A dehumidification device specifically for smart medicine cabinets
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2026-08-14
AI Technical Summary
[0005]为了克服大多数智能药箱除湿结构无法实现药箱内部不同区域的差异化湿度控制,难以满足存储湿度差异较大的药品存放需求,限制了智能药箱在多样化药品存储场景中的应用的问题,提出本实用新型
[0014]存储药品时,通过抽屉将各类药品分类存放于药箱主体内,利用药箱主体智能控制抽屉内的存储环境湿度,对抽屉内存储环境进行除湿处理时,打开湿度较高的抽屉对应的连通管,通过连通管将抽屉内的潮湿空气通过第一密封罩抽取至第二密封罩,对第二密封罩排出的潮湿空气进行除湿处理,将对应抽屉内环境湿度调节至设定范围,使得除湿处理更有针对性且更高效,以解决大多数智能药箱除湿结构无法实现药箱内部不同区域的差异化湿度控制,难以满足存储湿度差异较大的药品存放需求,限制了智能药箱在多样化药品存储场景中的应用的问题,增强智能药箱实用价值。
Smart Images

Figure CN224632159U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of intelligent medicine box technology, and in particular to a dehumidification device specifically for intelligent medicine boxes. Background Technology
[0002] A medicine cabinet is a medical supplies storage tool that allows for the categorized and unified storage of medicines. Modern smart medicine cabinets can ensure that medicines are stored in a suitable environment, among which storage humidity is one of the key factors in ensuring the stability and effectiveness of medicines.
[0003] Most current smart medicine cabinets have relatively simple dehumidification structures, often using a single humidity control mode. However, different types of medicines have significantly different humidity requirements for their storage environment. Traditional dehumidification structures cannot achieve differentiated humidity control in different areas inside the medicine cabinet, making it difficult to meet the storage needs of medicines with large humidity differences. This makes them inconvenient to use and limits the application of smart medicine cabinets in diverse medicine storage scenarios.
[0004] Therefore, to address the difficulty of partitioning and dehumidifying existing smart medicine cabinets, a dedicated dehumidification device for smart medicine cabinets can be designed. By adjusting the humidity in each area according to the actual storage requirements of the medicines, it can ensure that all kinds of medicines are in the optimal storage environment, meet the diverse storage needs of medicines, and thus effectively enhance the practical value of smart medicine cabinets. Utility Model Content
[0005] To overcome the problem that most smart medicine box dehumidification structures cannot achieve differentiated humidity control in different areas inside the medicine box, making it difficult to meet the storage needs of medicines with large humidity differences and limiting the application of smart medicine boxes in diverse medicine storage scenarios, this utility model is proposed.
[0006] The technical solution of this utility model is as follows: a dehumidification device for a smart medicine box, including a dehumidification mechanism and an intelligent control mechanism. The dehumidification mechanism is located inside the main body of the medicine box, and the intelligent control mechanism is used to adjust the humidity of the corresponding drawer. It also includes a first sealing cover and a second sealing cover, both of which are fixedly connected inside the main body of the medicine box. Several sets of through holes are opened on the back panel of the drawer. The first sealing cover fits tightly with the back panel of the drawer in the closed state, and the first sealing cover, the second sealing cover and the drawer correspond one-to-one. The first sealing cover and the second sealing cover are connected through a connecting pipe. The dehumidification mechanism is located between the second sealing cover and the back panel of the main body of the medicine box, and is connected through the second sealing cover. It draws moisture from the corresponding drawer through the through holes on the back panel of the drawer.
[0007] Preferably, drawers are used to categorize and store various medicines within the main body of the medicine box. An intelligent control mechanism flexibly controls the humidity of the storage environment within the drawers. When dehumidifying the storage environment within a drawer, the connecting pipe corresponding to the drawer with higher humidity is opened. The humid air inside the drawer is then drawn through the connecting pipe from the first sealing cover to the second sealing cover. The dehumidification mechanism is then activated to dehumidify the humid air discharged from the second sealing cover, adjusting the humidity of the corresponding drawer to the set range. This allows for flexible adjustment of the humidity in each area of the medicine storage environment according to the actual storage requirements, making dehumidification more targeted and efficient. This ensures that all medicines are stored in the optimal environment, meeting the diverse storage needs of medicines and enhancing the practical value of the intelligent medicine box.
[0008] Preferably, the intelligent control mechanism includes a control panel, which is installed on the top of the medicine box body.
[0009] Preferably, the intelligent control mechanism also includes a humidity sensor and a solenoid valve. The humidity sensor is installed on the inside of each drawer, and the solenoid valve is installed on the outside of the connecting pipe.
[0010] Preferably, the humidity sensor is electrically connected to the control panel. The humidity sensor transmits the detected humidity data inside the drawer to the control panel, and the control panel flexibly controls the opening and closing of the corresponding connecting pipe by the solenoid valve according to the humidity setting of the corresponding drawer.
[0011] Preferably, the dehumidification mechanism includes a support frame, an evaporator, a condenser, and a compressor. The support frame is located at the rear of the medicine box body, the evaporator and condenser are located on one side of the support frame, and the compressor is located on one side of the evaporator.
[0012] Preferably, the dehumidification mechanism includes a fan, a ventilation grille, a water tank, and a drain pipe. A fan is installed on the other side of the support frame, a ventilation grille is installed at the rear end of the medicine tank body, and a water tank is installed at the bottom of the medicine tank body. Humid air flows through the evaporator, and moisture condenses on the evaporator fins and flows into the water tank. A drain pipe is installed on the outside of the water tank, and the drain pipe runs through the medicine tank body. Water in the water tank is flexibly discharged through a water valve on the drain pipe.
[0013] The beneficial effects of this utility model are:
[0014] When storing medicines, various medicines are categorized and stored in the main body of the medicine box via drawers. The main body of the medicine box intelligently controls the humidity of the storage environment inside the drawers. When dehumidifying the storage environment inside the drawers, the connecting pipe corresponding to the drawer with higher humidity is opened. The humid air inside the drawer is then drawn through the connecting pipe to the second sealing cover via the first sealing cover. The humid air discharged from the second sealing cover is then dehumidified, adjusting the humidity of the corresponding drawer to the set range. This makes the dehumidification process more targeted and efficient, solving the problem that most intelligent medicine box dehumidification structures cannot achieve differentiated humidity control in different areas inside the medicine box, making it difficult to meet the storage needs of medicines with large humidity differences. This limits the application of intelligent medicine boxes in diverse medicine storage scenarios and enhances the practical value of intelligent medicine boxes. Attached Figure Description
[0015] Figure 1 The diagram shown is a three-dimensional structural schematic of a dehumidification device for a smart medicine cabinet according to this utility model.
[0016] Figure 2 The diagram shown is a three-dimensional structural diagram of the drawer of a smart medicine cabinet dehumidification device according to this utility model.
[0017] Figure 3 The diagram shown is a three-dimensional structural diagram of the rear part of the main body of a medicine box for a smart medicine box dehumidification device according to this utility model.
[0018] Figure 4 The diagram shown is a first three-dimensional structural schematic of the dehumidification mechanism of a smart medicine box dehumidification device according to this utility model.
[0019] Figure 5 The diagram shown is a second three-dimensional structural schematic of the dehumidification mechanism of a smart medicine box dehumidification device according to this utility model.
[0020] Explanation of reference numerals in the attached drawings: 1. Medicine box body; 101. Control panel; 2. Drawer; 202. Humidity sensor; 203. Solenoid valve; 3. Through hole; 4. First sealing cover; 5. Connecting pipe; 6. Second sealing cover; 701. Support frame; 702. Evaporator; 703. Condenser; 704. Compressor; 705. Fan; 706. Ventilation grille; 707. Water tank; 708. Drain pipe; 709. Ventilation mesh. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] Please see Figure 1 , Figure 2 and Figure 5This utility model provides an embodiment of a smart medicine box dehumidification device, including a dehumidification mechanism and an intelligent control mechanism. The dehumidification mechanism is located inside the medicine box body 1, and the intelligent control mechanism is used to adjust the humidity of the corresponding drawer 2. It also includes a first sealing cover 4 and a second sealing cover 6, both of which are fixedly connected inside the medicine box body 1. Several sets of through holes 3 are opened on the back panel of the drawer 2. The first sealing cover 4 is tightly fitted to the back panel of the drawer 2 in the closed state, and the first sealing cover 4, the second sealing cover 6 and the drawer 2 correspond one-to-one. The first sealing cover 4 and the second sealing cover 6 are connected through a connecting pipe 5. The dehumidification mechanism is located between the second sealing cover 6 and the back panel of the medicine box body 1, and is connected through the second sealing cover 6. It draws moisture from the corresponding drawer 2 through the through holes 3 on the back panel of the drawer 2.
[0023] Please see Figure 2 , Figure 3 and Figure 5 In this embodiment, the intelligent control mechanism includes a control panel 101, a humidity sensor 202, and a solenoid valve 203. The control panel 101 is installed on the top of the medicine box body 1. A humidity sensor 202 is provided on the inner side of each drawer 2. The humidity sensor 202 is electrically connected to the control panel 101. The humidity sensor 202 transmits the detected ambient humidity data inside the drawer 2 to the control panel 101. The humidity sensor 202 monitors the ambient humidity inside the corresponding drawer 2 in real time and transmits the monitoring data to the control panel 101 in real time. A solenoid valve 203 is provided on the outer side of the connecting pipe 5. The control panel 101 flexibly controls the solenoid valve 203 to open and close the corresponding connecting pipe 5 according to the humidity set for the corresponding drawer 2, thereby achieving targeted dehumidification treatment for individual drawers 2.
[0024] Please see Figures 2-5In this embodiment, the dehumidification mechanism includes a support frame 701, an evaporator 702, a condenser 703, a compressor 704, a fan 705, a ventilation grille 706, a water tank 707, a drain pipe 708, and a ventilation screen 709. The support frame 701 is located at the rear of the medicine tank body 1. The evaporator 702 and condenser 703 are located on one side of the support frame 701, and the compressor 704 is located on one side of the evaporator 702. The fan 705 is located on the other side of the support frame 701. A ventilation grille 706 is located at the rear end of the medicine tank body 1, and a water tank 707 is located at the bottom of the medicine tank body 1. Humid air flows through the evaporator 702, and moisture condenses on the fins of the evaporator 702 and flows into the water tank 707. A drain pipe 708 is located on the outside of the water tank 707. The main body 1 of the medicine box is connected, and the water in the water tank 707 is flexibly discharged through the water valve on the drain pipe 708. The front end of the drawer 2 is equipped with a ventilation net 709. The evaporator 702 and the fan 705 are supported and fixed by the support frame 701. When the fan 705 is turned on, the dried air is discharged through the ventilation grille 706. The water vapor in the air is condensed into water droplets by the evaporator 702. The water condensed on the fins of the evaporator 702 flows into the water tank 707. The refrigerant molecules are compressed by the compressor 704, and the high temperature and high pressure refrigerant gas is cooled and liquefied by the condenser 703. At the same time, heat is released, so that the dehumidified cold air is heated and discharged. The ventilation net 709 ensures the air circulation in the drawer 2. The water in the water tank 707 is discharged through the drain pipe 708 by flexibly opening and closing the water valve.
[0025] When storing medicines, various medicines are classified and placed into different drawers 2 and stored in the main body of the medicine box 1. The humidity range of each drawer 2 is set using the control panel 101. The humidity sensor 202 monitors the humidity of the corresponding drawer 2 in real time and transmits the monitoring data to the control panel 101 in real time.
[0026] When the humidity in a drawer 2 is too high, the control panel 101 controls the solenoid valve 203 to open the connecting pipe 5 corresponding to the drawer 2 with higher humidity. At the same time, the fan 705 on the support frame 701 is activated, allowing the humid air in the drawer 2 to enter the first sealing cover 4 through the through hole 3. The first sealing cover 4 then transports the humid air to the second sealing cover 6 through the connecting pipe 5. The humid air discharged from the second sealing cover 6 passes through the evaporator 702, where water vapor condenses into water droplets. The water condenses on the fins of the evaporator 702 and flows into the water tank 707. The compressor 704 compresses the refrigerant molecules, and the condenser 703 cools and liquefies the high-temperature and high-pressure refrigerant gas, releasing heat. This heats the dehumidified cold air, which is then discharged through the ventilation grille 706. The ventilation net 709 ensures air circulation in the drawer 2. Finally, the water valve is opened, and the water in the water tank 707 is discharged through the drain pipe 708. After adjusting the humidity in the corresponding drawer 2 to the set range, the solenoid valve 203 is controlled to close the corresponding connecting pipe 5.
[0027] Through the above steps, various medicines are classified and stored in the main body 1 of the medicine box by setting drawer 2. The humidity of the storage environment in drawer 2 is flexibly controlled by the intelligent control mechanism. When dehumidifying the storage environment in drawer 2, the connecting pipe 5 corresponding to the drawer 2 with higher humidity is opened. The humid air in drawer 2 is drawn through the first sealing cover 4 to the second sealing cover 6 through the connecting pipe 5. The dehumidification mechanism is activated to dehumidify the humid air discharged from the second sealing cover 6, and the humidity of the corresponding drawer 2 is adjusted to the set range. Thus, the humidity of the medicine storage environment in each area is flexibly adjusted according to the actual storage requirements of the medicines, making the dehumidification treatment more targeted and efficient, ensuring that various medicines are in the best storage environment, and meeting the diverse storage needs of medicines.
[0028] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.
Claims
1. A dehumidifying device for smart medicine boxes, comprising a dehumidifying mechanism and a smart control mechanism, the dehumidifying mechanism is arranged in the interior of a medicine box body (1), and the smart control mechanism is used for adjusting the humidity of a corresponding drawer (2), characterized in that: It also includes a first sealing cover (4) and a second sealing cover (6), both of which are fixedly connected inside the medicine box body (1). Several sets of through holes (3) are provided on the back panel of the drawer (2). The first sealing cover (4) fits tightly against the back panel of the drawer (2) in the closed state, and the first sealing cover (4), the second sealing cover (6) and the drawer (2) correspond one to one. The first sealing cover (4) and the second sealing cover (6) are connected through a connecting pipe (5). The dehumidification mechanism is set between the second sealing cover (6) and the back panel of the medicine box body (1), and is connected through the second sealing cover (6). It draws out the moisture in the corresponding drawer (2) through the through holes (3) on the back panel of the drawer (2).
2. The dehumidifier device for smart medicine box according to claim 1, wherein: The intelligent control mechanism includes a control panel (101), which is installed on the top of the medicine box body (1).
3. The dehumidifier device for smart medicine box according to claim 2, wherein: The intelligent control mechanism also includes a humidity sensor (202) and a solenoid valve (203). A humidity sensor (202) is installed on the inside of each drawer (2), and a solenoid valve (203) is installed on the outside of the connecting pipe (5).
4. The dehumidifier device for smart medicine box according to claim 3, wherein: The humidity sensor (202) is electrically connected to the control panel (101). The humidity sensor (202) transmits the detected ambient humidity data in the drawer (2) to the control panel (101). The control panel (101) flexibly controls the solenoid valve (203) to open and close the corresponding connecting pipe (5) according to the humidity set for the corresponding drawer (2).
5. The dehumidifier device for smart medicine box according to claim 1, wherein: The dehumidification mechanism includes a support frame (701), an evaporator (702), a condenser (703), and a compressor (704). The support frame (701) is located at the rear of the medicine box body (1). An evaporator (702) and a condenser (703) are located on one side of the support frame (701), and a compressor (704) is located on one side of the evaporator (702).
6. The dehumidifier device for smart medicine box according to claim 5, wherein: The dehumidification mechanism includes a fan (705), a ventilation grille (706), a water tank (707), a drain pipe (708), and a ventilation net (709). A fan (705) is provided on the other side of the support frame (701). A ventilation grille (706) is provided at the rear end of the medicine box body (1). A water tank (707) is provided at the bottom end of the medicine box body (1). Humid air flows through the evaporator (702), and moisture condenses on the fins of the evaporator (702) and flows into the water tank (707). A drain pipe (708) is provided on the outside of the water tank (707). The drain pipe (708) runs through the medicine box body (1). Water in the water tank (707) is flexibly discharged through the water valve on the drain pipe (708). A ventilation net (709) is provided at the front end of the drawer (2).