CN110715191A - 增压散热空气净化灯 - Google Patents
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Abstract
本发明公开一种增压散热空气净化灯,辅流外壳包裹于风扇出风外壳之外,辅流外壳的侧壁于抽风进口的上方开设有若干辅流壳进风口,辅流外壳的底部开设有出风孔,辅流外壳的内壁与风扇出风外壳的外壁之间形成辅流风道,灯具组件安装于辅流外壳的外壁,冷热风模块及空气净化模块均装设于辅流外壳之外,冷热风模块的输出端与辅流风道之间设置冷热风管道,空气净化模块的输出端与辅流风道之间设置净化气管道。本发明增压散热空气净化灯结构简单紧凑,制造成本低且外观更具美感。
Description
技术领域
本发明涉及家电领域,尤其涉及一种增压散热空气净化灯。
背景技术
市面上的增压净化风扇的增压风道一般与外风道交叉分布,结构复杂且制造成本高,另外,其增压风扇一般设置于灯盘之上,整体高度较高,外观缺乏美感。
发明内容
本发明的目的在于提供一种增压散热空气净化灯,以解决上述技术问题。
为了实现上述目的,本发明的技术方案为:提供一种增压散热空气净化灯,包括全包围的风扇安装内壳、全包围的风扇出风外壳、涡轮电机、涡轮叶片、全包围的辅流外壳、灯具组件冷热风模块及空气净化模块,所述风扇安装内壳的顶部开设有电机安装孔,所述涡轮电机固定安装于所述风扇安装内壳中,且所述涡轮电机的输出轴往上穿过所述电机安装孔与所述涡轮叶片相接,所述风扇出风外壳的顶部开设有抽风进口,所述风扇出风外壳包裹于所述风扇安装内壳之外且与所述风扇安装内壳固定相接,所述风扇出风外壳的内壁与所述风扇安装内壳的外壁之间形成增压风道,所述风扇出风外壳的底部正对所述增压风道处均匀开设有若干增压出气孔,所述涡轮叶片位于所述增压风道中,所述辅流外壳包裹于所述风扇出风外壳之外,所述辅流外壳的侧壁于所述抽风进口的上方开设有若干辅流壳进风口,所述辅流外壳的底部开设有出风孔,所述辅流外壳的内壁与所述风扇出风外壳的外壁之间形成辅流风道,所述风扇出风外壳的侧壁的下端与所述出风孔的边缘之间形成辅流出风口,所述灯具组件安装于所述辅流外壳的外壁,所述冷热风模块及所述空气净化模块均装设于所述辅流外壳之外,所述冷热风模块的输出端与所述辅流风道之间设置冷热风管道,所述空气净化模块的输出端与所述辅流风道之间设置净化气管道,所述空气净化模块为纳米水离子模块或者纳米水离子与负离子复合模块或者静电水雾化模块或者水离子模块或者羟基自由基水分子团发生装置或者纳米水离子光触媒模块或者纳米水离子电触媒模块或者纳米水离子与纳米银离子复合模块或者过滤净化模块。
所述灯具组件包括灯盘、灯源及灯罩,所述灯盘呈环状,所述灯盘的内壁边缘与所述辅流外壳的外壁的中部相固接,所述灯源安装于所述灯盘的底部,所述灯罩呈下凸环状,所述灯罩的内缘与所述出风孔的边缘相固接,所述灯罩的外缘与所述灯盘的外缘相固接,所述冷热风模块及所述空气净化模块均安装于所述灯盘的顶部。
所述增压散热空气净化灯还包括电机控制模块、照明驱动模块以及整机控制模块,所述电机控制模块安装于所述辅流外壳内于所述抽风进口的上方,所述电机控制模块与所述涡轮电机电性相接,所述整机控制模块均安装于所述灯盘的顶部,所述照明驱动模块安装于所述灯盘的顶部或者底部,所述灯源及所述整机控制模块均与所述照明驱动模块电性相接,所述冷热风模块及所述空气净化模块均与所述整机控制模块电性相接。
所述辅流外壳的顶部还套盖有吸顶盖。
所述辅流外壳的底部于所述增压出气孔的内侧设置LED数显控制模块,所述LED数显控制模块与所述整机控制模块电性相接。
所述灯盘的外缘与所述灯罩的外缘的相接处还套设有装饰环。
所述灯盘的顶部与所述辅流外壳之间还设置加强筋。
所述增压散热空气净化灯还包括环状的端盖环,所述端盖环的外边缘与所述辅流外壳的下边缘相接,所述端盖环的上边缘与所述风扇出风外壳的外壁的下部相接,所述端盖环上开设有若干辅流出风孔。
所述整机控制单元还设置有语音控制单元或者WIFI控制单元或者红外线控制单元或者蓝牙控制单元或者感应控制单元或者互联网控制单元或者物联网控制单元或者局域网控制单元或者智联网控制单元。与现有技术相比,本发明增压散热空气净化灯结构简单紧凑,制造成本低且外观更具美感。
通过以下的描述并结合附图,本发明将变得更加清晰,这些附图用于解释本发明的实施例。
附图说明
图1为本发明增压散热空气净化灯第一个角度的结构图。
图2为本发明增压散热空气净化灯第二个角度的结构图。
图3为本发明增压散热空气净化灯第三个角度的结构图。
图4为图3中沿剖面线A-A的剖视图。
具体实施方式
参考图1至图4,本发明增压散热空气净化灯100包括全包围的风扇安装内壳10、全包围的风扇出风外壳15、涡轮电机20、涡轮叶片30、全包围的辅流外壳35、灯具组件、冷热风模块65及空气净化模块70。冷热风模块65可以是半导体制冷片构成的冷热交换装置,亦可以使电加热装置或者其它冷热风装置。
所述风扇安装内壳10的顶部开设有电机安装孔101。所述涡轮电机20固定安装于所述风扇安装内壳10中,且所述涡轮电机20的输出轴往上穿过所述电机安装孔101与所述涡轮叶片30相接。所述风扇出风外壳15的顶部开设有抽风进口151,所述风扇出风外壳15包裹于所述风扇安装内壳10之外且与所述风扇安装内壳10固定相接,所述风扇出风外壳15的内壁与所述风扇安装内壳10的外壁之间形成增压风道13。所述风扇出风外壳15的底部正对所述增压风道处13均匀开设有若干增压出气孔152。所述涡轮叶片30位于所述增压风道13中。所述辅流外壳35包裹于所述风扇出风外壳15之外且与所述风扇出风外壳15固定相接。所述辅流外壳35的侧壁于所述抽风进口151的上方开设有若干辅流壳进风口351。所述辅流外壳35的底部开设有出风孔352。所述辅流外壳35的内壁与所述风扇出风外壳15的外壁之间形成辅流风道14。所述电机控制模块55安装于所述辅流外壳35内于所述抽风进口151的上方且与所述涡轮电机20电性相接。所述风扇出风外壳15的侧壁的下端与所述出风孔352的边缘之间形成辅流出风口145。所述灯具组件安装于所述辅流外壳35的外壁,所述冷热风模块65、所述空气净化模块70及所述整机控制模块75均安装于所述灯盘40的顶部。所述冷热风模块65及所述空气净化模块70均装设于所述辅流外壳35之外,所述冷热风模块65的输出端与所述辅流风道14之间设置冷热风管道16,所述空气净化模块70的输出端与所述辅流风道14之间设置净化气管道17。所述空气净化模块70为纳米水离子模块或者纳米水离子与负离子复合模块或者静电水雾化模块或者水离子模块或者羟基自由基水分子团发生装置或者纳米水离子光触媒模块或者纳米水离子电触媒模块或者纳米水离子与纳米银离子复合模块或者过滤净化模块。上述涡轮电机20、灯源45、空气净化模块70以及冷热风模块65均有由控制电路自动控制。
具体地,所述灯具组件包括灯盘40、灯源45及灯罩50。所述灯盘40呈环状,所述灯盘40的内壁边缘与所述辅流外壳35的外壁的中部相固接,所述灯源45安装于所述灯盘40的底部,所述灯罩50呈下凸环状,所述灯罩50的内缘与所述出风孔352的边缘相固接,所述灯罩50的外缘与所述灯盘40的外缘相固接,所述冷热风模块65及所述空气净化模块70均安装于所述灯盘的顶部。
较佳者,增压散热空气净化灯100还包括电机控制模块55、照明驱动模块60以及整机控制模块75。所述电机控制模块55安装于所述辅流外壳35内于所述抽风进口151的上方。所述电机控制模块55与所述涡轮电机20电性相接,所述整机控制模块75均安装于所述灯盘40的顶部,所述照明驱动模块60安装于所述灯盘的顶部或者底部,本实施例中,本实施例中,所述灯盘40的顶部及底部均安装有所述照明驱动模块60。所述灯源及所述整机控制模块均与所述照明驱动模块电性相接,所述冷热风模块及所述空气净化模块均与所述整机控制模块电性相接。
较佳者,所述辅流外壳35的顶部还套盖有吸顶盖353。所述辅流外壳35的底部于所述增压出气孔152的内侧设置LED数显控制模块354,所述LED数显控制模块354与所述整机控制模块75电性相接。所述灯盘40的外缘与所述灯罩50的外缘的相接处还套设有装饰环18。所述灯盘40的顶部与所述辅流外壳35之间还设置加强筋19。
较佳者,本发明增压散热空气净化灯100还包括环状的端盖环355,所述端盖环355的外边缘与所述辅流外壳35的下边缘相接,所述端盖环355的上边缘与所述风扇出风外壳15的外壁的下部相接,所述端盖环355上开设有若干辅流出风孔3551。
较佳者,所述整机控制单元75还设置有语音控制单元或者WIFI控制单元或者红外线控制单元或者蓝牙控制单元或者感应控制单元或者互联网控制单元或者物联网控制单元或者局域网控制单元或者智联网控制单元。该增压散热空气净化灯100除了由LED数显控制模块354控制之外,还可以通过蓝牙、wifi、物联网、互联网、红外线、app等智能化方式控制。
本发明增压散热空气净化灯100工作时,涡轮电机20带动涡轮叶片30转动产生负压,从而将外部的空气从辅流壳进风口351吸入,经过增压风道13后从增压出气孔152喷出;与此同时,涡轮叶片30转动产生负压将外部的气流一部分吸进辅流风道14,空气净化模块70产生的净化气流及冷热风模块65产生的冷热气流汇入辅流风道14,随从辅流壳进风口351吸进的气流一同从辅流出风孔3551排出,从而对室内的空气进行净化和调节冷热。
本发明增压散热空气净化灯结构简单紧凑,制造成本低且外观更具美感。
以上结合最佳实施例对本发明进行描述,但本发明并不局限于以上揭示的实施例,而应当涵盖各种根据本实施例的本质进行的修改、等效组合。
Claims (9)
1.一种增压散热空气净化灯,其特征在于:包括全包围的风扇安装内壳、全包围的风扇出风外壳、涡轮电机、涡轮叶片、全包围的辅流外壳、灯具组件冷热风模块及空气净化模块,所述风扇安装内壳的顶部开设有电机安装孔,所述涡轮电机固定安装于所述风扇安装内壳中,且所述涡轮电机的输出轴往上穿过所述电机安装孔与所述涡轮叶片相接,所述风扇出风外壳的顶部开设有抽风进口,所述风扇出风外壳包裹于所述风扇安装内壳之外且与所述风扇安装内壳固定相接,所述风扇出风外壳的内壁与所述风扇安装内壳的外壁之间形成增压风道,所述风扇出风外壳的底部正对所述增压风道处均匀开设有若干增压出气孔,所述涡轮叶片位于所述增压风道中,所述辅流外壳包裹于所述风扇出风外壳之外,所述辅流外壳的侧壁于所述抽风进口的上方开设有若干辅流壳进风口,所述辅流外壳的底部开设有出风孔,所述辅流外壳的内壁与所述风扇出风外壳的外壁之间形成辅流风道,所述风扇出风外壳的侧壁的下端与所述出风孔的边缘之间形成辅流出风口,所述灯具组件安装于所述辅流外壳的外壁,所述冷热风模块及所述空气净化模块均位于所述辅流外壳之外,所述冷热风模块的输出端与所述辅流风道之间设置冷热风管道,所述空气净化模块的输出端与所述辅流风道之间设置净化气管道,所述空气净化模块为纳米水离子模块或者纳米水离子与负离子复合模块或者静电水雾化模块或者水离子模块或者羟基自由基水分子团发生装置或者纳米水离子光触媒模块或者纳米水离子电触媒模块或者纳米水离子与纳米银离子复合模块或者过滤净化模块。
2.如权利要求1所述的增压散热空气净化灯,其特征在于:所述灯具组件包括灯盘、灯源及灯罩,所述灯盘呈环状,所述灯盘的内壁边缘与所述辅流外壳的外壁的中部相固接,所述灯源安装于所述灯盘的底部,所述灯罩呈下凸环状,所述灯罩的内缘与所述出风孔的边缘相固接,所述灯罩的外缘与所述灯盘的外缘相固接,所述冷热风模块及所述空气净化模块均安装于所述灯盘的顶部。
3.如权利要求2所述的增压散热空气净化灯,其特征在于:还包括电机控制模块、照明驱动模块以及整机控制模块,所述电机控制模块安装于所述辅流外壳内于所述抽风进口的上方,所述电机控制模块与所述涡轮电机电性相接,所述整机控制模块均安装于所述灯盘的顶部,所述照明驱动模块安装于所述灯盘的顶部或者底部,所述灯源及所述整机控制模块均与所述照明驱动模块电性相接,所述冷热风模块及所述空气净化模块均与所述整机控制模块电性相接。
4.如权利要求1所述的增压散热空气净化灯,其特征在于:所述辅流外壳的顶部还套盖有吸顶盖。
5.如权利要求3所述的增压散热空气净化灯,其特征在于:所述辅流外壳的底部于所述增压出气孔的内侧设置LED数显控制模块,所述LED数显控制模块与所述整机控制模块电性相接。
6.如权利要求2所述的增压散热空气净化灯,其特征在于:所述灯盘的外缘与所述灯罩的外缘的相接处还套设有装饰环。
7.如权利要求2所述的增压散热空气净化灯,其特征在于:所述灯盘的顶部与所述辅流外壳之间还设置加强筋。
8.如权利要求1所述的增压散热空气净化灯,其特征在于:还包括环状的端盖环,所述端盖环的外边缘与所述辅流外壳的下边缘相接,所述端盖环的上边缘与所述风扇出风外壳的外壁的下部相接,所述端盖环上开设有若干辅流出风孔。
9.如权利要求3所述的增压散热空气净化灯,其特征在于:所述整机控制单元还设置有语音控制单元或者WIFI控制单元或者红外线控制单元或者蓝牙控制单元或者感应控制单元或者互联网控制单元或者物联网控制单元或者局域网控制单元或者智联网控制单元。
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CN112197188A (zh) * | 2020-10-05 | 2021-01-08 | 平流层复合水离子(深圳)有限公司 | 高压带水分子净化落地灯 |
CN112664880A (zh) * | 2020-12-28 | 2021-04-16 | 安徽明威照明器材有限公司 | 一种便于拆装维修的景观灯 |
CN114719380A (zh) * | 2022-02-01 | 2022-07-08 | 佛山市清源科技有限公司 | 一种纳米水离子空气净化装置 |
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CN112197188A (zh) * | 2020-10-05 | 2021-01-08 | 平流层复合水离子(深圳)有限公司 | 高压带水分子净化落地灯 |
CN112664880A (zh) * | 2020-12-28 | 2021-04-16 | 安徽明威照明器材有限公司 | 一种便于拆装维修的景观灯 |
CN114719380A (zh) * | 2022-02-01 | 2022-07-08 | 佛山市清源科技有限公司 | 一种纳米水离子空气净化装置 |
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