CN105444288B - 可调式小型空气净化器及净化方法 - Google Patents
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Abstract
本发明涉及一种可调式小型空气净化器,包括底座、设置在底座上方且可转动的净化主体、以及连接底座与净化主体的连接组件,所述净化主体的内腔设置有用以将其分割为下腔与上腔的支架,所述支架在下腔内固定有呈环状的滤芯,所述滤芯的底部涂覆有光触媒材料层,所述净化主体的锥形底部环向布置有若干通向滤芯与光触媒材料的进气口,所述滤芯的中心设置有连通滤芯与上腔的负离子发生器,所述支架在上腔内固定有用以引流的风扇,所述上腔的顶部设置有出气口;还包含一种可调式小型空气净化器的净化方法。本发明不仅结构设计合理,拆装方便,而且使用方便快捷,灵活程度高,过滤效果好,实现多级深度过滤与环向无死角净化,高效节能、绿色环保。
Description
技术领域
本发明涉及一种可调式小型空气净化器及净化方法。
背景技术
近年,大气污染的形势不容乐观,城市空气质量有所下降,尤其居住条件欠佳的中小户型的居民,常受居住空间之困,环境条件有限,空气净化不易。也有的小微企业,初创之艰辛,办公条件不佳,也有改善环境之迫切愿望。
随着社会的不断进步,汽车产业得到了长足的发展,人们也越来越多的使用汽车,与此同时,车内污染也成为人们日益重视的问题。汽车是个相对密闭的空间,乘客多或者车速慢或车辆停止时就会影响新空气的进入或交换,特别在开空调时,就会加重空气质量下降,湿度也降低,容易造成驾乘人员的身心健康伤害,皮肤干裂等,乃至影响事故概率的提高。
为此,人们需要采用专门的空气净化设备来对付小环境空气的污染。消费者不仅需要有净化空气的功能,还要使用方便,便于移动,希望既能用于室内办公、家居生活,也能用于车载空间。现有的小型空气净化器由于机身不能摆动,只能垂直向上出风,如在车内空间较狭窄的地方,尚且能满足需求,如果还想用于室内等场合,其结构并不完美,且使用不方便。
发明内容
鉴于现有技术的不足,本发明所要解决的技术问题是提供一种可调式小型空气净化器及净化方法,不仅结构设计合理,而且操作方法简单,净化效率高、效果好。
为了解决上述技术问题,本发明的技术方案是:一种可调式小型空气净化器,包括底座、设置在底座上方且可转动的净化主体、以及连接底座与净化主体的连接组件,所述净化主体的内腔设置有用以将其分割为下腔与上腔的支架,所述支架在下腔内固定有呈环状的滤芯,所述滤芯的底部涂覆有光触媒材料层,所述净化主体的锥形底部环向布置有若干通向滤芯与光触媒材料的进气口,所述滤芯的中心设置有连通滤芯与上腔的负离子发生器,所述支架在上腔内固定有用以引流的风扇,所述上腔的顶部设置有出气口。
优选的,所述连接组件包含第一连接体、以及套设在第一连接体外的第二连接体,所述第一连接体的一端与支架的卡槽扣接、所述第一连接体的另一端与万向接头螺纹连接,所述万向接头置于第二连接体的内腔,所述第二连接体与底座外壳螺纹连接。
优选的,所述滤芯包含上下布置的载银活性炭滤芯与HEPA滤芯。
优选的,所述光触媒材料由含80%~95%改性二氧化钛的材料制成。
优选的,所述净化主体外还设置有触摸式开关,所述触摸式开关与控制模块电性连接。
优选的,所述净化主体具有上下螺纹连接的上壳与下壳。
优选的,所述底座内设置有配重块。
优选的,所述配重块中部设置有用以安装普通电源插头的插座。
优选的,所述底座上还设置有车用充电插头。
一种可调式小型空气净化器的净化方法,包括如上述所述的任一种可调式小型空气净化器,包含以下步骤:
(1)根据光照角度以及空气的污染程度转动净化主体,使得尽可能多的紫外光线经进气口照射在所述光触媒材料层上,实现多角度进气,所述光触媒材料层在紫外光线的作用下降解经过进气口的有毒有害气体、灭杀部分细菌;
(2)经过光触媒材料层处理的气体进入滤芯进行细菌、颗粒物、粉尘过滤;
(3)经过光触媒材料层、滤芯处理的气体进入负离子发生器进行细菌、颗粒物、粉尘过滤,并产生负氧离子,所述滤芯将负离子发生器产生的臭氧即时过滤;
(4)经过光触媒材料层、滤芯、负离子发生器的洁净气体经风扇、出气口多角度排入至空气中。
与现有技术相比,本发明具有以下有益效果:
(1)本发明结构设计合理,各个螺纹连接的零部件拆装方便,易于维护;
(2)本发明灵活程度高,既可以在办公室使用,也可以在车内使用;
(3)本发明的过滤效果好,综合光触媒材料层、滤芯以及负离子发生器以及连接组件,在净化主体转动过程中,实现多级深度过滤与环向无死角净化。
下面结合附图和具体实施方式对本发明做进一步详细的说明。
附图说明
图1为本发明实施例的构造示意图。
图2为本发明实施例倾斜状态下的构造示意图。
图3为本发明实施例倾斜状态下的外观示意图。
图中:1-底座,2-支架,3-滤芯,4-进气口,5-负离子发生器,6-风扇,7-出气口,8-第一连接体,9-万向接头,10-第二连接体,11-触摸式开关,12-上壳,13-下壳,14-配重块,15-插座。
具体实施方式
为让本发明的上述特征和优点能更明显易懂,下文特举实施例,并配合附图,作详细说明如下。
如图1~3所示,一种可调式小型空气净化器,包括底座1、设置在底座1上方且可转动的净化主体、以及连接底座1与净化主体的连接组件,所述净化主体的内腔设置有用以将其分割为下腔与上腔的支架2,所述支架2在下腔内固定有呈环状的滤芯3,所述滤芯3的底部涂覆有光触媒材料层,所述净化主体的锥形底部环向布置有若干通向滤芯3与光触媒材料的进气口4,所述滤芯3的中心设置有连通滤芯3与上腔的负离子发生器5,所述支架2在上腔内固定有用以引流的风扇6,所述上腔的顶部设置有出气口7;进气口4设置在锥形底部上,利于进气,也利于光线的投射,所述锥形底部与水平线的夹角优选30°~60°。
在本发明实施例中,所述连接组件包含第一连接体8、以及套设在第一连接体8外的第二连接体10,所述第一连接体8的一端与支架2的卡槽扣接、所述第一连接体8的另一端与万向接头9螺纹连接,所述万向接头9置于第二连接体10的内腔,所述第二连接体10与底座1外壳螺纹连接。
在本发明实施例中,所述滤芯3包含上下布置的载银活性炭滤芯3与HEPA滤芯3。
在本发明实施例中,所述光触媒材料由含80%~95%改性二氧化钛的材料制成。
在本发明实施例中,所述净化主体外还设置有触摸式开关11,所述触摸式开关与控制模块电性连接。
在本发明实施例中,所述净化主体具有上下螺纹连接的上壳12与下壳13,拆装方便、易于维护。
在本发明实施例中,所述底座1内设置有配重块14。
在本发明实施例中,所述配重块14中部设置有用以安装普通电源插头的插座15。
在本发明实施例中,所述底座1上还设置有车用充电插头。
在本发明实施例中,一种可调式小型空气净化器的净化方法,包括如上述所述的任一种可调式小型空气净化器,包含以下步骤:
(1)根据光照角度以及空气的污染程度转动净化主体,使得尽可能多的紫外光线经进气口4照射在所述光触媒材料层上,实现多角度进气,所述光触媒材料层在紫外光线的作用下降解经过进气口4的有毒有害气体、灭杀部分细菌,最大程度地利用光触媒材料层,也可以不断地转动净化主体,使得各个角落均被净化,高效节能,无死角净化;
(2)经过光触媒材料层处理的气体进入滤芯3进行细菌、颗粒物、粉尘过滤;
(3)经过光触媒材料层、滤芯3处理的气体进入负离子发生器5进行细菌、颗粒物、粉尘过滤,并产生负氧离子,所述滤芯3将负离子发生器5产生的臭氧即时过滤;
(4)经过光触媒材料层、滤芯3、负离子发生器5的洁净气体经风扇6、出气口7多角度排入至空气中。
本发明不局限于上述最佳实施方式,任何人在本发明的启示下都可以得出其他各种形式的可调式小型空气净化器及净化方法。凡依本发明申请专利范围所做的均等变化与修饰,皆应属本发明的涵盖范围。
Claims (8)
1.一种可调式小型空气净化器,其特征在于:包括底座、设置在底座上方且可转动的净化主体、以及连接底座与净化主体的连接组件,所述净化主体的内腔设置有用以将其分割为下腔与上腔的支架,所述支架在下腔内固定有呈环状的滤芯,所述滤芯的底部涂覆有光触媒材料层,所述净化主体的锥形底部环向布置有若干通向滤芯与光触媒材料的进气口,所述锥形底部与水平线的夹角优选30°~60°,所述滤芯的中心设置有连通滤芯与上腔的负离子发生器,所述支架在上腔内固定有用以引流的风扇,所述上腔的顶部设置有出气口,所述连接组件包含第一连接体、以及套设在第一连接体外的第二连接体,所述第一连接体的一端与支架的卡槽扣接、所述第一连接体的另一端与万向接头螺纹连接,所述万向接头置于第二连接体的内腔,所述第二连接体与底座外壳螺纹连接,所述滤芯包含上下布置的载银活性炭滤芯与HEPA滤芯。
2.根据权利要求1所述的可调式小型空气净化器,其特征在于:所述光触媒材料由含80%~95%改性二氧化钛的材料制成。
3.根据权利要求1所述的可调式小型空气净化器,其特征在于:所述净化主体外还设置有触摸式开关,所述触摸式开关与控制模块电性连接。
4.根据权利要求1所述的可调式小型空气净化器,其特征在于:所述净化主体具有上下螺纹连接的上壳与下壳。
5.根据权利要求1所述的可调式小型空气净化器,其特征在于:所述底座内设置有配重块。
6.根据权利要求5所述的可调式小型空气净化器,其特征在于:所述配重块中部设置有用以安装普通电源插头的插座。
7.根据权利要求1所述的可调式小型空气净化器,其特征在于:所述底座上还设置有车用充电插头。
8.一种可调式小型空气净化器的净化方法,包括如权利要求1~7所述的任一种可调式小型空气净化器,其特征在于,包含以下步骤:
(1)根据光照角度以及空气的污染程度转动净化主体,使得尽可能多的紫外光线经进气口照射在所述光触媒材料层上,实现多角度进气,所述光触媒材料层在紫外光线的作用下降解经过进气口的有毒有害气体、灭杀部分细菌;
(2)经过光触媒材料层处理的气体进入滤芯进行细菌、颗粒物、粉尘过滤;
(3)经过光触媒材料层、滤芯处理的气体进入负离子发生器进行细菌、颗粒物、粉尘过滤,并产生负氧离子,所述滤芯将负离子发生器产生的臭氧即时过滤;
(4)经过光触媒材料层、滤芯、负离子发生器的洁净气体经风扇、出气口多角度排入至空气中。
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