Clothing care system and smart clothes dryer
Patent Information
- Application Number
- CN202521894818.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-03
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-09-03
AI Technical Summary
[0002]在现有的衣物护理设备中,仅支持单一的衣物护理方式,如烘干或风干,无法适应不同的衣物提供相适应的衣物护理方式,且需要依赖用户基于经验值选择衣物护理方式和进行衣物护理操作,导致衣物护理的效果和效率较差
本公开实施例提供一种衣物护理系统,具体地,包括控制模块以及与控制模块通信连接的数据采集模块和功能模块,数据采集模块可以用于采集与衣物相关的数据,并传输至控制模块,也即本公开实施例可以通过配置数据采集模块为衣物护理的选择和操作提供参考数据,减少对用户经验值的依赖;另外,功能模块可以基于设备所提供的衣物存放区域布设,用于接收控制模块的指令进行作业,具体地包括第一模块和第二模块,其中,第一模块包括用于进行衣物护理的至少一个单元,也即本公开实施例可以在同一设备上配置至少一个单元进行衣物护理,为衣物护理的差异化提供实现的硬件基础;其中,第二模块包括基于第一模块布设的调节组件,可以用于调整衣物和/或第一模块所处的三维空间位置,为衣物护理的差异化执行提供硬件基础,避免针对同一衣物仅能提供单一的衣物护理方式,有利于提高衣物护理的效率和效果。
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Figure CN224704893U_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to the field of smart home device technology, and more specifically, to a clothing care system and a smart clothes dryer. Background Technology
[0002] Existing garment care equipment only supports a single garment care method, such as drying or air drying, and cannot adapt to different garments to provide appropriate garment care methods. Furthermore, it requires users to select garment care methods and perform garment care operations based on experience, resulting in poor garment care effects and efficiency. Utility Model Content
[0003] This disclosure addresses the shortcomings of existing methods by proposing a garment care system and a smart clothes dryer.
[0004] In a first aspect, embodiments of this disclosure provide a garment care system, including: a control module, a data acquisition module, and a functional module communicatively connected to the control module; The data acquisition module is used to collect data related to clothing and transmit it to the control module; The functional modules are deployed based on the clothing storage area provided by the device, and are used to receive instructions from the control module and perform operations, including: The first module includes at least one unit for performing garment care; The second module includes adjustment components deployed based on the first module, used to adjust the clothing and / or the three-dimensional spatial position of the first module.
[0005] In one feasible embodiment, the data acquisition module includes at least one of a camera module and a sensor module; The camera module is used to acquire image data; The sensor module includes a near-infrared sensor unit and / or an ultrasonic sensor unit; the near-infrared sensor unit is used to acquire spectral reflectance data, and the ultrasonic sensor unit is used to acquire distance measurement data and / or echo intensity data.
[0006] In one feasible embodiment, the first module includes at least one of a steam unit, a drying unit, a sterilization unit, or a wrinkle removal unit; The adjustment component includes at least one of the following: The first component includes a track device connected to a hanging assembly for hanging clothes in the clothing storage area, for moving the hung clothes; The second component includes a sliding component and / or a rotating component arranged in the clothing storage area. The sliding component is integrally connected to the first module and is used to move the first module. The rotating component is at least partially connected to the first module and is used to adjust the orientation of some structural components in the first module.
[0007] Secondly, this disclosure provides an intelligent clothes drying rack, which includes a main unit and a drying rod assembly, and is equipped with a clothing care system provided in the first aspect and any embodiment thereof; the clothing storage area is provided through the drying rod assembly; the control module is built into the main unit; the data acquisition module and the functional module are deployed based on the main unit and / or the drying rod assembly.
[0008] In one feasible embodiment, the data acquisition module includes at least one of a camera module and a sensor module; The camera module is installed on the side or bottom of the host facing the clothing storage area, and is used to collect image data related to the clothing. The sensor module includes a near-infrared sensor unit and / or an ultrasonic sensor unit; the near-infrared sensor unit is used to collect spectral reflectance data, and the ultrasonic sensor unit is used to collect distance measurement data and / or echo intensity data related to clothing.
[0009] In one feasible embodiment, the first module includes at least one of a steam unit, a drying unit, a sterilization unit, or a wrinkle removal unit; The adjustment component includes a sliding component that is integrally connected to the first module; The sliding assembly includes a guide rail arranged along the length of the host and / or the drying rod assembly, a slider for supporting the first module and sliding on the guide rail, and a drive component for providing power to the slider.
[0010] In one feasible embodiment, the first module includes at least one of a steam unit, a drying unit, or a sterilization unit; The steam unit, the drying unit, and the disinfection unit each include an outlet component that communicates with the external environment; the regulating component includes a rotating component connected to the outlet component for driving the outlet component to rotate.
[0011] In one feasible embodiment, the disinfection unit includes an ultraviolet disinfection lamp, an ozone generator, an ion generator, and / or atomizing disinfection device; And / or, the wrinkle removal unit includes a vibrator and / or a robotic arm equipped with a clapper.
[0012] In one feasible embodiment, the adjustment assembly further includes a first component, which includes a robotic arm and / or a track device connected to a hanging assembly on the drying rod assembly for hanging clothes, for moving the hung clothes.
[0013] In one feasible embodiment, the track device includes a track arranged below the drying rod assembly and along its length, and a pulley disposed within the track; the pulley is connected to the drying assembly to drive the clothes to slide when force is applied.
[0014] The beneficial effects of the technical solutions provided in this disclosure are: This disclosure provides a garment care system, specifically including a control module, a data acquisition module, and a functional module communicatively connected to the control module. The data acquisition module can collect garment-related data and transmit it to the control module. This means that this disclosure can provide reference data for garment care selection and operation by configuring the data acquisition module, reducing reliance on user experience. Additionally, the functional module can be deployed based on the garment storage area provided by the device and is used to receive instructions from the control module to perform operations. Specifically, it includes a first module and a second module. The first module includes at least one unit for garment care, meaning that this disclosure can configure at least one unit for garment care on the same device, providing a hardware foundation for differentiated garment care. The second module includes adjustment components deployed based on the first module, which can be used to adjust the three-dimensional spatial position of the garment and / or the first module, providing a hardware foundation for differentiated garment care execution and avoiding the limitation of providing only a single garment care method for the same garment, thus improving the efficiency and effectiveness of garment care.
[0015] This disclosure provides an intelligent clothes drying rack equipped with the aforementioned clothing care system. The corresponding clothing storage area can be provided by the drying rod assembly of the intelligent clothes drying rack, while the control module is built into the main unit of the intelligent clothes drying rack. The data acquisition module and functional modules can be deployed based on the main unit and / or the drying rod assembly, providing a hardware foundation for achieving differentiated clothing care through the intelligent clothes drying rack, which is beneficial to improving the effect and efficiency of performing clothing care on the intelligent clothes drying rack. Attached Figure Description
[0016] The above and / or additional aspects and advantages of this disclosure will become apparent and readily understood from the following description of the embodiments taken in conjunction with the accompanying drawings, in which: Figure 1 This is a schematic diagram of the framework of a garment care system provided in an embodiment of the present disclosure; Figure 2 This is a schematic diagram of the layout of a sliding component provided in an embodiment of this disclosure; Figure 3This is a schematic diagram of a track device and a robotic arm provided for an embodiment of this disclosure.
[0017] Label Explanation: 10-Main unit, 100-Clothing care system, 101-Control module, 102-Data acquisition module, 103-Functional module; 20-Drying rod assembly; 30-First module, 31-Guide rail, 32-Slider, 33-Drive component; 40-Rail device, 50-Robotic arm. Detailed Implementation
[0018] The embodiments of this disclosure are described in detail below, examples of which are illustrated in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this disclosure, and should not be construed as limiting this disclosure.
[0019] To make the objectives, technical solutions, and advantages of this disclosure clearer, the embodiments of this disclosure will be described in further detail below with reference to the accompanying drawings.
[0020] The following is combined with Figure 1 The specific structure of the garment care system 100 provided in the embodiments of this disclosure will be described.
[0021] The garment care system 100 provided in this embodiment can be configured for use on garment care devices (such as smart clothes dryers, smart wardrobes, and smart laundry rooms). Specifically, as Figure 1 As shown, the garment care system 100 includes a control module 101, a data acquisition module 102, and a function module 103. The data acquisition module 102 and the function module 103 can be communicatively connected to the control module 101, respectively.
[0022] The control module 101 may include a microcontroller (such as an MCU), a processor (for supporting image recognition, AI decision-making, etc.), a PLC (for implementing multi-interface expansion), and an interactive interface for the garment care equipment. The control module 101 can receive data collected by the data acquisition module 102, generate corresponding control commands according to preset algorithms or user instructions, and coordinate the corresponding functional modules 103 to perform collaborative operations.
[0023] The data acquisition module 102 is used to collect data related to clothing, such as multimodal data of clothing and its environment. It converts the raw data into digital signals and transmits them to the control module 101. The clothing-related data can include complementary datasets acquired through various sensors or technologies. In clothing care, it is necessary to identify information such as clothing type, material, condition, and / or structure. Acquiring data from different modalities provides more comprehensive information and an accurate data foundation for subsequent clothing care.
[0024] Optionally, the data acquisition module 102 may include at least one of a camera module and a sensor module. The camera module is used to acquire image data, and may specifically include hardware such as a CMOS camera and an edge computing chip. The acquired images can be used to identify the color, stitching, and wrinkle level of clothing. The sensor module is used to acquire sensing data and may include a near-infrared sensor unit and / or an ultrasonic sensor unit. The near-infrared sensor unit can acquire spectral reflectance data and analyze the fiber composition of clothing, such as cotton, synthetic fibers, and wool, through reflectance spectroscopy. The ultrasonic sensor unit can be used to acquire distance measurement data and / or echo intensity data. Distance measurement data can be obtained by emitting pulses and receiving reflected waves through an ultrasonic sensor, and calculating the time difference between emission and reception to determine the distance between the clothing surface and the sensor. A continuous sequence of distance values can reflect the undulations or thickness changes of the clothing surface, such as detecting abrupt changes in distance at folds or wrinkles, to help determine the softness of the material (e.g., cotton wrinkles easily, while synthetic fibers are relatively smooth). Echo intensity data reflects the different reflection intensities of ultrasonic waves by different materials, such as the amplitude or energy value of the echo signal, which can reflect the density and thickness of the material. In one example, the data acquisition module 102 can be positioned on the top or side wall of the device for easy acquisition of overall data on the clothing storage area. Optionally, the clothing-related data includes at least one of image data acquired by the camera module and sensor data acquired by the sensor module.
[0025] Optionally, the functional module 103 can be deployed based on the clothing storage area provided by the device, and can be used to receive instructions from the control module 101 (such as instructions generated based on received clothing-related data) and perform operations. The clothing storage area can be a physically existing area provided by the device. For example, if the clothing care device is a smart wardrobe, the clothing storage area can be the area formed by the storage space within the smart wardrobe; similarly, if it's a smart clothes dryer, the clothing storage area can be the area formed by the hanging and placing positions provided by the drying rod assembly 20.
[0026] Optionally, functional module 103 includes a first module 30, which may include at least one unit for performing garment care. For example, the first module 30 may include at least one of a steam unit, a drying unit, a sterilizing unit, or a wrinkle-removing unit.
[0027] The steam unit can include a steam generator and a nozzle. The steam generator produces high-temperature steam, which is then sprayed onto the clothing through the nozzle. The high-temperature steam can soften clothing fibers, restoring deformed fibers to their original shape and smoothing the clothing. The high-temperature steam also has a sterilizing and disinfecting effect, killing bacteria, mites, and other microorganisms on the clothing to keep it clean and hygienic.
[0028] The drying unit may include components such as a dryer, a fan, a temperature and humidity sensor, or a voltage regulator. The drying unit can accelerate the evaporation of moisture from clothing and shorten drying time by using heating and airflow. In one example, a temperature and humidity sensor can monitor the temperature and humidity of the clothing storage area to prevent the clothing from overheating or remaining incompletely dried.
[0029] The disinfection unit includes ultraviolet disinfection lamps (such as ultraviolet LED arrays), ozone generators, ion generators, and atomizing disinfection devices (such as those used to spray antifungal sprays or atomize disinfectant solutions). The disinfection unit can kill bacteria, viruses, and other microorganisms on clothing through ultraviolet light, ozone, negative ions, or atomization disinfection, thus achieving sterilization and disinfection.
[0030] The wrinkle removal unit includes a vibrator and / or a robotic arm 50 equipped with a patting plate. The wrinkle removal unit can remove wrinkles from clothing by vibrating and / or patting the clothing.
[0031] Optionally, the functional module 103 may include a second module, which includes adjustment components based on the first module 30, and can be used to adjust the clothing and / or the three-dimensional spatial position of the first module 30.
[0032] Optionally, the three-dimensional spatial position can be represented using absolute coordinates, relative coordinates, and homogeneous coordinates. When represented by absolute coordinates, the center position of the garment and the position of the first module 30 can be determined separately, and their relative spatial positions are determined by their absolute coordinates. When represented by relative coordinates, the center of the garment can be used as a reference point to determine the required movement path of the first module 30. When represented by homogeneous coordinates, an additional dimension, such as (x, y, z, w), can be added to the three-dimensional spatial coordinates, where w is not equal to 0. Homogeneous coordinates can represent translation, rotation, and other changes. For example,... Figure 3As shown, assuming the "steam unit" in the functional module 103 is located in the middle of the smart clothes drying rack and the clothing area 3 is located on the right side of the smart clothes drying rack, the nozzle of the steam unit can be rotated so that the nozzle sprays high-temperature steam toward the clothing area 3.
[0033] Optionally, the adjustment component may include a first component for adjusting the position of the clothing under the control of the control module 101, which can be used to divide the clothing area and achieve zoned care of the clothing. The first component includes a track device 40 connected to a hanging component for hanging clothing in the clothing storage area, which can be used to move the hung clothing. For example, as shown... Figure 3 As shown, Figure 3 The intelligent clothes drying rack shown has a drying rod assembly 20 equipped with a hanging component for hanging clothes. The track device 40 can be connected to the hanging component and laid out along the length of the drying rod assembly 20 to move the clothes along the length of the drying rod assembly 20 and adjust the position of the clothes.
[0034] Optionally, the adjustment component may include a second component for adjusting the three-dimensional spatial position of the first module 30 to perform garment care. The second component includes a sliding component and / or a rotating component arranged in the garment storage area. The sliding component is integrally connected to the first module 30 for moving the first module 30 and adjusting its position; for example, such as... Figure 2 As shown, the sliding component and the first module 30 can be internally installed in the main unit 10 of the smart clothes drying rack. The sliding component is arranged along the length direction of the main unit 10 to enable the first module 30 to move along the length direction of the main unit 10. The rotating component is at least partially connected to the first module 30 and is used to adjust the orientation of some structural components in the first module 30. For example, if the first module 30 is a steam unit, the rotating component can be used to adjust the orientation of the nozzle in the steam unit so that high-temperature steam is sprayed towards the clothes.
[0035] The garment care system 100 provided in this embodiment includes a control module 101, a data acquisition module 102, and a function module 103 communicatively connected to the control module 101. The data acquisition module 102 can collect data related to garments and transmit it to the control module 101. That is, this embodiment can provide reference data for the selection and operation of garment care by configuring the data acquisition module 102, reducing reliance on user experience. In addition, the function module 103 can be deployed based on the garment storage area provided by the device and is used to receive instructions from the control module 101 to perform operations. Specifically, it includes a first module 30 and a second module. The first module 30 includes at least one unit for garment care. That is, this embodiment can configure at least one unit on the same device for garment care, providing a hardware foundation for differentiated garment care. The second module includes an adjustment component deployed based on the first module 30, which can be used to adjust the three-dimensional spatial position of the garments and / or the first module 30, providing a hardware foundation for differentiated garment care execution, avoiding the provision of only a single garment care method for the same garment, and improving the efficiency and effectiveness of garment care.
[0036] The following is combined with Figure 2 and Figure 3 The specific structure of the intelligent clothes drying rack provided in the embodiments of this disclosure will be described.
[0037] Specifically, the intelligent clothes drying rack includes a main unit 10 and a drying rod assembly 20 connected to the main unit 10 via a lifting component. The intelligent clothes drying rack can be configured with the clothing care system 100 provided in the above embodiments. The clothing storage area can be provided by the drying rod assembly 20; for example, the position of the clothes hanging on the drying rod assembly 20 or the clothing placement formed after the drying rod is extended can both serve as clothing storage areas. The control module 101 is built into the main unit 10 and can serve as the main controller of the intelligent clothes drying rack. The data acquisition module 102 and the functional module 103 can be deployed based on the main unit 10 and / or the drying rod assembly 20.
[0038] In one example, such as Figure 2 As shown, the camera module can be placed on the side of the host 10 or the bottom of the host 10 facing the clothing storage area, so as to collect image data related to clothing over the largest possible range.
[0039] In one example, considering that the sensor module can synchronously acquire data with the camera module, and that data alignment is convenient for improving the accuracy of reference data, the sensor module and camera module can be placed in the same location. Alternatively, when the sensor module is placed separately, it can be placed on the side of the main unit 10 or on the bottom of the main unit 10 facing the clothing storage area. For example, Figure 2As shown, it can be installed on both ends of the main unit 10. In addition, considering that the drying rod assembly 20 can be controlled to rise and fall, the distance between the drying rod assembly 20 and the main unit 10 increases when the drying rod assembly 20 is lowered. To ensure the accuracy of the data collected by the sensor module, the sensor module can also be installed on the drying rod assembly 20.
[0040] Optionally, adapting to the structure of the smart clothes drying rack, the sliding assembly may further include a guide rail 31 arranged along the length of the main unit 10 and / or the drying rod assembly 20, a slider 32 for supporting the first module 30 and sliding on the guide rail 31, and a drive component 33 for providing power to the slider 32. In one example, the drive component 33 may be a component that partially protrudes from the main unit 10, and may be a pull rod, allowing the user to manually pull the drive component 33 to change the position of the first module 30 along the length of the main unit 10 via the slider 32. In another example, the drive component 33 may be a component built into the guide rail 31, with one end connected to the end of the guide rail 31 and the other end connected to the slider 32. It may be an electric component that, upon receiving instructions from the control module 101, drives the slider 32 to move along the guide rail 31, thereby causing the first module 30 to move along the length of the main unit 10.
[0041] Optionally, if the first module 30 includes multiple units, multiple independent sliding components can be arranged, so that each unit can be adjusted in position by different sliding components. Alternatively, multiple units can be arranged in series in the same set of sliding components, that is, the same guide rail 31 includes multiple sliders 32, the sliders 32 are connected in series, and each slider 32 carries one unit.
[0042] Optionally, adapting to the structure of a smart clothes drying rack, and considering the wide range of clothing storage areas provided by the smart clothes drying rack, to improve the clothing care effect and efficiency, the adjustment component includes an outlet component connected to the external environment in the steam unit, drying unit, and disinfection unit. This outlet component can be used to drive the outlet component to rotate. For example, the outlet component can be a nozzle of the steam unit. The rotating component can rotate the nozzle so that it faces the clothing, allowing the clothing to better receive high-temperature steam and reducing the loss of high-temperature steam during conduction. Correspondingly, the outlet component of the drying unit can be an air outlet, and the outlet component of the disinfection unit can be a nozzle.
[0043] Optionally, adapted to the structure of a smart clothes drying rack, the wrinkle-removing unit may include a vibration unit internally connected to and / or detachably connected to the drying rod assembly 20. The vibration unit can generate vibrations of different frequencies and amplitudes to meet garment care needs, and these vibrations are transmitted to the garments through the drying rod assembly 20 to achieve vibration-driven dehydration and wrinkle removal. The wrinkle-removing unit may also include a robotic arm 50 equipped with a patting plate, such as... Figure 3 As shown, the robotic arm 50 can be installed at the bottom of the main unit 10, with one end connected to the main unit 10 and the other end equipped with a clamping part for clamping the patting plate and sending a patting motion to the clothing to remove wrinkles. It can be understood that the robotic arm 50 can be a six-axis robotic arm 50, and can adaptively extend and retract to adapt to the position of the clothing.
[0044] Optionally, adapting to the structure of the smart clothes dryer, the adjustment component also includes a first component. The first component includes a robotic arm 50 and / or a track device 40 connected to a hanging assembly on the drying rod assembly 20 for suspending clothes, which can be used to move the hung clothes. In one example, the robotic arm 50 can be used as a clothes moving component, gripping and moving the clothes via a clamping part. In another example, the track device 40 can be a track arranged below the drying rod assembly 20 and along its length, with pulleys built into the track. The pulleys are connected to the hanging assembly and can drive the clothes to slide when force is applied. In application, the user can pull the clothes, using the pulleys and the hanging assembly to move the clothes along the length of the drying rod assembly 20. Optionally, the track device 40 can also be implemented using a component in related technologies that electrically drives the clothes to move along the length of the drying rod assembly 20.
[0045] Optionally, the bottom of the main unit 10 is provided with a space for storing the robotic arm 50. The robotic arm 50 can be stored inside the main unit 10 through this space and can move around in the clothing storage area after exiting this space when in use.
[0046] The smart clothes drying rack provided in this embodiment is equipped with the above-mentioned clothing care system 100. The corresponding clothing storage area can be provided by the drying rod assembly 20 of the smart clothes drying rack. The control module 101 is built into the host 10 of the smart clothes drying rack. The data acquisition module 102 and the function module 103 can be deployed based on the host 10 and / or the drying rod assembly 20, providing a hardware foundation for realizing differentiated clothing care through the smart clothes drying rack, which is conducive to improving the effect and efficiency of clothing care performed on the smart clothes drying rack.
[0047] The terms “first,” “second,” “third,” “fourth,” “1,” “2,” etc. (if present) in the specification, claims, and accompanying drawings of this disclosure are used to distinguish similar objects and are not necessarily used to describe a particular order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this disclosure described herein can be implemented in a sequence other than that shown in the figures or text.
[0048] The above description is only a partial embodiment of this disclosure. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principles of this disclosure, and these improvements and modifications should also be considered within the scope of protection of this disclosure.
Claims
1. A garment care system, characterized in that, include: A control module, a data acquisition module, and a functional module that are communicatively connected to the control module; The data acquisition module is used to collect data related to clothing and transmit it to the control module; The functional modules are deployed based on the clothing storage area provided by the device, and are used to receive instructions from the control module and perform operations, including: The first module includes at least one unit for performing garment care; The second module includes adjustment components deployed based on the first module, used to adjust the clothing and / or the three-dimensional spatial position of the first module.
2. The system according to claim 1, characterized in that, The data acquisition module includes at least one of a camera module and a sensor module; The camera module is used to acquire image data; The sensor module includes a near-infrared sensor unit and / or an ultrasonic sensor unit; the near-infrared sensor unit is used to acquire spectral reflectance data, and the ultrasonic sensor unit is used to acquire distance measurement data and / or echo intensity data.
3. The system according to claim 1, characterized in that, The first module includes at least one of a steam unit, a drying unit, a sterilization unit, or a wrinkle removal unit; The adjustment component includes at least one of the following: The first component includes a track device connected to a hanging assembly for hanging clothes in the clothing storage area, for moving the hung clothes; The second component includes a sliding component and / or a rotating component arranged in the clothing storage area. The sliding component is integrally connected to the first module and is used to move the first module. The rotating component is at least partially connected to the first module and is used to adjust the orientation of some structural components in the first module.
4. A smart clothes drying rack, characterized in that, The intelligent clothes drying rack includes a main unit and a drying rod assembly, and is equipped with the clothing care system as described in any one of claims 1 to 3; the clothing storage area is provided through the drying rod assembly; the control module is built into the main unit; the data acquisition module and the functional module are deployed based on the main unit and / or the drying rod assembly.
5. The intelligent clothes drying rack according to claim 4, characterized in that, The data acquisition module includes at least one of a camera module and a sensor module; The camera module is installed on the side or bottom of the host facing the clothing storage area, and is used to collect image data related to the clothing. The sensor module includes a near-infrared sensor unit and / or an ultrasonic sensor unit; the near-infrared sensor unit is used to collect spectral reflectance data, and the ultrasonic sensor unit is used to collect distance measurement data and / or echo intensity data related to clothing.
6. The intelligent clothes drying rack according to claim 4, characterized in that, The first module includes at least one of a steam unit, a drying unit, a sterilization unit, or a wrinkle removal unit; The adjustment component includes a sliding component that is integrally connected to the first module; The sliding assembly includes a guide rail arranged along the length of the host and / or the drying rod assembly, a slider for supporting the first module and sliding on the guide rail, and a drive component for providing power to the slider.
7. The intelligent clothes drying rack according to claim 4, characterized in that, The first module includes at least one of a steam unit, a drying unit, or a sterilization unit; The steam unit, the drying unit, and the disinfection unit each include an outlet component that communicates with the external environment; the regulating assembly includes a rotating assembly connected to the outlet component for driving the outlet component to rotate.
8. The intelligent clothes drying rack according to claim 6, characterized in that, The disinfection unit includes an ultraviolet disinfection lamp, an ozone generator, an ion generator, and / or a misting disinfection device. And / or, the wrinkle removal unit includes a vibrator and / or a robotic arm equipped with a clapper.
9. The intelligent clothes drying rack according to claim 7, characterized in that, The adjustment assembly further includes a first component, which includes a robotic arm and / or a track device connected to a hanging assembly on the drying rod assembly for hanging clothes, for moving the hung clothes.
10. The intelligent clothes drying rack according to claim 9, characterized in that, The track device includes a track laid below the drying rod assembly and along its length, and a pulley disposed within the track; the pulley is connected to the drying assembly to drive the clothes to slide when force is applied.