Steam iron device

The steam iron device addresses the inefficiencies of conventional models by integrating a steam generation unit and intake part for one-handed operation, enhancing ironing efficiency and safety through synchronized steam and air flow.

JP2025524273AInactive Publication Date: 2025-07-28YUELI GROUP CO LTD
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Patent Information

Application Number
JP2024568255
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-01-23
Filing Date
2024-08-27
Publication Date
2025-07-28
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Conventional steam iron devices require users to hold the device with one hand and pull the clothes with the other, leading to potential hand burns and reduced ironing efficiency.

Method used

A steam iron device with a housing that includes a steam generation unit and an intake part, allowing for the device to adsorb clothes, generate steam, and create an air flow for efficient ironing without the need for manual pulling, using synchronized steam and intake operations.

Benefits of technology

The device enhances ironing efficiency by stabilizing the clothes and preventing hand burns, allowing one-handed operation with improved steam distribution and adsorption, thus increasing convenience and effectiveness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of handheld household appliances. The solution of the present invention includes a housing 100, and a steam generating part 200 is provided on the housing 100. The steam generating part 200 is connected to the ironing surface 300, a steam outlet 301 is provided on the ironing surface 300, an air intake part 400 is provided on the housing 100, and an air intake port 401 is provided in the air intake part 400. The air intake port 401 and the steam outlet 301 are located on the same side of the housing 100. The present invention has the advantages that ironing can be performed while adsorbing clothes, with high efficiency and convenient operation.
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Description

Technical Field

[0001] The present invention relates to the technical field of handheld household appliances, and particularly to a steam iron device.

Background Art

[0002] A steam iron device is one of the devices commonly used for ironing clothes. Most of the iron devices currently on the market are equipped with a steam iron function to meet the needs of people who iron clothes.

[0003] Conventionally, when actually using a steam iron device, the power of the steam iron device is turned on to eject steam to iron clothes. However, when some people iron clothes, or when ironing some clothes, in order to surely obtain the expected ironing effect, it is necessary to hold the steam iron device with one hand and constantly pull the clothes with the other hand. The above solution can meet the ironing needs to a certain extent, but the hand corresponding to the clothes during use is easily burned, which has certain inconveniences, and the ironing efficiency also needs to be further improved.

Summary of the Invention

[0004] The present invention provides a steam iron device that can adsorb clothes, has high ironing efficiency, and is convenient to operate.

Brief Description of the Drawings

[0005]

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[0006] Hereinafter, a more detailed description will be given through specific embodiments. Embodiment 1 This embodiment is basically as shown in FIGS. 1 to 13. The steam iron device includes a housing 100. A working area is provided in the housing 100, and the working area includes a first area and an annular second area surrounding the first area. A steam generation unit 200 is provided in the housing 100, and the steam generation unit 200 is used to supply gas and / or vaporized liquid from the first area to the outside. An intake unit 400 is provided in the housing 100, and the intake unit 400 is used to inhale gas and / or vaporized liquid from the second area.

[0007] Specifically, it is provided with an ironing surface 300 that provides the above-mentioned first region, and a steam outlet 301 is provided on the ironing surface 300. The housing 100 is provided with a steam generation unit 200 connected to the ironing surface 300, and gas and / or vaporized liquid is provided to the ironing surface 300 through the steam generation unit 200.

[0008] Specifically, it includes an intake section 400. The intake section 400 includes an intake baffle 410, and the intake baffle 410 is sleeved and attached on the housing 100. An intake plate 420 is provided on the intake baffle 410. The intake plate 420 provides the above-mentioned second region. The intake port 401 is located on the intake plate 420. An intake flow path 402 is provided in the intake baffle 410, and the intake port 401 is connected to the intake flow path 402. A transition section 411 is provided in the intake baffle 410. The transition section 411 is connected to an exhaust baffle 430, and there is an exhaust port 431 in the exhaust baffle 430. An intake member 440 is provided between the transition section 411 and the exhaust baffle 430, and gas and / or vaporized liquid is sucked from the intake plate 420 through the intake member 440.

[0009] More specifically, the steam generation unit 200 is preferably used to supply a working fluid that is steam or a mixture of steam and air. The steam generation unit 200 supplies the working fluid to the left side of FIG. 1 through the steam outlet 301 to iron the object to be ironed.

[0010] More specifically, the working fluid provided by the steam generation unit 200 passes through the object to be ironed, and / or the working fluid provided by the steam generation unit 200 spreads around into the gap between the object to be ironed and the ironing surface 300.

[0011] More specifically, the intake section 400 is used to form an annular adsorption region that is the above-mentioned second region. This adsorption region is arranged around the first region and also defines the position of the first region.

[0012] More specifically, the gas sucked by the intake part 400 from the intake plate 420 through the intake member 400 may be a gas that penetrates the ironing object from the side opposite to the ironing object with respect to the surface where the steam iron device is located, or may be a working fluid that spreads to the surroundings supplied by the steam generation part 200.

[0013] Furthermore, in the first region, the ironing object is operably attached to or separated from the ironing surface 300.

[0014] Furthermore, the intake part 400 continuously provides an adsorption force to the ironing object, and when moving with respect to the ironing object, the adsorption region also moves on the surface of the object to be ironed while maintaining the adsorption force without leaving.

[0015] Furthermore, the steam generation part 200 and the intake part 400 operate synchronously, the steam generation part 200 provides the working fluid to the outside, and the intake part 400 inhales the external fluid into the inside.

[0016] Furthermore, the steam generation part 200 provides the working fluid to the ironing object in the first region. As a result, the ironing object in the first region bulges with respect to the second region, and while the ironing object is heated, the object is stretched.

[0017] Furthermore, the intake flow path 402 is annular, and the cross-sectional area of the intake flow path 402 gradually decreases from the front end of the intake part 400 toward the rear end of the intake part. Specifically, reference may be made to FIG. 3. The intake flow path 402 is limited by a first annular plate located inside and a second annular plate attached by a sleeve outside the first annular plate. Among them, the second annular plate gradually contracts from the left side to the right side of FIG. 3 to form an intake flow path 402 with a gradually decreasing cross-sectional area.

[0018] This design increases the flow rate of the fluid in the intake flow path 402 to provide a stronger adsorption force.

[0019] Furthermore, the intake portion 400 has a plenum channel connected to the intake passage 402. The plenum channel is linear, and the intake passage has an intake direction that coincides with the left - right direction in FIG. 3. The plenum channel is parallel to the intake direction and is located on one side of the intake passage 402.

[0020] In this embodiment, the plenum channel is located above the intake passage 402. Specifically, the fluid enters the annular intake passage 402 from the intake port 401, converges in the plenum channel within the intake passage 402, enters the plenum channel, and is further discharged from the exhaust port 431.

[0021] Embodiment 2 This embodiment is basically as shown in FIGS. 1 to 13. The steam iron device includes a housing 100, a steam generation unit 200 is provided on the housing 100, the steam generation unit 200 is connected to the ironing surface 300, and a steam outlet 301 is provided on the ironing surface 300. The intake portion 400 is provided with an intake port 401, and the intake port 401 and the steam outlet 301 are located on the same side of the housing 100.

[0022] In this embodiment, the housing 100 has a cylindrical shape with a hollow interior and open ends, and is arranged horizontally.

[0023] To reduce the distance between the steam outlet 301 and the clothing and prevent the temperature of the steam from dropping on the transmission path and affecting the ironing effect, the clothing can be stabilized under the action of the intake portion 400. In this embodiment, on the end face, the intake port 401 and the steam outlet 301 are located on the same plane.

[0024] Specifically, in the above solution, the intake part 400 includes an intake baffle 410. The intake baffle 410 is sleeved and attached onto the housing 100. An intake plate 420 is provided on the intake baffle 410, and an intake port 401 is provided on the intake plate 420. An intake flow path 402 is provided on the intake baffle 410, and the intake port 401 is connected to the intake flow path 402. A transition part 411 is provided on the intake baffle 410, the transition part 411 is connected to an exhaust baffle 430, and an exhaust port 431 is provided on the exhaust baffle 430. An intake member 440 is provided between the transition part 411 and the exhaust port baffle. With the above solution, the formation of the intake flow path 402 and the arrangement of the intake port 401 are facilitated, and it is also easy for the sucked-in vapor and air flow to be discharged from the exhaust port 431 in a timely manner, ensuring the smooth operation of the intake part 400. Preferably, the intake member 440 is an intake motor.

[0025] Furthermore, the exhaust baffle 430 is detachably connected to the transition part 411. Specifically, a fixing groove 432 is provided on the exhaust baffle 430, a fixing protrusion 412 is provided on the transition part 411, and the fixing protrusion 412 can be matched with the fixing groove 432 for connection.

[0026] Specifically, the transition part 411 and the exhaust baffle 430 adopt a front-back split structure. After disassembling the exhaust baffle 430, the internal intake motor can be maintained without removing the entire intake part 400 from the steam iron device.

[0027] To effectively adsorb clothes, that is, to ensure that the periphery of the surface of the clothes to be ironed is firmly adsorbed to the corresponding end face of the ironing surface 300, prevent the clothes from falling off, and improve the overall effect of ironing. In the above solution, there are a plurality of intake ports 401, and a steam outlet 301 is located in the region surrounded by the plurality of intake ports 401. Specifically, in this embodiment, the number of intake ports 401 is 12, and each intake port 401 is a kidney-shaped hole.

[0028] In other embodiments, the intake port 401 may be a circular hole, a rectangular hole, or a hole of other shapes, and the intake port 401 can also be configured as a grid.

[0029] In other embodiments, the intake port 401 can also be configured as an annular integral intake port.

[0030] In the above solution, a flow path separation guide 450 is provided between the intake member 440 and the exhaust baffle 430. The flow path separation guide 450 has a first arcuate inner concave surface 451 and a second arcuate concave surface 452. The connection between the curved first arcuate inner concave surface 451 and the second arcuate concave surface 452 forms a partition wall 453. The partition wall 453 is arranged towards the intake baffle 410, and a compartment 454 is formed between the first arcuate concave surface 451 and the second arcuate concave surface 452. The distance between the first arcuate concave surface 451 and the second arcuate concave surface 452 gradually increases from the partition wall 453 towards the compartment 454. To facilitate the operation of the device, the flow path separation guide 450 can split the vapor flow drawn back by the intake part 400 into two directions. As a result, the vapor flow drawn back by the intake part 400 can be discharged relatively quickly from the exhaust port 431. The working efficiency of the intake part 400 is improved.

[0031] In other embodiments, the first arcuate concave surface 451 and the second arcuate concave surface 452 can also be replaced with flat surfaces.

[0032] Normally, the user is present behind the ironing device. Therefore, by discharging the fluid sucked by the intake member 440 to both sides instead of the rear, the influence on the user can be avoided. On the other hand, due to the arrangement of the first arcuate concave surface 451 and the second arcuate concave surface 452, a part of the fluid energy is absorbed, and the fluid discharged laterally becomes gentler.

[0033] In order to further improve the working efficiency of the intake part 400, the number of exhaust ports 431 is plural and they are dispersed on both sides of the exhaust baffle 430. The exhaust ports 431 on both sides of the exhaust baffle 430 respectively correspond to the first arc-shaped concave surface 451 or the second arc-shaped concave surface 452. That is, the exhaust ports 431 are divided into two groups, one corresponding to the first arc-shaped concave surface 451 and the other corresponding to the second arc-shaped concave surface 452.

[0034] Furthermore, the ironing surface 300 is removably connected to the steam generating part 200. Specifically, a connection plate 210 is provided at one end of the steam generating part 200, and mounting holes (symbols are marked in the figure) are provided on the connection plate 210, and screw holes (symbols are marked in the figure) corresponding to the mounting are provided on the ironing surface 300. The screw holes are connected to the fasteners 211. The fasteners 211 are preferably screws.

[0035] Furthermore, an end cover 110 is provided at one end of the housing 100, the steam generating part 200 is removably connected to the end cover 110, and the ironing surface 300 is hooked to the other end of the housing 100. A water tank 120 is provided on the end cover 110. The water tank 120 is used to add water to the steam generating part 200. In this embodiment, the end cover 110 is removably connected to the housing 100. Specifically, a plurality of patch-lock hooks 111 are provided on the end cover 110, and a plurality of patch-lock levers 112 corresponding to the patch-lock hooks 111 are provided on the housing 100. The two directions of the steam generating part 200 can be installed relatively stably on the end cover 110 and the ironing surface 300, thereby avoiding unnecessary shaking and displacement of the steam generating part 200 during use.

[0036] In the above solution, a support part 220 is provided on the steam generating part 200, and the support part 220 is supported against the inner wall of the housing 100. By providing the support part, the steam generating part 200 can be more firmly attached to the housing 100, and the connection stability of the steam generating part 200 is further improved.

[0037] The housing 100 is connected to the handle portion 500, the water tank 120 is connected to the water pump 130, and the water pump 130 is installed inside the handle portion 500. The water pump 130 is connected to the steam generation unit 200. The handle portion 500 is connected to the base 600, and the circuit board 610 is installed on the base 600. The circuit board 610 is electrically connected to the steam switch 501 and the intake switch 601. The steam switch 501 is used to control the operating state of the steam generation unit 200, and the intake switch 601 is used to control the opening and closing of the intake portion 400.

[0038] Specifically, the entire handle portion 500 is cylindrical, and an insertion piece 502 is provided at the upper end of the handle portion 500. The number of insertion pieces 502 is preferably four. Since the support portion 220 needs to be supported against the inner wall of the housing 100, an inner concave portion 221 is provided on the support portion 220. A space for accommodating the corresponding insertion piece 502 is formed between the inner concave portion 221 and the housing 100.

[0039] In the solution of this embodiment, the main structure of the steam generation unit 200 is based on existing technologies, and other internal structures are based on existing technologies in this field. The specific structures of the circuit board 610, the steam switch 501, and the intake switch 601 are also in the prior art, so the detailed structures and principles will not be elaborated here.

[0040] By arranging the intake part 400 on the housing 100, the intake part 400 can be opened to generate air flow and suction. By arranging the air intake port 401 and the steam outlet 301 in the same part, during specific use, under the action of air flow and suction, a better adsorption function for clothing can be achieved. That is, while avoiding incorrect operations, relatively convenient ironing of clothing with one hand can be achieved. The generated air flow may also cause the reverse flow phenomenon of steam. That is, after ironing the clothing for the first time, a part of the steam will be sucked by the internal intake part 400. That is, after ironing, the steam passes through the clothing a second time, and through the reverse flow process, the ironing of the clothing can continue to a certain extent, so the ironing efficiency is further improved.

[0041] Embodiment 3 The difference between this embodiment and the second embodiment is that the air intake port is located on the ironing surface, that is, the air intake port is located around the ironing surface, and the intake part is connected to the air intake port.

[0042] In this embodiment, the intake part is not a removable part but is incorporated into the steam iron device. The air intake port and the steam outlet are on the same panel.

[0043] The above are merely embodiments of the present invention, and general knowledge such as specific technical solutions and / or known features will not be described in detail here. For those skilled in the art, several modifications and improvements can be made without departing from the technical solutions of the present invention, and these should also be regarded as within the protection scope of the present invention, and none of these will affect the effectiveness of the implementation of the present invention and its industrial applicability. The protection scope claimed in this application is based on the content of the claims, and the specific embodiments and other records in the specification can be used to interpret the content of the claims.

[0044] To achieve the above object, the present invention adopts the following technical solutions. The steam iron device includes a housing, a steam generation part is provided on the shell, the steam generation part is connected to the ironing surface, and a steam outlet is provided on the ironing surface. An air intake part is provided on the housing, an air intake port is provided on the air intake part, and the air intake port and the steam outlet are arranged on the same side of the housing.

[0045] The principle and advantages of this solution are that by arranging the air intake part on the housing, an air flow and a suction force can be generated when the air intake part is turned on, and by arranging the air intake port and the steam outlet on the same side of the housing, during specific use, under the action of the air flow and the suction force, a better adsorption function for clothing can be achieved. That is, relatively convenient ironing of clothing can be carried out with one hand, and inappropriate operations and burns can be avoided. Also, due to the generated air flow, the steam may cause a backflow phenomenon. That is, after ironing the clothing for the first time, a part of the steam is sucked in the reverse direction by the air intake part. That is, when the steam flows back, it can continue to iron the clothing through the clothing for the second time, and the efficiency of ironing is further improved.

[0046] As an improvement, preferably, the air intake port and the steam outlet are located on the same plane.

[0047] Beneficial effects: The solution of arranging the air intake port and the steam outlet on the same plane can not only shorten the distance between the steam outlet and the clothing and avoid the temperature drop of the steam in the transmission path, but also, due to the action of the air intake part, the clothing can be more stably attached to the end face corresponding to the ironing surface of the iron.

[0048] Preferably, as an improvement, the air intake part includes an air intake port baffle, the air intake baffle is connected to the housing, an air intake plate is provided on the air intake baffle, and the air intake port is arranged on the air intake plate. An air intake flow path is provided on the air intake baffle, and the air intake port is connected to the air intake flow path. The air intake baffle is connected to a transition part, an exhaust port is provided on the transition part, and an air intake member is provided between the transition part and the exhaust port baffle.

[0049] Beneficial effects: With the above technical solution, the formation of the intake air passage and the arrangement of the intake ports are facilitated, the airflow of the sucked-back vapor is easily discharged from the exhaust port in a timely manner, and the smooth operation of the intake part is ensured.

[0050] As an improvement, the number of intake ports is plural, and the vapor outlet is preferably located in an area surrounded by the plurality of intake ports.

[0051] Beneficial effects: Using the above technical solution, it is convenient to install a plurality of intake ports, thereby effectively adsorbing the clothing, and the vapor outlet is located in an area surrounded by the plurality of intake ports, that is, the periphery of the area where the clothing is ironed, and the iron is firmly adsorbed to the corresponding end face of the ironing surface. It not only prevents the clothing from falling off, but also further improves the ironing work effect. Preferably, as an improvement, a flow path separation guide is provided between the intake part and the intake baffle. The flow path separation guide has a first arcuate inner concave surface and a second arcuate inner concave surface. A partition wall is formed at the connection between the first arcuate inner concave surface and the second arcuate inner concave surface. The partition wall is arranged towards the intake baffle, and a compartment is formed between the first arcuate inner concave surface and the second arcuate inner concave surface. The distance between the first arcuate inner concave surface and the second arcuate inner concave surface gradually increases from the direction of the partition wall towards the compartment.

[0052] Beneficial effects: Using the above solution, the flow path separation guide can divide the vapor flow sucked back by the intake part into two directions during operation, so that the vapor flow sucked back by the intake part can flow from the exhaust port faster, and the working efficiency of the intake part is improved.

[0053] Preferably, as an improvement, the number of exhaust ports is plural and they are dispersed on both sides of the intake baffle. The exhaust ports on both sides of the intake baffle respectively correspond to the first arcuate inner concave surface or the second arcuate inner concave surface.

[0054] Beneficial effects: When using the above solutions, since the exhaust ports in two opposite directions correspond to the first arcuate inner concave surface or the second arcuate inner concave surface, the vapor flow sucked back by the intake part is discharged more quickly from the exhaust ports on both sides of the intake baffle, and the working efficiency of the intake part is further improved.

[0055] Preferably, as an improvement, the ironing surface is detachably connected to the steam generating part.

[0056] Beneficial effects: The above solutions facilitate the removal of the ironing surface and also facilitate the assembly of the ironing surface and the steam generating part.

[0057] Preferably, as an improvement, an end cover is provided at one end of the housing, the steam generating part is detachably connected to the end cover, and the ironing surface is connected to the other end of the housing. A water tank is provided on the end cover, and the water tank is used to add water to the steam generating part.

[0058] Beneficial effects: When using the above solutions, both ends of the steam generating part can be more stably installed by the end cover and the ironing surface, and it is avoided that the steam generating part shakes or shifts unnecessarily during use.

[0059] Preferably, as an improvement, a support part is provided on the steam generating part, and the support part abuts against the inner wall of the housing.

[0060] Beneficial effects: By providing the support part, the steam generating part is more securely installed by the housing, and the connection stability of the steam generating part is further improved.

[0061] Preferably, as an improvement, the housing is connected to the handle part, the water tank is connected to the water pump, the water pump is attached to the handle part, and the water pump is connected to the steam generating part. The handle part is connected to the base, the circuit board is connected to the base, the circuit board is electrically connected to the steam switch and the intake switch, the steam switch is used to control the operating state of the steam generating part, and the intake switch is used to control the opening and closing of the intake part.

[0062] Beneficial effects: When a steam switch and an intake switch are set, it is convenient to control the corresponding operating state through the steam switch and the intake switch as needed.

[0063] The present invention can also adopt the following solutions.

[0064] The steam iron device includes a housing, and a working area is provided on the housing. The working area includes a first area and an annular second area surrounding the first area. The steam generating part is provided on the housing and is used to provide gas and / or vaporized liquid from the first area to the outside. The intake part is provided on the housing and is used to draw in gas and / or vaporized liquid from the second area to the inside.

[0065] Preferably, as an improvement, the intake part continuously provides an adsorption force to the object being ironed, so that the object being ironed is attached to the second area. The attached area shows a circular shape.

[0066] Preferably, as an improvement, the intake part is provided with an intake flow path connected to the second area, and the cross-sectional area of the intake flow path gradually becomes narrower from the front end to the rear end of the intake part.

[0067] Preferably, as an improvement, the intake part is provided with a gas collecting flow path connected to the intake flow path. The gas collecting flow path is linear, the intake flow path has an intake direction and is linear. The gas collecting flow path is arranged parallel to the intake direction and is located on one side of the intake direction.

[0068] Preferably, as an improvement, the intake part includes an intake baffle. The intake baffle is attached to the housing. An intake plate is provided on the intake baffle. The intake plate is annular. The intake plate limits the second area. The intake port is located on the intake plate. The intake flow path is provided on the intake baffle, and the intake port is connected to the intake flow path.

[0069] Preferably, as an improvement, a transition part is provided in the intake baffle, the transition part is connected to the exhaust baffle, and an exhaust port is provided in the exhaust baffle. An intake member exists between the transition part and the exhaust baffle. An air collecting flow path is provided inside the transition part and the exhaust port baffle.

[0070] Preferably, as an improvement, the steam generation part and the intake part operate synchronously, the steam generation part provides gas and / or vaporized liquid to the outside, and the intake part inhales gas and / or vaporized liquid inside.

[0071] Preferably, as an improvement, the steam generation part provides gas and / or vaporized liquid to the object to be ironed in the first area, as a result, the object to be ironed in the first area bulges with respect to the second area, and the object to be ironed is stretched while being heated.

Explanation of reference numerals

[0072] 100... housing, 101... insertion port, 110... end cover, 111... patch lock hook, 112... patch lock lever, 120... water tank, 130... water pump, 200... steam generation part, 210... connection plate, 211... fastener, 220... support part, 221... inner concave part, 300... ironing surface, 301... steam outlet, 400... intake part, 401... intake port, 402... intake flow path, 410... intake baffle, 411... transition part, 412... fixing projection, 420... intake plate, 430... exhaust baffle, 431... exhaust port, 432... fixing groove, 440... intake member, 450... flow path separation guide, 451... first arc-shaped concave surface, 452... second arc-shaped concave surface, 453... partition wall, 454... compartment, 500... handle part, 501... steam switch, 502... insertion piece, 600... base, 601... intake switch, 601... circuit board.

Claims

1. In a steam iron device in which a steam generation unit (200) is provided in a housing (100), the steam generation unit (200) is connected to an ironing surface (300), and a steam outlet (301) is provided in the ironing surface (300), an intake part (400) provided in the housing (100), an intake port (401) and a steam outlet (301) that are provided in the intake part (400) and are on the same side of the housing (100), A steam iron device characterized by comprising.

2. In the steam iron device according to Claim 1, the intake port (401) and the steam outlet (301) are located on the same plane A steam iron device characterized by this.

3. In the steam iron device according to Claim 1, an intake baffle (410) included in the intake part (400), an intake plate (420) installed on the intake baffle (410), an intake flow path (402) provided in the intake baffle (410), a transition part (411) provided in the intake baffle (410), an exhaust baffle (430) connected to the transition part (411), an exhaust port (431) provided in the exhaust baffle (430), including an intake member (440) provided between the transition part (411) and the exhaust baffle (430), A steam iron device in which the intake baffle (410) is attached to the housing (100) with a sleeve, the intake port (401) is located on the intake plate (420), and the intake port (401) is connected to an intake flow path (402).

4. In the steam iron device according to Claim 3, the intake port has a plurality, and a steam outlet is located within a region surrounded by the plurality of intake ports. A steam iron device characterized by this.

5. In the steam iron device according to Claim 3, a flow path separation guide (450) provided between the intake part and the exhaust baffle, a first arc-shaped inner concave surface (451) and a second arc-shaped concave surface (452) included in the flow path separation guide, a partition wall (453) formed by the connection between the first arc-shaped inner concave surface (451) and the second arc-shaped concave surface (452), including a compartment (454) formed between the first arc-shaped inner concave surface (451) and the second arc-shaped concave surface (452). The partition wall (453) is arranged facing the intake baffle (410), and the distance between the first arcuate inner concave surface (451) and the second arcuate concave surface (452) gradually increases from the direction of the partition wall (453) toward the compartment (454). A steam iron device characterized by the above.

6. In the steam iron device according to claim 5, The number of the exhaust ports (431) is a plurality arranged on both sides of the exhaust baffle (430), and the exhaust ports (431) on both sides of the exhaust baffle (430) respectively correspond to the first arcuate inner concave surface (451) or the second arcuate concave surface (452). A steam iron device characterized by the above.

7. In the steam iron device according to claim 1, The ironing surface (300) is removably connected to the steam generating part (200). A steam iron device characterized by the above.

8. In the steam iron device according to claim 1, An end cover (110) provided at one end of the housing (100), And a water tank (120) provided on the end cover (110), The steam generating part (200) is detachably connected to the end cover (110), the ironing surface (300) is snap-connected to the other end of the housing (100), and the water tank (120) is used to supply water to the steam generating part (200). A steam iron device characterized by the above.

9. In the steam iron device according to claim 8, Including a support part (220) provided on the steam generating part (200), The support part (220) is in contact with the inner wall of the housing (100). A steam iron device characterized by the above.

10. In the steam iron device according to claim 8, A handle part (500) connected to the housing (100), A water pump (130) connected to the water tank (120), A base (600) connected to the handle part (500), A circuit board (610) installed on the base (600), Including a steam switch (501) and an intake switch (601) electrically connected to the circuit board (610). The water pump (130) is installed on the handle part (500) and connected to the steam generation part (200). The steam switch (501) is used to control the operating state of the steam generation part (200), and the intake switch (601) is used to control the opening and closing of the intake part (400). A steam iron device characterized by the above.

11. In a steam iron device including a housing (100), An operating area provided on the housing (100), A first area included in the operating area, An annular second area surrounding the first area, A steam generation part (200) is provided on the housing (100). The steam generation part (200) is used to provide gas and / or vaporized liquid from the first area to the outside. An intake part (400) is provided on the housing (100), and the intake part (400) is used to inhale gas and / or vaporized liquid from the second area. A steam iron device characterized by the above.

12. In the steam iron device according to Claim 11, The intake part (400) continuously applies an adsorption force to the object to be ironed, and the object to be ironed contacts the second area, and the contact area is annular. A steam iron device characterized by the above.

13. In the steam iron device according to Claim 12, Including an intake flow path (402) provided in the intake part (400), The intake flow path (402) is connected to the second area, the intake flow path (402) is annular, and the cross-sectional area of the intake flow path (402) gradually decreases from the front end to the rear end of the intake part (400). A steam iron device characterized by the above.

14. In the steam iron device according to Claim 13, Including a gas collection flow path provided in the intake part (400), The gas collection flow path is connected to the intake flow path (402), The gas collection flow path is linear, the intake flow path (402) has an intake direction, and the gas collection flow path is arranged parallel to the intake direction and is located adjacent to the intake flow path (402). A steam iron device characterized by the above.

15. In the steam iron device according to Claim 14, An intake baffle (410) included in the intake part (400), An intake plate (420) provided on the intake baffle (410), An intake port (401) located in the second area, The intake baffle (410) is attached to the housing (100) by a sleeve, the intake section (400) is disposed on the intake baffle (410), and the intake plate (420) is annular and defines the second region. The intake baffle (410) is provided with the intake flow path (402), and the intake port (401) is connected to the intake flow path (402). A steam iron device characterized by the above.

16. In the steam iron device according to claim 15, a transition portion (411) provided in the intake baffle (410); an exhaust baffle (430) connected to the transition portion (411); an exhaust port (431) provided in the exhaust baffle (430) to which air is supplied; and an intake member (440) provided between the transition portion (411) and the exhaust baffle (430). The air collecting flow path is provided inside the transition portion (411) and the exhaust baffle (430). A steam iron device characterized by the above.

17. In the steam iron device according to claim 11, the steam generating section (200) and the intake section (400) operate synchronously, and while the steam generating section (200) provides gas and / or vaporized liquid to the outside, the intake section (400) sucks in gas and / or vaporized liquid inward. A steam iron device characterized by the above.

18. In the steam iron device according to claim 11, the steam generating section (200) supplies gas and / or vaporized liquid to the ironing object in the first region, and the ironing object in the first region bulges with respect to the second region and is stretched while being heated. A steam iron device characterized by the above.

Citation Information

Patent Citations

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