Clothing care device
The clothing care device addresses uneven ventilation by using a dual-directional air blowing system with an airflow shielding member to eliminate dead spots, achieving uniform treatment and improved user experience.
Patent Information
- Application Number
- JP2025516028
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2022-09-29
- Filing Date
- 2022-10-31
- Publication Date
- 2025-09-04
- Estimated Expiration
- 2042-10-31
AI Technical Summary
Existing clothing care devices suffer from uneven ventilation due to dead airflow spots in the care chamber, leading to suboptimal care results.
The device incorporates a first air blowing section positioned higher than a second air blowing section, allowing air to be blown in both vertical and horizontal directions, with multiple first air blowing sections arranged along the height of the care chamber, and an airflow shielding member to prevent dead airflow spots.
Ensures uniform ventilation and improved care effects, enhancing user experience by preventing localized airflow dead spots and ensuring consistent treatment across the entire chamber.
Smart Images

Figure 2025529516000001_ABST
Abstract
Description
[Technical Field]
[0001] CROSS-REFERENCE TO RELATED APPLICATIONS This application claims priority based on patent applications filed in China on September 29, 2022 (application numbers: 202211196549.3 and 202222637066.4), the entire disclosures of which are incorporated herein by reference.
[0002] Technical Field The present invention relates to the field of clothing care, and more particularly to clothing care devices. [Background technology]
[0003] As people's quality of life improves, the demand for clothing care continues to increase, and clothing care devices are increasingly widely used in daily life to perform one or more of the functions of dust removal, ironing, wrinkle removal, and sterilization of clothing.
[0004] Most clothing care devices use a heat pump system installed in the machine room to dehumidify and heat the air in the care chamber, and the treated air is blown back into the shelves of the clothing care device through an airflow passage connecting to the care chamber under the action of a blower to care for the clothes.However, the existence of dead airflow spots in local areas of the existing care chamber can reduce the ventilation effect of the care chamber, resulting in uneven care and poor care results. Summary of the Invention [Problem to be solved by the invention]
[0005] The present application aims to solve at least one of the technical problems existing in the prior art, and therefore aims to provide a clothing care device with better usage effects, which is advantageous for improving the care effect. [Means for solving the problem]
[0006] A clothing care device according to an embodiment of the present application comprises a box body and a drying passage assembly, the box body defining a care chamber having a front opening and a storage chamber, the drying passage assembly being installed in the storage chamber and defining an air flow passage, the air flow passage having an air flow supply port and an air flow return port communicating with the care chamber, the care chamber defining a first air blowing section and a second air blowing section communicating with the air flow supply port, the position of the first air blowing section being higher than the position of the second air blowing section.
[0007] The clothing care device according to the present application is equipped with a first air blowing section and a second air blowing section, with the first air blowing section positioned higher than the second air blowing section, allowing air to be blown in both vertical and horizontal directions into the care chamber, expanding the distribution area into which air can be blown and preventing blind spots in local areas of the care chamber, ensuring the ventilation effect of the care chamber, making the care effect more uniform, and improving the user experience of the clothing care device.
[0008] In some embodiments of the present application, the first air blowing section extends along the height of the treatment chamber.
[0009] In some embodiments of the present application, at least two first air blowing sections are provided, and the at least two first air blowing sections are arranged above the second air blowing section and located on the left and right sides of the second air blowing section, respectively.
[0010] In some embodiments of the present application, each of the first air blowing sections has a strip-shaped ventilation opening extending along the height of the maintenance chamber, or each of the first air blowing sections has a plurality of first ventilation openings, and in addition, a plurality of the first ventilation openings are spaced apart along the height of the maintenance chamber.
[0011] In some embodiments of the present application, the box body has an outer housing, an inner housing, and an air flow shielding member, the inner housing is installed within the outer housing, the inner housing defines the outline of the maintenance chamber, the air flow shielding member is disposed within the inner housing, and the space between the air flow shielding member and the side wall of the inner housing defines the outline of a first ventilation chamber, the first ventilation chamber connects the first air blowing section to the air flow supply port, and at least two of the first air blowing sections are arranged on the left and right sides of the air flow shielding member.
[0012] In some embodiments, the air flow shielding member has two vertical rods and an air flow shielding plate, the two vertical rods are arranged at a distance from each other in the left-right direction within the inner housing, the air flow shielding plate is connected to the two vertical rods, the air flow shielding plate and the rear wall of the inner housing define the outline of the first ventilation chamber, and the first air blowing section is installed on the vertical rods and / or the air flow shielding plate.
[0013] In some embodiments, the vertical bar and the airflow baffle are fastened together.
[0014] In some embodiments, the air flow shielding plate has a front plate and two side plates, the front plate covers the rear wall of the inner housing and is arranged across the rear wall of the inner housing, the two side plates are connected to the left and right sides of the front plate, at least two of the first air blowing sections are arranged on the two side plates, the vertical rod has a connecting portion, and the side plates have mating portions that fit into the connecting portion.
[0015] In some specific implementations, each of the side panels has a first panel portion and a second panel portion arranged along the front-to-rear direction, the first panel portion is connected between the front panel and the second panel portion, the first panel portion and the second panel portion are respectively inclined and facing in opposite directions relative to the front panel, and the first panel portion and / or the second panel portion has the first air blowing portion.
[0016] In some specific embodiments, a first hook is formed in the connecting portion, and a hole that fits the first hook is formed in the mating portion, or a second hook that fits but is not aligned with the first hook is formed in the mating portion.
[0017] In some specific implementations, the connecting portion and the vertical rod define an insertion chamber, and the side plate is inserted into the insertion chamber and fits into the connecting portion via the fitting portion.
[0018] In some specific embodiments, the vertical rod has a first support plate, a second support plate, and a connecting plate, the first support plate abuts against the side wall of the inner housing, the second support plate is disposed between the front plate and the rear wall of the inner housing and abuts against the front plate and the rear wall of the inner housing, the connecting plate is connected between the first support plate and the second support plate, the first support plate, the connecting plate, and the second support plate define an outline of an attachment recess, and the side plate is inserted into the attachment recess and fits into the connecting portion.
[0019] Specifically, the second support plate has an escape hole so that the first air blowing section communicates the treatment chamber with the first ventilation chamber.
[0020] Specifically, one side of the first support plate facing the side plate has an air guide surface, and the air guide surface extends in a direction away from the second support plate from the inside of the mounting recess to the outside of the mounting recess.
[0021] In a further embodiment of the present invention, the airflow blocking member further includes a horizontal bar, and both ends of the horizontal bar are respectively connected to the two vertical bars.
[0022] In a further embodiment of the present application, the treatment chamber has a plurality of air outlets, at least one of the air outlets connecting the treatment chamber with the air return.
[0023] In some embodiments, the at least one air blowing section is arranged along the front-to-rear direction together with the first air blowing section, and the second air blowing section is located between the at least one air blowing section and the first air blowing section.
[0024] In some embodiments, the second air blowing section is located below the airflow blocking member, and the at least one air blowing section is located at the front of the rear wall of the inner housing.
[0025] In a further embodiment of the present application, the drying passage assembly includes a heating element and a first blower, the heating element is installed within the air flow passage, an impeller of the first blower is rotatably installed at a position within the air flow passage close to the air flow supply port, and the first blower is a cross-flow blower.
[0026] In some embodiments, a compressor is further installed in the storage chamber, the heating element includes an evaporator and a condenser, and both the evaporator and the condenser are connected to the compressor. [Effects of the Invention]
[0027] Additional aspects and advantages of the present application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the present application. [Brief explanation of the drawings]
[0028] The above and / or additional aspects and advantages of the present application will become apparent and easier to understand through the following description of the embodiments in combination with the drawings. [Figure 1] 1 is a structural schematic diagram of an inner housing of a clothing care device according to one embodiment of the present application. [Figure 2] FIG. 2 is a cross-sectional view of the inner housing shown in FIG. [Figure 3] FIG. 3 is an enlarged view of part A shown in FIG. 2. [Figure 4] 1 is a structural exploded view of an airflow blocking member of a clothing care device according to an embodiment of the present disclosure; [Figure 5] FIG. 5 is an enlarged view of part B shown in FIG. 4. [Figure 6] 1 is a structural schematic diagram of an airflow shield of a clothing care device according to an embodiment of the present application; [Figure 7] FIG. 7 is a cross-sectional view of the airflow baffle plate shown in FIG. 6. [Figure 8] FIG. 8 is an enlarged view of part C shown in FIG. 7. [Figure 9] 10 is a structural schematic diagram of an inner housing, a drying channel assembly, a compressor, etc. of a clothing care device according to another embodiment of the present application. [Figure 10] FIG. 10 is a cross-sectional view of the coupling shown in FIG. 9. [Figure 11] FIG. 11 is an enlarged view of part D shown in FIG. [Figure 12] 11 is a schematic diagram of the fastening joint shown in FIG. 10. [Figure 13] 1 is a structural schematic diagram of a clothing care device according to an embodiment of the present application; [Figure 14] 14 is a cross-sectional view of the clothing care device shown in FIG. 13. [Figure 15] 15 is a localized enlarged view of one of the clothing care devices shown in FIG. 14. FIG. [Figure 16] 15 is another enlarged local view of the clothing care device shown in FIG. 14. [Figure 17] 1 is a cross-sectional view of a clothing care device according to an embodiment of the present disclosure. [Figure 18] 10 is an installation diagram of a second blower of a clothing care device according to an embodiment of the present disclosure. [Figure 19] 2 is a structural schematic diagram showing one view of a second blower of a clothing care device according to an embodiment of the present application; FIG. [Figure 20] 10 is a structural schematic diagram showing another view of the second blower of the clothing care device according to an embodiment of the present application. FIG. DETAILED DESCRIPTION OF THE INVENTION
[0029] The embodiments of the present application are described in detail below, and examples of the embodiments are shown in the drawings, where the same or similar reference numerals always refer to the same or similar elements, or elements having the same or similar functions. The embodiments described below with reference to the drawings are illustrative and are only used to interpret the present application, and should not be construed as limitations on the present application.
[0030] Next, a clothing care device 1 according to an embodiment of the present invention will be described with reference to FIGS.
[0031] As shown in FIGS. 1-2, 9-10 and 13-17, a clothing care device 1 according to an embodiment of the present application comprises a box 11 and a drying channel assembly 40.
[0032] The interior of the box 11 defines a maintenance chamber 105 and a storage chamber 106, the maintenance chamber 105 having a front opening, a drying path assembly 40 installed in the storage chamber and the drying path assembly 40 defining an air flow path 401, the air flow path 401 having an air flow supply port 4012 and an air flow return port 4011, both of which communicate with the maintenance chamber 105.
[0033] Therein, the maintenance chamber 105 has a first air blowing section 1145 and a second air blowing section 102, and both the first air blowing section 1145 and the second air blowing section 102 communicate with the air flow supply port 4012. In other words, the first air blowing section 1145 communicates the air flow supply port 4012 with the air flow path 401, and the second air blowing section 102 communicates the air flow supply port 4012 with the air flow path 401, and the position of the first air blowing section 1145 is higher than the position of the second air blowing section 102.
[0034] When the clothing care device 1 is operating, the air in the air flow path 401 may be blown out of the air flow path 401 through the air flow supply port 4012, or into the care chamber 105 through the first air blowing section 1145 and the second air blowing section 102, thereby caring for the clothing, and the air in the care chamber 105 may also be blown into the air flow path 401 through the air flow return port 4011. In this way, the air circulates and travels back and forth.
[0035] In the garment care device 1 according to the embodiment of the present application, the first air blowing section 1145 and the second air blowing section 102 are installed, and the first air blowing section 1145 is positioned higher than the second air blowing section 102, allowing air to be blown in both vertical and horizontal directions within the care chamber, expanding the distribution area into which air can be blown. This also prevents the existence of dead airflow spots in localized areas of the care chamber 105, ensuring effective ventilation within the care chamber 105 and more uniform care results, improving the user experience of the garment care device 1.
[0036] As shown in FIG. 9, in some implementations of the present application, the first air blowing section 1145 extends along the height of the care chamber 105, thereby forming an airflow that is distributed along the height of the care chamber 105, thereby further increasing the distribution area of the first air blowing section 1145, making the care effect more uniform, and improving the user experience of the clothing care device 1.
[0037] 9-10, in some embodiments of the present application, at least two first air blowing sections 1145 are provided, and the at least two first air blowing sections 1145 are disposed above the second air blowing section 102, and the at least two first air blowing sections 1145 are disposed on the left and right sides of the second air blowing section 102, respectively. This allows air to be blown in from the left and right sides of the maintenance chamber 105, or from the bottom of the maintenance chamber 105.
[0038] In some embodiments of the present application, each first air blowing section 1145 has one strip of ventilation opening, and the strip of ventilation opening extends along the height direction of the treatment chamber 105.
[0039] Specifically, when the two strip-shaped ventilation openings are located above the second air blowing section 102 and on the left and right sides of the second air blowing section 102, the garment care device 1 forms air curtains extending vertically on the left and right sides of the care chamber 105 when in operation, thereby increasing not only the ventilation volume per unit time but also the ventilation strength. This ensures a more reliable ventilation effect in the care chamber 105, a more uniform care effect, and an improved user experience of the garment care device 1.
[0040] As shown in Figures 2-3, in some other embodiments of the present application, each first air blowing section 1145 has a plurality of first ventilation ports 11451, and the plurality of first ventilation ports 11451 are spaced apart along the height direction of the treatment chamber 105.
[0041] Therefore, by installing the first air blowing section 1145 with multiple first ventilation ports 11451, not only can the ventilation volume per unit time be increased, but the structural shape and size of the multiple first ventilation ports 11451 can be individually designed according to demand, which helps to meet customized design and ventilation requirements.
[0042] For example, the first ventilation openings 11451 may be designed as round holes, square holes or rectangular holes, or the arrangement density of the first ventilation openings 11451 may be set according to the height position, thereby meeting the ventilation requirements.
[0043] As shown in Figures 9-10 and 13-17, in some embodiments of the present application, the box 11 comprises an outer housing 111, an inner housing 112, and an air flow shielding member 113, the inner housing 112 is installed within the outer housing 111, the inner housing 112 defines the outline of the maintenance chamber 105, the air flow shielding member 113 is arranged within the inner housing 112, and the space between the air flow shielding member 113 and the side wall of the inner housing 112 defines the outline of a first ventilation chamber 11301, the first ventilation chamber 11301 connects the first air blowing section 1145 to the air flow supply port 4012, and at least two first air blowing sections 1145 are arranged on the left and right sides of the air flow shielding member 113, and each first air blowing section 1145 connects the first ventilation chamber 11301 to the maintenance chamber 105.
[0044] Specifically, when the garment care device 1 is operating, air within the airflow passage 401 is blown out of the airflow passage 401 through the airflow supply port 4012 under the driving force of the power member. Part of the air enters the first ventilation chamber 11301 and may be blown into the care chamber 105 through the first air blowing sections 1145 on the left and right sides of the airflow shielding member 113. Another part of the air passes directly through the second air blowing section 102 and is blown into the care chamber 105. In addition, the first air blowing section 1145 is located above the second air blowing section 102, allowing air to be blown in the vertical and horizontal directions of the care chamber 105. This prevents dead airflow spots in localized areas of the care chamber 105, ensures proper ventilation of the care chamber 105, provides a more uniform care effect, and improves the user experience of the garment care device 1.
[0045] Therefore, by installing the air flow shielding member 113 on the rear wall of the inner housing 112 and installing the first air blowing section 1145 on the left and right sides of the air flow shielding member 113, the outline of the first ventilation chamber 11301 can be defined using such a simple structure, and by using the first air blowing section 1145 to connect the first ventilation chamber 11301 to the maintenance chamber 105, air can be blown out on the left and right sides of the air flow shielding member 113.
[0046] For example, when the above structure is used in combination with an electric heating element or a heat pump system, it is possible to dehumidify and heat the air entering the airflow passage 401, thereby ensuring uniformity in the drying effect on the clothes. When the above structure is used in combination with a filtration device, a sterilizer, a steam generator 60, etc., it is possible to ensure uniformity in the dust removal, ironing, wrinkle removal, and sterilization effects on the clothes.
[0047] As shown in Figure 2-5, in some embodiments, the air flow shielding member 113 has two vertical bars 1131 and an air flow shielding plate 1133, the two vertical bars 1131 are arranged at intervals in the left-right direction within the inner housing 112, the air flow shielding plate 1133 is connected to the two vertical bars 1131, and the space between the air flow shielding plate 1133 and the rear wall of the inner housing 112 defines the outline of a first ventilation chamber 11301.
[0048] Therein, two first air blowing sections 1145 are arranged on only two vertical bars 1131. For example, in an embodiment in which the first air blowing section 1145 has a plurality of first vent holes 11451, the plurality of first vent holes 11451 on each vertical bar 1131 are arranged at intervals along the length and / or width of the vertical bar 1131.
[0049] Of course, it is also possible that the two first air blowing sections 1145 are arranged only on the left and right sides of the two vertical bars 1131, or that the two first air blowing sections 1145 are arranged on the vertical bar 1131 and the air flow blocking plate 1133. In an embodiment in which the first air blowing section 1145 has a plurality of first ventilation holes 11451, the vertical bar 1131 and the air flow blocking plate 1133 define the outline of the plurality of first ventilation holes 11451.
[0050] Therefore, since the air flow shielding member 113 has two vertical bars 1131 and an air flow shielding plate 1133, the outline of the first ventilation chamber 11301 can be defined using such a simple structure, and by using the first air blowing section 1145 to connect the first ventilation chamber 11301 to the care chamber 105, the air in the care chamber 105 circulates under the drive of the power member, improving the usability of the clothing care device 1.
[0051] In some embodiments, the vertical rod 1131 and the airflow shield plate 1133 are connected by fastening, which makes the structure simple, the assembly and disassembly convenient, and the connection process simple and reliable.
[0052] As shown in Figures 6-8, in some implementations, the air flow shielding plate 1133 comprises a front plate 11331 and two side plates 11332, the front plate 11331 covers the rear wall of the inner housing 112 and is positioned across the rear wall of the inner housing 112, the two side plates 11332 are connected to the left and right sides of the front plate 11331, and at least two first air blowing sections 1145 are arranged on the two side plates 11332.
[0053] For example, in an embodiment in which the first air blowing section 1145 has a plurality of first ventilation ports 11451, the plurality of first ventilation ports 11451 are installed on each side panel 11332, and the plurality of first ventilation ports 11451 on each side panel 11332 are spaced apart along the length and / or width of the side panel 11332.
[0054] Therefore, the air flow shielding plate 1133 has a front panel 11331 and two side panels 11332, and can provide an installation position for the first air blowing section 1145 without affecting the formation of the first ventilation chamber 11301, so that air can be blown out from the left and right sides of the air flow shielding plate 1133, preventing the existence of dead air spots in local areas of the care chamber 105, ensuring the ventilation effect of the care chamber 105, making the care effect more uniform, and improving the user experience of the clothing care device 1.
[0055] As shown in Figure 8, in some embodiments, each side panel 11332 has a first panel portion 11333 and a second panel portion 11334, and the longitudinal direction of the first panel portion 11333 and the longitudinal direction of the second panel portion 11334 both extend along the longitudinal direction of the front panel 11331, and the first panel portion 11333 is connected between the side of the front panel 11331 and the second panel portion 11334.
[0056] In it, the first plate portion 11333 and the second plate portion 11334 are each arranged at an incline relative to the front plate 11331, and in addition, the inclination directions of the first plate portion 11333 and the second plate portion 11334 relative to the front plate 11331 are opposite, and the first air blowing portion 1145 is arranged on at least one of the first plate portion 11333 and the second plate portion 11334.
[0057] In some specific embodiments, the first air blowing section 1145 is installed on either the first plate section 11333 or the second plate section 11334. In embodiments in which the first air blowing section 1145 has a plurality of first ventilation holes 11451, the first plate section 11333 has a plurality of first ventilation holes 11451 spaced apart along its length, and the second plate section 11334 has a plurality of first ventilation holes 11451 spaced apart along its length.
[0058] Therefore, by installing the side panel 11332 in the above structure, the number of first ventilation holes 11451 per unit area is increased, which not only further increases the ventilation volume but also allows the user to grip it, making assembly and disassembly easier.
[0059] 3 and 5, in some embodiments, the vertical rods 1131 have connecting portions, and the side plates 11332 have mating portions that fit into the connecting portions, thereby connecting the two vertical rods 1131 to the airflow shielding plates 1133. In this case, each vertical rod 1131 is connected to the inner housing 112 via multiple fastening members, thereby ensuring the reliability of the connection between the vertical rods 1131 and the inner housing 112 and ultimately ensuring that the airflow shielding plates 1133 are stably fixed within the inner housing 112.
[0060] In some embodiments, a first fastening hook 11316 is formed in the connecting portion, and a fastening hole 11336 that fits the first fastening hook 11316 is formed in the mating portion. Specifically, a plurality of first fastening hooks 11316 and a plurality of fastening holes 11336 are provided, and the plurality of first fastening hooks 11316 and the plurality of fastening holes 11336 are fastened to each other in a one-to-one relationship, thereby further ensuring the reliability of the connection between the side plate 11332 and the air flow shielding plate 1133.
[0061] In some other embodiments, a first hook 11316 is formed at the connecting portion and a second hook that is misaligned with but mated with the first hook 11316 is formed at the mating portion.
[0062] Specifically, multiple first fastening hooks 1136 and multiple second fastening hooks are provided, and the multiple first fastening hooks 11316 and the multiple second fastening hooks are fastened to each other without being aligned one-to-one, thereby further ensuring the reliability of the connection between the side plate 11332 and the air flow shielding plate 1133.
[0063] In some embodiments, the connection portion and the vertical rod 1131 define an insertion groove 11317, and a side plate 11332 is inserted into the insertion groove 11317 and fits onto the connection portion via the fitting.
[0064] In other words, when the mating portion on the side plate 11332 is fitted to the connection portion, the side plate 11332 must first be inserted between the connection portion and the vertical rod 1131 to restrict the position of the side plate 11332, and then the mating portion is fitted to the connection portion, so that the vertical rod 1131 provides a double position restriction to the side plate 11332, further ensuring the reliability of the connection between the side plate 11332 and the vertical rod 1131.
[0065] As shown in Figures 3 and 5, in some embodiments, the vertical rod 113 has a first support plate 11311, a second support plate 11313, and a connecting plate 11315, the first support plate 11311 abuts against the side wall of the inner housing 112, the second support plate 11313 is disposed between the front plate 11331 and the rear wall of the inner housing 112 and abuts against the front plate 11331 and the rear wall of the inner housing 112, the connecting plate 11315 is connected between the first support plate 11311 and the second support plate 11313, the first support plate 11311 and the connecting plate 11315, and the second support plate 11313 define an attachment recess, and the side plate 11332 is inserted into the attachment recess and fits into the connecting portion 11332.
[0066] Specifically, the connection portion can be installed on one side of the bottom wall of the connection plate 11315 facing away from the inner housing 112, there is a gap between the connection portion and both the first support plate 11311 and the second support plate 11313, a first fastening hook 11316 is formed at the connection portion, and the hook head of the first fastening hook 11316 is installed facing the second support plate 11313, and a fastening hole 11336 provided on the side plate 11332 of the air flow shielding plate 1133 is formed in the fitting portion. By inserting the side plate 11332 of the air flow shielding plate 1133 between the first fastening hook 11316 and the second support plate 11313 and fastening it to the first fastening hook 11316, the connection reliability between the air flow shielding plate 1133 and the vertical bar 1131 is ensured.
[0067] To further ensure the connection reliability between the airflow shielding plate 1133 and the vertical rod 1131, the connecting portion and the mating portion may be provided in plurality, and the connecting portions and the mating portions may be mated to each other in a one-to-one relationship. In an embodiment in which the first fastening hook 11316 is formed in the connecting portion and the fastening hole 11336 is formed in the mating portion, the plurality of first fastening hooks 11316 are spaced apart along the length of the connecting plate 11315, and the plurality of fastening holes 11336 are spaced apart along the length of the second support plate 11313.
[0068] As shown in Figures 3 and 5, in some specific embodiments, the second support plate 11313 has an avoidance hole 11314, and the avoidance hole 11314 can avoid the position of the first air blowing section 1145, so that the treatment chamber 105 is connected to the first ventilation chamber 11301 through the first air blowing section 1145.
[0069] In an embodiment in which the first air blowing section 1145 has multiple first ventilation holes 11451, the avoidance holes 11314 on the second support plate 11313 are positioned directly opposite the first ventilation holes 11451 or are positioned offset from them, thereby avoiding the position of the first air blowing section 1145, ensuring the reliability of the connection between the vertical rod 1131 and the air flow shielding plate 1133, and enabling the first air blowing section 1145 to connect the maintenance chamber 105 to the first ventilation chamber 11301.
[0070] In some specific embodiments, one side of the first support plate 11311 facing the side plate 11332 has an air guiding surface 113212 that extends from the inside of the mounting recess to the outside of the mounting recess in a direction away from the second support plate 11313. The air guiding surface 113212 may be an inclined or curved surface.
[0071] Therefore, by providing an air guide surface 113212 on one side of the first support plate 11311 facing the side plate 11332 to achieve an air guide effect, the air blown out from the first ventilation chamber 11301 is smoothly blown into the maintenance chamber 105 through the first air blowing section 1145.
[0072] 4, in a further embodiment of the present invention, the airflow shielding member 113 further includes a horizontal bar 1132, and both ends of the horizontal bar 1132 are respectively connected to the two vertical bars 1131. By providing the horizontal bar 1132, the two vertical bars 1131 are connected together using the horizontal bar 1132, thereby ensuring the structural strength of the airflow shielding member 113.
[0073] Both ends of the horizontal bar 1132 are connected to the middle parts of the two vertical bars 1131, and here the middle parts of the vertical bars 1131 refer to the positions between the upper and lower ends of the vertical bars 1131. Of course, the connection positions between the horizontal bar 1132 and the vertical bars 1131 are not limited to the above positions.
[0074] In a further embodiment according to the present application, the treatment chamber 105 has a plurality of air outlets, at least one of which connects the treatment chamber 105 with the air return 4011 .
[0075] When the clothing care device 1 is operating, the air in the air flow path 401 may be blown out of the air flow path 401 through the air flow supply port 4012 or into the care chamber 105 through the first air blowing section 1145 and the second air blowing section 102 to care for the clothing, and the air in the care chamber 105 may be blown out of the care chamber 105 through at least one of the air blowing sections and enter the air flow path 401 through the air flow return port 4011. In this way, the air circulates and travels back and forth.
[0076] In some implementations, at least one of the air blowing sections is arranged along the front-to-back direction together with the first air blowing section 1145, and the second air blowing section 102 is located between the at least one of the air blowing sections and the first air blowing section 1145, so that the air in the care chamber 105 flows along the front-to-back direction, preventing the existence of dead airflow spots in local areas of the care chamber 105, ensuring the ventilation effect of the care chamber 105, making the care effect more uniform, and improving the user experience of the clothing care device 1.
[0077] In some embodiments, the second air inlet section 102 is installed below the air flow shielding member 113, and at least one of the air outlet sections is installed at the front of the rear wall of the inner housing 112, so that air is blown in from below the rear of the maintenance chamber 105 or blown out from below the front of the maintenance chamber 105.
[0078] In some embodiments of the present application, the drying channel assembly 40 includes a heating element, which is installed in the air flow channel 401. The heating element can be installed in the air flow channel 401 to heat the air in the air flow channel 401. When combined with the air inlet and outlet, it is possible to achieve a uniform drying effect on the clothes, and when the heating element is used in combination with the steam generator 60, it is also possible to achieve a uniform wrinkle removal effect on the clothes.
[0079] Therein, the drying passage assembly 40 further includes a first blower 43, the impeller of which is disposed within the air flow passage 401, and in addition, the impeller of the first blower 43 is installed at a position within the air flow passage 401 close to the air flow supply port 4012.
[0080] When the heating element and first fan 43 are operating, the air that has been heated in airflow path 401 flows toward airflow supply port 4012 of airflow path 401 under the action of first fan 43. Part of the air is blown into care chamber 105 through first air outlets 1145 located on the left and right sides of care chamber 105, and another part of the air is blown into care chamber 105 through second air outlet 102 located below care chamber 105 to treat the items to be treated there. In addition, because first air outlet 1145 is located above second air outlet 102, air can be blown into care chamber 105 in the vertical and horizontal directions, preventing dead airflow spots in localized areas of care chamber 105, ensuring effective ventilation in care chamber 105 and resulting in more uniform care results, improving the user experience of garment care device 1.
[0081] In some embodiments, the compressor 50 is installed in the storage chamber 106, and the heating element includes an evaporator 41 and a condenser 42, both of which are connected to the compressor 50. In other words, a heat pump system can be used to heat the air in the air flow path 401.
[0082] By adopting a heat pump system, the clothing care device 1 has advantages such as energy saving, environmental protection, high safety, low cost, and long life.
[0083] Next, one specific embodiment of the clothing care device 1 according to the present application will be described in conjunction with FIGS. 1-20.
[0084] As shown in FIGS. 1-20, the garment care device 1 includes a bin assembly 10, a drying channel assembly 40, and a steam generator 60.
[0085] The box assembly 10 comprises a box body 11 and a gate (not shown), the box body 11 defining the outline of a maintenance chamber 105 and a storage chamber 106, the maintenance chamber 105 being located above the storage chamber 106, both of which have front openings, and the gate being rotatably mounted on the box body 11 and used to simultaneously open and close the front openings of the maintenance chamber 105 and the storage chamber 106.
[0086] The box body 11 further includes two first air blowing sections 1145, a second air blowing section 102, a third air blowing section 101, two first air blowing sections 1146, a second air blowing section 104, a third air blowing section 103, an air flow passage 107, a first ventilation chamber 11301, and a second ventilation chamber 11302.
[0087] The two first air blowing sections 1145 are located on the left and right sides of the maintenance chamber 105, the second air blowing section 102 is located at the bottom of the maintenance chamber 105, the third air blowing section 101 is located at the top of the maintenance chamber 105, the two first air blowing sections 1146 are located on the left and right sides of the maintenance chamber 105 and below the first air blowing section 1145, and the second air blowing section 104 is located below the maintenance chamber 105 and in front of the second air blowing section 102. The third air blowing section 103 is located in the middle rear of the maintenance chamber 105, the first ventilation chamber 11301 is located below the second ventilation chamber 11302, the first air blowing section 1145 has a plurality of first ventilation ports 11451, each of which connects the first ventilation chamber 11301 to the maintenance chamber 105, and the first air blowing section 1146 has a plurality of second ventilation ports 11461, each of which connects the second ventilation chamber 11302 to the maintenance chamber 105.
[0088] The box 11 includes an outer housing 111 , an inner housing 112 , and an airflow blocking member 113 .
[0089] The inner housing 112 is installed inside the outer housing 111, and the inner housing 112 defines the outline of the maintenance chamber 105, and a foam material is installed between the outer housing 111 and the inner housing 112 to ensure the thermal insulation performance of the maintenance chamber 105. The third air blowing section 101 is installed on the top wall of the inner housing 112, the second air blowing section 104 is installed on the front part of the bottom wall of the inner housing 112, the third air blowing section 103 is installed on the rear wall of the inner housing 112, and the air flow passage 107 is installed on the rear part of the bottom wall of the inner housing 112.
[0090] Airflow shielding member 113 is installed inside inner housing 112, and the area between airflow shielding member 113 and the rear wall of inner housing 112 defines the outlines of a first ventilation chamber 11301 and a second ventilation chamber 11302, with first ventilation chamber 11301 being located below second ventilation chamber 11302. Two first air blowing sections 1145 are located on the left and right sides of airflow shielding member 113, respectively, and two first air blowing sections 1146 are located on the left and right sides of airflow shielding member 113, respectively, first air blowing section 1145 is located below first air blowing section 1146, and second air blowing section 1145 is located below airflow shielding member 113.
[0091] The airflow shielding member 113 comprises two vertical bars 1131, a horizontal bar 1132, and an airflow shielding plate 1133, the two vertical bars 1131 being spaced apart in the left-right direction, and both ends of the horizontal bar 1132 being connected to the middle parts of the two vertical bars 1131, respectively.
[0092] As shown in FIG. 2-5, each vertical bar 1131 includes a first support plate 11311, a second support plate 11313, and a connecting plate 11315, the connecting plate 11315 being connected between the first support plate 11311 and the second support plate 11313, and the connecting plate 11315, the first support plate 11311, and the second support plate 11313 define a mounting recess therebetween, and a first fastening hook 111316 is provided on the connecting plate 11315. The hook head of the first fastening hook 111316 is positioned facing the second support plate 11313, and the area between the first fastening hook 111316 and the second support plate 11313 defines the outline of the insertion tank, and one side of the first support plate 11311 facing the second support plate 11313 has an air guide surface 11312, which extends in a direction away from the second support plate 11313 from the inside of the mounting recess to the outside of the mounting recess.
[0093] As shown in Figure 6-8, the air flow shielding plate 1133 comprises a front plate 11331 and two side plates 11332, the front plate 11331 is connected between the two side plates 11332, each side plate 11332 comprises a first plate portion 11333 and a second plate portion 11334, the longitudinal direction of the first plate portion 11333 and the longitudinal direction of the second plate portion 11334 both extend along the longitudinal direction of the front plate 11331, the first plate portion 11333 is connected between the second plate portion 11334 and the side portion of the front plate 11331, the first plate portion 11333 and the second plate portion 11334 are both arranged at an incline relative to the front plate 11331, and then the inclination directions of the first plate portion 11333 and the second plate portion 11334 relative to the front plate 11331 are reversed. The portion of the first plate portion 11333 located at the bottom has a plurality of first ventilation holes 11451 spaced apart along its length, the portion of the first plate portion 11333 located at the top has a plurality of second ventilation holes 11461 spaced apart along its length, the portion of the second plate portion 11334 located at the bottom has a plurality of first ventilation holes 11451 spaced apart along its length, and the portion of the second plate portion 11334 located at the top has a plurality of second ventilation holes 11461 spaced apart along its length, and fastening holes 11336 are further provided on the second plate portion 11334.
[0094] When the air flow shielding member 113 is attached to the inner housing 112, the first support plate 11311 abuts against the side wall of the inner housing 112, the second support plate 11313 is positioned between the front plate 11331 and the rear wall of the inner housing 112, and then the second support plate 11313 abuts against the front plate 11331 and the rear wall of the inner housing 112, and the side plate 11332 of the air flow shielding plate 1133 is inserted into the insertion groove 11317 between the first fastening hook 11316 and the second support plate 11313, and then the fastening hole 11336 is engaged with the first fastening hook 11316, thereby ensuring the reliability of the connection between the air flow shielding plate 1133 and the vertical rod 1131. The second support plate 11313 has an avoidance hole 11314, which avoids the first ventilation port 11451 / second ventilation port 11461, thereby ensuring the reliability of the connection between the vertical rod 1131 and the air flow shielding plate 1133 and allowing the maintenance chamber 105 to communicate with the first ventilation chamber 11301 through the first ventilation port 11451, and allowing the maintenance chamber 105 to communicate with the second ventilation chamber 11302 through the second ventilation port 11452.
[0095] As shown in FIGS. 10-12, the inner housing 112 and the airflow shielding member 113 are connected to each other via a fastening joint 114 .
[0096] Specifically, as shown in FIG. 12, the fastening joint 114 comprises a first fastening member 1141, a second fastening member 1142, and a connecting member 1143, and the connecting member 1143 connects the first fastening member 1141 and the second fastening member 1142. The first fastening member 1141 is installed within the inner housing 112, and the second fastening member 1142 passes through a through hole on the inner housing 112, thereby attaching the fastening joint 114 to the inner housing 112.
[0097] When the fastening joint 114 is attached to the inner housing 112, the second fastening member 1142 passes through a through hole on the inner housing 112, and then by rotating the fastening joint 114, the second fastening member 1142 rotates through a movement angle, so that when a foam layer is formed on the outside of the inner housing 112, the second fastening member 1142 engages with the foam layer on the outside of the inner housing 112, and the second fastening member 1142 is fixed to the foam layer on the outside of the inner housing 112, thus fixing the fastening joint 114, and then the fastening joint 114 is stably attached to the inner housing 112 without coming off the inner housing 112.
[0098] The second fastening member 1142 has a plurality of fastening portions 11421 and connecting posts 11424. The cross-sectional shape of each fastening portion 11421 is the same as the shape of the through-hole, and both the fastening portion 11421 and the through-hole are non-circular. Two adjacent fastening portions 11421 are arranged along the axial direction of the connecting post 11424 and connected to each other via the connecting post 11424. Each fastening portion 11421 has a fixed post 11422 and a plurality of fixed booms 11423. The fixed post 11422 extends along the axial direction of the connecting post 11424 and is connected to the connecting post 11424. The fixed post 11422 and the connecting post 11424 are both cylindrical so that their axes overlap. The multiple fixed arms 11423 are arranged at intervals along the circumferential direction of the fixed post 11422.
[0099] The fastening portion 11337 is installed on the airflow shielding member 113 , and fastening portion 11337 fastens to the first fastening member 1141 , thereby connecting the inner housing 112 to the airflow shielding member 113 via the fastening joint portion 114 .
[0100] Furthermore, the connecting member 1143 has a positioning portion 11431 suitable for engagement with the inner housing 112, and when the fastening joint 114 is attached to the inner housing 112, the positioning portion 11431 can be used to determine the position of the fastening joint 114 relative to the inner housing 112. The connecting member 1143 and the first fastening member 1141 are connected to each other via the reinforcing bars 1144, which increases the connection strength between the connecting member 1143 and the second fastening member 1142, thereby increasing the joint strength of the fastening joint 114, and preventing the fastening joint 114 from breaking under stress when the fastening joint 114 is used to attach the inner housing 112 to a joint within the inner housing 112.
[0101] As shown in Figures 14-17, the mounting shell is installed between the outer housing 111 and the top wall of the inner housing 112, and the space between the mounting shell and the top wall of the outer housing 111 defines the outline of a mounting cavity 1120, and the second blower 20 is installed in the mounting cavity 1120, and the air inlet 201 of the second blower 20 communicates with the first air blowing section 103 via the second ventilation chamber 11302, and the air outlet 202 of the second blower 20 communicates with the third air blowing section 101 via the ventilation shell body 30.
[0102] The ventilation shell 30 defines at least one passage 301, the air outlet 202 of the second fan 20 communicates with the third air blowing section 101 through the passage 301, and a plurality of partition bars 31 are provided at the outlet of the passage 301, and the plurality of partition bars 31 are spaced apart along the length of the outlet of the passage 301 to divide the outlet of the passage 301 into a plurality of small air outlets. In this way, the effect of air dispersion is achieved, and the partition bars 31 can also serve as air guides, so that the direction of the partition bars 31 can be set according to demand, and ventilation requirements can be met.
[0103] The passage 301 includes a passage main body 3011 and a plurality of branching portions 3012. The inlet of the passage main body 3011 communicates with the air outlet 202 of the second blower 20, the outlet of the passage main body 3011 communicates with the inlets of the plurality of branching portions 3012, and a plurality of third air blowing portions 101 are provided, each communicating with the outlet of the plurality of branching portions 3012 in a one-to-one relationship. This arrangement allows the airflow to be diverted through the plurality of branching portions 3012, which helps increase the occupied area of the third air blowing portion 101. The airflow blown into the care chamber 105 through the third air blowing portion 101 can be quickly dispersed to various positions in the care chamber 105, further improving the effectiveness of the clothing care device 1. The narrow width of the branching portions 3012 along the airflow direction increases the airflow outlet speed at the outlet of each branching portion 3012.
[0104] 19-20, the second fan 20 includes an electric motor 21, two fan shells 22, and two impellers. The electric motor 21 has two electric motor shafts. The two air outlets 202 of the second fan 20 are installed on the two fan shells 22, and the outlets on the two fan shells 22 are connected to the two ventilation shells 30 in a one-to-one relationship. The rotatable impellers 23 are installed inside each fan shell 22, i.e., the two impellers 23 are arranged inside the two fan shells 22 in a one-to-one relationship and are connected to the two electric motor shafts in a one-to-one relationship. In other words, the electric motor 21 of the second fan 20 is a double-shaft electric motor, and when the electric motor 21 is operating, the two impellers 23 can be driven to rotate simultaneously, which makes control more convenient.
[0105] A plurality of first connecting holes 221 are provided on the periphery of each air outlet 202 of the second fan 20, and the plurality of first connecting holes 221 are spaced apart along the circumferential direction of the air outlet. A plurality of second connecting holes 302 are provided on the periphery of the entrance of the passage 301 of each ventilation shell 30, and the plurality of second connecting holes 302 are spaced apart along the circumferential direction of the entrance. The positions of the plurality of first connecting holes 221 and the plurality of second connecting holes 302 correspond one-to-one, and the periphery of each air outlet 202 of the second fan 20 is connected to the ventilation shell 30 via a plurality of fastening members. By inserting each fastening member into the corresponding first connecting holes 221 and second connecting holes 302, the structure is simple and assembly and disassembly are convenient.
[0106] The drying path assembly 40 is installed in the storage chamber 106, and then the drying path assembly 40 defines an air flow path 401, an air flow return port 4011 of the air flow path 401 communicates with the second air blowing section 104, and an air flow supply port 4012 of the air flow path 401 communicates with the air flow passage port 107. The drying passage assembly 40 includes a first fan 43, an evaporator 41, and a condenser 42. When the first fan 43 is driven, air in the care chamber 105 sequentially enters the air passage 401 through the second air outlet 104 and the air return port 4011 of the air passage 401, flows through the evaporator 41 and the condenser 42, and is then processed by the evaporator 41 and the condenser 42 before leaving the air passage 401 through the air supply port 4012 of the air passage 401. Part of the air enters the first ventilation chamber 11301 and enters the care chamber 105 through the first air blowing section 1145 (plurality of first ventilation ports 11451), while the other part of the air is blown into the care chamber 105 from the second air blowing section 102 to care for the clothes in the care chamber 105.
[0107] The clothing care device 1 further includes a compressor 50 connected to the evaporator 41 and the condenser 42. Specifically, a heat exchange agent flows between the compressor 50, the evaporator 41, and the condenser 42, allowing the heat exchange agent to absorb and release heat, thereby drying and heating the air in the airflow path 401. Air in the care chamber 105 enters the airflow path 401 from the inlet, is dried and heated in the airflow path 401, and is then blown into the first ventilation chamber 11301 from the outlet, and then blown from the first ventilation chamber 11301 into the care chamber 105, thereby drying the clothes in the care chamber 105.
[0108] The steam outlet of the steam generator 60 is connected to the first ventilation chamber 11301, and the steam generated by the steam generator 60 can enter the first ventilation chamber 11301 through the steam outlet and be blown from the first ventilation chamber 11301 into the care chamber 105 to care for the clothes in the care chamber 105. When caring for the clothes in the care chamber 105, the steam generated by the steam generator 60 removes wrinkles from the clothes in the care chamber 105 and also makes it convenient for the user to iron the clothes in the care chamber 105.
[0109] When the first blower 43 is operating, a large amount of air in the lower and middle sections of the maintenance chamber 105 is blown out of the maintenance chamber 105 by the second air outlet 104 under the drive of the first blower 43 and enters the air flow path 401 through the air flow return port 4011. The air in the air flow path 401 is heated and then blown out of the air flow supply port 4012 under the drive of the first blower 43. Some of the air enters the first ventilation chamber 11301 and enters the maintenance chamber 105 through the two first air blowing sections 1145 (first ventilation ports 11451) located on the left and right sides. The other part of the air is blown into the maintenance chamber 105 from the second air blowing section 102. By circulating in this manner, a large amount of air flows circulatingly between the lower and middle sections of the maintenance chamber 105 and the first ventilation chamber 11301.
[0110] When the second blower 20 is operating, a large amount of air in the upper middle part of the maintenance chamber 105 is blown out of the maintenance chamber 105 by the two first air outlets 1146 (second ventilation port 11461) located on the left and right sides and the third air outlet 103 under the drive of the second blower 20, then enters the second ventilation chamber 11302, and under the drive of the second blower 20, enters the mounting cavity 1120, and is then blown into the maintenance chamber 105 by the third air blowing section 101. By circulating in this manner, a large amount of air flows circulatingly between the upper middle part of the maintenance chamber 105 and the second ventilation chamber 11302.
[0111] Therefore, it is possible to prevent the existence of dead spots in the airflow in local areas of the care chamber 105, ensure the ventilation effect of the care chamber 105, make the care effect more uniform, and improve the user experience of the clothing care device 1.
[0112] It should be understood that the first ventilation chamber 11301 and the second ventilation chamber 11302 may be connected to each other or may be a partition, and when the first ventilation chamber 11301 is connected to the second ventilation chamber 11302, the airflow path during actual operation may be relatively complex, for example, some of the air in the first ventilation chamber 11301 may blow into the maintenance chamber 105 through the first ventilation port 11451, or other part of the air may enter the second ventilation chamber 11302.
[0113] In the description of this application, terms such as "center," "vertical," "lateral," "length," "thickness," "width," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "axial direction," "radial direction," "circumferential direction," etc., represent directions or positional relationships based on directions or positional relationships shown in the drawings, and are used merely for the convenience and simplification of the description of this application, and do not expressly or imply that the referred-to devices or elements must be located in a particular direction or must be configured or operate according to a particular direction, and it should be understood that this should not be construed as a limitation on the protection scope of the present invention.
[0114] Other structures and operations of the clothing care device 1 according to the embodiments of the present application are known to those skilled in the art and will not be described in detail here.
[0115] In the description herein, the use of terms such as "one embodiment," "some embodiments," "exemplary embodiment," "example," "specific example," or "several examples" refers to the specific features, structures, materials, or characteristics described in that embodiment or example being combined with at least one embodiment or example of the present application. In the description herein, the use of such terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0116] Although embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present application, and that the scope of the present application is limited by the claims and their equivalents. [Explanation of symbols]
[0117] 1. Clothing care device 10 box assembly 101 Third air blowing section 102 Second air blowing section 103 Third air outlet 104 Second air outlet 105 Maintenance Room 106 Storage Room 107 Airflow passage 11 Box body 111 Outer casing 112 Inner housing 1120 Mounting cavity 1121 Mounting part 113 Airflow blocking member 11301 First ventilation room 11302 Second ventilation room 1131 Vertical Bar 11311 First support plate 11312 Wind guide surface 11313 Second support plate 11314 Avoidance Hole 11315 Connection board 11316 First hook 11317 Insertion tank 1132 horizontal bar 1133 Airflow shield 11331 Front plate 11332 Side panel 11333 First plate part 11334 Second plate part 11336 Fastening hole 11337 Fastening part 114 Fastening joint 1141 First fastening member 1142 Second fastening member 11421 Fastener 11422 Fixed column 11423 Fixed Boom 11424 Connecting pillar 1143 Connecting members 11431 Positioning part 1144 Reinforcement bars 1145 First air inlet 11451 First ventilation port 1146 First air outlet 11461 Second ventilation opening 20 Second blower 201 Ventilation entrance 202 Air outlet 21 Electric motor 22 Blower shell 221 First connection hole 23 Impeller 30 Ventilation shell Aisle 301 3011 Passage main body 3012 Branch 302 Second connection hole 31 Partition bar 40 Drying passage assembly 401 Airflow Path 4011 Air flow return port (entrance) 4012 Air flow supply port (outlet) 41 Evaporator 42 Condenser 43 First blower 50 Compressor 60 Steam Generator
Claims
1. a box and a drying channel assembly; the box defines a service compartment and a storage compartment having a front opening; the drying path assembly is mounted in the containment chamber and defines an airflow path, the airflow path having an airflow supply port and an airflow return port communicating with the treatment chamber; The clothing care device is characterized in that the care chamber defines a first air blowing section and a second air blowing section communicating with the air flow supply port, and the position of the first air blowing section is higher than the position of the second air blowing section.
2. The clothing care device according to claim 1, wherein the first air blowing section extends along the height direction of the care chamber.
3. 2. The clothing care device according to claim 1, wherein at least two first air-blowing sections are provided, and the at least two first air-blowing sections are arranged above the second air-blowing section and located on the left and right sides of the second air-blowing section, respectively.
4. 2. The clothing care device of claim 1, wherein each of the first air blowing sections has a strip-shaped ventilation opening extending along the height direction of the care chamber, or each of the first air blowing sections has a plurality of first ventilation openings, and in addition, the plurality of first ventilation openings are spaced apart along the height direction of the care chamber.
5. the box body has an outer housing, an inner housing, and an airflow blocking member, the inner housing is positioned within the outer housing, the inner housing defining the treatment chamber; 2. The clothing care device of claim 1, wherein the airflow blocking member is disposed within the inner housing, a first ventilation chamber is defined between the airflow blocking member and a side wall of the inner housing, the first ventilation chamber connects the first air blowing section to the air flow supply port, and at least two first air blowing sections are arranged on the left and right sides of the airflow blocking member.
6. the airflow shielding member has two vertical bars and an airflow shielding plate, The two vertical bars are arranged in the inner housing at a distance from each other in the left-right direction, The clothing care device of claim 5, wherein the air flow blocking plate is connected to the two vertical rods, the air flow blocking plate and the rear wall of the inner housing define the outline of the first ventilation chamber, and the first air blowing section is installed on the vertical rods and / or the air flow blocking plate.
7. 7. The garment care device of claim 6, wherein the vertical rod and the airflow shield are fastened together.
8. the airflow shielding plate has a front plate and two side plates, the front panel is disposed to cover the rear wall of the inner housing and separate the rear wall of the inner housing; 7. The clothing care device according to claim 6, wherein the two side panels are connected to the left and right sides of the front panel, at least two first air blowing sections are arranged on the two side panels, the vertical rod has a connecting portion, and the side panels have a fitting portion that fits into the connecting portion.
9. Each of the side plates has a first plate portion and a second plate portion arranged along the front-rear direction, and the first plate portion is connected between the front plate and the second plate portion, The clothing care device of claim 8, characterized in that the first plate portion and the second plate portion are respectively arranged at an incline facing in opposite directions relative to the front plate, and the first plate portion and / or the second plate portion has the first air blowing portion.
10. A first hook is formed in the connecting portion, and a hole that fits the first hook is formed in the mating portion; or The clothing care device according to claim 8, wherein a second hook is formed in the mating portion to be mated with but not aligned with the first hook.
11. 9. The garment care device according to claim 8, wherein the connecting portion and the vertical rod define an insertion tub, and the side panels are inserted into the insertion tub and fit onto the connecting portion via the fitting portion.
12. the vertical rod has a first support plate, a second support plate, and a connecting plate; the first support plate abuts against a side wall of the inner housing; the second support plate is disposed between the front plate and the rear wall of the inner housing and abuts against the front plate and the rear wall of the inner housing; 9. The garment care device of claim 8, wherein the connecting plate is connected between the first support plate and the second support plate, the first support plate and the connecting plate define an attachment recess between the first support plate and the second support plate, and the side plates are inserted into the attachment recess to fit the connection portions.
13. The clothing care device according to claim 12, wherein the second support plate has an escape hole, so that the first air blowing section communicates the care chamber with the first ventilation chamber.
14. 13. The clothing care device of claim 12, wherein one side of the first support plate facing the side plate has an air guide surface, and the air guide surface extends from the inside of the mounting recess to the outside of the mounting recess in a direction away from the second support plate.
15. The clothing care device according to any one of claims 6 to 14, wherein the airflow blocking member further comprises a horizontal bar, both ends of which are connected to the two vertical bars, respectively.
16. A garment care device according to any one of claims 6 to 14, characterized in that the care chamber has a plurality of air outlets, at least one of the air outlets connecting the care chamber with the air return.
17. 17. The clothing care device according to claim 16, wherein the at least one air blowing section is arranged along the front-to-rear direction together with the first air blowing section, and the second air blowing section is located between the at least one air blowing section and the first air blowing section.
18. The clothing care device according to claim 16, wherein the second air-blowing section is located below the airflow blocking member, and the at least one air-blowing section is located at the front of the rear wall of the inner housing.
19. the drying channel assembly having a heating element and a first fan; The heating element is disposed within the airflow path; 2. The clothing care device of claim 1, wherein the impeller of the first fan is rotatably mounted in the air flow path close to the air flow supply port, and the first fan is a cross-flow fan.
20. 20. The clothing care device of claim 19, wherein a compressor is further installed in the storage chamber, the heating element includes an evaporator and a condenser, and both the evaporator and the condenser are connected to the compressor.
Citation Information
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