CN105399055B - A kind of oxygen module processed and air processor - Google Patents
A kind of oxygen module processed and air processor Download PDFInfo
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- CN105399055B CN105399055B CN201510757265.0A CN201510757265A CN105399055B CN 105399055 B CN105399055 B CN 105399055B CN 201510757265 A CN201510757265 A CN 201510757265A CN 105399055 B CN105399055 B CN 105399055B
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Abstract
本发明公开了一种制氧模块及空气处理装置。该制氧模块包括制氧模块外壳、制氧模块骨架、压缩机和富氧膜组,制氧模块外壳和制氧模块骨架围成环形风道,富氧膜组和所述富氧膜组沿空气的流动方向依次设置在环形风道内,压缩机通过送气管连接至富氧膜组的氧气出口。该制氧模块的供氧的主要部件均沿环形风道依次固定,节约了占用空间,降低了空气沿弧形结构流动的阻力作用。
The invention discloses an oxygen production module and an air treatment device. The oxygen-generating module includes an oxygen-generating module shell, an oxygen-generating module skeleton, a compressor and an oxygen-enriched membrane group. The flow direction of the air is sequentially set in the annular air duct, and the compressor is connected to the oxygen outlet of the oxygen-enriched membrane group through the air supply pipe. The main oxygen supply components of the oxygen production module are fixed sequentially along the annular air duct, which saves space and reduces the resistance of air flowing along the arc structure.
Description
技术领域technical field
本发明设计制氧设备领域,特别是涉及一种制氧模块及空气处理装置。The invention relates to the field of designing oxygen-generating equipment, in particular to an oxygen-generating module and an air treatment device.
背景技术Background technique
随着人们生活水平的不断提高和改善,对健康的需求逐渐增强,吸氧将逐步成为家庭和社区康复中一种重要手段,吸氧可以缓解神经疲劳、放松身心、保持旺盛精力、提高工作效率;改善大脑供氧状况,调节脑神经系统功能,提高记忆力和思维能力,提高学习效率;减少污染和恶劣环境下对身体的危害;在一定程度上可延缓衰老、增强新陈代谢。然而大多用氧者对吸氧知识还不够了解,氧疗也不规范,并且采用的制氧设备也大多为市面上常规的制氧单体机。With the continuous improvement and improvement of people's living standards, the demand for health is gradually increasing. Oxygen inhalation will gradually become an important means of family and community rehabilitation. Oxygen inhalation can relieve nervous fatigue, relax the body and mind, maintain strong energy, and improve work efficiency. ; Improve the oxygen supply to the brain, regulate the function of the brain nervous system, improve memory and thinking ability, and improve learning efficiency; reduce pollution and harm to the body in harsh environments; to a certain extent, it can delay aging and enhance metabolism. However, most oxygen users do not have enough knowledge of oxygen inhalation, oxygen therapy is not standardized, and most of the oxygen generators used are conventional oxygen generators on the market.
而常规的家用制氧大多由主机、采氧过滤器和供氧器等几个部分构成,相关部件也采用市场上的成品部件进行组装,成品机体积较大,占用家用空间,且其功能单一,仅能满足制氧要求,不能满足现在用户的多样化需求。Conventional household oxygen generators are mostly composed of several parts such as the host, oxygen filter and oxygen supply, and the relevant components are also assembled with finished parts on the market. The finished machine is large in size, takes up space in the home, and has a single function , can only meet the requirements of oxygen production, but cannot meet the diversified needs of current users.
发明内容Contents of the invention
本发明的目的是提供一种制氧模块及空气处理装置,能够有效解决制氧模块空间占用较大的问题。The object of the present invention is to provide an oxygen production module and an air treatment device, which can effectively solve the problem that the oxygen production module occupies a large space.
本发明为实现上述目的所采用的技术方案如下:The technical scheme that the present invention adopts for realizing the above object is as follows:
根据本发明的一个方面,提供了一种制氧模块,包括制氧模块外壳、制氧模块骨架、压缩机和富氧膜组,制氧模块外壳和制氧模块骨架围成环形风道,富氧膜组和富氧膜组沿空气的流动方向依次设置在环形风道内,压缩机通过送气管连接至富氧膜组的氧气出口;制氧模块外壳上开有进风口。According to one aspect of the present invention, an oxygen generating module is provided, including an oxygen generating module shell, an oxygen generating module skeleton, a compressor, and an oxygen-enriched membrane group. The oxygen membrane group and the oxygen-enriched membrane group are sequentially arranged in the annular air duct along the flow direction of the air, and the compressor is connected to the oxygen outlet of the oxygen-enriched membrane group through the air supply pipe; an air inlet is opened on the shell of the oxygen production module.
进一步的,富氧膜组的横截面为与环形风道结构相适应的弧形结构,置于环形风道内靠近进风口的一端。Further, the cross-section of the oxygen-enriched membrane group is an arc-shaped structure adapted to the structure of the annular air duct, and is placed in the annular air duct near the air inlet.
进一步的,制氧模块骨架包括:制氧模块内壳和固定于制氧模块内壳底部的制氧模块底板;制氧模块内壳呈与环形风道高度相适应的筒状,其筒壁靠近压缩机一侧为纵向板面,纵向板面上设有制氧模块出风口;制氧模块外壳下部沿制氧模块底板边缘固定,制氧模块底板上还固定有端口向下的电源接口一和通信接口一。Further, the skeleton of the oxygen-making module includes: the inner shell of the oxygen-making module and the bottom plate of the oxygen-making module fixed at the bottom of the inner shell of the oxygen-making module; One side of the compressor is a longitudinal panel, and the longitudinal panel is provided with an air outlet of the oxygen generation module; the lower part of the oxygen generation module shell is fixed along the edge of the bottom plate of the oxygen generation module, and the bottom plate of the oxygen generation module is also fixed with a power interface with a downward port and Communication interface one.
进一步的,制氧模块出风口和进风口之间的环形风道内还设有挡板,挡板固定于制氧模块内壳上,用于隔断环向风道,使从进风口进入的空气沿固定方向流动。Further, there is also a baffle in the annular air duct between the air outlet and the air inlet of the oxygen production module, and the baffle is fixed on the inner shell of the oxygen production module to block the annular air duct, so that the air entering from the air inlet along the Flow in a fixed direction.
进一步的,制氧模块外壳包括:横截面呈半圆形并固定连接的制氧模块前壳和制氧模块后壳;固设于环形风道上部的制氧模块顶盖,制氧模块顶盖和环形风道之间还设有顶盖支撑;制氧模块顶盖和顶盖支撑的外径与制氧模块外壳的外径相对应。Further, the shell of the oxygen generator module includes: the front shell of the oxygen generator module and the rear shell of the oxygen generator module with a semicircular cross section and fixed connection; the top cover of the oxygen generator module fixed on the upper part of the annular air duct, and the top cover There is also a top cover support between the annular air duct and the outer diameter of the oxygen production module top cover and the top cover support corresponds to the outer diameter of the oxygen production module shell.
进一步的,进风口开设于制氧模块后壳,制氧模块后壳上还设有氧气管接口,氧气管接口设于挡板远离进风口的一侧,压缩机通过出氧管将氧气输送至氧气管接口处。Further, the air inlet is set on the rear case of the oxygen generation module, and the rear case of the oxygen generation module is also equipped with an oxygen pipe interface, which is located on the side of the baffle away from the air inlet, and the compressor sends oxygen to the Oxygen tube connection.
进一步的,制氧模块顶盖中部开有与制氧模块内壳形状相适应的开口,制氧模块顶盖还设有端口向上的电源接口二和通信接口二。Further, the middle part of the top cover of the oxygen production module has an opening suitable for the shape of the inner shell of the oxygen production module, and the top cover of the oxygen production module is also provided with a power interface 2 and a communication interface 2 with the ports upward.
进一步的,顶盖支撑中部开有制氧模块内壳形状相适应的圆形开口,顶盖支撑通过螺钉与所述制氧模块顶盖固定连接,顶盖支撑上设有模块连接铁片,制氧模块外壳上设有模块连接磁铁。Further, there is a circular opening in the middle of the top cover support that is suitable for the shape of the inner shell of the oxygen production module, and the top cover support is fixedly connected to the top cover of the oxygen production module through screws. The top cover support is provided with a module connecting iron sheet, making The oxygen module housing is provided with module connection magnets.
进一步的,制氧模块还包括:用于控制压缩机启停的PCB板块;粘贴于制氧模块后壳上对应压缩机位置处的减震垫。Further, the oxygen generating module also includes: a PCB board for controlling the start and stop of the compressor; and a shock absorbing pad pasted on the rear shell of the oxygen generating module corresponding to the position of the compressor.
进一步的,制氧模块上方还设有抽风装置。Further, there is an exhaust device above the oxygen generating module.
根据本发明的另一方面,还提供了一种空气处理装置,包括净化模块和上述的制氧模块,制氧模块设在净化模块下方。According to another aspect of the present invention, an air treatment device is also provided, including a purification module and the above-mentioned oxygen generation module, and the oxygen generation module is arranged below the purification module.
与现有技术相比,本发明采用上述技术方案所具有的有益效果是:Compared with the prior art, the present invention adopts the beneficial effects of the above-mentioned technical solution as follows:
该制氧模块供氧的主要部件均沿环形风道依次固定,节约了占用空间,降低了空气沿弧形结构流动的阻力作用;外接的电源和通信端口避免了内部走线的混乱;结构布局明确,便于组合拆装。The main components of the oxygen supply module are fixed in sequence along the circular air duct, which saves space and reduces the resistance of air flowing along the arc structure; the external power supply and communication ports avoid the confusion of internal wiring; the structural layout Clear, easy to assemble and disassemble.
附图说明Description of drawings
图1为本发明的制氧模块的整体结构示意图;Fig. 1 is the overall structural representation of the oxygen generation module of the present invention;
图2为本发明的制氧模块的拆解图。Fig. 2 is a disassembled view of the oxygen generating module of the present invention.
其中,100、压缩机;200、富氧膜组;300、送气管;301、氧气管接口;302、出氧管;400、制氧模块外壳;401、进风口;402、制氧模块前壳;403、制氧模块后壳;404、制氧模块顶盖;405、顶盖支撑;500、制氧模块骨架;501、挡板;502、制氧模块内壳;503、制氧模块底板;504、制氧模块出风口;600、电源接口一;601、电源接口二;700、通信接口一;701、通信接口二;800、模块连接铁片;801、模块连接磁铁;802、PCB板块;803、减震垫。Among them, 100, compressor; 200, oxygen-enriched membrane group; 300, air supply pipe; 301, oxygen pipe interface; 302, oxygen outlet pipe; 400, oxygen module shell; 401, air inlet; 402, oxygen module front shell ; 403, the rear shell of the oxygen generation module; 404, the top cover of the oxygen generation module; 405, the support of the top cover; 500, the skeleton of the oxygen generation module; 501, the baffle; 504, the air outlet of the oxygen making module; 600, the power supply interface one; 601, the power supply interface two; 700, the communication interface one; 701, the communication interface two; 800, the module connection iron piece; 801, the module connection magnet; 803. Shock-absorbing pads.
具体实施方式Detailed ways
为清楚的说明本发明中的方案,下面给出优选的实施例并结合附图详细说明。以下的说明本质上仅仅是示例性的而并不是为了限制本公开的应用或用途。应当理解的是,在全部的附图中,对应的附图标记表示相同或对应的部件和特征。In order to clearly illustrate the solutions in the present invention, preferred embodiments are given below and detailed descriptions are given in conjunction with the accompanying drawings. The following description is merely exemplary in nature and is not intended to limit the application or uses of the present disclosure. It should be understood that throughout the drawings, corresponding reference numerals indicate like or corresponding parts and features.
下面结合图1和图2对本发明的具体构造进行说明。The specific structure of the present invention will be described below with reference to FIG. 1 and FIG. 2 .
参见图1和图2所示,根据本发明的实施例,该空气处理装置的制氧模块包括压缩机100和富氧膜组200,压缩机100驱动氧气从所述富氧膜组200沿送气管300输送至压缩机100,还包括:由制氧模块外壳400和制氧模块骨架500构成的环形风道;开设于所述制氧模块外壳400上的进风口401,以进风口401内部一侧为起始端,所述富氧膜组200和压缩机100依次沿环形风道固设于制氧模块骨架500上;固设于制氧模块骨架500上的挡板501,挡板501位于进风口401对应起始端的另一侧。制氧模块外壳400和制氧模块骨架500围成半封闭风道,保证从制氧模块进风口401进入的空气首先通过富氧膜组10进行过滤,不同于常规的制氧机方形内部有转角的结构,弧形的风道结构也减少了空气流动与内壁的阻力。Referring to Fig. 1 and Fig. 2, according to an embodiment of the present invention, the oxygen generation module of the air treatment device includes a compressor 100 and an oxygen-enriched membrane group 200, and the compressor 100 drives oxygen along the oxygen-enriched membrane group 200 The air pipe 300 is transported to the compressor 100, and also includes: an annular air duct formed by the oxygen-making module shell 400 and the oxygen-making module skeleton 500; The oxygen-enriched membrane group 200 and the compressor 100 are sequentially fixed on the oxygen-making module frame 500 along the annular air duct; the baffle 501 fixed on the oxygen-making module frame 500 is located at the inlet The tuyere 401 corresponds to the other side of the starting end. The oxygen generator module casing 400 and the oxygen generator module frame 500 form a semi-closed air duct, which ensures that the air entering from the oxygen generator module air inlet 401 is first filtered through the oxygen-enriched membrane group 10, which is different from the conventional oxygen generator with a square interior with corners The curved air duct structure also reduces the resistance between air flow and the inner wall.
富氧膜组200由至少二片的富氧膜片构成,富氧膜片沿环形风道高度方向依次排列连接,富氧膜组200也包括膜组支架,支架也分为多层,每层均设有用于固定富氧膜片的卡持结构。富氧膜组200的横截面为与环形风道结构相适应的弧形结构,置于环形风道内靠近进风口401的一端,由于整个风道呈半封闭结构,因此从进风口401进入的空气在压差作用下会依次渗透过富氧膜片,在富氧膜组200后方有氧气口,过滤的氧气通过该氧气口进入送气管300进入压缩机100中。膜法富氧是利用空气中各组分透过膜时的渗透速率不同,在压力差驱动下,使空气中氧气优先通过膜而得到富氧空气。The oxygen-enriched membrane group 200 is composed of at least two oxygen-enriched membranes. The oxygen-enriched membranes are arranged and connected in sequence along the height direction of the annular air duct. The oxygen-enriched membrane group 200 also includes a membrane group support, and the support is also divided into multiple layers. Each layer All are provided with a clamping structure for fixing the oxygen-enriched diaphragm. The cross-section of the oxygen-enriched membrane group 200 is an arc-shaped structure adapted to the structure of the annular air duct, and is placed in the annular air duct near the end of the air inlet 401. Since the entire air duct is a semi-closed structure, the air entering from the air inlet 401 Under the action of pressure difference, the oxygen-enriched membrane will permeate sequentially. There is an oxygen port behind the oxygen-enriched membrane group 200 , and the filtered oxygen enters the air supply pipe 300 into the compressor 100 through the oxygen port. Membrane oxygen enrichment is to use the different permeation rates of various components in the air when they pass through the membrane. Driven by the pressure difference, the oxygen in the air is preferentially passed through the membrane to obtain oxygen-enriched air.
制氧模块骨架500包括:制氧模块内壳502和固定于制氧模块内壳502底部的制氧模块底板503;制氧模块内壳502呈与环形风道高度相适应的筒状,其筒壁靠近所述压缩机100一侧为纵向板面,纵向板面上设有制氧模块出风口504,压缩机产生的热量以及过滤之后的剩余空气通过制氧模块出风口504的出风散出,有利于压缩机的散热;制氧模块外壳400下部沿所述制氧模块底板503边缘固定,制氧模块底板503上还固定有端口向下的电源接口一600和通信接口一700,电源和通信接口均为空气处理装置内部通用的接口,方便空气处理装置内不同装置的串并联,减少了绕线的繁琐。The oxygen-making module skeleton 500 includes: an oxygen-making module inner shell 502 and an oxygen-making module bottom plate 503 fixed on the bottom of the oxygen-making module inner shell 502; The side of the wall close to the compressor 100 is a longitudinal plate, and the longitudinal plate is provided with an oxygen-making module air outlet 504, and the heat generated by the compressor and the remaining air after filtering are released through the air outlet 504 of the oxygen-making module , which is conducive to the heat dissipation of the compressor; the lower part of the oxygen generation module shell 400 is fixed along the edge of the oxygen generation module bottom plate 503, and the oxygen generation module bottom plate 503 is also fixed with a power interface one 600 and a communication interface one 700 with ports downward, power supply and The communication interface is a common interface inside the air handling device, which facilitates the series and parallel connection of different devices in the air handling device and reduces the cumbersome wiring.
挡板501固定于制氧模块内壳502上,用于隔断所述环向风道,使从进风口401进入的空气沿固定方向流动,同时在可以在末端起到与进风口401隔离的目的,避免过滤后的剩余空气再重复流回至起始端,减少了进风口处的气流扰动。The baffle 501 is fixed on the inner shell 502 of the oxygen production module, and is used to cut off the circular air duct, so that the air entering from the air inlet 401 flows in a fixed direction, and at the same time, it can be isolated from the air inlet 401 at the end , to prevent the remaining filtered air from repeatedly flowing back to the starting end, reducing the airflow disturbance at the air inlet.
制氧模块外壳400包括:横截面呈半圆形并固定连接的制氧模块前壳402和制氧模块后壳403,在一些可选的实施例中,两壳可以通过焊接或螺栓栓接的方式固定,并在接缝处用密封胶等密封;固设于环形风道上部的制氧模块顶盖404,制氧模块顶盖404和环形风道之间还设有顶盖支撑405;制氧模块顶盖404和顶盖支撑405的外径与制氧模块外壳400的外径相等。The oxygen generating module shell 400 includes: a cross-section of a semicircular and fixedly connected oxygen generating module front shell 402 and an oxygen generating module rear shell 403, in some optional embodiments, the two shells can be bolted by welding or bolts The way is fixed, and sealed with sealant etc. at the seam; The top cover 404 of the oxygen production module fixed on the upper part of the annular air duct, and the top cover support 405 is also provided between the top cover 404 of the oxygen production module and the annular air duct; The outer diameters of the oxygen module top cover 404 and the top cover support 405 are equal to the outer diameter of the oxygen module shell 400 .
进风口401开设于所述制氧模块后壳403,在一些可选的实施例中,在进风口401处安装有过滤装置,如栅板、滤尘网或者HEPA等,过滤装置可以阻挡空气中的部分灰尘、杂质进入制氧模块内,制氧模块后壳403上还设有氧气管接口301,氧气管接口301设于所述挡板510远离所述进风口401的一侧,压缩机100通过出氧管302将氧气输送至氧气管接口301处,用户可以从将吸氧管与氧气管接口连接,可以直接吸氧。The air inlet 401 is opened at the rear shell 403 of the oxygen generation module. In some optional embodiments, a filter device, such as a grille, a dust filter or HEPA, etc., is installed at the air inlet 401, and the filter device can block the air in the air. Part of the dust and impurities enter the oxygen production module, and the rear shell 403 of the oxygen production module is also provided with an oxygen pipe interface 301, which is located on the side of the baffle 510 away from the air inlet 401, and the compressor 100 passes The oxygen outlet tube 302 delivers oxygen to the oxygen tube interface 301, and the user can directly inhale oxygen by connecting the oxygen inhalation tube to the oxygen tube interface.
制氧模块顶盖404中部开有与制氧模块内壳形状相适应的开口,由于制氧模块内壳502并不为规则的圆形,而是在圆形表面带有一段平直的板面,因此该制氧模块顶盖404也进行相应形状的设计,避免剩余空气的泄露,其还设有端口向上的电源接口二601和通信接口二701,电源和通信接口均为空气处理装置内部通用的接口,方便空气处理装置内不同装置的串并联,减少了绕线的繁琐。The middle part of the top cover 404 of the oxygen generating module has an opening suitable for the shape of the inner shell of the oxygen generating module. Since the inner shell 502 of the oxygen generating module is not a regular circle, but has a straight section on the circular surface Therefore, the top cover 404 of the oxygen generation module is also designed with a corresponding shape to avoid the leakage of the remaining air. It is also equipped with a power interface 2 601 and a communication interface 2 701 with ports upward. The power supply and communication interfaces are common inside the air handling device. The interface facilitates the series and parallel connection of different devices in the air handling device, reducing the cumbersome winding.
顶盖支撑405中部开有制氧模块内壳形状相适应的圆形开口,在顶盖支撑405上与制氧模块内壳502的板面对应的位置,顶盖支撑405上设有两端连接在圆形开口上的细条挡片,顶盖支撑405沿内圆和外圆的边缘上分别设有向上的环向边缘条,与制氧模块顶盖404之间形成一定的供固定部件的安装空间。在一些实施例中,顶盖支撑405通过螺钉与制氧模块顶盖404固定连接,顶盖支撑405上设有模块连接铁片800,制氧模块外壳400上设有模块连接磁铁801,模块连接铁片800和模块连接磁铁801用于制氧模块与空气处理装置内的其他模块进行磁力吸合连接,方便拆装。There is a circular opening in the middle of the top cover support 405 that is suitable for the shape of the inner shell of the oxygen production module. The thin strip baffles connected to the circular opening, the top cover support 405 are respectively provided with upward circumferential edge strips along the edges of the inner circle and the outer circle, and a certain space for fixing parts is formed between the top cover 404 of the oxygen making module. installation space. In some embodiments, the top cover support 405 is fixedly connected to the oxygen production module top cover 404 by screws, the top cover support 405 is provided with a module connection iron piece 800, and the oxygen production module shell 400 is provided with a module connection magnet 801, and the module connection The iron sheet 800 and the module connection magnet 801 are used for the magnetic attraction connection between the oxygen generation module and other modules in the air treatment device, which is convenient for disassembly and assembly.
需要说明的是,制氧模块外壳400的高度等于制氧模块骨架500加上制氧模块顶盖404和顶盖支撑405的高度之和。在制氧模块前壳402和制氧模块后壳403内侧的上下两处分别设有环形的细条形卡边,顶杆支撑405的边缘下部是卡位与上部卡边的上平面上,而制氧模块骨架500的制氧模块内壳502和制氧模块底板503在固定位置还设有若干的肋板,肋板上边缘与下部的卡边下平面贴合。It should be noted that the height of the oxygen generating module shell 400 is equal to the sum of the heights of the oxygen generating module skeleton 500 plus the heights of the oxygen generating module top cover 404 and the top cover support 405 . The upper and lower sides of the front shell 402 of the oxygen generation module and the inner side of the rear shell 403 of the oxygen generation module are respectively provided with annular thin strip-shaped clamping edges. The oxygen generating module inner shell 502 and the oxygen generating module bottom plate 503 of the oxygen module skeleton 500 are also provided with several ribs at the fixed positions, and the upper edge of the ribs is attached to the lower plane of the lower card edge.
制氧模块还包括用于控制压缩机100启停的PCB板块802,PCB板块接收遥控器指令开启或停止压缩机100的工作,进而实现对制氧的控制;粘贴于制氧模块后壳403与压缩机100相对位置处的减震垫803可以减少压缩机100工作时传递给制氧模块后壳403的震动,实现整个制氧模块的低噪化,也避免长期的震动导致连接铁片和磁铁的易位脱落。The oxygen generation module also includes a PCB board 802 for controlling the start and stop of the compressor 100. The PCB board receives the remote control command to start or stop the operation of the compressor 100, thereby realizing the control of oxygen generation; The shock-absorbing pad 803 at the relative position of the compressor 100 can reduce the vibration transmitted to the rear shell 403 of the oxygen-generating module when the compressor 100 is working, so as to realize the low-noise of the whole oxygen-generating module, and also avoid long-term vibrations that may lead to connecting iron sheets and magnets The translocation falls off.
同时,本发明还提供了一种空气处理装置,空气处理装置包括除湿模块、净化模块和制氧模块,制氧模块设于除湿模块和净化模块之间,除湿模块重量较大设于下方,净化模块设于上方,制氧模块的制氧模块出风口504与净化模块的进风口对应,使从制氧模块出风口504排出的剩余空气通过净化模块的净化过程后排出。在一些可选的实施例中,该空气处理装置可以是空调、空气净化器等。At the same time, the present invention also provides an air treatment device. The air treatment device includes a dehumidification module, a purification module and an oxygen production module. The oxygen production module is arranged between the dehumidification module and the purification module. The module is located above, and the air outlet 504 of the oxygen production module corresponds to the air inlet of the purification module, so that the remaining air discharged from the air outlet 504 of the oxygen production module is discharged through the purification process of the purification module. In some optional embodiments, the air treatment device may be an air conditioner, an air purifier, and the like.
该制氧模块的工作原理是:空气通过进风口401进入到富氧膜组200;压缩机100通过送气管300与富氧膜组200连接,压缩机100的旋转使富氧膜组200产生压力差;在压力差驱动下,氧气优先通过富氧膜组200,通过送气管300进入压缩机100,再通过出氧管302传送至氧气管接口301;只要将吸氧管连接到氧气管接口301,即可吸氧。在本案附图未展示的一个实施例中,制氧装置上方设有抽风装置,如风扇等,剩余的空气可在设于空气处理装置内部上方的顶部风扇的驱动下,通过制氧模块出风口504抽出,进入净化模块中实现空气净化。The working principle of the oxygen production module is: air enters the oxygen-enriched membrane group 200 through the air inlet 401; the compressor 100 is connected to the oxygen-enriched membrane group 200 through the air supply pipe 300, and the rotation of the compressor 100 makes the oxygen-enriched membrane group 200 generate pressure Poor; driven by the pressure difference, oxygen first passes through the oxygen-enriched membrane group 200, enters the compressor 100 through the air supply pipe 300, and then is sent to the oxygen pipe interface 301 through the oxygen outlet pipe 302; as long as the oxygen suction pipe is connected to the oxygen pipe interface 301 , to inhale oxygen. In an embodiment not shown in the drawings of this case, an exhaust device, such as a fan, is provided above the oxygen generator, and the remaining air can pass through the air outlet of the oxygen generator module under the drive of the top fan installed above the inside of the air treatment device. 504 is drawn out and enters the purification module to realize air purification.
综上所述,以上所述内容仅为本发明的实施例,仅用于说明本发明的原理,并非用于限定本发明的保护范围。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。To sum up, the above content is only an embodiment of the present invention, and is only used to illustrate the principle of the present invention, and is not used to limit the protection scope of the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the protection scope of the present invention.
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| CN202924726U (en) * | 2012-11-08 | 2013-05-08 | 中国人民解放军第四军医大学 | Oxygen enrichment membrane device for plateau vehicle-mounted aerator |
| CN103466554A (en) * | 2013-09-17 | 2013-12-25 | 忻建国 | Portable repeated multiple-membrane oxygen generator |
| CN203447944U (en) * | 2013-07-30 | 2014-02-26 | 杭州普菲科空分设备有限公司 | Radial oxygen production adsorption tower |
| CN204022503U (en) * | 2014-07-16 | 2014-12-17 | 上海船研环保技术有限公司 | Integrated apparatus for treating ship ballast water |
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| CN202924726U (en) * | 2012-11-08 | 2013-05-08 | 中国人民解放军第四军医大学 | Oxygen enrichment membrane device for plateau vehicle-mounted aerator |
| CN203447944U (en) * | 2013-07-30 | 2014-02-26 | 杭州普菲科空分设备有限公司 | Radial oxygen production adsorption tower |
| CN103466554A (en) * | 2013-09-17 | 2013-12-25 | 忻建国 | Portable repeated multiple-membrane oxygen generator |
| CN204022503U (en) * | 2014-07-16 | 2014-12-17 | 上海船研环保技术有限公司 | Integrated apparatus for treating ship ballast water |
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