WO2019056238A1 - 一种高效强劲型空气净化处理器的工作方法 - Google Patents

一种高效强劲型空气净化处理器的工作方法 Download PDF

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Publication number
WO2019056238A1
WO2019056238A1 PCT/CN2017/102548 CN2017102548W WO2019056238A1 WO 2019056238 A1 WO2019056238 A1 WO 2019056238A1 CN 2017102548 W CN2017102548 W CN 2017102548W WO 2019056238 A1 WO2019056238 A1 WO 2019056238A1
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Prior art keywords
dust
filter
control module
air
casing
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PCT/CN2017/102548
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English (en)
French (fr)
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叶晓龙
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苏州天键衡电子信息科技有限公司
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Priority to PCT/CN2017/102548 priority Critical patent/WO2019056238A1/zh
Publication of WO2019056238A1 publication Critical patent/WO2019056238A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/70Control systems characterised by their outputs; Constructional details thereof
    • F24F11/72Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
    • F24F11/74Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling air flow rate or air velocity
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/28Arrangement or mounting of filters

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  • the invention belongs to the technical field of environmental protection, and particularly relates to a working method of an efficient and powerful air purification processor.
  • an object of the present invention is to provide a method for operating a highly efficient and powerful air purifying processor which has a simple structure and a reasonable design, and the dust detecting mechanism detects the concentration of dust in the air, and passes through the shell.
  • the dust collecting device is arranged in the body to absorb the dust in the surrounding air, and then the filtered intake device is filtered and purified by the filtering device, thereby effectively improving the quality of the air purification.
  • the present invention provides a working method of an efficient and powerful air purifying processor, comprising: a casing, a dust suction device, a filtering device, a dust detecting mechanism and a control device, wherein the casing An opening is provided, and the dust collecting device and the filtering device are both disposed inside the casing, and the air inlet of the dust collecting device cooperates with an opening on the casing, and the filtering device passes through the pipe and the casing
  • the tuyere is connected, the dust detecting mechanism is disposed on the casing, and the dust collecting device, the filtering device and the dust detecting mechanism are all connected to the control device, and wherein the dust collecting device has at least two groups.
  • the working method of the high-efficiency and powerful air purifying processor described in the present invention detects the dust concentration in the air by the dust detecting mechanism, and sets the dust collecting device in the casing to make it in the surrounding air.
  • the dust is absorbed, and then the absorbed intake air is filtered and purified by a filtering device, and then the filtered air is discharged through a pipe, so that it can adjust the ability of filtering and purifying according to the detected air condition in real time.
  • Intelligent Purification which in turn allows it to better meet the needs of users.
  • the dust collecting device of the present invention is provided with a power mechanism for providing suction and a wind adjusting mechanism, and the power mechanism and the wind adjusting mechanism are both connected with the control device, so that the dust collecting device can be connected according to the detected air condition. Wind power is adjusted to further enhance intelligence.
  • a mesh In the opening of the casing of the present invention, a mesh is provided, and the mesh has a stretched S shape to facilitate concentration of the blocked impurities.
  • a glove box is arranged inside the casing, and the glove box cooperates with the screen net to facilitate centralized treatment of impurities intercepted by the screen net to reduce secondary pollution.
  • an impurity filter screen, a filter and a purifier are disposed, the impurity filter screen is disposed on a rotating shaft, the filter is disposed behind the impurity filter screen, and the purifier is disposed on the filter At the rear, the filter, the purifier and the rotating shaft are all connected with the control device, and the filter, the filter and the purifier are used to realize the multiple filtration and purification, thereby effectively ensuring the air treatment effect.
  • the impurity filter screen and the rotating shaft are detachably connected to facilitate replacement thereof.
  • a dust box is arranged under the rotating shaft to effectively collect impurities filtered in the impurity filter.
  • the density of the impurity filter is greater than the density of the screen, and gradient filtration is realized to further improve the filtration effect.
  • the control device of the present invention is provided with a dust suction control module, a filter control module, a detection control module and a controller module, wherein the dust control module is provided with a power driving unit and a wind power adjusting unit, wherein the filtering control module is The shaft control module, the filter control module and the purification control module are provided, and the driving unit and the wind adjusting unit are respectively connected with the power mechanism and the wind adjusting mechanism, and the rotating shaft control module, the filter control module and the purification control module respectively and the rotating shaft
  • the filter and the purifier are connected, the detection control module is connected to the dust detecting mechanism, and the dust control module, the filter control module and the detection control module are all connected to the controller module.
  • the dust detecting mechanism After the dust detecting mechanism receives the command, it starts to detect the dust in the air, and immediately transmits the detected data to the controller, and the data processing unit in the controller immediately receives the data for processing;
  • the controller controls the power output of the power mechanism in the dust suction device and the wind power of the wind adjusting mechanism according to the result detected by the dust detecting mechanism, and after the adjusting, the dust collecting mechanism in the dust collecting device starts to work;
  • the present invention has the following beneficial effects:
  • the controller in the controller module first commands the dust detecting mechanism to start working through the detecting control module; the dust detecting mechanism receives After the command, the dust in the air is detected, and the detected data is immediately transmitted to the controller, and then the controller will command the vacuum control module and the filter control module to start working according to the detected result, and the controller will According to the result detected by the dust detecting mechanism, the power output of the power mechanism in the dust collecting device and the wind power of the wind adjusting mechanism are controlled. After the adjusting, the dust collecting mechanism in the dust collecting device starts to work, and the dust or the impurities are continuously put. The air is sucked into the casing.
  • the screen When the air passes through the screen, the screen will block large impurities or particles, and then the blocked impurities will enter the glove box.
  • the air flows to the inside of the casing through the impurity filter. Perform preliminary filtration, then purify it through the filter, and then pass through the purifier to filter it. Purification, the toxic and harmful substances are removed, and finally the air filtered by the filtering device is discharged through the outlet of the casing through the pipeline; the whole work process is simple and easy to implement, and is realized by progressive multi-filtration. Improve its effect on air handling, so that it can better meet the needs of users.
  • the dust collecting device of the present invention is provided with a power mechanism for providing suction and a wind adjusting mechanism, and the power mechanism and the wind adjusting mechanism are both connected with the control device, so that it can vacuum the air according to the detected air condition.
  • Device wind Make adjustments to further improve intelligence.
  • the filter device of the present invention is provided with an impurity filter, a filter and a purifier, wherein the impurity filter is disposed on a rotating shaft, the filter is disposed behind the impurity filter, and the purifier is disposed at Behind the filter, the filter, purifier and rotating shaft are connected with the control device, and the filter, the filter and the purifier are used to realize multiple filtration and purification, thereby effectively ensuring the air treatment effect.
  • Figure 1 is a schematic view of the structure of the present invention
  • Figure 2 is a schematic view of electrical connections in the invention
  • housing-1 dust suction device-2, filter device-3, dust detection mechanism-4, control device-5, opening-6, air outlet-7, stop net-8, and junction box-9, Power mechanism-21, wind adjustment mechanism-22, impurity filter-31, filter-32, purifier-33, shaft-34.
  • FIG. 1 and FIG. 2 A working method of an efficient and powerful air purifying processor as shown in FIG. 1 and FIG. 2, comprising: a housing 1, a dust suction device 2, a filtering device 3, a dust detecting mechanism 4, and a control device 5, wherein
  • the housing 1 is provided with an opening 6
  • the dust suction device 2 and the filtering device 3 are both disposed inside the casing 1
  • the air inlet of the dust suction device 2 cooperates with the opening 6 on the casing 1 .
  • the filter device 3 is connected to the air outlet 7 on the casing 1 through a pipe.
  • the dust detecting mechanism 4 is disposed on the casing 1.
  • the dust collecting device 2, the filtering device 3 and the dust detecting mechanism 4 are all connected to the control device 5.
  • the dust suction device 2 has at least two groups.
  • a power mechanism 21 for providing suction and a wind power adjustment mechanism 22 are provided, and the power mechanism 21 and the wind power adjustment mechanism 22 are both connected to the control device 5.
  • the opening of the casing 1 is provided with a mesh 8 which is in the form of a stretched S.
  • the inside of the casing 1 is provided with a junction box 9, and the junction box 9 is matched with the screen mesh 8.
  • the filter device 3 in the embodiment is provided with an impurity filter 31, a filter 32 and a purifier 33.
  • the impurity filter 31 is disposed on the rotating shaft 34, and the filter 32 is disposed behind the impurity filter 32.
  • the purifier 33 is disposed behind the filter 32, and the filter 32, the purifier 33, and the rotating shaft 34 are all connected to the control device 5.
  • the impurity filter 31 and the rotating shaft 34 are detachably connected.
  • a dust box is disposed below the rotating shaft 34.
  • the density of the impurity screen 31 in this embodiment is greater than the density of the screen 8.
  • the control device 5 in the embodiment is provided with a dust control module, a filter control module, a detection control module and a controller module, wherein the dust control module is provided with a power driving unit and a wind adjusting unit, and the filtering control
  • the module is provided with a rotating shaft control module, a filter control module and a purification control module, and the driving unit and the wind adjusting unit are respectively connected with the power mechanism 21 and the wind adjusting mechanism 22, the rotating shaft control module, the filter control module and the purification control
  • the modules are respectively connected to the rotating shaft 34, the filter 32 and the purifier 33, and the detecting control module is connected to the dust detecting mechanism 4, and the dust collecting control module, the filtering control module and the detecting control module are all connected with the controller module.
  • FIG. 1 and FIG. 2 A working method of an efficient and powerful air purifying processor as shown in FIG. 1 and FIG. 2, comprising: a housing 1, a dust suction device 2, a filtering device 3, a dust detecting mechanism 4, and a control device 5, wherein
  • the housing 1 is provided with an opening 6
  • the dust suction device 2 and the filtering device 3 are both disposed inside the casing 1
  • the air inlet of the dust suction device 2 cooperates with the opening 6 on the casing 1 .
  • the filter device 3 is connected to the air outlet 7 on the casing 1 through a pipe.
  • the dust detecting mechanism 4 is disposed on the casing 1.
  • the dust collecting device 2, the filtering device 3 and the dust detecting mechanism 4 are all connected to the control device 5.
  • the dust suction device 2 has at least two groups.
  • a power mechanism 21 for providing suction and a wind power adjustment mechanism 22 are provided, and the power mechanism 21 and the wind power adjustment mechanism 22 are both connected to the control device 5.
  • the opening of the casing 1 is provided with a mesh 8 which is in the form of a stretched S.
  • the inside of the casing 1 is provided with a junction box 9, and the junction box 9 is matched with the screen mesh 8.
  • the filter device 3 in the embodiment is provided with an impurity filter 31, a filter 32 and a purifier 33.
  • the impurity filter 31 is disposed on the rotating shaft 34, and the filter 32 is disposed behind the impurity filter 32.
  • the purifier 33 is disposed behind the filter 32, and the filter 32, the purifier 33, and the rotating shaft 34 are all connected to the control device 5.
  • the impurity filter 31 and the rotating shaft 34 are detachably connected.
  • a dust box is disposed below the rotating shaft 34.
  • the density of the impurity screen 31 in this embodiment is greater than the density of the screen 8.
  • the control device 5 in the embodiment is provided with a dust control module, a filter control module, a detection control module and a controller module, wherein the dust control module is provided with a power driving unit and a wind adjusting unit, and the filtering control
  • the module is provided with a rotating shaft control module, a filter control module and a purification control module, and the driving unit and the wind adjusting unit are respectively connected with the power mechanism 21 and the wind adjusting mechanism 22, the rotating shaft control module, the filter control module and the purification control
  • the modules are respectively connected to the rotating shaft 34, the filter 32 and the purifier 33, and the detecting control module is connected to the dust detecting mechanism 4, and the dust collecting control module, the filtering control module and the detecting control module are all connected with the controller module.
  • the working method of the working method of an efficient and powerful air purifying processor described in this embodiment is as follows:
  • the dust detecting mechanism 4 After the dust detecting mechanism 4 receives the instruction, it starts to detect the dust in the air, and immediately transmits the detected data to the controller, and the data processing unit in the controller immediately receives the data for processing;
  • the controller controls the power output of the power mechanism 21 in the dust suction device 2 and the wind power of the wind power adjustment mechanism 22 according to the result detected by the dust detecting mechanism 4, and after the adjustment, the dust suction mechanism in the dust suction device 2 start working;

Abstract

一种高效强劲型空气净化处理器的工作方法,包括:先由控制器模块中的控制器通过检测控制模块命令灰尘检测机构(4)开始工作;控制器会根据灰尘检测机构(4)检测的结果来控制吸尘装置(2)中动力机构(21)的动力输出以及风力调节机构(22)的风力大小,吸尘装置(2)中的吸尘机构开始工作;当空气经过挡网(8)时,挡网(8)会把其中大的杂质或者是颗粒进行阻拦,然后被阻拦的杂质将会进入接物盒(9);空气流向壳体(1)的内部,先经过杂质滤网(31)进行初步过滤,经过过滤器(32)进行深度净化,再经过净化器(33)对过滤后的空气进行净化,将其中有毒有害物质进行去除;最后通过管道将经过过滤装置(3)过滤后的空气由壳体(1)上的出风口(7)排出。

Description

一种高效强劲型空气净化处理器的工作方法 技术领域
本发明属于环保技术领域,特别涉及一种高效强劲型空气净化处理器的工作方法。
背景技术
随着社会经济的快速发展,人们的生活水平和生活质量都在不断的提高,且无论是生产还是生活,人们的节奏都在不断的加快,对于环境的要求也越来越高,随着PM2.5的被人们熟知,无论是政府还是普通的工作人员对于环保的概念了解的都更为深入,为了提高环境的质量,空气净化器逐渐走入人们的视野。
特别是对于新装修的家庭或者是家里有老人和孩子的家庭,为了能够改善空气质量,常常会购买一些空气净化器或者处理器,然而我们可以看到市面上现有的空气净化器其一般只具备进风口和出风口,再通过过滤芯对其体进行过滤,然而在实际的使用中,我们会因为外部或者内部因素造成空气中的粉尘或者是有害气体成分不同,现有的空气净化器其无论是置身于怎么的环境中,其过滤的效果都是一样的,这就会导致其并不能够真正的满足人们的需要。
发明内容
发明目的:为了克服以上不足,本发明的目的是提供一种高效强劲型空气净化处理器的工作方法,其结构简单,设计合理,灰尘检测机构对空气中的灰尘浓度进行检测,其通过在壳体中设置吸尘装置,让其对周围空气中的灰尘进行吸收,然后通过过滤装置对吸收的进气进行过滤、净化,能够有效提高空气净化的质量。
技术方案:为了实现上述目的,本发明提供了一种高效强劲型空气净化处理器的工作方法,包括:壳体、吸尘装置、过滤装置、灰尘检测机构和控制装置,其中,所述壳体上设有开口,所述吸尘装置和过滤装置均设于壳体的内部,所述吸尘装置的进风口与壳体上的开口相配合,所述过滤装置通过管道与壳体上的出风口连接,所述灰尘检测机构设于壳体上,所述吸尘装置、过滤装置和灰尘检测机构均与控制装置连接,且,其中所述吸尘装置至少有2组。
本发明中所述的一种高效强劲型空气净化处理器的工作方法,通过灰尘检测机构对空气中的灰尘浓度进行检测,其通过在壳体中设置吸尘装置,让其对周围空气中的灰尘进行吸收,然后通过过滤装置对吸收的进气进行过滤、净化,然后通过管道将过滤后的空气排出,让其能够根据检测的空气情况,对其过滤、净化的能力进行实时的调整,实现智能化的 净化,进而让其能够更好的满足使用者的需求。
本发明中所述吸尘装置中设有提供吸力的动力机构和风力调节机构,且所述动力机构和风力调节机构均与控制装置连接,让其能够根据检测的空气情况来对吸尘装置的风力进行调节,进一步提高智能化。
本发明中所述壳体的开口处设有挡网,所述挡网呈拉伸的S型,便于被阻挡的杂质集中。
本发明中所述壳体内侧设有接物盒,所述接物盒与挡网相配合,便于对挡网拦截的杂质进行集中处理,减少二次污染的产生。
本发明中所述过滤装置中设有杂质滤网、过滤器和净化器,所述杂质滤网设于转轴上,所述过滤器设于杂质滤网的后方,所述净化器设于过滤器的后方,所述过滤器、净化器以及转轴均与控制装置连接,通过杂质滤网、过滤器和净化器让其实现多次的过滤和净化,有效的保证其对空气的处理效果。
本发明中所述杂质滤网与转轴采用可拆卸连接,便于其更换。
本发明中所述转轴下方设有接尘盒,有效的收集杂质滤网中过滤的杂质。
本发明中所述杂质滤网的密度大于挡网的密度,实现梯度式过滤,进一步提高其过滤的效果。
本发明中所述控制装置中设有吸尘控制模块、过滤控制模块、检测控制模块和控制器模块,所述吸尘控制模块中设有动力驱动单元和风力调节单元,所述过滤控制模块中设有转轴控制模块、过滤器控制模块和净化控制模块,所述驱动单元和风力调节单元分别与动力机构和风力调节机构连接,所述转轴控制模块、过滤器控制模块和净化控制模块分别与转轴、过滤器和净化器连接,所述检测控制模块与灰尘检测机构连接,所述吸尘控制模块、过滤控制模块以及检测控制模块均与控制器模块。
本发明中所述的一种高效强劲型空气净化处理器的工作方法,具体的工作方法如下:
(1):首先打开壳体上的开关,然后控制器模块中的控制器将通过检测控制模块命令灰尘检测机构开始工作;
(2):待灰尘检测机构接收到指令后开始对空气中的灰尘进行检测,并立即把检测的数据传送给控制器中,控制器中的数据处理单元立即会接收到的数据进行处理;
(3):然后控制器将会根据其处理得出的结果,来命令吸尘控制模块和过滤控制模块开始工作;
(4):控制器会根据灰尘检测机构检测的结果来控制吸尘装置中动力机构的动力输出以及风力调节机构的风力大小,调节好后,吸尘装置中的吸尘机构开始工作;
(5):在上一步骤吸尘机构工作时,不断的把带有灰尘或者杂质的空气吸入壳体,当空气经过挡网时,挡网将会把其中大的杂质或者是颗粒进行阻拦,然后被阻拦的杂质将会进入接物盒,空气流向壳体的内部;
(6):当空气到达过滤装置时,其首先经过杂质滤网(进行初步过滤,然后经过过滤器进行深度的净化,将其中的;
(7):当空气经过过滤器深度进化后,再经过净化器对过滤后的其进行净化,将其中有毒有害物质进行去除;
(8):最后通过管道将经过过滤装置过滤后的空气经过壳体上的出口排出即可。
上述技术方案可以看出,本发明具有如下有益效果:。
1、本发明中所述的一种高效强劲型空气净化处理器的工作方法在工作过程中,先由控制器模块中的控制器将通过检测控制模块命令灰尘检测机构开始工作;灰尘检测机构接收到指令后开始对空气中的灰尘进行检测,并立即把检测的数据传送给控制器中,然后控制器将会根据检测的结果,来命令吸尘控制模块和过滤控制模块开始工作,控制器会根据灰尘检测机构检测的结果来控制吸尘装置中动力机构的动力输出以及风力调节机构的风力大小,调节好后,吸尘装置中的吸尘机构开始工作,不断的把带有灰尘或者杂质的空气吸入壳体,当空气经过挡网时,挡网将会把其中大的杂质或者是颗粒进行阻拦,然后被阻拦的杂质将会进入接物盒,空气流向壳体的内部先经过杂质滤网进行初步过滤,然后经过过滤器进行深度的净化,再经过净化器对过滤后的其进行净化,将其中有毒有害物质进行去除,最后通过管道将经过过滤装置过滤后的空气经过壳体上的出口排出即可;整个工作过程简单、易实现,通过递进式多重过滤的实现,大大的提高了其对空气处理的效果,让其更好的满足使用者的需求。
2、本发明中所述的一种高效强劲型空气净化处理器的工作方法,通过灰尘检测机构对空气中的灰尘浓度进行检测,其通过在壳体中设置吸尘装置,让其对周围空气中的灰尘进行吸收,然后通过过滤装置对吸收的进气进行过滤、净化,然后通过管道将过滤后的空气排出,让其能够根据检测的空气情况,对其过滤、净化的能力进行实时的调整,实现智能化的净化,进而让其能够更好的满足使用者的需求。
3、本发明中所述吸尘装置中设有提供吸力的动力机构和风力调节机构,且所述动力机构和风力调节机构均与控制装置连接,让其能够根据检测的空气情况来对吸尘装置的风力 进行调节,进一步提高智能化。
4、本发明中所述过滤装置中设有杂质滤网、过滤器和净化器,所述杂质滤网设于转轴上,所述过滤器设于杂质滤网的后方,所述净化器设于过滤器的后方,所述过滤器、净化器以及转轴均与控制装置连接,通过杂质滤网、过滤器和净化器让其实现多次的过滤和净化,有效的保证其对空气的处理效果。
附图说明
图1为本发明的结构示意图;
图2为发明中电气连接示意图;
图中:壳体-1、吸尘装置-2、过滤装置-3、灰尘检测机构-4、控制装置-5、开口-6、出风口-7、挡网-8、接物盒-9、动力机构-21、风力调节机构-22、杂质滤网-31、过滤器-32、净化器-33、转轴-34。
具体实施方式
下面结合附图和具体实施例,进一步阐明本发明。
实施例1
如图1和图2所示的一种高效强劲型空气净化处理器的工作方法,包括:壳体1、吸尘装置2、过滤装置3、灰尘检测机构4和控制装置5,其中,所述壳体1上设有开口6,所述吸尘装置2和过滤装置3均设于壳体1的内部,所述吸尘装置2的进风口与壳体1上的开口6相配合,所述过滤装置3通过管道与壳体1上的出风口7连接,所述灰尘检测机构4设于壳体1上,所述吸尘装置2、过滤装置3和灰尘检测机构4均与控制装置5连接,且,其中所述吸尘装置2至少有2组。
本实施例中所述吸尘装置2中设有提供吸力的动力机构21和风力调节机构22,且所述动力机构21和风力调节机构22均与控制装置5连接。
本实施例中所述壳体1的开口处设有挡网8,所述挡网8呈拉伸的S型。
本实施例中所述壳体1内侧设有接物盒9,所述接物盒9与挡网8相配合。
本实施例中所述过滤装置3中设有杂质滤网31、过滤器32和净化器33,所述杂质滤网31设于转轴34上,所述过滤器32设于杂质滤网32的后方,所述净化器33设于过滤器32的后方,所述过滤器32、净化器33以及转轴34均与控制装置5连接。
本实施例中所述杂质滤网31与转轴34采用可拆卸连接。
本实施例中所述转轴34下方设有接尘盒。
本实施例中所述杂质滤网31的密度大于挡网8的密度。
本实施例中所述控制装置5中设有吸尘控制模块、过滤控制模块、检测控制模块和控制器模块,所述吸尘控制模块中设有动力驱动单元和风力调节单元,所述过滤控制模块中设有转轴控制模块、过滤器控制模块和净化控制模块,所述驱动单元和风力调节单元分别与动力机构21和风力调节机构22连接,所述转轴控制模块、过滤器控制模块和净化控制模块分别与转轴34、过滤器32和净化器33连接,所述检测控制模块与灰尘检测机构4连接,所述吸尘控制模块、过滤控制模块以及检测控制模块均与控制器模块连接。
实施例2
如图1和图2所示的一种高效强劲型空气净化处理器的工作方法,包括:壳体1、吸尘装置2、过滤装置3、灰尘检测机构4和控制装置5,其中,所述壳体1上设有开口6,所述吸尘装置2和过滤装置3均设于壳体1的内部,所述吸尘装置2的进风口与壳体1上的开口6相配合,所述过滤装置3通过管道与壳体1上的出风口7连接,所述灰尘检测机构4设于壳体1上,所述吸尘装置2、过滤装置3和灰尘检测机构4均与控制装置5连接,且,其中所述吸尘装置2至少有2组。
本实施例中所述吸尘装置2中设有提供吸力的动力机构21和风力调节机构22,且所述动力机构21和风力调节机构22均与控制装置5连接。
本实施例中所述壳体1的开口处设有挡网8,所述挡网8呈拉伸的S型。
本实施例中所述壳体1内侧设有接物盒9,所述接物盒9与挡网8相配合。
本实施例中所述过滤装置3中设有杂质滤网31、过滤器32和净化器33,所述杂质滤网31设于转轴34上,所述过滤器32设于杂质滤网32的后方,所述净化器33设于过滤器32的后方,所述过滤器32、净化器33以及转轴34均与控制装置5连接。
本实施例中所述杂质滤网31与转轴34采用可拆卸连接。
本实施例中所述转轴34下方设有接尘盒。
本实施例中所述杂质滤网31的密度大于挡网8的密度。
本实施例中所述控制装置5中设有吸尘控制模块、过滤控制模块、检测控制模块和控制器模块,所述吸尘控制模块中设有动力驱动单元和风力调节单元,所述过滤控制模块中设有转轴控制模块、过滤器控制模块和净化控制模块,所述驱动单元和风力调节单元分别与动力机构21和风力调节机构22连接,所述转轴控制模块、过滤器控制模块和净化控制模块分别与转轴34、过滤器32和净化器33连接,所述检测控制模块与灰尘检测机构4连接,所述吸尘控制模块、过滤控制模块以及检测控制模块均与控制器模块连接。
本实施例中所述的一种高效强劲型空气净化处理器的工作方法的工作方法,具体的 工作方法如下:
(1):首先打开壳体1上的开关,然后控制器模块中的控制器将通过检测控制模块命令灰尘检测机构4开始工作;
(2):待灰尘检测机构4接收到指令后开始对空气中的灰尘进行检测,并立即把检测的数据传送给控制器中,控制器中的数据处理单元立即会接收到的数据进行处理;
(3):然后控制器将会根据其处理得出的结果,来命令吸尘控制模块和过滤控制模块开始工作;
(4):控制器会根据灰尘检测机构4检测的结果来控制吸尘装置2中动力机构21的动力输出以及风力调节机构22的风力大小,调节好后,吸尘装置2中的吸尘机构开始工作;
(5):在上一步骤4吸尘机构工作时,不断的把带有灰尘或者杂质的空气吸入壳体1,当空气经过挡网8时,挡网8将会把其中大的杂质或者是颗粒进行阻拦,然后被阻拦的杂质将会进入接物盒9,空气流向壳体1的内部;
(6):当空气到达过滤装置3时,其首先经过杂质滤网31进行初步过滤,然后经过过滤器32进行深度的净化,将其中的;
(7):当空气经过过滤器32深度进化后,再经过净化器33对过滤后的其进行净化,将其中有毒有害物质进行去除;
(8):最后通过管道将经过过滤装置3过滤后的空气经过壳体1上的出口排出即可。
以上所述仅是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明原理的前提下,还可以做出若干改进,这些改进也应视为本发明的保护范围。

Claims (10)

  1. 一种高效强劲型空气净化处理器的工作方法,其特征在于:具体的工作方法如下:
    (1):首先打开壳体(1)上的开关,然后控制器模块中的控制器将通过检测控制模块命令灰尘检测机构(4)开始工作;
    (2):待灰尘检测机构(4)接收到指令后开始对空气中的灰尘进行检测,并立即把检测的数据传送给控制器中,控制器中的数据处理单元立即会接收到的数据进行处理;
    (3):然后控制器将会根据其处理得出的结果,来命令吸尘控制模块和过滤控制模块开始工作;
    (4):控制器会根据灰尘检测机构(4)检测的结果来控制吸尘装置(2)中动力机构(21)的动力输出以及风力调节机构(22)的风力大小,调节好后,吸尘装置(2)中的吸尘机构开始工作;
    (5):在上一步骤(4)吸尘机构工作时,不断的把带有灰尘或者杂质的空气吸入壳体(1),当空气经过挡网(8)时,挡网(8)将会把其中大的杂质或者是颗粒进行阻拦,然后被阻拦的杂质将会进入接物盒(9),空气流向壳体(1)的内部;
    (6):当空气到达过滤装置(3)时,其首先经过杂质滤网(31)进行初步过滤,然后经过过滤器(32)进行深度的净化,将其中的;
    (7):当空气经过过滤器(32)深度进化后,再经过净化器(33)对过滤后的其进行净化,将其中有毒有害物质进行去除;
    (8):最后通过管道将经过过滤装置(3)过滤后的空气经过壳体(1)上的出口排出即可。
  2. 根据权利要求1所述的高效强劲型空气净化处理器的工作方法,其特征在于:该空气净化处理器包括:壳体(1)、吸尘装置(2)、过滤装置(3)、灰尘检测机构(4)和控制装置(5),其中,所述壳体(1)上设有开口(6),所述吸尘装置(2)和过滤装置(3)均设于壳体(1)的内部,所述吸尘装置(2)的进风口与壳体(1)上的开口(6)相配合,所述过滤装置(3)通过管道与壳体(1)上的出风口(7)连接,所述灰尘检测机构(4)设于壳体(1)上,所述吸尘装置(2)、过滤装置(3)和灰尘检测机构(4)均与控制装置(5)连接,且,其中所述吸尘装置(2)至少有2组。
  3. 根据权利要求1所述的高效强劲型空气净化处理器的工作方法,其特征在于:所述吸尘装置(2)中设有提供吸力的动力机构(21)和风力调节机构(22),且所述动力机构(21)和风力调节机构(22)均与控制装置(5)连接。
  4. 根据权利要求1所述的高效强劲型空气净化处理器的工作方法,其特征在于:所述壳体(1)的开口处设有挡网(8),所述挡网(8)呈拉伸的S型。
  5. 根据权利要求1所述的高效强劲型空气净化处理器的工作方法,其特征在于:所述壳体(1)内侧设有接物盒(9),所述接物盒(9)与挡网(8)相配合。
  6. 根据权利要求1所述的高效强劲型空气净化处理器的工作方法,其特征在于:所述过滤装置(3)中设有杂质滤网(31)、过滤器(32)和净化器(33),所述杂质滤网(31)设于转轴(34)上,所述过滤器(32)设于杂质滤网(32)的后方,所述净化器(33)设于过滤器(32)的后方,所述过滤器(32)、净化器(33)以及转轴(34)均与控制装置(5)连接。
  7. 根据权利要求6所述的高效强劲型空气净化处理器的工作方法,其特征在于:所述杂质滤网(31)与转轴(34)采用可拆卸连接。
  8. 根据权利要求6所述的高效强劲型空气净化处理器的工作方法,其特征在于:所述转轴(34)下方设有接尘盒。
  9. 根据权利要求1所述的高效强劲型空气净化处理器的工作方法,其特征在于:所述杂质滤网(31)的密度大于挡网(8)的密度。
  10. 根据权利要求1所述的高效强劲型空气净化处理器的工作方法,其特征在于:所述控制装置(5)中设有吸尘控制模块、过滤控制模块、检测控制模块和控制器模块,所述吸尘控制模块中设有动力驱动单元和风力调节单元,所述过滤控制模块中设有转轴控制模块、过滤器控制模块和净化控制模块,所述驱动单元和风力调节单元分别与动力机构(21)和风力调节机构(22)连接,所述转轴控制模块、过滤器控制模块和净化控制模块分别与转轴(34)、过滤器(32)和净化器(33)连接,所述检测控制模块与灰尘检测机构(4)连接,所述吸尘控制模块、过滤控制模块以及检测控制模块均与控制器模块。
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