Steamer device

The one-piece plastic casing of the garment steamer addresses the issue of damage and weight by integrating the steaming head and grip, enhancing durability and user comfort through improved shock resistance and ergonomic design.

EP4678809A1Pending Publication Date: 2026-01-14SEB SA
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Patent Information

Application Number
EP2025184515
Authority / Receiving Office
EP · EP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-07-11
Filing Date
2025-06-23
Publication Date
2026-01-14

AI Technical Summary

Technical Problem

Existing portable garment steamers are prone to damage from drops and improper handling due to their multi-component construction, which includes a fan or motor, making them heavier and less user-friendly.

Method used

A one-piece plastic casing integrates the steaming head and gripping portion, enclosing the fan and steam generation system to enhance shock resistance and ergonomics, with modular units for assembly and protection against impacts.

Benefits of technology

The one-piece design improves the steamer's durability, reduces weight, and enhances user comfort by preventing component ejection and ensuring efficient steam and air circulation, while maintaining compactness and ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

A garment steamer having a portable case (3) comprising a steaming head (2) and a gripping portion extending in a direction transverse to the steaming head (2), the garment steamer further comprising: - an air suction circuit comprising a fan (40) and a motor (41) configured to drive the fan (40) in rotation; - a steam generation system; and - a treatment face intended to come into contact with a piece of textile to be steamed and having at least one steam distribution orifice (22) connected to the steam generation system and at least one air suction orifice (24) connected to the air suction circuit; the garment steamer being characterized in that the portable case (3) comprises a one-piece shell forming the gripping portion and at least a part of the steaming head (2).
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Description

FIELD OF INVENTION

[0001] The present invention relates to the field of household laundry care appliances, more specifically steam ironing appliances. STATE OF THE ART

[0002] To iron or clean fabric, a portable garment steamer, commonly called a "steam iron" or "steamer," can be used. These portable devices typically include a heating surface that is applied to the garment. This surface is heated and often features steam vents. By gliding the steamer over clothing or fabric, the steam helps remove creases and provides a cleaning, odor-removing, and even antibacterial effect. These devices offer an alternative to traditional irons by allowing for vertical steaming of fabrics.

[0003] To further improve the efficiency of such devices, garment steamers have been proposed that include a suction system at the surface being treated. This ensures that the fabric is properly pressed against the heated surface, thus preventing improper use of the device. In use, the garment steamer is designed to be held by the user in one hand for several minutes. Documents CN 113 389 029 A, FR 3 137 397 A1, CN 216 040 330 U, and CN 109 736 059 A describe such garment steamers. However, these improved devices require new components, such as a fan or motor, making them heavier and more difficult to handle.

[0004] The various assembled components are generally contained within a portable case made of two molded plastic shells. Garment steamers are not very resistant to drops, which can occur during improper handling or when the device is left resting on a surface. DESCRIPTION OF THE INVENTION

[0005] One aim of the invention is to provide an efficient portable garment steamer with increased shock resistance and therefore a longer lifespan.

[0006] This goal is achieved by a garment steamer having a portable unit comprising a steaming head and a gripping portion extending transversely to the steaming head, the garment steamer further comprising an air suction circuit comprising a fan and a motor configured to drive the fan in rotation; a steam generation system; and a treatment face intended to come into contact with a piece of textile to be steamed and having at least one steam distribution orifice connected to the steam generation system and at least one air suction orifice connected to the air suction circuit; the garment steamer being characterized in that the portable unit comprises a one-piece shell forming the grip portion and at least part of the steaming head.

[0007] Indeed, the proposed device includes various functions (air intake and steam projection) for effective wrinkle removal, while also being more robust against drops or impacts that may occur during use. The one-piece plastic casing absorbs shocks and thus protects the device's fragile components, typically the motor and fan of the air intake system and the steam generation system. Because the casing is a single piece, it cannot split open upon impact.

[0008] The garment steamer may have the following advantageous and non-limiting characteristics, taken alone or in any technically possible combination: The monobloc casing comprises an upper wall extending to the level of the steaming head, this upper wall defining a hollow volume in which the steam generation system is housed. The unit also includes a first modular unit configured to support the treatment surface and the steam generation system, this first modular unit being designed to be at least partially inserted into the hollow volume defined by the upper wall of the monobloc casing. This ensures that the steam generation system is protected by the upper wall. The unit further includes a sealing gasket arranged between the first modular unit and the upper wall of the monobloc casing, this gasket being configured to create an airtight seal between the first modular unit and the upper wall of the monobloc casing. This ensures that all air drawn in through the appropriate opening circulates within the air intake system.This also prevents liquid from entering the device from outside, except for the steam generation system. The upper wall extends around the entire perimeter of the steam generation system, which is fully enclosed within the hollow volume. The air intake system includes an upper air circulation channel formed between the upper wall of the monobloc casing and the steam generation system. This cools not only the high-temperature steam generation system but also the upper wall of the device, thus reducing the risk of burns during use.The device also includes a reservoir, and the upper wall of the one-piece casing incorporates a reservoir receiving wall. This receiving wall is located opposite the treatment face relative to the steaming head and features a liquid injection port. This liquid injection port is configured for a fluid connection between the reservoir and the steam generation system. This ensures optimal weight distribution, with the weight of the reservoir counterbalancing the weight of the treatment face and the steam generation system. Furthermore, the reservoir's rearward placement allows the user to easily monitor the liquid level when the reservoir is made of a transparent material.The gripping portion comprises a handle and a base. The base is positioned opposite the steamer head relative to the handle and includes a second modular unit designed to support the motor and fan, which is intended to be fitted into the base. This allows for optimal weight distribution of the functional components within the handheld unit, thus improving the device's ergonomics. The one-piece casing has a lower wall with an opening at the base. This opening allows for the insertion of the second modular unit into the handheld unit and also facilitates assembly. The opening is closed by a cover, which has at least one air exhaust vent connected to the air intake system. The intake air is thus vented at the base, rather than directed towards the user, improving user comfort.The second modular unit includes an add-on duct designed to be fitted inside the handle and to allow airflow to the fan when the motor is running. This facilitates assembly of the appliance and protects any electronic components located in the grip area outside the intermediate airflow channel. The add-on duct extends from the base of the handle to an upper end at the steaming head. The add-on duct includes a seal to prevent air from passing between the add-on duct and the one-piece housing at the upper end. This ensures that all air drawn in through the appropriate opening circulates within the air intake system. It also prevents condensation from forming outside the intermediate airflow channel.The second modular unit also includes control means for the garment steamer, such as an electronic circuit board, a suction mode selection button, and / or a spray trigger. This facilitates operation of the device. The device also includes a movable power button on the second modular unit, the one-piece casing of which has an opening through which the power button passes when the second modular unit is inserted into the handheld case. This allows for easy assembly of the second modular unit inside the handheld case. The device includes a sealing gasket between the power button and the one-piece casing to prevent water from entering the handheld case. The electronic components of the control means and the motor are thus protected.The treatment surface comprises a heated treatment plate and multiple air intake vents preferably arranged around the treatment plate. Applying a treatment plate heated to the appropriate temperature, combined with peripheral air intake that ensures the garment is in contact with the treatment plate, improves the quality of the steaming and reduces the time the garment remains ironed. The steam generation system includes a vaporization chamber connected to at least one steam distribution vent, with the vaporization chamber in thermal contact with the treatment plate. This allows the treatment plate to be heated simultaneously using the high temperature of the vaporization chamber and increases the appliance's compact size. The one-piece casing is made of plastic.The plastic material can be lightweight yet strong, as it possesses a degree of flexibility. The shell can be easily formed by molding.

[0009] From another perspective, a method for assembling a garment steamer, as described previously, is proposed, comprising the following steps: insertion of a first modular unit into an upper wall of the one-piece casing of the portable unit, at the level of the steaming head; insertion of a second modular unit into a lower wall of the one-piece casing of the portable unit, at the level of the gripping portion.

[0010] The process may further include a step of attaching a reservoir to the upper wall of the one-piece shell of the portable unit. DESCRIPTION OF THE FIGURES

[0011] Other features, purposes and advantages of the invention will become apparent from the following description, which is purely illustrative and not limiting, and which should be read in conjunction with the accompanying drawings on which: There figure 1 is a perspective view of a garment steamer according to an embodiment of the invention; The figure 2 is a cross-sectional view of the garment steamer figure 1 . There figure 3 is an exploded view of the garment steamer figure 1 , presenting the first and second modular units.

[0012] Across all figures, similar elements bear identical references. DETAILED DESCRIPTION OF THE INVENTION

[0013] With reference to the figure 1The garment steamer has a portable unit 3 comprising a steaming head 2 and a gripping portion extending transversely to the steaming head 2. "Transverse" means that the steaming head 2 extends in a direction (axis M) that is not parallel to the principal direction (axis P) along which the gripping portion extends. Thus, axis M forms a non-zero angle with axis P, and axis M may be orthogonal to axis P, or it may have a non-right angle with axis P, as in the illustrated embodiment.

[0014] The garment steamer 1 has the particularity that the portable case 3 includes a one-piece shell forming the grip portion and at least part of the steaming head 2.

[0015] Typically, the gripping portion includes a handle 31 and a base 4 opposite the steaming head 2 with respect to the handle 31. The handheld unit 3 may, in particular, have a flared shape at the base 4, i.e., be wider than at the handle 31. The handheld unit may include an upper wall formed by the one-piece casing, at the level of the steaming head 2.

[0016] Preferably, the one-piece casing is made of a plastic material. For example, the portable unit 3 can be made of polypropylene or polycarbonate. Using a lightweight and durable material reduces the device's weight and therefore its ease of use. Since plastic is generally less expensive and easier to mold than a metal alloy, this also reduces the manufacturing cost and can simplify production. The one-piece plastic casing is, for example, produced by molding.

[0017] When the garment steamer is in use, the handheld unit 3 is designed to be gripped by the user at the designated gripping area, specifically at the handle 31 formed between the steaming head 2 and the base 4. It is intended for one-handed operation. The handle 31 is then held by the user, with the steaming head 2 oriented towards the garment to be steamed. The handle 31 preferably has an ergonomic surface and shape to improve user comfort.

[0018] The garment steamer includes a treatment surface designed to be placed against a piece of fabric to be steamed, and more specifically, to be pressed against the fabric, typically hung on a hanger. The treatment surface is considered to correspond to a "front" end of the steamer head 2. The garment steamer 1 is then held approximately vertically. "Vertically" means that the steamer head 2 is above the grip portion of the handheld unit 3, or that the base 4 is below the handle 31.

[0019] When not in use, the garment steamer 1 can be placed on the base 4 in its resting position. As illustrated in figure 2The portable case 3 may include a flat underside, allowing the garment steamer 1 to be positioned vertically on the surface S. Preferably, the base 4 includes a lower surface forming a support, enabling the user to place the garment steamer 1 vertically on a flat surface, such as a table or shelf, in a resting position when not in use. The flared shape of the base 4 advantageously provides stability for the garment in the resting position.

[0020] Whether in use or at rest, the garment steamer 1 can be subjected to various impacts, including drops. The one-piece casing enhances the appliance's resistance and lifespan by protecting the various components of the steamer head 2 and the handle, and prevents components from being ejected from the steamer, as the one-piece casing cannot, for example, split in two. Steam generation system

[0021] The garment steamer includes a steam generation system adapted for steam emission at the treatment surface. To this end, the treatment surface has at least one steam distribution orifice 22 connected to the steam generation system, and intended to vent steam formed in the steaming head 2 at the level of the textile item to be steamed.

[0022] Preferably, the treatment face includes a heated treatment plate 20. The treatment plate 20 can be a metal plate, for example, made of aluminum. Applying a surface heated to a suitable temperature to the textile improves wrinkle removal. Such a heated treatment plate 20 can be heated by one or more heating elements 23 arranged in the steaming head 2 near the treatment plate 20. The treatment plate 20 can have various shapes, such as, for example, a rectangular or triangular shape.

[0023] The treatment plate 20 is traversed by the steam distribution orifice 22, typically located in a central position on the treatment plate 20, so that the projected steam is distributed over the surface of the textile piece pressed against the treatment face. Preferably, the treatment plate 20 comprises a plurality of steam distribution orifices 22 distributed over its surface. The steam distribution orifices 22 may be in the form of holes or slots.

[0024] Typically, the steam generation system includes a vaporization chamber 21, in steam communication with at least one steam distribution port 22. The vaporization chamber 21 is heated by a heating element 23. The heating element 23 is configured to heat the walls of the vaporization chamber 21, so that a liquid injected into the vaporization chamber 21 is vaporized. The vaporization chamber 21 is in steam communication with the exterior of the garment steamer at the treatment face, via the steam distribution port 22.

[0025] Preferably, the vaporization chamber 21 is in thermal contact with the treatment plate 20. This advantageously allows the treatment plate 20 to be heated via the vaporization chamber 21, which is brought to a temperature above 100°C, preferably between 140°C and 150°C. Thus, the garment steamer can be more compact and lighter. Alternatively or in addition, the heating element 23 of the steam generation system can be positioned near the treatment plate 20.

[0026] Preferably, the vaporization chamber 21 and the treatment plate 20 are a single unit, incorporating the heating element 23. In other words, the treatment plate 20 can be integral with the vaporization chamber 21; that is, the treatment plate 20 and the walls of the vaporization chamber 21 are made as a single piece, preferably from a conductive material such as a metal alloy, typically aluminum. This allows the treatment plate 20 and the vaporization chamber 21 to be heated simultaneously, further increasing the compactness of the garment steamer 1. Of course, in an alternative embodiment not shown, the treatment plate 20 may include its own heating element, independent of the heating element 23 of the steam generation system.

[0027] Preferably, the walls of the vaporization chamber 21 are made of a metal alloy, for example, aluminum. The heating element 23 can be a heating resistor located near the vaporization chamber 21, preferably inside the walls of the vaporization chamber 21. Preferably, the heating element 23 has a power rating of 2000 W or less, preferably between 1200 and 1400 W. This allows the walls of the vaporization chamber 21 to be heated efficiently to the appropriate temperature for vaporizing a liquid injected into the vaporization chamber 21, while simultaneously heating the processing plate 20. Air intake system

[0028] The garment steamer 1 includes an air intake system. This system is designed to draw air into the treatment surface. To achieve this, the treatment surface has at least one air intake opening 24 connected to the air intake system. This allows outside air to be drawn into the garment steamer 1 during operation, thus pressing the garment to be steamed against the treatment plate 20.

[0029] The air intake system includes a fan 40 and a motor 41 configured to rotate the fan 40 around a shaft 42. The fan 40, forming part of the air intake system, draws air from the air intake port 24 at the surface being treated. Preferably, the fan 40 and the motor 41 are arranged in the base 4. First modular unit 8

[0030] Preferably, the one-piece shell includes an upper wall extending to the level of the steaming head 2, the upper wall delimiting a hollow volume in which the steam generation system is arranged.

[0031] Preferably, the garment steamer also includes a first modular unit 8 configured to support the treatment surface and the steam generation system. This first modular unit is designed to be at least partially inserted into the hollow space defined by the upper wall of the one-piece casing. This provides partial protection for the steam generation system against impacts. It also simplifies assembly of the appliance, as will be detailed later.

[0032] Typically, the upper wall formed by the one-piece shell has an open front end. For example, the open front end can be the base of a cylindrical wall, integral with the gripping portion. The first modular unit 8 can include an end piece 26 intended to be fixed at the open front end, and configured to support the processing plate 20 and the steam generation system.

[0033] Preferably, the steamer head 2 includes a sealing gasket 27 located between the upper wall of the one-piece housing and the first modular unit 8. Typically, the sealing gasket 27 is arranged between the open front end of the upper wall and the nozzle 26. The sealing gasket 27 is configured to create a tight seal between the first modular unit and the upper wall of the one-piece housing. It prevents air from escaping into or out of the portable unit 3, particularly at the open front end. Thus, all the air drawn in through the air intake port 24 circulates within the air intake circuit around the steam generation system. The sealing gasket 27 is preferably also watertight.

[0034] Preferably, the upper wall should extend around the entire periphery of the steam generation system. In this way, the steam generation system is fully enclosed within the hollow volume and is completely protected from the outside.

[0035] The air intake system advantageously includes a top airflow channel formed between the upper wall of the one-piece casing and the steam generation system. In other words, air can flow around the steam generation system, confined by the upper wall of the handheld unit 3. This allows the upper wall of the handheld unit 3 to be cooled by convection. Since the upper wall of the handheld unit 3 is thus significantly cooled, it reduces the risk of a user accidentally dropping the device and being burned by contact with the upper portion. The space between the plastic casing and the steam generation system allows, through deformation, for shock absorption of the upper portion, typically during a fall, and therefore prevents damage to the components of the steam generation system.

[0036] Preferably, the treatment face includes a plurality of air intake ports 24. The air intake ports 24 can be arranged around the treatment plate 20, for example, around the entire circumference of the treatment plate 20. Alternatively, the air intake ports 24 can extend over several sides of the treatment plate 20. This improves the cooling of the portable housing 3 by convection, as the intake air circulates around the entire periphery of the steam generation system and thermally isolates the portable housing 3 from the steam generation system.

[0037] Preferably, the garment steamer 1 also includes a filter grid covering the air intake 24 to filter the air drawn in through the air intake 24. The filter grid can then cover all the air intake 24. Preferably, it is not housed in a cavity, but is in contact with the garment during operation. This prevents it from becoming quickly clogged with particles.

[0038] Preferably, the air suction circuit is configured to allow an air suction flow rate greater than 10 m³ / h and less than 60 m³ / h and, preferably still, an air suction flow rate greater than 20 m³ / h and less than 50 m³ / h.

[0039] Preferably, a pump 25 is also arranged in the steaming head 2, in fluid communication with the steam generation system. Typically, the liquid is injected into the vaporization chamber 21 via the pump 25. The pump 25 is preferably located near the vaporization chamber 21, and can also be mounted on the first modular unit 8 before assembly of the first modular unit 8 onto the monobloc shell. Second modular unit 9

[0040] As explained previously, the gripping portion may include the handle 31 and the base 4. Typically, the plastic housing includes a wall delimiting a hollow volume in which the fan 40 and the motor 41 are arranged. Thus, the motor 41 and the fan 40 are protected from impacts by the one-piece housing. The hollow volume delimits a lower air circulation channel, through which the airflow from at least one air intake port 24 flows when the fan 40 is rotating.

[0041] Preferably, the garment steamer also includes a second modular unit 9 configured to support the motor 41 and the fan 40 and intended to be arranged in the base 4. This makes it easier to assemble the device, as will be described later.

[0042] Preferably, the one-piece shell includes at the base 4 a lower wall having an opening 46. The opening 46 is intended to allow insertion of the second modular unit 9 inside the portable case 2.

[0043] Opening 46 is typically located on the lower surface of the portable housing 3. Opening 46 is sized to allow the insertion of the motor 41 and the fan 40 into the lower portion from outside the device. In other words, opening 46 is large enough to allow the passage of the second modular unit 9, which supports the components of the base 4. The motor 41 and the fan 40 are thus protected by the one-piece housing.

[0044] The opening 46 is preferably closed by a cover 45. The cover 45 can be attached to the plastic casing by any means, for example, by a screw or a mechanical system holding it in position within the opening 46. The presence of a separate cover 45 advantageously allows for cleaning the lower air circulation channel, for example, removing particles or lint that may have been drawn into the appliance and could obstruct the rotation of the motor 41 around its axis 42. The cover 45 also allows for the removal of defective components after assembly and facilitates maintenance of the garment steamer. This contributes to increasing its service life.

[0045] Preferably, the cover 45 has at least one air exhaust vent connected to the air intake circuit, typically to the lower air circulation channel. This at least one air exhaust vent allows the air drawn in through the air intake vent 24 to be expelled from the device.

[0046] Typically, the handle 31, formed by the one-piece casing, includes a hollow volume defining an intermediate air circulation channel in fluid communication with the upper and lower air circulation channels. This intermediate air circulation channel allows air to flow from the steamer head 2 to the base 4 where the fan 40 is located. Thus, the air intake circuit extends into the handle 31 of the steamer 1.

[0047] Preferably, the second modular unit 9 includes an added duct 32 intended to be arranged inside the handle 31 and to allow airflow towards the fan 40 when the motor 41 is rotating. The intermediate airflow channel is then formed by the added duct 32 inside the handle 31.

[0048] Typically, the attached duct 32 extends into the handle 31 from the second modular unit 9 assembled in the base 4 to an upper end at the level of the steamer head 2. Preferably, the attached duct 32 includes a sealing gasket 33 disposed on its upper end to prevent air from escaping outside the air circulation channel at the upper end of the duct. In other words, the sealing gasket 33 is configured to prevent air from passing between the attached duct 32 and the one-piece housing at its upper end.

[0049] The airflow from the air intake 24 in the upper air circulation channel thus passes through the intermediate air circulation channel without escaping from the steamer 1. This limits pressure loss and improves suction efficiency, thereby enhancing the quality of the steaming. The sealing gasket 33 is preferably also watertight. This prevents condensate from flowing towards the steamer head 2, which could cause short circuits. Ordering methods

[0050] Preferably, the second modular unit 9 comprises control means for the garment steamer, including an electronic circuit board, and / or a suction mode selection button 73, and / or a steam trigger 72. The control means are configured to control steam emission and air suction. Preferably, the control means are located on the handle 31 so that they can be operated by the user with the hand used to hold the garment steamer 1. This makes the garment steamer 1 more ergonomic and easier to use.

[0051] The control means are connected to an electronic board located in the base 4, which is typically attached to the second modular unit 9. This unit is designed to be inserted into the monobloc casing at the opening. The lower airflow channel preferably has a smaller volume than the base 4, so as to leave a confined space outside the air intake circuit. The electronic board can be mounted on the second modular unit 9 before assembly inside the portable case 3, so that it is positioned outside the lower airflow channel and protected by the plastic casing. This prevents short circuits.

[0052] The garment steamer 1 may include a power button 74, allowing the garment steamer 1 to be switched on. This prevents the appliance from overheating as soon as it is connected to the household electrical network, thus simplifying and ensuring safe switching on and off for the user. Preferably, the power button 74 is mounted movably on the second modular unit 9.

[0053] Typically, the base of the ignition button 74, where it contacts the second modular unit 9, is chamfered. This means that the edges of the base are beveled at a certain angle, typically 45 degrees. The second modular unit 9 may also have a matching chamfer. The ignition button 74 can be attached to the second modular unit 9 using screws, clips, or other fastening mechanisms. Springs or return mechanisms can be advantageously added to ensure that the ignition button 74 returns to its initial position after being pressed.

[0054] The one-piece casing preferably includes an opening for the power button 74 to pass through when the second modular unit 9 is inserted into the portable casing 3. Typically the power button 74 protrudes outside the device when the second modular unit 9 is assembled to the one-piece casing.

[0055] The chamfer helps guide the ignition button 74 into its correct position during assembly, facilitating alignment and insertion. This makes it easier to assemble the second modular unit 9 inside the portable housing 3, as the ignition button is easily aligned with the handle 31 without mechanical stress. Furthermore, the ignition button 74 provides a better grip and is more comfortable to use, thus improving the ergonomics of the device.

[0056] Preferably, the garment steamer includes a sealing gasket arranged between the power button 74 and the one-piece casing, so as to prevent water from entering the portable unit 3. This ensures the watertightness of the unit, and in particular protects the electronic board located in the confined space of the base 4.

[0057] The garment steamer 1 may include a steam trigger 72, configured to allow targeted steam dispensing from at least one steam dispensing orifice 22. For example, pressing the steam trigger 72 by the user can activate the pump 25 and inject liquid from the reservoir 5 into the steaming chamber 21. Water in liquid and / or vapor form can then be sprayed onto the garment to be steamed opposite the treatment plate 20, thus improving steaming efficiency. Preferably, steam is projected outside the garment 1 as long as the steam trigger 72 is held down by the user.Pressing the vaporization trigger 72 can also activate the motor 41, thus rotating the fan 40 so that an airflow is drawn in through the air intake port 24 when the device is in suction operating mode.

[0058] Preferably, pump 25 is configured to supply the steam generation system with a flow rate of 35 ml / min or less. This flow rate is sufficient to distribute steam to the garment being steamed. The flow rate must be limited to reduce the risk of liquid splashing outside the appliance, which could cause burns or damage the garment.

[0059] The garment steamer 1 may include, for example, a suction mode selector button 73. This button typically allows the user to select an operating mode for the garment steamer 1. Typically, the suction mode selector button 73 can control, via the electronic control board, the power supply to the motor 41 in order to modulate the rotational speed of the fan 40 and thus the flow rate of the suctioned air. Preferably, the garment steamer 1 can also operate in a mode without suction. This allows the device to be adapted to the type of textile item being steamed. Assembling the device

[0060] According to another aspect, a method for assembling the garment steamer 1 as described previously is proposed.

[0061] The garment steamer can be assembled simply, following these steps: insertion of a first modular unit 8 into an upper wall of the one-piece shell of the portable unit 3, at the level of the steaming head 2; insertion of a second modular unit 9 into a lower wall of the one-piece shell of the portable unit 3, at the level of the gripping portion.

[0062] The two steps can be carried out successively, in any order.

[0063] For example, the second modular unit 9 can be inserted into the portable housing 3 first, before the first modular unit 8 is assembled onto the housing. In this embodiment, the method preferably includes an intermediate step in which an electrical connection cable 97 of the second modular unit 9 is deployed outside the portable housing so as to be connected to an electrical connector 28 of the first modular unit 8. Thus, during the assembly of the first modular unit 8, the electrical connection can be made automatically.

[0064] The first modular unit 8 can be mounted on the upper wall of the portable housing 3, formed by the one-piece shell, starting from the open front end. The vapor generation system is located inside the cylindrical wall. Typically, assembly can be achieved by screwing or snapping. For example, an internal surface of the upper wall of the one-piece shell includes a male plug mechanism, and a portion of the first modular unit 8 includes a female plug mechanism. The male and female plug mechanisms are designed to fit together securely. The treatment plate 20 completely covers the open front end, and the presence of the sealing gasket 27 preferably ensures a tight seal.

[0065] Alternatively, the steam generation system connected to the pump 25 can be inserted into the upper portion of the portable housing 3. Typically, the plastic housing may include flat sections forming rails for receiving the various components of the steam generation system. The treatment plate 20 can then be attached to the portable housing 3 to close the open end. The steam generation system is thus completely protected from the outside.

[0066] The second modular unit 9, comprising the motor 41 and the fan 40, is assembled by insertion into the one-piece housing, inside the base. The optional added duct 32 is then configured to mechanically connect to the steaming head 2. This reinforces the mechanical strength of the components after assembly.

[0067] Preferably, the handle 31 has a substantially cylindrical shape, with an internal diameter greater than the diameter of the attached duct 32. This creates a gap between the wall of the attached duct 32 and the plastic housing at the handle 31. This allows for the passage of connectors, typically linking the device's control means to the electronic board. Advantageously, this gap is confined outside the air circulation circuit, thus preventing the electronic components from being in a humid environment, as the intake air circulating within the device is laden with vapor.

[0068] The steam generation system is connected via a fluid connection to a liquid reservoir 5, in order to generate steam from the liquid stored in the reservoir 5, typically water or a cleaning solution diluted in water. This fluid connection can be achieved conventionally via a tube from the portable unit 3 connecting the pump 25 to the reservoir 5.

[0069] Preferably, the assembly process then further includes a step of fixing the reservoir 5 to the upper wall of the one-piece shell of the portable unit 3. Typically, the upper wall of the one-piece shell includes a receiving wall for the reservoir 5 opposite the treatment face with respect to the steaming head 2. The reservoir 5 can be mounted on the receiving wall for the reservoir 5, for example after assembly of the first modular unit 8 onto the steaming head 2.

[0070] The receiving wall typically includes a liquid injection port, configured to allow a fluid connection between the reservoir 5 and the vaporization system. For example, the liquid injection port communicates with a liquid inlet channel of the pump 25. For example, the pump 25 is positioned during assembly in a central area of ​​the upper portion of the portable housing 3, between the vapor generation system and the reservoir 5.

[0071] Since the reservoir 5 is located outside the portable unit 3, it is not necessary to disassemble the device to refill the reservoir 5. The reservoir 5 preferably has a capacity of approximately 100 mL. The reservoir 5 may include a filling opening closed by a cap. The reservoir 5 preferably includes a transparent casing, defining the outer wall of the reservoir 5, fitted with a removable cap for refilling the reservoir 5. Alternatively or additionally, the reservoir 5 may be removably mounted on the portable unit 3. This allows for easy refilling of the steamer with liquid.

[0072] The reservoir 5 preferably includes a ball valve, configured to close when the reservoir 5 is disconnected from the portable housing 3, to prevent water from flowing out of the reservoir 5. Preferably, the reservoir 5 includes a vent configured to allow air to enter when the water level drops in the reservoir 5 and to prevent the reservoir 5 from becoming under negative pressure. Advantageously, the vent is also configured to allow air contained in the reservoir 5 to be expelled when the pressure in the reservoir 5 increases.

[0073] The garment steamer 1 is designed for easy handling and is therefore intended to have a balanced mass distribution between the steaming head 2 and the base 4. Thus, the garment steamer 1 advantageously has a center of gravity located in the handle 31, regardless of the fill level of the reservoir 5. This helps to reduce the risk of the appliance falling when it is in the resting position.

[0074] Preferably, the mass of the steaming head 2 and the mass of the base 4 are each at least 40% of the total mass of the steamer 1, typically less than or equal to 1.4 kg. The steamer 1 is thus easy to handle and ergonomic, as the masses of the steaming head 2 and the base 4 are substantially equivalent. Powering the device

[0075] The garment steamer 1 can be powered by a power cord 6, designed to be plugged into a standard electrical outlet to connect the garment steamer 1 to a household electrical network. The power cord 6 operates the components of the steam generation system and the air suction circuit. In particular, it provides power to the electronic board, the motor 41, and the heating element 23.

[0076] Preferably, the power cord 6 can be attached to the portable unit 3, for example at the base, near the underside. This improves the balance and ergonomics of the device. The power cord 6 can also be detachable. Typically, the one-piece casing can include an opening for connecting the second modular unit 9 to the power cord 6.

[0077] Preferably, an electrical connection is then established with the components of the first modular unit 8, in particular with the heating element 23 of the steam generation system. As explained previously, the electrical connection cable 97 of the second modular unit 9, connected to the power cord 6, can be deployed outside the portable case 3 at the steaming head 2 during a step of the assembly process. The connection cable 97 is then connected to the electrical connector 28 of the first modular unit 8, when it is assembled to the portable case 3.

[0078] The power cord 6 is preferably between 100 cm and 300 cm long. This allows a user to advantageously apply the treatment plate 20 to a garment hanging on a hanger at a height of more than 1.5 meters from the floor. The power cord 6 is of limited length to reduce the risk of unbalancing the device. Using the garment steamer

[0079] The operation of the garment steamer 1 will now be described. When the user wishes to use the garment steamer 1, they fill the reservoir 5 with liquid, typically water. They connect the garment steamer 1 to the household electrical supply using the power cord 6 and then switch the garment steamer 1 on by pressing the power button 74.

[0080] The heating element 23 of the steam generation system is then supplied with electrical current to reach its operating temperature. Preferably, the treatment plate 20 is also heated.

[0081] When the user wishes to use the device 1 in a vertical steaming position, he brings the treatment plate 20 vertically opposite the piece of textile to be steamed and then presses on the control means, for example on the vaporization trigger 72, which has the effect of operating the pump 25 and allowing the flow of liquid from the reservoir 5 to the vaporization chamber 21.

[0082] The steam produced in the vaporization chamber 21 then escapes through the steam distribution orifices 22. The steam is then diffused onto the textile piece which, combined with the heating and drying action of the treatment plate 20, allows for effective wrinkle removal.

[0083] Simultaneously, the control means can be provided to activate an air intake in conjunction with the steam distribution. Typically, the pressure of the steam trigger 72 drives the motor 41. Consequently, the fan 40 rotates around the shaft 42, drawing air in through the air intake 24. This intake presses the textile piece against the treatment surface. The steam emission combined with the intake thus optimizes the wrinkle removal. Furthermore, the air intake also promotes drying of the portion of the textile piece that has just been steamed. It has been observed that this particular process allows the wrinkle removal effect to be maintained for a longer period after the textile piece has been treated.Advantageously, the suction control button 73 can be used to change the rotation speed of the motor 41, and thus adapt the suction airflow to the textile item to be steamed.

[0084] In another embodiment, the control means allow the user to control the suction independently of the steam distribution control. Thus, the user could control the steam distribution alone or in combination with the suction.

[0085] During treatment, the user can move the steamer 1 vertically, for example, from top to bottom, to treat all or part of the garment. The steamer 1 can also be used occasionally in a horizontal steaming position, for example, to steam a horizontally placed garment by bringing the treatment surface horizontally above the garment. For example, the garment might be placed against a table, such as a tablecloth, or be part of a piece of furniture, such as an armchair.

[0086] The invention is not limited to the embodiment described and illustrated in the accompanying figures. Modifications to non-essential features of the garment steamer remain possible, particularly with regard to the composition of the various technical characteristics or by substitution of technical equivalents, without departing from the general principles of the invention.

Claims

1. A garment steamer having a portable casing (3) comprising a steaming head (2) and a gripping portion extending transversely to the steaming head (2), the garment steamer further comprising: - an air intake circuit including a fan (40) and a motor (41) configured to drive the fan (40) in rotation; - a steam generation system; and - a treatment surface intended to be brought into contact with a piece of textile to be steamed and having at least one steam distribution port (22) connected to the steam generation system and at least one air intake port (24) connected to the air intake circuit; the garment steamer being characterized in that the portable unit (3) comprises a one-piece casing forming the grip portion and at least part of the steaming head (2), and in thatthe one-piece shell includes an upper wall extending at the level of the steaming head (2), the upper wall delimiting a hollow volume in which the steam generation system is arranged.

2. Wrinkle-removing device according to claim 1, further comprising a first modular unit (8) configured to support the treatment face and the steam generation system, the first modular unit (8) being intended to be at least partially inserted into the hollow volume delimited by the upper wall of the one-piece shell.

3. Wrinkle-removing device according to claim 2, further comprising a sealing gasket (27) arranged between the first modular unit (8) and the upper wall of the one-piece shell, the sealing gasket (27) being configured to make a watertight connection between the first modular unit (8) and the upper wall of the one-piece shell.

4. Wrinkle-steaming device according to any one of claims 1 to 3, wherein the upper wall extends over the entire periphery of the steam generation system, the steam generation system being arranged entirely within the hollow volume, and wherein the air suction circuit comprises an upper air circulation channel formed between the upper wall of the one-piece shell and the steam generation system.

5. Wrinkle-removing apparatus according to any one of claims 1 to 4, further comprising a reservoir (5) and wherein the upper wall of the one-piece shell comprises a receiving wall for the reservoir (5), the receiving wall being opposite the treatment face relative to the wrinkle-removing head (2) and having a liquid injection orifice, the liquid injection orifice being configured for a fluidic connection between the reservoir (5) and the steam generation system.

6. Garment steaming device according to any one of claims 1 to 5, wherein the gripping portion comprises a handle (31) and a base (4), the base (4) being opposite the steaming head (2) relative to the handle (31), and comprising a second modular unit (9) configured to support the motor (41) and the fan (40) and intended to be arranged in the base (4).

7. Wrinkle-searing device according to claim 6, wherein the one-piece shell includes at the base (4) a lower wall having an opening (46), the opening (46) being intended to allow insertion of the second modular unit (9) inside the portable case (2).

8. Wrinkle-removing device according to claim 7, wherein the opening (46) is closed by a cover (45), the cover (45) having at least one air exhaust orifice connected to the air suction circuit.

9. Garment steaming device according to any one of claims 6 to 8, wherein the second modular unit (9) includes an added duct (32) intended to be arranged inside the handle (31) and to allow circulation of an airflow towards the fan (40), when the motor (41) is rotating.

10. Garment steamer according to claim 9, wherein the added conduit (32) extends in the handle (31) from the base (4) to an upper end at the level of the steamer head (2), the added conduit (32) comprising a sealing gasket (33) so as to prevent air passage between the added conduit (32) and the one-piece shell at the upper end.

11. Garment steamer according to any one of claims 6 to 10, wherein the second modular unit (9) further comprises means for controlling the garment steamer, including an electronic board, and / or a suction mode selection button (73), and / or a vaporization trigger (72).

12. Wrinkle-removing device according to any one of claims 6 to 11, further comprising a switch (74) movablely mounted on the second modular unit (9), and in which the one-piece casing includes an opening suitable for the switch (74) to pass through when the second modular unit (9) is inserted into the portable case (3).

13. Garment steamer (1) according to claim 12, comprising a sealing gasket arranged between the power button (74) and the one-piece casing, so as to prevent water infiltration inside the portable casing (3).

14. Method of assembling a garment steamer according to any one of claims 1 to 13, comprising the steps of: - inserting a first modular unit (8) into an upper wall of the one-piece casing of the portable unit (3), at the level of the steamer head (2); - inserting a second modular unit (9) into a lower wall of the one-piece casing of the portable unit (3), at the level of the gripping portion.

15. Assembly method according to claim 14, further comprising a step of fixing a reservoir (5) to the upper wall of the one-piece shell of the portable case (3).

Citation Information

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