Novel portable oxyhydrogen cabin
By designing a detachable matching structure of the base and the humidifier pot in the portable hydrogen and oxygen cabin, the problems of complicated operation of the humidifier bottle and single humidification method are solved, convenient cleaning of the humidifier pot and flexible humidification of multiple gases are achieved, and the user experience is improved.
Patent Information
- Application Number
- CN202422415637.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The humidification bottles of existing oxygen and hydrogen generators are complicated to operate and inconvenient to clean. In addition, the trachea is exposed when multiple gases are input and output, resulting in inconvenient operation and a single humidification method, which affects the user experience.
A new portable hydrogen and oxygen cabin is designed. By installing multiple delivery pipes on the base, the humidifier pot and the base can be detachably matched, and multiple docking ports are used to achieve sealed docking, which simplifies the disassembly and assembly process of the humidifier pot. Partitions are also set in the humidifier pot for multi-gas humidification.
The cleaning operation of the humidifier is simplified, the cleaning efficiency is improved, the sealing and ease of use are enhanced, and flexible humidification of multiple gases and a comfortable oxygen inhalation experience are achieved.
Smart Images

Figure CN223299291U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of oxygen supply equipment, and in particular to a novel portable hydrogen-oxygen cabin. Background Art
[0002] Good humidification of respiratory gas makes the user's inhalation experience comfortable and helps with expectoration. It is also very important to avoid gas drying and excessive temperature that damages the respiratory tract and internal respiratory organs. Existing oxygen concentrators or hydrogen concentrators, as well as micro-pressure oxygen enrichment chambers and hyperbaric oxygen chambers, all have humidification bottles when outputting gas, but most of them are round bottle-type one-in-one-out humidification bottles, and are externally mounted and placed in machine grooves. This makes it convenient for consumers to replace the water or disassemble them for cleaning, but the trachea is exposed, which does not meet the requirements of neatness and beauty. Each time the humidification bottle is cleaned, all the trachea must be removed from the humidification bottle first. After the humidification bottle is cleaned and water is added, the trachea must be reconnected, which is complicated and inconvenient to use. In addition, if the input and output of two or more types of gases are to be achieved, the problems of exposed trachea and inconvenient operation are more prominent, resulting in an increase in the volume of the humidification container. Moreover, the humidification method is single, with only the gas humidification input from the bottom underwater rushing into the water, which creates a loud water rolling sound and takes away too much water, causing an uncomfortable feeling of breathing water droplets, and cannot achieve a waterfall-like humidification that reduces water output. Utility Model Content
[0003] The purpose of the utility model is to provide a novel portable hydrogen-oxygen cabin, which can simplify the cleaning operation of the humidifier pot, reduce the cleaning difficulty and improve the cleaning efficiency.
[0004] The embodiment of the present utility model is achieved as follows:
[0005] In a first aspect, the present invention provides a novel portable hydrogen-oxygen cabin, comprising:
[0006] A base, a humidifying pot and a plurality of delivery pipes; the plurality of delivery pipes are all installed on the base; the humidifying pot is provided with a plurality of docking ports, the humidifying pot and the base are detachably matched, and when the humidifying pot is installed on the base, the plurality of docking ports are respectively and one-to-one sealed with the plurality of delivery pipes.
[0007] In an optional embodiment, the humidifier pot and the base are slidably matched so that the multiple docking ports are sealed and matched with the multiple delivery pipes one by one or the docking ports are separated from the corresponding delivery pipes.
[0008] Based on this solution, when the humidifier needs to be removed from the base for cleaning, the humidifier is simply pulled, making the operation quick and easy. Furthermore, after cleaning and adding water, the humidifier is simply inserted into the corresponding position on the base, making assembly easy. The docking port and the delivery pipe can be connected or disconnected by plugging and unplugging, providing convenient and reliable operation and an effective seal.
[0009] In an optional embodiment, the humidifying pot includes a pot body and a plurality of hollow columns installed on the pot body, the docking port is provided on the hollow columns, and the plurality of hollow columns are respectively plugged into the plurality of conveying pipes in a one-to-one correspondence.
[0010] Based on the above solution, the hollow column is inserted into the conveying pipe to achieve assembly, the plug-in matching structure is simple and reliable, and the plug-in operation is convenient and fast. In addition, the hollow column is inserted into the conveying pipe, and the contact area between the two is large, and the sealing performance is high.
[0011] In an optional embodiment, a sealing ring is provided between the outer circumference of the hollow column and the delivery pipe.
[0012] Based on the above solution, the gap between the hollow column and the conveying pipe is sealed by the sealing ring, and the sealing performance is greatly improved.
[0013] In an optional embodiment, an annular positioning groove arranged around the axis of the hollow column is provided on the outer circumferential surface of the hollow column, and the sealing ring is clamped in the annular positioning groove.
[0014] Based on the above solution, the sealing ring is positioned in the annular positioning groove on the hollow column. The position of the sealing ring relative to the hollow column is stable. The sealing ring is not easy to shift or fall off during the insertion and removal of the hollow column, and is safe and reliable to use.
[0015] In an optional embodiment, at least a portion of the conveying pipeline is configured as a hose segment, and the hollow column is inserted into the hose segment.
[0016] Based on the above solution, the hollow column is inserted into the hose section, and the hose section can adaptively deform, which can not only be tightly combined with the hollow column, but also increase the contact area with the hollow column, thereby improving the sealing performance.
[0017] In an optional embodiment, the base includes a base plate, a panel and a first connecting member, the base plate and the panel are fixedly connected by the first connecting member, and there is a gap between the base plate and the panel to form an installation space; the delivery pipe is installed on the panel; the humidification pot is slidably matched with the base plate, and at least part of the humidification pot is accommodated in the installation space.
[0018] Based on the above solution, the humidifier pot can slide into the installation space, thereby improving the compactness of the combination of the base and the humidifier pot, reducing the overall volume, and making storage and carrying more convenient.
[0019] In an optional embodiment, the base further includes a shaping plate and a second connecting member, the shaping plate being fixed to the panel via the second connecting member, the shaping plate being located on a side of the panel away from the bottom plate, and the shaping plate and the panel cooperating to define a shaping space; the hose segment simultaneously passes through the panel and the shaping plate, and at least a portion of the hose segment is located within the shaping space.
[0020] Based on the above solution, the shaping plate and the panel cooperate to define a defined shaping space. The hose segment is positioned within the defined shaping space. With the cooperation of the panel and the shaping plate, the hose segment maintains a straight extension. The hollow column is not easily obstructed when inserted into the hose segment, facilitating insertion of the hollow column into the hose segment and making operation more convenient and reliable. Furthermore, the design of the defined shaping space provides space for gluing, facilitating better securing the hose segment to the panel through gluing, thereby enhancing the firmness of the connection between the hose segment and the panel and preventing the hose segment from becoming loose when the hollow column is inserted into the hose segment.
[0021] In an optional embodiment, the humidifying pot is detachably connected to the bottom plate via a third connecting member.
[0022] Based on the above solution, after the humidifier pot is installed on the base, it is fixed by the third connecting member, and the humidifier pot and the base are stably combined.
[0023] In an optional embodiment, a partition is provided inside the humidifier pot, which divides the humidifier pot into an independent first chamber and a second chamber, and a vent hole connecting the first chamber and the second chamber is provided on the partition; some of the multiple docking ports are connected to the first chamber, and the remaining docking ports are connected to the second chamber.
[0024] Based on the above solution, by setting partitions, multiple independent chambers can be formed in the humidifier, which makes it easier to mix and humidify multiple gases. It is flexible to use and has a wide range of uses, and can provide users with more and more comfortable services.
[0025] In an optional embodiment, the humidifying pot is provided with an addition port, and a sealing plug is provided at the addition port.
[0026] Based on the above scheme, after opening the sealing plug, clean water can be added, or cleaning fluid can be utilized to clean the humidifying pot. When the humidifying pot is used, the sealing plug is utilized to seal the adding port, which is not easy to leak.
[0027] The beneficial effects of the embodiments of the present utility model are:
[0028] In summary, the novel portable hydrogen and oxygen cabin provided in the present embodiment has a delivery pipeline arranged on the base, and the delivery pipeline is not directly arranged on the humidifying pot, and the humidifying pot and the delivery pipeline are docked through a plurality of docking ports arranged on the humidifying pot. When it is necessary to remove the humidifying pot for cleaning or other work, the humidifying pot base is directly removed from the base, and the docking port on the humidifying pot and the delivery pipeline are separated by themselves, and there is no need to perform a separate pipeline removal action, which saves disassembly and assembly steps, reduces the difficulty of operation, and saves operation time. At the same time, after cleaning and adding water, the humidifying pot is installed on the base, and the docking port on the humidifying pot is adaptively sealed and docked with the delivery pipeline. The humidifying pot is connected to the delivery pipeline, and the gas can enter the humidifying pot from the delivery pipeline, and is discharged from the corresponding delivery pipeline after humidification, and can be delivered to oxygen masks, oxygen helmets, etc., to meet the user's oxygen inhalation needs. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.
[0030] Figure 1 This is a schematic diagram of a novel portable hydrogen-oxygen cabin from a first perspective according to an embodiment of the present invention;
[0031] Figure 2 This is an exploded schematic diagram of a novel portable hydrogen-oxygen cabin according to an embodiment of the present utility model;
[0032] Figure 3 A schematic diagram of a second perspective of a novel portable hydrogen-oxygen cabin according to an embodiment of the present invention;
[0033] Figure 4 A schematic diagram of a base plate according to an embodiment of the present invention;
[0034] Figure 5 A schematic diagram of a humidifying pot according to an embodiment of the present invention;
[0035] Figure 6 This is a schematic cross-sectional view of a humidifying pot according to an embodiment of the present invention.
[0036] icon:
[0037] 100-base; 110-bottom plate; 111-assembly through hole; 120-panel; 130-first connecting piece; 140-shaping plate; 141-main body; 142-side plate; 143-folding edge; 150-second connecting piece; 160-shaping space; 170-positioning column; 200-humidification pot; 210-pot body; 211-first chamber; 212-second chamber; 213-addition port; 214-high water level line; 215-low water level line; 220-hollow column; 230-sealing ring; 240-partition; 241-vent; 250-handle; 260-sealing plug; 300-delivery pipeline; 310-first pipeline; 320-second pipeline; 330-third pipeline; 340-fourth pipeline. DETAILED DESCRIPTION
[0038] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings herein can be arranged and designed in various different configurations.
[0039] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but rather merely represents selected embodiments of the present invention. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort are also within the scope of protection of the present invention.
[0040] It should be noted that similar reference numerals and letters denote similar items in the following drawings, and therefore, once an item is defined in one drawing, it does not need to be further defined or explained in subsequent drawings.
[0041] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer" and the like, indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, or are the orientations or positional relationships in which the utility model product is typically placed when in use. These terms are intended solely to facilitate the description of this utility model and to simplify the description, and are not intended to indicate or imply that the device or component referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first," "second," and "third," etc., are used solely to distinguish descriptions and should not be construed as indicating or implying relative importance.
[0042] Furthermore, terms such as "horizontal" and "vertical" do not necessarily mean that a component must be absolutely horizontal or overhanging, but rather that it can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal than "vertical," and does not mean that the structure must be completely horizontal, but rather that it can be slightly tilted.
[0043] It should also be noted that, in the description of this utility model, unless otherwise expressly specified or limited, the terms "disposed," "installed," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.
[0044] In the prior art, in order to improve the comfort of breathing, oxygen and the like are generally humidified through a humidifier bottle. The humidifier bottle is provided with multiple trachea, and both air intake and exhaust pass through the humidifier bottle. The humidifier bottle needs to be cleaned after being used for a period of time. Generally, the trachea is removed from the humidifier bottle during operation. Due to the large number of trachea, the removal is troublesome, and the trachea needs to be connected to the humidifier bottle again for subsequent use. This results in cumbersome operation, low efficiency, and poor user experience.
[0045] In view of this, the designer provides a new type of portable hydrogen-oxygen cabin, which can simplify the disassembly and assembly operation of the humidifier pot 200, reduce the difficulty of operation, improve the operation efficiency, and enhance the user experience.
[0046] Please combine Figure 1-Figure 3 In this embodiment, the new portable hydrogen and oxygen cabin includes a base 100, a humidifier 200 and a plurality of delivery pipes 300; the plurality of delivery pipes 300 are all installed on the base 100; the humidifier 200 is provided with a plurality of docking ports, the humidifier 200 and the base 100 are detachably matched, and when the humidifier 200 is installed on the base 100, the plurality of docking ports are respectively sealed and matched with the plurality of delivery pipes 300 one by one.
[0047] Based on the above, the usage of the novel portable hydrogen-oxygen cabin provided in this embodiment includes, for example:
[0048] The hydrogen source, oxygen source and compressed air source are respectively docked with three of the multiple delivery pipes 300, and an oxygen mask or an oxygen helmet is used to dock with the delivery pipe 300 for outputting gas. Then, hydrogen, oxygen and compressed air all enter the humidification pot 200, and are output from the oxygen mask or the oxygen helmet after humidification in the humidification pot 200 for use by the user. When it is necessary to clean the humidification pot 200, the device is turned off and the humidification pot 200 is removed from the base 100 for easy operation. Specifically, the delivery pipe 300 is located on the base 100, and the delivery pipe 300 is not directly located on the humidification pot 200. The humidification pot 200 and the delivery pipe 300 are docked through a plurality of docking ports located on the humidification pot 200. When the humidification pot 200 needs to be removed for cleaning or other work, the humidification pot 200 is directly removed from the base 100, and the docking port on the humidification pot 200 is separated from the delivery pipe 300 by itself, and there is no need to perform a separate pipeline removal operation, which saves disassembly and assembly steps, reduces the difficulty of operation, and saves operation time. At the same time, after cleaning and adding water, the humidification pot 200 is installed on the base 100, and the docking port on the humidification pot 200 is adaptively sealed and docked with the delivery pipe 300. The humidification pot 200 is connected to the delivery pipe 300, and the gas can enter the humidification pot 200 from the delivery pipe 300, and then be discharged from the corresponding delivery pipe 300 after humidification, and can be delivered to the oxygen mask, oxygen helmet, etc., to meet the user's oxygen inhalation needs.
[0049] The following embodiments illustrate the detailed structure of the novel portable hydrogen-oxygen cabin provided in this application by way of examples.
[0050] Please combine Figures 1-4 In this embodiment, the base 100 optionally includes a bottom plate 110, a panel 120, a first connector 130, a shaping plate 140, and a second connector 150. The bottom plate 110 and the panel 120 can both be configured as rectangular plates, and the shaping plate 140 can be configured as a bent plate. During installation, the bottom plate 110, the panel 120, and the shaping plate 140 are arranged in sequence. The bottom plate 110 and the panel 120 are fixedly connected by the first connector 130, and the shaping plate 140 and the panel 120 are fixedly connected by the second connector 150. A spacing is provided between the bottom plate 110 and the panel 120 to form an installation space. A shaping space 160 is formed between the panel 120 and the shaping plate 140. The dimension of the shaping space 160 in a direction perpendicular to the panel 120 is set between 8 and 12 mm.
[0051] The base plate 110 and the panel 120 can be fixedly connected via four first connectors 130, each of which can be configured as screws or bolts. Furthermore, the base plate 110 is provided with an assembly through-hole 111, and the panel 120 is provided with four first positioning through-holes, located at the four corners of the same rectangle. To facilitate positioning of the base plate 110 and the panel 120, four positioning posts 170 can be provided on the base plate 110. Each of the four positioning posts 170 contacts the panel 120, and the four first connectors 130 penetrate the panel 120 and are screwed onto the four positioning posts 170. The four first positioning through-holes on the panel 120 are located within the area enclosed by the four first connectors 130.
[0052] Please combine Figure 1 and Figure 2 , and the shaping plate 140 includes a main body 141 and two side panels 142. The two side panels 142 are located on opposite sides of the main body 141 and are arranged perpendicular to the main body 141. Each side panel 142 is provided with a folded edge 143 that is turned outward and parallel to the main body 141. Four second positioning through holes are provided on the main body 141, and the positions of the four second positioning through holes correspond one-to-one to the positions of the four first positioning through holes. During installation, the two folded edges 143 are attached to the side of the panel 120 away from the bottom plate 110, and each folded edge 143 is fixed to the panel 120 by two second connecting members 150. In this way, the shaping plate 140 is fixedly connected to the panel 120 by the four second connecting members 150. The second connecting members 150 can be bolts or screws, etc. After installation is completed, a spacing is formed between the main body 141 and the panel 120 to form a shaping space 160. Each first positioning through hole is coaxially arranged with a corresponding second positioning through hole, and the paired first positioning through holes and second positioning through holes cooperate to position a delivery pipe 300 .
[0053] Please combine Figure 2 、 Figure 5 and Figure 6In this embodiment, the humidification pot 200 optionally includes a pot body 210, a plurality of hollow columns 220, and a plurality of sealing rings 230. The number of hollow columns 220 matches the number of delivery pipes 300. For example, in this embodiment, there are four hollow columns 220, and the ends of the hollow columns 220 serve as docking ports. The four hollow columns 220 are each fixed to one side of the pot body 210 and communicate with the interior of the pot body 210. The opposite side of the pot body 210, or the back side of the pot body 210, is provided with water level markings or other identification structures. For example, the back side of the pot body 210 is provided with a high water level line 214 and a low water level line 215. The outer circumference of each of the four hollow columns 220 is provided with an annular positioning groove arranged around the axis of the hollow column 220. A sealing ring 230 is clamped into each annular positioning groove. Each sealing ring 230 is firmly bonded to the hollow column 220, and the sealing ring 230 is not easily moved along the axial direction of the hollow column 220.
[0054] It should be understood that the hollow column 220 and the kettle body 210 can be set as an integrated structure, and the two can be fixed together by processes such as hot melting.
[0055] It is worth noting that when assembling the humidifying pot 200 and the base 100, the side of the humidifying pot 200 having the hollow column 220 is aligned with the first positioning through hole, the pot body 210 of the humidifying pot 200 is slidably matched with the assembly through hole 111 on the bottom plate 110, and the humidifying pot 200 is inserted into the assembly through hole 111 from the side of the bottom plate 110 close to the shaping plate 140. The four hollow columns 220 are respectively arranged in the four delivery pipes 300, and each hollow column 220 is sealed with the delivery pipe 300 by a sealing ring 230, which has a good sealing effect. The humidifying pot 200 and the base 100 are assembled by sliding fit, which is easy to operate.
[0056] It should be noted that in order to improve the stability of the humidifier pot 200 during use, after the humidifier pot 200 is installed on the base 100, the pot body 210 of the humidifier pot 200 can be connected to the bottom plate 110 through a third connecting member. The third connecting member can be a bolt or a screw, etc., and the number of third connecting members can be four.
[0057] Please combine Figure 6In other embodiments, the humidifying pot 200 may optionally further include a partition 240, which is installed in the pot body 210. The partition 240 divides the humidifying pot 200 into an independent first chamber 211 and a second chamber 212. The partition 240 is provided with air vents 241 that connect the first chamber 211 and the second chamber 212. The number of the air vents 241 is set as needed, and the height of the air vents 241 is higher than the highest water level 214 on the pot body 210. Some of the multiple docking interfaces are connected to the first chamber 211, and the remaining docking interfaces are connected to the second chamber 212. For example, in this embodiment, two of the four hollow columns 220 are arranged up and down and are both connected to the first chamber 211, and the other two of the four hollow columns 220 are arranged up and down and are both connected to the second chamber 212. With such a design, three of the four hollow columns 220 can be respectively fed with hydrogen, oxygen and compressed air, and the last hollow column 220 of the four hollow columns 220 discharges the humidified gas.
[0058] For ease of description, the four delivery pipes 300, which are connected to the four hollow columns 220 in a one-to-one correspondence, are a first pipe 310, a second pipe 320, a third pipe 330, and a fourth pipe 340. Both the first pipe 310 and the second pipe 320 are in communication with the first chamber 211. The first pipe 310 is located below the second pipe 320. Oxygen is input through the first pipe 310, and compressed air is input through the second pipe 320. The third pipe 330 and the fourth pipe 340 are both in communication with the second chamber 212. The third pipe 330 is located below the fourth pipe 340. Hydrogen is introduced into the third pipe 330, and the humidified gas is discharged from the fourth pipe 340. During operation, since the flow rate of the input hydrogen and oxygen is relatively small, about 1-10L / min, they enter the pot body 210 from the bottom and are humidified by the bottom-through humidification method. This humidification method has good characteristics of moderate bubble rolling and low noise. The second pipe 320 above inputs compressed air with a pressure of about 10KPA, and the flow rate is greater than that of oxygen and hydrogen. The air flow enters directly from the waterless space above the humidification pot 200 and can enter the second chamber 212 from the vent 241 on the partition 240. In this process, The compressed air and the bubbles formed by the bottom air intake merge together to form a water vapor waterfall humidification, and then enter the second chamber 212 through the air vent 241, and then merge again with the rolling bubble water vapor generated by the hydrogen input from the bottom of the second chamber 212 and output from the fourth pipe 340. This humidification method is a water waterfall humidification, which saves the space of the humidification container and avoids bringing out too much water to cause discomfort due to breathing water droplets, thereby carrying out the fusion of three types of gases and two humidification methods of two air cavities in the space of an aesthetically pleasing and compact humidification pot 200.
[0059] In addition, a handle 250 can be provided on the back side of the kettle body 210 to facilitate plugging and unplugging the kettle body 210 through the handle 250, saving time and effort. The number of the handles 250 can be two, distributed on opposite sides of the kettle body 210.
[0060] In addition, an addition port 213 can be set on the top side of the pot body 210, and a sealing plug 260 made of rubber material can be set at the addition port 213. The sealing plug 260 can open or close the addition port 213. When the addition port 213 is opened, the pot body 210 can be cleaned. When the pot body 210 is used normally, the sealing plug 260 closes the addition port 213.
[0061] In this embodiment, the delivery conduit 300 can optionally be a hose, or a portion of the delivery conduit 300 can be configured as a hose segment. The hose segment is inserted through both the first and second positioning holes, secured to the panel 120 and the shaping plate 140, and partially located within the shaping space 160. This design ensures that the portion of the hose segment located within the shaping space 160 extends in a straight line. When the hollow column 220 is inserted into the hose segment, the hose segment is less likely to bend, thereby preventing the insertion of the hollow column 220. Furthermore, the hose segment is radially expanded by the hollow column 220, and its own deformation force entangles the hollow column 220, thereby improving the sealing performance of the connection between the two.
[0062] At the same time, since the hose section is located in the shaping space 160 , the gluing can be performed from one side of the shaping space 160 , which is conducive to applying the fixing glue to the joint position between the hose section and the panel 120 , thereby improving the firmness of the joint between the hose section and the panel 120 .
[0063] The new portable hydrogen-oxygen cabin provided in this embodiment can be used in conjunction with an oxygen concentrator to provide an oxygen source. There are various ways to supply hydrogen and compressed air. The gas source can be provided by corresponding gas manufacturing equipment or by using gas cylinders storing corresponding gases.
[0064] In addition, the novel portable hydrogen-oxygen cabin provided in this embodiment can be used at home or placed in a designated place for use, and has a wide range of uses.
[0065] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A new type of portable hydrogen and oxygen cabin, characterized by: include: A base (100), a humidifying pot (200) and a plurality of delivery pipes (300); the plurality of delivery pipes (300) are all installed on the base (100); the humidifying pot (200) is provided with a plurality of docking ports, the humidifying pot (200) and the base (100) are detachably matched, and when the humidifying pot (200) is installed on the base (100), the plurality of docking ports are respectively sealed and matched with the plurality of delivery pipes (300) in a one-to-one correspondence.
2. The novel portable hydrogen-oxygen cabin according to claim 1 is characterized in that: The humidifying pot (200) and the base (100) can be slidably matched so that the multiple docking ports are sealed and matched with the multiple delivery pipes (300) one by one or the docking ports are separated from the corresponding delivery pipes (300).
3. The novel portable hydrogen-oxygen cabin according to claim 1 is characterized in that: The humidifying pot (200) comprises a pot body (210) and a plurality of hollow columns (220) mounted on the pot body (210), the docking port is provided on the hollow column (220), and the plurality of hollow columns (220) are respectively plugged into the plurality of conveying pipes (300) in a one-to-one correspondence.
4. The novel portable hydrogen-oxygen cabin according to claim 3 is characterized in that: A sealing ring (230) is provided between the outer peripheral surface of the hollow column (220) and the delivery pipe (300).
5. The novel portable hydrogen-oxygen cabin according to claim 4 is characterized in that: An annular positioning groove arranged around the axis of the hollow column (220) is provided on the outer peripheral surface of the hollow column (220), and the sealing ring (230) is clamped in the annular positioning groove.
6. The novel portable hydrogen-oxygen cabin according to claim 3 is characterized by: At least a portion of the pipe section of the delivery pipeline (300) is configured as a hose section, and the hollow column (220) is inserted into the hose section.
7. The novel portable hydrogen-oxygen cabin according to claim 6 is characterized in that: The base (100) includes a bottom plate (110), a panel (120) and a first connecting member (130), wherein the bottom plate (110) and the panel (120) are fixedly connected via the first connecting member (130), and a distance is provided between the bottom plate (110) and the panel (120) to form an installation space; the delivery pipe (300) is installed on the panel (120); the humidifying pot (200) is slidably matched with the bottom plate (110), and at least a portion of the humidifying pot (200) is accommodated in the installation space.
8. The novel portable hydrogen-oxygen cabin according to claim 7 is characterized in that: The base (100) further comprises a shaping plate (140) and a second connecting member (150), wherein the shaping plate (140) is fixed to the panel (120) via the second connecting member (150), the shaping plate (140) is located on a side of the panel (120) away from the bottom plate (110), and the shaping plate (140) cooperates with the panel (120) to define a shaping space (160); the hose section simultaneously passes through the panel (120) and the shaping plate (140), and at least a portion of the hose section is located within the shaping space (160).
9. The novel portable hydrogen-oxygen cabin according to claim 7 is characterized in that: The humidifying pot (200) is detachably connected to the bottom plate (110) via a third connecting member.
10. The novel portable hydrogen-oxygen cabin according to claim 1 is characterized in that: The interior of the humidifying pot (200) is provided with a partition (240), and the partition (240) divides the humidifying pot (200) into an independent first chamber (211) and a second chamber (212). The partition (240) is provided with a vent (241) connecting the first chamber (211) and the second chamber (212); some of the multiple docking interfaces are connected to the first chamber (211), and the rest of the multiple docking interfaces are connected to the second chamber (212).