Suction ironing head and suction ironing machine

By designing a filter component in the iron to filter dust and hair, the problem of clogging of the suction component is solved, the service life of the suction component is extended, and a convenient cleaning method is provided.

CN223646822UActive Publication Date: 2025-12-09ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202520233159.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-12-09
Estimated Expiration
2035-02-13

AI Technical Summary

Technical Problem

When an iron is used to absorb clothing, it can easily attract dust and hair, causing the absorption components to become clogged and affecting its lifespan.

Method used

A suction head has been designed, comprising a panel, a housing, a suction component, and a filter component. The filter component is located at the air inlet of the suction component, filtering dust and hair, extending the life of the suction component, and is removable for cleaning.

Benefits of technology

It effectively filters dust and hair, preventing clogging of the suction components and extending their service life, and its detachable design makes it easy to clean.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a suction ironing head and a suction ironing machine, and relates to the technical field of cleaning equipment. The perm sucking head comprises a panel, a shell, a sucking assembly and a filtering assembly. And the panel is provided with an exhaust inlet. The panel is covered with the shell, the shell and the panel jointly form a containing cavity, and the air suction opening communicates with the containing cavity. The suction assembly is arranged in the containing cavity. The filtering assembly is inserted into the shell, and part of the filtering assembly is located in the containing cavity and covers the air inlet of the suction assembly so as to filter air entering the suction assembly through the air suction opening and block dust and hair outside the air inlet of the suction assembly, so that the suction assembly is prevented from being blocked, and the service life of the suction assembly is prolonged.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cleaning devices, in particular to a suction and ironing head and a suction and ironing machine. BACKGROUND

[0002] With the improvement of living standards, as a household appliance that can iron clothes, the ironing machine has become more and more popular. The ironing machine usually has an ironing surface, and the user can hold the ironing machine to make the ironing surface contact the clothes to be ironed for ironing.

[0003] In the related art, the ironing machine is usually equipped with a suction assembly. When the ironing machine is ironing clothes, the suction assembly generates suction force to suck the clothes onto the ironing surface, so that the user does not need to pull the clothes, and the ironing effect of the ironing machine is ensured.

[0004] However, in the process of suction, the ironing machine inevitably sucks dust and hair on the clothes, causing the motor of the suction assembly to be blocked. Invention content

[0005] The present application provides a suction and ironing head and a suction and ironing machine to solve the problem that the suction assembly of the ironing machine in the related art sucks dust and hair on the clothes, causing the motor of the suction assembly to be blocked.

[0006] In one aspect, the present application provides a suction and ironing head, comprising:

[0007] a panel, a suction port being arranged on the panel;

[0008] a housing, the housing being arranged on the panel and forming a containing cavity together with the panel, the suction port being in communication with the containing cavity;

[0009] a suction assembly arranged in the containing cavity;

[0010] a filter assembly arranged on the housing, part of the filter assembly being located in the containing cavity, and the filter assembly being arranged at an air inlet of the suction assembly to filter air entering the suction assembly through the suction port.

[0011] In this way, the filter assembly filters the air entering the suction assembly through the suction port, blocks the dust and hair outside the air inlet of the suction assembly, avoids blocking the suction assembly, and prolongs the service life of the suction assembly. In addition, the filter assembly is detachably arranged on the housing, and the user can detach the filter assembly from the housing after a period of use to clean the dust and hair on the filter assembly, so as to ensure smooth flow of air.

[0012] In one possible implementation, the suction and ironing head provided by the present application further comprises a boiler, the boiler being located in the containing cavity, and the boiler having a steam outlet;

[0013] a steam port being arranged on the panel, and the steam outlet being in communication with the steam port.

[0014] In this way, water is heated to boiling point by a boiler to generate high-temperature steam. The high-temperature steam can be discharged through the steam outlet and steam port in sequence, thereby using the high-temperature steam to iron out the wrinkles on the clothes.

[0015] In one possible implementation, the suction head provided in this application further includes a heat insulation cover, which is located inside the receiving cavity and is mounted on the boiler. The steam outlet is located within the area covered by the heat insulation cover, and the air intake is located outside the area covered by the heat insulation cover.

[0016] In this way, the heat generated by the boiler and the panel is blocked by the heat insulation cover, preventing high temperature from affecting the operation of other components such as the suction components and water pump.

[0017] In one possible implementation, the suction head, heat insulation cover, and housing provided in this application together form an air guide channel, which is connected to the air intake and air inlet respectively.

[0018] In this way, when the suction assembly is working, air can enter the suction assembly in sequence through the air inlet, the air guide channel and the air inlet. Furthermore, the air guide channel is located outside the heat insulation cover, which can prevent the air from being heated by the heat generated by the boiler, so as to avoid the hot air affecting the operation of the suction assembly, water pump and other components.

[0019] In one possible implementation, the suction head provided in this application includes a filtering component comprising:

[0020] Support components are inserted into the housing;

[0021] The filter element is mounted on the support and is located inside the receiving cavity and covers the air inlet.

[0022] In this way, the filter element can be placed in the receiving cavity by the support and installed with the filter element aligned with the air inlet to filter the air entering the suction assembly through the air inlet.

[0023] In one possible implementation, the suction head provided in this application has a mounting hole on the support and a filter disposed within the mounting hole.

[0024] In this way, the mounting holes provide a stable mounting position for the filter element, allowing it to be firmly fixed to the support and preventing it from shifting or falling off during operation.

[0025] In one possible implementation, the suction head provided in this application has at least one first snap-fit ​​portion on the support member and at least one second snap-fit ​​portion on the suction assembly that matches the first snap-fit ​​portion, with the first snap-fit ​​portion and the second snap-fit ​​portion engaging correspondingly.

[0026] Thus, after the support is inserted into the housing, the first snap-fit ​​part on the support can be snapped into the second snap-fit ​​part on the suction assembly, thus restricting the support to the housing and preventing the support from falling off or dropping, which would affect the filtration effect of the filter.

[0027] In one possible implementation, the suction head provided in this application has an inlet and outlet hole on the housing that communicates with the receiving cavity, and the support member is inserted into the housing through the inlet and outlet hole;

[0028] The filter assembly also includes a seal, which is mounted on the support and abuts against the inner wall of the inlet / outlet port.

[0029] In this way, the support can be inserted into the housing through the inlet and outlet holes, and the sealing element is used to seal the gap between the support and the inner wall of the inlet and outlet holes, so as to prevent air and dust outside the cavity from being sucked into the air inlet of the suction assembly and causing the suction assembly to become blocked.

[0030] In one possible implementation, the suction head provided in this application has a cover on the support member, the cover being used to cover the inlet and outlet holes, and the cover having a smooth transition with the housing.

[0031] This makes the contact surfaces of the two parts smoother, reduces friction during insertion and removal of the component support, prevents jamming of the support, and reduces wear.

[0032] In one possible implementation, the suction head provided in this application includes a suction component and a guide component. The guide component is disposed on the air inlet of the suction component, the air inlet is located on the guide component, and the air inlet is connected to the air outlet.

[0033] In this way, the suction component generates negative pressure to draw in air. The guide component can guide the airflow entering the suction component, making it more uniform and preventing uneven flow or eddies when the airflow enters the suction component.

[0034] On the other hand, the steaming device provided in this application includes a steaming device body and a steaming head as described above disposed on the steaming device body.

[0035] In this way, the steamer equipped with the above-mentioned steaming head can filter the air entering the suction component through the air inlet through the filter component, blocking dust and hair outside the air inlet of the suction component, avoiding clogging of the suction component, and extending the service life of the suction component.

[0036] In addition to the technical problems solved by the embodiments of this application, the technical features constituting the technical solutions, and the beneficial effects brought about by the technical features of these technical solutions described above, other technical problems that can be solved by the steam iron provided by this application, other technical features included in the technical solutions, and the beneficial effects brought about by these technical features will be further explained in detail in the specific embodiments. Attached Figure Description

[0037] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0038] Figure 1 This is a schematic diagram of the structure of the steam iron provided in the embodiments of this application;

[0039] Figure 2 for Figure 1 A breakdown diagram of the medium-sized steamer head;

[0040] Figure 3 for Figure 1 A schematic diagram of the filter assembly in the suction head of the steamer;

[0041] Figure 4 for Figure 1 Sectional view of AA;

[0042] Figure 5 for Figure 4 A magnified view of the suction head in the image;

[0043] Figure 6 for Figure 1 A schematic diagram of airflow during operation of the suction component of the medium-sized steamer head;

[0044] Figure 7 for Figure 2 A sectional view of BB in the diagram;

[0045] Figure 8 for Figure 2 A sectional view of CC in the diagram;

[0046] Figure 9 for Figure 1 A schematic diagram of the suction component.

[0047] Explanation of reference numerals in the attached figures:

[0048] 10. Steamer head;

[0049] 100. Panel; 110. Air intake; 120. Steam outlet;

[0050] 200, Housing; 210, Receiving cavity; 220, Heat insulation cover; 230, Air guide channel; 240, Inlet / outlet; 250, Sealing and heat insulation component; 260, Ventilation hole;

[0051] 300. Suction assembly; 310. Suction component; 320. Air guide component; 321. Air inlet; 330. Second snap-fit ​​part;

[0052] 400, Filter assembly; 410, Support; 411, Mounting hole; 412, First snap-fit ​​part; 413, Cover part; 420, Filter element; 430, Seal; 440, Handle;

[0053] 500. Boiler;

[0054] 20. Steam iron body;

[0055] 201. Water tank; 202. Water pump. Detailed Implementation

[0056] To make the objectives, technical solutions, and advantages of this application clearer, the technical solutions in the embodiments of this application will be described in more detail below with reference to the accompanying drawings. In the drawings, the same or similar reference numerals denote the same or similar components or components having the same or similar functions throughout. The described embodiments are some, but not all, embodiments of this application. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this application, and should not be construed as limiting this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application. The embodiments of this application will be described in detail below with reference to the accompanying drawings.

[0057] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, an indirect connection through an intermediate medium, or the internal communication between two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0058] In the description of this application, it should be understood that the terms "upper", "lower", "front", "back", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.

[0059] The terms "first," "second," and "third" (if any) in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a particular order or sequence. It should be understood that such data can be interchanged where appropriate so that the implementations of this application described herein can be implemented, for example, in sequences other than those illustrated or described herein.

[0060] Furthermore, the terms “comprising” and “having”, and any variations thereof, are intended to cover non-exclusive inclusion, such that a process, method, system, product, or display that includes a series of steps or units is not necessarily limited to those steps or units that are explicitly listed, but may include other steps or units that are not explicitly listed or that are inherent to such process, method, product, or display.

[0061] In related technologies, ironing machines are usually equipped with suction components. When the ironing machine is ironing clothes, the suction components generate suction to stick the clothes to the ironing surface, so that the user does not need to pull the clothes by hand, making the ironing operation convenient.

[0062] However, during the adsorption process, irons inevitably adsorb dust and hair from clothing, causing the motor of the adsorption component to become clogged.

[0063] For example, an air intake is provided on the ironing surface of the ironing machine, and an adsorption component is connected to the air intake. The adsorption component generates negative pressure, creating a local low-pressure area at the air intake on the ironing surface, thereby adsorbing the clothing onto the ironing surface. However, dust and hair on the clothing can enter the ironing machine through the air intake, causing blockage of the adsorption component.

[0064] In view of the above problems, this application provides a steaming head and a steaming machine. The steaming head includes a panel, a housing, a suction assembly, and a filter assembly. An air intake is provided on the panel. The housing covers the panel and, together with the panel, forms a receiving cavity, with the air intake communicating with the receiving cavity. The suction assembly is disposed within the receiving cavity. The filter assembly is inserted into the housing, with a portion of the filter assembly located within the receiving cavity and covering the air inlet of the suction assembly, to filter the air entering the suction assembly through the air intake, blocking dust and hair outside the air inlet of the suction assembly, preventing clogging, and extending the service life of the suction assembly.

[0065] To facilitate understanding, the application scenarios of the embodiments of this application will be described first.

[0066] The steaming head and steamer provided in this application can be applied to clothing manufacturing, storage, sales, or laundry services. The clothing to be steamed by the steamer should be interpreted broadly, including but not limited to clothes, trousers, and other wearable items, as well as fabrics such as curtains, sheets, and duvet covers. This application does not specifically limit this, and will be collectively referred to as "clothing" below without further specific examples.

[0067] The following describes in detail, with reference to the accompanying drawings, the specific implementation methods of the suction head and suction machine provided in this application.

[0068] Reference Figures 1 to 8 As shown, the suction head 10 provided in this application includes a panel 100, a housing 200, a suction assembly 300, and a filter assembly 400.

[0069] A suction port 110 is provided on the panel 100. The housing 200 covers the panel 100 and together with the panel 100 forms a receiving cavity 210, and the suction port 110 communicates with the receiving cavity 210. The suction assembly 300 is disposed in the receiving cavity 210.

[0070] The filter assembly 400 is inserted into the housing 200. Part of the filter assembly 400 is located in the receiving cavity 210 and covers the air inlet 321 of the suction assembly 300 to filter the air entering the suction assembly 300 through the air inlet 110.

[0071] It is understood that the steaming head 10 provided in this application can be used in a steam iron. The user can hold the steam iron and make the panel 100 of the steaming head 10 fit tightly against the clothing so that the clothing can be ironed by heating the panel 100. The air inlet 110 on the panel 100 is connected to the air inlet 321 of the suction assembly 300. During the ironing process, the suction assembly 300 generates negative pressure and draws air through the air inlet 110 on the panel 100 so that the clothing adheres to the panel 100, thereby ensuring the ironing effect.

[0072] Among them, part of the filter component 400 is located inside the receiving cavity 210 and covers the air inlet 321 of the suction component 300. This can filter the air entering the suction component 300 through the air inlet 110, and block dust and hair outside the air inlet 321 of the suction component 300 to avoid clogging the suction component 300 and extend the service life of the suction component 300.

[0073] Furthermore, the filter assembly 400 is detachably inserted into the housing 200. After a period of use, the user can remove the filter assembly 400 from the housing 200 and clean the dust and hair on the filter assembly 400 to ensure smooth airflow.

[0074] For example, the suction component 300 can be a conventional electric fan in the related art, and the embodiments of this application do not impose specific limitations on it.

[0075] For example, panel 100 can be a cast aluminum base plate, or a base plate made of other thermally conductive metals or alloys. This application does not specifically limit the material of panel 100. Heating elements can be provided on panel 100. There can be one or more heating elements. When multiple heating elements are provided, the heating elements can be energized and heated by connecting them in series or in parallel.

[0076] Reference Figure 4 , Figure 5 and Figure 7 As shown, in some embodiments, the suction head 10 provided in this application also includes a boiler 500, which is located in the receiving cavity 210 and has a steam outlet.

[0077] A steam port 120 is provided on the panel 100, and the steam outlet is connected to the steam port 120.

[0078] Understandably, the steaming machine can be equipped with a water tank 201 and a water pump 202. The water pump 202 delivers water from the water tank 201 to the boiler 500, which can heat the water to the boiling point to generate high-temperature steam.

[0079] In this way, the high-temperature steam can be discharged sequentially through the steam outlet and the steam port 120, thereby using the high-temperature steam to iron out the wrinkles on the clothes.

[0080] Reference Figure 4 , Figure 5 and Figure 7 As shown, in some embodiments, the heat-insulating head 10 provided in this application also includes a heat insulation cover 220, which is located inside the receiving cavity 210 and is covered on the boiler 500. The steam port 120 is located in the area covered by the heat insulation cover 220, and the air intake port 110 is located outside the area covered by the heat insulation cover 220.

[0081] In this way, the heat generated by the boiler 500 and the panel 100 is blocked by the heat insulation cover 220, so as to avoid the high temperature affecting the operation of other components such as the suction component 300 and the water pump 202.

[0082] The steam vent 120 is located within the area covered by the heat insulation cover 220, while the air intake vent 110 is located outside the area covered by the heat insulation cover 220. This avoids interference between the processes of the steam vent 120 spraying high-temperature steam and the air intake vent 110 drawing in air, which would affect the ironing effect.

[0083] Reference Figure 1 As shown, there can be multiple air intakes 110, which are arranged sequentially at intervals and together form a ring, thus covering most of the surface of the clothing to improve the adsorption effect on the clothing.

[0084] Specifically, refer to Figure 5 and Figure 7 As shown, a sealing heat insulation component 250 can be provided between the heat insulation cover 220 and the boiler 500. The sealing heat insulation component 250 can prevent the heat generated by the boiler 500 from leaking.

[0085] For example, the sealing and heat insulation component 250 can be a silicone component, a rubber component, or other sealing material with a certain degree of elasticity. This application embodiment does not specifically limit this.

[0086] Reference Figure 5 , Figure 6 and Figure 7 As shown, in some embodiments, the heat shield 220 and the housing 200 together form an air guide channel 230, which is connected to the air intake 110 and the air inlet 321 respectively.

[0087] In this way, when the suction assembly 300 is working, air can enter the suction assembly 300 in sequence through the air intake 110, the air guide channel 230 and the air inlet 321. Furthermore, the air guide channel 230 is located outside the heat insulation cover 220, which can prevent the air from being heated by the heat generated by the boiler 500, so as to avoid the hot air affecting the operation of the suction assembly 300, the water pump 202 and other components.

[0088] The heat insulation cover 220 and the shell 200 together form an air guide channel 230, which is simple in structure and can save the need for complex air duct design.

[0089] Reference Figure 2 and Figure 3 As shown, in some embodiments, the filter assembly 400 includes a support 410 and a filter 420.

[0090] The support member 410 is inserted into the housing 200, and the filter member 420 is disposed on the support member 410. The filter member 420 is located inside the receiving cavity 210 and covers the air inlet 321.

[0091] In this way, the filter element 420 can be placed in the receiving cavity 210 by the support member 410 and the filter element 420 can be installed aligned with the air inlet 321 to filter the air entering the suction assembly 300 through the air intake 110.

[0092] Among them, reference Figure 3 and Figure 8 As shown, a handle 440 may be provided on the support member 410 to facilitate the user to insert or remove the support member 410.

[0093] For example, the filter element 420 can be a metal filter (e.g., stainless steel mesh, copper wire mesh, etc.), a polymer plastic mesh (e.g., polyvinyl chloride mesh, polypropylene mesh, etc.), or a mesh of other materials. This application embodiment does not impose specific limitations in this regard.

[0094] Reference Figure 3 and Figure 8 As shown, in some embodiments, the support member 410 is provided with a mounting hole 411, and the filter member 420 is disposed in the mounting hole 411.

[0095] In this way, the mounting hole 411 provides a stable mounting position for the filter element 420, so that the filter element 420 can be firmly fixed on the support 410, preventing the filter element 420 from shifting or falling off during operation.

[0096] The support member 410 and the filter member 420 can be integrally molded to ensure the stability of their connection.

[0097] For example, the shape of the mounting hole 411 can be circular, elliptical, square, etc., as long as it can be adapted to match the air inlet 321 of the suction assembly 300. This application embodiment does not impose specific limitations on this.

[0098] Reference Figure 3 and Figure 8 As shown, in some embodiments, the support member 410 has at least one first snap-fit ​​portion 412, and the suction assembly 300 is provided with at least one second snap-fit ​​portion 330 that matches the first snap-fit ​​portion 412, and the first snap-fit ​​portion 412 and the second snap-fit ​​portion 330 are snapped together accordingly.

[0099] In this way, after the support member 410 is inserted into the housing 200, the first snap-fit ​​portion 412 on the support member 410 can be snapped into the second snap-fit ​​portion 330 on the suction assembly 300, thus restricting the support member 410 to the housing 200, so as to prevent the support member 410 from falling off or dropping and affecting the filtration effect of the filter element 420.

[0100] It is understood that there is at least one first latching part 412 and at least one second latching part 330. The number of the first latching part 412 and the second latching part 330 can be one or more, as long as the number of the first latching part 412 and the number of the second latching part 330 are the same. This application embodiment does not impose specific limitations on this.

[0101] In some embodiments, a limiting groove is provided on the suction assembly 300, and a portion of the support member 410 is inserted into the suction assembly 300 through the limiting groove. When the support member 410 abuts against the end of the limiting groove, the first locking portion 412 and the second locking portion 330 are correspondingly locked.

[0102] The limiting groove guides the movement of the support 410 so that the first locking part 412 and the second locking part 330 can be locked together, avoiding inaccurate locking or misalignment, and ensuring the stability of the assembly.

[0103] Reference Figure 2 As shown, in some embodiments, the housing 200 has an inlet / outlet hole 240 communicating with the receiving cavity 210, and the support member 410 is inserted into the housing 200 through the inlet / outlet hole 240.

[0104] The filter assembly 400 also includes a seal 430, which is disposed on the support 410 and abuts against the inner wall of the inlet / outlet port 240.

[0105] In this way, the support member 410 can be inserted into the housing 200 through the inlet hole 240, and the seal member 430 is used to seal the gap between the support member 410 and the inner wall of the inlet hole 240, so as to prevent air and dust outside the receiving cavity 210 from being sucked into the air inlet 321 of the suction assembly 300, which would cause the suction assembly 300 to be blocked.

[0106] For example, the seal 430 can be a silicone part, a rubber part, or other sealing material with a certain degree of elasticity. This application embodiment does not specifically limit this.

[0107] Reference Figure 3 As shown, in some embodiments, the support member 410 has a cover 413 for covering the inlet / outlet 240, and the cover 413 has a smooth transition with the housing 200.

[0108] The cover 413 is mainly used to contact the inlet and outlet hole 240 of the housing 200. The smooth transition between the cover 413 and the housing 200 makes the contact surface of the two flatter, reduces the friction of the component support 410 during insertion and removal, avoids jamming of the support 410, and reduces wear.

[0109] For example, the cover 413 and the support 410 can be integrally molded parts, and the material of both the cover 413 and the support 410 can be plastic.

[0110] Reference Figure 4 , Figure 5 and Figure 9 As shown, in some embodiments, the suction assembly 300 includes a suction member 310 and a guide member 320. The guide member 320 is disposed on the air inlet of the suction member 310, and the air inlet 321 is located on the guide member 320, and the air inlet is connected to the air inlet 321.

[0111] The suction component 310 is used to generate negative pressure. The air inlet of the suction component 310, the air inlet 321 on the guide component 320 and the air intake 110 on the panel 100 are connected in sequence to draw air through the air intake 110. The guide component 320 can guide the airflow entering the suction component 310 to make it more uniform and avoid uneven flow or eddies when the airflow enters the suction component 310.

[0112] For example, the suction component 310 can be a conventional electric fan in the related art, and the flow guide 320 can be a conventional flow guide in the related art. This application embodiment does not impose specific limitations on this.

[0113] in, Figure 6 This is a schematic diagram of the airflow when the suction assembly 300 is working. The housing 200 is provided with ventilation holes 260. The airflow enters the receiving cavity 210 through the air intake 110 of the panel 100, and then flows sequentially through the heat insulation cover 220 and the housing 200 to form the air guide channel 230, the air inlet 321 on the guide member 320, the air inlet and the air outlet of the suction member 310, and finally exits the receiving cavity 210 through the ventilation holes 260 on the housing 200.

[0114] The ventilation hole 260 can be located on the side of the housing 200 or at the end of the principle panel 100 of the housing 200. This application embodiment does not impose specific limitations on this.

[0115] Reference Figure 1 As shown, the steaming machine provided in this application includes a steaming machine body 20 and a steaming head 10 as described above, which is disposed on the steaming machine body 20.

[0116] In this way, the steamer equipped with the above-mentioned steaming head 10 can filter the air entering the suction assembly 300 through the air intake 110 through the filter assembly 400, and block dust and hair outside the air inlet 321 of the suction assembly 300, so as to avoid clogging the suction assembly 300 and extend the service life of the suction assembly 300.

[0117] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

Claims

1. A hot water suction head, characterized in that, include: A panel (100) is provided with an air intake (110). The housing (200) is covered on the panel (100) and together with the panel (100) forms a receiving cavity (210), and the air intake (110) is connected to the receiving cavity (210); A suction assembly (300) is disposed within the receiving cavity (210); A filter assembly (400) is inserted into the housing (200), with a portion of the filter assembly (400) located in the receiving cavity (210) and covering the air inlet (321) of the suction assembly (300) to filter the air entering the suction assembly (300) through the air inlet (110).

2. The suction head according to claim 1, characterized in that, It also includes a boiler (500) located within the receiving cavity (210), the boiler (500) having a steam outlet; The panel (100) is provided with a steam port (120), and the steam outlet is connected to the steam port (120).

3. The steaming head according to claim 2, characterized in that, It also includes a heat insulation cover (220), which is located inside the receiving cavity (210) and covers the boiler (500). The steam port (120) is located in the area covered by the heat insulation cover (220), and the air intake (110) is located outside the area covered by the heat insulation cover (220).

4. The steaming head according to claim 3, characterized in that, The heat insulation cover (220) and the housing (200) together form an air guide channel (230), which is connected to the air intake (110) and the air inlet (321) respectively.

5. The steaming head according to any one of claims 1 to 4, characterized in that, The filter assembly (400) includes: A support member (410) is inserted into the housing (200); A filter element (420) is disposed on the support (410), the filter element (420) is located inside the receiving cavity (210) and covers the air inlet (321).

6. The steaming head according to claim 5, characterized in that, The support member (410) is provided with a mounting hole (411), and the filter element (420) is disposed in the mounting hole (411).

7. The steaming head according to claim 5, characterized in that, The support member (410) has at least one first snap-fit ​​portion (412), and the suction assembly (300) is provided with at least one second snap-fit ​​portion (330) that matches the first snap-fit ​​portion (412), and the first snap-fit ​​portion (412) and the second snap-fit ​​portion (330) are snap-fitted together.

8. The steaming head according to claim 5, characterized in that, The housing (200) has an inlet hole (240) communicating with the receiving cavity (210), and the support member (410) is inserted into the housing (200) through the inlet hole (240); The filter assembly (400) further includes a seal (430) disposed on the support (410) and abutting against the inner wall of the inlet / outlet (240).

9. The steaming head according to claim 8, characterized in that, The support member (410) has a cover (413) for covering the inlet / outlet (240), and the cover (413) has a smooth transition with the housing (200).

10. The steaming head according to claim 5, characterized in that, The suction assembly (300) includes a suction component (310) and a flow guide (320). The flow guide (320) is disposed on the air inlet of the suction component (310), and the air inlet (321) is located on the flow guide (320), and the air inlet is connected to the air inlet (321).

11. A suction iron, characterized in that, It includes a heat pump body (20) and a heat pump head (10) as described in any one of claims 1 to 10, which is disposed on the heat pump body (20).