CN114537184B - 一种电动汽车充电桩 - Google Patents
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- B65H75/44—Constructional details
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
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- Y02T10/00—Road transport of goods or passengers
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Abstract
本发明公开了一种电动汽车充电桩,涉及电动汽车技术领域,包括充电桩本体、箱体、第一导向组件、第二导向组件、热风管、导流板以及振动机构,本发明不仅实现了电缆的自动收放,而且还能够在不占用现有充电桩过多空间的前提下,通过设置的热风管以及振动机构对附着有雨水的电缆进行干燥处理,以减少水蒸气对充电桩的内部电子设备造成的不良影响,借助于第一导向组件被动旋转的动力驱动振动机构产生振动,实现了附着在电缆外周的雨水振动抖落,在热烘的前期即可将大部分雨水去除,再配合热风管的热风吹干,形成二级干燥处理,以达到干燥效果的最优化,相比传统的方式,结构简单,布局合理且成本低廉。
Description
技术领域
本发明属于电动汽车技术领域,具体涉及一种电动汽车充电桩。
背景技术
随着电动汽车的普及度越来越高,充电桩作为目前常规的充电设施,广泛应用于电动汽车的充电。现有的充电桩中,考虑到成本问题,目前与充电枪连接的线缆是直接挂在充电桩本体侧面设置的挂钩上,消费者在使用时还需要将其取下并解开才能使用,且在牵拉的过程中会存在较为明显的拖拽感,使用体验较差。现有技术中虽然也公开了一些采用自动收卷机构将电缆收卷的充电桩,但考虑到下雨天,夹带有雨水的电缆直接收卷至充电桩本体内,雨水蒸发产生的水蒸气因无法快速排出,容易对内部电子设备造成不良影响。目前采用的防水措施是将收卷区与电子设备区隔开,此种方式虽然解决了电子设备区受潮的问题,但无疑增加了整个设备的体积,且水蒸气仍然会大量积聚在收卷区内,久而久之,对收卷机构本身也会造成不良影响。
发明内容
本发明的目的在于提供一种电动汽车充电桩,以解决现有技术中导致的上述缺陷。
一种电动汽车充电桩,包括充电桩本体、箱体、第一导向组件、第二导向组件、热风管、导流板以及振动机构,所述箱体安装于充电桩本体内,所述第一导向组件、第二导向组件均有两组并安装于箱体内,第一导向组件、第二导向组件均用于将电缆引导至充电桩本体内部设置的卷线盘处,其中第一导向组件安装于电缆的进线口和出线口处,所述箱体内还竖直设置有一个隔板用于将箱体分割成左右两个区域,隔板上设有一个用于电缆穿过的通孔,两个第二导向组件分别位于隔板的左右方且两个第二导向组件之间的电缆处于水平状态,所述热风管安装于隔板的右侧并位于其中一组第一两个导向组件、第二导向组件之间,热风管能够向电缆周围吹出热风以实现电缆表面的干燥,所述导流板安装于箱体右侧内壁上的固定座上并用于在电缆的周围形成一个包围电缆的气流,所述振动机构安装于进线孔处并能够在进线口处的第二导向组件的驱动下实现电缆的振动。
优选的,所述振动机构包括定位环、导柱、复位弹簧、导向杆、滚轮、振动盘以及皮带,所述定位环借助于其两侧设置的导柱滑动连接于进线口内,定位环与进线口的侧壁之间的导柱上套设有所述的复位弹簧,定位环的外侧还设有所述的导向杆,导向杆的末端转动连接有所述的滚轮,所述振动盘转动连接于进线口一侧的缺口内,振动盘的外周设有若干与滚轮相配合的凹槽,与振动盘连接的转轴上还设有带轮,带轮借助于皮带与位于进线口处的第一导向组件连接。
优选的,所述第一导向组件包括两个对称设置并转动连接于箱体内的引导辊一,位于进线口处的其中一个引导辊一上设有用于安装皮带的环形槽。
优选的,所述定位环包括一个环形套和两个侧臂,两个侧臂固定于环形套的两侧且对称设置,所述导柱固定于侧臂上。
优选的,所述第二导向组件包括三个转动连接于箱体内的引导辊二,其中两个引导辊分别位于另外一个引导辊二轴线所处的水平面和竖直面,两个第二导向组件将电缆在箱体内形成“U”形的走向。
优选的,所述箱体的右侧壁上设有若干排气孔。
优选的,所述缺口与进线口处在横截面行为“T”形。
优选的,充电桩本体的前侧设有一个用于电缆收放且向内凹陷的收放区,所述箱体安装于收放区上端的充电桩本体内且进线口朝向收放区处。
本发明的优点在于:
1.本发明不仅实现了电缆的自动收放,而且还能够在不占用现有充电桩过多空间的前提下,通过设置的热风管以及振动机构对附着有雨水的电缆进行干燥处理,以减少水蒸气对充电桩的内部电子设备造成的不良影响。
2.本发明中借助于第一导向组件被动旋转的动力驱动振动机构产生振动,实现了附着在电缆外周的雨水振动抖落,在热烘的前期即可将大部分雨水去除,再配合热风管的热风吹干,形成二级干燥处理,以达到干燥效果的最优化,相比传统的方式,结构简单,布局合理且成本低廉。
附图说明
图1、图2为本发明前后不同视角的结构示意图。
图3本发明中箱体内部的结构示意图。
图4为图3中沿A-A方向的剖视图。
图5为图4中振动机构部分的局部详图。
图6为本发明中导流板及电缆的相对位置示意图。
图7为振动盘与引导辊一的连接示意图。
其中:1箱体,10通孔,11隔板,12进线口,13出线口,14缺口,15排气孔,2第一导向组件,20引导辊一,3第二导向组件,30引导辊二,4热风管,5导流板,6振动机构,60定位环,61导柱,62复位弹簧,63振动盘,630凹槽,64皮带,65转轴,66带轮,67皮带,68导向杆,69滚轮,100充电桩本体,101收放区,200电缆。
具体实施方式
为使本发明实现的技术手段、创作特征、达成目的与功效易于明白了解,下面结合具体实施方式,进一步阐述本发明。
如图1至图7所示,一种电动汽车充电桩,包括充电桩本体100、箱体1、第一导向组件2、第二导向组件3、热风管4、导流板5以及振动机构6,所述箱体1安装于充电桩本体100内,所述第一导向组件2、第二导向组件3均有两组并安装于箱体1内,第一导向组件2、第二导向组件3均用于将电缆200引导至充电桩本体100内部设置的卷线盘处,其中第一导向组件2安装于电缆200的进线口12和出线口13处,所述箱体1内还竖直设置有一个隔板11用于将箱体1分割成左右两个区域,隔板11上设有一个用于电缆200穿过的通孔10,两个第二导向组件3分别位于隔板11的左右方且两个第二导向组件3之间的电缆200处于水平状态,所述热风管4安装于隔板11的右侧并位于其中一组第一两个导向组件、第二导向组件3之间,热风管4能够向电缆200周围吹出热风以实现电缆200表面的干燥,所述导流板5安装于箱体1右侧内壁上的固定座上并用于在电缆200的周围形成一个包围电缆200的气流,所述振动机构6安装于进线孔处并能够在进线口12处的第二导向组件3的驱动下实现电缆200的振动。为了实现水蒸气的排出,在所述箱体1的右侧壁上设有若干排气孔15。
在本实施例中,所述振动机构6包括定位环60、导柱61、复位弹簧62、导向杆68、滚轮69、振动盘63以及皮带6467,所述定位环60借助于其两侧设置的导柱61滑动连接于进线口12内,定位环60与进线口12的侧壁之间的导柱61上套设有所述的复位弹簧62,定位环60的外侧还设有所述的导向杆68,导向杆68的末端转动连接有所述的滚轮69,所述振动盘63转动连接于进线口12一侧的缺口14内,所述缺口14与进线口12处在横截面行为“T”形,振动盘63的外周设有若干与滚轮69相配合的凹槽630,与振动盘63连接的转轴65上还设有带轮66,带轮66借助于皮带6467与位于进线口12处的第一导向组件2连接。所述定位环60包括一个环形套和两个侧臂,两个侧臂固定于环形套的两侧且对称设置,所述导柱61固定于侧臂上。具体实施过程中,第一导向组件2中的其中一个引导辊一20,如本实施例中的左侧的引导辊一20借助于皮带6467驱动振动盘63转动,进而驱动定位环60在水平方向上做规律性的振动运动,最终驱动经过定位环60的电缆200也产生振动效果。
在本实施例中,所述第一导向组件2包括两个对称设置并转动连接于箱体1内的引导辊一20,位于进线口12处的其中一个引导辊一20上设有用于安装皮带6467的环形槽。
在本实施例中,所述第二导向组件3包括三个转动连接于箱体1内的引导辊二30,其中两个引导辊分别位于另外一个引导辊二30轴线所处的水平面和竖直面,两个第二导向组件3将电缆200在箱体1内形成“U”形的走向。
在本实施例中,充电桩本体100的前侧设有一个用于电缆200收放且向内凹陷的收放区101,所述箱体1安装于收放区101上端的充电桩本体100内且进线口12朝向收放区101处。
本发明的具体实施过程如下:
在电缆200收卷过程中,电缆200会经由振动机构6、第一导向组件2、第二导向组件3、第二导向组件3、第一导向组件2进入到充电桩本体100内部设置的卷线盘处,在此过程中,经由振动机构6处的电缆200会在振动机构6的作用下产生振动,从而将附着在电缆200外周的雨水抖落一部分,当电缆200经过热风管4处时,热风管4吹出的热风吹至电缆200外周对电缆200进行进一步干燥处理。
当需要放出电缆200时,卷线盘反向旋转再配合人力的牵拉即可,此时的热风管4处于关闭状态。
由技术常识可知,本发明可以通过其它的不脱离其精神实质或必要特征的实施方案来实现。因此,上述公开的实施方案,就各方面而言,都只是举例说明,并不是仅有的。所有在本发明范围内或在等同于本发明的范围内的改变均被本发明包含。
Claims (7)
1.一种电动汽车充电桩,其特征在于,包括充电桩本体(100)、箱体(1)、第一导向组件(2)、第二导向组件(3)、热风管(4)、导流板(5)以及振动机构(6),所述箱体(1)安装于充电桩本体(100)内,所述第一导向组件(2)、第二导向组件(3)均有两组并安装于箱体(1)内,第一导向组件(2)、第二导向组件(3)均用于将电缆(200)引导至充电桩本体(100)内部设置的卷线盘处,其中第一导向组件(2)安装于电缆(200)的进线口(12)和出线口(13)处,所述箱体(1)内还竖直设置有一个隔板(11)用于将箱体(1)分割成左右两个区域,隔板(11)上设有一个用于电缆(200)穿过的通孔(10),两个第二导向组件(3)分别位于隔板(11)的左右方且两个第二导向组件(3)之间的电缆(200)处于水平状态,所述热风管(4)安装于隔板(11)的右侧并位于其中一组第一两个导向组件、第二导向组件(3)之间,热风管(4)能够向电缆(200)周围吹出热风以实现电缆(200)表面的干燥,所述导流板(5)安装于箱体(1)右侧内壁上的固定座上并用于在电缆(200)的周围形成一个包围电缆(200)的气流,所述振动机构(6)安装于进线孔处并能够在进线口(12)处的第二导向组件(3)的驱动下实现电缆(200)的振动;
所述振动机构(6)包括定位环(60)、导柱(61)、复位弹簧(62)、导向杆(68)、滚轮(69)、振动盘(63)以及皮带(64)(67),所述定位环(60)借助于其两侧设置的导柱(61)滑动连接于进线口(12)内,定位环(60)与进线口(12)的侧壁之间的导柱(61)上套设有所述的复位弹簧(62),定位环(60)的外侧还设有所述的导向杆(68),导向杆(68)的末端转动连接有所述的滚轮(69),所述振动盘(63)转动连接于进线口(12)一侧的缺口(14)内,振动盘(63)的外周设有若干与滚轮(69)相配合的凹槽(630),与振动盘(63)连接的转轴(65)上还设有带轮(66),带轮(66)借助于皮带(64)(67)与位于进线口(12)处的第一导向组件(2)连接。
2.根据权利要求1所述的一种电动汽车充电桩,其特征在于,所述第一导向组件(2)包括两个对称设置并转动连接于箱体(1)内的引导辊一(20),位于进线口(12)处的其中一个引导辊一(20)上设有用于安装皮带(64)(67)的环形槽。
3.根据权利要求1所述的一种电动汽车充电桩,其特征在于,所述定位环(60)包括一个环形套和两个侧臂,两个侧臂固定于环形套的两侧且对称设置,所述导柱(61)固定于侧臂上。
4.根据权利要求1所述的一种电动汽车充电桩,其特征在于,所述第二导向组件(3)包括三个转动连接于箱体(1)内的引导辊二(30),其中两个引导辊分别位于另外一个引导辊二(30)轴线所处的水平面和竖直面,两个第二导向组件(3)将电缆(200)在箱体(1)内形成“U”形的走向。
5.根据权利要求1所述的一种电动汽车充电桩,其特征在于,所述箱体(1)的右侧壁上设有若干排气孔(15)。
6.根据权利要求1所述的一种电动汽车充电桩,其特征在于,所述缺口(14)与进线口(12)处在横截面行为“T”形。
7.根据权利要求1所述的一种电动汽车充电桩,其特征在于,充电桩本体(100)的前侧设有一个用于电缆(200)收放且向内凹陷的收放区(101),所述箱体(1)安装于收放区(101)上端的充电桩本体(100)内且进线口(12)朝向收放区(101)处。
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