WO2017147902A1 - 一种基于物联网的新型静电除尘设备 - Google Patents

一种基于物联网的新型静电除尘设备 Download PDF

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WO2017147902A1
WO2017147902A1 PCT/CN2016/075624 CN2016075624W WO2017147902A1 WO 2017147902 A1 WO2017147902 A1 WO 2017147902A1 CN 2016075624 W CN2016075624 W CN 2016075624W WO 2017147902 A1 WO2017147902 A1 WO 2017147902A1
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outer casing
internet
capacitor
integrated circuit
resistor
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French (fr)
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马翼
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B03SEPARATION OF SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS; MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03CMAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03C3/00Separating dispersed particles from gases or vapour, e.g. air, by electrostatic effect
    • 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

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  • the invention relates to a novel electrostatic precipitating device based on the internet of things.
  • the technical problem to be solved by the present invention is to provide a new electrostatic precipitator based on the Internet of Things in order to overcome the insufficiency of the prior art electrode cleaning and low dust removal efficiency and poor reliability.
  • a novel electrostatic precipitator device based on the Internet of Things, comprising a casing, an air inlet mechanism disposed above the casing, a primary filtering mechanism disposed in the casing, and a secondary filtering mechanism And a three-stage filter mechanism, a lower flange disposed at a bottom of the outer casing, and an air outlet disposed at one side of the outer casing;
  • the three-stage filter mechanism includes a negative electrode disposed inside the outer casing, a positive electrode vertically disposed inside the outer casing, and an upper flange, the positive electrode being disposed on the upper flange, and the upper flange and the lower flange method a blue connection, the central axis of the positive electrode is on the same line as the central axis of the outer casing;
  • a central control device is disposed in the outer casing, the central control device is a PLC, the central control device includes a working power supply module and a wireless communication module, and the working power supply module includes a working power supply circuit.
  • the working power circuit includes an integrated circuit, a first capacitor, a second capacitor, a third capacitor, a first resistor, a second resistor, an inductor, and a diode.
  • the integrated circuit is of the type V5501, and the input pin of the integrated circuit
  • the grounding pin of the integrated circuit is grounded through a first capacitor
  • the bootstrap capacitor pin of the integrated circuit is connected to an inductor pin of the integrated circuit through a second capacitor
  • the inductor pin and the diode of the integrated circuit a cathode connection
  • an anode of the diode is grounded
  • an inductance pin of the integrated circuit is grounded through a series circuit composed of an inductor and a third capacitor
  • an inductance pin of the integrated circuit is formed by an inductor, a first resistor and a second resistor
  • the series circuit is grounded, and the output feedback pins of the integrated circuit are respectively connected to the first resistor and the second resistor.
  • the air inlet mechanism includes a bracket and a driving motor disposed above the outer casing, and the driving motor is provided with a plurality of blades.
  • the number of blades is five.
  • the filter is used to filter large particles in the air to ensure the reliability of air dust removal of the device, and the primary filtration mechanism includes a filter.
  • the reliability of the apparatus is improved by filtering the microorganisms in the air by activated carbon, the secondary filtration mechanism comprising activated carbon.
  • the upper flange and the lower flange are respectively provided with a plurality of through holes, and the number of through holes on the upper flange is consistent with one-to-one correspondence with the number of through holes on the lower flange, and the air outlet is located Above the upper flange.
  • the central control device comprises a central control system, a motor drive module connected to the central control system, and an electrode control module, the drive motor being electrically connected to the motor drive module, the negative electrode and the positive electrode
  • the electrodes are electrically connected to the electrode control module, and the working power module and the wireless communication module are both connected to the central control system.
  • the first resistor and the second resistor are both adjustable resistors.
  • the invention has the beneficial effects that the positive electrode of the new electrostatic precipitator based on the Internet of Things is fixed in the center of the outer casing through the upper flange, and then a negative electrode is arranged on the inner side of the outer casing, thereby realizing a circular magnetic field and maximizing utilization.
  • the area of the magnetic field improves the efficiency of electrostatic precipitator.
  • the upper flange is connected to the lower flange to realize the disassembly of the positive electrode and ensure the cleaning of the positive electrode.
  • the first capacitor and the third capacitor reduce input and output noise pollution, thereby ensuring stable output of the working power circuit, ensuring stable operation of the control negative electrode and the positive electrode, and improving reliability of the device; and ensuring that the wireless communication module 14 can ensure The staff monitors the working status of the equipment in real time.
  • FIG. 1 is a schematic structural view of a novel electrostatic precipitator based on the Internet of Things according to the present invention
  • FIG. 2 is a circuit schematic diagram of a working power supply circuit of a novel electrostatic precipitator based on the Internet of Things according to the present invention
  • FIG. 3 is a schematic diagram of a system of a novel electrostatic precipitator based on the Internet of Things according to the present invention
  • bracket 2. drive motor, 3. wind blade, 4. outer casing, 5. filter, 6. activated carbon, 7. positive electrode, 8. negative electrode, 9. upper flange, 10. Lan, 11. air outlet, 12. central control system, 13. working power module, 14. wireless communication module, 15. motor drive module, 16. electrode control module, U1. integrated circuit, C1. first capacitor, C2. Second capacitor, C3. Third capacitor, R1. First resistor, R2. Second resistor, L1. Inductor, D1. Diode.
  • a new type of electrostatic precipitator based on the Internet of Things including the outer casing 4, An air inlet mechanism disposed above the outer casing 4, a primary filter mechanism disposed in the outer casing 4, a secondary filter mechanism and a three-stage filter mechanism, a lower flange 10 disposed at the bottom of the outer casing 4, and an outlet disposed on one side of the outer casing 4 Tuyere 11;
  • the tertiary filter mechanism includes a negative electrode 8 disposed inside the outer casing 4, a positive electrode 7 vertically disposed in the outer casing 4, and an upper flange 9, the positive electrode 7 being disposed on the upper flange 9, the upper
  • the flange 9 is flange-connected to the lower flange 10, and the central axis of the positive electrode 7 is on the same line as the central axis of the outer casing 4;
  • a central control device is disposed in the outer casing 4, the central control device is a PLC, the central control device includes a working power module 13 and a wireless communication module 14, the working power module 13 includes a working power circuit, and the working power source
  • the circuit comprises an integrated circuit U1, a first capacitor C1, a second capacitor C2, a third capacitor C3, a first resistor R1, a second resistor R2, an inductor L1 and a diode D1.
  • the integrated circuit U1 is of the type V5501, and the integration The input pin of the circuit U1 is grounded through the first capacitor C1, the ground pin of the integrated circuit U1 is grounded, and the bootstrap capacitor pin of the integrated circuit U1 is connected to the inductor pin of the integrated circuit U1 through the second capacitor C2.
  • the inductance pin of the integrated circuit U1 is connected to the cathode of the diode D1, the anode of the diode D1 is grounded, and the inductance pin of the integrated circuit U1 is grounded through a series circuit composed of the inductor L1 and the third capacitor C3, the integration
  • the inductor pin of the circuit U1 is grounded through a series circuit composed of an inductor L1, a first resistor R1 and a second resistor R2.
  • the output feedback pin of the integrated circuit U1 is respectively connected to the first resistor R1 and the second resistor. R2 is connected.
  • the air inlet mechanism comprises a bracket 1 and a drive motor 2 disposed above the outer casing 4, and the drive motor 2 is provided with a plurality of blades 3 thereon.
  • the number of the blades 3 is five.
  • the large particles in the air are filtered by the filter screen 5 to ensure the reliability of the air dust removal of the apparatus, and the primary filtration mechanism includes the filter screen 5.
  • the microorganisms in the air are filtered by the activated carbon 6 to improve the reliability of the device.
  • the secondary filtration mechanism comprises activated carbon 6.
  • the upper flange 9 and the lower flange 10 are provided with a plurality of through holes, and the number of through holes on the upper flange 9 is consistent with the number of through holes on the lower flange 10, and corresponds to each other.
  • the tuyere 11 is shown above the upper flange 9.
  • the central control device comprises a central control system 12, a motor drive module 15 and an electrode control module 16 connected to the central control system 12, the drive motor 2 being electrically connected to the motor drive module 15.
  • the negative electrode 8 and the positive electrode 7 are both electrically connected to the electrode control module 16, and the working power module 13 and the wireless communication module 14 are both connected to the central control system 12.
  • the first resistor R1 and the second resistor R2 are both adjustable resistors.
  • the positive electrode 7 is fixed in the center of the outer casing 4 through the upper flange 9, and then the inner side of the outer casing 4 is provided with a negative electrode. 8, thereby realizing the toroidal magnetic field, maximally utilizing the area of the magnetic field, improving the efficiency of electrostatic precipitator, and at the same time, the flange of the upper flange 9 and the lower flange 10 are connected, thereby realizing the disassembly of the positive electrode 7, ensuring Cleaning of the positive electrode 7.
  • the model of the integrated circuit U1 is V5501, capable of transmitting 300 mA of output current, and adopting current mode adaptive setting off time.
  • the PWM control regulates the output voltage; the input capacitor noise is reduced by the first capacitor C1, and the output noise pollution is reduced by the third capacitor C3, thereby ensuring stable output of the working power supply circuit and ensuring control of the operation of the negative electrode 8 and the positive electrode 7. Stable, improving the reliability of the equipment.
  • the wireless communication module 14 can ensure that the working state of the device is monitored in real time, thereby improving the online monitoring capability of the device.
  • the positive electrode 7 is fixed in the center of the outer casing 4 through the upper flange 9, and then the inner side of the outer casing 4 is provided with the negative electrode 8 to realize the annular magnetic field.
  • the disassembly of the positive electrode 7 can be achieved, and the cleaning of the positive electrode 7 is ensured;
  • the input capacitor noise is reduced by the first capacitor C1 and the third capacitor C3, thereby ensuring stable output of the working power circuit, ensuring stable operation of the control negative electrode 8 and the positive electrode 7, and improving the device.
  • the staff can ensure real-time monitoring of the working state of the device.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Electrostatic Separation (AREA)

Abstract

一种基于物联网的静电除尘设备,包括外壳(4)、设置在外壳(4)上方的进风机构、设置在外壳(4)内的一级过滤机构、二级过滤机构和三级过滤机构、设置在外壳(4)底部的下法兰(10)和设置在外壳(4)一侧的出风口(11),该基于物联网的静电除尘设备中正电极(7)通过上法兰(9)固定位于外壳(4)内的正中心,外壳(4)内侧一圈设有负电极(8),提高了静电除尘的效率,同时通过上法兰(9)与下法兰(10)法兰连接,能够实现正电极(7)的拆卸,保证了对电极的清理;工作电源电路中,通过第一电容(C1)和第三电容(C3)减少了输入输出噪声污染,从而保证了工作电源电路输出稳定,保证了控制负电极(8)和正电极(7)的工作稳定,提高了设备的可靠性;同时通过无线通讯模块(14),能够保证工作人员对设备的工作状态进行实时监控。

Description

一种基于物联网的新型静电除尘设备 技术领域
本发明涉及一种基于物联网的新型静电除尘设备。
背景技术
随着城市化建设的加快,人们的生活水平得到了显著的提高,但是伴随而来的空气污染问题也越来越严重。
为了提高生活空气的质量,现在市面上出现了各种空气净化设备,其中静电除尘设备也就是其中之一。在现在的静电除尘设备中,都是采用电极板进行除尘,虽然能够起到除尘效果,但是对于电极的清理带来不变,而且除尘的效率也不高。不仅如此,在控制电极的过程中,由于缺少对电极的稳定控制,这样就无法保证磁场的稳定,从而降低了除尘的可靠性。
发明内容
本发明要解决的技术问题是:为了克服现有技术电极清理不变且除尘效率低、可靠性差的不足,提供一种基于物联网的新型静电除尘设备。
本发明解决其技术问题所采用的技术方案是:一种基于物联网的新型静电除尘设备,包括外壳、设置在外壳上方的进风机构、设置在外壳内的一级过滤机构、二级过滤机构和三级过滤机构、设置在外壳底部的下法兰和设置在外壳一侧的出风口;
所述三级过滤机构包括设置在外壳内侧的负电极、竖直设置在外壳内的正电极和上法兰,所述正电极设置在上法兰上,所述上法兰与下法兰法兰连接,所述正电极的中心轴线与外壳的中心轴线在同一直线上;
所述外壳内设有中央控制装置,所述中央控制装置为PLC,所述中央控制装置包括工作电源模块和无线通讯模块,所述工作电源模块包括工作电源电路, 所述工作电源电路包括集成电路、第一电容、第二电容、第三电容、第一电阻、第二电阻、电感和二极管,所述集成电路的型号为V5501,所述集成电路的输入引脚通过第一电容接地,所述集成电路的接地引脚接地,所述集成电路的自举电容引脚通过第二电容与集成电路的电感引脚连接,所述集成电路的电感引脚与二极管的阴极连接,所述二极管的阳极接地,所述集成电路的电感引脚通过电感和第三电容组成的串联电路接地,所述集成电路的电感引脚通过电感、第一电阻和第二电阻组成的串联电路接地,所述集成电路的输出反馈引脚分别与第一电阻和第二电阻连接。
作为优选,为了保证进风的可靠性,所述进风机构包括设置在外壳上方的支架和驱动电机,所述驱动电机上设有若干风叶。
作为优选,所述风叶的数量为五个。
作为优选,通过过滤网对空气中的大颗粒物进行过滤,从而保证设备空气除尘的可靠性,所述一级过滤机构包括过滤网。
作为优选,通过活性炭对空气中的微生物进行过滤,提高了设备的可靠性,所述二级过滤机构包括活性炭。
作为优选,所述上法兰和下法兰上均设有若干通孔,所述上法兰上的通孔数量与下法兰上的通孔数量一致且一一对应,所述出风口位于上法兰上方。
作为优选,为了提高设备的智能化,所述中央控制装置包括中央控制系统、与中央控制系统连接的电机驱动模块和电极控制模块,所述驱动电机与电机驱动模块电连接,所述负电极和正电极均与电极控制模块电连接,所述工作电源模块和无线通讯模块均与中央控制系统连接。
作为优选,为了提高电路的可调性,提高设备的实用性,第一电阻和第二电阻均为可调电阻。
本发明的有益效果是,该基于物联网的新型静电除尘设备中正电极通过上法兰固定位于外壳内的正中心,随后外壳内侧一圈设有负电极,从而实现了环形磁场,最大化地利用了磁场的面积,提高了静电除尘的效率,同时通过上法兰与下法兰法兰连接,则能够实现正电极的拆卸,保证了对正电极的清理;不仅如此,工作电源电路中,通过第一电容和第三电容减少了输入输出噪声污染,从而保证了工作电源电路输出稳定,保证了控制负电极和正电极的工作稳定,提高了设备的可靠性;同时通过无线通讯模块14,能够保证工作人员对设备的工作状态进行实时监控。
附图说明
下面结合附图和实施例对本发明进一步说明。
图1是本发明的基于物联网的新型静电除尘设备的结构示意图;
图2是本发明的基于物联网的新型静电除尘设备的工作电源电路的电路原理图;
图3是本发明的基于物联网的新型静电除尘设备的系统原理图;
图中:1.支架,2.驱动电机,3.风叶,4.外壳,5.过滤网,6.活性炭,7.正电极,8.负电极,9.上法兰,10.下法兰,11.出风口,12.中央控制系统,13.工作电源模块,14.无线通讯模块,15.电机驱动模块,16.电极控制模块,U1.集成电路,C1.第一电容,C2.第二电容,C3.第三电容,R1.第一电阻,R2.第二电阻,L1.电感,D1.二极管。
具体实施方式
现在结合附图对本发明作进一步详细的说明。这些附图均为简化的示意图,仅以示意方式说明本发明的基本结构,因此其仅显示与本发明有关的构成。
如图1-图3所示,一种基于物联网的新型静电除尘设备,包括外壳4、设 置在外壳4上方的进风机构、设置在外壳4内的一级过滤机构、二级过滤机构和三级过滤机构、设置在外壳4底部的下法兰10和设置在外壳4一侧的出风口11;
所述三级过滤机构包括设置在外壳4内侧的负电极8、竖直设置在外壳4内的正电极7和上法兰9,所述正电极7设置在上法兰9上,所述上法兰9与下法兰10法兰连接,所述正电极7的中心轴线与外壳4的中心轴线在同一直线上;
所述外壳4内设有中央控制装置,所述中央控制装置为PLC,所述中央控制装置包括工作电源模块13和无线通讯模块14,所述工作电源模块13包括工作电源电路,所述工作电源电路包括集成电路U1、第一电容C1、第二电容C2、第三电容C3、第一电阻R1、第二电阻R2、电感L1和二极管D1,所述集成电路U1的型号为V5501,所述集成电路U1的输入引脚通过第一电容C1接地,所述集成电路U1的接地引脚接地,所述集成电路U1的自举电容引脚通过第二电容C2与集成电路U1的电感引脚连接,所述集成电路U1的电感引脚与二极管D1的阴极连接,所述二极管D1的阳极接地,所述集成电路U1的电感引脚通过电感L1和第三电容C3组成的串联电路接地,所述集成电路U1的电感引脚通过电感L1、第一电阻R1和第二电阻R2组成的串联电路接地,所述集成电路U1的输出反馈引脚分别与第一电阻R1和第二电阻R2连接。
作为优选,为了保证进风的可靠性,所述进风机构包括设置在外壳4上方的支架1和驱动电机2,所述驱动电机2上设有若干风叶3。
作为优选,所述风叶3的数量为五个。
作为优选,通过过滤网5对空气中的大颗粒物进行过滤,从而保证设备空气除尘的可靠性,所述一级过滤机构包括过滤网5。
作为优选,通过活性炭6对空气中的微生物进行过滤,提高了设备的可靠 性,所述二级过滤机构包括活性炭6。
作为优选,所述上法兰9和下法兰10上均设有若干通孔,所述上法兰9上的通孔数量与下法兰10上的通孔数量一致且一一对应,所述出风口11位于上法兰9上方。
作为优选,为了提高设备的智能化,所述中央控制装置包括中央控制系统12、与中央控制系统12连接的电机驱动模块15和电极控制模块16,所述驱动电机2与电机驱动模块15电连接,所述负电极8和正电极7均与电极控制模块16电连接,所述工作电源模块13和无线通讯模块14均与中央控制系统12连接。
作为优选,为了提高电路的可调性,提高设备的实用性,第一电阻R1和第二电阻R2均为可调电阻。
该基于物联网的新型静电除尘设备中,为了保证对电极的清理和除尘的效率,其中正电极7通过上法兰9固定位于外壳4内的正中心,随后外壳4内侧一圈设有负电极8,从而实现了环形磁场,最大化地利用了磁场的面积,提高了静电除尘的效率,同时通过上法兰9与下法兰10法兰连接,则能够实现正电极7的拆卸,保证了对正电极7的清理。
为了保证设备除尘的可靠性,通过保证负电极8和正电极7的工作稳定,在工作电源模块13中,集成电路U1的型号为V5501,能够传递300mA输出电流,采用电流模式自适应定关断时间的PWM控制来调节输出电压;通过第一电容C1减少了输入噪声污染,通过第三电容C3减少了输出噪声污染,从而保证了工作电源电路输出稳定,保证了控制负电极8和正电极7的工作稳定,提高了设备的可靠性。
为了实现设备的实时监控能力,通过无线通讯模块14,能够保证工作人员对设备的工作状态进行实时监控,从而提高了设备的可在线监控能力。
与现有技术相比,该基于物联网的新型静电除尘设备中正电极7通过上法兰9固定位于外壳4内的正中心,随后外壳4内侧一圈设有负电极8,从而实现了环形磁场,最大化地利用了磁场的面积,提高了静电除尘的效率,同时通过上法兰9与下法兰10法兰连接,则能够实现正电极7的拆卸,保证了对正电极7的清理;不仅如此,工作电源电路中,通过第一电容C1和第三电容C3减少了输入输出噪声污染,从而保证了工作电源电路输出稳定,保证了控制负电极8和正电极7的工作稳定,提高了设备的可靠性;同时通过无线通讯模块14,能够保证工作人员对设备的工作状态进行实时监控。
以上述依据本发明的理想实施例为启示,通过上述的说明内容,相关工作人员完全可以在不偏离本项发明技术思想的范围内,进行多样的变更以及修改。本项发明的技术性范围并不局限于说明书上的内容,必须要根据权利要求范围来确定其技术性范围。

Claims (8)

  1. 一种基于物联网的新型静电除尘设备,其特征在于,包括外壳(4)、设置在外壳(4)上方的进风机构、设置在外壳(4)内的一级过滤机构、二级过滤机构和三级过滤机构、设置在外壳(4)底部的下法兰(10)和设置在外壳(4)一侧的出风口(11);
    所述三级过滤机构包括设置在外壳(4)内侧的负电极(8)、竖直设置在外壳(4)内的正电极(7)和上法兰(9),所述正电极(7)设置在上法兰(9)上,所述上法兰(9)与下法兰(10)法兰连接,所述正电极(7)的中心轴线与外壳(4)的中心轴线在同一直线上;
    所述外壳(4)内设有中央控制装置,所述中央控制装置为PLC,所述中央控制装置包括工作电源模块(13)和无线通讯模块(14),所述工作电源模块(13)包括工作电源电路,所述工作电源电路包括集成电路(U1)、第一电容(C1)、第二电容(C2)、第三电容(C3)、第一电阻(R1)、第二电阻(R2)、电感(L1)和二极管(D1),所述集成电路(U1)的型号为V5501,所述集成电路(U1)的输入引脚通过第一电容(C1)接地,所述集成电路(U1)的接地引脚接地,所述集成电路(U1)的自举电容引脚通过第二电容(C2)与集成电路(U1)的电感引脚连接,所述集成电路(U1)的电感引脚与二极管(D1)的阴极连接,所述二极管(D1)的阳极接地,所述集成电路(U1)的电感引脚通过电感(L1)和第三电容(C3)组成的串联电路接地,所述集成电路(U1)的电感引脚通过电感(L1)、第一电阻(R1)和第二电阻(R2)组成的串联电路接地,所述集成电路(U1)的输出反馈引脚分别与第一电阻(R1)和第二电阻(R2)连接。
  2. 如权利要求1所述的基于物联网的新型静电除尘设备,其特征在于,所述进风机构包括设置在外壳(4)上方的支架(1)和驱动电机(2),所述驱动电机(2)上设有若干风叶(3)。
  3. 如权利要求2所述的基于物联网的新型静电除尘设备,其特征在于,所述风叶(3)的数量为五个。
  4. 如权利要求1所述的基于物联网的新型静电除尘设备,其特征在于,所述一级过滤机构包括过滤网(5)。
  5. 如权利要求1所述的基于物联网的新型静电除尘设备,其特征在于,所述二级过滤机构包括活性炭(6)。
  6. 如权利要求1所述的基于物联网的新型静电除尘设备,其特征在于,所述上法兰(9)和下法兰(10)上均设有若干通孔,所述上法兰(9)上的通孔数量与下法兰(10)上的通孔数量一致且一一对应,所述出风口(11)位于上法兰(9)上方。
  7. 如权利要求2所述的基于物联网的新型静电除尘设备,其特征在于,所述中央控制装置包括中央控制系统(12)、与中央控制系统(12)连接的电机驱动模块(15)和电极控制模块(16),所述驱动电机(2)与电机驱动模块(15)电连接,所述负电极(8)和正电极(7)均与电极控制模块(16)电连接,所述工作电源模块(13)和无线通讯模块(14)均与中央控制系统(12)连接。
  8. 如权利要求1所述的基于物联网的新型静电除尘设备,其特征在于,所述第一电阻(R1)和第二电阻(R2)均为可调电阻。
PCT/CN2016/075624 2016-03-04 2016-03-04 一种基于物联网的新型静电除尘设备 Ceased WO2017147902A1 (zh)

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