Intelligent reconfigurable chain system cabinet structure of modular bathroom
The modular, intelligent, and reconfigurable chain system solves the problems of traditional bathroom cabinets being unable to be flexibly adjusted and having insufficient load-bearing capacity, achieving intelligent and convenient space management and improving space utilization and safety.
Patent Information
- Application Number
- CN202511288087.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-10
- Publication Date
- 2025-11-18
AI Technical Summary
Traditional bathroom cabinets cannot be flexibly adjusted according to the size of items, resulting in wasted dead space, insufficient load-bearing capacity, and a lack of intelligent management.
Employing a retractable and freely combinable chain system, intelligent control module, environmental sensors, and magnetic back panel, the cabinet space can be dynamically reconfigured and intelligently controlled. Through the combination of retractable chains, fasteners, and connectors, along with pressure sensors and voice control, flexible space adjustment and intelligent management can be achieved.
It effectively utilizes cabinet space, avoids wasted space, enhances load-bearing capacity, enables intelligent management, simplifies operation processes, reduces maintenance costs, adapts to different environmental conditions, and meets building industrialization standards.
Smart Images

Figure CN120959527A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the fields of smart home and building industrialization technology, specifically to a modular bathroom smart reconfigurable chain system cabinet structure. Background Technology
[0002] Against the backdrop of the rapid development of smart home and building industrialization technologies, bathroom spaces, as core functional areas in residences, hotels, and medical facilities, are receiving increasing attention for the practicality, flexibility, and intelligence of their cabinets.
[0003] Traditional bathroom cabinets, as core storage components, have long been limited by fixed design concepts, making it difficult to meet the diverse needs of modern users for efficient space utilization, flexible storage of items, and intelligent and convenient management. Traditional bathroom cabinets generally adopt a fixed shelf structure, with the spacing and number of shelves fixed during the manufacturing stage, making it impossible to flexibly adjust according to the actual size of the items to be stored. The fixed shelf design does not take into account the volume differences of different items, resulting in a large amount of dead space inside the cabinet that cannot be effectively utilized. The shelf structure cannot be dynamically adjusted according to the number of items, making it difficult to optimize the storage capacity by adding or removing items, further exacerbating the waste of space resources. In addition, the shelves of traditional bathroom cabinets are mostly made of wood or ordinary plastic, with simple support structure design and generally weak load-bearing capacity. Summary of the Invention
[0004] The purpose of this invention is to provide a modular bathroom intelligent reconfigurable chain system cabinet structure, which solves the problem in the background technology that it is impossible to flexibly adjust according to the actual size of the stored items, and the fixed partition design does not take into account the volume difference of different items, resulting in a large number of dead corner spaces inside the cabinet that cannot be effectively utilized.
[0005] To solve the above-mentioned technical problems, the present invention provides the following technical solution: A modular bathroom cabinet structure with an intelligent reconfigurable chain system includes a retractable and freely combinable chain system, an intelligent control module, environmental sensors, and a magnetic back panel. The retractable and freely combinable chain system is the core component for dynamic cabinet space reconfiguration. The intelligent control module is the system's intelligent control center. The environmental sensors and magnetic back panel assist in system functionality from the perspectives of environmental adaptability and ease of assembly, respectively. The retractable and freely combinable chain system is composed of snap fasteners, telescopic bars, and connectors. The snap fasteners are made of high-strength metal and can quickly connect and disconnect with the telescopic bars and connectors, improving system assembly and subsequent adjustment efficiency. The telescopic bars are titanium alloy chain structures with a polyurethane anti-slip layer covering their surface, which increases the distance between the chain and stored items. The friction force allows for flexible length adjustment to accommodate storage needs of items of different sizes. The connector integrates a two-way slot structure, a self-locking device, and a wireless communication unit. The two-way slot structure adapts to the multi-directional connection needs of buckles and telescopic strips. The self-locking device automatically locks after the components are connected in place to prevent loosening. The wireless communication unit enables real-time information interaction with the intelligent control module, ensuring accurate transmission of system control commands. The intelligent control module has a built-in embedded control system and an electric push rod. The electric push rod is mechanically connected to the retractable and freely combinable chain system, which can drive the chain system to complete retraction and precise positioning under the command of the embedded control system. The environmental sensor is electrically connected to the intelligent control module, which can collect temperature and humidity data of the bathroom environment in real time and transmit the data to the intelligent control module.
[0006] Preferably, the telescopic strip is made of titanium alloy and its surface is covered with a polyurethane anti-slip layer, which can ensure the structural strength to bear heavy objects and prevent placed items from slipping. At the same time, the minimum telescopic unit of a single section of the telescopic strip is 5cm, and the maximum extension length can reach 1.2m, which can flexibly adapt to the storage needs of items of different sizes.
[0007] Preferably, the intelligent control module integrates a pressure sensor and a fault detection function. The pressure sensor can monitor the weight of items inside the cabinet in real time, and the fault detection function can promptly detect abnormal system operation and issue a prompt. In addition, the intelligent control module supports voice command control, allowing users to drive the chain system to reorganize its space via voice commands, thus improving ease of operation.
[0008] Preferably, the connector has a built-in wireless communication unit, which enables information interaction with the intelligent control module and other external devices; and the connector as a whole supports hot-swappable replacement, with the repair and replacement time of a single component not exceeding 30 seconds, greatly reducing maintenance costs and downtime.
[0009] Preferably, it also includes an environmental sensor that is linked to the system; when the humidity of the bathroom environment is detected to be greater than 70%, the system will automatically adjust the chain spacing to increase the ventilation space inside the cabinet, improve the ventilation conditions inside the cabinet, and prevent items from being damaged by moisture.
[0010] Preferably, the retractable and freely combinable chain system supports three division modes: horizontal division, vertical division, and grid division. Users can select the corresponding division mode through the intelligent control module according to their actual storage needs, so as to realize personalized dynamic reconstruction of the cabinet space.
[0011] Preferably, the buckle is made of high-strength metal and adopts a quick-assembly and disassembly design. While ensuring connection strength, it can achieve quick assembly and disassembly with the telescopic strip and connector as a whole, thereby improving the system assembly efficiency.
[0012] Preferably, the intelligent control module has an intelligent load-bearing adjustment function, which can adjust the tension of the chain system in real time according to the weight of the items in the cabinet monitored by the pressure sensor, so as to ensure that the chain system can maintain a stable state under different load conditions and avoid system deformation or damage due to uneven load.
[0013] Preferably, it also includes a magnetic back panel, which is used in conjunction with a retractable and freely combinable chain system. The magnetic connection method enables quick installation and disassembly, further improving the overall assembly efficiency of the cabinet and meeting the standards for prefabricated buildings.
[0014] Preferably, the intelligent control module supports connection with external control devices such as the intelligent mirror cabinet button and remote control. Users can operate the intelligent mirror cabinet button or remote control to drive the chain system to retract or automatically determine the appropriate partition distance and partition method to complete the cabinet partition changes and meet the operational needs in different scenarios.
[0015] Compared with the prior art, the beneficial effects achieved by the present invention are: 1. This invention utilizes a retractable and freely combinable chain system, supporting three dynamic segmentation modes: horizontal, vertical, and grid-like. The minimum retractable unit of each retractable bar is 5cm, with a maximum extension length of 1.2m. This allows for flexible adjustment of the cabinet's internal space layout to accommodate items of varying sizes, such as toiletries, towels, and beauty tools. This avoids the problems of traditional fixed shelves where large items cannot fit and small items waste space, while also making full use of corner spaces within the cabinet. The retractable bar is made of titanium alloy, possessing both high strength and deformation resistance. Combined with a polyurethane anti-slip layer, it can support heavy items such as ceramic washbasins and stacked toiletries while preventing slippage. The intelligent control module integrates a pressure sensor and intelligent load-bearing adjustment function, which monitors the weight of items inside the cabinet in real time and automatically adjusts the chain tension to prevent chain deformation and loosening due to uneven load distribution. Simultaneously, the fault detection function can promptly detect problems such as stuck electric push rods and abnormal connections, issuing alerts. From both structural strength and intelligent protection perspectives, this ensures the long-term stable use of the cabinet, completely resolving the safety hazards of limited load-bearing capacity and easy deformation inherent in traditional cabinets. 2. This invention uses an intelligent control module as its core to construct a multi-dimensional intelligent control system. It supports voice command control chain reconfiguration, allowing users to reconstruct the space without manual adjustment. It can connect with external devices such as smart mirror cabinet buttons and remote controls to adapt to different usage habits. It can also link with pressure sensors to achieve dynamic load monitoring, allowing users to understand the cabinet's load status without manual inspection. Compared with the traditional manual organization and blind storage mode of cabinets, this invention simplifies the operation process by more than 80%, thereby achieving automated adaptation and convenient management of bathroom cabinets, which is in line with the development trend of smart homes. 3. This invention utilizes a linkage design between environmental sensors and a chain system. When the ambient humidity is detected to be >70%, the intelligent control module automatically adjusts the chain spacing to increase the ventilation gap inside the cabinet, accelerating air circulation to reduce humidity and prevent towels, paper toiletries, etc., from becoming moldy and deteriorating due to dampness. This achieves adaptive environmental adjustment without manual intervention, significantly improving the cabinet's practicality in humid bathroom scenarios. It is particularly suitable for rainy areas in the south and medical bathrooms where hygiene requirements are high. Furthermore, the structural design of this invention fully considers ease of assembly and efficient maintenance. The fasteners feature a quick-release design, and the magnetic back panel supports tool-free installation, increasing the overall installation efficiency of the cabinet by 80% compared to traditional prefabricated cabinets, fully complying with prefabricated building standards. All connectors support hot-swappable replacement, with individual component repair time ≤30 seconds. The built-in wireless communication unit can quickly locate faulty components, significantly reducing the time and labor costs of later maintenance. Attached Figure Description
[0016] Figure 1 This is one of the schematic diagrams of the overall structure of the present invention; Figure 2This is the second schematic diagram of the overall structure of the present invention; Figure 3 This is a schematic diagram of the side structure of the present invention; Figure 4 This is a schematic diagram of the structure of the buckle and telescopic strip of the present invention; Figure 5 This is a flowchart of the intelligent control module of the present invention.
[0017] The components include: 1. Fasteners; 2. Telescopic strips; 3. Connecting components as a whole; 4. Intelligent control module. Detailed Implementation
[0018] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0019] Please refer to Figures 1-5 A modular bathroom smart reconfigurable chain system cabinet structure includes a retractable and freely combinable chain system, an intelligent control module 4, an environmental sensor and a magnetic back panel. The retractable and freely combinable chain system is the core execution component for dynamic reconfiguration of the cabinet space. The intelligent control module 4 is the intelligent control center of the system. The environmental sensor and the magnetic back panel assist the system in realizing its functions from the dimensions of environmental adaptability and ease of assembly, respectively. The retractable and freely combinable chain system consists of a buckle 1, a telescopic bar 2, and a connector assembly 3. The buckle 1 is made of high-strength metal and its structural design meets the requirements for quick assembly and disassembly. It can quickly connect and disconnect with the telescopic bar 2 and the connector assembly 3, ensuring the stability of the connection structure while improving the efficiency of system assembly and subsequent adjustments. The telescopic bar 2 is a titanium alloy chain structure with a polyurethane anti-slip layer on its surface. This anti-slip layer increases the friction between the chain and the stored items, preventing items from slipping during cabinet use. The minimum telescopic unit of the telescopic bar 2 is 5cm, and the maximum extension length can reach 1.2m, allowing for flexible length adjustment according to the storage needs of items of different sizes. The connector assembly 3 integrates a two-way slot structure, a self-locking device, and a wireless communication unit. The two-way slot structure can adapt to the multi-directional connection requirements of the buckle 1 and the telescopic bar 2. The self-locking device automatically locks after the components are connected in place to prevent loosening. The wireless communication unit enables real-time information interaction with the intelligent control module 4, ensuring accurate transmission of system control commands. The intelligent control module 4 integrates an embedded control system and an electric push rod. The electric push rod is mechanically connected to a retractable and freely combinable chain system, which can drive the chain system to complete retraction and precise positioning under the command of the embedded control system. Simultaneously, the intelligent control module 4 also integrates a pressure sensor and fault detection function. The pressure sensor can collect real-time weight data of items inside the cabinet, and the fault detection function can monitor the operating status of the electric push rod, the wireless communication link, and the stability of the chain connection in real time. When abnormal system operation is detected, such as push rod jamming, communication interruption, or loose connection, a fault prompt can be issued promptly. Furthermore, the intelligent control module 4 supports connection to external control devices such as intelligent mirror cabinet buttons and remote controls, and can also receive voice commands. Users can drive the system through various control methods. The environmental sensor is electrically connected to the intelligent control module 4, which can collect the temperature and humidity data of the bathroom environment in real time and transmit the data to the intelligent control module 4. When the environmental humidity is detected to be greater than 70%, the intelligent control module 4 can automatically trigger the chain spacing adjustment command. The magnetic back panel is installed using a magnetic connection method and a retractable and freely combinable chain system, which can be quickly assembled and disassembled without the need for complicated tools. This makes the overall installation process of the cabinet more in line with the standards of prefabricated buildings and effectively improves the installation efficiency. Furthermore, the above components work together to achieve horizontal, vertical, and grid-like division of cabinet space, meeting different storage needs in high-end residences, hotels, and medical bathroom scenarios. At the same time, it solves the technical problems of traditional bathroom cabinets with fixed partition design, such as poor flexibility, low space utilization, limited load-bearing capacity, and lack of intelligent management functions. refer to Figure 4 The telescopic strip 2 is made of titanium alloy and its surface is covered with a polyurethane anti-slip layer, which can ensure the structural strength to support heavy objects and prevent items from slipping. At the same time, the minimum telescopic unit of the telescopic strip 2 is 5cm, and the maximum extension length can reach 1.2m, which can flexibly adapt to the storage needs of items of different sizes. The intelligent control module 4 integrates pressure sensors and fault detection functions. The pressure sensor can monitor the weight of items in the cabinet in real time, and the fault detection function can detect abnormal system operation and issue prompts in a timely manner. In addition, the intelligent control module 4 supports voice command control. Users can drive the chain system to reorganize the space through voice commands, which improves the convenience of operation. The connector 3 has a built-in wireless communication unit, which can realize information interaction with the intelligent control module 4 and other external devices. Moreover, the connector 3 supports hot-swappable replacement, and the repair and replacement time of a single component does not exceed 30 seconds, which significantly reduces maintenance costs and downtime. refer to Figures 1-4It also includes an environmental sensor that is linked to the system. When the humidity in the bathroom exceeds 70%, the system will automatically adjust the chain spacing to increase the ventilation space inside the cabinet, improve ventilation conditions, and prevent items from being damaged by moisture. The retractable and freely combinable chain system supports three division modes: horizontal division, vertical division, and grid division. Users can select the corresponding division mode through the intelligent control module 4 according to their actual storage needs to achieve personalized dynamic reconstruction of the cabinet space. The buckle 1 is made of high-strength metal and adopts a quick-assembly and disassembly design. While ensuring connection strength, it can achieve quick assembly and disassembly with the telescopic strip 2 and the connecting part 3, improving the system assembly efficiency. The intelligent control module 4 has an intelligent load-bearing adjustment function. It can adjust the tension of the chain system in real time according to the weight of the items inside the cabinet monitored by the pressure sensor to ensure that the chain system can maintain a stable state under different load conditions and avoid system deformation or damage due to uneven load. For further reference Figure 1 and Figure 2 It also includes a magnetic back panel, which works in conjunction with a retractable and freely combinable chain system. The magnetic connection allows for quick installation and disassembly, further improving the overall assembly efficiency of the cabinet and meeting the standards for prefabricated buildings. The intelligent control module 4 supports connection with external control devices such as the intelligent mirror cabinet button and remote control. Users can operate the chain system to retract or automatically determine the appropriate partition distance and partition method through the intelligent mirror cabinet button or remote control to complete the cabinet partition changes and meet the operational needs of different scenarios. The overall working principle of this invention is as follows: The buckle 1 uses a high-strength metal elastic locking tongue design, which can be accurately embedded into the bidirectional slot of the connector 3. After pressing, the locking tongue automatically pops open to complete the initial fixation. Then, the self-locking device of the connector 3 triggers mechanical locking to ensure that there is no relative displacement between the buckle 1 and the connector 3, thus achieving a stable splicing between the telescopic strip 2 and the connector. The telescopic strip 2 is a titanium alloy chain structure with a minimum telescopic unit of 5cm per section. The length can be flexibly adjusted through the nested connection between the chain sections, with a maximum extension of 1.2m. The polyurethane anti-slip layer on the surface increases the coefficient of friction to prevent stored items from slipping. Through the bidirectional slots of the connector 3, the telescopic strip 2 can form a grid-like segmentation structure by horizontal splicing and vertical interlacing. When splicing horizontally, the telescopic strip 2 extends along the width of the cabinet to determine the horizontal space partitioning; when interlacing vertically, the telescopic strip 2 extends along the height of the cabinet to determine the vertical space layering. The two can work together to achieve space division of any size to suit different item storage needs. The intelligent control module 4 integrates an embedded control system, an electric actuator, a pressure sensor, and a wireless communication unit. It performs four main functions: command parsing, data processing, drive control, and fault monitoring, and is crucial for achieving intelligent operation. The module receives external control commands through the wireless communication unit, including user voice commands, smart mirror cabinet button trigger signals, commands sent by remote control or mobile APP, and the embedded control system parses the commands to determine the target operation; After parsing the command, the embedded control system sends a drive signal to the electric push rod. The electric push rod is connected to the end of the telescopic bar 2 through mechanical transmission. It extends or shortens according to the command requirements. When it extends, the push rod pushes the telescopic bar 2 to unfold between sections, expanding the space partition. When it shortens, the push rod pulls the telescopic bar 2 to nest between sections, reducing the space partition. The push rod has a positioning accuracy of ±1mm, ensuring accurate space adjustment dimensions. The pressure sensor collects the force data of the telescopic bar 2 and the connecting part 3 in real time, converts the weight signal into an electrical signal and transmits it to the embedded control system. The system compares the signal with the preset load-bearing threshold to determine whether the current load is safe. At the same time, the built-in fault detection function of the module monitors the operating current of the electric push rod and the signal strength of the wireless communication link in real time. When an abnormality is detected, a fault prompt is issued through a buzzer or APP push, forming a safety protection closed loop. An environmental sensor is fixed to the inside of the top of the cabinet to collect real-time temperature and humidity data of the bathroom. The data is transmitted to the intelligent control module 4 via a signal line. When the humidity is detected to be greater than 70%RH, the module determines that the current environment is likely to cause items to become damp and automatically triggers the anti-dampness mode control command to drive the chain system to adjust the spacing to enhance ventilation. The magnetic backplate is quickly fixed to the wall by strong magnetic sheets. The pre-set installation reference line on its surface provides a positioning reference for the chain system, ensuring the horizontal or vertical accuracy when the telescopic bar 2 and the connecting parts 3 are assembled. At the same time, the aluminum alloy base plate of the backplate provides installation support for the electric push rod and the intelligent control module 4, preventing the components from shaking due to force and affecting the stability of operation. When a user needs to adjust the cabinet space according to the size of the items, the user issues a control command. The intelligent control module 4 receives and parses the command, determines the number of the telescopic bar 2 to be adjusted and the target length, and sends an extension drive signal to the corresponding electric push rod. The push rod pushes the telescopic bar 2 to unfold between sections. At the same time, the self-locking device of the connecting part 3 is temporarily unlocked, allowing the telescopic bar 2 to move. When the telescopic bar 2 is extended to the target length, the push rod stops running, and the self-locking device of the connecting part 3 automatically relocks to fix the position of the telescopic bar 2. The pressure sensor detects the force state of the telescopic bar 2 after adjustment. After confirming that there is no abnormality, the module feeds back to the user that the adjustment is complete, thus completing the dynamic division of space. When a user places items inside the cabinet, the pressure sensor collects the weight data of that area in real time after the items are placed. The intelligent control module 4 receives the data and compares it with the preset maximum load-bearing threshold for that area to determine if the current load-bearing capacity is within a safe range. The module calculates the required chain tension based on the weight data and sends a fine-tuning signal to the electric push rod. The push rod slightly adjusts the tension of the telescopic bar 2 to distribute the force evenly across multiple connecting parts 3, avoiding excessive local stress. If subsequent items are added and the total load exceeds the threshold, the module immediately triggers safety protection: first, it sends a locking signal to the electric push rod to prevent the telescopic bar 2 from moving accidentally; second, it sounds an alarm through a buzzer and pushes a load-over limit notification to the mobile APP until the user removes some items and the load returns to a safe range, at which point the alarm is deactivated. In a high-humidity environment, the environmental sensor continuously monitors the humidity in the bathroom. When the humidity rises above 70%RH, it sends a high-humidity signal to the intelligent control module 4. After analyzing the signal, the module determines that the anti-moisture mode needs to be activated and sends an extension command to the electric push rods corresponding to all horizontal telescopic bars 2. The electric push rods push the horizontal telescopic bars 2 to unfold, expanding the original chain spacing to 7cm, increasing the ventilation gap inside the cabinet, accelerating air circulation, and reducing the humidity inside the cabinet. The environmental sensor provides real-time feedback on humidity changes. When the humidity is detected to drop below 65%RH, the module sends a reset command to the electric push rods, the telescopic bars 2 return to their original spacing, and the anti-moisture mode is turned off, achieving adaptive environmental adjustment without manual intervention. The magnetic backplate is fixed to the wall by strong magnetic attraction, providing an installation reference. Users can quickly connect the clip 1 to the connector 3 to complete the horizontal and vertical splicing of the telescopic strip 2 without screws. The intelligent control module 4 quickly connects the electric push rod and the environmental sensor via wires, and Bluetooth pairing enables connection to external control devices. The entire process can be completed by one person without professional tools. When the connector 3 malfunctions, the user can locate the faulty component using the fault location function of the intelligent control module 4. Pressing the unlock button on the side of the connector releases the self-locking device, allowing the faulty connector to be pulled out directly. After inserting a new connector, the module automatically identifies and pairs it via wireless communication. The replacement time for a single component is less than or equal to 30 seconds, significantly reducing maintenance costs.
[0020] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A modular bathroom cabinet structure with an intelligent reconfigurable chain system, characterized in that: The system includes a retractable and freely combinable chain system, an intelligent control module (4), an environmental sensor, and a magnetic back panel. The retractable and freely combinable chain system is the core execution component for the dynamic reconstruction of the cabinet space. The intelligent control module (4) is the intelligent control center of the system. The environmental sensor and the magnetic back panel assist the system in realizing its functions from the dimensions of environmental adaptability and ease of assembly, respectively. The retractable and freely combinable chain system consists of a buckle (1), a telescopic bar (2), and a connecting component (3). The buckle (1) is made of high-strength metal material and can quickly connect and separate from the telescopic bar (2) and the connecting component (3), improving the efficiency of system assembly and subsequent adjustment. The telescopic bar (2) is a titanium alloy chain structure with a polyurethane anti-slip layer on its surface. This anti-slip layer can increase the friction between the chain and the stored items and can adjust the chain according to different... The length can be flexibly adjusted to meet the storage needs of items of the same size. The connector as a whole (3) integrates a two-way slot structure, a self-locking device and a wireless communication unit. The two-way slot structure can adapt to the multi-directional connection needs of the buckle (1) and the telescopic strip (2). The self-locking device automatically locks after the components are connected in place to prevent loosening. The wireless communication unit can realize real-time information interaction with the intelligent control module (4) to ensure accurate transmission of system control commands. The intelligent control module (4) has a built-in embedded control system and an electric push rod. The electric push rod is mechanically connected to the retractable and freely combinable chain system. It can drive the chain system to complete the telescopic action and precise positioning under the command of the embedded control system. The environmental sensor is electrically connected to the intelligent control module (4) and can collect the temperature and humidity data of the bathroom environment in real time and transmit the data to the intelligent control module (4).
2. The modular bathroom intelligent reconfigurable chain system cabinet structure according to claim 1, characterized in that: The telescopic strip (2) is made of titanium alloy and its surface is covered with a polyurethane anti-slip layer, which can ensure the structural strength to bear heavy objects and prevent items from slipping. At the same time, the minimum telescopic unit of the telescopic strip (2) is 5cm and the maximum extension length can reach 1.2m, which can flexibly adapt to the storage needs of items of different sizes.
3. The modular bathroom intelligent reconfigurable chain system cabinet structure according to claim 1, characterized in that: The intelligent control module (4) integrates a pressure sensor and a fault detection function. The pressure sensor can monitor the weight of items in the cabinet in real time, and the fault detection function can detect abnormal system operation and issue a prompt in a timely manner. In addition, the intelligent control module (4) supports voice command control. Users can drive the chain system to reorganize space through voice commands, which improves the convenience of operation.
4. The intelligent reconfigurable chain system cabinet structure for modular bathroom fixtures according to claim 1, characterized in that: The connector assembly (3) has a built-in wireless communication unit, which can realize information interaction with the intelligent control module (4) and other external devices; and the connector assembly (3) supports hot-swappable replacement, and the repair and replacement time of a single component does not exceed 30 seconds, which greatly reduces maintenance costs and downtime.
5. The intelligent reconfigurable chain system cabinet structure for modular bathroom fixtures according to claim 1, characterized in that: It also includes an environmental sensor that works in conjunction with the system. When the system detects that the humidity in the bathroom is greater than 70%, it will automatically adjust the chain spacing to increase the ventilation space inside the cabinet, improve ventilation conditions, and prevent items from being damaged by moisture.
6. The intelligent reconfigurable chain system cabinet structure for modular bathroom fixtures according to claim 1, characterized in that: The retractable and freely combinable chain system supports three division modes: horizontal division, vertical division, and grid division. Users can select the corresponding division mode through the intelligent control module (4) according to their actual storage needs to realize personalized dynamic reconstruction of the cabinet space.
7. The modular bathroom intelligent reconfigurable chain system cabinet structure according to claim 1, characterized in that: The buckle (1) is made of high-strength metal material and adopts a quick assembly and disassembly design. While ensuring the connection strength, it can realize the quick assembly and disassembly of the telescopic strip (2) and the connecting parts (3), thereby improving the system assembly efficiency.
8. The intelligent reconfigurable chain system cabinet structure for modular bathroom fixtures according to claim 1, characterized in that: The intelligent control module (4) has an intelligent load-bearing adjustment function. It can adjust the tension of the chain system in real time according to the weight of the items in the cabinet monitored by the pressure sensor, so as to ensure that the chain system can maintain a stable state under different load conditions and avoid system deformation or damage due to uneven load.
9. The intelligent reconfigurable chain system cabinet structure for modular bathroom fixtures according to claim 1, characterized in that: It also includes a magnetic back panel, which works in conjunction with a retractable and freely combinable chain system. The magnetic connection allows for quick installation and disassembly, further improving the overall assembly efficiency of the cabinet and meeting the standards for prefabricated buildings.
10. The intelligent reconfigurable chain system cabinet structure for modular bathroom fixtures according to claim 1, characterized in that: The intelligent control module (4) supports connection with external control devices such as the intelligent mirror cabinet button and remote control. Users can operate the intelligent mirror cabinet button or remote control to drive the chain system to shrink or automatically determine the appropriate separation distance and separation method to complete the cabinet separation change and meet the operation needs in different scenarios.