This application is a national stage of International Application No. PCT/CN2019/109504, filed Sep. 30, 2019, which claims the benefit of Chinese Application No. 201811147533.7, filed Sep. 29, 2018, in the China National Intellectual Property Administration, the disclosures of which are incorporated herein by reference.
The invention relates to a device with a steam generation function, such as a garment steamer, a steam footbath, or a hand steamer.
Common devices with a steam generation function, such as garment steamers and steam footbaths, typically include a water storage cavity, a heating cavity with a steam outlet, a guide channel for communicating the water storage cavity with the heating cavity, and a heating element configured in the heating cavity. The heating element of existing garment steamers and steam footbaths is generally configured on the bottom wall of the heating cavity, and the steam outlet is generally configured above the heating element in the vertical direction. Under such configuration, steam may be directly ejected via the steam outlet when water is heated and boiled in the heating cavity, thus resulting in potential safety hazards. In view of this, the present application is put forward.
The technical issue to be settled by the invention is to provide a device with a steam generation function to eliminate potential safety hazards of existing garment steamers and steam footbaths caused by direct ejection of boiling water via the steam outlet.
To settle the aforesaid technical issue, the invention provides a device with a steam generation function, which comprises a water storage cavity, a heating cavity with a steam outlet, a guide channel for communicating the water storage cavity with the heating cavity, and a heating element configured in the heating cavity, wherein the heating cavity has a first chamber and a second chamber communicated with the first chamber, and the first chamber is located on one side of the second chamber; and the heating element is configured in the first chamber, and the steam outlet is formed in the second chamber and is spaced from the first chamber in the horizontal direction by a preset first distance to prevent boiling water in the first chamber from being ejected via the steam outlet.
Preferably, a bottom wall of the first chamber is lower than a bottom wall of the second chamber.
Preferably, the first chamber and the second chamber have a common first wall which is located at a junction of the bottom wall of the first chamber and the bottom wall of the second chamber, and the top surface of the first wall is higher than the bottom wall of the first chamber.
Preferably, the first chamber and the second chamber have a common second wall which is located at a junction of a top wall of the first chamber and a top wall of the second chamber; and the second wall is used for preventing boiling liquid in the first chamber from entering the second chamber, and an air hole or an air channel for communicating the first chamber with the second chamber is formed in the second wall.
Preferably, the device has an expansion chamber communicated with the steam outlet and used for steam expansion, and multiple steam diffusion ports are formed in the expansion chamber.
Preferably, a check valve for preventing water from flowing back into the water storage cavity is configured in the guide channel.
Preferably, the device is a garment steamer, a steam footbath, or a hand steamer.
By adoption of the above technical solution, the invention fulfills the following technical effects:
1. According to the technical solution of the present application, the heating cavity has the first chamber and the second chamber which are spaced from each other in the left-right direction, the heating element is configured in the first chamber, and the steam outlet is formed in the second chamber and is spaced from the first chamber in the horizontal direction by a preset first distance, so that boiling water under the direct action of the heating element will not be directly ejected via the steam outlet like the prior art, thus eliminating potential safety hazards of the prior art;
2. The bottom wall of the first chamber is lower than the bottom wall of the second chamber, so that when there is a little water in the heating cavity, the water can be collected in the first chamber to be heated; and meanwhile, by adoption of such design, the junction of the bottom wall of the first chamber and the bottom wall of the second chamber is inclined to ensure that boiling water will not be directly ejected into the second chamber when there is a little water in the heating cavity.
3. Through the design of the first wall, boiling water in the first chamber will not gush into the second chamber and will not be ejected via the steam outlet;
4. Through the design of the second wall, boiling water in the first chamber will not gush into the second chamber and will not be ejected via the steam outlet when the water level in the heating cavity is high.
To make the purposes, technical solutions and advantages of the implementations of the invention clearer, the technical solutions of the implementations of the invention are explicitly and completely described below in conjunction with the accompanying drawings of the implementations. Obviously, the implementations described hereinafter are merely illustrative ones, and are not all possible ones of the invention. All other implementations obtained by those ordinarily skilled in the art on the basis of the following ones without creative labor should also fall within the protection scope of the invention. Therefore, the following detailed description of the implementations provided by the accompanying drawings is not intended to limit the protection scope of the invention, and is merely used to illustrate specified implementations of the invention.
Referring to
Referring to
The heating cavity 2 has a first chamber 21 and a second chamber 22 communicated with the first chamber 21. In this embodiment, the first chamber 21 is located on the right side of the second chamber 22. A water inlet 2A of the heating cavity 2 is formed in the second chamber 22 which is communicated with the guide channel 3. The heating element 5 is configured in the first chamber 21 and is specifically configured on the bottom wall of the first chamber 21. The steam outlet 2B is formed in the second chamber 22 and is spaced from the first chamber 21 in the horizontal direction by a preset first distance L1 to prevent boiling water in the first chamber 21 from being ejected via the steam outlet 2B. Preferably, the first distance L1 ranges from 1 cm to 10 cm, such as 3 cm. In another embodiment, the first chamber 21 may be located on the left side of the second chamber 22. In another embodiment, the water inlet 2A of the heating cavity 2 may be formed in the first chamber 21 which is communicated with the guide channel 3.
In this embodiment, a bottom wall of the first chamber 21 is lower than a bottom wall of the second chamber 22, and a height difference L2 between the bottom wall of the first chamber 21 and the bottom wall of the second chamber 22 ranges from 0.2 cm to 5 cm, such as 3 cm.
In this embodiment, the first chamber 21 and the second chamber 22 have a common first wall 23 which is located at a junction of the bottom wall of the first chamber 21 and the bottom wall of the second chamber 22; and a top surface of the first wall 23 is higher than the bottom wall of the first chamber 21, and a height difference L3 between the top surface of the first wall 23 and the bottom wall of the first chamber 21 ranges from 0.2 cm to 5 cm, such as 4 cm.
In this embodiment, the first chamber 21 and the second chamber 22 have a common second wall 24 which is located at a junction of a top wall of the first chamber 21 and a top wall of the second chamber 22. The second wall 24 is used for preventing boiling liquid in the first chamber 21 from entering the second chamber 22, and an air hole or an air channel (not shown) for communicating the first chamber with the second chamber is formed in the second wall 24. An extension distance L4 of the second wall 24 in the vertical direction ranges from 1 cm to 8 cm, such as 4 cm.
In this embodiment, the device has an expansion chamber 7 communicated with the steam outlet 2B and used for steam expansion, and multiple steam diffusion ports 7A are formed in the expansion chamber 7. The multiple steam diffusion ports 7 may be regularly distributed to enlarge the steam diffusion area.
In another embodiment, the device may be a steam footbath, a hand steamer, or a face steamer.
Number | Date | Country | Kind |
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201811147533.7 | Sep 2018 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2019/109504 | 9/30/2019 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2020/064010 | 4/2/2020 | WO | A |
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2233048 | Eckstein | Feb 1941 | A |
2506941 | Scott | May 1950 | A |
2861365 | Block | Nov 1958 | A |
4366367 | Mazzucco | Dec 1982 | A |
4496826 | Osrow | Jan 1985 | A |
5279055 | Eckert | Jan 1994 | A |
7389597 | Chen | Jun 2008 | B1 |
Number | Date | Country |
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101476713 | Jul 2009 | CN |
201962530 | Sep 2011 | CN |
207455553 | Jun 2018 | CN |
108561870 | Sep 2018 | CN |
109058967 | Dec 2018 | CN |
209196821 | Aug 2019 | CN |
Entry |
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International Search Report dated Jan. 2, 2020, issued to International Application No. PCT/CN2019/109504. |
Number | Date | Country | |
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20210222870 A1 | Jul 2021 | US |