CN106801968A - 一种蓄电池生产热循环系统 - Google Patents
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Abstract
本发明公开了一种蓄电池生产热循环系统,包括第一通风管、第二通风管和电子水泵,所述第一通风管的右端设有进风口,所述第二通风管的左端固定连接有出风口,所述第一通风管的左端和第二通风管的右端均连通有三通管,所述三通管分别连通有吸风口和排风口,所述吸风口和排风口的内腔通过支撑杆安装有电机,所述电机通过转轴固定连接有扇叶,所述吸风口和排风口的外侧均设有防尘网,所述第一通风管和第二通风管的中间上方均设置有喷头。本发明是有效的将室内外空气进行交换的装置,以降低室内温度,避免过热影响电池的生产加工,本装置节能且环保,并且电池生产中产生有毒的氟化氢气体,本装置亦可吸收掉这一气体。
Description
技术领域
本发明涉及电池应用技术领域,具体为一种蓄电池生产热循环系统。
背景技术
蓄电池是将化学能直接转化成电能的一种装置,是按可再充电设计的电池,通过可逆的化学反应实现再充电,通常是指铅酸蓄电池,它是电池中的一种,属于二次电池,它的工作原理:充电时利用外部的电能使内部活性物质再生,把电能储存为化学能,需要放电时再次把化学能转换为电能输出,比如生活中常用的手机电池等。
蓄电池在现在的生活中起到必不可少的作用,主要用于汽车的起动和照明、太阳能发电用电能储存和计算机系统作为保护的备用电源等,在生产蓄电池时,会产生一些热和有害气体,导致生产环境不安全,普通装置并不能一并解决这一问题。
发明内容
本发明的目的在于提供一种蓄电池生产热循环系统,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种蓄电池生产热循环系统,包括第一通风管、第二通风管和电子水泵,所述第一通风管的右端设有进风口,所述进风口内安装有导风板,所述第二通风管的左端固定连接有出风口,所述第一通风管的左端和第二通风管的右端均连通有三通管,所述三通管分别连通有吸风口和排风口,且吸风口和排风口均设置为三个,所述吸风口和排风口的内腔通过支撑杆安装有电机,所述电机通过转轴连接有扇叶,所述吸风口和排风口的外侧均设有防尘网,所述第一通风管和第二通风管的中间上方均设置有喷头,所述喷头底面设置有喷孔,所述喷头的左侧均通过输水管与电子水泵连通,所述第一通风管和第二通风管的中间下方分别设置有第一集水槽和第二集水槽,所述第二集水槽的左侧通过输水管连通电子水泵,所述第一集水槽和第二集水槽通过连通管相连。
优选的,所述第一通风管和第二通风管均为T字型通管。
优选的,所述风扇外侧包裹有吸音棉。
优选的,所述导风板由若干板块均匀间隔布置,且导风板设置为倾斜状态。
优选的,所述喷头的顶端面为矩形,下端面为弧形,所述喷孔在喷头的下端面均匀排布。
与现有技术相比,本发明的有益效果是:本发明是有效的将室内外空气进行交换的装置,以降低室内温度,避免过热影响电池的生产加工,本装置节能且环保,并且电池生产中产生有毒的氟化氢气体,本装置亦可吸收掉这一气体。
附图说明
图1为本发明结构主体示意图。
图2为本发明喷头的示意图。
图中:1三通管、2第一通风管、3第二通风管、4第一集水槽、5第二集水槽、6连通管、7输水管、8电子水泵、9喷头、10喷孔、11进风口、12导风板、13出风口、14吸风口、15支撑杆、16电机、17扇叶、18防尘网、19排风口。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1-2,本发明提供一种技术方案:一种蓄电池生产热循环系统,包括第一通风管2、第二通风管3和电子水泵8,所述第一通风管2的右端设有进风口11,所述进风口11内安装有导风板12,所述导风板12由若干板块均匀间隔布置,且导风板12设置为倾斜状态,所述第二通风管3的左端固定连接有出风口13,所述第一通风管2和第二通风管3均为T字型通管,所述第一通风管2的左端和第二通风管3的右端均连通有三通管1,所述三通管1分别连通有吸风口14和排风口19,且吸风口14和排风口19均设置为三个,所述吸风口14和排风口19外侧包裹有吸音棉,所述吸风口14和排风口19的内腔通过支撑杆15安装有电机16,所述电机16通过转轴连接有扇叶17,所述吸风口14和排风口19的外侧均设有防尘网18,所述第一通风管2和第二通风管3的中间上方均设置有喷头9,所述喷头9底面设置有喷孔10,所述喷头9的顶端面为矩形,下端面为弧形,所述喷孔10在喷头9的下端面均匀排布,所述喷头9的左侧均通过输水管7与电子水泵8连通,所述第一通风管2和第二通风管3的中间下方分别设置有第一集水槽4和第二集水槽5,所述第二集水槽5的左侧通过输水管7连通电子水泵8,所述第一集水槽4和第二集水槽5通过连通管6相连。
工作原理:本产品实现室内外的空气循环,首先热空气从排风口19进入到三通管1中,再进入第二通风管3中,水在第一集水槽4和第二集水槽5中通过电子水泵8作用将水运送到喷头9,水通过喷孔10喷洒,将空气中的有害气体吸收掉,而外面的气体通过吸风口14从三通管1进入第一通风管2中,喷孔10喷出的水将空气降温,从而空气经过进风口11被引入室内。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。
Claims (5)
1.一种蓄电池生产热循环系统,包括第一通风管(2)、第二通风管(3)和电子水泵(8),其特征在于:所述第一通风管(2)的右端设有进风口(11),所述进风口(11)内安装有导风板(12),所述第二通风管(3)的左端固定连通有出风口(13),所述第一通风管(2)的左端和第二通风管(3)的右端均连通有三通管(1),所述三通管(1)分别连通有吸风口(14)和排风口(19),且吸风口(14)和排风口(19)均设置为三个,所述吸风口(14)和排风口(19)的内腔通过支撑杆(15)安装有电机(16),所述电机(16)通过转轴连接有扇叶(17),所述吸风口(14)和排风口(19)的外侧均设有防尘网(18),所述第一通风管(2)和第二通风管(3)的中间上方均设置有喷头(9),所述喷头(9)的下端面设置有喷孔(10),所述喷头(9)的左侧均通过输水管(7)与电子水泵(8)连通,所述第一通风管(2)和第二通风管(3)的中间下方分别设置有第一集水槽(4)和第二集水槽(5),所述第二集水槽(5)的左侧通过输水管(7)连通电子水泵(8),所述第一集水槽(4)和第二集水槽(5)通过连通管(6)相连。
2.根据权利要求1所述的一种蓄电池生产热循环系统,其特征在于:所述第一通风管(2)和第二通风管(3)均为T字型通管。
3.根据权利要求1所述的一种蓄电池生产热循环系统,其特征在于:所述吸风口(14)和排风口(19)外侧包裹有吸音棉。
4.根据权利要求1所述的一种蓄电池生产热循环系统,其特征在于:所述导风板(12)由若干板块均匀间隔布置,且导风板(12)设置为倾斜状态。
5.根据权利要求1所述的一种蓄电池生产热循环系统,其特征在于:所述喷头(9)的顶端面为矩形,下端面为弧形,所述喷孔(10)在喷头(9)的下端面均匀排布。
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CN110448772A (zh) * | 2019-09-20 | 2019-11-15 | 成都市第二人民医院 | 基于呼吸科用的深入精准给药装置及给药方法 |
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