WO2014183620A1 - 一种净化器 - Google Patents

一种净化器 Download PDF

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Publication number
WO2014183620A1
WO2014183620A1 PCT/CN2014/077269 CN2014077269W WO2014183620A1 WO 2014183620 A1 WO2014183620 A1 WO 2014183620A1 CN 2014077269 W CN2014077269 W CN 2014077269W WO 2014183620 A1 WO2014183620 A1 WO 2014183620A1
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WO
WIPO (PCT)
Prior art keywords
module
purifier
collector
repeller
purification
Prior art date
Application number
PCT/CN2014/077269
Other languages
English (en)
French (fr)
Inventor
冉宏宇
章燕
魏招锋
刘义刚
Original Assignee
苏州贝昂科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201320257584.1U external-priority patent/CN203385149U/zh
Priority claimed from CN201310219023.7A external-priority patent/CN103263685B/zh
Priority claimed from CN2013203186906U external-priority patent/CN203280799U/zh
Application filed by 苏州贝昂科技有限公司 filed Critical 苏州贝昂科技有限公司
Priority to US14/890,806 priority Critical patent/US20160089470A1/en
Publication of WO2014183620A1 publication Critical patent/WO2014183620A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L9/00Disinfection, sterilisation or deodorisation of air
    • A61L9/16Disinfection, sterilisation or deodorisation of air using physical phenomena
    • A61L9/22Ionisation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/10Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering
    • F24F8/192Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering by electrical means, e.g. by applying electrostatic fields or high voltages
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01JELECTRIC DISCHARGE TUBES OR DISCHARGE LAMPS
    • H01J27/00Ion beam tubes
    • H01J27/02Ion sources; Ion guns
    • H01J27/022Details
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/30Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by ionisation
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/20Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters

Definitions

  • the present invention relates to the field of indoor purification equipment, and more particularly to an ion wind purifier. In other embodiments, the present invention relates to the field of Internet of Things technologies, and more particularly to a network air purifier. Background technique
  • a typical ion wind purifier includes an air inlet, an air outlet, and a generator pole and a collector pole disposed between the air inlet and the air outlet. The pole is opposite to the collector.
  • the air passes through the initial filter of the air inlet to reach the generator pole, and the pole forms a plasma field under the action of high pressure, and some air molecules are ionized; when harmful substances such as bacteria pass through the plasma field, high-energy radical oxygen And kill, while high molecular weight organic compounds such as formaldehyde are also decomposed into water and carbon dioxide by high-energy free radicals; partially ionized air is accelerated by electric field force to collide with other particles and carry them with electric charge.
  • the collecting pole is one of the core components of the ion wind purifier, and the dust particles entering the purifier are adsorbed on the surface of the collecting pole. Therefore, the collecting pole needs to be periodically cleaned to ensure the surface is cleaned, thereby ensuring Its high adsorption capacity.
  • the distance between the collector and its adjacent two repulsion plates is required to satisfy the optimal distribution of the electric field force, the spacing between the two is small, and cleaning is difficult.
  • the structure of the collector is improved, so that the collector is easy to clean, which is an urgent problem to be solved by those skilled in the art.
  • One technical problem to be solved by the present invention is to provide an ion wind purifier which not only ensures an optimized distance of electric field force between the adsorption plates but also facilitates cleaning.
  • the present invention provides an ion wind purifier comprising a collector module and a repeller module that are openable and closable, and the collector module is provided with a plurality of collector plates parallel to each other.
  • the repeller module is uniformly provided with a plurality of mutually parallel repeller plates; the collecting The pole module is electrically isolated from the repeller module, and each of the collector plates and each of the repeller plates are disposed between each other when the two plates are in a closed state.
  • one end of the collector module is provided with a rotating shaft, and the repeller module is opened relative to the collector module about the rotating shaft.
  • the collector module and the repeller module can be separated and completely separated by opening the fixing member.
  • the collector module is provided with a fixing member at one end of the rotating shaft, and the collecting pole module and the repeller module are fixedly connected by the fixing member.
  • the fixing member is a buckle.
  • the fixing member is detachably mounted to the collector module and the repelling pole mold.
  • the collector module and the repeller module are in a closed state, adjacent collector plates and the repeller plate are insulated from each other and have a potential difference, and the potential difference is two
  • the ratio of the spacing between adjacent collector plates and said repeller plates is less than 10 7 V/m.
  • the ion wind purifier provided by the present invention comprises a collector module and a repeller module which are openable and closable, wherein the collector module is provided with a plurality of collector plates and a repeller module.
  • a plurality of repeller plates are uniformly distributed on the upper side; each of the collector plates and the repeller plates are arranged between the two plates when they are in a closed state.
  • the collecting plate and the repeller plate are combined, that is, including the detachable collecting plate and the repeller plate, between the adjacent collecting plate and the repeller plate
  • the distance is the set optimal distance; when the collector module and the repeller module are in the open state, the collector plate and the repeller plate are separated, and the distance between the adjacent two collector plates and the adjacent two repeller plates is Increase.
  • This detachable design not only ensures the optimal distance between the adsorption plates, but also facilitates the cleaning of the collection modules.
  • the ion wind purifier provided by the present invention comprises a rotating shaft disposed at one end of the collector module, and the repeller module can be wound around the rotating shaft by an external force. Opened relative to the collector module; thus, the two plates can be opened for cleaning, and the separation of the two plates can be avoided, which facilitates positioning when reinstalling.
  • the collector module of the present invention is provided with a fixing member at one end away from the rotating shaft, and the collector module and the repeller module are fixedly connected by the fixing member; thus, the collector module and the collector module When the repeller module is in the closed state, the two plates are fixed by the fixing member to avoid the unconventional opening of the two plates, thereby improving the reliability of the installation of the two plates.
  • Another technical problem to be solved by the present invention is to provide a network air purifier that realizes remote start and configuration of the user and is convenient for the user to use.
  • a network air purifier comprising: a network communication module, a controller, and a purification processing module;
  • the network communication module is configured to receive an operation instruction through a network, and send the received operation instruction to the controller;
  • the controller is configured to send a control signal to the purification processing module according to an operation instruction sent by the network communication module, and control the purification processing module to perform a purification operation;
  • the purification processing module is configured to perform air purification processing according to a control signal sent by the controller.
  • the purifier further comprises: a remote control end;
  • the remote control terminal includes: an input submodule and a network communication submodule;
  • the input submodule is configured to receive an operation instruction input by a user, and send the operation instruction to the network communication submodule;
  • the network communication submodule is configured to connect the purifier through a network, and send the operation instruction to a network communication module of the purifier.
  • the remote control terminal further includes: a display submodule;
  • the display submodule is configured to display the purification status information sent by the purifier network communication module to the network communication submodule;
  • the purification state information is information of an operation state of the recording device generated by the purification processing module of the purifier when performing a purification process or the purifier hardware alarm information.
  • the purifier further comprises: a parameter configuration module;
  • the parameter configuration module is configured to provide an interaction interface of the purifier to set device parameters of the purifier
  • the equipment parameter of the purifier is a network configuration parameter and a purification working parameter of the purifier
  • the purification working parameter is a parameter required for the purification processing module of the purifier to operate.
  • the purifier further includes: an information sending module;
  • the information sending module is configured to send the purging status information to the remote control end by using the network communication module, where the remote control end has a display module, and displays the received purifying status information;
  • the purification status information is sent to the maintenance server through the network communication module, and the purification status information is recorded by the server.
  • the purifier further comprises: a system maintenance module;
  • the system maintenance module is configured to perform maintenance operations on the purifier according to system maintenance information received by the network communication module;
  • the system maintenance information includes a purification operation parameter of the purifier.
  • the purifier further comprises: a storage module;
  • the storage module is configured to store the purification status information sent by the purification processing module.
  • the network communication module is a wireless network card.
  • the purifier further comprises: a filtering module
  • the filtering module is configured to filter out electromagnetic interference in a signal received by the wireless network card.
  • the network communication module is a wired network card.
  • the network communication module receives the operation instruction, and sends the operation instruction to the controller, and the controller controls the purification processing module to operate according to the operation instruction. Since the network communication module is used, the user can connect the purifier through the network to realize the remote control operation of the purifier, which is convenient for the user to use.
  • FIG. 1 is a schematic structural view of an ion wind purifier according to the present invention when it is in a closed state
  • FIG. 2 is a schematic structural view of the ion wind purifier shown in FIG. 1 when it is in a neutral position
  • FIG. 3 is an ion wind purification shown in FIG.
  • FIG. 4 is a schematic block diagram of a first embodiment of a network air purifier provided by the present invention
  • FIG. 5 is a schematic block diagram of a second embodiment of a network air purifier provided by the present invention
  • FIG. 6 is a schematic block diagram of a third embodiment of a network air purifier provided by the present invention
  • FIG. 7 is a schematic block diagram of a fourth embodiment of a network air purifier provided by the present invention.
  • the core of the present invention is to provide an ion wind purifier which not only ensures an optimized distance between the adsorption plates but also facilitates cleaning.
  • FIG. 1 is a schematic structural view of the ion wind purifier according to the present invention when it is in a closed state
  • FIG. 2 is a schematic structural view of the ion wind purifier shown in FIG. 1 when it is in a neutral position
  • It is a schematic structural view of the ion wind purifier shown in Fig. 1 when it is fully open.
  • the ion wind purifier of the present invention comprises a collector module 1 and a repellent module 2 that are openable and closable, wherein the collector module 1 is The cloth has a plurality of mutually parallel collecting plates 11 , and the repulsion pole module 2 is evenly distributed with a plurality of mutually parallel repeller plates 21 ; the collector modules are electrically isolated from the repeller modules, and the collectors are The plate 11 and the respective repeller plates 21 are arranged between the two plates when they are in a closed state.
  • the collector module 1 and the repeller module 2 When the collector module 1 and the repeller module 2 are in a closed state, the collector plate 11 and the repeller plate 21 are merged, and the distance between the adjacent collector plate and the repeller plate is set to an optimized distance; When the module 1 and the repeller module 2 are in an open state, the collecting plate 11 and the repeller plate 21 are separated, and the distance between the adjacent collecting plates 11 and the adjacent two repeller plates 21 is increased, thereby The optimized distance between the adjacent collector plate and the repeller plate is ensured, and the cleaning of each module is facilitated.
  • the collecting pole module further includes a rotating shaft 3 disposed at one end of the collecting pole module 1 , and the repulsion pole module 2 can be opened relative to the collecting pole module 1 around the rotating shaft 3 by an external force;
  • the two plates can be opened for cleaning, and the two plates can be separated to facilitate positioning during reinstallation.
  • the collecting pole module is not limited to the inevitable setting of the rotating shaft 3, as long as the detachable connection of the collecting pole module 1 and the repeller pole module 2 can be realized, for example, also in the collecting pole module 1
  • the slotted module 2 is inserted into the collector module 1 through the mounting slot.
  • One end of the collector module 1 away from the rotating shaft 3 is provided with a fixing member 4, and the collector module 1 and the repelling pole module 2 are fixedly connected by the fixing member 4; thus, when the collector module 1 and the repulsion pole module 2 are closed In the state, the two plates are fixed by the fixing member 4, thereby avoiding the unconventional opening of the two plates, and improving the installation reliability of the two plates.
  • the fixing member 4 can also be detachably mounted to the collector module 1 and the repeller module
  • the collector module is not limited to the one end provided with the rotating shaft 3, and the other end is provided with the fixing member 4, as long as the collector module 1 and the repulsion pole module 2 can be detachably mounted, for example,
  • the two ends of the collector module are provided with fixing members 4, and when the two fixing members 4 are opened, the two plates are separated, and when the two plates are closed, the two fixing members 4 are fixedly connected.
  • the fixing member 4 may be a buckle or other removable connecting members conventionally used in the art, such as bolting or the like.
  • the interval between adjacent collector plates 11 is 3mm-20mm, and the interval between adjacent repellent plates 21 is 3mm-20mm, so that when the two plates are closed, the distance between adjacent adsorption plates is superior. .
  • the spacing between the centerlines of adjacent collector plates 11 is 13 mm and the spacing between the centerlines of adjacent repulsion plates 21 is 13 mm.
  • the spacing between the collector and the center line of the repeller is 6.5 mm.
  • the thickness of the plates of the respective plates is generally 1 mm.
  • the interval between the above plates is the distance between the center lines in the thickness direction of the two plates.
  • FIG. 4 there is shown a schematic block diagram of a first embodiment of a network air purifier provided by the present invention.
  • the embodiment provides a network air purifier, comprising: a network communication module 101, a controller 102, and a purification processing module 103.
  • the network communication module 101 is configured to receive an operation instruction through a network, and send the received operation instruction to the controller 102;
  • the controller 102 is configured to send a control signal to the purification processing module 103 according to an operation instruction sent by the network communication module 101, and control the purification processing module 103 to perform a purification operation;
  • the purification processing module 103 is configured to perform an air purification process according to a control signal sent by the controller 102.
  • the network communication module 101 receives an operation instruction of the "start device” and transmits it to the controller 102.
  • the controller 102 transmits a "start device” control signal to the purification processing module 103 in accordance with the received operation command, and the purification processing module 103 starts operating.
  • the network communication module 101 receives the operation command of "dehumidification purification” and sends it to the controller 102.
  • the controller 102 sends a "dehumidification purification" control signal to the purification processing module 103 in accordance with the received operation instruction, and the purification processing module 103 starts the dehumidification operation.
  • the network communication module receives the operation instruction, and sends the operation instruction to the controller, and the controller controls the purification processing module to operate according to the operation instruction. Since the network communication module is used, the user can connect the purifier through the network to realize the remote control operation of the purifier, which is convenient for the user to use.
  • FIG. 5 there is shown a schematic block diagram of a second embodiment of a network air purifier provided by the present invention.
  • the network air purifier 100 further includes a remote control terminal 200.
  • the remote control terminal 200 includes: an input submodule 201 and a network communication submodule 202.
  • the input submodule 201 is configured to receive an operation instruction input by a user, and send the operation instruction to the network communication submodule 202. .
  • the network communication sub-module 202 is configured to connect the network air purifier 100 through a network, and send the operation instruction to the network communication module 101 of the purifier 100.
  • the network air purifier 100 further includes a remote control terminal, such as a remote controller, and may also be a PC, a Bluetooth device, or a mobile phone. Take the remote control as an example.
  • the remote control terminal includes an input sub-module 201, such as an input device such as a button, a keyboard, or a touch screen.
  • an input sub-module 201 such as an input device such as a button, a keyboard, or a touch screen.
  • the operation command to the network air purifier is input by the input sub-module 201, such as selecting a button of "start device”, or inputting a “start device” operation command, or clicking an icon of "start device”.
  • the input device 201 transmits an operation command of the "start device” to the network communication sub-module 202 of the remote controller.
  • the network communication sub-module 202 is connected to the network communication module 101 of the network air cleaner 100 via a network, and transmits an operation command "starting device" to the network communication module 101 of the network air cleaner 100.
  • the air purifier is thereby controlled to initiate a purging operation.
  • the embodiment has the following advantages:
  • the remote control terminal is connected to the network air purifier, the user inputs an operation instruction through the input module of the remote control end, and is sent to the network communication module of the network air purifier through the network communication sub-module of the remote control end,
  • the remote control operation of the air purifier by the remote device is realized, which is convenient for the user to use.
  • FIG. 6 there is shown a block diagram of a third embodiment of a network air purifier provided by the present invention.
  • the remote control terminal 200 further includes: a display submodule 301.
  • the display sub-module 301 is configured to display the purification status information sent by the network communication module 101 of the network air purifier 100 to the network communication sub-module 202.
  • the purification status information is information of an operation state of the recording device generated by the purification processing module 103 of the network air cleaner 100 when performing a purification process or hardware alarm information of the network air cleaner 100.
  • the purification processing module 103 of the network air purifier 100 When the purification processing module 103 of the network air purifier 100 is in operation, the status information "dehumidification purification" is sent to the display submodule 301 on the remote control terminal 200 through the network communication module 101, and is displayed by the display submodule.
  • the current state of the network air purifier 100 is "dehumidification purification”.
  • This embodiment has the following advantages: On the basis of the second embodiment of the network air purifier, the display sub-module is added. The purification status information sent by the network communication module of the network air purifier to the network communication sub-module is displayed by the display sub-module. Thereby, the state monitoring of the network air purifier is realized, and the user is provided with a more friendly interface, which is convenient for the user to understand the working state of the purifier.
  • FIG. 7 there is shown a schematic block diagram of a fourth embodiment of a network air purifier provided by the present invention.
  • the network air purifier provided in this embodiment further includes: a parameter configuration module 401, an information sending module 402, a system maintenance module 403, and a storage module 404.
  • the parameter configuration module 401 is configured to provide an interaction interface of the network air purifier 100 to set device parameters of the network air purifier.
  • the interactive interface may be a WEB page mode, and the user configures the network air purifier 100 through a webpage.
  • the equipment parameters of the network air purifier are network configuration parameters and purification working parameters of the network air purifier 100.
  • the purification operating parameter is a parameter required for the purification processing module 103 of the network air cleaner 100 to operate.
  • the information sending module 402 is configured to send the purification status information of the purification processing module 103 to the remote control terminal 200 through the network communication module 101, where the remote control terminal has a display module 301, and the received The purification status information is displayed; the purification status information may also be sent to the maintenance server through the network communication module, and the purification status information is recorded by the maintenance server.
  • the system maintenance module 403 is configured to perform maintenance operations on the network air purifier 100 according to system maintenance information received by the network communication module 101.
  • the system maintenance information includes a purification operation parameter of the network air purifier.
  • the storage module 404 is configured to store the purification status information sent by the purification processing module 103.
  • This embodiment has the following advantages: By adding a parameter configuration module, the remote WEB page login of the user can be implemented, and the user's graphic operation is realized. By adding the information sending module, the remote fault monitoring of the network air purifier can be realized, and the hidden troubles can be discovered in time; by adding the system maintenance module, the software parameters of the network air purifier can be upgraded and maintained remotely; The module can save the purification status information of the purification processing module locally, and may determine the cause of the failure through the status information when a device failure occurs.

Abstract

一种离子风净化器,该离子风净化器包括可开合连接的收集极模组(1)和排斥极模组(2),其中,收集极模组(1)上均布有若干收集极板(11),排斥极模组(2)上均布有若干排斥极板(21);各收集极板(11)和各排斥极板(21)在两极板处于闭合状态时相间布置。从而保证了相邻收集极板(11)与排斥极板(21)之间的优化距离;当收集极模组(1)和排斥极模组(2)处于打开状态时,收集极板(11)和排斥极板(21)分离,相邻两收集极板(11)和相邻两排斥极板(21)之间的距离均增大,从而便于收集极模组的清洗。还公开了一种网络空气净化器。

Description

一种净化器 相关申请的交叉引用
本专利申请要求 2013 年 5 月 13 日提交的中国专利申请 201320257584.1 , 2013年 6月 4 日提交的中国专利申请 201310219023.7, 2013年 6月 4日提交的中国专利申请 201320318690.6的优先权, 这些申请 的全文以引用的方式并入本申请中。 技术领域
在一些实施方式中, 本发明涉及室内净化设备领域, 特别涉及一种离 子风净化器。 在另一些实施方式中, 本发明涉及物联网技术领域, 特别涉 及一种网络空气净化器。 背景技术
近年来由于人们经济收入的提高和社会的发展, 使得人们对生活质量 有了越来越高的要求。 在科学健康的饮食、 舒适的住宿环境、 方便的交通 条件等因素被重视的同时, 对于空气质量的要求也成为人们生活质量中的 最重要的因素之一。 尤其是近几年经常出现的雾霾天气以及 PM2.5空气质 量标准的提出, 进一步提升了对生活空气质量的关注。
开发高性能的空气净化器来净化室内空气、 优化室内环境迫在眉睫, 一种典型的离子风净化器包括进风口、 出风口, 以及设置于进风口和 出风口之间的发生极和收集极, 发生极与收集极相对设置。 空气经过进风 口的初过滤网达到发生极, 发生极在高压作用下, 形成等离子场, 并使部 分空气分子电离; 细菌等有害物质通过等离子场时, 被高能量的自由基氧 化而杀死, 同时甲醛等高分子有机物也被高能量的自由基氧化分解成水和 二氧化碳; 部分电离的空气在电场力的作用下被加速而碰撞其他粒子, 并 使其带上电荷, 通过这样一系列的滚雪球式的雪崩效应, 净化器箱内大部 分的灰尘细菌都带上电荷; 在电场力的作用下, 带电灰尘颗粒收集电极运 动, 最终在带相反电荷的收集极被吸附; 清洁的空气在电荷被中和之后, 保持其动能而继续前进, 从而形成离子风而循环整个空间的空气。
由上述工作过程可知, 收集极是离子风净化器的核心部件之一, 进入 净化器中的灰尘颗粒吸附在收集极的表面, 因此, 收集极需要定期净化, 以保证其表面的清洁, 从而保证其较高的吸附能力。 但是, 由于收集极与 其相邻两排斥板之间的距离要满足电场力优化分布的要求, 而导致其两者 的间距较小, 清洗较为困难。
因此, 在保证收集极的吸附板之间的距离较小不影响其吸附效果的情 况下, 对收集极的结构进行改进, 使得收集极便于清洗, 就成为本领域技 术人员亟需解决的问题。
另外, 为了满足人们对居室内的空气质量的要求, 许多厂商陆续推出 了各种室内空气净化器。 但现有的空气净化器在使用时需要用户走到装置 前通过按钮或触摸屏等手动方式进行控制, 不能实现空气净化器的远程控 制和信息交互, 给人们在使用时带来不便。 例如: 用户希望到家后即可享 受到清新的空气, 而不是需要到家后才可以开启家中的空气净化器。 发明内容
本发明要解决的一个技术问题是提供一种离子风净化器, 其既保证了 吸附板之间的电场力的优化距离, 又便于清洗。
为解决上述技术问题, 本发明提供一种离子风净化器, 包括可开合连 接的收集极模组和排斥极模组, 所述收集极模组上均布有若干相互平行的 收集极板, 所述排斥极模组上均布有若干相互平行的排斥极板; 所述收集 极模组与所述排斥极模组电隔离, 且各所述收集极板和各所述排斥极板在 两极板处于闭合状态时相间布置。
优选地, 所述收集极模组的一端设置有转轴, 所述排斥极模组绕所述 转轴相对于所述收集极模组打开。
优选地,所述收集极模组与所述排斥极模组可以通过打开固定件而进行 分离完全拆分。
优选地, 所述收集极模组远离所述转轴的一端设置有固定件, 所述收 集极模组与所述排斥极模组通过所述固定件固定连接。
优选地, 所述固定件为搭扣。
优选地, 所述固定件可拆卸地安装于所述收集极模组和所述排斥极模 组。
优选地, 当所述收集极模组与所述排斥极模组处于闭合状态时,相邻所 述收集极板与所述排斥极板互相绝缘、 并具有电位差,且所述电位差与两相 邻的所述收集极板和所述排斥极板之间的间距的比例小于 107 V/m。
本发明所提供的离子风净化器, 该离子风净化器包括可开合连接的收 集极模组和排斥极模组, 其中, 收集极模组上均布有若干收集极板, 排斥 极模组上均布有若干排斥极板; 各收集极板和各排斥极板在两极板处于闭 合状态时相间布置。 当收集极模组和排斥极模组处于闭合状态时, 收集极 板和排斥极板合并, 也就是包括可拆分的收集极板和排斥极板, 相邻收集 极板和排斥极板之间的距离为设置的优化距离; 当收集极模组和排斥极模 组处于打开状态时, 收集极板和排斥极板分离, 相邻两收集极板和相邻两 排斥极板之间的距离均增大. 这样的可分拆设计既保证了吸附板之间的优 化距离, 又便于收集模组的清洗。
在一种优选的实施方式中, 本发明所提供的离子风净化器包括转轴, 该转轴设置于收集极模组的一端, 排斥极模组可在外力的作用下绕该转轴 相对于收集极模组打开; 这样, 既可以将两极板打开以便于清洗, 也可以 避免两极板分离, 便于再次安装时的定位。
在另一种具体实施方式中, 本发明所提供的收集极模组远离转轴的一 端设置有固定件, 收集极模组与排斥极模组通过固定件固定连接; 这样, 当收集极模组和排斥极模组处于闭合状态时, 通过固定件将两极板固定, 避免两极板的非常规打开, 提高了两极板的安装可靠性。
本发明要解决的另外一个技术问题是提供一种网络空气净化器, 实现 用户的远程启动和配置, 方便用户的使用。
一种网络空气净化器, 其特征在于, 包括: 网络通信模块、 控制器、 净化处理模块;
所述网络通信模块, 用于通过网络接收操作指令, 并将接收到的所述 操作指令发送给所述控制器;
所述控制器, 用于按照所述网络通信模块发送的操作指令向所述净化 处理模块发送控制信号, 控制所述净化处理模块进行净化操作;
所述净化处理模块, 用于按照所述控制器发送的控制信号进行空气净 化处理。
优选地, 所述净化器还包括: 远程控制端;
所述远程控制端包括: 输入子模块和网络通信子模块;
所述输入子模块, 用于接收用户输入的操作指令, 并将所述操作指令 发送给所述网络通信子模块;
所述网络通信子模块, 用于通过网络连接所述净化器, 将所述操作指 令发送到所述净化器的网络通信模块。
优选地, 所述远程控制端还包括: 显示子模块;
所述显示子模块, 用于显示由所述净化器网络通信模块发送给所述网 络通信子模块的净化状态信息; 所述净化状态信息, 为所述净化器的净化处理模块在进行净化处理时 产生的记录设备工作状态的信息或所述净化器硬件告警信息。
优选地, 所述净化器还包括: 参数配置模块;
所述参数配置模块, 用于提供所述净化器的交互接口对所述净化器的 设备参数进行设置;
所述净化器的设备参数, 为所述净化器的网络配置参数和净化工作参 数;
所述净化工作参数, 为所述净化器的净化处理模块工作时所需要的参 数。
优选地, 所述净化器还包括: 信息发送模块;
所述信息发送模块, 用于将所述净化状态信息通过所述网络通信模块 发送到远程控制端, 所述远程控制端具有显示模块, 将接收到的所述净化 状态信息进行显示;
将所述净化状态信息通过所述网络通信模块发送到维修服务器, 由所 述维爹良务器记录所述净化状态信息。
优选地, 所述净化器还包括: 系统维护模块;
所述系统维护模块, 用于按照所述网络通信模块接收到的系统维护信 息对所述净化器进行维护操作;
所述系统维护信息, 包括所述净化器的净化工作参数。
优选地, 所述净化器还包括: 存储模块;
所述存储模块, 用于存储净化处理模块发送的净化状态信息。
优选地, 所述网络通信模块为无线网卡。
优选地, 所述净化器还包括: 滤波模块;
所述滤波模块, 用于滤除所述无线网卡接收的信号中的电磁干扰。 优选地, 所述网络通信模块为有线网卡。 与现有技术相比, 本发明具有以下优点: 网络通信模块接收操作指令, 并将操作指令发送给控制器, 由控制器控制净化处理模块按照操作指令进 行工作。 由于使用网络通信模块, 用户可以通过网络连接所述净化器, 实 现净化器的远程控制操作, 方便用户的使用。 附图说明
图 1为本发明所提供的离子风净化器处于闭合状态时的结构示意图; 图 2为图 1所示离子风净化器处于开启中位时的结构示意图; 图 3为图 1所示离子风净化器处于完全开启时的结构示意图; 图 4是本发明提供的一种网络空气净化器的实施例一的原理框图; 图 5是本发明提供的一种网络空气净化器的实施例二的原理框图; 图 6是本发明提供的一种网络空气净化器的实施例三的原理框图; 图 7是本发明提供的一种网络空气净化器的实施例四的原理框图。 具体实施方式
本发明的核心是提供一种离子风净化器, 其既保证了吸附板之间的优 化距离, 又便于清洗。
为了使本技术领域的人员更好地理解本发明的技术方案, 下面结合附 图和具体实施方式对本发明作进一步的详细说明。
请参考图 1至图 3,图 1为本发明所提供的离子风净化器处于闭合状态 时的结构示意图; 图 2为图 1所示离子风净化器处于开启中位时的结构示 意图; 图 3为图 1所示离子风净化器处于完全开启时的结构示意图。
在一种具体实施方式中, 本发明所提供的离子风净化器, 该离子风净 化器包括可开合连接的收集极模组 1和排斥极模组 2, 其中, 收集极模组 1 上均布有若干相互平行的收集极板 11, 排斥极模组 2上均布有若干相互平 行的排斥极板 21 ; 所述收集极模组与所述排斥极模组电隔离, 且各收集极 板 11和各排斥极板 21在两极板处于闭合状态时相间布置。当收集极模组 1 和排斥极模组 2处于闭合状态时, 收集极板 11和排斥极板 21合并, 相邻 收集极板和排斥极板之间的距离为设置的优化距离; 当收集极模组 1 和排 斥极模组 2处于打开状态时, 收集极板 11和排斥极板 21分离, 相邻两收 集极板 11和相邻两排斥极板 21之间的距离均增大, 从而既保证了相邻收 集极板和排斥极板之间的优化距离, 又便于各模组的清洗。
上述收集极模组还包括转轴 3, 该转轴 3设置于收集极模组 1的一端, 排斥极模组 2可在外力的作用下绕该转轴 3相对于收集极模组 1打开; 这 样, 既可以将两极板打开以便于清洗, 也可以避免两极板分离, 便于再次 安装时的定位。
从理论上来讲, 收集极模组也不局限于必然设置转轴 3, 只要能够实现 收集极模组 1和排斥极模组 2的可拆分连接即可, 例如也可以在收集极模 组 1的适当位置开槽, 将排斥极模组 2通过该安装槽插装于收集极模组 1。
收集极模组 1远离转轴 3的一端设置有固定件 4,收集极模组 1与排斥 极模组 2通过固定件 4固定连接; 这样, 当收集极模组 1和排斥极模组 2 处于闭合状态时, 通过固定件 4将两极板固定, 避免两极板的非常规打开, 提高了两极板的安装可靠性。
固定件 4也可以可拆卸地安装于所述收集极模组 1和所述排斥极模组
2。
上述收集极模组也不局限于上述一端设置转轴 3, 另一端设置固定件 4 的结构, 只要能够实现收集极模组 1和排斥极模组 2的可拆装即可, 例如, 也可以在收集极模组的两端均设置固定件 4,当两固定件 4打开时实现两极 板的分离, 当两极板闭合时通过两固定件 4固定连接。
上述固定件 4可以为搭扣, 也可以为本领域常规使用的其他可拆装地 连接件, 例如螺栓连接等。 相邻收集极板 11之间的间隔为 3mm-20mm, 相邻排斥极板 21之间的 间隔为 3mm-20mm, 以便当两极板闭合时, 相邻两吸附板之间的距离为较 优值。
优选地, 当模块完全展开时, 相邻收集极板 11的中心线之间的间隔为 13mm, 相邻排斥极板 21的中心线之间的间隔为 13mm。
优选地, 当模块闭合时, 收集极与排斥极中心线之间的间距为 6.5mm。 优选各极板的板材的厚度一般为 lmm。
需要指出的是, 上述各板之间的间隔均为两极板的厚度方向的中心线 之间的距离。
参见图 4, 该图是本发明提供的网络空气净化器的实施例一的原理框 图。
本实施例提供一种网络空气净化器, 包括: 网络通信模块 101、 控制器 102、 净化处理模块 103。
所述网络通信模块 101, 用于通过网络接收操作指令, 并将接收到的所 述操作指令发送给所述控制器 102;
所述控制器 102,用于按照所述网络通信模块 101发送的操作指令向所 述净化处理模块 103发送控制信号, 控制所述净化处理模块 103进行净化 操作;
所述净化处理模块 103,用于按照所述控制器 102发送的控制信号进行 空气净化处理。
例如:
所述网络通信模块 101 接收到 "启动设备" 的操作指令, 发送给所述 控制器 102。
所述控制器 102按照接收到的操作指令, 向所述净化处理模块 103发 送 "启动设备" 控制信号, 所述净化处理模块 103开始工作。 这时, 所述网络通信模块 101 又接收到 "除湿净化" 的操作指令, 发 送给所述控制器 102。
所述控制器 102按照接收到的操作指令, 向所述净化处理模块 103发 送 "除湿净化" 控制信号, 所述净化处理模块 103开始进行除湿工作。
本实施例具有以下优点: 在本实施例中, 网络通信模块接收操作指令, 并将操作指令发送给控制器, 由控制器控制净化处理模块按照操作指令进 行工作。 由于使用网络通信模块, 用户可以通过网络连接所述净化器, 实 现净化器的远程控制操作, 方便用户的使用。
参见图 5, 该图是本发明提供的网络空气净化器的实施例二的原理框 图。
在本实施例提供的网络空气净化器中, 所述网络空气净化器 100还包 括远程控制端 200。
所述远程控制端 200包括: 输入子模块 201和网络通信子模块 202; 所述输入子模块 201, 用于接收用户输入的操作指令, 并将所述操作指 令发送给所述网络通信子模块 202。
所述网络通信子模块 202,用于通过网络连接所述网络空气净化器 100, 将所述操作指令发送到所述净化器 100的网络通信模块 101。
例如:
所述网络空气净化器 100还包括有远程控制端, 如遥控器, 也可以为 PC、 蓝牙设备、 手机。 以下以遥控器为例。
所述远程控制端包括有输入子模块 201, 如按钮、键盘、 触摸屏等输入 设备。
由输入子模块 201输入对所述网络空气净化器的操作指令,如选择 "启 动设备" 的按钮, 或输入 "启动设备" 操作指令, 或点击 "启动设备" 的 图标。 所述输入设备 201 将 "启动设备" 的操作指令发送给遥控器的网络通 信子模块 202。
所述网络通信子模块 202通过网络与所述网络空气净化器 100的网络 通信模块 101 连接, 将操作指令 "启动设备" 发送给所述网络空气净化器 100的网络通信模块 101。 由此控制所述空气净化器启动进行净化操作。
本实施例具有以下优点: 使用远程控制端与网络空气净化器相连接, 用户通过远程控制端的输入模块输入操作指令, 并通过远程控制端的网络 通信子模块发送到网络空气净化器的网络通信模块, 实现远程设备对空气 净化器的远程控制操作, 方便用户的使用。
参见图 6,该图是本发明提供的网络空气净化器的第三实施例的原理框 图。
在本实施例提供的网络空气净化器中, 所述远程控制端 200还包括: 显示子模块 301。
所述显示子模块 301,用于显示由所述网络空气净化器 100的网络通信 模块 101发送给所述网络通信子模块 202的净化状态信息。
所述净化状态信息, 为所述网络空气净化器 100 的净化处理模块 103 在进行净化处理时产生的记录设备工作状态的信息或所述网络空气净化器 100的硬件告警信息。
例如:
所述网络空气净化器 100的净化处理模块 103在工作时, 把状态信息 "除湿净化" 通过所述网络通信模块 101发送到所述远程控制端 200上的 显示子模块 301,由显示子模块显示所述网络空气净化器 100当前的状态为 "除湿净化"。
或将净化处理模块 103 的 "需更换净化组件" 的告警信息发送到所述 显示子模块 301进行显示, 提示用户进行更换。 本实施例具有以下优点: 在网络空气净化器实施例二的基础上, 增加 显示子模块。 所述网络空气净化器的网络通信模块发送给所述网络通信子 模块的净化状态信息, 由显示子模块进行显示。 从而实现了对网络空气净 化器的状态监控, 为用户提供了更友好的界面, 便于用户了解净化器的工 作状态。
参见图 7, 该图是本发明提供的网络空气净化器的实施例四的原理框 图。
在本实施例提供的网络空气净化器中, 还包括: 参数配置模块 401、 信 息发送模块 402、 系统维护模块 403、 存储模块 404。
所述参数配置模块 401,用于提供所述网络空气净化器 100的交互接口 对所述网络空气净化器的设备参数进行设置。所述交互接口可以为 WEB页 模式, 用户通过网页配置所述网络空气净化器 100。 所述网络空气净化器的 设备参数, 为所述网络空气净化器 100 的网络配置参数和净化工作参数。 所述净化工作参数, 为所述网络空气净化器 100的净化处理模块 103工作 时所需要的参数。
所述信息发送模块 402,用于将所述净化处理模块 103的净化状态信息 通过所述网络通信模块 101发送到远程控制端 200,所述远程控制端具有显 示模块 301, 将接收到的所述净化状态信息进行显示; 也可以将所述净化状 态信息通过所述网络通信模块发送到维修服务器, 由所述维修服务器记录 所述净化状态信息。
所述系统维护模块 403,用于按照所述网络通信模块 101接收到的系统 维护信息对所述网络空气净化器 100进行维护操作;
所述系统维护信息, 包括所述网络空气净化器的净化工作参数。
所述存储模块 404,用于存储所述净化处理模块 103发送的净化状态信 息。 本实施例具有以下优点: 通过增加参数配置模块, 可以实现用户的远 程 WEB页登录, 实现用户的图型化操作。 通过增加信息发送模块, 可以实 现对网络空气净化器的远程故障监控, 对故障隐患可以及时发现; 通过增 加系统维护模块, 可以从远程对网络空气净化器的软件参数等进行升级维 护; 通过增加存储模块, 可以在本地保存净化处理模块的净化状态信息, 在出现设备故障时可能通过状态信息判断故障原因。
以上所述, 仅是本发明的较佳实施例而已, 并非对本发明作任何形式 上的限制。 虽然本发明已以较佳实施例揭露如上, 然而并非用以限定本发 明。 任何熟悉本领域的技术人员, 在不脱离本发明技术方案范围情况下, 都可利用上述揭示的方法和技术内容对本发明技术方案做出许多可能的变 动和修饰, 或修改为等同变化的等效实施例。 因此, 凡是未脱离本发明技 等同变化及修饰, 均仍属于本发明技术方案保护的范围内。

Claims

权利要求书
1、一种离子风净化器,其特征在于, 包括可开合连接的收集极模组( 1 ) 和排斥极模组 (2), 所述收集极模组 ( 1 )上均布有若干相互平行的收集极 板(11), 所述排斥极模组(2)上均布有若干相互平行的排斥极板(21 ); 所述收集极模组与所述排斥极模组电隔离, 且各所述收集极板 ( 11 )和各 所述排斥极板(21 )在两极板处于闭合状态时相间布置。
2、 根据权利要求 1所述的离子风净化器, 其特征在于, 所述收集极模 组( 1 ) 的一端设置有转轴 ( 3 ), 所述排斥极模组 ( 2 )绕所述转轴( 3 )相 对于所述收集极模组( 1 )打开。
3、 根据权利要求 2所述的离子风净化器, 其特征在于, 所述收集极模 组远离所述转轴 (3 ) 的一端设置有固定件 (4), 所述收集极模组(1 ) 与 所述排斥极模组 (2)通过所述固定件 (4) 固定连接。
4、根据权利要求 3所述的离子风净化器,其特征在于,所述固定件(4) 为搭扣。
5、根据权利要求 3所述的离子风净化器,其特征在于,所述固定件(4) 可拆卸地安装于所述收集极模组(1 )和所述排斥极模组 (21
6、 根据权利要求 1至 5任一项所述的离子风净化器, 其特征在于, 当 所述收集极模组 ( 1 )与所述排斥极模组(2)处于闭合状态时,相邻所述收 集极板(11 ) 与所述排斥极板(21 ) 互相绝缘、 并具有电位差, 且所述电 位差与两相邻的所述收集极板 ( 11 )和所述排斥极板 (21 )之间的间距的 比例小于 107 V/m。
7、 一种网络空气净化器, 其特征在于, 包括: 网络通信模块、 控制器、 净化处理模块;
所述网络通信模块, 用于通过网络接收操作指令, 并将接收到的所述 操作指令发送给所述控制器; 所述控制器, 用于按照所述网络通信模块发送的操作指令向所述净化 处理模块发送控制信号, 控制所述净化处理模块进行净化操作;
所述净化处理模块, 用于按照所述控制器发送的控制信号进行空气净 化处理。
8. 根据权利要求 7所述的净化器, 其特征在于, 所述净化器还包括: 远程控制端;
所述远程控制端包括: 输入子模块和网络通信子模块;
所述输入子模块, 用于接收用户输入的操作指令, 并将所述操作指令 发送给所述网络通信子模块;
所述网络通信子模块, 用于通过网络连接所述净化器, 将所述操作指 令发送到所述净化器的网络通信模块。
9. 根据权利要求 8所述的净化器, 其特征在于, 所述远程控制端还包 括: 显示子模块;
所述显示子模块, 用于显示由所述净化器网络通信模块发送给所述网 络通信子模块的净化状态信息;
所述净化状态信息, 为所述净化器的净化处理模块在进行净化处理时 产生的记录设备工作状态的信息或所述净化器硬件告警信息。
10. 根据权利要求 7所述的净化器, 其特征在于, 所述净化器还包括: 参数配置模块;
所述参数配置模块, 用于提供所述净化器的交互接口对所述净化器的 设备参数进行设置;
所述净化器的设备参数, 为所述净化器的网络配置参数和净化工作参 数;
所述净化工作参数, 为所述净化器的净化处理模块工作时所需要的参 数。
11. 根据权利要求 7所述的净化器, 其特征在于, 所述净化器还包括: 信息发送模块;
所述信息发送模块, 用于将所述净化状态信息通过所述网络通信模块 发送到远程控制端, 所述远程控制端具有显示模块, 将接收到的所述净化 状态信息进行显示;
将所述净化状态信息通过所述网络通信模块发送到维修服务器, 由所 述维爹良务器记录所述净化状态信息。
12. 根据权利要求 7所述的净化器, 其特征在于, 所述净化器还包括: 系统维护模块;
所述系统维护模块, 用于按照所述网络通信模块接收到的系统维护信 息对所述净化器进行维护操作;
所述系统维护信息, 包括所述净化器的净化工作参数。
13. 根据权利要求 7所述的净化器, 其特征在于, 所述净化器还包括: 存储模块;
所述存储模块, 用于存储净化处理模块发送的净化状态信息。
14. 根据权利要求 7 所述的净化器, 其特征在于, 所述网络通信模块 为无线网卡。
15. 根据权利要求 14所述的净化器,其特征在于, 所述净化器还包括: 滤波模块;
所述滤波模块, 用于滤除所述无线网卡接收的信号中的电磁干扰。
16. 根据权利要求 7 所述的净化器, 其特征在于, 所述网络通信模块 为有线网卡。
PCT/CN2014/077269 2013-05-13 2014-05-12 一种净化器 WO2014183620A1 (zh)

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