CN114179639A - 一种具有散热结构的储能电池包 - Google Patents
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Abstract
本发明公开了一种具有散热结构的储能电池包。它包括用于安置电池本体的外壳体、电池本体顶部铺设的绝缘垫组件以及电池本体顶部设置的贯穿绝缘垫组件的接头,电池本体的顶部还设置有绝缘顶盖组件,外壳体的内壁上设置有缓冲筒组件并且缓冲筒组件上安装有用于对电池本体进行夹持的夹持板,外壳体上还设置有导水换热管组件。优点是:实现对接头进行保护和防漏电的问题,还可以起到对接头防生锈的功能,在使用的时候通过缓冲筒组件配合夹持板起到对电池本体的缓冲防损坏,通过导水换热管组件吸收电池本体使用时候产生的温度,实现吸热的功能,然后再打开导水换热管组件将热水放出可以实现热能源的再次利用,实现水冷散热目的。
Description
技术领域
本发明涉及一种电池包,特别是涉及一种具有散热结构的储能电池包,属于电池包技术领域。
背景技术
现有技术中的储能电池包,为了满足散热需求,其降温的方式大多数采用的是风冷降温的方式,而此种方式,虽然能够实现降温目的,但是容易出现大量的灰尘;其次,现有的储能电池包中关于导线接电端则通常没有良好的防护措施,由此长期以往,则容易出现生锈和漏电的问题发生;另外,现有技术中的储能电池包,其外壳体结构通常都不具备良好的减震缓冲措施,导致在用于电动车或者汽车上时,常常会因为晃动比较剧烈而出现对电池损坏的问题。
发明内容
本发明要解决的技术问题是提供一种不但能够对接头进行有效保护,还能够对电池本体进行缓冲防损坏以及实现水冷散热的具有散热结构的储能电池包。
为了解决上述技术问题,本发明的具有散热结构的储能电池包,包括用于安置电池本体的外壳体、电池本体顶部铺设的绝缘垫组件以及电池本体顶部设置的贯穿绝缘垫组件的接头,电池本体的顶部还设置有用于将接头进行覆盖的绝缘顶盖组件,外壳体的内壁上设置有缓冲筒组件并且缓冲筒组件上安装有用于对电池本体进行夹持的夹持板,外壳体上还设置有导水换热管组件。
所述绝缘垫组件的顶中部设置有调节盘组件,所述绝缘顶盖组件与调节盘组件进行连接并能够通过调节盘组件带动绝缘顶盖组件在电池本体顶部滑动。
所述缓冲筒组件包括外壳体的左右两侧内壁上等间距安装的多个外限位筒、夹持板上安装的分别套设在外限位筒内的多个内限位筒以及安置在各个所述外限位筒和内限位筒所构成的内腔中的缓冲弹簧。
所述外壳体具有夹层,所述导水换热管组件包括外壳体的左右两侧外壁上等间距排布的多条侧储水条、外壳体的夹层内铺设的U型连接导水条以及外壳体的外侧安装的水泵,所述U型连接导水条与侧储水条通过连接管连通,所述水泵与U型连接导水条连通。
所述绝缘垫组件包括铺设在电池本体顶部的绝缘耐高温塑料板、开设在绝缘耐高温塑料板左右两侧的侧槽以及设置在绝缘耐高温塑料板上的电源接线端槽口,所述接头贯穿电源接线端槽口,所述绝缘顶盖组件的左右两侧边缘限位在侧槽内并能够使绝缘顶盖组件在侧槽的导向下滑动。
所述绝缘顶盖组件包括两个滑动顶盖、各个所述滑动顶盖左右两侧边缘弯折形成的一对L型连接座以及各对L型连接座的底部设置的侧滑动块,所述滑动顶盖左右两侧边缘的L型连接座限位在侧槽内,所述侧滑动块限位在绝缘耐高温塑料板侧部边缘。
所述调节盘组件包括绝缘耐高温塑料板的顶部中心通过轴承安装的转盘以及转盘的顶部中心安装的转动手柄,所述转盘的顶部边缘位置铰接有铰接杆,所述铰接杆铰接在两个滑动顶盖上,通过操作所述转动手柄使转盘转动并利用铰接杆带动两个滑动顶盖动作。
所述调节盘组件的顶部中心还安装有位于转盘外围的底环,所述底环的顶部表面上通过多根连接柱安装有顶环架,所述铰接杆经过底环和顶环架之间的空档与绝缘顶盖组件进行铰接。
两个所述滑动顶盖的内侧端均安装有铰接座,所述铰接杆铰接在铰接座上。
所述绝缘耐高温塑料板的顶部开设有延展至绝缘耐高温塑料板侧边的F型走线槽,所述F型走线槽的其中一端槽口靠近接头。
本发明的优点在于:
导线与接头进行连接并将导线从F型走线槽进行走线,对导线进行放置,然后手动转动调节盘组件,通过调节盘组件带动绝缘顶盖组件沿绝缘垫组件侧壁轴向滑动,使其绝缘顶盖组件对导线和接头进行覆盖,实现对接头进行保护和防漏电的问题,另外,还可以起到对接头防生锈的功能,将其电池本体放置在外壳体的内部,然后通过缓冲筒组件配合夹持板实现对电池本体进行夹持的功能,在使用的时候通过缓冲筒组件配合夹持板起到对电池本体的缓冲防损坏,通过导水换热管组件吸收电池本体使用时候产生的温度,实现吸热的功能,然后再打开导水换热管组件将热水放出可以实现热能源的再次利用,实现水冷散热目的。
附图说明
图1为本发明具有散热结构的储能电池包的分解状态示意图;
图2为图1的A处放大结构示意图;
图3为图1的B处放大结构示意图;
图4为按照本发明中外壳体的立体结构示意图;
图5为本发明中绝缘垫组件和绝缘顶盖组件的组装状态结构示意图;
图6为本发明中外壳体的俯视结构示意图;
图7为图6的A处放大结构示意图。
具体实施方式
下面结合附图和具体实施方式,对本发明的具有散热结构的储能电池包作进一步详细说明。
如图所示,本发明的具有散热结构的储能电池包,包括用于安置电池本体1的外壳体2、电池本体1顶部铺设的工型橡胶绝缘垫组件以及电池本体1顶部设置的贯穿工型橡胶绝缘垫组件的接头3,电池本体1的顶部还设置有用于将接头进行覆盖的绝缘顶盖组件,由图3可见,工型橡胶绝缘垫组件包括铺设在电池本体1顶部的绝缘耐高温塑料板13、开设在绝缘耐高温塑料板13左右两侧的侧槽14以及设置在绝缘耐高温塑料板13上的电源接线端槽口,接头3贯穿电源接线端槽口,绝缘顶盖组件的左右两侧(图6所示左右方向定义为左右两侧)边缘限位在侧槽14内并能够使绝缘顶盖组件在侧槽的导向下滑动,绝缘顶盖组件包括两个滑动顶盖15、两个滑动顶盖15左右两侧边缘均弯折形成的一对L型连接座16以及各对L型连接座16的底部设置的侧滑动块17,滑动顶盖15左右两侧边缘的L型连接座16限位在侧槽14内,侧滑动块17限位在绝缘耐高温塑料板13侧部边缘,绝缘垫组件的顶中部设置有调节盘组件,绝缘顶盖组件与调节盘组件进行连接并能够通过调节盘组件带动绝缘顶盖组件在电池本体1顶部滑动,外壳体2的内壁上设置有缓冲筒组件并且缓冲筒组件上安装有用于对电池本体1进行夹持的夹持板4,其中,缓冲筒组件包括外壳体2的左右两侧内壁上等间距安装的多个外限位筒6、夹持板4上安装的分别套设在外限位筒内的多个内限位筒7以及安置在各个外限位筒6和内限位筒7所构成的内腔中的缓冲弹簧8,当放置在电动车或者汽车中运动的时候停车或者收到撞击的时候通过外限位筒6、内限位筒7和缓冲弹簧8的配合实现缓冲的功能;所说的外壳体2具有夹层,外壳体2上还设置有导水换热管组件,导水换热管组件包括外壳体2的左右两侧外壁上等间距排布的多条侧储水条9、外壳体2的夹层内铺设的U型连接导水条10以及外壳体2的外侧安装的水泵11,U型连接导水条10与侧储水条9通过连接管12连通,水泵11与U型连接导水条10连通,通过打开水泵11将水导入至U型连接导水条10、连接管12和侧储水条9内进行吸收热能,然后可再次打开水泵11放出热水进行利用。
进一步地,所说的调节盘组件包括绝缘耐高温塑料板5的顶部中心通过轴承安装的转盘19以及转盘19的顶部中心安装的转动手柄20,转盘19的顶部边缘位置铰接有铰接杆23,所述铰接杆23铰接在两个滑动顶盖15上,通过操作转动手柄20使转盘19转动并利用铰接杆23带动两个滑动顶盖15动作,实现对接头3的保护和防尘、防漏电和防生锈的功能,调节盘组件的顶部中心还安装有位于转盘19外围的底环18,底环18的顶部表面上通过多根连接柱21安装有顶环架22,铰接杆23经过底环18和顶环架22之间的空档与绝缘顶盖组件进行铰接。
再进一步地,所说的两个滑动顶盖15的内侧端均安装有铰接座24,铰接杆23铰接在铰接座24上,绝缘耐高温塑料板13的顶部开设有延展至绝缘耐高温塑料板5侧边的F型走线槽25,F型走线槽6的其中一端槽口靠近接头3,外壳体2的内底部铺设有耐磨层。
Claims (10)
1.一种具有散热结构的储能电池包,其特征在于:包括用于安置电池本体(1)的外壳体(2)、电池本体(1)顶部铺设的绝缘垫组件以及电池本体(1)顶部设置的贯穿绝缘垫组件的接头(3),电池本体(1)的顶部还设置有用于将接头进行覆盖的绝缘顶盖组件,所述外壳体(2)的内壁上设置有缓冲筒组件并且所述缓冲筒组件上安装有用于对电池本体(1)进行夹持的夹持板(4),所述外壳体(2)上还设置有导水换热管组件。
2.根据权利要求1所述的具有散热结构的储能电池包,其特征在于:所述绝缘垫组件的顶中部设置有调节盘组件,所述绝缘顶盖组件与调节盘组件进行连接并能够通过调节盘组件带动绝缘顶盖组件在电池本体(1)顶部滑动。
3.根据权利要求2所述的具有散热结构的储能电池包,其特征在于:所述缓冲筒组件包括外壳体(2)的左右两侧内壁上等间距安装的多个外限位筒(6)、夹持板(4)上安装的分别套设在外限位筒内的多个内限位筒(7)以及安置在各个所述外限位筒(6)和内限位筒(7)所构成的内腔中的缓冲弹簧(8)。
4.根据权利要求2或3所述的具有散热结构的储能电池包,其特征在于:所述外壳体(2)具有夹层,所述导水换热管组件包括外壳体(2)的左右两侧外壁上等间距排布的多条侧储水条(9)、外壳体(2)的夹层内铺设的U型连接导水条(10)以及外壳体(2)的外侧安装的水泵(11),所述U型连接导水条(10)与侧储水条(9)通过连接管(12)连通,所述水泵(11)与U型连接导水条(10)连通。
5.根据权利要求4所述的具有散热结构的储能电池包,其特征在于:所述绝缘垫组件包括铺设在电池本体(1)顶部的绝缘耐高温塑料板(13)、开设在绝缘耐高温塑料板(13)左右两侧的侧槽(14)以及设置在绝缘耐高温塑料板(13)上的电源接线端槽口,所述接头(3)贯穿电源接线端槽口,所述绝缘顶盖组件的左右两侧边缘限位在侧槽(14)内并能够使绝缘顶盖组件在侧槽的导向下滑动。
6.根据权利要求2、3或5所述的具有散热结构的储能电池包,其特征在于:所述绝缘顶盖组件包括两个滑动顶盖(15)、各个所述滑动顶盖(15)左右两侧边缘弯折形成的一对L型连接座(16)以及各对L型连接座(16)的底部设置的侧滑动块(17),所述滑动顶盖(15)左右两侧边缘的L型连接座(16)限位在侧槽(14)内,所述侧滑动块(17)限位在绝缘耐高温塑料板(13)侧部边缘。
7.根据权利要求6所述的具有散热结构的储能电池包,其特征在于:所述调节盘组件包括绝缘耐高温塑料板(5)的顶部中心通过轴承安装的转盘(19)以及转盘(19)的顶部中心安装的转动手柄(20),所述转盘(19)的顶部边缘位置铰接有铰接杆(23),所述铰接杆(23)铰接在两个滑动顶盖(15)上,通过操作所述转动手柄(20)使转盘(19)转动并利用铰接杆(23)带动两个滑动顶盖(15)动作。
8.根据权利要求7所述的具有散热结构的储能电池包,其特征在于:所述调节盘组件的顶部中心还安装有位于转盘(19)外围的底环(18),所述底环(18)的顶部表面上通过多根连接柱(21)安装有顶环架(22),所述铰接杆(23)经过底环(18)和顶环架(22)之间的空档与绝缘顶盖组件进行铰接。
9.根据权利要求8所述的具有散热结构的储能电池包,其特征在于:两个所述滑动顶盖(15)的内侧端均安装有铰接座(24),所述铰接杆(23)铰接在铰接座(24)上。
10.根据权利要求5所述的具有散热结构的储能电池包,其特征在于:所述绝缘耐高温塑料板(13)的顶部开设有延展至绝缘耐高温塑料板(5)侧边的F型走线槽(25),所述F型走线槽(6)的其中一端槽口靠近接头(3)。
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