Garment steamer
By designing a structure in the garment steamer that connects the atomizing component and the liquid guiding component, and by using the rotation control of the handle's movable part and the switch component, combined with the temperature monitoring of the thermostat, the problem of jamming in traditional garment steamers has been solved, achieving simple and safe start-stop control.
Patent Information
- Application Number
- CN202422497290.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-10-15
AI Technical Summary
Traditional garment steamers are prone to jamming during the switching process, causing inconvenience to users and posing safety hazards.
Design a garment steamer that connects an atomizing component with a liquid guiding component and a mist outlet. Start-stop control is achieved by rotating the handle's movable part and the switch component. A thermostat is also provided to monitor the temperature, ensuring simple and safe operation.
It achieves instant response of the switching components, improves operational efficiency and safety, avoids lag, allows users to easily control the start and stop of the equipment, and provides an emergency stop function.
Smart Images

Figure CN223535480U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of household appliances, and in particular to a garment steamer. Background Technology
[0002] Garment steamers heat water to boiling using a heating element, generating steam to iron clothes. Traditional garment steamers are typically turned on and off using a push-button mechanism. However, this mechanism is prone to jamming, requiring users to apply extra force or attempt multiple times to operate the steamer successfully. This design can also prevent users from quickly shutting off the device in an emergency, posing a safety hazard. Utility Model Content
[0003] Therefore, it is necessary to provide a garment steamer that addresses the problem of jamming during use of traditional garment steamer switch components.
[0004] A garment steamer includes: a housing assembly having a mist outlet; a liquid guiding assembly disposed on the housing assembly; an atomizing assembly disposed on the housing assembly and communicating with both the liquid guiding assembly and the mist outlet, the atomizing assembly being used to atomize liquid; and a handle control assembly including a handle support, a handle movable part, and a switch assembly. The handle support is disposed on the housing assembly, the switch assembly is disposed on the handle support, and the handle movable part is disposed on the handle support. The handle movable part is rotatable relative to the handle support and is capable of engaging or disengaging from the switch assembly. When the handle movable part engages with the switch assembly, the liquid guiding assembly and the atomizing assembly begin to operate; when the handle movable part disengages from the switch assembly, the liquid guiding assembly and the atomizing assembly cease to operate.
[0005] This application discloses a garment steamer, in which an atomizing component is connected to a liquid guiding component and a mist outlet. The liquid guiding component continuously delivers liquid to the atomizing component, which rapidly converts the liquid into steam and outputs the steam through the mist outlet. This design ensures a continuous and stable atomization process. The handle's movable part rotates relative to the housing component and can engage or disengage with the switch component, allowing the user to easily control the start and stop of the liquid guiding and atomizing components simply by rotating the handle's movable part; operation is extremely simple. This design effectively achieves instantaneous response from the switch component, improving work efficiency. Furthermore, if the user needs to stop the device urgently, simply disengaging the handle's movable part from the switch component provides additional safety. The garment steamer of this application does not experience any jamming; users can quickly start or stop the device without expending excessive effort, improving work efficiency and user experience.
[0006] In one embodiment, the system further includes multiple temperature controllers. One of these temperature controllers is connected to both the switching assembly and the liquid guiding assembly, while another is connected to both the switching assembly and the atomizing assembly. The temperature controllers automatically disconnect the circuit when the liquid guiding assembly or the atomizing assembly overheats, improving product safety. Connecting each of the liquid guiding assembly and the atomizing assembly to a separate temperature controller allows for more accurate temperature monitoring.
[0007] In one embodiment, the housing assembly has a first mounting cavity and a second mounting cavity. The first mounting cavity communicates with the mist outlet, the atomizing component is located in the first mounting cavity, and the liquid guiding component is located in the second mounting cavity. By placing the atomizing component and the liquid guiding component in different cavities, potential mutual interference and safety risks are reduced. For example, it avoids the vapor generated by the atomizing component from affecting the working performance of the liquid guiding component.
[0008] In one embodiment, the movable part of the handle includes a handle body and a rotating block. Both the handle body and the rotating block are mounted on the handle support. The handle body is connected to the rotating block, and the handle body can drive the rotating block to rotate relative to the handle support. The rotating block can engage or disengage from the switch assembly. By connecting the handle body and the rotating block, the user can easily control the start and stop of the liquid guiding assembly and the atomizing assembly simply by rotating the handle body, making operation simple and convenient. The adjacent arrangement of the rotating block and the switch assembly, allowing them to engage or disengage, ensures precise operation and immediate response.
[0009] In one embodiment, the handle support includes a first support member and a second support member, both of which are disposed on the housing assembly. The first support member is located outside the housing assembly, the handle body is disposed on the first support member, and the second support member is located inside the housing assembly. The rotating block and the switch assembly are both disposed on the second support member. A portion of the handle body passes sequentially through the first support member, the housing assembly, and the second support member before connecting to the rotating block. The first and second support members, located outside and inside the housing assembly respectively, result in a more compact structure and enhanced overall load-bearing capacity. The first support member provides a stable support foundation for the handle body. This design effectively reduces the shaking of the handle body during use, ensuring smooth and reliable operation. The direct mechanical connection between the handle body and the rotating block, achieved through sequential passage through the first support member, the housing assembly, and the second support member, reduces direct mechanical contact, resulting in high power transmission efficiency and improved operational efficiency and response speed.
[0010] In one embodiment, the first support member has a first through hole, the housing assembly has a second through hole, and the second support member has a third through hole. A portion of the handle body passes through the first through hole, the second through hole, and the third through hole in sequence before connecting to the rotating block. The design of the first, second, and third through holes effectively reduces the shaking of the handle during use, ensuring the smoothness and reliability of the handle control component operation.
[0011] In one embodiment, a connector is further included. The second support member has a first mounting hole, and the housing assembly has a second mounting hole. The connector passes through the first mounting hole and the second mounting hole in sequence and then connects to the first support member. By having the connector pass through the first mounting hole and the second mounting hole in sequence and then connect to the first support member, multiple fixing points are formed, significantly enhancing the structural stability of the entire handle assembly.
[0012] In one embodiment, the liquid guiding assembly includes a water tank assembly, a pump assembly, and a heating assembly. The water tank assembly is disposed on the tank assembly, and the heating assembly and the pump assembly are disposed on the water tank assembly and / or the tank assembly. The water tank assembly, the pump assembly, and the heating assembly are sequentially connected by pipes. The pump assembly is used to transport the liquid in the water tank assembly to the interior of the heating assembly for heating. The heating assembly provides initial heating of the liquid. Because the water tank assembly, pump assembly, and heating assembly are sequentially connected by pipes, the pump assembly can continuously transport the liquid in the water tank assembly to the heating assembly, ensuring the continuity and stability of the heating process.
[0013] In one embodiment, the heating assembly includes a first heating element and a liquid guiding element. The liquid guiding element is disposed on the water tank assembly and has a heating channel. The heating channel is connected to the pump assembly and the atomizing assembly via pipes. The first heating element is disposed on the liquid guiding element and abuts against it. The first heating element generates heat and conducts it into the heating channel. By having the first heating element directly abut against the outer wall of the heating channel of the liquid guiding element, heat can be quickly and effectively transferred to the liquid, improving heating efficiency. The heating channel ensures that the liquid is heated evenly during flow, avoiding local overheating or uneven temperature.
[0014] In one embodiment, the water tank assembly is integrated with the tank body assembly. This integration simplifies the assembly process and reduces the complexity of production and installation.
[0015] In one embodiment, the water tank assembly is detachably mounted on the tank assembly. This detachable mounting allows the user to periodically inspect the water tank assembly, facilitating the timely detection and resolution of potential leaks. Furthermore, the user can easily remove the water tank for thorough cleaning, maintaining water quality hygiene.
[0016] In one embodiment, the atomizing assembly includes a second heating element and an atomizing element. The atomizing element is disposed on the housing assembly and has an atomizing channel. The atomizing channel is connected to the liquid guiding assembly via a pipe. The second heating element abuts against the atomizing element and generates heat, which is then conducted into the atomizing channel. By directly contacting the atomizing element with the second heating element, heat can be rapidly transferred to the atomizing channel, improving atomization efficiency. This design allows the liquid to evaporate rapidly into steam within the atomizing channel, reducing waiting time.
[0017] In one embodiment, the housing assembly includes a base, a support body, and a cover. The support body is disposed on the base, and the base has the mist outlet. The support body and the base enclose a first mounting cavity communicating with the mist outlet. The cover is disposed on the support body, and the cover and the support body enclose a second mounting cavity. The first mounting cavity formed by the support body and the base, and the second mounting cavity formed by the cover and the support body, rationally divide the internal space of the housing assembly, facilitating the arrangement and management of the components. Furthermore, the combined design of the base, support body, and cover makes the overall appearance of the product more harmonious and aesthetically pleasing.
[0018] In one embodiment, the support base includes a support body and a support plate. The support body is disposed on the base, and the support plate is disposed on the support body. The support plate, the support body, and the cover together form the first mounting cavity. The combination of the support plate, the support body, and the cover forms a stable structural frame, effectively enhancing the overall stability of the equipment. The cover protects the components within the first mounting cavity and improves the product's appearance.
[0019] In one embodiment, the support base has multiple openings spaced at intervals on the support base. The first mounting cavity, the multiple openings, and the second mounting cavity are sequentially connected, and the openings allow for the passage of wiring and conduits. The multiple openings facilitate the orderly arrangement of wiring and conduits, preventing wiring clutter and improving the neatness and aesthetics of the equipment. Furthermore, they make subsequent inspection and maintenance more convenient, reducing troubleshooting time. Attached Figure Description
[0020] Figure 1 This is a first-dimensional view of a garment steamer;
[0021] Figure 2 This is a second perspective view of the garment steamer;
[0022] Figure 3 This is a cross-sectional view of a garment steamer;
[0023] Figure 4 for Figure 3 Enlarged view of point A in the middle;
[0024] Figure 5 An exploded view of a garment steamer;
[0025] Figure 6 A perspective view of the handle control components;
[0026] Figure 7 An exploded view of the handle control components;
[0027] Figure 8 A perspective view of the rotating block and switch assembly;
[0028] Figure 9 This is a connection diagram of the water tank assembly, pump body assembly, liquid guiding assembly, and atomizing assembly;
[0029] Figure 10 This is a cross-sectional view of the fluid guiding assembly;
[0030] Figure 11 This is an exploded view of the atomizing component;
[0031] Figure 12 This is a sectional view of the housing assembly;
[0032] Figure 13 This is an exploded view of the housing assembly.
[0033] The correspondence between the reference numerals and the component names is as follows:
[0034] 1. Box assembly, 11. Base, 12. Support base body, 121. Support base body, 122. Support plate, 13. Cover, 101. Mist outlet, 102. First mounting cavity, 103. Second mounting cavity, 104. Opening.
[0035] 2 Liquid guiding assembly, 21 Water tank assembly, 22 Pump body assembly, 23 Heating assembly, 231 First heating element, 232 Liquid guiding element;
[0036] 3 atomizing component, 31 second heating element, 32 atomizing element;
[0037] 4 Handle control assembly, 41 Handle support, 411 First support member, 412 Second support member, 42 Handle movable part, 421 Handle body, 422 Rotating block, 43 Switch assembly, 44 Connector, 401 First through hole, 402 Second through hole, 403 Third through hole, 404 First mounting hole, 405 Second mounting hole.
[0038] 5. Temperature controller. Detailed Implementation
[0039] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0040] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.
[0041] like Figure 1-3 and Figure 5 As shown, this embodiment discloses a garment steamer, including: a housing assembly 1, the housing assembly 1 having a mist outlet 101; a liquid guiding assembly 2, the liquid guiding assembly 2 being disposed on the housing assembly 1; an atomizing assembly 3, the atomizing assembly 3 being disposed on the housing assembly 1, the atomizing assembly 3 being connected to the liquid guiding assembly 2 and the mist outlet 101 respectively, the atomizing assembly 3 being used to atomize liquid; and a handle control assembly 4, the handle control assembly 4 including a handle support 41, a handle movable part 42, and a switch assembly 43, the handle support 41 being provided with On the housing assembly 1, the switch assembly 43 is disposed on the handle support portion 41, and the handle movable portion 42 is disposed on the handle support portion 41. The handle movable portion 42 is rotatable relative to the handle support portion 41. The handle movable portion 42 is able to abut or separate from the switch assembly 43. When the handle movable portion 42 abuts against the switch assembly 43, the liquid guiding assembly 2 and the atomizing assembly 3 start to work. When the handle movable portion 42 separates from the switch assembly 43, the liquid guiding assembly 2 and the atomizing assembly 3 stop working.
[0042] This application discloses a garment steamer, in which an atomizing component 3 is connected to a liquid guiding component 2 and a mist outlet 101. The liquid guiding component 2 continuously delivers liquid to the atomizing component 3, which rapidly converts the liquid into steam and outputs the steam through the mist outlet 101. This design ensures a continuous and stable atomization process. The handle movable part 42 rotates relative to the housing component 1 and can engage or disengage with the switch component 43, allowing the user to easily control the start and stop of the liquid guiding component 2 and the atomizing component 3 simply by rotating the handle movable part 42, making operation very simple. This design effectively achieves instant response of the switch component 43, improving work efficiency. Furthermore, if the user needs to stop the device urgently, simply disengaging the handle movable part 42 from the switch component 43 provides additional safety. The garment steamer of this application does not experience jamming; users can quickly start or stop the device without expending excessive effort, improving work efficiency and user experience.
[0043] like Figure 3 and Figure 5 As shown, in addition to the features of the above embodiments, this embodiment further includes: a plurality of temperature controllers 5, one of which is connected to the switch assembly 43 and the liquid guiding assembly 2, and another of which is connected to the switch assembly 43 and the atomizing assembly 3. The temperature controllers 5 enable automatic circuit disconnection when the liquid guiding assembly 2 and the atomizing assembly 3 are overheated, improving product safety. By connecting each of the liquid guiding assembly 2 and the atomizing assembly 3 to a temperature controller 5, temperature monitoring becomes more accurate.
[0044] like Figure 12 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the housing assembly 1 is provided with a first mounting cavity 102 and a second mounting cavity 103, the first mounting cavity 102 is connected to the mist outlet 101, the atomizing assembly 3 is located in the first mounting cavity 102, and the liquid guiding assembly 2 is located in the second mounting cavity 103. By placing the atomizing assembly 3 and the liquid guiding assembly 2 in different cavities, potential mutual interference and safety risks are reduced. For example, the vapor generated by the atomizing assembly 3 is prevented from affecting the working performance of the liquid guiding assembly 2.
[0045] like Figure 6-8As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the handle movable part 42 includes a handle body 421 and a rotating block 422. Both the handle body 421 and the rotating block 422 are disposed on the handle support part 41. The handle body 421 is connected to the rotating block 422, and the handle body 421 can drive the rotating block 422 to rotate relative to the handle support part 41. The rotating block 422 can abut or separate from the switch assembly 43. Through the connection between the handle body 421 and the rotating block 422, the user can easily control the start and stop of the liquid guiding assembly 2 and the atomizing assembly 3 simply by rotating the handle body 421, making operation simple and convenient. The close fit between the rotating block 422 and the switch assembly 43, allowing them to abut or separate, ensures operational accuracy and immediate response.
[0046] like Figure 6 and Figure 7 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the handle support 41 includes a first support member 411 and a second support member 412. Both the first support member 411 and the second support member 412 are disposed on the housing assembly 1. The first support member 411 is located outside the housing assembly 1, the handle body 421 is disposed on the first support member 411, and the second support member 412 is located inside the housing assembly 1. The rotating block 422 and the switch assembly 43 are both disposed on the second support member 412. A portion of the handle body 421 passes sequentially through the first support member 411, the housing assembly 1, and the second support member 412 before connecting to the rotating block 422. With the first support member 411 and the second support member 412 located outside and inside the housing assembly 1 respectively, the structure is more compact, enhancing the overall load-bearing capacity. The first support member 411 provides a stable support foundation for the handle body 421. This design effectively reduces the shaking of the handle body 421 during use, ensuring smooth and reliable operation. The handle body 421 passes through the first support 411, the housing assembly 1, and the second support 412 in sequence before connecting to the rotating block 422. The direct mechanical connection reduces the need for direct mechanical connection, resulting in high power transmission efficiency and improved operation efficiency and response speed.
[0047] like Figure 4As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the first support member 411 is provided with a first through hole 401, the housing assembly 1 is provided with a second through hole 402, the second support member 412 is provided with a third through hole 403, and a portion of the handle body 421 passes through the first through hole 401, the second through hole 402, and the third through hole 403 in sequence before connecting to the rotating block 422. The arrangement of the first through hole 401, the second through hole 402, and the third through hole 403 effectively reduces the shaking of the handle during use, ensuring the stability and reliability of the handle control assembly 4 operation.
[0048] like Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further includes a connector 44. The second support member 412 has a first mounting hole 404, and the housing assembly 1 has a second mounting hole 405. The connector 44 passes through the first mounting hole 404 and the second mounting hole 405 in sequence and is connected to the first support member 411. By connecting the connector 44 to the first support member 411 through the first mounting hole 404 and the second mounting hole 405 in sequence, multiple fixing points are formed, significantly enhancing the structural stability of the entire handle assembly.
[0049] like Figure 9 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the liquid guiding component 2 includes a water tank component 21, a pump component 22, and a heating component 23. The water tank component 21 is disposed on the tank component 1, and the heating component 23 and the pump component 22 are disposed on the water tank component 21 and / or the tank component 1. The water tank component 21, the pump component 22, and the heating component 23 are sequentially connected by pipes. The pump component 22 is used to transport the liquid in the water tank component 21 to the interior of the heating component 23 for heating. The liquid is initially heated by the heating component 23. Because the water tank component 21, the pump component 22, and the heating component 23 are sequentially connected by pipes, the pump component 22 can continuously transport the liquid in the water tank component 21 to the heating component 23, ensuring the continuity and stability of the heating process.
[0050] like Figure 10As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the heating assembly 23 includes a first heating element 231 and a liquid guiding element 232. The liquid guiding element 232 is disposed on the water tank assembly 21, and the liquid guiding element 232 is provided with a heating channel. The heating channel is connected to the pump body assembly 22 and the atomizing assembly 3 respectively through pipes. The first heating element 231 is disposed on the liquid guiding element 232 and abuts against the liquid guiding element 232. The first heating element 231 can generate heat and conduct it into the heating channel. By having the first heating element 231 directly abut against the outer wall of the heating channel of the liquid guiding element 232, heat can be quickly and effectively transferred to the liquid, improving heating efficiency. The setting of the heating channel ensures that the liquid can be heated evenly during the flow process, avoiding local overheating or uneven temperature.
[0051] like Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further specifies that the water tank assembly 21 and the tank body assembly 1 are integrally formed. Integrating the water tank assembly 21 and the tank body assembly 1 simplifies the assembly process and reduces the complexity of production and installation.
[0052] In addition to the features of the above embodiments, this embodiment further specifies that the water tank assembly 21 is detachably mounted on the tank assembly 1. Because the water tank assembly 21 is detachably mounted on the tank assembly 1, the user can periodically inspect the water tank assembly 21, which helps to promptly detect and resolve potential leaks and other problems. Furthermore, the user can easily remove the water tank for thorough cleaning, maintaining water quality hygiene.
[0053] like Figure 11 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the atomizing component 3 includes a second heating element 31 and an atomizing element 32. The atomizing element 32 is disposed on the housing component 1, and the atomizing element 32 has an atomizing channel. The atomizing channel is connected to the liquid guiding component 2 through a pipe. The second heating element 31 abuts against the atomizing element 32, and the second heating element 31 can generate heat and conduct it into the atomizing channel. By having the second heating element 31 directly abut against the atomizing element 32, heat can be quickly transferred into the atomizing channel, improving atomization efficiency. This design allows the liquid to evaporate rapidly into steam within the atomizing channel, reducing waiting time.
[0054] like Figure 13As shown, in addition to the features of the above embodiments, this embodiment further defines the following: the housing assembly 1 includes a base 11, a support pedestal 12, and a cover 13. The support pedestal 12 is disposed on the base 11, and the base 11 is provided with the mist outlet 101. The support pedestal 12 and the base 11 enclose and form a first mounting cavity 102 communicating with the mist outlet 101. The cover 13 is disposed on the support pedestal 12, and the cover 13 and the support pedestal 12 enclose and form a second mounting cavity 103. The first mounting cavity 102 formed by the support pedestal 12 and the base 11, and the second mounting cavity 103 formed by the cover 13 and the support pedestal 12, rationally divide the internal space of the housing assembly 1, facilitating the arrangement and management of each component. Moreover, the combined design of the base 11, the support pedestal 12, and the cover 13 makes the overall appearance of the product more harmonious and aesthetically pleasing.
[0055] like Figure 13 As shown, in addition to the features of the above embodiments, this embodiment further defines the following: the support base 12 includes a support base body 121 and a support plate 122. The support base body 121 is disposed on the base 11, and the support plate 122 is disposed on the support base body 121. The support plate 122, the support base body 121, and the cover 13 enclose and form the first mounting cavity 102. The combination of the support plate 122, the support base body 121, and the cover 13 forms a stable structural frame, effectively enhancing the overall stability of the equipment. The cover 13 protects the components inside the first mounting cavity 102 and improves the appearance quality of the product.
[0056] like Figure 13 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the support base 12 is provided with openings 104, and the number of openings 104 is multiple. These openings 104 are spaced apart on the support base 12. The first mounting cavity 102, the multiple openings 104, and the second mounting cavity 103 are sequentially connected. The openings 104 are used for the passage of lines and pipes. The arrangement of multiple openings 104 helps to ensure the orderly arrangement of lines and pipes, avoids chaotic wiring, and improves the neatness and aesthetics of the equipment. Furthermore, it makes subsequent inspection and maintenance work more convenient and reduces troubleshooting time.
[0057] The above embodiments only illustrate several implementation methods of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.
Claims
1. A garment steamer, characterized in that, include: Box assembly (1), the box assembly (1) is provided with mist outlet (101); Liquid guiding assembly (2), the liquid guiding assembly (2) is disposed on the housing assembly (1); Atomizing component (3) is disposed on the housing component (1). The atomizing component (3) is connected to the liquid guiding component (2) and the mist outlet (101) respectively. The atomizing component (3) is used to atomize liquid. A handle control assembly (4) includes a handle support (41), a handle movable part (42), and a switch assembly (43). The handle support (41) is disposed on the housing assembly (1), the switch assembly (43) is disposed on the handle support (41), and the handle movable part (42) is disposed on the handle support (41). The handle movable part (42) is rotatable relative to the handle support (41). The handle movable part (42) can abut or separate from the switch assembly (43). When the handle movable part (42) abuts against the switch assembly (43), the liquid guiding assembly (2) and the atomizing assembly (3) start working. When the handle movable part (42) separates from the switch assembly (43), the liquid guiding assembly (2) and the atomizing assembly (3) stop working. The movable part of the handle (42) includes a handle body (421) and a rotating block (422). The handle body (421) and the rotating block (422) are both disposed on the handle support (41). The handle body (421) is connected to the rotating block (422). The handle body (421) can drive the rotating block (422) to rotate relative to the handle support (41). The rotating block (422) can abut against or separate from the switch assembly (43).
2. The garment steamer according to claim 1, characterized in that, It also includes a temperature controller (5), and there are multiple temperature controllers (5). One of the multiple temperature controllers (5) is connected to the switch assembly (43) and the liquid guiding assembly (2) respectively, and another of the multiple temperature controllers (5) is connected to the switch assembly (43) and the atomizing assembly (3) respectively. And / or the housing assembly (1) is provided with a first mounting cavity (102) and a second mounting cavity (103), the first mounting cavity (102) is connected to the mist outlet (101), the atomizing assembly (3) is located in the first mounting cavity (102), and the liquid guiding assembly (2) is located in the second mounting cavity (103).
3. The garment steamer according to claim 1, characterized in that, The handle support (41) includes a first support member (411) and a second support member (412). The first support member (411) and the second support member (412) are both disposed on the housing assembly (1). The first support member (411) is located outside the housing assembly (1). The handle body (421) is disposed on the first support member (411). The second support member (412) is located inside the housing assembly (1). The rotating block (422) and the switch assembly (43) are both disposed on the second support member (412). A portion of the handle body (421) passes through the first support member (411), the housing assembly (1), and the second support member (412) in sequence and is connected to the rotating block (422).
4. The garment steamer according to claim 3, characterized in that, The first support member (411) is provided with a first through hole (401), the box assembly (1) is provided with a second through hole (402), the second support member (412) is provided with a third through hole (403), and a portion of the handle body (421) passes through the first through hole (401), the second through hole (402) and the third through hole (403) in sequence and is connected to the rotating block (422); And / or also includes a connector (44), the second support (412) having a first mounting hole (404), the housing assembly (1) having a second mounting hole (405), and the connector (44) passing through the first mounting hole (404) and the second mounting hole (405) in sequence and then connecting to the first support (411).
5. The garment steamer according to claim 1, characterized in that, The liquid guiding assembly (2) includes a water tank assembly (21), a pump assembly (22), and a heating assembly (23). The water tank assembly (21) is disposed on the tank assembly (1). The heating assembly (23) and the pump assembly (22) are disposed on the water tank assembly (21) and / or the tank assembly (1). The water tank assembly (21), the pump assembly (22), and the heating assembly (23) are connected in sequence through pipes. The pump assembly (22) is used to transport the liquid in the water tank assembly (21) to the interior of the heating assembly (23) for heating.
6. The garment steamer according to claim 5, characterized in that, The heating component (23) includes a first heating element (231) and a liquid guiding element (232). The liquid guiding element (232) is disposed on the water tank component (21). The liquid guiding element (232) is provided with a heating channel. The heating channel is connected to the pump body component (22) and the atomizing component (3) through pipes. The first heating element (231) is disposed on the liquid guiding element (232). The first heating element (231) abuts against the liquid guiding element (232). The first heating element (231) can generate heat and conduct it into the heating channel. And / or the water tank assembly (21) is integrated with the tank body assembly (1); Alternatively, the water tank assembly (21) may be detachably mounted on the tank assembly (1).
7. The garment steamer according to claim 1, characterized in that, The atomizing component (3) includes a second heating element (31) and an atomizing element (32). The atomizing element (32) is disposed on the housing component (1). The atomizing element (32) is provided with an atomizing channel. The atomizing channel is connected to the liquid guiding component (2) through a pipe. The second heating element (31) abuts against the atomizing element (32). The second heating element (31) can generate heat and conduct it into the atomizing channel.
8. The garment steamer according to claim 1, characterized in that, The housing assembly (1) includes a base (11), a support base (12), and a cover (13). The support base (12) is disposed on the base (11), and the base (11) is provided with the mist outlet (101). The support base (12) and the base (11) enclose to form a first mounting cavity (102) communicating with the mist outlet (101). The cover (13) is disposed on the support base (12), and the cover (13) and the support base (12) enclose to form a second mounting cavity (103).
9. The garment steamer according to claim 8, characterized in that, The support base (12) includes a support base body (121) and a support plate (122). The support base body (121) is disposed on the base (11), and the support plate (122) is disposed on the support base body (121). The support plate (122), the support base body (121), and the cover (13) together form the first mounting cavity (102). And / or the support body (12) is provided with an opening (104), and there are multiple openings (104). The multiple openings (104) are arranged at intervals on the support body (12). The first mounting cavity (102), the multiple openings (104) and the second mounting cavity (103) are connected in sequence. The openings (104) are used for lines and pipes to pass through.