Intelligent drying wardrobe with filter screen convenient to disassemble and assemble
By designing a filter mesh structure that is easy to disassemble and assemble in the intelligent drying wardrobe, the problem of cumbersome installation of the filter mesh is solved, rapid disassembly and stable installation are achieved, and maintenance efficiency and drying effect are improved.
Patent Information
- Application Number
- CN202422232322.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-09-11
AI Technical Summary
The installation structure of the filter mesh in the existing smart drying wardrobe is complicated, which leads to inconvenient disassembly and replacement, affecting the user's maintenance experience and equipment efficiency.
A filter mesh structure is designed for easy disassembly and assembly. By setting a cavity and positioning member on the partition, the top plate and the positioning plate are used to achieve stable installation and rapid disassembly of the filter mesh.
The cleaning and replacement process of the filter is simplified, maintenance convenience is improved, filter life is extended, maintenance costs are reduced, drying efficiency and user experience are improved.
Smart Images

Figure CN223047769U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an intelligent drying wardrobe, in particular to an intelligent drying wardrobe which is convenient for disassembling and assembling a filter screen. The intelligent drying wardrobe includes a hot air flow generating device, and the filter screen is arranged in an air inlet grille, and its structure is convenient for disassembling and assembling the filter screen. Background Art
[0002] There are cabinets integrated with a drying function on the market. It skillfully integrates the drying function into the wardrobe design, aiming to provide a space-saving and easy-to-operate solution for users. Such wardrobes are usually equipped with a hot air flow generating device, which evenly delivers hot air to the inside of the wardrobe through built-in heating elements and fans to quickly dry clothes.
[0003] The invention patent with the application publication number of "CN109610140A" discloses a wardrobe with a drying function, including a drying box equipped with a heating wire and a blower for generating and distributing hot air to dry clothes; a filtering mechanism equipped with a sponge and an activated carbon layer for cleaning and recycling air to improve energy efficiency; and a rotating mechanism to ensure uniform heating of clothes during the drying process. In addition, the wardrobe is also equipped with an intuitive controller that allows users to easily adjust drying parameters such as temperature and wind speed.
[0004] In the design of an intelligent drying wardrobe, the hot air flow generating device is a key component. It inhales air through an air inlet and heats it to dry clothes. To ensure the cleanliness of the hot air and improve the drying efficiency, a filter screen is equipped at the air inlet to capture dust and particles.
[0005] However, in the existing design, the installation structure of the filter screen is relatively cumbersome. This not only makes the disassembly and reinstallation process of the filter screen complicated and time-consuming, but also brings inconvenience to regular cleaning and replacement when necessary. This complex installation method may trouble users during the maintenance process and affect their daily use and maintenance experience of the product. Content of the Utility Model
[0006] In view of the foregoing situation, the technical problem to be solved by the utility model is to provide an intelligent drying wardrobe that is convenient for disassembling and assembling a filter screen to facilitate cleaning or replacement of the filter screen.
[0007] The technical solution adopted by the utility model to solve the above technical problem is: an intelligent drying wardrobe that is convenient for disassembling and assembling a filter screen, including a cabinet body and a hot air flow generating device. The cabinet body includes a clothes hanging space on the upper layer and an equipment cavity on the lower layer, and the hot air flow generating device is placed in the equipment cavity; a partition is provided between the clothes hanging space and the equipment cavity;
[0008] The hot air flow generating device includes an air inlet and an air outlet;
[0009] An air flow outlet grille corresponding to the air flow outlet and an air flow inlet grille corresponding to the air flow inlet are provided on the partition board;
[0010] The air flow inlet grille includes a bottom plate with first air inlet holes at the lower layer, a filter net at the middle layer, and a top plate with second air inlet holes at the upper layer;
[0011] A concave cavity is formed above the bottom plate in the partition board, and at least one positioning member is installed on each of the two side walls of the concave cavity;
[0012] Two positioning plates are provided on the lower side of the top plate, and positioning holes are provided on the positioning plates;
[0013] The filter net is placed in the concave cavity located on the bottom plate, the top plate is placed on the upper side surface of the partition board, and the positioning plates are inserted outside the filter net. At the same time, the positioning members on the two side walls of the concave cavity are snapped into the positioning holes of the positioning plates to ensure the stable installation of the filter net.
[0014] A further preferred technical solution of the present utility model is that: a plug-in hole is provided on the side wall of the concave cavity, the positioning member includes a plate body, a plug-in column is provided on the rear side surface of the plate body, and an arched elastic member is provided on the front side of the plate body, and the arched elastic member can be snapped into the positioning hole of the positioning plate.
[0015] A further preferred technical solution of the present utility model is that: the filter net includes an outer frame and a grid inside.
[0016] A further preferred technical solution of the present utility model is that: a drying rod is provided at the upper part of the clothes hanging space for hanging clothes hangers.
[0017] A further preferred technical solution of the present utility model is that: the material of the cabinet body is stainless steel.
[0018] A further preferred technical solution of the present utility model is that: the hot air flow generating device is a heat pump.
[0019] Another theme: an intelligent drying wardrobe facilitating the disassembly and assembly of a filter net, including a cabinet body and a hot air flow generating device, the cabinet body includes a clothes hanging space at the upper layer and an equipment cavity at the lower layer, and the hot air flow generating device is placed in the equipment cavity; a partition board is provided between the clothes hanging space and the equipment cavity;
[0020] The hot air flow generating device includes an air flow inlet and an air flow outlet;
[0021] An air flow outlet grille corresponding to the air flow outlet and an air flow inlet grille corresponding to the air flow inlet are provided on the partition board;
[0022] The air inlet grille includes a bottom plate with first air inlet holes at the lower layer, a filter screen at the middle layer, and a top plate with second air inlet holes at the upper layer;
[0023] A concave cavity for accommodating the filter screen is formed above the bottom plate in the partition board, and the top plate separably covers the concave cavity;
[0024] Positioning plates are vertically arranged on both sides of the bottom surface of the top plate. When the top plate separably covers the concave cavity through a positioning component, the filter screen accommodated in the concave cavity is embedded between the two positioning plates.
[0025] A further preferred technical solution of the present utility model is that: the positioning component includes positioning members installed on both side walls of the concave cavity, and positioning holes opened on the positioning plates;
[0026] The positioning members are snapped into the positioning holes of the positioning plates to ensure the stable installation of the filter screen.
[0027] A further preferred technical solution of the present utility model is that: insertion holes are provided on the side walls of the concave cavity, the positioning member includes a plate body, a plugging post is provided on the rear side of the plate body, and an arched elastic member is provided on the front side of the plate body, and the arched elastic member can be snapped into the positioning holes of the positioning plates.
[0028] A further preferred technical solution of the present utility model is that: the filter screen includes an outer frame and an inner grid; the material of the cabinet body is stainless steel; the hot air generating device is a heat pump.
[0029] Compared with the prior art, the advantages of the present utility model are: providing a filter screen structure that is convenient for disassembly and assembly, significantly improving the maintenance convenience of the intelligent drying wardrobe, enabling users to easily clean or replace the filter screen, thereby maintaining the efficient operation of the hot air generating device and the quality of clothing drying. This design not only improves the service life of the filter screen and the drying effect, reduces the maintenance cost and equipment failure rate, but also enhances the user experience and improves the market competitiveness of the product.
[0030] In addition, the intelligent drying wardrobe provided by this technical solution optimizes the air circulation through the carefully designed air inlet grille and air outlet grille, ensures the effective circulation of hot air between the equipment cavity and the clothing hanging space, and significantly improves the drying efficiency. At the same time, the setting of the filter screen plays a key role in capturing dust and particulate matter, not only protecting the hot air generating device, but also improving the quality of the drying air and ensuring the cleanliness and hygiene of the dried clothes.
[0031] The filter screen of the wardrobe is placed in a concave cavity, and with the cooperation of the positioning parts and the positioning plate, quick and stable disassembly and assembly are achieved. This technical solution reduces the difficulty for users to clean or replace the filter screen, eliminating the need for professional tools or skills and making daily maintenance simple and fast. In addition, the ingenious design of the partition not only isolates the space but also provides additional space for the installation of the filter screen and other components, improving the space utilization rate of the wardrobe.
[0032] Generally speaking, this intelligent drying wardrobe not only uses durable stainless steel in terms of materials to ensure the corrosion resistance and heat resistance of the product, but also adopts an energy-saving and environmentally friendly heat pump system technically, reducing energy consumption and operating costs. At the same time, the intelligent control technology makes the drying process more automated, and users can set the drying temperature, humidity and time according to their needs, further improving the drying efficiency and the quality of clothing care. Brief Description of the Drawings
[0033] The following will further describe the present utility model in detail in conjunction with the drawings and preferred embodiments. However, those skilled in the art will understand that these drawings are only drawn for the purpose of explaining the preferred embodiments and should not be regarded as limiting the scope of the present utility model. In addition, unless otherwise specified, the drawings only schematically show the composition or structure of the described object and may include exaggerated displays, and the drawings are not necessarily drawn to scale.
[0034] Figure 1 It is a schematic diagram of the overall structure of the intelligent drying wardrobe;
[0035] Figure 2 It is a schematic diagram of the structure of the partition in this embodiment Figure 1 ;
[0036] Figure 3 It is a schematic diagram of the structure of the partition in this embodiment Figure 2 ;
[0037] Figure 4 It is a schematic diagram of the overall structure of the top plate in this embodiment;
[0038] Figure 5 It is a cross-sectional view of the side structure of the partition in this embodiment;
[0039] Figure 6 In this embodiment Figure 2 The enlarged view of the partial area at A;
[0040] Figure 7 In this embodiment Figure 3 The enlarged view of the partial area at B;
[0041] Figure 8 In this embodiment Figure 4 The enlarged view of the partial area at C;
[0042] Figure 9 For this embodiment Figure 5 is a partial enlarged view of the D part in the figure;
[0043] Figure 10 is a schematic view of the back of the hot air flow generating device. Specific implementation manners
[0044] The preferred embodiments of the present utility model will be described in detail below with reference to the accompanying drawings. Those skilled in the art will appreciate that these descriptions are only descriptive and exemplary, and should not be construed as limiting the protection scope of the present utility model.
[0045] It should be noted that: Similar reference numerals denote similar items in the following drawings. Therefore, once an item is defined in one drawing, it will not be further defined and explained in subsequent drawings.
[0046] As Figure 1 shown, the intelligent drying wardrobe 100 facilitating the disassembly and assembly of the filter net includes a cabinet body 10 and a hot air flow generating device 20. The cabinet body 10 includes a clothes hanging space 11 in the upper layer and an equipment chamber 12 in the lower layer, and the hot air flow generating device 20 is placed in the equipment chamber 12. The partition design of the clothes hanging space 11 in the upper layer and the equipment chamber 12 in the lower layer aims to achieve the maximum utilization of space and the effective separation of functions. The clothes hanging space 11 in the upper layer provides a spacious area for users to hang and dry the clothes to be dried, while the equipment chamber 12 in the lower layer is specifically used to accommodate the hot air flow generating device 20, ensuring the high efficiency and safety of the drying operation.
[0047] The hot air flow generating device 20 is the core component of the intelligent drying wardrobe 100. It is responsible for generating and regulating the hot air flow to achieve the rapid drying of clothes. The device 20 is ingeniously placed in the equipment chamber 12, which not only ensures the convenience of operation but also avoids direct contact, ensuring the safety of use. The design of the equipment chamber 12 takes into account the needs of maintenance and heat dissipation, providing necessary space and protection for the hot air flow generating device 20.
[0048] As Figures 2 to 5 shown, between the clothes hanging space 11 and the equipment chamber 12, there is a partition 30. It not only plays a role of physical isolation, preventing the hot air flow from directly contacting the clothes and avoiding overheating damage, but also serves as a part of the air flow channel, guiding the hot air flow to form an effective circulation inside the wardrobe. The design of the partition 30 fully considers the principles of thermodynamics and aerodynamics to optimize the distribution of the hot air flow and the drying effect of the clothes.
[0049] In addition, air inlet and outlet are specially designed on the partition 30, which are matched with the air outlet and inlet of the hot air generating device 20, ensuring the smooth flow and efficient utilization of the hot air. Through such a design, the intelligent drying wardrobe 100 not only improves the drying efficiency, but also realizes the uniform drying of clothes by precisely controlling the flow direction and distribution of the hot air, avoiding the problems of local overheating or uneven drying.
[0050] Generally speaking, the design concept of the intelligent drying wardrobe 100 is to provide a drying solution that integrates space optimization, function integration and convenient operation, aiming to provide users with a clothes drying experience that is both space-saving and efficient and convenient. Through the carefully designed cabinet structure, the layout of the hot air generating device, and the scientific configuration of the partition, the intelligent drying wardrobe 100 meets the drying requirements while ensuring the user's safety and convenience in use.
[0051] More specifically, as Figure 10 shown, the hot air generating device 20 includes an air inlet 21 and an air outlet 22; the air inlet 21 and the air outlet 22 together constitute the air circulation path of the hot air generating device 20. It should be noted that between the air inlet 21 and the air outlet 22, the hot air generating device 20 may contain components such as heating elements, fans, and thermostats inside. The heating element is responsible for heating the inhaled air to a predetermined temperature, and the fan is used to generate sufficient pressure and flow rate to transport the hot air through the air outlet 22 to the clothes hanging space 11. Preferably, a thermostat is configured to monitor and adjust the temperature of the hot air to ensure that the clothes are dried at an appropriate temperature and prevent overheating damage.
[0052] An air outlet grille 31 corresponding to the air outlet 22 and an air inlet grille 32 corresponding to the air inlet 22 are provided on the partition 30. The important role of the partition 30 is that it not only separates the clothes hanging space 11 from the equipment cavity 12, but also cleverly integrates the design of the air flow channel to optimize the flow and distribution of the hot air. The specially designed air outlet grille 31 and air inlet grille 32 on the partition correspond to the air outlet 22 and air inlet 21 of the hot air generating device 20, ensuring that air can circulate efficiently inside the wardrobe.
[0053] The air outlet grille 31 is located at the upper part of the partition 30 and corresponds to the air outlet 22 of the hot air generating device 20. The design of the air outlet grille 31 allows the heated air to flow smoothly from the equipment cavity 12 to the clothes hanging space 11, while preventing clothes or other items from accidentally falling into the equipment cavity 12. The grille 31 is usually made of metal or heat-resistant materials to withstand the continuous impact of high-temperature air flow, ensuring safety and durability during long-term use.
[0054] The air inlet grille 32 is located at the lower part of the partition 30 and corresponds to the air inlet 21 of the hot air generating device 20. The design of the air inlet grille 32 aims to guide the air in the clothing hanging space 11 back to the equipment cavity 12 for reheating and circulation. This design helps to improve the utilization efficiency of thermal energy and reduce energy waste. The grille 32 is also made of strong and durable materials to resist possible wear and the influence of high temperature.
[0055] In addition, the presence of the air outlet grille 31 and the air inlet grille 32 on the partition 30 also takes into account the principles of aerodynamics: an orderly circulating flow is formed between the equipment cavity 12 and the clothing hanging space 11, reducing turbulence and the resistance of air flow, improving the heat transfer efficiency, and ensuring the effective circulation of hot air inside the wardrobe. This technical means not only improves the drying efficiency but also helps to evenly distribute heat, avoiding local overheating or uneven drying of clothes.
[0056] The air inlet grille 32 is a key component that is responsible for guiding external air into the hot air generating device 20, including the bottom plate c1 with the first air inlet holes p1 at the lower layer, the filter net c2 at the middle layer, and the top plate c3 with the second air inlet holes p2 at the upper layer.
[0057] Among them, the bottom plate c1 is the lowermost part of the air inlet grille 32 and is designed with one or more first air inlet holes p1. The shapes and sizes of these air inlet holes p1 are carefully designed to allow air to enter smoothly while reducing the noise generated by air flow. The bottom plate c1 is usually made of strong and durable materials to withstand the wear that may occur during long-term use.
[0058] The filter net c2 is located above the bottom plate c1 and is the core part of the air inlet grille 32. The function of the filter net c2 is to capture dust, particulate matter, and other impurities in the incoming air, prevent them from entering the hot air generating device 20, thereby protecting the equipment from damage and ensuring that the clothes are not contaminated during the drying process. The filter net c2 is usually made of materials that are easy to clean and replace to facilitate user maintenance.
[0059] The top plate c3 covers above the filter net c2 and is designed with second air inlet holes p2. These air inlet holes p2 cooperate with the air inlet holes p1 on the bottom plate c1 to jointly form an efficient air guiding system. The top plate c3 not only plays a role in protecting the filter net c2 but also helps to maintain the continuity and uniformity of air flow.
[0060] It should be noted that the design of the entire air inlet grille 32 takes into account the principles of aerodynamics to optimize the efficiency and quality of air flow. By precisely calculating the sizes, shapes, and layouts of the air inlet holes p1 and p2, it is ensured that the air can flow with the least resistance and turbulence before entering the hot air generating device 20.
[0061] A concave cavity 33 for accommodating the filter net c2 is formed above the bottom plate c1 in the partition plate 30. The top plate c3 is detachably covered on the concave cavity 33, and its size and shape are precisely calculated to perfectly accommodate the filter net c2. Positioning plates c31 are vertically arranged on both sides of the bottom surface of the top plate c3. When the top plate c3 is detachably covered on the concave cavity 33 through the positioning assembly 40, the filter net c2 accommodated in the concave cavity 33 is embedded between the two positioning plates c31.
[0062] The top plate c3 can be separated from the concave cavity 33. When it is necessary to clean or replace the filter net, the user only needs to remove the top plate c3, and then can directly access the filter net without performing complex disassembly work.
[0063] Positioning plates c31 are vertically arranged on both sides of the bottom surface of the top plate c3. These positioning plates not only play a role in fixing the filter net c2, but also ensure the correct position of the filter net in the concave cavity 33. When the top plate c3 covers the concave cavity 33, both sides of the filter net c2 are embedded between the positioning plates c31, forming a stable installation structure.
[0064] In order to achieve the separable connection between the top plate c3 and the concave cavity 33, a set of positioning assembly 40 is designed, and those skilled in the art can adjust the positioning assembly 40 according to needs. The specific technical solution of this embodiment is described below:
[0065] As Figures 6 to 9 shown, the positioning assembly 40 includes positioning members c32 installed on both side walls of the concave cavity 33, and positioning holes c33 opened on the positioning plates c31. The positioning members c32 are snapped into the positioning holes c33 of the positioning plates c31 to ensure the stable installation of the filter net c2.
[0066] The positioning members c32 are installed on both side walls of the concave cavity 33, and their shapes and sizes are carefully designed to facilitate snapping into the positioning holes c33 on the positioning plates c31. The positioning members c32 may be made of elastic materials or designed into deformable structures so that they can produce certain elastic deformations when inserted into the positioning holes c33, thereby achieving a tight fit.
[0067] Preferably, the design of the positioning holes c33 may include circular, square or other shapes to meet different installation requirements.
[0068] During actual installation, through the cooperation of the positioning members c32 and the positioning holes c33, the rapid installation and disassembly of the filter net c2 are realized. The user only needs to place the filter net c2 in the concave cavity 33, and then put down the top plate c3, and the positioning members c32 will automatically snap into the positioning holes c33 to complete the fixation of the filter net. This design greatly simplifies the replacement process of the filter net and improves the maintenance efficiency.
[0069] In addition, the tight fit between the positioning member c32 and the positioning hole c33 ensures that the filter net c2 does not shift or loosen during the drying process, thus guaranteeing the stability of the filtering effect and the drying efficiency.
[0070] The filter net c2 is ingeniously placed in the specially designed concave cavity 33 on the bottom plate c1. This layout provides a dedicated space for the filter net, protecting the filter net and facilitating air flow. The top plate c3 is tightly combined with the upper side of the partition plate 30. Its design allows the top plate to be easily placed in the designated position, providing additional support and protection for the filter net c2.
[0071] The positioning plate c31 is inserted into the outside of the filter net c2 from both sides and interacts with the positioning members c32 carefully arranged on the two side walls of the concave cavity 33. The positioning members c32 accurately snap into the corresponding positioning holes c33 on the positioning plate c31. This ingenious fit not only ensures the stable installation of the filter net c2 but also provides the convenience of quick disassembly without tools.
[0072] The above technical means facilitate the necessary cleaning or replacement of the filter net c2, while ensuring the stability and durability of the filter net during the operation of the wardrobe.
[0073] In summary, the detachable filter net structure in this embodiment significantly improves the maintenance convenience of the intelligent drying wardrobe, enabling users to easily clean or replace the filter net, thereby maintaining the efficient operation of the hot air flow generating device and the quality of clothing drying. This design not only increases the service life of the filter net and the drying effect, reduces the maintenance cost and equipment failure rate, but also enhances the user experience, improves the product market competitiveness, and has a positive impact on safety and environmental protection.
[0074] More specifically, special insertion holes t are provided on the side walls of the concave cavity 33. These holes provide precise docking positions for the positioning members c32. The existence of the insertion holes t enables the positioning members c32 to be accurately installed in the predetermined positions, ensuring the stability and consistency of the entire filter net installation structure.
[0075] The positioning member c32 is composed of a plate body 01, which is designed with full consideration of the convenience and stability of installation. The rear side of the plate body 01 is provided with an insertion post 02, which is used to insert into the insertion hole t on the side wall of the concave cavity 33 to provide vertical fixation for the positioning member c32.
[0076] On the front side of the board body 01, an arched elastic member 03 is designed. This elastic member 03 not only increases the flexibility of the positioning member c32, but also enables the positioning member c32 to easily snap into the positioning hole c33 on the positioning plate c31. The design of the arched elastic member 03 allows for a certain degree of elastic deformation, which makes the installation process smoother and also provides sufficient frictional force to ensure that the filter net c2 does not loosen during use.
[0077] The positioning hole c33 on the positioning plate c31 perfectly matches the arched elastic member 03 of the positioning member c32. When the top plate c3 is placed on the upper side of the partition 30, the edge of the positioning plate c31 is aligned with the side wall of the concave cavity 33, and the arched elastic member 03 of the positioning member c32 can smoothly snap into the positioning hole c33 to complete the installation of the filter net c2.
[0078] Preferably, the filter net c2 includes an outer frame c21 and an inner mesh c22. The outer frame c21 is the support structure of the filter net c2, which provides a stable framework for the mesh c22. The outer frame c21 is usually made of strong and durable materials such as metal or plastic, which can withstand changes in high temperature and humidity, and at the same time resist corrosion and wear. The design of the outer frame c21 takes into account the cooperation with the concave cavity 33 and the top plate c3 to ensure that the filter net c2 can be firmly installed in the predetermined position.
[0079] The inner mesh c22 is the core part of the filter net c2. It is woven from fine fibers or metal wires and can effectively capture tiny particles in the air. The material and weaving method of the mesh c22 are carefully selected to achieve the best filtering effect and air permeability.
[0080] Preferably, a drying rod 13 is provided at the upper part of the clothing hanging space 11 for hanging hangers. The drying rod 13 is made of strong and durable materials to ensure stability and reliability during use. It is usually designed with a round or square cross-section that is easy to grasp for the convenience of users. The drying rod 13 can be installed at the upper part of the clothing hanging space 11 in various ways, such as through fixed clamps, screws or slots, etc., to ensure its stability during the drying process and prevent bending or falling due to the weight of the clothes.
[0081] Preferably, the material of the cabinet body 10 is stainless steel. Stainless steel can not only resist rust caused by a humid environment, but also withstand wear and impact during daily use, ensuring the long-term stability and durability of the wardrobe. In addition, the smooth surface of stainless steel is easy to clean and maintain, and stains can be removed by simply wiping to keep the wardrobe clean and hygienic.
[0082] The hot air generating device 20 is a heat pump. The hot air generating device 20 adopts heat pump technology, which is an efficient energy conversion technology that can transfer the heat in the external environment to the space that needs to be heated. Compared with traditional heating methods, the heat pump can achieve efficient heating effects with less energy consumption, significantly reducing energy consumption and operating costs.
[0083] In addition, the application of heat pump technology in the drying process not only improves energy efficiency but also reduces greenhouse gas emissions, meeting the design concept of green environmental protection. In addition, the heat pump system usually operates smoothly and with low noise, providing a more comfortable user experience. The components and working mechanism of the heat pump system are relatively simple and mature, which enables it to exhibit high reliability and stability during long-term operation. It requires less maintenance, further reducing the user's usage cost.
[0084] It should be noted that the cabinet 10 made of stainless steel material provides extremely high corrosion resistance and durability, and can maintain its performance unchanged even in humid and high-temperature environments. The heat pump technology, due to its lower operating temperature and gentle heating method, reduces the thermal stress and wear on the cabinet material, thereby extending the service life of the entire wardrobe.
[0085] In addition, the heat pump system can provide precise and gentle temperature control, which is an advantage for the stainless steel cabinet 10 because the stainless steel material can maintain stability at different temperatures and will not deform or be damaged due to temperature fluctuations.
[0086] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of the present utility model is usually placed during use. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present utility model. The terms "first" and "second" are only for the convenience of description and have no other directional meanings, and cannot be used as a limitation to the present utility model.
[0087] The intelligent drying wardrobe that facilitates the disassembly and assembly of the filter screen provided by the present utility model has been introduced. Specific examples are used in this article to elaborate on the principle and implementation manner of the present utility model. The description of the above embodiments is only used to help understand the present utility model and its core idea. It should be pointed out that for those of ordinary skill in the art in this technical field, without departing from the principle of the present utility model, several improvements and modifications can be made to the present utility model, and these improvements and modifications also fall within the protection scope of the claims of the present utility model.
Claims
1. An intelligent drying wardrobe that facilitates the disassembly and assembly of the filter, characterized by: It comprises a cabinet body and a hot air flow generating device, wherein the cabinet body comprises an upper clothing hanging space and a lower equipment cavity, and the hot air flow generating device is placed in the equipment cavity; a partition is provided between the clothing hanging space and the equipment cavity; The hot air flow generating device comprises an air flow inlet and an air flow outlet; The partition is provided with an airflow outlet fence corresponding to the airflow outlet and an airflow inlet fence corresponding to the airflow inlet; The airflow inlet fence comprises a bottom plate with a first air inlet hole at a lower layer, a filter screen at a middle layer, and a top plate with a second air inlet hole at an upper layer; A concave cavity is formed above the bottom plate in the partition, and at least one positioning member is respectively installed on two side walls of the concave cavity; Two positioning plates are provided on the lower side of the top plate, and positioning holes are provided on the positioning plates; The filter is placed in a concave cavity on the bottom plate, the top plate is placed on the upper side of the partition, and the positioning plate is inserted into the outer side of the filter. At the same time, the positioning pieces on the two side walls of the concave cavity are inserted into the positioning holes of the positioning plate to ensure the stable installation of the filter.
2. The intelligent drying wardrobe with easy filter assembly and disassembly according to claim 1 is characterized in that: The side wall of the cavity is provided with a plug hole, the positioning member includes a plate body, the rear side of the plate body is provided with a plug column, the front side of the plate body is provided with an arched elastic member, and the arched elastic member can be inserted into the positioning hole of the positioning plate.
3. The intelligent drying wardrobe that facilitates the assembly and disassembly of the filter according to claim 1 is characterized by: The filter screen comprises an outer frame and an inner grid.
4. The intelligent drying wardrobe that facilitates the assembly and disassembly of the filter according to claim 1 is characterized in that: A drying rod is arranged on the upper part of the clothing hanging space for hanging clothes hangers.
5. According to claim 1, the intelligent drying wardrobe that facilitates the assembly and disassembly of the filter screen is characterized in that: The material of the cabinet is stainless steel.
6. The intelligent drying wardrobe that facilitates the assembly and disassembly of the filter according to claim 1 is characterized in that: The hot air flow generating device is a heat pump.
7. An intelligent drying wardrobe that facilitates the removal and assembly of the filter, characterized by: It comprises a cabinet body and a hot air flow generating device, wherein the cabinet body comprises an upper clothing hanging space and a lower equipment cavity, and the hot air flow generating device is placed in the equipment cavity; a partition is provided between the clothing hanging space and the equipment cavity; The hot air flow generating device comprises an air flow inlet and an air flow outlet; The partition is provided with an airflow outlet fence corresponding to the airflow outlet and an airflow inlet fence corresponding to the airflow inlet; The airflow inlet fence comprises a bottom plate with a first air inlet hole at a lower layer, a filter screen at a middle layer, and a top plate with a second air inlet hole at an upper layer; A concave cavity for accommodating the filter screen is formed above the bottom plate in the partition, and the top plate can detachably cover the concave cavity; Positioning plates are vertically arranged on both sides of the bottom surface of the top plate. When the top plate detachably covers the concave cavity through a positioning assembly, the filter net accommodated in the concave cavity is embedded between the two positioning plates.
8. The intelligent drying wardrobe for easy assembly and disassembly of the filter net according to claim 7, characterized in that: The positioning assembly includes positioning members installed on the two side walls of the cavity, and positioning holes opened on the positioning plate; The positioning piece is inserted into the positioning hole of the positioning plate to ensure the stable installation of the filter screen.
9. The intelligent drying wardrobe for easy assembly and disassembly of the filter net according to claim 7, characterized in that: The side wall of the cavity is provided with a plug hole, the positioning plate comprises a plate body, the rear side of the plate body is provided with a plug column, the front side of the plate body is provided with an arched elastic member, and the arched elastic member can be inserted into the positioning hole of the positioning plate.
10. The intelligent drying wardrobe with easy filter assembly and disassembly according to claim 7, characterized in that: The filter screen comprises an outer frame and an inner grid; the cabinet body is made of stainless steel; and the hot air flow generating device is a heat pump.
Citation Information
Patent Citations
Wardrobe with drying function
CN109610140A