Storage rack with air purification function for baby crib and baby crib
By integrating an air purification system in the crib storage rack, the air purification in the crib is purified by using detection and control devices, the existing crib structure is solved and the air improvement effect is poor, providing a healthy baby environment.
Patent Information
- Application Number
- CN202422150370.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-09-03
AI Technical Summary
The existing crib air improvement device is directly installed on the crib, resulting in complex structures and easy damage, which cannot effectively improve the air quality in the crib.
An air purification system is set up in the storage rack of the crib. The detection device is used to detect whether there are infants and young children in the crib. The control device controls the operation of the air purification device and releases fresh air into the crib. The purification system is integrated with the storage rack for protection.
It realizes effective purification of air in the crib, meets the healthy environment needs of infants and young children, has a compact structure and is easy to use, and avoids damage to the air purification device by external forces.
Smart Images

Figure CN223195808U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of infant products, in particular to a storage rack for a baby crib with an air purification function and the baby crib. Background Art
[0002] A crib is a bed for infants and young children. It is an indispensable appliance during the infant's growth stage. However, infants and young children are relatively weak and have more stringent requirements on the environment. Most existing cribs have a simple bed structure and serve only as a place for the baby. They cannot improve the air inside the crib. Although some cribs are equipped with air improvement devices to improve the air inside the crib, the air improvement devices are directly installed on the crib, making the crib structure complicated and the air improvement devices easily damaged by external forces. Summary of the Invention
[0003] In view of the above problems, the present invention provides a storage rack for a baby crib with an air purification function and a baby crib to solve the above or other problems existing in the prior art.
[0004] In order to solve the above technical problems, the technical solution adopted by the present invention is: a storage rack with an air purification function for a crib, which is arranged on the crib, and the crib is provided with a baby accommodating space. The storage rack includes a storage rack body and an air purification system arranged on the storage rack body. A accommodating cavity is provided in the storage rack body, and the air purification system is arranged in the accommodating cavity. The accommodating cavity is connected to the baby accommodating space, so that the air purification system can release fresh air to the outside to improve the air in the crib.
[0005] Furthermore, the storage rack body includes a connected upper shell and a cover body, at least two storage bins are provided on the upper side of the upper shell body, a groove structure is provided between two adjacent storage bins, the cover body is connected to the groove structure to construct a accommodating cavity; the wall of the groove structure is provided with a through hole structure, so that the groove structure is connected to the outside.
[0006] Furthermore, the air purification system includes a control device, an air purification device connected to the control device, and a detection device connected to the control device. The detection device detects whether there is an infant in the crib through a through-hole structure. The control device receives the detection signal of the detection device and controls the operation of the air purification device according to the detection result. The fresh air released by the air purification device passes through the through-hole structure to the baby accommodation space to improve the air in the crib.
[0007] Furthermore, a fixing device is provided in the accommodating cavity, the fixing device is connected to the detection device, and the detection device is provided on the side of the fixing device facing the crib.
[0008] Furthermore, the detection device includes a connected detection member and a detection control member, the detection control member is connected to the control device, the accommodating cavity is provided with a first through hole communicating with the outside, and the detection member extends to the outside of the rack body through the first through hole.
[0009] Furthermore, the air purification device is arranged on one side of the cover body facing the groove structure, the accommodating cavity is provided with a second through hole communicating with the outside, and the air purification device extends to the outside of the rack body through the second through hole; the air purification device is a negative ion releaser.
[0010] Furthermore, the air purification system also includes a connection interface, a mounting hole is provided on the upper shell, and the connection interface is connected to and communicated with the mounting hole; the connection interface is provided on the control device.
[0011] Furthermore, the air purification system also includes a switch device, which is connected to the control device.
[0012] Furthermore, the air purification system also includes an indicator light, which is connected to the control device, and an observation hole structure corresponding to the indicator light is provided on the upper shell to display the working status of the indicator light.
[0013] A baby crib comprises a first armrest and a second armrest spaced apart along the width direction of the baby crib, and a first side bracket and a second side bracket spaced apart along the length direction of the baby crib, and further comprises a storage rack, wherein one end of the first armrest and one end of the second armrest are respectively pivotally connected to two sides of the first side bracket, the other end of the first armrest and the other end of the second armrest are respectively pivotally connected to two sides of a storage rack body, and the storage rack body is connected to the second side bracket.
[0014] Due to the adoption of the above technical solution, a accommodating cavity is provided in the main body of the storage rack, and an air purification system is installed in the accommodating cavity, and the accommodating cavity is communicated with the baby accommodating space of the crib. The air purification system can release fresh air, so that the air purification system can improve the air in the crib, and the air purification system can control whether to release fresh air according to whether there is an infant in the baby accommodating space, so that when the infant is in the crib, the air purification device can purify and improve the air in the crib, meeting the user's requirements for caring for the infant and the infant's requirements for a healthy environment. The air purification system is integrated with the storage rack, and the storage rack main body protects the air purification system, making the storage rack compact and easy to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a structural schematic diagram of a baby crib equipped with a storage rack with a purification function according to an embodiment of the present invention;
[0016] Figure 2This is a schematic structural diagram of a storage rack according to an embodiment of the present invention at one angle;
[0017] Figure 3 This is a structural diagram of a storage rack body at one angle according to an embodiment of the present invention;
[0018] Figure 4 This is a structural schematic diagram of an angle of a cover body with a power supply and an air purification device installed in one embodiment of the utility model;
[0019] Figure 5 This is a schematic diagram of an exploded structure at one angle of a cover body equipped with a power supply and an air purification device according to one embodiment of the present invention;
[0020] Figure 6 This is a structural schematic diagram of a storage rack according to an embodiment of the present invention from another angle;
[0021] Figure 7 This is a schematic diagram of the exploded structure of the storage rack according to one embodiment of the present invention from another angle;
[0022] Figure 8 This is a schematic diagram of the exploded structure of the storage rack according to one embodiment of the present invention from another angle;
[0023] Figure 9 This is a structural schematic diagram of the storage rack body from another angle according to one embodiment of the present invention;
[0024] Figure 10 This is a schematic structural diagram of a detection device according to an embodiment of the present invention from another angle;
[0025] Figure 11 It is a structural schematic diagram of a control device according to an embodiment of the present invention from another angle.
[0026] In the picture:
[0027] 1. Storage rack body; 10. Upper shell; 20. Cover; 30. Air purification device; 40. Power supply; 50. Control device; 60. Detection device; 70. Connection interface; 80. Switch device; 90. Indicator light; 101. Storage compartment; 102. Connecting part; 103. First through hole; 104. Second through hole; 105. First mounting hole; 106. Accommodating cavity; 107. Fixing device; 108. Mounting hole; 301. Accommodating groove; 400. Battery; 401. Negative electrode mounting seat; 402. Fixing ring; 403. Support member; 404. Positive electrode mounting seat; 601. Detection member; 602. Detection control member; 2. First armrest; 3. Second armrest; 4. First side bracket; 5. Second side bracket. DETAILED DESCRIPTION
[0028] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0029] Figure 1 A structural schematic diagram of an embodiment of the utility model is shown. This embodiment relates to a storage rack with an air purification function for a crib and a crib. The storage rack is installed on the crib and is used to place items. At the same time, it can release fresh air according to whether there is an infant in the crib, thereby improving the air in the crib and meeting the user's requirements for infant care and a healthy environment.
[0030] A baby crib shelf with an air purification function is provided on the baby crib, and the baby crib is provided with a baby accommodating space, such as Figure 1-11 As shown, it includes a storage rack body 1 and an air purification system arranged on the storage rack body. A accommodating cavity is provided in the storage rack body 1. The air purification system is arranged in the accommodating cavity 1. The accommodating cavity is communicated with the baby accommodating space so that the air purification system can release fresh air into the baby accommodating space of the crib, improve the air in the crib, provide fresh air for the infant, and meet the infant's requirements for a healthy environment. The air purification system is installed in the storage rack body 1. The storage rack body 1 can protect the air purification system, so that the storage rack and the air purification system are integrated into one, with a compact structure and easy use.
[0031] The air purification system includes a control device 50, an air purification device 30 connected to the control device 50, and a detection device 60 connected to the control device 50. The control device 50, the air purification device 30, and the detection device 60 are all installed inside the accommodating cavity. The setting of the storage rack body 1 acts as a skeleton support, facilitating the installation of the control device 50, the air purification device 30, and the detection device 60, while enabling the placement of infant and child supplies. The control device 50, the detection device 60, and the air purification device 30 can all be installed inside the storage rack body 1, making the overall structure of the storage rack simple, compact, and beautiful, making it easy to install the storage rack in the crib and also convenient for use. When the storage rack is in use, the detection device 60 detects whether there is an infant in the crib, the control device 50 receives the detection signal of the detection device 60, and controls the operation of the air purification device 30 according to the detection result, and controls whether the air purification device 30 releases fresh air and whether to purify and improve the air in the crib. When the infant is in the crib, the air purification device 30 can purify and improve the air in the crib, meeting the user's requirements for caring for the infant and the infant's requirements for a healthy environment.
[0032] Therefore, in some feasible embodiments, when the air purification device 30 and the detection device 60 are installed, the air purification device 30 and the detection device 60 are installed on the side of the rack body 1 facing the inside of the crib, and the detection device 60 and the air purification device 30 are both connected to the outside of the rack body 1 and are not blocked, or, the detection device 60 and the air purification device 30 can both extend to the outside of the rack body 1, so that the detection device 60 can detect whether there is an infant in the crib and the air purification device 30 can purify and improve the air in the crib.
[0033] like Figure 2-3 As shown in Figures 6-9, the above-mentioned storage rack body 1 includes an upper shell 10 and a cover body 20 connected to the upper shell 10. At least two storage bins 101 are recessed on the upper side of the upper shell 10. These storage bins 101 are arranged along the length direction of the upper shell 10. They can be arranged in one row or in multiple rows, and the multiple storage bins 101 in each row can be arranged in a straight line or in a curve. The number and setting method of the storage bins 101 are selected according to actual needs, and no specific requirements are made. The setting of multiple storage bins 101 can place multiple items to meet the storage needs of the crib.
[0034] The storage bin 101 has a certain depth, so it can be used to store items. The depth of the storage bin 101 is selected according to actual needs and is not subject to specific requirements.
[0035] In this embodiment, there are two storage bins 101, which are recessed downward from the upper end of the upper shell 10 and are arranged sequentially along the length direction of the upper shell 10. The width of the storage bins 101 is adapted to the width of the upper shell 10, so that the two storage bins 101 occupy most of the area of one side surface of the upper shell 10, and the area of the storage bins 101 is increased as much as possible so that larger items or multiple items can be placed in the storage bins 101.
[0036] Two adjacent storage bins 101 are connected by a connecting portion 102, connecting the two storage bins 10 together. There is a gap between the two adjacent storage bins 101, which corresponds to the connecting portion 102. Therefore, a groove structure is formed in the internal space of the upper shell 10. One set of opposite side walls of the groove structure is the opposite side walls of the two adjacent storage bins 101, and the other set of corresponding side walls is the two opposite side walls of the upper shell 10. The top wall is the connecting portion 102; the cover 20 is connected to the opening of the groove structure, covering the groove structure to form a accommodating cavity 106, so that the detection device 60, the control device 50 and the air purification device 30 can be installed in the accommodating cavity 106. In this way, the internal space of the upper shell 10 is fully utilized to achieve the installation of the air purification system and protect the air purification system.
[0037] Preferably, the groove structure is provided with a through-hole structure, so that the groove structure is connected to the outside, so that the detection device 60 can detect the outside through the through-hole structure, and the fresh air released by the air improvement device 30 can be discharged to the outside through the through-hole structure. In some feasible embodiments, the through-hole structure is preferably a through hole.
[0038] Specifically, the storage rack body 1 is provided with a accommodating cavity 106 and a fixing device 107 provided in the accommodating cavity 106. The accommodating cavity 106 is a cavity structure formed by the above-mentioned groove structure and the cover body 20. The fixing device 107 is fixedly installed in the accommodating cavity 106. The setting of the fixing device 107 facilitates the installation of the detection device 60. The fixing device 107 is connected to the detection device 60 to limit and fix the installation position of the detection device 60 so that the position of the detection device 60 is fixed, so that the detection device 60 can accurately detect whether there is an infant in the crib. The fixing device 107 is a plate structure so that the detection device 60 is fixedly connected to the fixing device 107. When the fixing device 107 is installed in the accommodating cavity 106, the fixing device 107 is located on the side wall of the accommodating cavity 106 facing the internal space of the crib, so that the detection device 60 can detect whether there is an infant in the crib. There is a gap between the fixing device 107 and the side wall of the accommodating cavity 106, and the detection device 60 is arranged between the fixing device 107 and the side wall of the accommodating cavity 106. The fixing device 107 can be fixedly connected to the bottom wall of the accommodating cavity 106 by bolts or other connecting parts, or it can be riveted, or integrally formed, or other fixed connection methods, which can be selected according to actual needs and no specific requirements are made here.
[0039] In order to enhance the stability of the fixing device 107 , a plurality of supporting ribs are provided on a side of the fixing device 107 away from the connection with the detection device 60 to enhance the strength of the fixing device 107 .
[0040] The detection device 60 is fixedly mounted on a side surface of the side wall of the fixing device 107 facing the accommodating cavity 106. The accommodating cavity 106 is provided with a first through hole 103 communicating with the outside world, and the first through hole 103 is arranged on the side wall of the accommodating cavity 106. The detection device 60 can communicate with the outside world through the first through hole 103, and the detection device 60 is not blocked. Alternatively, the detection device 60 can extend through the first through hole 103 to the outside of the accommodating cavity 106 (the storage rack body 1) to detect the internal space of the crib and detect whether there is an infant in the crib.
[0041] Specifically, if Figure 4-5As shown, the detection device 60 includes a connected detection member 601 and a detection control member 602. The detection member 601 is used to detect whether there is an infant inside the crib. The detection control member 602 receives the detection signal of the detection member 601, processes the detection signal, and then transmits the processed detection signal to the control device 50. The position of the detection member 601 corresponds to the position of the first through hole 103, and the detection member 601 is located in the accommodating cavity 106, or the detection member 601 extends through the first through hole 103 to the outside of the storage rack body 1 so that the detection member 601 can accurately detect.
[0042] In some feasible embodiments, the detection element 601 may be an infrared sensor, an image sensor, a photoelectric sensor, a radar sensor, or other sensors capable of detecting the presence of an object, and the selection is made based on actual needs, and no specific requirements are given here. Preferably, the detection element 601 is an infrared sensor.
[0043] In some feasible embodiments, the detection control component 602 is a circuit board, which is a commercially available product and is selected according to actual needs. No specific requirements are made here.
[0044] In order to process and transmit the detection signal received from the detection component 601, the detection control component 602 is connected to the control device 50 through a wire for signal transmission. The number of detection components 601 can be one or more, and it can be selected according to actual needs. The number of first through holes 103 on the accommodating cavity 106 is consistent with the number of detection components 601, and the positions correspond one to one. The position of each first through hole 103 corresponds to the position of a detection component 601 to ensure that each detection component 601 is connected to the outside world and is not blocked or can extend to the outside of the accommodating cavity 106.
[0045] The above-mentioned accommodating cavity 106 is provided with a second through-hole 104 communicating with the outside world. The air purification device 30 can be communicated with the outside world through the second through-hole 104 to discharge fresh air, or the air purification device 30 can extend to the outside of the storage rack body 1 through the second through-hole 104 to discharge fresh air; the number of the second through-hole 104 is at least one, and each second through-hole 104 corresponds to an exhaust port of the air purification device 30 for exhausting fresh air. The number of the second through-holes 104 is consistent with the number of the exhaust ports of the air purification device 30, and the positions correspond one to one.
[0046] In some feasible embodiments, preferably, the air purification device 30 is preferably a plasma releaser, which is a commercially available product and is selected according to actual needs. No specific requirements are made here.
[0047] The above-mentioned control device 50 is fixedly installed in the accommodating cavity 106. A mounting slot is provided on the bottom wall of the accommodating cavity 106. The control device 50 is arranged in the mounting slot, and the control device 50 is fixedly connected to the bottom wall of the accommodating cavity 106 by bolts and other connecting parts. The control device 50 is a circuit board, which is a commercially available product. It is selected according to actual needs and no specific requirements are made here.
[0048] like Figure 8-11 As shown, the above-mentioned air purification device 30 can be fixedly mounted on the bottom wall or side wall of the accommodating cavity 106, or can be fixedly mounted on the cover body 20. The setting is selected according to the volume of the air purification device 30 and the remaining installation space in the accommodating cavity 106. No specific requirements are made here. In some feasible embodiments, the air purification device 30 is fixedly mounted on the side surface of the cover body 20 facing the groove structure, and a accommodating groove 301 is fixedly provided on the side surface of the cover body 20 facing the groove structure. A buckle is provided on a group of oppositely arranged side walls at the open end of the accommodating groove 301. The air purification device 30 is installed in the accommodating groove 301, and the buckle is engaged with the air purification device 30. Through the elastic deformation of the buckle, the air purification device 30 is fixedly mounted in the accommodating groove 301, so that the air purification device 30 is located in the space between the cover body 20 and the groove structure, and there is a gap between the air purification device 30 and the control device 50, and no installation interference will occur.
[0049] Further optimization scheme, such as Figure 4-5 As shown, the storage rack also includes a power supply 40, which is connected to the control device 50 to supply power to the control device 50, the air purification device 30 and the detection device 60 to maintain the operation of the control device 50, the detection device 60 and the air purification device 30. The power supply 40 can be installed on the bottom wall or side wall of the accommodating cavity 106, or the power supply 40 can also be installed on the cover 20. The installation position of the power supply 40 is selected and set according to the volume of the power supply 40 and the installation space in the accommodating cavity 106, and no specific requirements are made here. The control device 50 can monitor the power level of the power supply 40 and display it so that the user can intuitively see the power level of the power supply 40.
[0050] The power source 40 is a battery 400 , which can be a rechargeable battery 400 , such as a lithium battery 400 , or an alkaline battery 400 . The type of the battery 400 is selected according to actual needs.
[0051] In some feasible embodiments, the power supply 40 is fixedly mounted on a side surface of the cover body 20 facing the groove structure to reduce the volume of the groove structure and increase the volume of the storage compartment 101. A battery holder is provided on this side surface of the cover body 20, and the power supply 40 can be mounted on the battery holder to achieve the installation of the power supply 40 and fix the power supply 40. The battery holder includes a positive pole mounting seat 404, a negative pole mounting seat 401, a support member 403 and a fixing ring 402. The positive pole mounting seat 404 contacts the positive pole of the power supply 40, and the negative pole mounting seat 401 contacts the negative pole of the power supply 40. The power supply 40 is placed on the support member 403, and the support member 403 supports and limits the power supply 40. There are multiple support members 403, and the multiple support members 403 are arranged in sequence along the direction from the positive pole mounting seat 404 to the negative pole mounting seat 401, and are selected according to the volume of the power supply 40. The support member 403 is a plate-shaped structure, and the support member 403 is vertically fixed on the cover. On the side of the cover 20, a groove is provided on the support member 403, which accommodates the power supply 40 while also limiting the power supply 40 to prevent the power supply 40 from moving; the fixing ring 402 is provided between the positive pole mounting seat 404 and the negative pole mounting seat 401, and the fixing ring 402 is a plate structure with a through hole, and the fixing ring 402 is vertically fixed on the side of the cover body 20, and the fixing ring 402 is sleeved on the power supply 40 to fix the power supply 40 to prevent the cover body 20 from falling off from the cover body 20 after being snapped into the groove structure, and the power supply 40 is fixed to the cover plate so that the power supply 40 is located in the space between the cover plate and the groove structure.
[0052] Further optimization scheme, such as Figure 8-9 As shown, the air purification system further includes a connection interface 70, and the connection interface 70 is provided on the control device 50. The upper housing 10 is provided with a mounting hole 108, and the connection interface 70 is connected to and communicates with the mounting hole 108, so that the upper housing 10 fixes and supports the connection interface 70 and facilitates the connection of the air purification system to an external electrical component through the connection interface 70, which may be a charger.
[0053] The aforementioned mounting hole 108 can be provided on the connecting portion 102 of the upper housing 10 between two adjacent storage compartments 101, or the mounting hole 108 can also be provided on the sidewall of the storage compartment 101, or at another location on the upper housing 10. The location of the mounting hole 108 is selected based on actual needs and is not specifically required herein. In some feasible embodiments, the mounting hole 108 is provided on the sidewall of the storage compartment 101, with the external port of the connection interface 70 facing the storage compartment 101 to facilitate connection with external electrical components, which can be placed within the storage compartment 101.
[0054] In some feasible embodiments, the connection interface 70 is any known and feasible interface such as type-c, USB, etc.
[0055] Further optimization scheme, such as Figure 10-11 As shown, the air purification system also includes a switch device, which is connected to the control device 50 to control whether the shelf performs air improvement action. In this embodiment, the switch device is a touch-type switch structure, which includes a touch spring 80, and one end of the touch spring 80 is connected to the control device 50, and the other end is connected to the upper housing 10. The part where the upper housing 10 connects to the touch spring 80 is set as the touch portion of the touch-type switch structure (not shown in the figure). By pressing the touch portion, the switch device is turned on and off. The touch portion is provided on the connection portion 102 of the upper housing 10.
[0056] In other embodiments, a button (not shown) may be connected to the spring, and a through hole may be provided at a corresponding position of the upper housing 10, through which one end of the button extends out of the upper housing 10. By pressing the button switch, the switch operation is realized.
[0057] Further optimization scheme, such as Figure 10-11 As shown, the air purification system also includes an indicator light 90, which is connected to the control device 50 and is used to display the working mode of the air purification system. The indicator light 90 can be set to one or more; the connection part 102 of the upper shell 10 is provided with an observation hole structure corresponding to the number and position of the indicator lights, so as to facilitate the user to observe whether the indicator light 90 is working and the working status. The observation hole structure is preferably a first mounting hole 105.
[0058] The utility model also discloses a baby crib, which comprises the above-mentioned storage rack.
[0059] Furthermore, the crib also includes a first armrest 2 and a second armrest 3 arranged at intervals along the width direction of the crib, and a first side bracket 4 and a second side bracket 5 arranged at intervals along the length direction of the crib. One end of the first armrest 2 and one end of the second armrest 3 are respectively pivotally connected to both sides of the first side bracket 4, and the other end of the first armrest 2 and the other end of the second armrest 3 are respectively pivotally connected to both sides of the rack body 1, and the rack body 1 is connected to the second side bracket 5.
[0060] The first side bracket 4 and the second side bracket 5 can each include two spaced-apart columns, with the upper ends of the two columns of the first side bracket 4 pivotally connected to one end of the first armrest 2 and the second armrest 3, respectively, and the upper ends of the two columns further connected to a short-side armrest; the upper ends of the two columns of the second side bracket 5 are connected to both sides of the storage rack body 1. Alternatively, the first side bracket 4 and the second side bracket 5 can further include a U-shaped frame outside the two columns, the U-shaped frame enclosing the two columns on the corresponding side and the storage rack / short-side armrest.
[0061] When the crib is in use, baby products can be placed in the storage compartment of the storage rack;
[0062] Long press the switch device 80 to turn on the air purification system, the air purification system starts to work, and the power level of the power supply 40 is displayed on the touch portion;
[0063] Select the working mode. Click the switch device 80 once to work in the induction mode. In this mode, the indicator light 90 flashes and then turns off, and does not remain on. Click the switch device 80 twice to work in the manual mode. In this mode, the indicator light 90 remains on.
[0064] When the sensing mode is activated, the detection device 60 detects whether there is an infant in the crib. If so, the detection device 60 transmits the detected signal to the control device 50. After receiving the detection signal, the control device 50 controls the air purification device 30 to release negative ions into the crib, thereby purifying and improving the air in the crib. Otherwise, the control device 50 does not control the air purification device 30 to operate, and the detection device 60 continues to detect.
[0065] When detecting whether there is an infant in the crib, the detection device 60 performs a detection once in each time period, and the length of the time period is 1-2 minutes;
[0066] Determine the working time of the air purification device 30. If the working time of the air purification device 30 is greater than a preset value, the control device 50 controls the air purification device 30 to stop working and enter a dormant state. The preset value is 2-3 hours, and the dormant time is 1-2 hours. Otherwise, repeat the above steps, the detection device 60 performs a detection action, and transmits a detection signal to the control device 50. The control device 50 controls the operation of the air purification device 30 according to the detection signal.
[0067] When the manual mode is entered, the control device 50 controls the air purification device 30 to work, release negative ions, and improve the air in the crib;
[0068] The working time of the air purification device 30 is judged. If the working time of the air purification device 30 is greater than a preset value, the control device 50 controls the air purification device 30 to stop working and shuts down the storage rack. The preset value is 2-3 hours.
[0069] Due to the adoption of the above technical solution, an air purification system is installed in the storage rack, and the air purification system can improve the air in the crib. The air purification system is integrated with the storage rack, and the storage rack body protects the air purification system, making the storage rack compact and easy to use. The air purification system includes a control device, an air purification device and a detection device. The detection device and the air purification device are both connected to the control device. The detection device detects whether there is an infant in the crib and controls the operation of the air purification device. When the infant is in the crib, the air purification device can purify and improve the air in the crib, meeting the user's requirements for infant care and a healthy environment. A storage cavity is provided inside the storage rack body. The detection device, the air purification device and the control device are installed in the storage cavity in the storage rack body, which can protect the detection device, the air purification device and the control device from damage by external forces. The storage cavity is composed of adjacent storage bin side walls and a cover body, making the overall structure of the storage rack compact and easy to install and use.
[0070] The above embodiments of the present invention are described in detail. However, the above contents are only preferred embodiments of the present invention and should not be considered to limit the scope of implementation of the present invention. All equivalent changes and improvements made within the scope of the present invention should still fall within the scope of the patent coverage of the present invention.
Claims
1. A baby crib shelf with an air purification function, provided on the baby crib, wherein the baby crib has a baby accommodating space, and characterized by: The storage rack includes a storage rack body and an air purification system arranged on the storage rack body. A accommodating cavity is provided in the storage rack body. The air purification system is arranged in the accommodating cavity. The accommodating cavity is communicated with the baby accommodating space so that the air purification system can release fresh air to the outside to improve the air in the crib.
2. The baby crib storage rack with air purification function according to claim 1, characterized in that: The storage rack body includes a connected upper shell and a cover body, at least two storage bins are provided on the upper side of the upper shell body, a groove structure is provided between two adjacent storage bins, the cover body is connected to the groove structure to construct the accommodating cavity; the wall of the groove structure is provided with a through hole structure, so that the groove structure is connected to the outside.
3. The baby crib storage rack with air purification function according to claim 2, characterized in that: The air purification system includes a control device, an air purification device connected to the control device, and a detection device connected to the control device. The detection device detects whether there is an infant in the crib through the through-hole structure. The control device receives the detection signal of the detection device and controls the operation of the air purification device according to the detection result. The fresh air released by the air purification device passes through the through-hole structure to the infant accommodation space, thereby improving the air in the crib.
4. The baby crib storage rack with air purification function according to claim 3, characterized in that: A fixing device is provided in the accommodating cavity, the fixing device is connected to the detection device, and the detection device is provided on the side of the fixing device facing the crib.
5. The baby crib storage rack with air purification function according to claim 4, characterized in that: The detection device includes a connected detection member and a detection control member, the detection control member is connected to the control device, the accommodating cavity is provided with a first through hole communicating with the outside, and the detection member extends to the outside of the rack body through the first through hole.
6. The baby crib storage rack with air purification function according to any one of claims 3 to 5, characterized in that: The air purification device is arranged on a side surface of the cover body facing the groove structure, the accommodating cavity is provided with a second through hole communicating with the outside, and the air purification device extends to the outside of the storage rack body through the second through hole; the air purification device is a negative ion releaser.
7. The baby crib storage rack with air purification function according to any one of claims 3 to 5, characterized in that: The air purification system further comprises a connection interface. A mounting hole is provided on the upper shell, and the connection interface is connected to and communicates with the mounting hole. The connection interface is provided on the control device.
8. The baby crib storage rack with air purification function according to any one of claims 3 to 5, characterized in that: The air purification system further comprises a switch device connected to the control device.
9. The baby crib storage rack with air purification function according to claim 8, characterized in that: The air purification system further includes an indicator light, which is connected to the control device, and an observation hole structure corresponding to the indicator light is provided on the upper shell to display the working status of the indicator light.
10. A crib comprising a first armrest and a second armrest spaced apart along the width direction of the crib and a first side support and a second side support spaced apart along the length direction of the crib, characterized in that: It also includes the storage rack according to any one of claims 1 to 9, wherein one end of the first armrest and one end of the second armrest are respectively pivotally connected to both sides of the first side bracket, the other end of the first armrest and the other end of the second armrest are respectively pivotally connected to both sides of the storage rack body, and the storage rack body is connected to the second side bracket.