equipped with a display screen to facilitate users in viewing data.
8. A multifunctional box according to claim 1, characterized in that, The box structure is also equipped with pulleys.
9. A multifunctional box according to claim 5, characterized in that, The handle has a non-slip texture for easy grip.
10. A portable nursing system, characterized in that, Includes a multifunctional housing as described in any one of claims 1-9 and a portable care device that works in conjunction with it.